| 2041 |
MSME TESTING CENTRE, CHENNAI
| 6106704
| IS 17043 : Part 1 (2024) |
Shoes - Specification Part 1 Shoes for Services |
- |
13000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl-4.2(Design) |
- |
0 |
|
- |
| Cl-4.3.1(Size) |
- |
100 |
|
- |
| Cl-4.3.2(Weight) |
- |
100 |
|
- |
| Cl-4.4(Height of Upper) |
- |
200 |
|
- |
| Cl-4.5, S.Cl-4.5.2(Ergonomic Feature) |
- |
100 |
|
- |
| Cl-4.5, S.Cl-4.5.3(Bond Strength) |
- |
600 |
|
- |
| Cl-4.5, S.Cl-4.5.4(Slip Resistance) |
- |
1200 |
|
- |
| Cl-4.5.5.1(Electrical Properties-Antistatic footwear) |
- |
700 |
|
- |
| Cl-4.5, S.Cl-4.5.6(Heat Insulation of Sole Complex) |
- |
700 |
|
- |
| Cl-4.5, S.Cl-4.5.7(Cold Insulation of Sole Complex) |
- |
800 |
|
- |
| Cl-4.6.1(Material) |
- |
100 |
|
- |
| Cl-4.6.2(Tear Strength) |
- |
500 |
|
- |
| Cl-4.6.3(Water Vapour Permeability and Coefficient) |
- |
800 |
|
- |
| Cl-4.6.4(Water Penetration and Water Absorption) |
- |
400 |
|
- |
| Cl-4.7.1(Material) |
- |
100 |
|
- |
| Cl-4.7.2(Tear Strength) |
- |
500 |
|
- |
| Cl-4.7.3(Abrasion Resistance) |
- |
800 |
|
- |
| Cl-4.7.4(Water Vapour Permeability and Coefficient) |
- |
800 |
|
- |
| Cl. 4.8.1(Material) |
- |
100 |
|
- |
| Cl-4.8.2(Abrasion Resistance) |
- |
400 |
|
- |
| Cl-4.8.3(Water Absorption and Desorption) |
- |
1200 |
|
- |
| Cl-4.9.3(Abrasion Resistance) |
- |
800 |
|
- |
| Cl-4.10(Toe Puff and Counter Stiffener) |
- |
100 |
|
- |
| Cl-4.11.1(Material) |
- |
100 |
|
- |
| Cl-4.11.2(Tear Strength) |
- |
500 |
|
- |
| Cl-4.12(Closing Thread) |
- |
400 |
|
- |
| Cl-4.13.2(Thickness) |
- |
100 |
|
- |
| Cl-4.13.3(Moulded Density) |
- |
400 |
|
- |
| Cl-4.13.4(Hardness) |
- |
400 |
|
- |
| Cl-4.13.5(Ageing Test) |
- |
500 |
|
- |
| Cl-4.13.6(Tear Strength) |
- |
500 |
|
- |
| Cl-4.13.7(Abrasion Resistance) |
- |
800 |
|
- |
| Cl-4.13.8(Flexing Resistance) |
- |
600 |
|
- |
| Cl-4.14(Eyelet) |
- |
500 |
|
- |
| Cl-4.15.2(Breaking Load and Tag Retention) |
- |
500 |
|
- |
| Cl-7(Marking) |
- |
100 |
|
- |
| Cl.4.5.8(Energy Absorption of Seat Region) |
- |
600 |
|
- |
| Cl- 4.5.3.1(Upper-outsole bond strength) |
- |
600 |
|
- |
| Cl.4.5.3.2(Interlayer bond strength) |
- |
600 |
|
- |
|
31 Dec, 2026 |
- - |
| 2042 |
MSME TESTING CENTRE, CHENNAI
| 6106704
| IS 17043 : Part 2 (2024) |
Shoes: Shoes for General Purpose |
- |
15500 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl-5.1(Shape and Design) |
- |
0 |
|
- |
| Cl-5.3(Material) |
- |
0 |
|
- |
| Cl-5.4, Table-1 (i)(Bond strength, N/mm, Min Upper to outsole, N/mm, Min) |
- |
600 |
|
- |
| Cl-5.4, Table-1 (ii)(Inter layer bond strength,= N/mm, Min Midsole to outsole, N/mm, Min) |
- |
600 |
|
- |
| Cl-5.4, Table-1 (v)(Slip resistance, Cof(1), Min dry and wet* (quarry tile)) |
- |
1200 |
|
- |
| Cl-5.4, Table-1 (vi)(Attachment strength of strap and buckle/D-ring N) |
- |
500 |
|
- |
| Cl-5.4, Table-1 (vii)(Attachment strength of strap and velcro , N, Min) |
- |
500 |
|
- |
| Cl-5.4, Table-1 (viii)(Strength of eyelet attachment, N, Min) |
- |
400 |
|
- |
| Cl-5.4, Table-1 (ix)(Heel pull off strength, N, Min) |
- |
500 |
|
- |
| Cl-5.4, Table-1 (x)(Top piece attachment strength, N, Min) |
- |
500 |
|
- |
| Cl-5.4, Table-1 (xi)(Seam strength, N/mm, Min) |
- |
500 |
|
- |
| Cl-5.4, Table-1 (xii)(Whole shoe topline strength, N, Min) |
- |
500 |
|
- |
| Cl-5.4, Table-1 (xiii)(Abrasion resistance (volume loss), mm3) |
- |
800 |
|
- |
| Cl-5.4, Table-1 (xv)(Lead content (as Pb) ppm, Max) |
- |
400 |
|
- |
| Cl-5.4, Table-1 (xvi)(Hydrolysis resistance,(4) cut growth at 150 000 flexes, mm, Max) |
- |
2000 |
|
- |
| Cl-6.1.1, Table-2 (i)(Tear trength, N) |
- |
500 |
|
- |
| Cl-6.1.1, Table-2 (ii)(Flexing resistance, flexes) |
- |
600 |
|
- |
| Cl-6.1.1, Table-2 (iii)(Colour fastness to rubbing (marring/staining)) |
- |
500 |
|
- |
| Cl-6.1.1, Table-2 (iv)(Colour fastness to water (contact method- multi fabrics)) |
- |
500 |
|
- |
| Cl-6.1.1, Table-2 (v)(Water vapour permeability,mg/cm2 /h, Min Water vapour coefficient,mg/cm2 , Min) |
- |
800 |
|
- |
| Cl-6.1.1, Table-2 (vi)(Stitch tear strength, N/mm, Min) |
- |
500 |
|
- |
| Cl-6.1.1, Table-2 (vii)(Abrasion resistance) |
- |
800 |
|
- |
| Cl-6.1.2, Table-3 (i)(Colour fastness to light, Marring, Min) |
- |
1000 |
|
- |
| Cl-6.1.2, Table-3 (ii)(Water resistance) |
- |
500 |
|
- |
| Cl-6.1.3, Table- 4 (i)(Breaking strength, N/mm, Min Elongation at break, percent, Min) |
- |
500 |
|
- |
| Cl-6.1.3, Table- 4 (ii)(Tear Strength, N, Min) |
- |
500 |
|
- |
| Cl-6.1.3, Table- 4 (iii)(Strength at needle perforation, N/mm, Min) |
- |
500 |
|
- |
| Cl-6.1.3, Table- 4 (iv)(Flexing resistance, Flexes) |
- |
600 |
|
- |
| Cl-6.1.3, Table- 4 (v)(Water vapour permeability (WVP), mg/cm2 /h, Min) |
- |
800 |
|
- |
| Cl-6.1.3, Table- 4 (vi)(Hydrolysis resistance) |
- |
2000 |
|
- |
| Cl-6.1.3, Table- 4 (vii)(Abrasion resistance) |
- |
800 |
|
- |
| Cl-6.1.4, Table-5 (i)(Colour fastness to light, Marring, Min) |
- |
1000 |
|
- |
| Cl-6.2, Table-6 (i)(Tear strength, N, Min) |
- |
500 |
|
- |
| Cl-6.2, Table-6 (ii)(Abrasion resistance) |
- |
800 |
|
- |
| Cl-6.2, Table-6 (iii)(Colour fastness rubbing (crocking)) |
- |
500 |
|
- |
| Cl-6.2, Table-6 (iv)(Colour fastness to perspiration) |
- |
500 |
|
- |
| Cl-6.2, Table-6 (v)(Water vapour permeability, mg/cm2 /h, Min Water vapour coefficient, mg/cm2, Min) |
- |
800 |
|
- |
| Cl-6.3, Table-7 (i)(Flexing index, Min) |
- |
500 |
|
- |
| Cl-6.3, Table-7 (ii)(Abrasion resistance at 400 cycles) |
- |
400 |
|
- |
| Cl-6.3, Table-7 (iii)(Water absorption, mg/cm2 , Min
Water desorption, percent, Min) |
- |
600 |
|
- |
| Cl-6.4, Table-8 (i)(Thickness, mm, Min) |
- |
100 |
|
- |
| Cl-6.4, Table-8 (ii)(Abrasion resistance) |
- |
800 |
|
- |
| Cl-6.4, Table-8 (iii)(Water absorption, mg/cm2 , Min
Water desorption, percent, Min) |
- |
600 |
|
- |
| Cl-6.5.1, , Table-9 (i)(Flexing resistance) |
- |
600 |
|
- |
| Cl-6.5.1, , Table-9 (ii)(Hydrolysis resistance, cut growth at 150 000 flexes, mm, Max) |
- |
2000 |
|
- |
| Cl-6.5.1, , Table-9 (iii)(Compression set, percent, Max) |
- |
400 |
|
- |
| Cl-6.5.2.2, Table-11 (i)(Water resistance, (dynamic method)) |
- |
0 |
|
- |
| Cl-6.5.2.3, Table-12 (i)(Hardness, Min) |
- |
400 |
|
- |
| Cl-6.5.2.3, Table-12 (ii)(Density, g/cm3 , Max) |
- |
400 |
|
- |
| Cl-6.5.2.3, Table-12 (iii)(Abrasion resistance (volume loss), mm3 , Max) |
- |
800 |
|
- |
| Cl-6.5.2.3, Table-12 (iv)(Bond Strength between Rubber top-lift and adjacent material, N/mm, Min) |
- |
600 |
|
- |
| Cl-6.6, Table-13 (i)(Heat shrinkage, percent, Max) |
- |
400 |
|
- |
| Cl-6.6, Table-13 (ii)(Split tear strength, kg/25 mm, Min) |
- |
500 |
|
- |
| Cl-6.6, Table-13 (iii)(Compression set, percent, Max) |
- |
400 |
|
- |
| Cl-6.7, Table-14 (i)(Hardness, N) |
- |
500 |
|
- |
| Cl-6.7, Table-14 (ii)(Resilience, percent) |
- |
600 |
|
- |
| Cl-6.7, Table-14 (iii)(Moisture resistance, percent) |
- |
700 |
|
- |
| Cl-6.10, Table-17 (i)(Lace breaking strength, N, Min) |
- |
500 |
|
- |
| Cl-6.10, Table-17 (ii)(Lace tag strength, N, Min) |
- |
500 |
|
- |
| Cl-6.10, Table-17 (iii)(Lace to lace abrasion resistance, cycles) |
- |
600 |
|
- |
| Cl-6.10, Table-17 (iv)(Colour fastness to water for lace contact methodstaining Gray scale rate , Min) |
- |
500 |
|
- |
| Cl-6.10, Table-17 (v)(Corrosion resistance) |
- |
400 |
|
- |
| Cl-6.11, Table-18 (i)(Fatigue resistance, cycles, Min) |
- |
700 |
|
- |
| Cl-6.11, Table-18 (ii)(Security of puller attachment strength, N, Min) |
- |
500 |
|
- |
| Cl-6.11, Table-18 (iii)(Lateral load, N, Min) |
- |
500 |
|
- |
| Cl-6.11, Table-18 (iv)(End attachment strength, N, Min) |
- |
500 |
|
- |
| Cl-8.1(Marking) |
- |
100 |
|
- |
| Cl-6.7, Table-14 (iv)(Area shape retention, percent
(a) Initial, Min
b) After 10 collapsing load, Min) |
- |
600 |
|
- |
| Cl-6.7, Table-14 (v)(Adhesion strength, N/mm) |
- |
600 |
|
- |
| Cl-6.8, Table-15 (i)(Peel strength, N/mm
a) Initial, Min
b) After 5 000 wear cycles, Min) |
- |
800 |
|
- |
| Cl- 6.8, Table-15 (ii)(a) Shear strength, kPa
b) Initial, Min) |
- |
800 |
|
- |
| Cl- 6.9, Table-16 (i)(Limit of useful extension, percent,
Min) |
- |
500 |
|
- |
| Cl- 6.9, Table-16 (ii)(Needle strength, N/mm, Min) |
- |
500 |
|
- |
| Cl-5.4, Table-1 (iii)(Whole shoe flexing, flexes) |
- |
1000 |
|
- |
|
31 Dec, 2026 |
- - |
| 2043 |
MSME TESTING CENTRE, CHENNAI
| 6106704
| IS 10702 (2023) |
Hawai Chappal-Specification |
- |
4100 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.1(Material) |
- |
0 |
|
OK |
| 4.2(Length) |
- |
0 |
|
OK |
| 4.4 , Table No. 1 , i)(Density) |
- |
300 |
|
OK |
| 4.4 , Table No. 1 , ii)(2Compression set at constant stress) |
- |
300 |
|
OK |
| 4.4 , Table No. 1 , iii)(3Split tear strength) |
- |
300 |
|
OK |
| 4.4 , Table No. 1 , iv)("Shrinkage at 50 ºC ± 1 ºC for 24 h for polymeric material,
Shrinkage at 100 ºC ± 1 ºC for 1 h for rubber") |
- |
300 |
|
OK |
| 4.4 , Table No. 1 , v)(5Abrasion resistance at applied force) |
- |
300 |
|
OK |
| 4.4 , Table No. 1 , vi)(Flexing resistance: Maximum cut growth at 50 000 flexes) |
- |
300 |
|
OK |
| 4.4 , Table No. 1 , vii)(7 Hydrolysis resistance, Maximum cut growth at 50 000 flexes) |
- |
300 |
|
OK |
| 4.4 , Table No . 2 , i)(Density , Solid strap, Cellular strap) |
- |
300 |
|
OK |
| 4.4 , Table No . 2 , ii)("Breaking strength , Strap to strap and
Toe portion to strap , Elongation at break") |
- |
300 |
|
OK |
| 4.4 , Table No . 2 , iii)(Minimum cross section of the stud) |
- |
0 |
|
OK |
| 4.4 , Table No . 2 , iv)(Stud bolt) |
- |
0 |
|
OK |
| 4.4 , Table No . 3 , i)(Toe post attachment strength) |
- |
300 |
|
OK |
| 4.4 , Table No . 3 , iii)(Inter layer bond strength) |
- |
300 |
|
OK |
| 5(CHEMICAL REQUIREMENT FOR HAWAI CHAPPAL) |
- |
0 |
|
OK |
| 6(MARKING AND PACKING) |
- |
0 |
|
OK |
| Cl. No.5.1,Table no.1 of IS 17011(v)(Dimethyl fumarate (DMFU)) |
- |
0 |
|
OK |
| Cl. No.5.1,Table no.1 of IS 17011(viii)(Organotin compounds) |
- |
0 |
|
OK |
| Cl. No.5.1,Table no.1 of IS 17011(xi)(Phthalates (each individual phthalate)) |
- |
0 |
|
OK |
| Cl.No. 5.2(lead content) |
- |
400 |
|
OK |
| 4.4 , Table No . 3 , ii)(Attachment strength of rear strap) |
- |
300 |
|
OK |
| 4.3(Thickness) |
- |
100 |
|
OK |
| Cl-4 ((Amendment No-1)(Category And Type) |
- |
0 |
|
OK |
| Cl-4.4, Table -1 S. No-1 (i) (Amendment No-1)(Compression set at constant stress) |
- |
400 |
|
OK |
| Cl-4.4, Table -1 S. No-1 (ii) (Amendment No-1)(Split tear strength) |
- |
500 |
|
OK |
| Cl-4.4, Table -1 S. No-1 (iii) (a)(Amendment No-1)("Shrinkage at Shrinkage at 50 °C ± 1 °C for 2 h for polymeric material, percent, Max
") |
- |
400 |
|
OK |
| Cl-4.4, Table -1 S. No-1 (iii)(b) (Amendment No-1)(Shrinkage at 100 °C ± 1 °C for 1 h for rubber, percent, Max) |
- |
400 |
|
OK |
| Cl-4.4, Table -1 S. No-1 (iv) (Amendment No-1)(Abrasion resistance at applied force) |
- |
800 |
|
OK |
| Cl-4.4, Table -1 S. No-1 (v) (Amendment No-1)(Flexing resistance: Maximum cut growth,) |
- |
600 |
|
OK |
| Cl-4.4, Table -1 S. No-1 (vi) (Amendment No-1)(Hydrolysis resistance:Maximum cut growth) |
- |
2000 |
|
OK |
| Cl-4.4, Table -1 S. No-1 (viii) (Amendment No-1)("Lead content (as Pb),
ppm, Max") |
- |
400 |
|
OK |
| Cl-4.4, Table -2 S. No-1 (i), a (Amendment No-1)("Breaking strength for Strap to strap
1-Solid strap
2-Cellular strap") |
- |
500 |
|
OK |
| Cl-4.4, Table -2 S. No-1 (i), b (Amendment No-1)("Breaking strength for Toe portion to strap
1-Solid strap
2-Cellular strap") |
- |
500 |
|
OK |
| Cl-4.4, Table -2 S. No-1 (i), c (Amendment No-1)("Elongation at break , percent, Min
1-Solid strap
2-Cellular strap") |
- |
500 |
|
OK |
| Cl-4.4, Table -2 S. No-1 (iii), (Amendment No-1)(Lead content (as Pb), in ppm, Max) |
- |
400 |
|
OK |
| Cl-4.4, Table -3 S. No-1 (i), (Amendment No-1)(Toe post attachment strength) |
- |
500 |
|
OK |
| Cl-4.4, Table -3 S. No-1 (ii), (Amendment No-1)(Attachment strength of rear strap) |
- |
500 |
|
OK |
| Cl-4.4, Table -3 S. No-1 (iii), (Amendment No-1)(Inter layer bond strength) |
- |
600 |
|
OK |
| Cl.4.4 - Table No 1 - Sl. No.-vii(pH- IS 1390:2022) |
- |
400 |
|
OK |
| Cl.4.4 - Table No 1 - Sl. No.-viii("Lead Content (as Pb) (applicable for PVC only)
- IS 12240 (Part 5) : 1988") |
- |
400 |
|
OK |
|
31 Dec, 2026 |
- - |
| 2044 |
MSME TESTING CENTRE, CHENNAI
| 6106704
| IS 15844 : Part 1 (2023) |
SPORTS FOOTWEAR PART -1 GENERAL PURPOSEFirst Revision |
- |
16800 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl No.4.1(Sampling and Conditioning) |
- |
0 |
|
- |
| Cl No.4.2(Construction) |
- |
0 |
|
- |
| Cl No.4.3(Whole Footwear) |
- |
0 |
|
- |
| 4.3.1(Insole) |
- |
0 |
|
- |
| 4.3.2(Toe spring height) |
- |
0 |
|
- |
| 4.3.3(Upper to Mid Sole/Out Sole Bond Performance) |
- |
0 |
|
- |
| 4.3.4("Upper to Composite Sole Bond Performance
(Applicable Only When the Sole is Composite)") |
- |
0 |
|
- |
| 4.3.5(Out Sole to Mid Sole (Multilayer) Bond Performance) |
- |
0 |
|
- |
| 4.3.6(Energy Absorption at Seat Region) |
- |
0 |
|
- |
| 4.3.7(Complete Shoe Flexing) |
- |
0 |
|
- |
| 4.3.9(Slip Resistance) |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , i) , a)(Flexing resistance, Dry condition) |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , i) , b)(Flexing resistance, Wet condition) |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , ii)(Tear strength (average force), Min, N) |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , iii) , a)("Colour fastness rubbing (To and fro) Grey scale rate, Min ,
Dry: (rubbing) Rating: (Marring and staining) ") |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , iii) , b)("Colour fastness rubbing (To and fro) Grey scale rate, Min ,
Wet: (rubbing) Rating: (Marring and staining)") |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , iv) , a)(Water vapour permeability, mg/cm2h, Min) |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , iv) , b)(Water vapour coefficient, mg/cm2 , Min) |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , v)(Stitch tear strength (double hole), N/mm, Min) |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , vi)("Colour fastness to light (Optional) Grey scale rate,
Min Rating: (Marring)") |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , i)(Breaking strength, N/mm, Min) |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , ii)(Elongation at break, percent Min) |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , iii)(Tear strength, N, Min For Fabric: For all other materials) |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , iv) , a)(Flexing resistance, Dry condition) |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , iv) , b)(Flexing resistance, ,Wet condition) |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , v) , a)(Water vapour permeability, mg/cm2h, Min) |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , v) , b)("Water vapour coefficient, mg/cm2 , Min
") |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , vi)(Hydrolysis resistance) |
- |
0 |
|
- |
| Cl No.4.4 , Table No. 2 , vii)(Bursting Strength, kg/cm2 , Min) |
- |
0 |
|
- |
| Cl No.4.5 , Table No. 3 , i)(Tear strength, N, Min) |
- |
0 |
|
- |
| Cl No.4.5 , Table No. 3 , ii)(Abrasion resistance, cycles) |
- |
0 |
|
- |
| Cl No.4.5 , Table No. 3 , iii)("Colour fastness to rubbing (crocking), Grey scale
rate with 10 rubs on dry or wet, Min") |
- |
0 |
|
- |
| Cl No.4.5 , Table No. 3 , iv)("Colour fastness to perspiration (contact method)
Grey scale rate, Min") |
- |
0 |
|
- |
| Cl No.4.5 , Table No. 3 , v) , a)(Water vapour permeability, mg/cm2h, Min) |
- |
0 |
|
- |
| Cl No.4.5 , Table No. 3 , v) , b)("Water vapour coefficient, mg/cm2 , Min
") |
- |
0 |
|
- |
| Cl No.4.6 , Table No. 4 , i)(Thickness, mm, Min) |
- |
0 |
|
- |
| Cl No.4.6 , Table No. 4 , ii)(Flexing index, Min) |
- |
0 |
|
- |
| Cl No.4.6 , Table No. 4 , iii)(Abrasion resistance, at 400 cycles) |
- |
0 |
|
- |
| Cl No.4.6 , Table No. 4 , iv) , a)(Water Absorption, mg/cm2 , Min) |
- |
0 |
|
- |
| Cl No.4.6 , Table No. 4 , iv) , b)(Water Desorption, percent, Min) |
- |
0 |
|
- |
| Cl No.4.7, Table No. 5 , i)(Thickness, mm, Min) |
- |
0 |
|
- |
| Cl No.4.7, Table No. 5 , ii)(Abrasion resistance, cycles) |
- |
0 |
|
- |
| Cl No.4.7, Table No. 5 , iii) , a)(Water Absorption, mg/cm2 , Min) |
- |
0 |
|
- |
| Cl No.4.7, Table No. 5 , iii) , b)(Water Desorption, percent, Min) |
- |
0 |
|
- |
| Cl No.4.8 , Table No. 6 , i)(Abrasion resistance (Volume loss), mm3 , Max) |
- |
0 |
|
- |
| Cl No.4.8 , Table No. 6 , ii)("Flexing resistance Belt Method at 90 diameter Mandrel
or
Bennewart method, cut growth, Max") |
- |
0 |
|
- |
| Cl No.4.8 , Table No. 6 , iii)("Hydrolysis resistance, cut growth after 150 000
flexes, in mm, Max") |
- |
0 |
|
- |
| Cl No.4.9 , Table No. 7 , i)(Compression set, percent, Max) |
- |
0 |
|
- |
| Cl No.4.9 , Table No. 7 , ii)(Split tear strength, kg/25 mm, Min) |
- |
0 |
|
- |
| Cl No.4.9 , Table No. 7 , iii)(Heat shrinkage, percent, Max) |
- |
0 |
|
- |
| Cl No.4.10 , Table No. 8 , i)(First dry collapsing load, hardness, N, Min) |
- |
0 |
|
- |
| Cl No.4.10 , Table No. 8 , ii)(Resilience, percent, Min) |
- |
0 |
|
- |
| Cl No.4.10 , Table No. 8 , iii)(Moisture resistance, percent, Min) |
- |
0 |
|
- |
| Cl No.4.10 , Table No. 8 , iv) , a)(Initial dry area shape retention, percent, Min) |
- |
0 |
|
- |
| Cl No.4.10 , Table No. 8 , iv) , b)(Area shape retention after 10th collapse, dry, percent, Min) |
- |
0 |
|
- |
| Cl No.4.11 , Table No. 9 , i)(Peel strength, N/mm, Min) |
- |
0 |
|
- |
| Cl No.4.11 , Table No. 9 , ii)(Shear strength, kPa , Min) |
- |
0 |
|
- |
| Cl No.4.12 , Table No. 10 , i)(Limit of useful extension, percent, Min) |
- |
0 |
|
- |
| Cl No.4.13 , Table No. 11 , i)(Breaking strength of lace, N, Min) |
- |
0 |
|
- |
| Cl No.4.13 , Table No. 11 , ii)(Lace tag strength, N, Min) |
- |
0 |
|
- |
| Cl No.4.13 , Table No. 11 , iii)(Lace to lace abrasion,) |
- |
0 |
|
- |
| Cl No.4.13 , Table No. 11 , iv)("Colour fastness to water
Gray Scale Rate, Min Rating") |
- |
0 |
|
- |
| Cl No.4.13 , Table No. 11 , v)(Strength of Buckle/Ski hook, N, Min) |
- |
0 |
|
- |
| Cl No.4.13 , Table No. 11 , vi)(Corrosion resistance) |
- |
0 |
|
- |
| Cl No . 5(MARKING AND PACKING) |
- |
0 |
|
- |
| Cl No . 4.14, Table no. 1 of IS 17011(iv)(Chromium (VI)) |
- |
0 |
|
- |
| Cl No . 4.14, Table no. 1 of IS 17011(x)(pH) |
- |
0 |
|
- |
| Clause 4.2 - 4.2.1(Construction) |
- |
0 |
|
- |
| Clause 4.2 - 4.2.2(Construction) |
- |
0 |
|
- |
| Clause 4.3 - 4.3.1(Whole Footwear) |
- |
0 |
|
- |
| Clause 4.3 - 4.3.2(Whole Footwear) |
- |
0 |
|
- |
| Clause 4.3 - 4.3.3(Upper to Mid Sole/Out Sole Bond Performance) |
- |
0 |
|
- |
| Clause 4.3 - 4.3.4(Upper to Composite Sole Bond Performance(Applicable Only When the Sole is Composite)) |
- |
0 |
|
- |
| Clause 4.3 - 4.3.5(Out Sole to Mid Sole (Multilayer) Bond) |
- |
0 |
|
- |
| Clause 4.3 - 4.3.7(Complete Shoe Flexing) |
- |
0 |
|
- |
| Clause 4.4, Table 1 ii)(Tear strength) |
- |
0 |
|
- |
| Clause 4.4, Table 1 iv)-a(Water Vapour Permeability) |
- |
0 |
|
- |
| Clause 4.4, Table 1 iv)-b(Water Vapour Coeffecient) |
- |
0 |
|
- |
| Clause 4.4, Table 1 v)(Stitch Tear Strength(Double Hole)) |
- |
0 |
|
- |
| Clause 4.4, Table 2 i)(Breaking Strength) |
- |
0 |
|
- |
| Clause 4.4, Table 2 ii)(Elongation at break) |
- |
0 |
|
- |
| Clause 4.4, Table 2 iii)(Tear strength) |
- |
0 |
|
- |
| Clause 4.4, Table 2 v)-a(Water Vapour Permeability) |
- |
0 |
|
- |
| Clause 4.4, Table 2 v)-b(Water Vapour Coeffecient) |
- |
0 |
|
- |
| Clause 4.5, Table 3 i)(Tear strength) |
- |
0 |
|
- |
| Clause 4.5, Table 3 ii)(Abrasion Resistance) |
- |
0 |
|
- |
| Clause 4.5, Table 3 v)-a(Water Vapour Permeability) |
- |
0 |
|
- |
| Clause 4.5, Table 3 v)-b(Water Vapour Coeffecient) |
- |
0 |
|
- |
| Clause 4.6, Table 4 i)(Thickness) |
- |
0 |
|
- |
| Clause 4.7, Table 5 ii)(Abrasion Resistance) |
- |
0 |
|
- |
| Clause 4.7, Table 5 iii)-a(Water Absorption) |
- |
0 |
|
- |
| Clause 4.7, Table 5 iii)-b(Water Desorption) |
- |
0 |
|
- |
| Clause 4.8, Table 6 i)(Abrasion Resistance) |
- |
0 |
|
- |
| Clause 4.8, Table 6 ii)(Flexing Resistance) |
- |
0 |
|
- |
| Clause 4.8, Table 6 iii)(Hydrolysis Resistance) |
- |
0 |
|
- |
| Clause 4.9, Table 7 ii)(Split Tear strength) |
- |
0 |
|
- |
| Clause 4.9, Table 7 iii)(Heat shrinkage) |
- |
0 |
|
- |
| Cl-5, Table -1 S. No-(i) (Amendment No-1)(Insole) |
- |
100 |
|
- |
| Cl-5, Table -1 S. No- (ii) (Amendment No-1)(Toe spring height) |
- |
200 |
|
- |
| Cl-5, Table -1 S. No- (iii) (Amendment No-1)("Bond performance
(a) Upper to sole/mid sole/composite sole
(b) Interlayer bond strength") |
- |
600 |
|
- |
| Cl-5, Table -1 S. No- (iv) (Amendment No-1)(Energy absorption at seat region) |
- |
600 |
|
- |
| Cl-5, Table -1 S. No- (v) (Amendment No-1)(Complete shoe flexing) |
- |
1000 |
|
- |
| Cl-5, Table -1 S. No- (vii) (Amendment No-1)(Slip resistance, coefficient of friction (COF),) |
- |
1200 |
|
- |
| Cl-5, Table -1 S. No- (viii) (Amendment No-1)("Abrasion resistance
a-Cellular sole
b-Solid sole") |
- |
800 |
|
- |
| Cl-5, Table -1 S. No- (xi) (Amendment No-1)(Hydrolysis resistance) |
- |
2000 |
|
- |
| Cl-5, Table -1 S. No- (xii) (Amendment No-1)(Lead content) |
- |
400 |
|
- |
| Cl-6, Table -2 S. No- (i) (Amendment No-1)(Tear strength) |
- |
500 |
|
- |
| Cl-6, Table -2 S. No- (ii) (Amendment No-1)("Colour fastness rubbing
a-Dry: (rubbing)
b-Wet: (rubbing)") |
- |
500 |
|
- |
| Cl-6, Table -2 S. No- (iii), a) (Amendment No-1)(Water vapour permeability) |
- |
800 |
|
- |
| Cl-6, Table -2 S. No- (iii), b) (Amendment No-1)(Water vapour coefficient) |
- |
800 |
|
- |
| Cl-6, Table -2 S. No- (iv),(Amendment No-1)(Stitch tear strength) |
- |
500 |
|
- |
| Cl-6, Table -2 S. No- (v),(Amendment No-1)(Colour fastness to light grey scale rate,) |
- |
700 |
|
- |
| Cl-6, Table -3 S. No- (i),(Amendment No-1)(Breaking strength, N/mm, Min) |
- |
500 |
|
- |
| Cl-6, Table -3 S. No- (ii),(Amendment No-1)("Elongation at break
a-Tighter direction
b-Stretch direction") |
- |
500 |
|
- |
| Cl-6, Table -3 S. No- (iii),(Amendment No-1)("Tear strength, N, Min
a) For fabric
b) For all other materials") |
- |
500 |
|
- |
| Cl-6, Table -3 S. No- (iv),(Amendment No-1)("Flexing resistance
a- Dry condition
b-Wet condition") |
- |
600 |
|
- |
| Cl-6, Table -3 S. No- (v), a (Amendment No-1)(Water vapour permeability) |
- |
800 |
|
- |
| Cl-6, Table -3 S. No- (v), b (Amendment No-1)(Water vapour coefficient) |
- |
800 |
|
- |
| Cl-6, Table -3 S. No- (vi), (Amendment No-1)(Hydrolysis resistance) |
- |
2000 |
|
- |
| Cl-6, Table -3 S. No- (vii), (Amendment No-1)(Bursting strength) |
- |
500 |
|
- |
| Cl-6, Table -4 S. No- (i),(Amendment No-1)(Tear strength, N, Min) |
- |
500 |
|
- |
| Cl-6, Table -4 S. No- (ii),(Amendment No-1)("Abrasion resistance, cycles
a- Dry condition
b-Wet condition") |
- |
700 |
|
- |
| Cl-6, Table -4 S. No- (iii),(Amendment No-1)(Colour fastness to rubbing , grey scale rate with 10 rubs on dry or wet, Min) |
- |
500 |
|
- |
| Cl-6, Table -4 S. No- (iv),(Amendment No-1)(Colour fastness to perspiration) |
- |
500 |
|
- |
| Cl-6, Table -4 S. No- (v), a (Amendment No-1)(Water vapour permeability) |
- |
800 |
|
- |
| Cl-6, Table -4 S. No- (v), b (Amendment No-1)(Water vapour coefficient) |
- |
800 |
|
- |
| Cl-6, Table -5 S. No- (i), (Amendment No-1)(Thickness, mm, Min) |
- |
100 |
|
- |
| Cl-6, Table -5 S. No-(ii), (Amendment No-1)(Flexing index, Min) |
- |
400 |
|
- |
| Cl-6, Table -5 S. No-(iii), (Amendment No-1)(Abrasion resistance,) |
- |
400 |
|
- |
| Cl-6, Table -5 S. No- (iv), a (Amendment No-1)(Water absorption) |
- |
600 |
|
- |
| Cl-6, Table -5 S. No- (iv), b (Amendment No-1)(Water desorption, percent) |
- |
600 |
|
- |
| Cl-6, Table -6 S. No- (i), (Amendment No-1)(Thickness, mm, Min) |
- |
250 |
|
- |
| Cl-6, Table -6 S. No- (ii), (Amendment No-1)("Abrasion resistance, cycles
a- Dry condition
b-Wet condition") |
- |
800 |
|
- |
| Cl-6, Table -6 S. No- (iii),a (Amendment No-1)(Water absorption) |
- |
600 |
|
- |
| Cl-6, Table -6 S. No- (iv), b (Amendment No-1)(Water desorption, percent) |
- |
600 |
|
- |
| Cl-6, Table -7 S. No- (i), (Amendment No-1)(Flexing resistance (Belt method or Bennewart method)) |
- |
700 |
|
- |
| Cl-6, Table -7 S. No- (ii), (Amendment No-1)(Hydrolysis resistance, cut growth after flexes) |
- |
2000 |
|
- |
| Cl-6, Table -8 S. No- (i), (Amendment No-1)("Compression set, percent, Max
a) For EVA
b) For all other materials") |
- |
400 |
|
- |
| Cl-6, Table -8 S. No- (ii), (Amendment No-1)(Split tear strength) |
- |
500 |
|
- |
| Cl-6, Table -8 S. No- (iii), (Amendment No-1)(Heat shrinkage) |
- |
400 |
|
- |
| Cl-6, Table -9 S. No- (i), (Amendment No-1)(First dry collapsing load, hardness) |
- |
600 |
|
- |
| Cl-6, Table -9 S. No- (ii), (Amendment No-1)(Resilience, percent) |
- |
600 |
|
- |
| Cl-6, Table -9 S. No- (iii), (Amendment No-1)(Moisture resistance) |
- |
700 |
|
- |
| Cl-6, Table -9 S. No- (iv), a (Amendment No-1)(Initial dry area shape retention) |
- |
600 |
|
- |
| Cl-6, Table -9 S. No- (iv), b (Amendment No-1)(Area shape retention after 10th collapse) |
- |
600 |
|
- |
| Cl-6, Table -10 S. No- (i), (Amendment No-1)("Peel strength
a) Initial
b) After 5 000 wear cycles") |
- |
800 |
|
- |
| Cl-6, Table -10 S. No- (ii), (Amendment No-1)("Shear strength
a) Initial
b) After 5 000 wear cycles") |
- |
800 |
|
- |
| Cl-6, Table -11 S. No- (i), (Amendment No-1)(Limit of useful extension) |
- |
500 |
|
- |
| Cl-6, Table -12 S. No- (i), (Amendment No-1)(Breaking strength of lace) |
- |
500 |
|
- |
| Cl-6, Table -12 S. No- (ii), (Amendment No-1)(Lace tag strength) |
- |
500 |
|
- |
| Cl-6, Table -12 S. No- (iii), (Amendment No-1)(Lace to lace abrasion) |
- |
600 |
|
- |
| Cl-6, Table -12 S. No- (iv), (Amendment No-1)(Colour fastness to water (for lace) (contact method)) |
- |
500 |
|
- |
| Cl-6, Table -12 S. No- (iv), (Amendment No-1)(Colour fastness to water (for lace) (contact method)) |
- |
500 |
|
- |
| Cl-6, Table -12 S. No (v), (Amendment No-1)(Strength of buckle/ski hook) |
- |
500 |
|
- |
| Cl-6, Table -12 S. No- (vi), (Amendment No-1)(Corrosion resistance) |
- |
400 |
|
- |
| Clause 4.6, Table 4 ii)(Abrasion Resistance) |
- |
500 |
|
- |
| Clause 4.6, Table 4 iv)-a(Water Absorption) |
- |
600 |
|
- |
| Clause 4.6, Table 4 iv)-b(Water Desorption) |
- |
600 |
|
- |
| Clause 4.7, Table 5 i)(Thickness) |
- |
250 |
|
- |
|
31 Dec, 2026 |
- - |
| 2045 |
MSME TESTING CENTRE, CHENNAI
| 6106704
| IS 15844 : Part 2 (2023) |
SPORTS FOOTWEAR PART -2 PERFORMANCE SPORTS FOOTWEAR |
- |
18800 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4(SAMPLING AND CONDITIONING) |
- |
0 |
|
- |
| 5(DESIGN) |
- |
0 |
|
- |
| 6(SIZE AND FITTINGS) |
- |
0 |
|
- |
| 7.1.1(Whole Footwear) |
- |
0 |
|
- |
| 7.1.2(Upper to Mid Sole/Out Sole Bond Performance) |
- |
600 |
|
- |
| 7.1.3("Upper to Composite Sole Bond Performance
(Applicable Only When the Sole is Composite)") |
- |
600 |
|
- |
| 7.1.4(Out Sole to Mid Sole (Multilayer) Bond Performance) |
- |
600 |
|
- |
| 7.1.5(Energy Absorption at Seat Region) |
- |
600 |
|
- |
| 7.1.6(Complete Shoe Flexing) |
- |
1000 |
|
- |
| 7.1.8(Slip Resistance) |
- |
1200 |
|
- |
| 7.1.9(Heel Drop) |
- |
100 |
|
- |
| 7.2 , Table No. 2 , i)(Flexing resistance) |
- |
600 |
|
- |
| 7.2 , Table No. 2 , ii)(Tear strength (average force)) |
- |
500 |
|
- |
| 7.2 , Table No. 2 , iii)("Colour fastness rubbing (To and fro) Grey scale rate
Dry: (rubbing) Rating: (Marring and staining) ") |
- |
500 |
|
- |
| 7.2 , Table No. 2 , iv) ,a)(Water vapour permeability) |
- |
800 |
|
- |
| 7.2 , Table No. 2 , iv) ,b)(Water vapour coefficient) |
- |
800 |
|
- |
| 7.2 , Table No. 2 , v)(Stitch tear strength (double hole)) |
- |
500 |
|
- |
| 7.2 , Table No. 2 , vi)("Colour fastness to light (Optional) Grey scale rate,
Rating: (Marring)") |
- |
700 |
|
- |
| 7.2 , Table No. 2 , vii)(Tensile strength) |
- |
500 |
|
- |
| 7.2 , Table No. 2 , viii)(Elongation at break,) |
- |
500 |
|
- |
| 7.2 , Table No. 2 , ix)("Water penetration and water absorption after 60 Minutes
Water absorption %, Max Water penetration Gms, Max") |
- |
400 |
|
- |
| 7.2 , Table No. 2 , x)(Abrasion test (for unlined upper)) |
- |
700 |
|
- |
| 7.2 , Table No. 3 , i)(Breaking strength
"As per Method 1 of IS 7016 (Part 2)/
ISO 1421 : 2016 or ISO 17706") |
- |
500 |
|
- |
| 7.2 , Table No. 3 , ii)(Elongation at break) |
- |
500 |
|
- |
| 7.2 , Table No. 3 , iii)(Tear strength, N, Min For Fabric: For all other materials) |
- |
500 |
|
- |
| 7.2 , Table No. 3 , iv)(Strength at needle perforation) |
- |
500 |
|
- |
| 7.2 , Table No. 3 , v)("Flexing resistance, no crack/damage to coating/ lamination
/ upper material till prescribed cycles") |
- |
600 |
|
- |
| 7.2 , Table No. 3 , vi) , a)(Water vapour permeability,) |
- |
800 |
|
- |
| 7.2 , Table No. 3 , vi) , b)("Water vapour coefficient,
") |
- |
800 |
|
- |
| 7.2 , Table No. 3 , vii)(Hydrolysis resistance) |
- |
2000 |
|
- |
| 7.2 , Table No. 3 , viii)(Colour fastness to light grey scale rate) |
- |
700 |
|
- |
| 7.2 , Table No. 3 , ix)(Bursting Strength,) |
- |
500 |
|
- |
| 7.3 , Table No. 4 , i)(Tear strength,) |
- |
500 |
|
- |
| 7.3 , Table No. 4 , ii)(Abrasion resistance, cycles) |
- |
500 |
|
- |
| 7.3 , Table No. 4 , iii)("Colour fastness to rubbing (crocking), Grey scale
rate with 10 rubs on dry or wet, ") |
- |
500 |
|
- |
| 7.3 , Table No. 4 , iv)("Colour fastness to perspiration (contact method)
Grey scale rate, ") |
- |
500 |
|
- |
| 7.3 , Table No. 4 , v) , a)(Water vapour permeability,) |
- |
800 |
|
- |
| 7.3 , Table No. 4 , v) , b)("Water vapour coefficient,
"
As per IS 15298 (Part 1)) |
- |
800 |
|
- |
| 7.4 , Table No. 5 , i)(Thickness) |
- |
250 |
|
- |
| 7.4 , Table No. 5 , ii)(Flexing index) |
- |
500 |
|
- |
| 7.4 , Table No. 5 , iii)(Abrasion resistance, at 400 cycles) |
- |
400 |
|
- |
| 7.4 , Table No. 5 , iv) , a)(Water Absorption,) |
- |
600 |
|
- |
| 7.4 , Table No. 5 , iv) , b)(Water Desorption) |
- |
600 |
|
- |
| 7.5 , Table No. 6 , i)(Thickness) |
- |
250 |
|
- |
| 7.5 , Table No. 6 , ii)(Abrasion resistance, cycles
As per IS 15298 (Part 1)) |
- |
700 |
|
- |
| 7.5 , Table No. 6 , iii) , a)(Water Absorption) |
- |
600 |
|
- |
| 7.5 , Table No. 6 , iii) , b)(Water Desorption) |
- |
600 |
|
- |
| 7.5 , Table No. 6 , iv)(Heat resistance shrinkage linear) |
- |
400 |
|
- |
| 7.6 , Table No. 7 , i)(Abrasion resistance (volume loss)) |
- |
800 |
|
- |
| 7.6 , Table No. 7 , ii)(Flexing resistance) |
- |
700 |
|
- |
| 7.6 , Table No. 7 , iii)(Hydrolysis resistance, cut growth after 1 50 000 flexes) |
- |
2000 |
|
- |
| 7.6 , Table No. 7 , iv)(Tear strength) |
- |
500 |
|
- |
| 7.6 , Table No. 7 , v)(Tensile strength) |
- |
500 |
|
- |
| 7.6 , Table No. 7 , vi)(Elongation at break) |
- |
500 |
|
- |
| 7.6 , Table No. 7 , vii)(Compression set) |
- |
300 |
|
- |
| 7.7 , Table No. 8 , i)(Compression set) |
- |
400 |
|
- |
| 7.7 , Table No. 8 , ii)(Split tear strength,) |
- |
500 |
|
- |
| 7.7 , Table No. 8 , iii)(Heat shrinkage,) |
- |
400 |
|
- |
| 7.7 , Table No. 8 , iv)(Elongation at break,) |
- |
500 |
|
- |
| 7.8 , Table No. 9 , i)(First dry collapsing load, hardness) |
- |
600 |
|
- |
| 7.8 , Table No. 9 , ii)(Resilience) |
- |
600 |
|
- |
| 7.8 , Table No. 9 , iii)(Moisture resistance) |
- |
700 |
|
- |
| 7.8 , Table No. 9 , iv) , a)(Initial dry area shape retention) |
- |
600 |
|
- |
| 7.8 , Table No. 9 , iv) , b)(Area shape retention after 10th collapse, dry) |
- |
600 |
|
- |
| 7.8 , Table No. 9 , v)(Peel strength) |
- |
800 |
|
- |
| 7.9 , Table No. 10 , i)(Peel strength) |
- |
800 |
|
- |
| 7.9 , Table No. 10 , ii)(Shear strength) |
- |
800 |
|
- |
| 7.10 , Table No. 11 , i)(Limit of useful extension,) |
- |
500 |
|
- |
| 7.10 , Table No. 11 , ii)(Needle strength,) |
- |
500 |
|
- |
| 7.11 , Table No. 12 , i)(Breaking strength of lace,) |
- |
500 |
|
- |
| 7.11 , Table No. 12 , ii)(Lace tag strength,) |
- |
500 |
|
- |
| 7.11 , Table No. 12 , iii)(Lace to lace abrasion,) |
- |
600 |
|
- |
| 7.11 , Table No. 12 , iv)("Colour fastness to water
Gray Scale Rate") |
- |
500 |
|
- |
| 7.11 , Table No. 12 , v)(Strength of Buckle/Ski hook) |
- |
500 |
|
- |
| 7.11 , Table No. 12 , vi)(Corrosion resistance) |
- |
400 |
|
- |
| 8(MARKING AND PACKING) |
- |
100 |
|
- |
| 7.12, Table no. 1 of IS 17011,(iv)(Chromium (VI)) |
- |
600 |
|
- |
| 7.12, Table no. 1 of IS 17011,(x)(pH) |
- |
400 |
|
- |
| 7.12.2 (Amendment 1)(Lead content) |
- |
400 |
|
- |
|
31 Dec, 2026 |
- - |
| 2046 |
MSME TESTING CENTRE, CHENNAI
| 6106704
| IS 17012 (2018) |
High ankle tactical boots with pu - Rubber sole - Specification |
- |
12900 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.16.2(Breaking Strength of lace ) |
- |
500 |
|
- |
| 4.16.1(Length of lace ) |
- |
100 |
|
- |
| 4.15(D-ring & Hooks ) |
- |
0 |
|
- |
| 6.1(Resistance to Fuel Oil) |
- |
500 |
|
- |
| 4.14.9(Resistance to hot contact ) |
- |
500 |
|
- |
| 4.14.8(Flexing resistance ) |
- |
600 |
|
- |
| 4.14.7(Ageing test) |
- |
500 |
|
- |
| 4.14.6(Hardness (IRHD)) |
- |
400 |
|
- |
| 4.14.5(Abrasion resistance ) |
- |
800 |
|
- |
| 4.14.4(Tear Strength) |
- |
500 |
|
- |
| 4.14.3(Sole Density ) |
- |
400 |
|
- |
| 4.14.2(Thickness) |
- |
250 |
|
- |
| 4.14.1(Material) |
- |
0 |
|
- |
| 4.13(Breaking Strength of thread ) |
- |
500 |
|
- |
| 4.12.2(Tear Strength) |
- |
500 |
|
- |
| 4.12.1(Thickness ) |
- |
250 |
|
- |
| 4.11.2(Tear Strength) |
- |
500 |
|
- |
| 4.11.1(Thickness ) |
- |
250 |
|
- |
| 4.10.3(Water absorption & desorption percent) |
- |
600 |
|
- |
| 4.10.2(Abrasion resistance ) |
- |
700 |
|
- |
| 4.10.1(Material) |
- |
0 |
|
- |
| 4.9.3(Water absorption & desorption percent) |
- |
600 |
|
- |
| 4.9.2(Abrasion resistance ) |
- |
400 |
|
- |
| 4.9.1(Thickness) |
- |
250 |
|
- |
| 4.8(Thickness Toe puff & counter stiffener) |
- |
250 |
|
- |
| 4.7.5(Water Vapour permeability & coefficient ) |
- |
800 |
|
- |
| 4.7.4(Abrasion resistance ) |
- |
700 |
|
- |
| 4.7.3(Tear Strength) |
- |
500 |
|
- |
| 4.7.2(Material Counter & Tongue) |
- |
0 |
|
- |
| 4.7.1(Material vamp & Quarter) |
- |
0 |
|
- |
| 4.6.2(Tear Strength) |
- |
500 |
|
- |
| 4.6.1(Thickness ) |
- |
250 |
|
- |
| 4.5.8(Energy absorption of seat region ) |
- |
600 |
|
- |
| 4.5.7(Cold Insulation of sole complex) |
- |
800 |
|
- |
| 4.5.6(Heat Insulation of sole Complex) |
- |
700 |
|
- |
| 4.5.5(Antistatic test) |
- |
500 |
|
- |
| 4.5.4(Slip Resitance) |
- |
1200 |
|
- |
| 4.5.3.2(Interayer bond strength) |
- |
600 |
|
- |
| 4.5.3.1(Upper/outsole bond strength) |
- |
600 |
|
- |
| 4.5.2(Ergonomic Feature) |
- |
0 |
|
- |
| 4.5.1(Construction) |
- |
0 |
|
- |
| 4.4(Height of upper ) |
- |
200 |
|
- |
| 4.3.2(Weight) |
- |
100 |
|
- |
| 4.3.1(Size) |
- |
0 |
|
- |
| 4.2(Design ) |
- |
0 |
|
- |
| Cl. 6, Cl.6.1, 6.1.1 & 6.1.2, 8.6 of IS 15298 part 1,ISO 1817,ISO 4643,(Resistance to fuel oil) |
- |
500 |
|
- |
| 8, 8.1, 8.2, 8.2.1(Marking) |
- |
100 |
|
- |
| 9(Information to be Supplied) |
- |
0 |
|
- |
| Cl.4.6.4(Water Penetration and Water Absorption) |
- |
500 |
|
- |
| Cl. 6, Cl.6.1, 6.1.1 & 6.1.2,(Resistance to fuel oil) |
- |
500 |
|
- |
| 4.6.3(Water Penetration and water absorption ) |
- |
500 |
|
- |
| CL.8,8.1, 8.2,8.2.1(Marking) |
- |
100 |
|
- |
| Cl.9,(Information to be Supplied) |
- |
0 |
|
- |
|
31 Dec, 2026 |
- - |
| 2047 |
MSME TESTING CENTRE, CHENNAI
| 6106704
| IS 15298 : Part 2 (2024) |
Personal Protective Equipment Part 2 Safety Footwear (ISO 20345 : 2021, MOD) (Third Revision) |
- |
15700 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl 5.2(Design) |
- |
0 |
|
- |
| Cl 5.2.2, Table 4(" Height of upper
") |
- |
200 |
|
- |
| Cl 5.2.3(Heel area) |
- |
100 |
|
- |
| Cl 5.3.1.1(Construction of whole footwear) |
- |
100 |
|
- |
| Cl 5.3.1.2(Upper/outsole bond strength) |
- |
600 |
|
- |
| Cl 5.3.2.1(Toe protection - general) |
- |
0 |
|
- |
| Cl 5.3.2.2(Internal length) |
- |
100 |
|
- |
| Cl 5.3.2.3(Width of toecap flange) |
- |
100 |
|
- |
| Cl 5.3.2.4.1(Corrosion resistance of Class I footwear and hybrid mounted footwear) |
- |
400 |
|
- |
| Cl 5.3.2.4.2(Corrosion resistance of Class II and hybrid moulded footwear) |
- |
0 |
|
- |
| Cl 5.3.2.5(Behaviour of toecaps (thermal and chemical) of Corrosion resistance) |
- |
0 |
|
- |
| Cl 5.3.2.6(Impact resistance) |
- |
600 |
|
- |
| Cl 5.3.2.7(Compression resistance) |
- |
500 |
|
- |
| Cl 5.3.3(Leak proofness) |
- |
500 |
|
- |
| Cl 5.3.4("Specific ergonomic features
") |
- |
100 |
|
- |
| Cl 5.3.5.2, Table 7(Slip resistance on ceramic tile floor with sodium lauryl sulphate (NaLS) solution) |
- |
1200 |
|
- |
| Cl 5.3.6, Table no 1 of IS 17011 (iv)(Chromium (VI)) |
- |
600 |
|
- |
| Cl 5.3.6, Table no 1 of IS 17011 (x)(pH) |
- |
400 |
|
- |
| Cl 5.3.7(Seam strength) |
- |
500 |
|
- |
| Cl 5.3.8(Lead Content ( National Annex A)) |
- |
400 |
|
- |
| Cl 5.4.1.1(Class I footwear, determination of the area where upper requirements apply of Upper) |
- |
0 |
|
- |
| Cl 5.4.1.2(Hybrid footwear, determination of the area where upper requirements apply of Upper) |
- |
0 |
|
- |
| Cl 5.4.2(Thickness) |
- |
250 |
|
- |
| Cl 5.4.3(Tear strength) |
- |
500 |
|
- |
| Cl 5.4.4, Table 11(Tensile properties- Tensile strength) |
- |
500 |
|
- |
| Cl 5.4.4, Table 11(Tensile properties- Breaking Force) |
- |
500 |
|
- |
| Cl 5.4.4, Table 11(Tensile properties-Modulus at 100 % elongation) |
- |
500 |
|
- |
| Cl 5.4.4, Table 11(Tensile properties- Elongation at break) |
- |
500 |
|
- |
| Cl 5.4.5(Flexing resistance) |
- |
500 |
|
- |
| Cl 5.4.6(Water vapour permeability and coefficient) |
- |
800 |
|
- |
| Cl 5.4.7(Resistance to hydrolysis) |
- |
2000 |
|
- |
| Cl 5.5.2(Lining- Tear strength) |
- |
500 |
|
- |
| Cl 5.5.3(Lining- Abrasion resistance) |
- |
700 |
|
- |
| Cl 5.5.4(Lining-Water vapour permeability and coefficient) |
- |
800 |
|
- |
| Cl 5.6.2, Table 14(Tear strength of tongue) |
- |
500 |
|
- |
| Cl 5.7.1(Thickness of Insole, insock and footbed) |
- |
100 |
|
- |
| Cl 5.7.2(Water permeability of insock) |
- |
600 |
|
- |
| Cl 5.7.3(Water absorption and desorption of Insole, insock and footbed) |
- |
600 |
|
- |
| Cl 5.7.4.1(Abrasion resistance of Insoles) |
- |
400 |
|
- |
| Cl 5.7.4.2(Abrasion resistance of Insocks) |
- |
700 |
|
- |
| Cl 5.8.2.1, Table 15(Thickness of Outsole) |
- |
250 |
|
- |
| Cl 5.8.2.2(Cleated area) |
- |
0 |
|
- |
| Cl 5.8.2.3(Cleat height) |
- |
100 |
|
- |
| Cl 5.8.3(Outsole- Tear strength) |
- |
500 |
|
- |
| Cl 5.8.4(Outsole- Abrasion resistance) |
- |
800 |
|
- |
| Cl 5.8.5(Outsole-Flexing resistance) |
- |
600 |
|
- |
| Cl 5.8.6(Outsole-Resistance to hydrolysis) |
- |
2000 |
|
- |
| Cl 5.8.7(Interlayer bond strength) |
- |
600 |
|
- |
| Cl 6.2.1.1.2(Metallic perforation-resistant inserts (Type P)) |
- |
500 |
|
- |
| Cl 6.2.1.1.3(Non-metallic perforation-resistant inserts and insoles (Type PL)) |
- |
500 |
|
- |
| Personal protective equipment: Part 2 safety footwear(Non-metallic perforation-resistant inserts and insoles (Type PS)) |
- |
500 |
|
- |
| Cl 6.2.1.2(Construction of perforation resistant insert) |
- |
0 |
|
- |
| Cl 6.2.1.3(Dimensions of perforation resistant insert) |
- |
0 |
|
- |
| Cl 6.2.1.4.2.1(Corrosion resistance of perforation resistant metallic insert for Class I footwear and hybrid mounted footwear) |
- |
400 |
|
- |
| Cl 6.2.1.4.2.2(Corrosion resistance of perforation resistant metallic insert for Class II footwear and hybrid moulded footwear) |
- |
0 |
|
- |
| Cl 6.2.1.4.3(Stability against ageing and environmental influence of non-metallic perforationresistant inserts) |
- |
0 |
|
- |
| Cl 6.2.2.1(Electrical properties of Partially conductive footwear) |
- |
700 |
|
- |
| Cl 6.2.2.2(Electrical properties of Antistatic footwear) |
- |
700 |
|
- |
| Cl 6.2.3.1(Heat insulation of outsole complex) |
- |
700 |
|
- |
| Cl 6.2.3.2(Cold insulation of outsole complex) |
- |
800 |
|
- |
| Cl 6.2.4(Energy absorption of seat region) |
- |
600 |
|
- |
| Cl 6.2.5(Water resistance) |
- |
600 |
|
- |
| Cl 6.2.8.2(Cut resistance footwear- design) |
- |
500 |
|
- |
| Cl 6.2.8.2(Dimensions and construction of protective area of Cut resistance footwear) |
- |
100 |
|
- |
| Cl 6.2.8.3(Resistance to cutting) |
- |
500 |
|
- |
| Cl 6.2.9(Scuff cap) |
- |
200 |
|
- |
| Cl 6.2.10 , Table 19("Slip resistance on ceramic tile floor with glycerine
") |
- |
1200 |
|
- |
| Cl 6.3(Upper — Water penetration and absorption) |
- |
500 |
|
- |
| Cl 6.4.1(Resistance to hot contact - Outsole) |
- |
500 |
|
- |
| Cl 6.4.2(Resistance to fuel oil - Outsole) |
- |
500 |
|
- |
| Cl 6.4.3.1(Mechanical properties of Ladder grip) |
- |
0 |
|
- |
| Cl 6.4.3.2(Design of Ladder grip) |
- |
0 |
|
- |
| Cl 6.4.3.3(Cleat height in the waist area of Ladder grip) |
- |
100 |
|
- |
| Cl 6.4.3.4(Heel breast of Ladder grip) |
- |
100 |
|
- |
| Cl 7, Table 20("Marking
") |
- |
100 |
|
- |
|
31 Dec, 2026 |
- - |
| 2048 |
MSME TESTING CENTRE, CHENNAI
| 6106704
| IS 5557 : Part 1 (2024) |
All Rubber Gum Boots and Ankle Boots Part 1 Safety and Protective |
- |
10900 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl-5(Design) |
- |
0 |
|
- |
| 6(Sizes and Fittines) |
- |
0 |
|
- |
| 7(Consturction) |
- |
0 |
|
- |
| 8.1(Lining Material) |
- |
0 |
|
- |
| 8.2, Table-1 (i)(Width, mm, Min) |
- |
100 |
|
- |
| 8.2, Table-1 (ii)(Breaking load, N, Min (50 cm grip length test specimen)) |
- |
500 |
|
- |
| 8.3, Table-2 (i)(Sewing thread for piping/binding") |
- |
500 |
|
- |
| 8.4(Use of Rubber material) |
- |
0 |
|
- |
| 8.4.1, Table-3 (i)(Hardness, (IRHD)) |
- |
400 |
|
- |
| 8.4.1, Table-3 (ii)(Change in hardness after accelerated ageing at 100 ⁰C ± 2 ⁰C for 24 h) |
- |
400 |
|
- |
| 8.5(Upper material) |
- |
0 |
|
- |
| 8.5.1(Tensile Strength of upper) |
- |
500 |
|
- |
| 8.5.2(Thickness) |
- |
100 |
|
- |
| 8.5.3(Flexing Resistance) |
- |
600 |
|
- |
| 8.5.4(Abrasion Resistance) |
- |
700 |
|
- |
| 8.6.1(Thickness of Outsole) |
- |
200 |
|
- |
| 8.6.2(Tear Strength) |
- |
500 |
|
- |
| 8.6.3(Abrasion Resistance of Outsole) |
- |
800 |
|
- |
| 8.6.4(Flexing Resistance) |
- |
600 |
|
- |
| 8.6.5(Inter layer Bond Strength of outsole) |
- |
600 |
|
- |
| Cl-8.7(Insocks material) |
- |
0 |
|
- |
| 8.7.1(Thickness of Insocks) |
- |
100 |
|
- |
| Cl-8.7.2(Abrasion Resistance of Insock) |
- |
700 |
|
- |
| Cl-8.8.1(Outsole/Heel) |
- |
500 |
|
- |
| Cl-8.9(Leak Proof Test) |
- |
500 |
|
- |
| 8.10(Height of Upper) |
- |
200 |
|
- |
| 8.11(Adhesion Test for Rubberized Textile Upper) |
- |
600 |
|
- |
| Cl-8.12(Upper Outsole Bond Strength) |
- |
600 |
|
- |
| Cl-8.13(Internal Length of Toe Cap) |
- |
200 |
|
- |
| Cl-8.14(Impact Resistance of Safety Footwear) |
- |
700 |
|
- |
| Cl-8.15(Compression Resistance of Safety Footwear) |
- |
600 |
|
- |
| 8.17(Ceramic Tile Floor with sodium lauryl sulphate (NaLS)) |
- |
1200 |
|
- |
| 8.17(Steel Floor with Glycerine) |
- |
1200 |
|
- |
| 8.18(Corrosion Resistant Test for Toe Caps) |
- |
400 |
|
- |
| 9.1(Penetration Resistance) |
- |
500 |
|
- |
| 9.2(Antistatic Footwear) |
- |
700 |
|
- |
| 9.4(Electrical Resistance) |
- |
700 |
|
- |
| 9.5(Resistance to Acid and Alkali- Limited contact with chemicals),) |
- |
500 |
|
- |
| 9.5(Resistance to Acid and Alkali- Prolonged contact with chemicals) |
- |
500 |
|
- |
| 9.6(Resistance to Fuel Oil) |
- |
500 |
|
- |
| 11.2(Marking) |
- |
100 |
|
- |
|
31 Dec, 2026 |
- - |
| 2049 |
MSME TESTING CENTRE, CHENNAI
| 6106704
| IS 5557 : Part 2 (2018) |
All rubber gum boots and ankle boots: Part 2 occupational purposes |
- |
10700 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 3.1(CLASSIFICATION) |
- |
0 |
|
- |
| 3.2(compact insole) |
- |
400 |
|
- |
| 3.3(compact insole) |
- |
400 |
|
- |
| 3.4(compact Outsole/heel) |
- |
400 |
|
- |
| 3.5(Description lining material) |
- |
0 |
|
- |
| 3.6(description occupatioanl footwear) |
- |
0 |
|
- |
| 3.7(Ruber material) |
- |
0 |
|
- |
| 4(Type & varity) |
- |
0 |
|
- |
| 5(Design) |
- |
0 |
|
- |
| 6(size & fitting) |
- |
0 |
|
- |
| 7.1(lining material) |
- |
0 |
|
- |
| 7.1.1(Tear strength) |
- |
500 |
|
- |
| 7.1.2(Abrasion resistance) |
- |
700 |
|
- |
| 7.2(Coated bindind material) |
- |
500 |
|
- |
| 7.3(Thread for upper closing) |
- |
500 |
|
- |
| 7.3(Thread for upper closing - sulphur test) |
- |
400 |
|
- |
| 7.4(Use of rubber) |
- |
0 |
|
- |
| 7.4.1(Physical requirement of rubber component) |
- |
700 |
|
- |
| 7.5(observation of Upper) |
- |
0 |
|
- |
| 7.5.1(Tensile) |
- |
500 |
|
- |
| 7.5.2(Thickness) |
- |
100 |
|
- |
| 7.5.3(Flexing Resistance) |
- |
600 |
|
- |
| 7.6(Outsole/Heel) |
- |
0 |
|
- |
| 7.6.1(Out sole thickness) |
- |
200 |
|
- |
| 7.6.2(out sole tear strength) |
- |
500 |
|
- |
| 7.6.3(out sole abrasion) |
- |
800 |
|
- |
| 7.6.4(out sole flexing) |
- |
600 |
|
- |
| 7.6.5(Interlayer bond strength) |
- |
600 |
|
- |
| 7.7(INSOCK Visual) |
- |
100 |
|
- |
| 7.7.1(Insock thickness) |
- |
100 |
|
- |
| 7.7.2(Insock abrasion) |
- |
700 |
|
- |
| 8(CONSTRUCTION) |
- |
0 |
|
- |
| 8.1(Hot contact) |
- |
500 |
|
- |
| 8.2(Leak proofness) |
- |
500 |
|
- |
| 8.3(Height of upper) |
- |
200 |
|
- |
| 8.4(Adhesion test) |
- |
600 |
|
- |
| 8.5(Resistance to acid & alkaline) |
- |
500 |
|
- |
| 8.6(Resistance to fule oil) |
- |
500 |
|
- |
| 8.7.1(Antistatic) |
- |
700 |
|
- |
| 8.7.2(CONDUCTIVE FOOTWEAR) |
- |
700 |
|
- |
| 8.7.3(Elecrically nsulating footwear) |
- |
1000 |
|
- |
| 8.7.4(Resistance to cold) |
- |
800 |
|
- |
| 10(Finish of boots) |
- |
0 |
|
- |
| 11.1(Marking) |
- |
100 |
|
- |
| 11.2(Marking) |
- |
100 |
|
- |
| 11.3(Marking) |
- |
100 |
|
- |
|
31 Dec, 2026 |
- - |
| 2050 |
MSME TESTING CENTRE, CHENNAI
| 6106704
| IS 13995 (1995) |
Unlined moulded rubber boots - Specification |
Unlined moulded rubber boots |
2700 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5.1.7(Size) |
- |
100 |
|
OK |
| 5.1.6(Design) |
- |
0 |
|
OK |
| 5.1.5(Flexing resistance of upper) |
- |
600 |
|
OK |
| 5.1.4(Resistance to dry heat ageing ) |
- |
500 |
|
OK |
| 5.1.3(Tear Strength) |
- |
500 |
|
OK |
| 5.1.2(Tensile Strength (after ageing)) |
- |
500 |
|
OK |
| 5.1.1(Tensile Strength (before ageing)) |
- |
500 |
|
OK |
| 4.1(Thickness ) |
- |
250 |
|
OK |
| 6, 6.1(Marking) |
- |
100 |
|
OK |
|
31 Dec, 2026 |
- - |
| 2051 |
MSME TESTING CENTRE, CHENNAI
| 6106704
| IS 11544 (1986) |
Specification for slipper, rubber |
- |
3800 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 3.2.6(Thickness of components) |
- |
100 |
|
OK |
| 3.2.5(Type of Thread) |
- |
500 |
|
OK |
| 3.2.4(Picks per cm) |
- |
200 |
|
OK |
| 3.2.4(End per cm) |
- |
200 |
|
OK |
| 3.2.4(Mass per unit area) |
- |
400 |
|
OK |
| 3.2(Flexural endurance) |
- |
1500 |
|
OK |
| 3.2(Hardness after ageing) |
- |
500 |
|
OK |
| 3.2(Hardness (IRHD)) |
- |
400 |
|
OK |
| 3.2(Relative density ) |
- |
400 |
|
OK |
| 3.1(Shape & Design) |
- |
100 |
|
OK |
| 3.2.2(Bottom Filling Material) |
- |
100 |
|
OK |
| 3.2.4.1(Weave of fabrics) |
- |
100 |
|
OK |
| 3.2.7(vulcanized process) |
- |
100 |
|
OK |
| 3.2.8(Workmanship and Finish -) |
- |
0 |
|
OK |
| 3.2.9(Preservation -) |
- |
100 |
|
OK |
| Cl. 4, Cl. 4.1, Cl 4.2, Cl. 4.3(Marking and packing) |
- |
100 |
|
OK |
|
31 Dec, 2026 |
- - |
| 2052 |
MSME TESTING CENTRE, CHENNAI
| 6106704
| IS 6664 (1992) |
Rubber microcellular sheets for soles and heels - Specification (First Revision) |
- |
3500 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4, Cl.4.1,4.1.1,4.1.2(Requirements) |
- |
0 |
|
OK |
| Cl.4 Cl.4.1.3 And 8.3,Table1, i)(Relative density) |
- |
400 |
|
OK |
| Cl.4.1.3 And 8.3,Table1, iii)(Hardness, Shore A durometer min) |
- |
400 |
|
OK |
| Cl.4 Cl.4.1.3 And 8.3,Table1, iii)(Change in Hardness after ageing at 100±1°C for 24hr) |
- |
500 |
|
OK |
| Cl.4 Cl.4.1.3 And 8.3,Table1, iv)(Compression set at constant stress percent, Max) |
- |
400 |
|
OK |
| Cl.4 Cl.4.1.3 And 8.3,Table1, v)(Split tear strength, kg,Min) |
- |
500 |
|
OK |
| Cl.4 Cl.4.1.3 And 8.3,Table1, vi)(Room Temperature shrinkage at 27±2°C for 2weeks, percent, Max) |
- |
0 |
|
OK |
| Cl.4 Cl.4.1.3 And 8.3,Table 1, vi)(Heat shrinkage test at 100±1°C for 1 hour max) |
- |
500 |
|
OK |
| Cl.4.1.3 And 8.3,Table1(viii)Water absorption , percent by mass, Max) |
- |
0 |
|
OK |
| Cl.4 Cl.4.1.3 And 8.3,Table 1, viii)(Flexing resistance: Maximum cut growth at 50 000 cycles) |
- |
600 |
|
OK |
| 5, 5.1(Marking) |
- |
100 |
|
OK |
| 6, 6.1(Packing) |
- |
0 |
|
OK |
| 4.2(Size & Thickness ) |
- |
250 |
|
OK |
| 6, 6.1(Packing) |
- |
0 |
|
- |
| Cl.4.1.3 and 8.3,Table 1 ii(Thickness) |
- |
250 |
|
- |
| Cl.4.1.3 and 8.3,Table 1 vii(Abrasion resistance at applied force of 5 N) |
- |
800 |
|
- |
| 4, Cl.4.1,4.1.1,4.1.2(Requirements) |
- |
0 |
|
OK |
| Cl.4 Cl.4.1.3 And 8.3,Table1, i)(Relative density) |
- |
300 |
|
OK |
| Cl.4.1.3 And 8.3,Table1, iii)(Hardness, Shore A durometer min) |
- |
300 |
|
OK |
| Cl.4 Cl.4.1.3 And 8.3,Table1, iii)(Change in Hardness after ageing at 100±1°C for 24hr) |
- |
500 |
|
OK |
| Cl.4 Cl.4.1.3 And 8.3,Table1, iv)(Compression set at constant stress percent, Max) |
- |
500 |
|
OK |
| Cl.4 Cl.4.1.3 And 8.3,Table1, v)(Split tear strength, kg,Min) |
- |
400 |
|
OK |
| Cl.4 Cl.4.1.3 And 8.3,Table1, vi)(Room Temperature shrinkage at 27±2°C for 2weeks, percent, Max) |
- |
200 |
|
OK |
| Cl.4 Cl.4.1.3 And 8.3,Table 1, vi)(Heat shrinkage test at 100±1°C for 1 hour max) |
- |
300 |
|
OK |
| Cl.4.1.3 And 8.3,Table1(viii)Water absorption , percent by mass, Max) |
- |
200 |
|
OK |
| Cl.4 Cl.4.1.3 And 8.3,Table 1, viii)(Flexing resistance: Maximum cut growth at 50 000 cycles) |
- |
700 |
|
OK |
| 5, 5.1(Marking) |
- |
0 |
|
OK |
| 6, 6.1(Packing) |
- |
- |
|
- |
| Cl.4.1.3 and 8.3,Table 1 ii(Thickness) |
- |
- |
|
- |
| Cl.4.1.3 and 8.3,Table 1 vii(Abrasion resistance at applied force of 5 N) |
- |
- |
|
- |
|
31 Dec, 2026 |
- - |
| 2053 |
MSME TESTING CENTRE, CHENNAI
| 6106704
| IS 6719 (1972) |
Solid Pvc Soles And Heels |
- |
2100 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 3.6.1(Hardness ) |
- |
400 |
|
OK |
| 3.6 (iv)(Tear Strength a) Force Part b) Back Part ) |
- |
500 |
|
OK |
| 3.6 (i)(Relative density ) |
- |
400 |
|
OK |
| Table 1 (Flexing resistance)(Table 1 (Flexing resistance, Bennewart method, cut growth at the end of 30 000 cycles, mm, Max)) |
- |
600 |
|
- |
| Table 1 (Abrasion resistance)(Abrasion resistance at applied
force of 10 N (volume loss),
mm3, Max) |
- |
800 |
|
- |
| Table 1 Cl. 3.6, Sl No (iii)(Volatility, Percent by mass) |
- |
400 |
|
- |
| Table 1 Cl. 3.6, Sl No (iv)("Lead (as Pb), Shoes for
infants, children and
boys and girls, ppm") |
- |
400 |
|
- |
| Table 1 Cl. 3.6, Sl No (iv)("Lead (as Pb), for other sized shoes, ppm
") |
- |
400 |
|
- |
| Cl. 6.4(Measurement of thickness) |
- |
250 |
|
- |
|
31 Dec, 2026 |
- - |
| 2054 |
MSME TESTING CENTRE, CHENNAI
| 6106704
| IS 5557 (2004) |
Industrial and protective rubber knee and ankle boots - Specification (Fourth Revision) |
- |
7300 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5/5.1.7/5.1.7.8(REQUIREMENTS- Physical Requirements-Resistance to oil) |
- |
500 |
|
OK |
| 5/5.1.1-Fig. 1, Fig. 2 and Fig. 3(REQUIREMENTS-Design) |
- |
0 |
|
OK |
| 5/5.1.2 -IS 1638(REQUIREMENTS-Size) |
- |
100 |
|
OK |
| 5/5.1.3-Table1(REQUIREMENTS-Thickness) |
- |
250 |
|
OK |
| 5/5.1.4/5.1.4.1-Table2(REQUIREMENTS-Materials-Rubber components) |
- |
2300 |
|
OK |
| 5/5.1.4/5.1.4.2(REQUIREMENTS-Materials-Fabric-
accordance with IS 1969) |
- |
900 |
|
OK |
| 5/5.1.4/5.1.4.3(REQUIREMENTS-Materials-Protective Steel Toe Cap-
an per IS 5852) |
- |
600 |
|
OK |
| 5/5.1.6/5.1.6.1-Fig. 1,
Fig. 2, Fig. 3, .Fig. 4, Fig. 5 and Table 3.(REQUIREMENTS- Construction) |
- |
100 |
|
OK |
| 5/5.1.6/5.1.6.2(REQUIREMENTS- Construction) |
- |
0 |
|
OK |
| 5/5.1.7/5.1.7.1(REQUIREMENTS- Physical Requirements-Heat treatment-
as per IS 3400 (Part 4)) |
- |
500 |
|
OK |
| 5/5.1.7/5.1.7.2(REQUIREMENTS- Physical Requirements-Composite strength) |
- |
500 |
|
OK |
| 5/5.1.7/5.1.7.3-Table 4(REQUIREMENTS- Physical Requirements-Flexing endurance-
as per Annex B.) |
- |
600 |
|
OK |
| 5/5.1.7/5.1.7.4(REQUIREMENTS- Physical Requirements- Leakage resistance test) |
- |
400 |
|
OK |
| 5/5.1.7/5.1.7.5(REQUIREMENTS- Physical Requirements- Consolidation test-
as per IS IS 3400 (Part 5)) |
- |
500 |
|
OK |
| 5/5.1.7/5.1.7.6(REQUIREMENTS- Physical Requirements- Performance test-
as per Annex C) |
- |
600 |
|
OK |
| 5/5.1.7/5.1.7.7(REQUIREMENTS- Physical Requirements-Height of the boots) |
- |
200 |
|
OK |
| 6.1(Marking) |
- |
100 |
|
OK |
| 6, 6.1(Packing) |
- |
0 |
|
OK |
|
31 Dec, 2026 |
- - |
| 2055 |
TRUSTIN ANALYTICAL SOLUTIONS PRIVATE LIMITED, CHENNAI
| 6139136
| IS 15354 : Part 1 (2023) |
Single-use medical examination gloves Part 1 Specification for gloves made from rubber latex or rubber solution Second Revision |
type 1 and type 2 |
15000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl-4.3(Finish) |
- |
100 |
|
- |
| Cl-5(Materials) |
- |
100 |
|
- |
| Cl-7.1, Table-2(Size code) |
- |
100 |
|
- |
| Cl-7.1, Table-2(Width corresponding to size code (dimension w, Figure 1)) |
- |
500 |
|
- |
| Cl-7.1, Table-2(Descriptive size) |
- |
100 |
|
- |
| Cl-7.1, Table-2(Width corresponding to descriptive size (dimension w, Figure 1)) |
- |
500 |
|
- |
| Cl-7.1, Table-2(Minimum length (dimension l, Figure 1)) |
- |
500 |
|
- |
| Cl-7.1, Table-2(Minimum thickness (at locations shown in Figure 1)) |
- |
500 |
|
- |
| Cl-7.1, Table-2(Maximum thickness (at approximate centre of palm)) |
- |
500 |
|
- |
| Cl-7.2(Water tightness) |
- |
3000 |
|
- |
| Cl-7.3.2 & 7.3.3, Table-3(Minimum force at break before accelerated ageing, N) |
- |
1000 |
|
- |
| Cl-7.3.2 & 7.3.3, Table-3(Minimum elongation at break before accelerated ageing, %) |
- |
1000 |
|
- |
| Cl-7.3.2 & 7.3.3, Table-3(Minimum force at break after accelerated ageing, N) |
- |
3000 |
|
- |
| Cl-7.3.2 & 7.3.3, Table-3(Minimum elongation at break after accelerated ageing, %) |
- |
3500 |
|
- |
| Cl-9(Marking) |
- |
100 |
|
- |
| Cl-7.4(Sterility) |
- |
2500 |
|
- |
| Cl-4.3(Finish) |
- |
100 |
|
- |
| Cl-5(Materials) |
- |
100 |
|
- |
| Cl-7.1, Table-2(Size code) |
- |
100 |
|
- |
| Cl-7.1, Table-2(Width corresponding to size code (dimension w, Figure 1)) |
- |
500 |
|
- |
| Cl-7.1, Table-2(Descriptive size) |
- |
100 |
|
- |
| Cl-7.1, Table-2(Width corresponding to descriptive size (dimension w, Figure 1)) |
- |
500 |
|
- |
| Cl-7.1, Table-2(Minimum length (dimension l, Figure 1)) |
- |
500 |
|
- |
| Cl-7.1, Table-2(Minimum thickness (at locations shown in Figure 1)) |
- |
500 |
|
- |
| Cl-7.1, Table-2(Maximum thickness (at approximate centre of palm)) |
- |
500 |
|
- |
| Cl-7.2(Water tightness) |
- |
2000 |
|
- |
| Cl-7.3.2 & 7.3.3, Table-3(Minimum force at break before accelerated ageing, N) |
- |
2000 |
|
- |
| Cl-7.3.2 & 7.3.3, Table-3(Minimum elongation at break before accelerated ageing, %) |
- |
2000 |
|
- |
| Cl-7.3.2 & 7.3.3, Table-3(Minimum force at break after accelerated ageing, N) |
- |
1000 |
|
- |
| Cl-7.3.2 & 7.3.3, Table-3(Minimum elongation at break after accelerated ageing, %) |
- |
1000 |
|
- |
| Cl-9(Marking) |
- |
100 |
|
- |
| Cl-7.4(Sterility) |
- |
2000 |
|
- |
|
- |
- Included w.e.f-04.08.2026 |
| 2056 |
ACCURATE TEST SOLUTIONS LLP
| 8192806
| IS 16647 (2017) |
Oriented unplasticized polyvinyl chloride (Pvc - O) pipes for water supply - Specification |
Scope restricted upto pipe size of nominal dia 630 mm. |
45000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5.5( Density, g/cc) |
- |
2000 |
|
- |
| 9 /9.1 / 27 degree centigrate(MECHANICAL CHARACTERISTICS OF PIPES9./ Resistance to Hydrostatic Pressure) |
- |
4000 |
|
- |
| 7.3( Opacity) |
- |
2000 |
|
- |
| 9.2, table -11( Resistance to External Blows at 0 °C) |
- |
3000 |
|
- |
| 8.2 table-9( Pipe Ends) |
- |
500 |
|
- |
| 5 / 5.1(MATERIALS ) |
- |
500 |
|
- |
| 5.4( K-Value) |
- |
500 |
|
- |
| 5.6 / 5.6.1( Material Classification, table -1) |
- |
500 |
|
- |
| 6.0(CLASSIFICATION OF PIPES, table-2) |
- |
500 |
|
- |
| 7, see 8.3 and fig-1( GENERAL REQUIREMENTS OF PIPES/ visual appearance) |
- |
1000 |
|
- |
| 7.2( Colour) |
- |
500 |
|
- |
| 8.1.1, 8.1.1.2, table-3(Dimension of Pipes / Diameter/8.1.1.2 Diameter at any point) |
- |
2000 |
|
- |
| 8.1.2, table 4 to 7(Wall Thickness) |
- |
1000 |
|
- |
| 8.1.3 (Length, meter) |
- |
1000 |
|
- |
| 8.2 table-9(Dimensions of Integral Socket) |
- |
1000 |
|
- |
| 9.3 table-12( Ring Stiffness) |
- |
3000 |
|
- |
| 9.4, annexure-E( Orientation Factor) |
- |
2000 |
|
- |
| 10, table-13( PHYSICAL AND 1CHARACTERISTICS) |
- |
0 |
|
- |
| 11,11.1( MECHANICAL CHARACTERISTICS OF ASSEMBLIES INCLUDING JOINTS/ 11.1 Assemblies with Non-End-Load-Bearing Joints) |
- |
0 |
|
- |
| 11.2 / 11.2.1( Short-Term Pressure Test for Leak Tightness of Assemblies) |
- |
3000 |
|
- |
| 11.3( Short-Term Negative Pressure Test for Leak Tightness of Assemblies) |
- |
3000 |
|
- |
| 12(a)( ELASTOMERIC SEALS) |
- |
3000 |
|
- |
| 12(b)( ELASTOMERIC SEALS) |
- |
3000 |
|
- |
| Cl.10, Table 10/1(Vicat Softening Temp (C)) |
- |
3000 |
|
- |
| Cl.10, Table 10/2(Effect on Water) |
- |
5000 |
|
- |
| Cl.10, Table 10/3(Resistant to di-chloromethane (Degree of gelation)) |
- |
3000 |
|
- |
| Cl.10, Table 10/4(Alternate Test (Tensile test)) |
- |
4000 |
|
- |
|
08 Dec, 2028 |
- Included w.e.f 24.02.2026
5.3 (VCM Content) |
| 2057 |
Samridhi Test House Pvt. Ltd.
| 8184706
| IS 17803 (2022) |
POTABLE WATER BOTTLES (COPPER, STAINLESS STEEL, ALUMINIUM) SPECIFICATION |
All Grade / Type / Size / Designation |
28400 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5(Manufacture and Workmanship) |
- |
500 |
|
- |
| 5.3(Manufacture and Workmanship) |
- |
500 |
|
- |
| 7.1(Materials) |
- |
500 |
|
- |
| 7.1.1(copper bottle - copper) |
- |
500 |
|
- |
| 7.1.1(copper bottle – lead) |
- |
500 |
|
- |
| 7.1.1(copper bottle – bismuth) |
- |
500 |
|
- |
| 7.1.1(copper bottle – oxygen) |
- |
500 |
|
- |
| 7.1.1(copper bottle – total impurities) |
- |
500 |
|
- |
| 7.1.3.3(o-ring or washer - Defects) |
- |
100 |
|
- |
| 7.1.4(Auxillary closure- Bisphenol A (BPA)) |
- |
500 |
|
- |
| 7.1.8(Anodic coating) |
- |
100 |
|
- |
| 7.1.8(Hard Anodized) |
- |
100 |
|
- |
| 7.1.9(External coating– Limit of Lead) |
- |
100 |
|
- |
| 7.1.9(External coating– Limit of Cadmium) |
- |
100 |
|
- |
| 7.2(Capacity) |
- |
500 |
|
- |
| 7.3, 7.3.1, 7.3.2(Impact resistance Test/ Drop Impact Test/ Pendulum Impact test) |
- |
300 |
|
- |
| 7.4(Test for strength of shoulder strap) |
- |
300 |
|
- |
| 7.5(Test for cord) |
- |
300 |
|
- |
| 7.7(Leakage test) |
- |
300 |
|
- |
| 7.8(Staining test) |
- |
300 |
|
- |
| 7.9(Lever, device for operating or Regulating flow test) |
- |
300 |
|
- |
| 7.10(Stability test) |
- |
300 |
|
- |
| 7.11(Load test) |
- |
300 |
|
- |
| 7.12(Food safe test/Leaching test) |
- |
300 |
|
- |
| 7.12(Water potability) |
- |
300 |
|
- |
| 7.13(Turbidity) |
- |
500 |
|
- |
| 7.13(pH value) |
- |
500 |
|
- |
| 7.13(Taste threshold) |
- |
500 |
|
- |
| 7.13(Colour, Hazen units) |
- |
500 |
|
- |
| 7.13(Odour) |
- |
500 |
|
- |
| 7.13(Total dissolved solids) |
- |
500 |
|
- |
| 9.1(Marking) |
- |
500 |
|
- |
| Cl. 7.1.5(PERFORMANCE TEST (Lever device )) |
- |
500 |
|
- |
| 7.1.1.1(copper bottle – Thickness) |
- |
500 |
|
- |
| 7.1.2.1(Stainless steel bottle (thickness)) |
- |
500 |
|
- |
| 7.1.2.1(Stainless steel bottle (material)) |
- |
500 |
|
- |
| 7.1.2 Note 2(Aluminium bottle (Material)) |
- |
500 |
|
- |
| 7.1.3.1(Stopper Material) |
- |
500 |
|
- |
| 7.1.3.2(o-ring or washer Overall migration) |
- |
500 |
|
- |
| 7.1.4(Auxillary closure - Material) |
- |
500 |
|
- |
| 7.1.9(External coating - Thickness test) |
- |
500 |
|
- |
| 7.1.9(External coating - Salt water corrosion test) |
- |
1000 |
|
- |
| 7.1.9(External coating - Adhesion test) |
- |
1000 |
|
- |
| 7.3.1.3 (Amendment 1)(Drop impact test - Free fall test) |
- |
1000 |
|
- |
| 7.3.1.2 (Amendment 1)(Drop impact test - Vertical hang) |
- |
1000 |
|
- |
| 7.3.1.1 (Amendment 1)(Drop impact test - Horizontal Hang) |
- |
1000 |
|
- |
| Cl 7.6(Test for cord chain) |
- |
1000 |
|
- |
| 7.1.2 (Note 1), Annex B (Amendment 1)- Sensorial test(Annex B (Amendment 1)- Sensorial test) |
- |
1000 |
|
- |
| 15. 7.1.2 (Note 1), Annex A (Amendment 1)- Leaching of food grade stainless steel(Annex A (Amendment 1)- Leaching of food grade stainless steel) |
- |
0 |
|
- |
| 7.1.3(Overall Migration test (IS 9845 : 1998)) |
- |
500 |
|
- |
|
- |
- 1.
15. 7.1.2 (Note 1), Annex A (Amendment 1)- Leaching of food grade stainless steel (Annex A (Amendment 1)- Leaching of food grade stainless steel) Leaching Test Test Facility not Available
2.
7.12 (Food safe test/Leaching test) Leaching Test Test Facility not Available. |
| 2058 |
Aaditech Test and Calibration Lab LLP
| 8179926
| IS 7098 : Part 1 (2025) |
Crosslinked Polyethylene Insulated Thermoplastic Sheathed Cables - Specification Part 1 For Working Voltages up to and Including 1 100 Volts (Second Revision) |
- |
25000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl-4(Conductors -Material) |
- |
20 |
|
- |
| Cl-5, Table-1 (i)(Tensile strength) |
- |
100 |
|
- |
| Cl-5, Table-1 (ii) (a)(Elongation at break- Ageing in air oven) |
- |
100 |
|
- |
| Cl-5, Table-1 (ii) (b)(Variation in tensile strength, from that without ageing) |
- |
100 |
|
- |
| Cl-5, Table-1 (ii) (c)(Variation in elongation at break, from that without ageing) |
- |
100 |
|
- |
| Cl-5, Table-1 (iii) (a)(Hot set- Treatment;) |
- |
200 |
|
- |
| Cl-5, Table-1 (iii) (b)(Hot set- Elongation under load) |
- |
200 |
|
- |
| Cl-5, Table-1 (iii) (c)(Hot set- Permanent elongation after cooling) |
- |
200 |
|
- |
| Cl-5, Table-1 (iv)(Shrinkage) |
- |
100 |
|
- |
| Cl-5, Table-1 (v)(Water absorption (gravimetric)) |
- |
250 |
|
- |
| Cl-5, Table-1 (vi)(Volume resistivity) |
- |
200 |
|
- |
| Cl-6.1 (a)(Fillers and inner sheath- Vulcanized or unvulcanized rubber) |
- |
200 |
|
- |
| Cl-6.1 (B)(Fillers and inner sheath- Thermoplastic materials) |
- |
200 |
|
- |
| Cl-7(Armouring) |
- |
100 |
|
- |
| Cl-8(Outer Sheath) |
- |
200 |
|
- |
| Cl-10.3(Tolerance on Thickness of Insulation) |
- |
20 |
|
- |
| Cl-11(Core Identification) |
- |
20 |
|
- |
| Cl-12(Laying up of Cores) |
- |
20 |
|
- |
| Cl-13(Inner Sheath (Common Covering)) |
- |
20 |
|
- |
| Cl-14.1(Armouring- Application) |
- |
20 |
|
- |
| Cl-14.1.2(armour round wires/formed wires) |
- |
100 |
|
- |
| Cl-14.2(Type of Armour) |
- |
50 |
|
- |
| Cl-14.3(Dimensions) |
- |
100 |
|
- |
| Cl-14.4(Joints) |
- |
20 |
|
- |
| Cl-14.5(Resistance) |
- |
400 |
|
- |
| Cl-15.3(Thickness of Outer Sheath) |
- |
50 |
|
- |
| Cl-16.1 (i) (a)(Test on conductor: Annealing test (for copper);) |
- |
500 |
|
- |
| Cl-16.1 (i) (b)(Test on conductor: Tensile test (for aluminium);) |
- |
150 |
|
- |
| Cl-16.1 (i) (c)(Test on conductor: Wrapping test (for aluminium);) |
- |
100 |
|
- |
| Cl-16.1 (i) (d)(Test on conductor: Resistance test) |
- |
500 |
|
- |
| Cl-14.6 (a)(Physical tests on round wires/formed wires- Tensile strength) |
- |
150 |
|
- |
| Cl-14.6 (b)(Physical tests on round wires/formed wires- Elongation at break) |
- |
150 |
|
- |
| Cl-14.6 (c)(Physical tests on round wires/formed wires- Torsion test for round wires) |
- |
100 |
|
- |
| Cl-14.6 (d)(Physical tests on round wires/formed wires- Winding test for formed wires) |
- |
200 |
|
- |
| Cl-14.6 (e)(Physical tests on round wires/formed wires- Uniformity of zinc coating) |
- |
100 |
|
- |
| Cl-14.6 (f)(Physical tests on round wires/formed wires- Mass of zinc coating) |
- |
100 |
|
- |
| Cl-14.6 (g)(Physical tests on round wires/formed wires- Resistivity.) |
- |
150 |
|
- |
| Cl-10, 13, 15(Test for thickness of insulation and sheath) |
- |
100 |
|
- |
| Cl-16.1 (v) (1)(PVC Sheath- Tensile strength and elongation at break;) |
- |
150 |
|
- |
| Cl-16.1 (v) (2)(PVC Sheath- Ageing in air oven) |
- |
100 |
|
- |
| Cl-16.1 (v) (3)(PVC Sheath- Loss of mass in air oven) |
- |
200 |
|
- |
| Cl-16.1 (v) (5)(PVC Sheath- Hot deformation test) |
- |
100 |
|
- |
| Cl-16.1 (v) (6)(PVC Sheath- Heat shock test) |
- |
50 |
|
- |
| Cl-16.1 (v) (7)(PVC Sheath- Thermal stability) |
- |
100 |
|
- |
| Cl-8.3-Table 1A(PE Sheath- Carbon black content) |
- |
100 |
|
- |
| Cl-8.3-Table 1A(PE Sheath- Tensile strength and elongation at break before and after ageing) |
- |
150 |
|
- |
| Cl-8.3-Table 1A(PE Sheath- Hot deformation) |
- |
150 |
|
- |
| Cl-8.3-Table 1A(PE Sheath- Shrinkage test.) |
- |
100 |
|
- |
| Cl- Table 1B(LSHF Sheath- Tensile strength and elongation at break before and after ageing) |
- |
100 |
|
- |
| Cl- Table 1B(LSHF Sheath- Hot deformation) |
- |
100 |
|
- |
| Cl- Table 1B(LSHF Sheath- Water absorption test) |
- |
500 |
|
- |
| Cl- Table 1B(LSHF Sheath- Shrinkage test) |
- |
150 |
|
- |
| Cl-17.2(High voltage test) |
- |
2000 |
|
- |
| Cl-17.3(Flammability test) |
- |
200 |
|
- |
| Cl-17.4(Oxygen index test (FR, FR-LSH or LSHF Sheath)) |
- |
2500 |
|
- |
| Cl-17.5(Flame retardance test on single cable) |
- |
2000 |
|
- |
| Cl-17.6(Flame retardance test on bunched cables (FR, FR-LSH or LSHF Sheathed Cables)) |
- |
1500 |
|
- |
| Cl-17.7(Test for halogen acid evolution (FR-LSH or LSHF Outer Sheath)) |
- |
2000 |
|
- |
| Cl-17.8(Smoke density test (FR-LSH or LSHF Sheath)) |
- |
2000 |
|
- |
| Cl-17.9(Temperature index test; (FR, FR-LSH or LSHF Sheath)) |
- |
2000 |
|
- |
| Cl-17.10(Test for pH and conductivity of LSHF Sheath) |
- |
250 |
|
- |
| Cl-17.11(Test for light transmission for LSHF Sheathed Cables) |
- |
2500 |
|
- |
| Cl-16.4 (i)(Cold bend test for outer sheath) |
- |
100 |
|
- |
| Cl-16.4 (ii)(Cold impact test for outer sheath) |
- |
100 |
|
- |
| Cl-16.4 (iii)(Cold elongation test for LSHF sheath) |
- |
100 |
|
- |
| Cl. 9(Conductor - Regarding Construction Compliance) |
- |
100 |
|
- |
| Cl. 10.4(Application of Insulation) |
- |
100 |
|
- |
| Cl. 13.3(Thickness of Inner sheath) |
- |
100 |
|
- |
| Cl. 15.1(Application of Outer sheath) |
- |
0 |
|
- |
| Cl. 15.2(Clour of Outer sheath) |
- |
10 |
|
- |
|
- |
- - |
| 2059 |
Amit Test and Calibration Centre (8172006)
| 8172006
| IS 9968 : Part 1 (2025) |
Elastomer Insulated Cables - Specification Part 1 for Working Voltages up to and including 1100 volts (Second Revision) |
- |
18000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl-4.1(Copper Conductor) |
- |
200 |
|
- |
| Cl-4.2(Aluminum Conductor) |
- |
200 |
|
- |
| Cl-6.1(Proofed Tape) |
- |
200 |
|
- |
| Cl-6.2("Polyethylene Terephthalate (PETP) Tape or
Plastic Tape or Any Other Suitable Tape") |
- |
200 |
|
- |
| Cl-6.3(Glass Tape) |
- |
200 |
|
- |
| Cl-7(Fillers) |
- |
200 |
|
- |
| Cl-8.1(Textile Braid) |
- |
200 |
|
- |
| Cl-8.2(Glass Braid) |
- |
200 |
|
- |
| Cl-9.1(General Service Insulated Cables and Flexible Cords) |
- |
200 |
|
- |
| Cl-9.2(Heat Resisting Insulated Cables) |
- |
200 |
|
- |
| Cl-9.3(Silicon Rubber Insulated Cable) |
- |
200 |
|
- |
| Cl-10.1(Preservative Compound) |
- |
200 |
|
- |
| Cl-10.2(Varnish) |
- |
200 |
|
- |
| Cl-12(separator tape) |
- |
200 |
|
- |
| Cl-14(Core Identification) |
- |
200 |
|
- |
| Cl-18(Laying UP of Cores) |
- |
200 |
|
- |
| Cl-19(Binder Tape) |
- |
200 |
|
- |
| Cl-20.2(Thickness of Sheath) |
- |
1500 |
|
- |
| Cl-20.3(Tolerance on Thickness of Sheath) |
- |
1500 |
|
- |
| Cl-20.4(Colour) |
- |
200 |
|
- |
| Cl-22.1 (i) (a)(Conductor resistance test) |
- |
1500 |
|
- |
| Cl-22.1 (i) (b)(High voltage test or spark test.) |
- |
1500 |
|
- |
| Cl-22.1 (ii) (a)(Annealing test (for copper);) |
- |
1500 |
|
- |
| Cl-22.1 (ii) (b)(Tensile Test ((for aluminium);) |
- |
1500 |
|
- |
| Cl-22.1 (ii) (c)(Wrapping test (for aluminium);) |
- |
1500 |
|
- |
| Cl-22.1 (ii) (f)(Tensile strength and elongation at break of insulation and sheath) |
- |
1500 |
|
- |
| Cl-22.1 (ii) (g)(Hot set test for insulation and sheath) |
- |
2000 |
|
- |
| Cl-22.1 (ii) (h)(High voltage test) |
- |
1500 |
|
- |
| Cl-22.1 (ii) (i)(Insulation resistance test) |
- |
3500 |
|
- |
| Cl-22.1 (iii) (a)(Persulphate test (for tinned copper);) |
- |
2000 |
|
- |
| Cl-22.1 (iii) (f)(Test for thickness of insulation and sheath and overall diameter) |
- |
1500 |
|
- |
| Electrical(Tensile strength and elongation at break) |
- |
1500 |
|
- |
| Cl-22.1 (iii) (g), 2(Ageing in air oven) |
- |
3000 |
|
- |
| Cl-22.1 (iii) (g), 3(Ageing in air bomb) |
- |
3000 |
|
- |
| Cl-22.1 (iii) (g), 4(Ageing In oxygen bomb) |
- |
3000 |
|
- |
| Cl-22.1 (iii) (g), 5(Hot set) |
- |
2000 |
|
- |
| Cl-22.1 (iii) (g), 6(Oil resistance;) |
- |
2000 |
|
- |
| Cl-22.1 (iii) (g), 7(Tear resistance) |
- |
1500 |
|
- |
| Cl-22.1 (iii) (i)(High voltage (water immersion) test;) |
- |
1500 |
|
- |
| Cl-22.1 (iii) (j)(Flammability test) |
- |
1500 |
|
- |
| Cl-22.1 (iii) (k)(Water absorption test (for insulation as applicable)) |
- |
5500 |
|
- |
| Cl-24.1(Manufacturer’s Identification) |
- |
200 |
|
- |
| Cl-25(Packing and Morning) |
- |
200 |
|
- |
|
16 Apr, 2029 |
- Included w.e.f 17.03.2026 |
| 2060 |
Urja Metallurgical Services LLP
| 7194806
| IS 205 (1992) |
Non - Ferrous metal butt specification (Fourth Revision) |
All Grade / Type / Size / Designation / Class |
7500 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.1 -Table 1-Flap- i (Ref. Cl 5.1, Table 1 Designation 64430 or 65032 of IS 733 : 1983)(Chemical composition - Aluminium - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1-Flap- i (Ref. Cl 5.1, Table 1 Designation 64430 or 65032 of IS 733 : 1983)(Chemical composition - Copper - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1- Flap-i (Ref. Cl 5.1, Table 1 Designation 64430 or 65032 of IS 733 : 1983)(Chemical composition - Magnesium - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1-Flap- i (Ref. Cl 5.1, Table 1 Designation 64430 or 65032 of IS 733 : 1983)(Chemical composition - Silicon - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1- Flap-i (Ref. Cl 5.1, Table 1 Designation 64430 or 65032 of IS 733 : 1983)(Chemical composition - Iron - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1-Flap- i (Ref. Cl 5.1, Table 1 Designation 64430 or 65032 of IS 733 : 1983)(Chemical composition - Manganese - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1-Flap- i (Ref. Cl 5.1, Table 1 Designation 64430 or 65032 of IS 733 : 1983)(Chemical composition - Zinc - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1-Flap- i (Ref. Cl 5.1, Table 1 Designation 64430 or 65032 of IS 733 : 1983)(Chemical composition - Titanium and or other grain refining elements - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1- Flap-i (Ref. Cl 5.1, Table 1 Designation 64430 or 65032 of IS 733 : 1983)(Chemical composition - Chromium - IS 504) |
- |
0 |
|
- |
| 4 -Table 1- Flap-ii (Ref. Cl 8.1, Table 1 of IS 319 : 1989)(Chemical composition - Copper - IS 3685:1966) |
- |
0 |
|
- |
| 4 -Table 1-Flap- ii (Ref. Cl 8.1, Table 1 of IS 319 : 1989)(Chemical composition - Lead - IS 3685:1966) |
- |
0 |
|
- |
| 4 -Table 1-Flap- ii (Ref. Cl 8.1, Table 1 of IS 319 : 1989)(Chemical composition - Iron - IS 3685:1966) |
- |
0 |
|
- |
| 4 -Table 1-Flap- ii (Ref. Cl 8.1, Table 1 of IS 319 : 1989)(Chemical composition - Total other impurities excluding iron - IS 3685:1966) |
- |
0 |
|
- |
| 4 -Table 1- Flap-ii (Ref. Cl 8.1, Table 1 of IS 319 : 1989)(Chemical composition - Zinc- IS 3685:1966) |
- |
0 |
|
- |
| 4 -Table 1- Flap-iii (Ref. Cl 3.1, Table 1 Grade LCB-2 of IS 292 : 1983)(Chemical composition - Copper plus incidental nickel - IS 3685:1966) |
- |
0 |
|
- |
| 4 -Table 1- Flap-iii (Ref. Cl 3.1, Table 1 Grade LCB-2 of IS 292 : 1983)(Chemical composition - Nickel - IS 3685:1966) |
- |
0 |
|
- |
| 4 -Table 1-Flap- iii (Ref. Cl 3.1, Table 1 Grade LCB-2 of IS 292 : 1983)(Chemical composition - Tin - IS 3685:1966) |
- |
0 |
|
- |
| 4 -Table 1-Flap- iii (Ref. Cl 3.1, Table 1 Grade LCB-2 of IS 292 : 1983)(Chemical composition - Iron - IS 3685:1966) |
- |
0 |
|
- |
| 4 -Table 1- Flap-iii (Ref. Cl 3.1, Table 1 Grade LCB-2 of IS 292 : 1983)(Chemical composition - Aluminium - IS 3685:1966) |
- |
0 |
|
- |
| 4 -Table 1- Flap-iii (Ref. Cl 3.1, Table 1 Grade LCB-2 of IS 292 : 1983)(Chemical composition - Zinc - IS 3685:1966) |
- |
0 |
|
- |
| 4 -Table 1- Flap-iv (Ref. Cl 6.1 , Table 1 Designation CuZn40 of IS 410 : 1977)(Chemical composition - Copper - IS 3635:1966) |
- |
0 |
|
- |
| 4 -Table 1- Flap-iv (Ref. Cl 6.1 , Table 1 Designation CuZn40 of IS 410 : 1977)(Chemical composition - Lead - IS 3635:1966) |
- |
0 |
|
- |
| 4 -Table 1- Flap-iv (Ref. Cl 6.1 , Table 1 Designation CuZn40 of IS 410 : 1977)(Chemical composition - Iron - IS 3635:1966) |
- |
0 |
|
- |
| 4 -Table 1- Flap-iv (Ref. Cl 6.1 , Table 1 Designation CuZn40 of IS 410 : 1977)(Chemical composition - Total impurities (including Iron) - IS 3635:1966) |
- |
0 |
|
- |
| 4 -Table 1- Flap-iv (Ref. Cl 6.1 , Table 1 Designation CuZn40 of IS 410 : 1977)(Chemical composition - Zinc - IS 3635:1966) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- i (Ref. Cl 5.1, Table 1 Designation 64430 of IS 733 : 1983)(Chemical composition - Aluminium - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- i (Ref. Cl 5.1, Table 1 Designation 64430 of IS 733 : 1983)(Chemical composition - Copper - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- i (Ref. Cl 5.1, Table 1 Designation 64430 of IS 733 : 1983)(Chemical composition - Magnesium - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- i (Ref. Cl 5.1, Table 1 Designation 64430 of IS 733 : 1983)(Chemical composition - Silicon - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- i (Ref. Cl 5.1, Table 1 Designation 64430 of IS 733 : 1983)(Chemical composition - Iron - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- i (Ref. Cl 5.1, Table 1 Designation 64430 of IS 733 : 1983)(Chemical composition - Manganese - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- i (Ref. Cl 5.1, Table 1 Designation 64430 of IS 733 : 1983)(Chemical composition - Zinc - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- i (Ref. Cl 5.1, Table 1 Designation 64430 of IS 733 : 1983)(Chemical composition - Titanium and or other grain refining elements - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- i (Ref. Cl 5.1, Table 1 Designation 64430 of IS 733 : 1983)(Chemical composition - Chromium - IS 504) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- ii (Ref. Cl 6.1, Table 1 of IS 7608 : 1987)(Chemical composition - Tin - IS 4027:1967) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- ii (Ref. Cl 6.1, Table 1 of IS 7608 : 1987)(Chemical composition - Phosphorous - IS 4027:1967) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- ii (Ref. Cl 6.1, Table 1 of IS 7608 : 1987)(Chemical composition - Lead - IS 4027:1967) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- ii (Ref. Cl 6.1, Table 1 of IS 7608 : 1987)(Chemical composition - Total impurities - IS 4027:1967) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- ii (Ref. Cl 6.1, Table 1 of IS 7608 : 1987)(Chemical composition - Copper - IS 4027:1967) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- iii (Ref. Cl 6 of IS 280:1978- Cross ref. Cl. 6.1 -Table 1 of IS 7887 : 1992)(Chemical composition - Carbon - IS 228) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- iii (Ref. Cl 6 of IS 280:1978- Cross ref. Cl. 6.1 -Table 1 of IS 7887 : 1992)(Chemical composition - Sulphur - IS 228) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- iii (Ref. Cl 6 of IS 280:1978- Cross ref. Cl. 6.1 -Table 1 of IS 7887 : 1992)(Chemical composition - Phosphorous - IS 228) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- iii (Ref. Cl 6 of IS 280:1978- Cross ref. Cl. 6.1 -Table 1 Note 2 of IS 7887 : 1992)(Chemical composition - Silicon - IS 228 (optional)) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- iii (Ref. Cl 6 of IS 280:1978- Cross ref. Cl. 6.1 -Table 1 Note 2 of IS 7887 : 1992)(Chemical composition - Tota Aluminium - IS 228 (optional)) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- iv (Ref. Cl 4.1 -Table 1 of IS 4413 : 1981)(Chemical composition - Copper - IS 3685:1966) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- iv (Ref. Cl 4.1 -Table 1 of IS 4413 : 1981)(Chemical composition - Lead - IS 3685:1966) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- iv (Ref. Cl 4.1 -Table 1 of IS 4413 : 1981)(Chemical composition - Iron - IS 3685:1966) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- iv (Ref. Cl 4.1 -Table 1 of IS 4413 : 1981)(Chemical composition - Total impurities - IS 3685:1966) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- iv (Ref. Cl 4.1 -Table 1 of IS 4413 : 1981)(Chemical composition - Zinc - IS 3685:1966) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- v (Ref. Cl 7.1 -Table 1 of IS 6528 : 1995)(Chemical composition - Carbon - IS 228) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- v (Ref. Cl 7.1 -Table 1 of IS 6528 : 1995)(Chemical composition - Silicon - IS 228) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- v (Ref. Cl 7.1 -Table 1 of IS 6528 : 1995)(Chemical composition - Manganese - IS 228) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- v (Ref. Cl 7.1 -Table 1 of IS 6528 : 1995)(Chemical composition - Nickel - IS 228) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- v (Ref. Cl 7.1 -Table 1 of IS 6528 : 1995)(Chemical composition - Chromium - IS 228) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- v (Ref. Cl 7.1 -Table 1 of IS 6528 : 1995)(Chemical composition - Molybdenum - IS 228) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- v (Ref. Cl 7.1 -Table 1 of IS 6528 : 1995)(Chemical composition - Sulphur - IS 228) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- v (Ref. Cl 7.1 -Table 1 of IS 6528 : 1995)(Chemical composition - Phosphorous - IS 228) |
- |
0 |
|
- |
| 3(TYPES) |
- |
0 |
|
- |
| 5.1- Table 2,3,4,5 & Fig-1 & 2(Dimensions- Type of Hinge 1.Length 2.Breadth 3.Butt Dia 4.Pin Dia 5.Thickness of Flap) |
- |
0 |
|
- |
| 5.1- Table 2,3,4,5 & Fig-1 & 2(Dimensions- 1. Holes for Screw Desination 2. No. of screw Holes) |
- |
0 |
|
- |
| 5.2 ,Table 6(Tolerances-Tolerances on dimensions of hinges ) |
- |
0 |
|
- |
| 6.1(Manufacture- General) |
- |
0 |
|
- |
| 6.2- Table 2,3,4,5 (Kunckles) |
- |
0 |
|
- |
| 6.3(Screw Holes) |
- |
0 |
|
- |
| 6.3.1- Table 2,3,4,5 & Fig-1 & 2(Screw Holes) |
- |
0 |
|
- |
| 6.3.2- Table 2,3,4,5 (Number of Holes) |
- |
0 |
|
- |
| 6.3.3 Fig-1(Position of Holes) |
- |
0 |
|
- |
| 8.1(Packing - Each hinge shall be packed in card board boxes or in any other approved packing. The number of hinges in a package shall be as under) |
- |
0 |
|
- |
| 8.2(Packing -Each Package shall bear the following Particulars) |
- |
0 |
|
- |
| 7(Workmanship & Finish) |
- |
0 |
|
- |
| 10(Marking) |
- |
0 |
|
- |
| 4.1 -Table 1-Pin- iii (Ref. Cl 6 of IS 280:1978- Cross ref. Cl. 6.1 -Table 1 of IS 7887 : 1992)(Chemical composition - Manganese - IS 228) |
- |
0 |
|
- |
|
23 Dec, 2028 |
- Included w.e.f. 24.03.2026 |
| 2061 |
Atmy Analytical Labs Private Limited (Unit-2), Greater Noida
| 8176106
| IS 12933 : Part 1 (2025) |
Solar Flat Plate Collector - Specification Part 1 Requirements (Third Revision) |
All |
99900 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl-4(Components) |
- |
9000 |
|
- |
| Cl-5(Shape and Dimensions) |
- |
7000 |
|
- |
| Cl-6(Assembly and Workmanship) |
- |
1500 |
|
- |
| Cl-7.1.1(Static Pressure Leakage Test) |
- |
4000 |
|
- |
| Cl-7.2.1(Outdoor No Flow Exposure Test) |
- |
4000 |
|
- |
| Cl-7.2.2(External Thermal Shock Test) |
- |
4000 |
|
- |
| Cl-7.2.3(Internal Thermal Shock Test) |
- |
4000 |
|
- |
| Cl-7.2.4(Rain Penetration Test) |
- |
4000 |
|
- |
| Cl-7.2.5(Impact Resistance Test) |
- |
4000 |
|
- |
| Cl-7.2.6(Thermal Efficiency Test) |
- |
48000 |
|
- |
| Cl-7.2.7(Determination of the Time Constant) |
- |
4000 |
|
- |
| Cl-7.2.8(Incident Angle Modifier Test) |
- |
26000 |
|
- |
| Cl-9(Marking) |
- |
1500 |
|
- |
|
08 Feb, 2027 |
- Included w.e.f 24.02.2026 |
| 2062 |
ATCC TEST LABS LLP
| 8172626
| IS 398 : Part 2 (2025) |
Aluminium Conductor for Overhead Transmission Purposes - Specification Part 2 Aluminium Conductors Galvanized Steel Reinforced (Fourth Revision) |
- |
120000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl-6(Material) |
- |
1000 |
|
Rs. 16000/- (Up to 100 Sq.mm), Rs. 90000/- (150 Sq.mm to 200 Sq.mm), Rs. 120000/- (400 Sq.mm to 560 Sq.mm) |
| Cl-6.1.1(chemical composition of high carbon steel) |
- |
2000 |
|
- |
| Cl-6.2(zinc used for galvanizing) |
- |
2000 |
|
- |
| Cl-7(Freedom From Defects) |
- |
1000 |
|
- |
| Cl-8.1(Wires-Nominal Sizes) |
- |
2000 |
|
- |
| Cl-8.2(Aluminum Conductors, Galvanized Steel- Reinforced) |
- |
2000 |
|
- |
| Cl-9.1(Joint in Wires) |
- |
2000 |
|
- |
| Cl-9.2(Aluminium Wires) |
- |
2000 |
|
- |
| Cl-9.3(Galvanized Steel Wires) |
- |
2000 |
|
- |
| Cl-10.2(Lay Ratio of Aluminium Conductors Galvanized Steel-Reinforced) |
- |
2000 |
|
- |
| Cl-13.3(Conductor- Visual examination) |
- |
1000 |
|
- |
| Cl- 13.5(Conductor- Measurement of lay ratio/direction of lay) |
- |
2000 |
|
- |
| Cl- 13.12(Conductor- d.c. Resistance test on stranded conductor) |
- |
5000 |
|
- |
| Cl- 13.14(Conductor- Ultimate tensile strength test on stranded conductor) |
- |
30000 |
|
- |
| Cl- 13.13(Conductor- Surface condition test on stranded conductor) |
- |
30000 |
|
- |
| Cl- 13.15(Conductor- Corona test (for conductors intended for use at 400 kV and above voltage level for a.c. and ± 320 kV and above voltage level for d.c.)) |
- |
0 |
|
- |
| Cl-13.16(Conductor- Radio interference voltage test) |
- |
0 |
|
- |
| Cl-13.4(Aluminium wires-Measurement of diameter) |
- |
2000 |
|
- |
| Cl- 13.6(Aluminium wires -Breaking load test) |
- |
2000 |
|
- |
| Cl- 13.8(Aluminium wires- Wrapping test) |
- |
2000 |
|
- |
| Cl- 13.9(Aluminium wires- d.c. resistance test) |
- |
2000 |
|
- |
| Cl- 13.11(Aluminium wires Procedure qualification test on welded joint of aluminium strands) |
- |
2000 |
|
- |
| Cl- 13.4(Steel wires- Measurement of diameter) |
- |
2000 |
|
- |
| Cl- 13.6(Steel wires- Breaking load test) |
- |
2000 |
|
- |
| Cl- 13.7(Steel wires- Ductility test) |
- |
2000 |
|
- |
| Cl- 13.8(Steel wires- Wrapping test) |
- |
2000 |
|
- |
| Cl- 13.10(Steel wires- Galvanizing test) |
- |
2000 |
|
- |
| Cl-13.7.1(Torsion Test) |
- |
2000 |
|
- |
| Cl-13.7.2(Elongation Test) |
- |
2000 |
|
- |
| Cl-11.1(Standard Length) |
- |
2000 |
|
- |
| Cl-11.2(Random Lengths) |
- |
2000 |
|
- |
|
15 Jun, 2029 |
- Included w.e.f. 17.03.2026
Exclusion: Cl- 13.15 (Conductor- Corona test (for conductors intended for use at 400 kV and above voltage level for a.c. and ± 320 kV and above voltage level for d.c.)) Cl-13.16 (Conductor- Radio interference voltage test)" |
| 2063 |
ATCC TEST LABS LLP
| 8172626
| IS 12776 (2002) |
Galvanized strand for earthing - Specification (First Revision) |
- |
15000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5.2(Freedom From Defects (IS 12776)) |
- |
1000 |
|
- |
| 5.3(Joints in wires (IS 12776)) |
- |
1000 |
|
- |
| 6- Annex-A, Sl-2(Size of the wire (IS 12776)) |
- |
1000 |
|
- |
| 6- Annex-A, Sl-8(Lay (IS 12776)) |
- |
2000 |
|
- |
| 8.1-Annex-A,Sl-9(Breaking Force of Strand (IS 12776)) |
- |
3000 |
|
- |
| 8.2-Annex-A,Sl-6(Elongation of wire, IS 10810(Part-37)) |
- |
3000 |
|
- |
| 8.2-Annex-A,Sl-3(Tensile Strength of wire IS 10810(Part-37)) |
- |
3000 |
|
- |
| 8.3-Annex-A,Sl-12(Resistance at 200 C (IS 12776)) |
- |
3000 |
|
- |
| 8.4(Wrapping Test (IS 12776)) |
- |
2000 |
|
- |
| 8.5-Annex-A-Sl-7a(Amount of zinc Coating (IS 6745)) |
- |
2000 |
|
- |
| 8.5-Annex-A-Sl-7b(Uniformity of Coating (IS 2633)) |
- |
2000 |
|
- |
| 8.5-Annex-A-Sl-4(Torsion Test IS 10810(Part-37)) |
- |
2000 |
|
- |
| 4.1(Carbon- IS 228(Part 1)) |
- |
1000 |
|
- |
| 4.1(Sulphur- IS 228(Part 9)) |
- |
1000 |
|
- |
| 4.1(Phosphorous- IS 228(Part 3)) |
- |
1000 |
|
- |
| 4.1(Manganese- IS 228(Part 2)) |
- |
1000 |
|
- |
| 4.1(Silicon- IS 228(Part 8)) |
- |
1000 |
|
- |
| 6- Annex-A, Sl-8(Lay Length) |
- |
2000 |
|
- |
|
15 Jun, 2029 |
- Included w.e.f. 17.03.2026 |
| 2064 |
National Soil Testing and Research Laboratories, Panchkula
| 9182936
| IS 269 (2015) |
Ordinary portland cement - Specification (Sixth Revision) |
OPC 43, OPC 43 S, OPC 53, OPC 53 S |
9000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 7 Table-3 v(Transverse Strength - IS 4031 Part 8 (Optional)) |
- |
0 |
|
Optional Test not included |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
500 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
500 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
500 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iii b(Setting Time Final) |
- |
500 |
|
- |
| 7 Table-3 iii a(Setting Time Initial) |
- |
0 |
|
- |
| 7 Table-3 ii b(Expansion after aeration) |
- |
500 |
|
- |
| 7 Table-3 ii b(Expansion by Autoclave) |
- |
500 |
|
- |
| 7 Table-3 ii a(Expansion after aeration) |
- |
0 |
|
- |
| 7 Table-3 ii a(Expansion by Le Chatelier) |
- |
500 |
|
- |
| 7 Table-3 i.(Fineness) |
- |
500 |
|
- |
| 6.1 Table-2 viii(Alkali content) |
- |
1500 |
|
- |
| 6.1 Table-2 vii(Chloride content) |
- |
1500 |
|
- |
| 6.1 Table-2 vi(Loss on ignition) |
- |
1500 |
|
- |
| 6.1 Table-2 v(Total Sulphur Content calculated as Sulphuric Anhydride) |
- |
1500 |
|
- |
| 6.1 Table-2 iv(Magnesia) |
- |
1500 |
|
- |
| 6.1 Table-2 iii.(Insoluble residue) |
- |
1500 |
|
- |
| 6.1 Table-2 ii.(Ratio of percentage of alumina to that of iron oxide) |
- |
2500 |
|
- |
| 6.1 Table-2 i.(Ratio of percentage of lime to percentage of silica, alumina and iron oxide) |
- |
2500 |
|
- |
| 6 - Table - 1 viii(Alkali content as (Na2O + 0.658 K2O) - Cl 4.11 of IS 4032:1985) |
- |
1500 |
|
- |
| 6 - Table - 1 vii(Chloride content - Cl 4.13 of IS 4032:1985) |
- |
1500 |
|
- |
| 6 - Table - 1 vi(Loss on ignition - Cl 4.2 of IS 4032:1985) |
- |
1500 |
|
- |
| 6 - Table - 1 v(Total Sulphur Content calculated as Sulphuric Anhydride (SO3) - Cl 4.9 of IS 4032:1985) |
- |
1500 |
|
- |
| 6 - Table - 1 iv(Magnesia - Cl 4.8 of IS 4032:1985) |
- |
1500 |
|
- |
| 6 - Table - 1 iii(Insoluble residue - Cl 4.10 of IS 4032:1985) |
- |
1500 |
|
- |
| 6 - Table - 1 ii(Ratio of percentage of alumina to that of iron oxide - Cl 4 of IS 4032:1985) |
- |
2500 |
|
- |
| 6 - Table - 1 i(Ratio of percentage of lime to percentages of silica, alumina and iron oxide - Cl 4 of IS 4032:1985) |
- |
2500 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
500 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
500 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
500 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iii b(Setting Time Final) |
- |
500 |
|
- |
| 7 Table-3 iii a(Setting Time Initial) |
- |
0 |
|
- |
| 7 Table-3 ii b(Expansion after aeration) |
- |
500 |
|
- |
| 7 Table-3 ii b(Expansion by Autoclave) |
- |
500 |
|
- |
| 7 Table-3 ii a(Expansion after aeration) |
- |
500 |
|
- |
| 7 Table-3 ii a(Expansion by Le Chatelier) |
- |
500 |
|
- |
| 7 Table-3 i.(Fineness) |
- |
500 |
|
- |
| 6.1 Table-2 viii(Alkali content) |
- |
1500 |
|
- |
| 6.1 Table-2 vii(Chloride content) |
- |
1500 |
|
- |
| 6.1 Table-2 vi(Loss on ignition) |
- |
1500 |
|
- |
| 6.1 Table-2 iv(Magnesia) |
- |
1500 |
|
- |
| 6.1 Table-2 iii.(Insoluble residue) |
- |
1500 |
|
- |
| 6.1 Table-2 ii.(Ratio of percentage of alumina to that of iron oxide) |
- |
2500 |
|
- |
| 6.1 Table-2 i.(Ratio of percentage of lime to percentage of silica, alumina and iron oxide) |
- |
2500 |
|
- |
| 6 - Table - 1 viii( Alkali content as (Na2O + 0.658 K2O) - Cl 4.11 of IS 4032:1985) |
- |
1500 |
|
- |
| 6 - Table - 1 vii(Chloride content - Cl 4.13 of IS 4032:1985) |
- |
1500 |
|
- |
| 6 - Table - 1 vi(Loss on ignition - Cl 4.2 of IS 4032:1985) |
- |
1500 |
|
- |
| 6 - Table - 1 v(Total Sulphur Content calculated as Sulphuric Anhydride (SO3) - Cl 4.9 of IS 4032:1985) |
- |
1500 |
|
- |
| 6 - Table - 1 iv(Magnesia - Cl 4.8 of IS 4032:1985) |
- |
1500 |
|
- |
| 6 - Table - 1 iii(Insoluble residue - Cl 4.10 of IS 4032:1985) |
- |
1500 |
|
- |
| 6 - Table - 1 ii(Ratio of percentage of alumina to that of iron oxide - Cl 4 of IS 4032:1985) |
- |
1500 |
|
- |
| 6 - Table - 1 i(Ratio of percentage of lime to percentages of silica, alumina and iron oxide - Cl 4 of IS 4032:1985) |
- |
1500 |
|
- |
| 7.1.8(Pump efficiency shall be as per 11.4) |
- |
0 |
|
- |
| Clause 7
Table 3, SI No. (v)
(Compressive strength of Transverse Specimen, 672 ± 4 h) |
- |
0 |
|
- |
| Clause 7
Table 3, SI No. (v)
(Compressive strength of Transverse Specimen, 168 ± 2 h) |
- |
0 |
|
- |
| Clause 7
Table 3, SI No. (v)
(Compressive strength of Transverse Specimen, 72 ± 1 h) |
- |
0 |
|
- |
| Clause 7
Table 3, SI No. (v)
(Transverse Strength, 672 ± 4 h) |
- |
0 |
|
- |
| Clause 7
Table 3, SI No. (v)
(Transverse Strength, 168 ± 2 h) |
- |
0 |
|
- |
| Clause 7
Table 3, SI No. (v)
(Transverse Strength, 72 ± 1 h) |
- |
0 |
|
- |
| 7 Table-3 v(Transverse Strength - IS 4031 Part 8 (Optional)) |
- |
1500 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
500 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
500 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
500 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iii b(Setting Time Final) |
- |
500 |
|
- |
| 7 Table-3 iii a(Setting Time Initial) |
- |
500 |
|
- |
| 7 Table-3 ii b(Expansion after aeration) |
- |
500 |
|
- |
| 7 Table-3 ii b(Expansion by Autoclave) |
- |
500 |
|
- |
| 7 Table-3 ii a(Expansion after aeration) |
- |
500 |
|
- |
| 7 Table-3 ii a(Expansion by Le Chatelier) |
- |
500 |
|
- |
| 7 Table-3 i.(Fineness) |
- |
500 |
|
- |
| 6.1 Table-2 viii(Alkali content) |
- |
2500 |
|
- |
| 6.1 Table-2 vii(Chloride content) |
- |
1500 |
|
- |
| 6.1 Table-2 vi(Loss on ignition) |
- |
1500 |
|
- |
| 6.1 Table-2 v(Total Sulphur Content calculated as Sulphuric Anhydride) |
- |
1500 |
|
- |
| 6.1 Table-2 iv(Magnesia) |
- |
1500 |
|
- |
| 6.1 Table-2 iii.(Insoluble residue) |
- |
1500 |
|
- |
| 6.1 Table-2 ii.(Ratio of percentage of alumina to that of iron oxide) |
- |
2500 |
|
- |
| 6.1 Table-2 i.(Ratio of percentage of lime to percentage of silica, alumina and iron oxide) |
- |
2500 |
|
- |
| 6.1 Table-2 i.(Ratio of percentage of lime to percentage of silica, alumina and iron oxide) |
- |
0 |
|
- |
| 6.1 Table-2 ii.(Ratio of percentage of alumina to that of iron oxide) |
- |
0 |
|
- |
| 6.1 Table-2 iii.(Insoluble residue) |
- |
1500 |
|
- |
| 6.1 Table-2 iv(Magnesia) |
- |
1500 |
|
- |
| 6.1 Table-2 v(Total Sulphur Content calculated as Sulphuric Anhydride) |
- |
1500 |
|
- |
| 6.1 Table-2 vi(Loss on ignition) |
- |
1500 |
|
- |
| 6.1 Table-2 vii(Chloride content) |
- |
1500 |
|
- |
| 7 Table-3 i.(Fineness) |
- |
500 |
|
- |
| 7 Table-3 ii a(Expansion by Le Chatelier) |
- |
500 |
|
- |
| 7 Table-3 ii a(Expansion after aeration) |
- |
500 |
|
- |
| 7 Table-3 ii b(Expansion by Autoclave) |
- |
500 |
|
- |
| 7 Table-3 ii b(Expansion after aeration) |
- |
0 |
|
- |
| 7 Table-3 iii a(Setting Time Initial) |
- |
500 |
|
- |
| 7 Table-3 iii b(Setting Time Final) |
- |
500 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
500 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
500 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
500 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
500 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
500 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
0 |
|
- |
| 7 Table-3 v(Transverse Strength - IS 4031 Part 8 (Optional)) |
- |
0 |
|
- |
| 11(Marking) |
- |
500 |
|
- |
| 5(Manufacture) |
- |
0 |
|
- |
| 9(Manufacture certificate) |
- |
0 |
|
- |
| 10(Packing) |
- |
0 |
|
- |
| 5.1.1 Table 1 Sl. No. iv(Calcium Carbonate) |
- |
1500 |
|
- |
| 13(Requirment for an originating system ) |
- |
0 |
|
- |
| 14(Requirment for an Reciving system ) |
- |
0 |
|
- |
| 15.2.1(Records characteristics) |
- |
0 |
|
- |
| 15.2.2(Measured data unit) |
- |
0 |
|
- |
| 15.2.3(Fixed length record ) |
- |
500 |
|
- |
| 15.2.4(Variable length record) |
- |
0 |
|
- |
| 15.2.5(segmented records) |
- |
0 |
|
- |
| 15.3(Attributes of record structured files) |
- |
0 |
|
- |
| 15.4(Requirments for systems implementing section 4) |
- |
0 |
|
- |
| 7 Table-3 v(Transverse Strength - IS 4031 Part 8 (Optional)) |
- |
0 |
|
- |
| 6.1 Table-2 v(Total Sulphur Content calculated as Sulphuric Anhydride) |
- |
1500 |
|
- |
| 7.1.8(Pump efficiency shall be as per 11.4) |
- |
0 |
|
- |
| Clause 7
Table 3, SI No. (v)
(Compressive strength of Transverse Specimen, 672 ± 4 h) |
- |
0 |
|
- |
| Clause 7
Table 3, SI No. (v)
(Compressive strength of Transverse Specimen, 168 ± 2 h) |
- |
0 |
|
- |
| Clause 7
Table 3, SI No. (v)
(Compressive strength of Transverse Specimen, 72 ± 1 h) |
- |
0 |
|
- |
| Clause 7
Table 3, SI No. (v)
(Transverse Strength, 672 ± 4 h) |
- |
0 |
|
- |
| Clause 7
Table 3, SI No. (v)
(Transverse Strength, 168 ± 2 h) |
- |
0 |
|
- |
| Clause 7
Table 3, SI No. (v)
(Transverse Strength, 72 ± 1 h) |
- |
0 |
|
- |
| 7 Table-3 v(Transverse Strength - IS 4031 Part 8 (Optional)) |
- |
0 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iii b(Setting Time Final) |
- |
1000 |
|
- |
| 7 Table-3 iii a(Setting Time Initial) |
- |
1000 |
|
- |
| 7 Table-3 ii b(Expansion after aeration) |
- |
1000 |
|
- |
| 7 Table-3 ii b(Expansion by Autoclave) |
- |
1500 |
|
- |
| 7 Table-3 ii a(Expansion after aeration) |
- |
1500 |
|
- |
| 7 Table-3 ii a(Expansion by Le Chatelier) |
- |
1500 |
|
- |
| 7 Table-3 i.(Fineness) |
- |
1000 |
|
- |
| 6.1 Table-2 viii(Alkali content) |
- |
1500 |
|
- |
| 6.1 Table-2 vii(Chloride content) |
- |
1500 |
|
- |
| 6.1 Table-2 vi(Loss on ignition) |
- |
1500 |
|
- |
| 6.1 Table-2 v(Total Sulphur Content calculated as Sulphuric Anhydride) |
- |
1500 |
|
- |
| 6.1 Table-2 iv(Magnesia) |
- |
1500 |
|
- |
| 6.1 Table-2 iii.(Insoluble residue) |
- |
1500 |
|
- |
| 6.1 Table-2 ii.(Ratio of percentage of alumina to that of iron oxide) |
- |
1500 |
|
- |
| 6.1 Table-2 i.(Ratio of percentage of lime to percentage of silica, alumina and iron oxide) |
- |
1500 |
|
- |
| 6.1 Table-2 i.(Ratio of percentage of lime to percentage of silica, alumina and iron oxide) |
- |
1500 |
|
- |
| 6.1 Table-2 ii.(Ratio of percentage of alumina to that of iron oxide) |
- |
1500 |
|
- |
| 6.1 Table-2 iii.(Insoluble residue) |
- |
1500 |
|
- |
| 6.1 Table-2 iv(Magnesia) |
- |
1500 |
|
- |
| 6.1 Table-2 v(Total Sulphur Content calculated as Sulphuric Anhydride) |
- |
1500 |
|
- |
| 6.1 Table-2 vi(Loss on ignition) |
- |
1500 |
|
- |
| 6.1 Table-2 vii(Chloride content) |
- |
1500 |
|
- |
| 7 Table-3 i.(Fineness) |
- |
1000 |
|
- |
| 7 Table-3 ii a(Expansion by Le Chatelier) |
- |
1500 |
|
- |
| 7 Table-3 ii a(Expansion after aeration) |
- |
1500 |
|
- |
| 7 Table-3 ii b(Expansion by Autoclave) |
- |
1500 |
|
- |
| 7 Table-3 ii b(Expansion after aeration) |
- |
1500 |
|
- |
| 7 Table-3 iii a(Setting Time Initial) |
- |
1000 |
|
- |
| 7 Table-3 iii b(Setting Time Final) |
- |
1000 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iv a(Compressive Strength At 72 hrs ± 1 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iv b(Compressive Strength At 168 hrs ± 2 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 iv c(Compressive Strength At 672 hrs ± 4 hr - IS 4031 Part 6) |
- |
1000 |
|
- |
| 7 Table-3 v(Transverse Strength - IS 4031 Part 8 (Optional)) |
- |
0 |
|
- |
| 11(Marking) |
- |
1500 |
|
- |
| 5(Manufacture) |
- |
1500 |
|
- |
| 9(Manufacture certificate) |
- |
0 |
|
- |
| 10(Packing) |
- |
0 |
|
- |
| 5.1.1 Table 1 Sl. No. iv(Calcium Carbonate) |
- |
1500 |
|
- |
| 13(Requirment for an originating system ) |
- |
1000 |
|
- |
| 14(Requirment for an Reciving system ) |
- |
1000 |
|
- |
| 15.2.1(Records characteristics) |
- |
1500 |
|
- |
| 15.2.2(Measured data unit) |
- |
1500 |
|
- |
| 15.2.3(Fixed length record ) |
- |
1000 |
|
- |
| 15.2.4(Variable length record) |
- |
1000 |
|
- |
| 15.2.5(segmented records) |
- |
1500 |
|
- |
| 15.3(Attributes of record structured files) |
- |
1500 |
|
- |
| 15.4(Requirments for systems implementing section 4) |
- |
0 |
|
- |
|
- |
- included w.e.f 23.06.2026
7 Table-3 v (Transverse Strength - IS 4031 Part 8 (Optional)) |
| 2065 |
ATCC TEST LABS LLP
| 8172626
| IS 16246 (2015) |
Elastomer insulated cables with limited circuit integrity when affected by fire - Specification |
- |
85000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl.4.1( Cables for Fixed Installation) |
- |
1000 |
|
- |
| Cl.5( INSULATION) |
- |
1000 |
|
- |
| Cl. 6.1( Glass Tape) |
- |
1000 |
|
- |
| Cl 6.2( Polyethylene Teraphthalate (PETP) or Polypropylene base Tape) |
- |
1000 |
|
- |
| Cl 6.4( Fire Barrier Tape) |
- |
1000 |
|
- |
| Cl 7(CENTRE AND FILLERS) |
- |
1000 |
|
- |
| Cl 7(CENTRE AND FILLERS) |
- |
1000 |
|
- |
| Cl 7(CENTRE AND FILLERS) |
- |
1000 |
|
- |
| Cl 7(CENTRE AND FILLERS) |
- |
1000 |
|
- |
| Cl 8( ARMOUR) |
- |
1000 |
|
- |
| Cl 9.1( Inner Sheath) |
- |
1000 |
|
- |
| Cl 9.2( Outer Sheath) |
- |
1000 |
|
- |
| Cl 10.1( CONDUCTORS) |
- |
1000 |
|
- |
| Cl 10.2( CONDUCTORS) |
- |
1000 |
|
- |
| Cl 11.1( INSULATION) |
- |
1000 |
|
- |
| Cl 11.2(Thickness of Insulation IS 10810 : Part 6) |
- |
2000 |
|
- |
| Cl 12( CORE IDENTIFICATION) |
- |
1000 |
|
- |
| Cl 13( LAYING UP OF CORES) |
- |
1000 |
|
- |
| Cl 14.2( Thickness of Inner Sheath IS 10810 : Part 6) |
- |
2000 |
|
- |
| Cl 15.1( ARMOURING) |
- |
1000 |
|
- |
| Cl 15.3.1( Type of Armour) |
- |
1000 |
|
- |
| Cl 15.3.2( Type of Armour) |
- |
1000 |
|
- |
| Cl 15.3.3( ARMOURING) |
- |
1000 |
|
- |
| Cl 15.3.3( ARMOURING) |
- |
1000 |
|
- |
| Cl 15.4.1( ARMOURING) |
- |
1000 |
|
- |
| Cl 15.4.2( ARMOURING) |
- |
1000 |
|
- |
| Cl 15.4.2( ARMOURING) |
- |
1000 |
|
- |
| Cl 15.4.2( ARMOURING) |
- |
1000 |
|
- |
| Cl 15.4.2( ARMOURING) |
- |
1000 |
|
- |
| Cl 15.4.2( ARMOURING) |
- |
1000 |
|
- |
| Cl 15.4.2( ARMOURING) |
- |
1000 |
|
- |
| Cl 15.4.2( ARMOURING) |
- |
1000 |
|
- |
| Cl 16.2( OUTER SHEATH) |
- |
1000 |
|
- |
| Cl 16.3( Thickness of Outer Sheath - Avg IS 10810 : Part 6) |
- |
2000 |
|
- |
| Cl 16.3( Thickness of Outer Sheath - Minimum IS 10810 : Part 6) |
- |
2000 |
|
- |
| Cl 17.2(Annealing test (for copper) IS 10810 : Part 1) |
- |
2000 |
|
- |
| Cl 17.2(Conductor resistance test IS 10810 : Part 5) |
- |
2000 |
|
- |
| Cl 17.1(Persulphate test (tinned copper conductor) IS 10810 : Part 4) |
- |
2000 |
|
- |
| Cl 17.2(Tensile strength before ageing on insulation IS 10810 : Part 7) |
- |
2000 |
|
- |
| Cl 17.2(elongation at break before ageing on insulation IS 10810 : Part 7) |
- |
2000 |
|
- |
| Cl 17.2(Tensile strength after Ageing in air bomb IS 10810 : Part 56) |
- |
3000 |
|
- |
| Cl 17.2(Elongation after Ageing in air bomb IS 10810 : Part 56) |
- |
3000 |
|
- |
| Cl 17.2(Tensile strength variation) |
- |
3000 |
|
- |
| Cl 17.2(Elongation Variation) |
- |
3000 |
|
- |
| Cl 17.2(Hot set elongation on insulation IS 10810 : Part 30) |
- |
3000 |
|
- |
| Cl 17.2(Permanent elongation (set) on insulation IS 10810 : Part 30) |
- |
3000 |
|
- |
| Cl 17.1(Tensile strength before ageing on sheath IS 10810 : Part 7) |
- |
2000 |
|
- |
| Cl 17.1(elongation at break before ageing on sheath IS 10810 : Part 7) |
- |
2000 |
|
- |
| Cl 17.1(Hot set elongation test on sheath IS 10810 : Part 30) |
- |
3000 |
|
- |
| Cl 17.1(Permanent elongation (set) test on sheath IS 10810 : Part 30) |
- |
3000 |
|
- |
| Cl 17.1(Oxygen index test on sheath IS 10810 : Part 58) |
- |
5000 |
|
- |
| Cl 17.1(Temperature index test on sheath IS 10810 : Part 64) |
- |
5000 |
|
- |
| Cl 17.1(Acid gas generation on sheath IS 10810 : Part 39) |
- |
5000 |
|
- |
| Cl 17.2(Insulation resistance test IS 10810 : Part 43) |
- |
2000 |
|
- |
| Cl 17.1(Water absorption test (for insulation) IS 10810 : Part 28) |
- |
5000 |
|
- |
| Cl 18.2(High Voltage Test IS 10810 : Part 45) |
- |
2000 |
|
- |
| Cl 18.2(High Voltage Test IS 10810 : Part 45) |
- |
2000 |
|
- |
| Cl 18.3 Annex B of IS 16246( Circuit Integrity Test Under Fire Condition) |
- |
10000 |
|
- |
| Cl 18.3 Annex B of IS 16246( Circuit Integrity Test Under Fire Condition) |
- |
10000 |
|
- |
| Cl 18.4.1( Flame Retardence Test on Single Cable IS 10810 : Part 61) |
- |
2000 |
|
- |
| Cl 18.4.2(Flame Retardence Test on Bunched Cables IS 10810 : Part 63) |
- |
10000 |
|
- |
| Cl 19.1( Manufacturer’s Identification) |
- |
1000 |
|
- |
| Cl 19.2( Voltage Identification) |
- |
1000 |
|
- |
| Cl 19.3( Cable Identification) |
- |
1000 |
|
- |
| Cl 19.4( Cable Code) |
- |
1000 |
|
- |
|
15 Jun, 2029 |
- Included w.e.f. 17.03.2026 |
| 2066 |
ADS LABTECH, GHAZIABAD
| 8178326
| IS 10124 : Part 1 (2009) |
Fabricated PVC-U Fittings for Potable Water Supplies - Specification Part 1 General Requirements (Second Revision) |
FABRICATED PVC-U FITTINGS FOR POTABLE WATER SUPPLIES |
5100 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 3(Material) |
- |
2000 |
|
- |
| 4(Size of fitting) |
- |
200 |
|
- |
| 5.1 Table-1 Fig.1(Dimension of Socket length) |
- |
200 |
|
- |
| 5.1.2 Table-1(Dimensions of mean inside diameter at mid-point of socket depth) |
- |
200 |
|
- |
| 5.1.3 (Out of Roundness Tolerance of Socket Inside Diameter) |
- |
200 |
|
- |
| 5.2 Table-2 Fig.2(Dimensions of socket for elastomeric sealing ring) |
- |
200 |
|
- |
| 6.1(Opacity test in accordance with IS 12235 (Part 3)) |
- |
300 |
|
- |
| 6.2(Short Term Hydraulic Test in accordance with Annex A) |
- |
1300 |
|
- |
| 8(Marking) |
- |
0 |
|
- |
| 3.2.3(socket, measurements) |
- |
200 |
|
- |
| 3.1(Material) |
- |
2000 |
|
- |
| 6.3(Effect on water test) |
- |
3000 |
|
- |
|
15 May, 2027 |
- Included w.e.f 24.02.2026 |
| 2067 |
ATCC TEST LABS LLP
| 8172626
| IS 9968 : Part 1 (2025) |
Elastomer Insulated Cables - Specification Part 1 for Working Voltages up to and including 1100 volts (Second Revision) |
- |
20000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl-4.1(Copper Conductor) |
- |
1000 |
|
- |
| Cl-4.2(Aluminum Conductor) |
- |
1000 |
|
- |
| Cl-6.1(Proofed Tape) |
- |
1000 |
|
- |
| Cl-6.2("Polyethylene Terephthalate (PETP) Tape or
Plastic Tape or Any Other Suitable Tape") |
- |
1000 |
|
- |
| Cl-6.3(Glass Tape) |
- |
1000 |
|
- |
| Cl-7(Fillers) |
- |
1000 |
|
- |
| Cl-8.1(Textile Braid) |
- |
1000 |
|
- |
| Cl-8.2(Glass Braid) |
- |
1000 |
|
- |
| Cl-9.1(General Service Insulated Cables and Flexible Cords) |
- |
1000 |
|
- |
| Cl-9.2(Heat Resisting Insulated Cables) |
- |
1000 |
|
- |
| Cl-9.3(Silicon Rubber Insulated Cable) |
- |
1000 |
|
- |
| Cl-10.1(Preservative Compound) |
- |
1000 |
|
- |
| Cl-10.2(Varnish) |
- |
1000 |
|
- |
| Cl-12(separator tape) |
- |
1000 |
|
- |
| Cl-14(Core Identification) |
- |
1000 |
|
- |
| Cl-18(Laying UP of Cores) |
- |
1000 |
|
- |
| Cl-19(Binder Tape) |
- |
1000 |
|
- |
| Cl-20.2(Thickness of Sheath) |
- |
2000 |
|
- |
| Cl-20.3(Tolerance on Thickness of Sheath) |
- |
2000 |
|
- |
| Cl-20.4(Colour) |
- |
1000 |
|
- |
| Cl-22.1 (i) (a)(Conductor resistance test) |
- |
2000 |
|
- |
| Cl-22.1 (i) (b)(High voltage test or spark test.) |
- |
2000 |
|
- |
| Cl-22.1 (ii) (a)(Annealing test (for copper);) |
- |
2000 |
|
- |
| Cl-22.1 (ii) (b)(Tensile Test ((for aluminium);) |
- |
2000 |
|
- |
| Cl-22.1 (ii) (c)(Wrapping test (for aluminium);) |
- |
2000 |
|
- |
| Cl-22.1 (ii) (f)(Tensile strength and elongation at break of insulation and sheath) |
- |
2000 |
|
- |
| Cl-22.1 (ii) (g)(Hot set test for insulation and sheath) |
- |
2000 |
|
- |
| Cl-22.1 (ii) (h)(High voltage test) |
- |
2000 |
|
- |
| Cl-22.1 (ii) (i)(Insulation resistance test) |
- |
2000 |
|
- |
| Cl-22.1 (iii) (a)(Persulphate test (for tinned copper);) |
- |
2000 |
|
- |
| Cl-22.1 (iii) (f)(Test for thickness of insulation and sheath and overall diameter) |
- |
2000 |
|
- |
| Electrical(Tensile strength and elongation at break) |
- |
3000 |
|
- |
| Cl-22.1 (iii) (g), 2(Ageing in air oven) |
- |
3000 |
|
- |
| Cl-22.1 (iii) (g), 3(Ageing in air bomb) |
- |
3000 |
|
- |
| Cl-22.1 (iii) (g), 4(Ageing In oxygen bomb) |
- |
3000 |
|
- |
| Cl-22.1 (iii) (g), 5(Hot set) |
- |
2000 |
|
- |
| Cl-22.1 (iii) (g), 6(Oil resistance;) |
- |
2000 |
|
- |
| Cl-22.1 (iii) (g), 7(Tear resistance) |
- |
2000 |
|
- |
| Cl-22.1 (iii) (i)(High voltage (water immersion) test;) |
- |
2000 |
|
- |
| Cl-22.1 (iii) (j)(Flammability test) |
- |
2000 |
|
- |
| Cl-22.1 (iii) (k)(Water absorption test (for insulation as applicable)) |
- |
5000 |
|
- |
| Cl-24.1(Manufacturer’s Identification) |
- |
1000 |
|
- |
| Cl-25(Packing and Morning) |
- |
1000 |
|
- |
|
15 Jun, 2029 |
- Included w.e.f. 10.02.2026 |
| 2068 |
MATERIAL TESTING LABORATORY LLP
| 8176306
| IS 733 (2025) |
Wrought Aluminium and Aluminium Alloy Bars, Rods, Sections, Extruded Tube, Hollow Sections and Profiles for General Engineering Purposes ? Specification (Fourth Revision) |
All Grades |
10000.0 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl-4(General requirements) |
- |
0 |
|
- |
| Cl-6.1, Table-1 to 8(Fe) |
- |
500 |
|
- |
| Cl-6.1, Table-1 to 8(Cu) |
- |
500 |
|
- |
| Cl-6.1, Table-1 to 8(Mn) |
- |
500 |
|
- |
| Cl-6.1, Table-1 to 8(Mg) |
- |
1000 |
|
- |
| Cl-6.1, Table-1 to 8(Cr) |
- |
500 |
|
- |
| Cl-6.1, Table-1 to 8(Zn) |
- |
1000 |
|
- |
| Cl-6.1, Table-1 to 8(Ti) |
- |
500 |
|
- |
| Cl-6.1, Table-1 to 8(V) |
- |
500 |
|
- |
| Cl-6.1, Table-1 to 8(Aluminium) |
- |
0 |
|
- |
| Cl-6.2(chemical analysis) |
- |
0 |
|
- |
| Cl-7.1, 7.2 & 7.3, Table-9(Dimensions) |
- |
500 |
|
- |
| Cl-7.1, 7.2 & 7.3, Table-9(Rm MPa) |
- |
3500 |
|
- |
| Cl-7.1, 7.2 & 7.3, Table-9(Rp0.2 MPa) |
- |
0 |
|
- |
| Cl-7.1, 7.2 & 7.3, Table-9(Elongation , Percent) |
- |
0 |
|
- |
| Cl-9(Dimensions and Tolerances) |
- |
0 |
|
- |
| Cl-12(Packaging and Marking) |
- |
0 |
|
- |
| Cl-7.1(Tensile test) |
- |
0 |
|
- |
| Cl-5(Freedom from Defects) |
- |
500 |
|
- |
| Cl-6.1, Table-1 to 8(Si) |
- |
500 |
|
- |
|
- |
- included w.e.f 24.03.2026 |
| 2069 |
MATERIAL TESTING LABORATORY LLP
| 8176306
| IS 10748 (2025) |
Hot-Rolled Steel Strip for Welded Tubes and Pipes - Specification ( Third Revision) |
All Grades |
12500.0 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl-4(Supply of Materials) |
- |
0 |
|
- |
| Cl-6(Manufacture) |
- |
0 |
|
- |
| Cl-7.1(Ladle Analysis) |
- |
0 |
|
- |
| Cl-7.2(Product Analysis) |
- |
0 |
|
- |
| Cl-7.3(Carbon Equivalent Value) |
- |
0 |
|
- |
| Cl-8.1(Number of Tensile Tests) |
- |
0 |
|
- |
| Cl-8.2(Tensile Test Pieces) |
- |
0 |
|
- |
| Cl-8.3(Tensile Test) |
- |
0 |
|
- |
| Cl-8.3, Table-5 & 6(Tensile Strength, MPa) |
- |
2500 |
|
- |
| Cl-8.3, Table-5 & 6(Yield Strength, MPa) |
- |
0 |
|
- |
| Cl-8.3, Table-5 & 6(Internal Diameter of Bend) |
- |
500 |
|
- |
| Cl-9.1(Number of Bend Tests) |
- |
0 |
|
- |
| Cl-9.2(Bend test) |
- |
500 |
|
- |
| Cl-10(Re- Tests) |
- |
0 |
|
- |
| Cl-11(freedam from Defects) |
- |
500 |
|
- |
| Cl-12(Dimensions) |
- |
500 |
|
- |
| Cl-13(Tolerances) |
- |
0 |
|
- |
| Cl-14(Calculation of Mass) |
- |
500 |
|
- |
| Cl-16(Marking) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Carbon) |
- |
500 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Manganese) |
- |
500 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Sulphur) |
- |
500 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Phosphorus) |
- |
500 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Carbon Equivalent Value (CEV)) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(silicon) |
- |
500 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(aluminium) |
- |
500 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(total aluminium) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Niobium) |
- |
500 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Vanadium) |
- |
500 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Titanium) |
- |
500 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Nitrogen) |
- |
1000 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Copper) |
- |
500 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Mo + Cr +W) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Mo) |
- |
500 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Boron) |
- |
500 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Nickel) |
- |
500 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Chromium) |
- |
500 |
|
- |
| Cl-8.3, Table-5 & 6(Elongation at Gauge Length,) |
- |
0 |
|
- |
| Cl-4(Supply of Materials) |
- |
0 |
|
- |
| Cl-6(Manufacture) |
- |
0 |
|
- |
| Cl-7.1(Ladle Analysis) |
- |
0 |
|
- |
| Cl-7.2(Product Analysis) |
- |
0 |
|
- |
| Cl-7.3(Carbon Equivalent Value) |
- |
0 |
|
- |
| Cl-8.1(Number of Tensile Tests) |
- |
0 |
|
- |
| Cl-8.2(Tensile Test Pieces) |
- |
0 |
|
- |
| Cl-8.3(Tensile Test) |
- |
0 |
|
- |
| Cl-8.3, Table-5 & 6(Tensile Strength, MPa) |
- |
0 |
|
- |
| Cl-8.3, Table-5 & 6(Yield Strength, MPa) |
- |
0 |
|
- |
| Cl-8.3, Table-5 & 6(Internal Diameter of Bend) |
- |
0 |
|
- |
| Cl-9.1(Number of Bend Tests) |
- |
0 |
|
- |
| Cl-9.2(Bend test) |
- |
0 |
|
- |
| Cl-10(Re- Tests) |
- |
0 |
|
- |
| Cl-11(freedam from Defects) |
- |
0 |
|
- |
| Cl-12(Dimensions) |
- |
0 |
|
- |
| Cl-13(Tolerances) |
- |
0 |
|
- |
| Cl-14(Calculation of Mass) |
- |
0 |
|
- |
| Cl-16(Marking) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Carbon) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Manganese) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Sulphur) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Phosphorus) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Carbon Equivalent Value (CEV)) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(silicon) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(aluminium) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(total aluminium) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Niobium) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Vanadium) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Titanium) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Nitrogen) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Copper) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Mo + Cr +W) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Mo) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Boron) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Nickel) |
- |
0 |
|
- |
| Cl-7.1, 7.2, 7.3 & 7.4(Chromium) |
- |
0 |
|
- |
| Cl-8.3, Table-5 & 6(Elongation at Gauge Length,) |
- |
0 |
|
- |
|
- |
- included w.e.f 24.03.2026 |
| 2070 |
STAR LABS TEST CENTRE LLP, JAIPUR
| 8180526
| IS 1180 : Part 3 (2021) |
Outdoor/Indoor Type Liquid Immersed Distribution Transformers Up to and Including 2 500 kVA, 33 kV — Specification Part 3 Natural/Synthetic Organic Ester Liquid Immersed |
Distribution Transformers Rating Up to 2500 kVA, voltage class upto 33 kV |
129000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 6.1 Table 1(Standard Ratings) |
- |
0 |
|
- |
| 6.2, 7.2, 8.2(Rated Frequency) |
- |
0 |
|
- |
| 6.3, 7.3(Nominal System Voltage) |
- |
0 |
|
- |
| 6.4(Table 2 Minimum Basic Insulation Level) |
- |
0 |
|
- |
| 6.5, 7.5(No-Load Voltage Ratios) |
- |
5500 |
|
- |
| 6.6, 7.6(Winding Connections and Phase Displacement) |
- |
5500 |
|
- |
| 6.7(Tapping Range and Tapping Methods) |
- |
0 |
|
- |
| 6.8(Table 3 Losses and Impedance Values) |
- |
8000 |
|
- |
| 6.9(Permissible Flux Density and Over Fluxing) |
- |
1000 |
|
- |
| 6.10(Limits of Temperature-rise) |
- |
24000 |
|
- |
| 7.1(Table 4 Standard Ratings) |
- |
0 |
|
- |
| 7.4(Table 5 Minimum Basic Insulation Level) |
- |
0 |
|
- |
| 7.7(Tapping Ranges and Tapping Methods) |
- |
0 |
|
- |
| 7.8(Losses and Impedance Values) |
- |
8000 |
|
- |
| 7.9(Permissible Flux Density and Overfluxing) |
- |
1000 |
|
- |
| 7.10(Limits of Temperature Rise) |
- |
24000 |
|
- |
| 8.1 Table 7(Standard Ratings) |
- |
0 |
|
- |
| 8.3(Nominal System Voltage) |
- |
0 |
|
- |
| 8.5(No Load Voltage Ratio) |
- |
5500 |
|
- |
| 8.6(Number of Phases and Polarity) |
- |
5500 |
|
- |
| 8.4(Table 8 Minimum Basic Insulation Level) |
- |
0 |
|
- |
| 8.8(Losses and Impedance Values) |
- |
8000 |
|
- |
| 8.9(Permissible Flux Density and Overfluxing) |
- |
1000 |
|
- |
| 8.10(Limits of Temperature Rise) |
- |
24000 |
|
- |
| 9(Standard Materials) |
- |
0 |
|
- |
| 10(Terminal Arrangement) |
- |
0 |
|
- |
| 11(Minimum clearances in air) |
- |
0 |
|
- |
| 12(Connectors (Applicable for bare bushing terminations only)) |
- |
0 |
|
- |
| 13(Marking) |
- |
0 |
|
- |
| 14(Mounting Arrangement) |
- |
0 |
|
- |
| 15(Transformer Tank) |
- |
0 |
|
- |
| 16(Conservator for non-sealed typetransformers) |
- |
0 |
|
- |
| 18(Efficiency and regulation) |
- |
0 |
|
- |
| 19(Tolerances) |
- |
0 |
|
- |
| 20(Fittings) |
- |
0 |
|
- |
| 21.2 a(Measurement of winding resistance
[IS 2026 (Part 1)].) |
- |
7000 |
|
- |
| 21.2 b(Measurement of voltage ratio and check of phase
displacement [IS 2026 (Part 1)].) |
- |
5500 |
|
- |
| 21.2 c(Measurement of short-circuit impedance
(principal tapping, when applicable) and load
loss at 50 percent and 100 percent load
[IS 2026 (Part 1)].) |
- |
8000 |
|
- |
| 21.2 d(Measurement of no-load loss and current
[IS 2026 (Part 1)].) |
- |
3500 |
|
- |
| 21.2 e(Measurement of insulation resistance
[IS 2026 (Part 1)].) |
- |
2500 |
|
- |
| 21.2 f(Induced over-voltage withstand test
[IS 2026 (Part 3)].) |
- |
4500 |
|
- |
| 21.2 g(Separate-source voltage withstand test
[IS 2026 (Part 3)]) |
- |
4000 |
|
- |
| 21.3 a(Lightning impulse test [IS 2026 (Part 3)].) |
- |
40000 |
|
- |
| 21.3 b(Temperature-rise test [IS 2026 (Part 2)].) |
- |
24000 |
|
- |
| 21.3 d(Pressure test) |
- |
7000 |
|
- |
| 21.4 a(Determination of sound levels [IS 2026 (Part 10)];) |
- |
7000 |
|
- |
| 21.4 c(No load current at 112.5 percent voltage
(see 6.9.2, 7.9.2, 8.9.2);) |
- |
1000 |
|
- |
| 21.5(Pressure and Ester Liquid Leakage Test) |
- |
7000 |
|
- |
| 4(SERVICE CONDITIONS) |
- |
0 |
|
- |
| 5(General) |
- |
0 |
|
- |
| 6.1(Rating) |
- |
0 |
|
- |
| 6.2(Rated Frequceny) |
- |
0 |
|
- |
| 6.3(Nominal System Voltage) |
- |
0 |
|
- |
| 6.4(Basic Insulation Level) |
- |
0 |
|
- |
| 6.5(No-Load Voltage Ratios) |
- |
5500 |
|
- |
| 6.6(Winding connection and phase displacement) |
- |
5500 |
|
- |
| 6.7(Tapping range and tapping methods) |
- |
0 |
|
- |
| 6.8(Losses and Impedance Value) |
- |
8000 |
|
- |
| 6.9(Permissible flux density and over fluxing) |
- |
1000 |
|
- |
| 6.10(Limits of temperature-rise) |
- |
24000 |
|
- |
| 7("Technical parameters of three phase distribution
transformers higher ") |
- |
0 |
|
- |
| 8(Technical parameter of single phase distribution transformers) |
- |
0 |
|
- |
| 9(Standard Materials) |
- |
0 |
|
- |
| 10(Terminal Arrangement) |
- |
0 |
|
- |
| 11(Minimum clearances in air) |
- |
0 |
|
- |
| 12(Connectors for bare bushing terminations) |
- |
0 |
|
- |
| 13(Marking) |
- |
0 |
|
- |
| 14(Mounting Arrangement) |
- |
0 |
|
- |
| 15(Trasnformer tank) |
- |
0 |
|
- |
| 16(Conservator for non-sealed type transformers) |
- |
0 |
|
- |
| 18(Efficiency and regulations) |
- |
0 |
|
- |
| 19(Tolerances) |
- |
0 |
|
- |
| 20(Fittings) |
- |
0 |
|
- |
| 21.1(General) |
- |
0 |
|
- |
| 21.2(Routine Tests) |
- |
49000 |
|
- |
| 21.3(Types test) |
- |
71000 |
|
- |
| 21.4(Special Test) |
- |
9000 |
|
- |
| 21.5(Pressure and Ester Liquid Leakage Test) |
- |
7000 |
|
- |
| 22(Information required with enquiry and order) |
- |
0 |
|
- |
| 6.1 Table 1(Standard Ratings) |
- |
0 |
|
- |
| 6.2, 7.2, 8.2(Rated Frequency) |
- |
0 |
|
- |
| 6.3, 7.3(Nominal System Voltage) |
- |
0 |
|
- |
| 6.4(Table 2 Minimum Basic Insulation Level) |
- |
0 |
|
- |
| 6.5, 7.5(No-Load Voltage Ratios) |
- |
5500 |
|
- |
| 6.6, 7.6(Winding Connections and Phase Displacement) |
- |
5500 |
|
- |
| 6.7(Tapping Range and Tapping Methods) |
- |
0 |
|
- |
| 6.8(Table 3 Losses and Impedance Values) |
- |
8000 |
|
- |
| 6.9(Permissible Flux Density and Over Fluxing) |
- |
1000 |
|
- |
| 6.10(Limits of Temperature-rise) |
- |
24000 |
|
- |
| 7.1(Table 4 Standard Ratings) |
- |
0 |
|
- |
| 7.4(Table 5 Minimum Basic Insulation Level) |
- |
0 |
|
- |
| 7.7(Tapping Ranges and Tapping Methods) |
- |
0 |
|
- |
| 7.8(Losses and Impedance Values) |
- |
8000 |
|
- |
| 7.9(Permissible Flux Density and Overfluxing) |
- |
1000 |
|
- |
| 7.10(Limits of Temperature Rise) |
- |
24000 |
|
- |
| 8.1 Table 7(Standard Ratings) |
- |
0 |
|
- |
| 8.3(Nominal System Voltage) |
- |
0 |
|
- |
| 8.5(No Load Voltage Ratio) |
- |
5500 |
|
- |
| 8.6(Number of Phases and Polarity) |
- |
5500 |
|
- |
| 8.4(Table 8 Minimum Basic Insulation Level) |
- |
0 |
|
- |
| 8.8(Losses and Impedance Values) |
- |
8000 |
|
- |
| 8.9(Permissible Flux Density and Overfluxing) |
- |
1000 |
|
- |
| 8.10(Limits of Temperature Rise) |
- |
24000 |
|
- |
| 9(Standard Materials) |
- |
0 |
|
- |
| 10(Terminal Arrangement) |
- |
0 |
|
- |
| 11(Minimum clearances in air) |
- |
0 |
|
- |
| 12(Connectors (Applicable for bare bushing terminations only)) |
- |
0 |
|
- |
| 13(Marking) |
- |
0 |
|
- |
| 14(Mounting Arrangement) |
- |
0 |
|
- |
| 15(Transformer Tank) |
- |
0 |
|
- |
| 16(Conservator for non-sealed typetransformers) |
- |
0 |
|
- |
| 18(Efficiency and regulation) |
- |
0 |
|
- |
| 19(Tolerances) |
- |
0 |
|
- |
| 20(Fittings) |
- |
0 |
|
- |
| 21.2 a(Measurement of winding resistance
[IS 2026 (Part 1)].) |
- |
7000 |
|
- |
| 21.2 b(Measurement of voltage ratio and check of phase
displacement [IS 2026 (Part 1)].) |
- |
5500 |
|
- |
| 21.2 c(Measurement of short-circuit impedance
(principal tapping, when applicable) and load
loss at 50 percent and 100 percent load
[IS 2026 (Part 1)].) |
- |
8000 |
|
- |
| 21.2 d(Measurement of no-load loss and current
[IS 2026 (Part 1)].) |
- |
3500 |
|
- |
| 21.2 e(Measurement of insulation resistance
[IS 2026 (Part 1)].) |
- |
2500 |
|
- |
| 21.2 f(Induced over-voltage withstand test
[IS 2026 (Part 3)].) |
- |
4500 |
|
- |
| 21.2 g(Separate-source voltage withstand test
[IS 2026 (Part 3)]) |
- |
4000 |
|
- |
| 21.3 a(Lightning impulse test [IS 2026 (Part 3)].) |
- |
40000 |
|
- |
| 21.3 b(Temperature-rise test [IS 2026 (Part 2)].) |
- |
24000 |
|
- |
| 21.3 d(Pressure test) |
- |
7000 |
|
- |
| 21.4 a(Determination of sound levels [IS 2026 (Part 10)];) |
- |
7000 |
|
- |
| 21.4 c(No load current at 112.5 percent voltage
(see 6.9.2, 7.9.2, 8.9.2);) |
- |
1000 |
|
- |
| 21.5(Pressure and Ester Liquid Leakage Test) |
- |
7000 |
|
- |
| 4(SERVICE CONDITIONS) |
- |
0 |
|
- |
| 5(General) |
- |
0 |
|
- |
| 6.1(Rating) |
- |
0 |
|
- |
| 6.2(Rated Frequceny) |
- |
0 |
|
- |
| 6.3(Nominal System Voltage) |
- |
0 |
|
- |
| 6.4(Basic Insulation Level) |
- |
0 |
|
- |
| 6.5(No-Load Voltage Ratios) |
- |
5500 |
|
- |
| 6.6(Winding connection and phase displacement) |
- |
5500 |
|
- |
| 6.7(Tapping range and tapping methods) |
- |
0 |
|
- |
| 6.8(Losses and Impedance Value) |
- |
8000 |
|
- |
| 6.9(Permissible flux density and over fluxing) |
- |
1000 |
|
- |
| 6.10(Limits of temperature-rise) |
- |
24000 |
|
- |
| 7("Technical parameters of three phase distribution
transformers higher ") |
- |
0 |
|
- |
| 8(Technical parameter of single phase distribution transformers) |
- |
0 |
|
- |
| 9(Standard Materials) |
- |
0 |
|
- |
| 10(Terminal Arrangement) |
- |
0 |
|
- |
| 11(Minimum clearances in air) |
- |
0 |
|
- |
| 12(Connectors for bare bushing terminations) |
- |
0 |
|
- |
| 13(Marking) |
- |
0 |
|
- |
| 14(Mounting Arrangement) |
- |
0 |
|
- |
| 15(Trasnformer tank) |
- |
0 |
|
- |
| 16(Conservator for non-sealed type transformers) |
- |
0 |
|
- |
| 18(Efficiency and regulations) |
- |
0 |
|
- |
| 19(Tolerances) |
- |
0 |
|
- |
| 20(Fittings) |
- |
0 |
|
- |
| 21.1(General) |
- |
0 |
|
- |
| 21.2(Routine Tests) |
- |
49000 |
|
- |
| 21.3(Types test) |
- |
71000 |
|
- |
| 21.4(Special Test) |
- |
9000 |
|
- |
| 21.5(Pressure and Ester Liquid Leakage Test) |
- |
7000 |
|
- |
| 22(Information required with enquiry and order) |
- |
0 |
|
- |
|
07 Oct, 2027 |
- Included w.e.f 01.04.2026
"17 (Ability of Transformers to withstand external short circuit)
21.3 c (Short-circuit withstand test [IS 2026 (Part 5)] (up to 200 kVA) and)
21.4 e (BDV and Moisture content of liquid in the transformer (IS 16081, IS 16099, IS 16899 or IS 16659, whichever is applicable).)
21.3 c (Short-circuit withstand test [IS 2026 (Part 5)] (up to 200 kVA) and)
21.4 d (Paint adhesion test — The test is performed as per ASTM D3359 (Standard Test Methods for measuring adhesion by tape test).)
21.4 e (BDV and Moisture content of liquid in the transformer (IS 16081, IS 16099, IS 16899 or IS 16659, whichever is applicable).)
21.4 b (Short-circuit withstand test [IS 2026 (Part 5)] (above 200 kVA);)" |