| 8821 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 3549 (2017) |
Rubber hoses and hose assemblies for water suction and discharge - Specification (Second Revision) |
- |
38800 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl 8.2.7 & Table 4(Ozone resistance of the cover) |
- |
12500 |
|
- |
| Cl 8.2.6 & Table 4(Adhesion) |
- |
1000 |
|
- |
| Cl 8.2.5 & Table 4(Low-temperature flexibility) |
- |
5000 |
|
- |
| Cl 8.2.4 & Table 4(Resistance to suction flattening) |
- |
2000 |
|
- |
| Cl 8.2.3 & Table 3(Resistance to bending (minimum bend radius as a function of nominal size)) |
- |
1000 |
|
- |
| Cl 8.2.2 & Table 2(When tested by the method specified in ISO 1402, hoses shall meet the requirements of Table 2.) |
- |
2000 |
|
- |
| Cl 8.2.1 & Table 4(Variation in length at max. working pressure) |
- |
2000 |
|
Change in length - RS 1000, Change in Diameter - RS 1000 |
| Cl 8.2.1 & Table 2(Hydrostatic-pressure requirements (proof pressure test)) |
- |
2000 |
|
- |
| Cl 8.1.3 & Table 1(Resistance to ageing-Change in elongation at break from
original value (max.) ) |
- |
1500 |
|
- |
| Cl 8.1.3 & Table 1(Resistance to ageing-Change in elongation at break from
original value (max.) ) |
- |
1500 |
|
- |
| Cl 8.1.3 & Table 1(Resistance to ageing-Change in tensile strength from
original value (max.)) |
- |
1500 |
|
- |
| Cl 8.1.3 & Table 1(Resistance to ageing-Change in tensile strength from
original value (max.)) |
- |
1500 |
|
- |
| Cl 8.1.2 & Table 1(Elongation at break, min.) |
- |
1000 |
|
- |
| Cl 8.1.2 & Table 1(Elongation at break, min.) |
- |
1000 |
|
- |
| Cl 8.1.2 & Table 1(Tensile strength, min.) |
- |
1000 |
|
- |
| Cl 8.1.2 & Table 1(Tensile strength, min.) |
- |
1000 |
|
- |
| Cl 7.5(Cover) |
- |
100 |
|
- |
| Cl 7.4 & Table 4(Lining) |
- |
100 |
|
- |
| Cl 7.3(Unit lengths) |
- |
200 |
|
- |
| Cl 7.2(Enlarged ends) |
- |
200 |
|
- |
| Cl 7.1 & Table 3(Bore (inside diameter)) |
- |
200 |
|
- |
| Cl 6.3(Cover) |
- |
100 |
|
- |
| Cl 6.2(Reinforcement) |
- |
100 |
|
- |
| Cl 6.1(Lining) |
- |
100 |
|
- |
| Cl 5(Couplings and end fittings) |
- |
0 |
|
- |
| Cl 4(Classification) |
- |
200 |
|
- |
|
03 Mar, 2027 |
- - |
| 8822 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 446 (2017) |
Rubber hoses, textile - Reinforced, for compressed air - Specification (Fifth Revision) |
- |
39900 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 7.2, Table 3(Low temperature Flexibility) |
- |
5000 |
|
- |
| 7.2, Table 3(Flexibility at 23°C) |
- |
1000 |
|
- |
| 7.2, Table 3(Ozone Resistance) |
- |
12500 |
|
- |
| 7.2, Table 3(Adhesion between Components- Cover and Reinforcement) |
- |
1000 |
|
- |
| 7.2, Table 3(Adhesion between Components- Reinforcement layers) |
- |
1000 |
|
- |
| 7.2, Table 3(Adhesion between Components- Lining and Reinforcement) |
- |
1000 |
|
- |
| 7.2, Table 3(Minimum Bursting Pressure for type 3) |
- |
2000 |
|
- |
| 7.2, Table 3(Minimum Bursting Pressure for type 2) |
- |
2000 |
|
- |
| 7.2, Table 3(Minimum Bursting Pressure for type 1) |
- |
2000 |
|
- |
| 7.2, Table 3(Change in Diameeter at Maximum working Pressure) |
- |
1000 |
|
- |
| 7.2, Table 3(Change in Length at Maximum working Pressure) |
- |
1000 |
|
- |
| 7.2, Table 3(Proof Pressure at 23°C for type 3) |
- |
2000 |
|
- |
| 7.2, Table 3(Proof Pressure at 23°C for type 2) |
- |
2000 |
|
- |
| 7.2, Table 3(Proof Pressure at 23°C for type 1) |
- |
2000 |
|
- |
| 7.1, Table 2(Resistance to Liquid , Increase in Volume (Class C only)-Cover) |
- |
1500 |
|
- |
| 7.1, Table 2(Resistance to Liquid , Increase in Volume (Class C only)-Lining) |
- |
1500 |
|
- |
| 7.1, Table 2(Resistance to Liquid , Increase in Volume (Class B only)-Lining) |
- |
1500 |
|
- |
| 7.1, Table 2(Accelerated Ageing for all types: Change in Elongation of Cover of its original value) |
- |
1500 |
|
- |
| 7.1, Table 2(Accelerated Ageing for all types: Change in Elongation of Lining of its original value) |
- |
1500 |
|
- |
| 7.1, Table 2(Accelerated Ageing for all types: Change in Tensile Strength of Cover of its original value) |
- |
1500 |
|
- |
| 7.1, Table 2(Accelerated Ageing for all types: Change in Tensile Strength of Lining of its original value) |
- |
1500 |
|
- |
| 7.1, Table 2(Elongation at Break of Cover of all types) |
- |
1000 |
|
- |
| 7.1, Table 2(Elongation at Break of Lining of all types) |
- |
1000 |
|
- |
| 7.1, Table 2(Tensile Strength of Cover) |
- |
1000 |
|
- |
| 7.1, Table 2(Tensile Strength of Lining) |
- |
1000 |
|
- |
| 6, Dimensions(Thickness of Cover of Type 3) |
- |
200 |
|
- |
| 6, Dimensions(Thickness of Cover of Type 2) |
- |
200 |
|
- |
| 6, Dimensions(Thickness of Cover of Type 1) |
- |
200 |
|
- |
| 6, Dimensions(Thickness of Lining of Type 3) |
- |
200 |
|
- |
| 6, Dimensions(Thickness of Lining of Type 2) |
- |
200 |
|
- |
| 6, Dimensions(Thickness of Lining of Type 1) |
- |
200 |
|
- |
| 6, Dimensions(Tolerance on Length) |
- |
200 |
|
- |
| 6, Dimensions(Concentricity) |
- |
300 |
|
- |
| 6, Dimensions(Internal Diameter) |
- |
200 |
|
- |
| 5(Material and Construction) |
- |
300 |
|
- |
| Cl 7.2 & Table 3(Low-temperature flexibility) |
- |
5000 |
|
- |
| Cl 7.2 & Table 3(Flexibility at 23 °C) |
- |
1000 |
|
- |
| Cl 7.2 & Table 3(Ozone resistance) |
- |
12500 |
|
- |
| Cl 7.2 & Table 3(Adhesion between components) |
- |
1000 |
|
- |
| Cl 7.2 & Table 3(Minimum burst pressure) |
- |
2000 |
|
- |
| Cl 7.2 & Table 3(Minimum burst pressure) |
- |
2000 |
|
- |
| Cl 7.2 & Table 3(Minimum burst pressure) |
- |
2000 |
|
- |
| Cl 7.2 & Table 3(Change in diameter at maximum working pressure) |
- |
1000 |
|
- |
| Cl 7.2 & Table 3(Change in length at maximum working pressure) |
- |
1000 |
|
- |
| Cl 7.2 & Table 3(Proof pressure) |
- |
2000 |
|
- |
| Cl 7.2 & Table 3(Proof pressure) |
- |
2000 |
|
- |
| Cl 7.2 & Table 3(Proof pressure) |
- |
2000 |
|
- |
| Cl 7.1 & Table 2(Resistance to liquids-Increase in volume (max.)
(class C only) ) |
- |
1500 |
|
- |
| Cl 7.1 & Table 2(Resistance to liquids-Increase in volume (max.)
(class C only) ) |
- |
1500 |
|
- |
| Cl 7.1 & Table 2(Resistance to liquids-Increase in volume (max.)
(class B only) ) |
- |
1500 |
|
- |
| Cl 7.1 & Table 2(Resistance to liquids-Increase in volume (max.)
(class B only) ) |
- |
1500 |
|
- |
| Cl 7.1 & Table 2(Resistance to liquids-Increase in volume (class A)) |
- |
1500 |
|
- |
| Cl 7.1 & Table 2(Resistance to liquids-Increase in volume (class A)) |
- |
1500 |
|
- |
| Cl 7.1 & Table 2(Resistance to ageing-Change in elongation at break
from original value (max.)
original value (max.) ) |
- |
1500 |
|
- |
| Cl 7.1 & Table 2(Resistance to ageing-Change in elongation at break
from original value (max.)
original value (max.) ) |
- |
1500 |
|
- |
| Cl 7.1 & Table 2(Resistance to ageing-Change in tensile strength from
original value (max.) ) |
- |
1500 |
|
- |
| Cl 7.1 & Table 2(Resistance to ageing-Change in tensile strength from
original value (max.) ) |
- |
1500 |
|
- |
| Cl 7.1 & Table 2(Minimum elongation at break) |
- |
1000 |
|
- |
| Cl 7.1 & Table 2(Minimum elongation at break) |
- |
1000 |
|
- |
| Cl 7.1 & Table 2(Minimum tensile strength) |
- |
1000 |
|
- |
| Cl 7.1 & Table 2(Minimum tensile strength) |
- |
1000 |
|
- |
| Cl 6.4(Minimum thickness of lining and cover-Type 3) |
- |
200 |
|
- |
| Cl 6.4(Minimum thickness of lining and cover-Type 3) |
- |
200 |
|
- |
| Cl 6.4(Minimum thickness of lining and cover-Type 2 ) |
- |
200 |
|
- |
| Cl 6.4(Minimum thickness of lining and cover-Type 2 ) |
- |
200 |
|
- |
| Cl 6.4(Minimum thickness of lining and cover-Type 1 ) |
- |
200 |
|
- |
| Cl 6.4(Minimum thickness of lining and cover-Type 1 ) |
- |
200 |
|
- |
| Cl 6.3(Tolerance on length) |
- |
200 |
|
- |
| Cl 6.2(Concentricity) |
- |
300 |
|
- |
| Cl 6.1 & Table 1(Internal diameters and tolerances) |
- |
200 |
|
- |
| Cl 5(Materials and construction) |
- |
300 |
|
- |
| Cl 5(Materials and construction) |
- |
300 |
|
- |
| Cl 4(Classification) |
- |
200 |
|
- |
| Cl 4(Classification) |
- |
200 |
|
- |
| Cl 4(Classification) |
- |
200 |
|
- |
|
03 Mar, 2027 |
- - |
| 8823 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 444 (2017) |
Rubber hoses, textile - Reinforced, for general - Purpose water applications - Specification (Fifth Revision) |
- |
35900 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4(Classification - IS 444) |
- |
200 |
|
- |
| 5(Lining - IS 444) |
- |
100 |
|
- |
| 5(Reinforcement - IS 444) |
- |
100 |
|
- |
| 5(Cover - IS 444) |
- |
100 |
|
- |
| 5(Lining and Cover - IS 444) |
- |
300 |
|
- |
| 6.1- Table 1(Internal diameters - ISO 4671) |
- |
200 |
|
- |
| 6.2(Concentricity - ISO 4671) |
- |
300 |
|
- |
| 6.3(Length -IS 4671) |
- |
200 |
|
- |
| 6.4( thickness of the lining plus cover - ISO 4671) |
- |
200 |
|
- |
| 6.4(If the cover is fluted, the depth of the flutes - ISO 4671) |
- |
200 |
|
- |
| 7.1 - Table 2( tensile strength of Lining - ISO 37 ) |
- |
1000 |
|
- |
| 7.1 - Table 2( tensile strength of Cover - ISO 37 ) |
- |
1000 |
|
- |
| 7.1 - Table 2(elongation at break of Lining - ISO 37) |
- |
1000 |
|
- |
| 7.1 - Table 2(elongation at break of Cover - ISO 37) |
- |
1000 |
|
- |
| 7.1 - Table 2(Change in tensile strength of Lining from original value after ageing(max) - ISO 188 and ISO 37) |
- |
1500 |
|
- |
| 7.1 - Table 2(Change in tensile strength of Cover from original value after ageing(max) - ISO 188 and ISO 37) |
- |
1500 |
|
- |
| 7.1 - Table 2(Change in elongation at break of Lining from original value after ageing (max.) - ISO 188 and ISO 37) |
- |
1500 |
|
- |
| 7.1 - Table 2(Change in elongation at break of Cover from original value after ageing (max.) - ISO 188 and ISO 37) |
- |
1500 |
|
- |
| 7.2 - Table 3(Proof pressure at 23 °C - ISO 1402) |
- |
2000 |
|
- |
| 7.2 - Table 3(Change in length at proof pressure - ISO 1402) |
- |
1000 |
|
- |
| 7.2 - Table 3(Minimum burst pressure - ISO 1402) |
- |
2000 |
|
- |
| 7.2 - Table 3(Adhesion between components - ISO 8033) |
- |
1000 |
|
- |
| 7.2 - Table 3(Ozone resistance - ISO 7326) |
- |
12500 |
|
- |
| 7.2 - Table 3(Flexibility at 23 °C - Method A of ISO 1746) |
- |
1000 |
|
- |
| 7.2 - Table 3(Low-temperature flexibility - Method B of ISO 4672) |
- |
5000 |
|
- |
|
03 Mar, 2027 |
- - |
| 8824 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 926 (1985) |
Specification For Fireman's Axe |
- |
20000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 2.1(General) |
- |
0 |
|
- |
| 4.1(Shape, Dimension & Construction) |
- |
2500 |
|
- |
| 4.2(Shape, Dimension & Construction) |
- |
500 |
|
- |
| 4.3(Shape, Dimension & Construction) |
- |
2000 |
|
- |
| 5.1(Workmanship and Finish) |
- |
1000 |
|
- |
| 6.2(Performance Test (Load)) |
- |
2000 |
|
- |
| 6.1(Cutting Edge) |
- |
2000 |
|
- |
| 6.3(Insulated Handle) |
- |
10000 |
|
- |
|
03 Mar, 2027 |
- Exclusion: Material (Cl 3, 3.1, 3.1.1, 3.2) |
| 8825 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 952 (2012) |
Fog nozzle for fire brigade use - Specification (Second Revision) |
- |
15000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4.0(Shape and Dimension) |
- |
3000 |
|
- |
| 5.0(Performance Requirements) |
- |
5000 |
|
- |
| 5.2.2(Hydraulic Pressure Test) |
- |
3000 |
|
- |
| 6.0(Workmanship and Finish) |
- |
500 |
|
- |
| 4.1(Shape and Dimension) |
- |
3000 |
|
- |
| 5.1(Performance Test (Water Flow Rate of Fog Nozzle Head)) |
- |
5000 |
|
- |
| 5.1(Performance Test (Water Flow Rate of Jet Head)) |
- |
5000 |
|
- |
| 5.2(Type of fog) |
- |
500 |
|
- |
| 5.2.1(Angle of cone of fog) |
- |
500 |
|
- |
| 5.2.2(Hydraulic Pressure Test) |
- |
3000 |
|
- |
| 5.3(Horizontal reach of the fog) |
- |
1500 |
|
- |
| 6(Workmanship) |
- |
500 |
|
- |
| 6(Anticorrosive treatment) |
- |
1000 |
|
- |
| 4.1(Shape and Dimension) |
- |
3000 |
|
- |
| 5.1(Performance Test (Water Flow Rate of Fog Nozzle Head)) |
- |
5000 |
|
- |
| 5.1(Performance Test (Water Flow Rate of Jet Head)) |
- |
5000 |
|
- |
| 5.2(Type of fog) |
- |
500 |
|
- |
| 5.2.1(Angle of cone of fog) |
- |
500 |
|
- |
| 5.2.2(Hydraulic Pressure Test) |
- |
3000 |
|
- |
| 5.3(Horizontal reach of the fog) |
- |
1500 |
|
- |
| 6(Workmanship) |
- |
500 |
|
- |
| 6(Anticorrosive treatment) |
- |
1000 |
|
- |
|
03 Mar, 2027 |
- Exclusion: 3.2 (Washer)
3 (Material) |
| 8826 |
CIPET, Vijayawada
| 6141334
| IS 15450 (2022) |
Polyethylene-aluminium-polyethylene composite pressure pipes for hot and cold water supplies Specifications first revision of IS 15450 |
PE-AL-PE 12 to 75mm |
46275 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5(MATERIALS) |
- |
5625 |
|
- |
| 6(PRESSURE RATING) |
- |
500 |
|
- |
| 7(NOMINAL DIAMETERS) |
- |
500 |
|
- |
| 8(COLOUR) |
- |
500 |
|
- |
| 9(DIMENSIONS OF PIPE) |
- |
500 |
|
- |
| 10(VISUAL APPEARANCE) |
- |
500 |
|
- |
| 11.1(Density (Method of test as per Table 3)) |
- |
700 |
|
- |
| 11.2(Melt Flow Rate (Method of test as per Table 3)) |
- |
1100 |
|
- |
| 11.3(Overall Migration) |
- |
2200 |
|
- |
| 11.4(Thermal Stability to Oxidation (Method of test as per Table 3)) |
- |
2200 |
|
- |
| 11.5(Carbon Black Content and Dispersion (Method of test as per Table 3)) |
- |
925 |
|
- |
| 11.6(Pigment Dispersion (For Coloured Pipes) (Method of test as per Table 3)) |
- |
700 |
|
- |
| 11.8(Adhesion Test) |
- |
1600 |
|
- |
| 11.7(Resistance to Weathering) |
- |
16500 |
|
- |
| 11.9(Apparent Tensile Strength of Pipe) |
- |
1800 |
|
- |
| 11.10(Minimum Burst Pressure) |
- |
1000 |
|
- |
| 11.11(Hydraulic Characteristics) |
- |
5300 |
|
- |
| Table 3(Anti-oxidant (as per IS 2530)) |
- |
500 |
|
- |
| 14(MARKING) |
- |
500 |
|
- |
| 5.1(MATERIALS) |
- |
0 |
|
- |
| 5.2.1(MATERIALS) |
- |
0 |
|
- |
| 5.2.1.1(The other constituents) |
- |
925 |
|
- |
| 5.3.1(UV Stabilizer) |
- |
0 |
|
- |
| 5.3.2(UV Stabilizer) |
- |
0 |
|
- |
| 11.11.1(Short Term Hydrostatic Tests) |
- |
0 |
|
- |
| 11.11.12(Long Term Hydrostatic Test) |
- |
0 |
|
- |
| 5.4(Aluminium) |
- |
0 |
|
- |
| 5.5(REWORK Material) |
- |
0 |
|
- |
| 6(PRESSURE RATING) |
- |
0 |
|
- |
| 12.1(Type Test) |
- |
2200 |
|
- |
| 7(NOMINAL DIAMETERS) |
- |
0 |
|
- |
| 8(COLOUR) |
- |
0 |
|
- |
| 9.1(DIMENSIONS OF PIPE) |
- |
0 |
|
- |
| 9.2.1(Method of Measurements) |
- |
0 |
|
- |
| 9.3(Length of Straight Pipe) |
- |
0 |
|
- |
| 9.4(Coiling) |
- |
0 |
|
- |
| 10(VISUAL APPEARANCE) |
- |
0 |
|
- |
| 11.1(Density) |
- |
0 |
|
- |
| 11.3(Melt Flow Rate) |
- |
0 |
|
- |
| 11.4(Thermal Stability to Oxidation) |
- |
0 |
|
- |
| 11.5(Carbon Black Content and Dispersion) |
- |
0 |
|
- |
| 11.6(Pigment Dispersion (For Coloured Pipes)) |
- |
0 |
|
- |
| 11.7(Resistance to Weathering) |
- |
0 |
|
- |
| 11.8(Adhesion Test) |
- |
0 |
|
- |
| 11.9(Apparent Tensile Strength of Pipe) |
- |
0 |
|
- |
| 11.1(Minimum Burst Pressure) |
- |
0 |
|
- |
| 11.3(Overall Migration) |
- |
0 |
|
- |
|
06 Jun, 2027 |
- Included w.e.f. 23.08.2024 |
| 8827 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 5290 (1993) |
Landing valves - Specification (Third Revision) |
All Types |
20000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5, 5.1 (a) fig-1, type A(Types AND DIMENSIONS) |
- |
1000 |
|
- |
| 5, 5.1 (b) fig-2, type B(Types AND DIMENSIONS) |
- |
1000 |
|
- |
| 5.2(Types AND DIMENSIONS) |
- |
6000 |
|
- |
| 7, 7.2(hydrostatics pressure tests) |
- |
2000 |
|
- |
| 6, 6.1(Finish) |
- |
500 |
|
- |
| 6, 6.2(Finish) |
- |
500 |
|
- |
| 7, 7.1(7 PERFORMANCE REQUIREMENTS, Water Tightness Test for the Valve) |
- |
2000 |
|
- |
| 7, 7.3(Flow test, pressure 7 kgf/cm2) |
- |
8000 |
|
- |
| 4.4(Marking) |
- |
0 |
|
- |
|
03 Mar, 2027 |
- - |
| 8828 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 2871 (2012) |
Branch pipe, universal for fire fighting purpose - Specification (Second Revision) |
All sizes |
15000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl 4(Shape & Dimensions) |
- |
5000 |
|
- |
| Cl 5(Workmanship & finish) |
- |
2000 |
|
- |
| Cl 6.1(Hydraulic Test) |
- |
4000 |
|
- |
| Cl 6.2(Operational Test) |
- |
4000 |
|
- |
| Cl 6.2(Operational Test) |
- |
4000 |
|
- |
| Cl 6.1(Hydraulic Test) |
- |
4000 |
|
- |
| Cl 5(Workmanship & finish) |
- |
2000 |
|
- |
| Cl 4(Shape & Dimensions) |
- |
5000 |
|
- |
| Cl 6.2(Operational Test) |
- |
4000 |
|
- |
| Cl 6.1(Hydraulic Test) |
- |
4000 |
|
- |
| Cl 5(Workmanship & finish) |
- |
2000 |
|
- |
| Cl 4(Shape & Dimensions) |
- |
5000 |
|
- |
|
03 Mar, 2027 |
- Exclusion: Material (Cl 3, 3.1, 3.1.1, 3.1.2 & 3.1.3) |
| 8829 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 2097 (2012) |
Foam making branch pipe and foam inductor - Specification (Second Revision) |
All capacity |
10000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 6.1 - Table 1(PERFORMANCE REQUIREMENTS-The foam making branches shall conform to the performance requirements given below 1.Pressure ) |
- |
1500 |
|
- |
| 6.1 - Table 1(2. Discharge Capacity(Water)) |
- |
2000 |
|
- |
| 6.1 - Table 1(3. Foam) |
- |
2000 |
|
- |
| 6.1 - Table 1(4. Throw) |
- |
2000 |
|
- |
| 6.1 - Table 1(5. Expansion) |
- |
2000 |
|
- |
| 7.1(MARKING-The foam making branches shall be clearly and
permanently marked with the following information:) |
- |
500 |
|
- |
| 3.1(Type) |
- |
0 |
|
- |
| 3.1(Functional Components in FB 5X) |
- |
0 |
|
- |
| 3.1(Functional Components in FB 10X) |
- |
0 |
|
- |
| 3.1(Functional Components in FB 20X) |
- |
0 |
|
- |
| Table 1 & Cl. 4(Water discharge capacity) |
- |
2000 |
|
- |
| Table 1 & Cl. 4(Water discharge capacity) |
- |
2000 |
|
- |
| Table 1 & Cl. 4(Water discharge capacity) |
- |
2000 |
|
- |
| Cl. 6.1 & Table 1(Throw of the Foam Jet) |
- |
2000 |
|
- |
| Cl. 6.1 & Table 1(Throw of the Foam Jet) |
- |
2000 |
|
- |
| Cl. 6.1 & Table 1(Throw of the Foam Jet) |
- |
2000 |
|
- |
| Cl. 6.2 & Table 1(Expansion ratio & 25% drainage time of the produced foam) |
- |
2000 |
|
- |
| Cl. 6.2 & Table 1(Expansion ratio & 25% drainage time of the produced foam) |
- |
2000 |
|
- |
| Cl. 6.2 & Table 1(Expansion ratio & 25% drainage time of the produced foam) |
- |
2000 |
|
- |
| 3.1(Type) |
- |
0 |
|
- |
| 3.1(Functional Components in FB 5X) |
- |
0 |
|
- |
| 3.1(Functional Components in FB 10X) |
- |
0 |
|
- |
| 3.1(Functional Components in FB 20X) |
- |
0 |
|
- |
| Table 1 & Cl. 4(Water discharge capacity) |
- |
2000 |
|
- |
| Table 1 & Cl. 4(Water discharge capacity) |
- |
2000 |
|
- |
| Table 1 & Cl. 4(Water discharge capacity) |
- |
2000 |
|
- |
| Cl. 6.1 & Table 1(Throw of the Foam Jet) |
- |
2000 |
|
- |
| Cl. 6.1 & Table 1(Throw of the Foam Jet) |
- |
2000 |
|
- |
| Cl. 6.2 & Table 1(Expansion ratio & 25% drainage time of the produced foam) |
- |
2000 |
|
- |
| Cl. 6.2 & Table 1(Expansion ratio & 25% drainage time of the produced foam) |
- |
2000 |
|
- |
|
03 Mar, 2027 |
- Exclusion: Material (Cl 5.1, 5.2 & 5.3) |
| 8830 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 2925 (1984) |
Specification for industrial safety helmets (Second Revision) |
All sizes |
10000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 3.1(Shell) |
- |
300 |
|
- |
| 3.2(Harness) |
- |
300 |
|
- |
| 3.3(Metal Parts) |
- |
1000 |
|
- |
| 4.1(Sizes) |
- |
200 |
|
- |
| 5.1(Shell) |
- |
300 |
|
- |
| 5.2(Harness) |
- |
600 |
|
- |
| 5.3(Chin Strap or Nape Strap) |
- |
300 |
|
- |
| 5.4(Lamp Bracket) |
- |
300 |
|
- |
| 5.5(Cable Clip) |
- |
300 |
|
- |
| 6.1(Workmanship & Finish) |
- |
200 |
|
- |
| 7.1(Mass) |
- |
200 |
|
- |
| 8.1(Shock Absorption Resistance) |
- |
1700 |
|
- |
| 8.2(Penetration Resistance) |
- |
500 |
|
- |
| 8.3(Flamability Resistance) |
- |
500 |
|
- |
| 8.4(Electrical Resistance) |
- |
2000 |
|
- |
| 8.5(Water Absorption) |
- |
500 |
|
- |
| 8.6(Heat Resistance) |
- |
800 |
|
- |
| 3.1(Shell) |
- |
300 |
|
- |
| 3.2(Harness) |
- |
300 |
|
- |
| 3.3(Metal Parts) |
- |
1000 |
|
- |
| 4.1(Sizes) |
- |
200 |
|
- |
| 5.1(Shell) |
- |
300 |
|
- |
| 5.2(Harness) |
- |
600 |
|
- |
| 5.3(Chin Strap or Nape Strap) |
- |
300 |
|
- |
| 5.4(Lamp Bracket) |
- |
300 |
|
- |
| 5.5(Cable Clip) |
- |
300 |
|
- |
| 6.1(Workmanship & Finish) |
- |
200 |
|
- |
| 7.1(Mass) |
- |
200 |
|
- |
| 8.1(Shock Absorption Resistance) |
- |
1700 |
|
- |
| 8.2(Penetration Resistance) |
- |
500 |
|
- |
| 8.3(Flamability Resistance) |
- |
500 |
|
- |
| 8.4(Electrical Resistance) |
- |
2000 |
|
- |
| 8.5(Water Absorption) |
- |
500 |
|
- |
| 8.6(Heat Resistance) |
- |
800 |
|
- |
| 5.2.1(Head Band) |
- |
300 |
|
- |
| 5.3.1(Chin Strap) |
- |
150 |
|
- |
| 5.3.2(Nape Strap) |
- |
150 |
|
- |
|
03 Mar, 2027 |
- - |
| 8831 |
Alpha Test House Private Limited, Delhi
| 8131026
| IS 16047 : Part 3 (2018) |
Secondary Cells and Batteries Containing Alkaline or Other Non-Acid Electrolytes ” Secondary Lithium Cells and Batteries for Portable Applications Part 3 Prismatic and Cylindrical Lithium Secondary Cells, and Batteries Made From Them ( First Revision ) |
- |
300000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 5(Cell Designation and Marking) |
- |
5000 |
|
- |
| 7.1, 7.2(Charging Procedure for Test Purpose) |
- |
10000 |
|
- |
| 7.3.1(Discharge Performance at 20°C (Rated Capacity)) |
- |
15000 |
|
- |
| 7.3.2("Discharge Performance at
-20°C ") |
- |
20000 |
|
- |
| 7.3.3(High Rate Discharge Performance at 20°C) |
- |
15000 |
|
- |
| 7.4(Charge (capacity) Retention and Recovery) |
- |
40000 |
|
- |
| 7.5(Charge (Capacity) Recovery After Long Term Storage) |
- |
80000 |
|
- |
| 7.6.2(Endurance In Cycles at a Rate of 0.2It A) |
- |
50000 |
|
- |
| 7.6.3("Endurance in Cycles at a Rate of 0.5It A
(Accelerated Test Procedure)
") |
- |
50000 |
|
- |
| 7.7(Battery Internal Resistance) |
- |
10000 |
|
- |
|
17 May, 2027 |
- Included w.e.f. 22.03.2024
Exclusion: Cl.7.8 (Electrostatic Discharge (ESD)) |
| 8832 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 8090 (1976) |
Specification for couplings, branch pipe, nozzle used in hose reel tubing for fire fighting |
- |
20000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 3.1(Tolerances) |
- |
0 |
|
- |
| 4(Workmanship and Finish) |
- |
1500 |
|
- |
| 5.1(Construction) |
- |
1000 |
|
- |
| 5.3(Hydraulic test requirement) |
- |
3000 |
|
- |
| 6.1(Dimensions) |
- |
3000 |
|
- |
| 6.2(Construction) |
- |
1000 |
|
- |
| 6.3(Hydraulic test requirement) |
- |
3000 |
|
- |
| 7.1(Dimensions) |
- |
3000 |
|
- |
| 7.2(Construction) |
- |
1000 |
|
- |
| 7.3(Hydraulic requirement test) |
- |
3000 |
|
- |
| 9(Marking) |
- |
500 |
|
- |
|
03 Mar, 2027 |
- Exclusion: 2 (Copper Alloys)
2.1.2 (Aluminium Alloys)
5.2 (Washers) |
| 8833 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 884 (1985) |
Apecification for first - Aid hose - Reel for fire fighting (First Revision) |
Type A & Type B |
15000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.2(Resistance to Leakage) |
- |
2000 |
|
- |
| Cl 5.3(Strength) |
- |
2500 |
|
- |
| Cl 5.3(Strength) |
- |
2500 |
|
- |
| Cl 5.4(Range & Water Flow Rate) |
- |
4500 |
|
- |
| Cl 5.5(Swinging) |
- |
500 |
|
- |
| Cl 5.6(Reel Action) |
- |
500 |
|
- |
| Cl 6(Workmanship) |
- |
500 |
|
- |
| Cl 7(Painting) |
- |
500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.2(Resistance to Leakage) |
- |
2000 |
|
- |
| Cl 5.3(Strength) |
- |
2500 |
|
- |
| Cl 5.3(Strength) |
- |
2500 |
|
- |
| Cl 5.4(Range & Water Flow Rate) |
- |
4500 |
|
- |
| Cl 5.5(Swinging) |
- |
500 |
|
- |
| Cl 5.6(Reel Action) |
- |
500 |
|
- |
| Cl 6(Workmanship) |
- |
500 |
|
- |
| Cl 7(Painting) |
- |
500 |
|
- |
| Cl 7(Painting) |
- |
500 |
|
- |
| Cl 6(Workmanship) |
- |
500 |
|
- |
| Cl 5.6(Reel Action) |
- |
500 |
|
- |
| Cl 5.5(Swinging) |
- |
500 |
|
- |
| Cl 5.3(Strength) |
- |
2500 |
|
- |
| Cl 5.3(Strength) |
- |
2500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.1(Dimensions) |
- |
1500 |
|
- |
| Cl 5.4(Range & Water Flow Rate) |
- |
4500 |
|
- |
| Cl 5.2(Resistance to Leakage) |
- |
2500 |
|
- |
|
03 Mar, 2027 |
- Exclusion: 3.1 (Materials) |
| 8834 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 903 (1993) |
Specification for Fire Hose Delivery Couplings, Branch Pipe, Nozzles And Nozzle Spanner - Specificaion |
All sizes |
42500 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 3(Finish and workmanship) |
- |
500 |
|
- |
| 4(Marking) |
- |
0 |
|
- |
| 6(Branch pipe) |
- |
4000 |
|
- |
| 6.3(Hydraulic test requirement) |
- |
6000 |
|
- |
| 7(Nozzle) |
- |
4000 |
|
- |
| 7.3(Hydraulic test requirement) |
- |
6000 |
|
- |
| 5(Delivery hose coupling) |
- |
0 |
|
- |
| 5.3(Size and Dimension ) |
- |
6000 |
|
- |
| 5.4(Hydraulic test requirement) |
- |
6000 |
|
- |
| 3(Finish and workmanship) |
- |
500 |
|
- |
| 4(Marking) |
- |
0 |
|
- |
| 6(Branch pipe) |
- |
4000 |
|
- |
| 6.3(Hydraulic test requirement) |
- |
6000 |
|
- |
| 7(Nozzle) |
- |
4000 |
|
- |
| 7.3(Hydraulic test requirement) |
- |
6000 |
|
- |
| 5(Delivery hose coupling) |
- |
0 |
|
- |
| 5.3(Size and Dimension ) |
- |
6000 |
|
- |
| 5.4(Hydraulic test requirement) |
- |
6000 |
|
- |
| 3(Finish and workmanship) |
- |
500 |
|
- |
| 4(Marking) |
- |
0 |
|
- |
| 6(Branch pipe) |
- |
4000 |
|
- |
| 6.3(Hydraulic test requirement) |
- |
6000 |
|
- |
| 7(Nozzle) |
- |
4000 |
|
- |
| 7.3(Hydraulic test requirement) |
- |
6000 |
|
- |
| 5(Delivery hose coupling) |
- |
0 |
|
- |
| 5.3(Size and Dimension ) |
- |
6000 |
|
- |
| 5.4(Hydraulic test requirement) |
- |
6000 |
|
- |
| 8.2(Shape & Dimensions of Spanner) |
- |
4000 |
|
- |
| 8.4(Deflection test of Spanner) |
- |
2000 |
|
- |
| 8.3(Coating of Nozzle Spanner) |
- |
4000 |
|
- |
|
03 Mar, 2027 |
- Exclusion: Cl 5.2, 5.2.1, 5.2.2, 5.2.3, 5.2.4, 5.2.5, 5.2.6 (Materials) |
| 8835 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 4947 (2006) |
Foam concentrate for producing mechanical foam for fire fighting - Specification (Fourth Revision) |
All capacity and content |
15000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl 3(General Requirements) |
- |
5000 |
|
- |
| Cl 5(Construction) |
- |
2000 |
|
Cl. 4.2 : RS 500, Cl. 4.4 - RS 500 |
| Cl 6(Capacity and Contents) |
- |
500 |
|
- |
| Cl 7(Performance Requirements ) |
- |
3000 |
|
- |
| Cl 7.3(Leakage Test) |
- |
3000 |
|
- |
| Cl 8(Finish) |
- |
500 |
|
- |
|
03 Mar, 2027 |
- Exclusion: Material (Cl 4.1, 4.2 & 4.3) |
| 8836 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 8442 (2008) |
Stand post type water and foam monitor for fire fighting - Specification (First Revision) |
Alltypes |
27000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 12.1(Marking) |
- |
200 |
|
- |
| 10.2(Leakage Test) |
- |
2500 |
|
- |
| 10.1(Leakage Test) |
- |
2500 |
|
- |
| 9.2(Performance Requirement (foam cum water monitor)) |
- |
13500 |
|
- |
| 9.1(Performance Requirement (water monitor)) |
- |
4000 |
|
- |
| 8(Painting) |
- |
500 |
|
- |
| 7(Anti-corrosive treatment) |
- |
500 |
|
- |
| 6(Workmanship and Finish) |
- |
500 |
|
- |
| 5(Construction) |
- |
1000 |
|
- |
| 3.4(Components) |
- |
500 |
|
- |
| 3.3(Shape of monitor) |
- |
500 |
|
- |
| 3.2(Discharge Capacity) |
- |
500 |
|
- |
| 3.1( Size of water monitor) |
- |
300 |
|
- |
| 1(Type) |
- |
0 |
|
- |
| 3.1(Size) |
- |
300 |
|
- |
| 3.1(Dimension of the Flange) |
- |
300 |
|
- |
| 3.3(Shape of monitor) |
- |
500 |
|
- |
| 3.4(Components) |
- |
500 |
|
- |
| 5.1(Construction) |
- |
1000 |
|
- |
| 5.2(Size of Nozzle and diameter of orifice) |
- |
500 |
|
- |
| 5.2(Size of Nozzle and diameter of orifice) |
- |
500 |
|
- |
| 5.2(Size of Nozzle and diameter of orifice) |
- |
500 |
|
- |
| 5.2(Design feature of nozzle) |
- |
500 |
|
- |
| 5.2(Internal Threads of the Nozzle) |
- |
0 |
|
- |
| 5.2(External threads of outlet of barrel) |
- |
0 |
|
- |
| 5.2(Foam Pickup Tube) |
- |
0 |
|
- |
| 6(Workmanship & Finish) |
- |
500 |
|
- |
| 7(Anticorrosive Treatment) |
- |
500 |
|
- |
| 8(Painting) |
- |
500 |
|
- |
| 9.1(Water discharge capacity and HorizontalThrow of Water Monitor) |
- |
4000 |
|
- |
| 9.1(Water discharge capacity and Horizatal Throw of Water Monitor) |
- |
4000 |
|
- |
| 9.1(Water discharge capacity and Horizatal Throw of Water Monitor) |
- |
4000 |
|
- |
| 9.2(Water discharge capacity and HorizontalThrow of Foam cum Water Monitor) |
- |
13500 |
|
- |
| 9.2(Water discharge capacity and HorizontalThrow of Foam cum Water Monitor) |
- |
13500 |
|
- |
| 9.2(Water discharge capacity and HorizontalThrow of Foam cum Water Monitor) |
- |
13500 |
|
- |
| 9.2(HorizontalThrow of Foam Jet) |
- |
13500 |
|
- |
| 9.2(HorizontalThrow of Foam Jet) |
- |
13500 |
|
- |
| 9.2(HorizontalThrow of Foam Jet) |
- |
13500 |
|
- |
| Fig 5(Foam Control Valve in non-air aspirating type Jet/Spray Nozzle) |
- |
0 |
|
- |
| 10.1(Leakage Test (Hydraulic Pressure Test)) |
- |
2500 |
|
- |
| 6(Workmanship & Finish) |
- |
500 |
|
- |
| 11(Accessories) |
- |
0 |
|
- |
| 1(Type) |
- |
0 |
|
- |
| 3.1(Size) |
- |
300 |
|
- |
| 3.1(Dimension of the Flange) |
- |
300 |
|
- |
| 3.3(Shape of monitor) |
- |
500 |
|
- |
| 3.4(Components) |
- |
500 |
|
- |
| 5.1(Construction) |
- |
1000 |
|
- |
| 5.2(Size of Nozzle and diameter of orifice) |
- |
0 |
|
- |
| 5.2(Size of Nozzle and diameter of orifice) |
- |
0 |
|
- |
| 5.2(Size of Nozzle and diameter of orifice) |
- |
0 |
|
- |
| 5.2(Size of Nozzle and diameter of orifice) |
- |
0 |
|
- |
| 5.2(Design feature of nozzle) |
- |
0 |
|
- |
| 5.2(Internal Threads of the Nozzle) |
- |
0 |
|
- |
| 5.2(External threads of outlet of barrel) |
- |
0 |
|
- |
| 5.2(Foam Pickup Tube) |
- |
0 |
|
- |
| 7(Anticorrosive Treatment) |
- |
500 |
|
- |
| 8(Painting) |
- |
500 |
|
- |
| 9.1(Water discharge capacity and HorizontalThrow of Water Monitor) |
- |
4000 |
|
- |
| 9.1(Water discharge capacity and Horizatal Throw of Water Monitor) |
- |
4000 |
|
- |
| 9.1(Water discharge capacity and Horizatal Throw of Water Monitor) |
- |
4000 |
|
- |
| 9.2(Water discharge capacity and HorizontalThrow of Foam cum Water Monitor) |
- |
13500 |
|
- |
| 9.2(Water discharge capacity and HorizontalThrow of Foam cum Water Monitor) |
- |
13500 |
|
- |
| 9.2(Water discharge capacity and HorizontalThrow of Foam cum Water Monitor) |
- |
13500 |
|
- |
| 9.2(HorizontalThrow of Foam Jet) |
- |
13500 |
|
- |
| 9.2(HorizontalThrow of Foam Jet) |
- |
13500 |
|
- |
| 9.2(HorizontalThrow of Foam Jet) |
- |
13500 |
|
- |
| Fig 5(Foam Control Valve in non-air aspirating type Jet/Spray Nozzle) |
- |
0 |
|
- |
| 10.1(Leakage Test (Hydraulic Pressure Test)) |
- |
2500 |
|
- |
| 10.2(Leakage Test of Swivel joints during horizontal rotation & vertical up and down movement.) |
- |
2500 |
|
- |
| 11(Accessories) |
- |
0 |
|
- |
| 10.2(Leakage Test of Swivel joints during horizontal rotation & vertical up and down movement.) |
- |
2500 |
|
- |
|
03 Mar, 2027 |
- Exclusion: Cl-4, Table-2 |
| 8837 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 8423 (1994) |
Specification for controlled percolating hose for fire fighting |
All types and Sizes |
20500 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl3(The bose shall be made of a jacket of cotton
or synthetic material or their combination. The
jacket shall be treated internally with any
suitable coating agent to ensure controlled
percolation. The jacke.t shall be free from
visible defects. such as dlrt, knots, lumps and
irregulari ty of twists. ) |
- |
500 |
|
- |
| Cl.4.1.1(The nominal internal diameter of hose shall
be 38, SO, 63 and 70 rom.The internal diameter of the hose shall
be measured by a suitable tapered plug gauge,
and shall conform to the specified diameter
within a tolerance of + 2·0 mm.
-0'0) |
- |
500 |
|
- |
| Cl.5.(The hose length shall be 30 m or of such
length as required.) |
- |
500 |
|
- |
| Cl.6(The hose shall be flexible and on being
machine coiled, the diameter of the coil of
30 m hose shall not exceed 45 em for all slzes
in dry state without coupling. The coil
diameter shall be measured at the widest part
of the coil.) |
- |
500 |
|
- |
| Cl.7(The average mass oC hose per metre shall
not be more than that prescribed in Table 1. For
determination of mass, sample of the hose shall
be conditioned at 27 ± 2°C and 65 ± 5 percent
relative humidity Cor a period of at least 48
hours and then shall be weighed under same
conditions.) |
- |
500 |
|
- |
| Cl.8(The percolation, when tested in accordance
with the procedure laid down in 8.1.1 shall not
exceed the limits prescribed in Table 2.) |
- |
3000 |
|
- |
| Cl.9(The full length sample of the dry hose is
connected to the pump fitted with water and
pressure built up to. 7 kaf/cn,' (70 N/cm' )
steadily over a period of two minutes. After the
hose has been at pressure 7 kif/em' ( 70 NIemi)
for a period of S minutes, a visual inspection
I is made of the length to ascertain the evenness
and degree of wetting out along the complete
length of hose and at least 75 percent of the
hose jacket shall be evenly and consistently
wetted out in this manner.) |
- |
1000 |
|
- |
| Cl.10(Full length of hose shall be subjected to an
internal hydraulic pressure of 2'1 MPa (21'4
kgf/ems ) at the rate of I MPa ( 10'2 kaf/em· )/
minute in ac.cordance with 1.3 of IS 443 : 191~
and maintained for a period of one minute.
During this test. the hose shan not show
breakage of yarn.) |
- |
14000 |
|
proof pressure - RS 3000, Hydraulic Burst pressure - RS 4000, Flammability - RS 2000, Kink test -RS 2000, Change in size - 3000 |
|
03 Mar, 2027 |
- Exclusion: Cl. 3.1 (Pentachlorophenyl Laurate (PCPL)) |
| 8838 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 12585 (1988) |
Specification for thermoplastic hoses (Textile Reinforced) for water - General purpose |
ALL types and sizes |
25000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl 3(Types) |
- |
500 |
|
- |
| Cl 4.1(Construction) |
- |
1000 |
|
- |
| Cl 4.2(Dimensions & Tolerances) |
- |
2000 |
|
- |
| Cl 4.3.1 & Appendix A(Loss in Mass on Heating) |
- |
4500 |
|
- |
| Cl 4.3.2(Adhesion) |
- |
3000 |
|
- |
| Cl 4.3.3(Pressure Requirements) |
- |
5000 |
|
- |
| Cl 4.3.4(Minimum Bend Radius) |
- |
4000 |
|
- |
| Cl 4.3.5(Low Temperature Flexibility) |
- |
5000 |
|
- |
|
03 Mar, 2027 |
- - |
| 8839 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 15381 (2021) |
Fire Blanket - Specification ( First Revision ) |
All sizes |
25000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 9,9.1 &9.2(Marking) |
- |
500 |
|
- |
| 7(Workmanship and Finish) |
- |
500 |
|
- |
| 6.3(Temperature Resistance) |
- |
3500 |
|
- |
| 6.1 & 6.2(Fire Performance) |
- |
12900 |
|
Cooking oil - RS 8000, Hydrocarbon Fuel -RS 4900 |
| 5(Electrical Resistance) |
- |
3500 |
|
- |
| 4.7(Edges) |
- |
500 |
|
- |
| 4.6(Force and Time for removing & unfolding) |
- |
800 |
|
- |
| 4.5(Deformation) |
- |
500 |
|
- |
| 4.4(Mass) |
- |
500 |
|
- |
| 4.3(Shape & Dimension) |
- |
800 |
|
- |
| 4.2(Hand Holding Device) |
- |
500 |
|
- |
| Cl 4.1( Construction) |
- |
500 |
|
- |
|
03 Mar, 2027 |
- Exclusion: Material (Cl 3) |
| 8840 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 14933 (2001) |
High Pressure Fire Fighting Hose -Specification |
All type and sizes |
54000 View breakup
Rs 21,000/- for Type A
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl 3.1(Type) |
- |
500 |
|
- |
| Cl 3.2 & 3.3(Nom ID) |
- |
500 |
|
- |
| Cl 3.4(Internal Dia) |
- |
500 |
|
- |
| Cl 4(Length) |
- |
500 |
|
- |
| Cl 5(Mass) |
- |
500 |
|
- |
| Cl 6(Coil Dia) |
- |
500 |
|
- |
| Cl 7(Reinforcement) |
- |
500 |
|
- |
| Cl 8(Lining) |
- |
500 |
|
- |
| Cl 9(Cover) |
- |
500 |
|
- |
| Cl 10(Hydaulic Proof Pressure Test) |
- |
2500 |
|
- |
| Cl 11(Hydraulic Burst Pressure Test) |
- |
4000 |
|
- |
| Cl 12(Kink test) |
- |
2000 |
|
- |
| Cl 13 & Annex A(Adhesion Test) |
- |
1000 |
|
- |
| Cl 14 & Annex B(Abrasion Resistance Test) |
- |
3000 |
|
- |
| Cl 15(Accelerated Ageing Test) |
- |
5500 |
|
- |
| Cl 16(Change in Length) |
- |
2000 |
|
- |
| Cl 17.1 & Annex C(Ozone Resistance Test) |
- |
25000 |
|
Lining - Rs 12500, Cover - RS 12500 |
| Cl 17.2(Oil Resistance Test) |
- |
3000 |
|
- |
| Cl 17.3(Heat Resistance Test) |
- |
1500 |
|
- |
| Cl 17.3(Heat Resistance Test) |
- |
1500 |
|
- |
| Cl 17.2(Oil Resistance Test) |
- |
3000 |
|
- |
| Cl 17.1 & Annex C(Ozone Resistance Test) |
- |
25000 |
|
- |
| Cl 16(Change in Length) |
- |
2000 |
|
- |
| Cl 15(Accelerated Ageing Test) |
- |
5500 |
|
- |
| Cl 14 & Annex B(Abrasion Resistance Test) |
- |
3000 |
|
- |
| Cl 13 & Annex A(Adhesion Test) |
- |
1000 |
|
- |
| Cl 12(Kink test) |
- |
2000 |
|
- |
| Cl 11(Hydraulic Burst Pressure Test) |
- |
4000 |
|
- |
| Cl 10(Hydaulic Proof Pressure Test) |
- |
2500 |
|
- |
| Cl 9(Cover) |
- |
500 |
|
- |
| Cl 8(Lining) |
- |
500 |
|
- |
| Cl 7(Reinforcement) |
- |
500 |
|
- |
| Cl 6(Coil Dia) |
- |
500 |
|
- |
| Cl 5(Mass) |
- |
500 |
|
- |
| Cl 4(Length) |
- |
500 |
|
- |
| Cl 3.4(Internal Dia) |
- |
500 |
|
- |
| Cl 3.2 & 3.3(Nom ID) |
- |
500 |
|
- |
| Cl 3.1(Type) |
- |
500 |
|
- |
| Cl 17.3(Heat Resistance Test) |
- |
1500 |
|
- |
| Cl 17.2(Oil Resistance Test) |
- |
3000 |
|
- |
| Cl 17.1 & Annex C(Ozone Resistance Test) |
- |
25000 |
|
- |
| Cl 16(Change in Length) |
- |
2000 |
|
- |
| Cl 15(Accelerated Ageing Test) |
- |
5500 |
|
- |
| Cl 14 & Annex B(Abrasion Resistance Test) |
- |
3000 |
|
- |
| Cl 13 & Annex A(Adhesion Test) |
- |
1000 |
|
- |
| Cl 12(Kink test) |
- |
2000 |
|
- |
| Cl 11(Hydraulic Burst Pressure Test) |
- |
4000 |
|
- |
| Cl 10(Hydaulic Proof Pressure Test) |
- |
2500 |
|
- |
| Cl 9(Cover) |
- |
500 |
|
- |
| Cl 8(Lining) |
- |
500 |
|
- |
| Cl 7(Reinforcement) |
- |
500 |
|
- |
| Cl 6(Coil Dia) |
- |
500 |
|
- |
| Cl 5(Mass) |
- |
500 |
|
- |
| Cl 4(Length) |
- |
500 |
|
- |
| Cl 3.4(Internal Dia) |
- |
500 |
|
- |
| Cl 3.2 & 3.3(Nom ID) |
- |
500 |
|
- |
| Cl 3.1(Type) |
- |
500 |
|
- |
|
03 Mar, 2027 |
- - |
| 8841 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 636 (2018) |
Non - Percolating flexible fire fighting delivery hose - Specification (Fourth Revision) |
All types sizes |
62500 View breakup
Type 1 Rs 44,500/-
Type 2 Rs 47,000/-
Type 3 Rs 62,500/-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl 6.1.1(Inner lining shall be of rubber or rubberized fabric lining which is generally smooth and practically free
from pitting and other imperfections) |
- |
0 |
|
- |
| Cl 6.1.2(Externally applied elastomeric coating or
covering of the reinforcement, if present shall be
generally smooth and practically free from pitting and
other imperfections) |
- |
0 |
|
- |
| Cl 6.1.3(The jacket shall be practically free from dirt, knots,
lumps, irregularities of the yarn and other visible defects.) |
- |
500 |
|
- |
| Cl.6.2(The internal diameter of the hose shall be measured by
a suitable conical plug gauge and shall conform to the
specified diameter with a tolerance of plus 2 and minus
0.0 mm.) |
- |
500 |
|
- |
| Cl.6.3(Unless specified otherwise, the standard length shall
be 30 m. Unless otherwise specified, a tolerance of ± 2
percent shall be permitted on the length prescribed for
the hose by the purchaser but the total of all lengths of
hose supplied shall be not less than the total quantity
specified by the purchaser.) |
- |
500 |
|
- |
| Cl.6.4(The average mass of hose per meter of 2 m length,
without couplings attached, shall not be more than that
prescribed in Table 1. For the determination of mass,
sample of the hose shall be conditioned at 27 ± 2°C and
65 ± 5 percent relative humidity for a period of at least
48 h and then shall be weighed under the same conditions.) |
- |
500 |
|
- |
| Cl.6.5(For 30 m length of dry hose without couplings, the coil
diameter shall not exceed 45 cm for Type 1, 50 cm for
Type 2 and 55 cm for Type 3.) |
- |
500 |
|
- |
| Cl.6.6(Each hose length shall be subjected to an internal hydraulic pressure of 23 kgf/cm² in accordance with 8.1 of IS 443
(Part 3) increasing the pressure at the rate not exceeding
10 kgf/cm² per min and maintaining it for 1 min. Within
this 1 min, the hose shall neither develop any leakage or
sweating, nor shall any thread in the jacket break.) |
- |
2500 |
|
- |
| Cl.6.7(A test length of hose, 1 m clear of fittings when
subjected to an internal hydraulic pressure in
accordance with 8.3 of IS 443 (Part 3) while increasing
the pressure at the rate not exceeding 10 kgf/cm2 per
min shall not burst or show leakage before a pressure
of 38 kgf/cm2 is reached) |
- |
2500 |
|
- |
| Cl.6.8(There shall be no sign of leakage or rupture and no thread in the jacket shall break after retaining the internal hydraulic pressure of 23 kgf/cm2 for 30 seconds.) |
- |
1000 |
|
- |
| Cl.6.9(The increase in length shall not exceed 6 percent at an internal hydraulic pressure of 10 kgf/cm2 for 2 minutes.) |
- |
1000 |
|
- |
| Cl.6.10(The increase in diameter shall not be more than 10% at an internal hydraulic pressure of 10 kgf/cm2 for 2 minutes.) |
- |
1000 |
|
- |
| Cl 6.11 (Adhesion (Cl. 6.11.1))(Rate of separation shall not exceed 25 mm/min 1) Cover) |
- |
500 |
|
- |
| Cl 6.11 (Adhesion (Cl. 6.11.1))(Rate of separation shall not exceed 25 mm/min 2) Jet) |
- |
500 |
|
- |
| Cl.6.11 Acccleraled Ageing Test (Cl. 6.11.2) - 1)(After ageing, there shall be no tackiness on the surface of lining or the surface of the cover. ) |
- |
2000 |
|
- |
| Cl.6.11 Acccleraled Ageing Test (Cl. 6.11.2) - 2)(shall meet the requirements. given in Cl.6.7 (A test length of hose, 1 m clear of fittings when
subjected to an internal hydraulic pressure in
accordance with 8.3 of IS 443 (Part 3) while increasing
the pressure at the rate not exceeding 10 kgf/cm2 per
min shall not burst or show leakage before a pressure
of 38 kgf/cm2 is reached)) |
- |
2500 |
|
- |
| Cl.6.11 Acccleraled Ageing Test (Cl. 6.11.2) - 3)(Rate of separation shall not exceed 25 mm/min 1) Cover) |
- |
500 |
|
- |
| Cl.6.11 Acccleraled Ageing Test (Cl. 6.11.2) - 3)(Rate of separation shall not exceed 25 mm/min 2) Jet) |
- |
500 |
|
- |
| Cl.6.12(When determined by the method described in Annex C,
the average number of cycles completed before bursting
of three test pieces, shall not be less than the value
specified in Table 2.) |
- |
2000 |
|
- |
| Cl.6.13(When tested in accordance with Annex D, the amount
of moisture absorbed shall not exceed 0.20 kg/m2 for
Type 2 hoses and 0.02 kg/m2 for Type 3 hoses.) |
- |
1000 |
|
- |
| Cl.6.14(When tested by the method described in Annex E, none
of the test samples shall burst at less than 8 s of the
application of the hot cube for Type 2 and 20 s for
Type 3 hose.) |
- |
1500 |
|
- |
| Cl.6.15 (1)(The length shall be laid horizontally and
the central fully immersed portion of the hose shall be
visually examined for any swelling of rubber,
weathering and cracking in the rubber lining) |
- |
2000 |
|
- |
| Cl.6.15 (2)(Rate of separation shall not exceed 25 mm/min 1) Cover) |
- |
500 |
|
- |
| Cl.6.15 (2)(Rate of separation shall not exceed 25 mm/min 2) Jet) |
- |
500 |
|
- |
| Cl.6.16(When tested by the method prescribed in
IS 443 (Part 1), the lining (for Types 1, 2 and 3) and
cover (for Type 3 only) of the hose shall neither develop
cracking nor crazing when seen under X2
magnification, except at the cut edges of the hose) |
- |
25000 |
|
Lining - RS 12500, Cover - RS 12500 |
| Cl.6.17(When tested in accordance with Annex F, at a test
temperature of, at a test temperature of 300 ± 10°C for
Types 1 and 2, and 400 ± 10° C for Type 3, in none of
the four tests shall the test piece show signs of leakage
within 120 s from the application of the filament rod or
on removal of this filament rod after the specified period) |
- |
10000 |
|
- |
| Cl.6.18(When tested in accordance with Annex H, the pressure
loss per 23 m length shall not exceed the values specified
in Table 3 at the specified flow rate and inlet pressure
(Recommendations for pressure testing of hoses in
service are given at Annex G).) |
- |
3000 |
|
- |
|
03 Mar, 2027 |
- - |
| 8842 |
INDIAN TESTING LABORATORY PRIVATE LIMITED, GREATER NOIDA
| 8171306
| IS 12823 (2015) |
Prelaminated Particle Boards from Wood and other Lignocellulosic Material - Specification ( First Revision ) |
Grade I,Grade II |
20500 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl 4(Grades & Types) |
- |
250 |
|
- |
| Cl 6(Manufacture) |
- |
250 |
|
- |
| Cl 7(Finish) |
- |
250 |
|
- |
| Cl 8(Dimensions & Tolerances) |
- |
250 |
|
- |
| Cl 10.2(Test For Density) |
- |
500 |
|
- |
| Cl 10.3(Test For Moisture Content) |
- |
300 |
|
- |
| Cl 10.4(For Water AbsorptionTest ) |
- |
300 |
|
- |
| Cl 10.5(For Swelling in water Test ) |
- |
500 |
|
- |
| Cl 10.6(Tesr For Modulus Of Elasticity & Mudulus Of Rupture) |
- |
800 |
|
- |
| Cl 10.7(For Determination of Tensile Strength Perpendicular to Surface) |
- |
600 |
|
- |
| Cl 10.8(For Determination of Tensile Strength Perpendicular to Surface After Ageing Test) |
- |
600 |
|
- |
| Cl 10.9(Test For Screw Withdrawal Strength) |
- |
600 |
|
- |
| Cl 10.11 & Annex D( Test For Resistance to Steam) |
- |
250 |
|
- |
| Cl 10.12 & Annex E( Test For Crack Resistance) |
- |
250 |
|
- |
| Cl 10.13 & Annex F( Test For Resistance to Cigarette Burn) |
- |
250 |
|
- |
| Cl 10.14 & Annex G( Test For Resistance to Stain) |
- |
250 |
|
- |
| Cl 4(Grades & Types) |
- |
250 |
|
- |
| Cl 6(Manufacture) |
- |
250 |
|
- |
| Cl 7(Finish) |
- |
250 |
|
- |
| Cl 8(Dimensions & Tolerances) |
- |
250 |
|
- |
| Cl 10.2(Test For Density) |
- |
500 |
|
- |
| Cl 10.3(Test For Moisture Content) |
- |
600 |
|
- |
| Cl 10.4(For Water AbsorptionTest ) |
- |
300 |
|
- |
| Cl 10.5(For Swelling in water Test ) |
- |
600 |
|
- |
| Cl 10.6(Tesr For Modulus Of Elasticity & Mudulus Of Rupture) |
- |
600 |
|
- |
| Cl 10.7(For Determination of Tensile Strength Perpendicular to Surface) |
- |
600 |
|
- |
| Cl 10.8(For Determination of Tensile Strength Perpendicular to Surface After Ageing Test) |
- |
600 |
|
- |
| Cl 10.9(Test For Screw Withdrawal Strength) |
- |
500 |
|
- |
| Cl 10.11 & Annex D( Test For Resistance to Steam) |
- |
250 |
|
- |
| Cl 10.12 & Annex E( Test For Crack Resistance) |
- |
400 |
|
- |
| Cl 10.13 & Annex F( Test For Resistance to Cigarette Burn) |
- |
250 |
|
- |
| Cl 10.14 & Annex G( Test For Resistance to Stain) |
- |
250 |
|
- |
| Cl 10.14 & Annex G( Test For Resistance to Stain) |
- |
250 |
|
- |
| Cl 10.13 & Annex F( Test For Resistance to Cigarette Burn) |
- |
250 |
|
- |
| Cl 10.12 & Annex E( Test For Crack Resistance) |
- |
500 |
|
- |
| Cl 10.11 & Annex D( Test For Resistance to Steam) |
- |
250 |
|
- |
| Cl 10.9(Test For Screw Withdrawal Strength) |
- |
500 |
|
- |
| Cl 10.8(For Determination of Tensile Strength Perpendicular to Surface After Ageing Test) |
- |
600 |
|
- |
| Cl 10.7(For Determination of Tensile Strength Perpendicular to Surface) |
- |
600 |
|
- |
| Cl 10.6(Tesr For Modulus Of Elasticity & Mudulus Of Rupture) |
- |
600 |
|
- |
| Cl 10.5(For Swelling in water Test ) |
- |
500 |
|
- |
| Cl 10.4(For Water AbsorptionTest ) |
- |
300 |
|
- |
| Cl 10.3(Test For Moisture Content) |
- |
300 |
|
- |
| Cl 10.2(Test For Density) |
- |
500 |
|
- |
| Cl 8(Dimensions & Tolerances) |
- |
500 |
|
- |
| Cl 7(Finish) |
- |
250 |
|
- |
| Cl 6(Manufacture) |
- |
250 |
|
- |
| Cl 4(Grades & Types) |
- |
500 |
|
- |
| Cl 10.15(Test for Formaldehyde Content/Emission) |
- |
500 |
|
- |
| Cl 10.10 & Annex C( Test For Abrasion Resistance) |
- |
500 |
|
- |
| Cl 10.10 & Annex C( Test For Abrasion Resistance) |
- |
100 |
|
- |
| Cl 10.10 & Annex C( Test For Abrasion Resistance) |
- |
100 |
|
- |
| Cl 4(Grades & Types) |
- |
0 |
|
- |
| Cl 6(Manufacture) |
- |
0 |
|
- |
| Cl 7(Finish) |
- |
0 |
|
- |
| Cl 8(Dimensions & Tolerances) |
- |
0 |
|
- |
| Cl 10.2(Test For Density) |
- |
0 |
|
- |
| Cl 10.3(Test For Moisture Content) |
- |
0 |
|
- |
| Cl 10.4(For Water AbsorptionTest ) |
- |
0 |
|
- |
| Cl 10.5(For Swelling in water Test ) |
- |
0 |
|
- |
| Cl 10.6(Tesr For Modulus Of Elasticity & Mudulus Of Rupture) |
- |
0 |
|
- |
| Cl 10.7(For Determination of Tensile Strength Perpendicular to Surface) |
- |
0 |
|
- |
| Cl 10.8(For Determination of Tensile Strength Perpendicular to Surface After Ageing Test) |
- |
0 |
|
- |
| Cl 10.9(Test For Screw Withdrawal Strength) |
- |
0 |
|
- |
| Cl 10.11 & Annex D( Test For Resistance to Steam) |
- |
0 |
|
- |
| Cl 10.12 & Annex E( Test For Crack Resistance) |
- |
0 |
|
- |
| Cl 10.13 & Annex F( Test For Resistance to Cigarette Burn) |
- |
0 |
|
- |
| Cl 10.14 & Annex G( Test For Resistance to Stain) |
- |
0 |
|
- |
| Cl 4(Grades & Types) |
- |
0 |
|
- |
| Cl 6(Manufacture) |
- |
0 |
|
- |
| Cl 7(Finish) |
- |
0 |
|
- |
| Cl 8(Dimensions & Tolerances) |
- |
0 |
|
- |
| Cl 10.2(Test For Density) |
- |
0 |
|
- |
| Cl 10.3(Test For Moisture Content) |
- |
0 |
|
- |
| Cl 10.4(For Water AbsorptionTest ) |
- |
0 |
|
- |
| Cl 10.5(For Swelling in water Test ) |
- |
0 |
|
- |
| Cl 10.6(Tesr For Modulus Of Elasticity & Mudulus Of Rupture) |
- |
0 |
|
- |
| Cl 10.7(For Determination of Tensile Strength Perpendicular to Surface) |
- |
0 |
|
- |
| Cl 10.8(For Determination of Tensile Strength Perpendicular to Surface After Ageing Test) |
- |
0 |
|
- |
| Cl 10.9(Test For Screw Withdrawal Strength) |
- |
0 |
|
- |
| Cl 10.11 & Annex D( Test For Resistance to Steam) |
- |
0 |
|
- |
| Cl 10.12 & Annex E( Test For Crack Resistance) |
- |
0 |
|
- |
| Cl 10.13 & Annex F( Test For Resistance to Cigarette Burn) |
- |
0 |
|
- |
| Cl 10.14 & Annex G( Test For Resistance to Stain) |
- |
0 |
|
- |
| Cl 10.14 & Annex G( Test For Resistance to Stain) |
- |
0 |
|
- |
| Cl 10.13 & Annex F( Test For Resistance to Cigarette Burn) |
- |
0 |
|
- |
| Cl 10.12 & Annex E( Test For Crack Resistance) |
- |
0 |
|
- |
| Cl 10.11 & Annex D( Test For Resistance to Steam) |
- |
0 |
|
- |
| Cl 10.9(Test For Screw Withdrawal Strength) |
- |
0 |
|
- |
| Cl 10.8(For Determination of Tensile Strength Perpendicular to Surface After Ageing Test) |
- |
0 |
|
- |
| Cl 10.7(For Determination of Tensile Strength Perpendicular to Surface) |
- |
0 |
|
- |
| Cl 10.6(Tesr For Modulus Of Elasticity & Mudulus Of Rupture) |
- |
0 |
|
- |
| Cl 10.5(For Swelling in water Test ) |
- |
0 |
|
- |
| Cl 10.4(For Water AbsorptionTest ) |
- |
0 |
|
- |
| Cl 10.3(Test For Moisture Content) |
- |
0 |
|
- |
| Cl 10.2(Test For Density) |
- |
0 |
|
- |
| Cl 8(Dimensions & Tolerances) |
- |
0 |
|
- |
| Cl 7(Finish) |
- |
0 |
|
- |
| Cl 6(Manufacture) |
- |
0 |
|
- |
| Cl 4(Grades & Types) |
- |
0 |
|
- |
| Cl 10.15(Test for Formaldehyde Content/Emission) |
- |
0 |
|
- |
| Cl 10.10 & Annex C( Test For Abrasion Resistance) |
- |
0 |
|
- |
| Cl 10.10 & Annex C( Test For Abrasion Resistance) |
- |
0 |
|
- |
| Cl 10.10 & Annex C( Test For Abrasion Resistance) |
- |
0 |
|
- |
| Cl-11(ADDITIONAL REQUIREMENTS FOR
ECO-MARK) |
- |
0 |
|
- |
| Cl 4(Grades & Types) |
- |
0 |
|
- |
| Cl 6(Manufacture) |
- |
0 |
|
- |
| Cl 7(Finish) |
- |
0 |
|
- |
| Cl 8(Dimensions & Tolerances) |
- |
0 |
|
- |
| Cl 10.2(Test For Density) |
- |
0 |
|
- |
| Cl 10.3(Test For Moisture Content) |
- |
0 |
|
- |
| Cl 10.4(For Water AbsorptionTest ) |
- |
0 |
|
- |
| Cl 10.5(For Swelling in water Test ) |
- |
0 |
|
- |
| Cl 10.6(Tesr For Modulus Of Elasticity & Mudulus Of Rupture) |
- |
0 |
|
- |
| Cl 10.7(For Determination of Tensile Strength Perpendicular to Surface) |
- |
0 |
|
- |
| Cl 10.8(For Determination of Tensile Strength Perpendicular to Surface After Ageing Test) |
- |
0 |
|
- |
| Cl 10.9(Test For Screw Withdrawal Strength) |
- |
0 |
|
- |
| Cl 10.11 & Annex D( Test For Resistance to Steam) |
- |
0 |
|
- |
| Cl 10.12 & Annex E( Test For Crack Resistance) |
- |
0 |
|
- |
| Cl 10.13 & Annex F( Test For Resistance to Cigarette Burn) |
- |
0 |
|
- |
| Cl 10.14 & Annex G( Test For Resistance to Stain) |
- |
0 |
|
- |
| Cl 4(Grades & Types) |
- |
0 |
|
- |
| Cl 6(Manufacture) |
- |
0 |
|
- |
| Cl 7(Finish) |
- |
0 |
|
- |
| Cl 8(Dimensions & Tolerances) |
- |
0 |
|
- |
| Cl 10.2(Test For Density) |
- |
0 |
|
- |
| Cl 10.3(Test For Moisture Content) |
- |
0 |
|
- |
| Cl 10.4(For Water AbsorptionTest ) |
- |
0 |
|
- |
| Cl 10.5(For Swelling in water Test ) |
- |
0 |
|
- |
| Cl 10.6(Tesr For Modulus Of Elasticity & Mudulus Of Rupture) |
- |
0 |
|
- |
| Cl 10.7(For Determination of Tensile Strength Perpendicular to Surface) |
- |
0 |
|
- |
| Cl 10.8(For Determination of Tensile Strength Perpendicular to Surface After Ageing Test) |
- |
0 |
|
- |
| Cl 10.9(Test For Screw Withdrawal Strength) |
- |
0 |
|
- |
| Cl 10.11 & Annex D( Test For Resistance to Steam) |
- |
0 |
|
- |
| Cl 10.12 & Annex E( Test For Crack Resistance) |
- |
0 |
|
- |
| Cl 10.13 & Annex F( Test For Resistance to Cigarette Burn) |
- |
0 |
|
- |
| Cl 10.14 & Annex G( Test For Resistance to Stain) |
- |
0 |
|
- |
| Cl 10.14 & Annex G( Test For Resistance to Stain) |
- |
0 |
|
- |
| Cl 10.13 & Annex F( Test For Resistance to Cigarette Burn) |
- |
0 |
|
- |
| Cl 10.12 & Annex E( Test For Crack Resistance) |
- |
0 |
|
- |
| Cl 10.11 & Annex D( Test For Resistance to Steam) |
- |
0 |
|
- |
| Cl 10.9(Test For Screw Withdrawal Strength) |
- |
0 |
|
- |
| Cl 10.8(For Determination of Tensile Strength Perpendicular to Surface After Ageing Test) |
- |
0 |
|
- |
| Cl 10.7(For Determination of Tensile Strength Perpendicular to Surface) |
- |
0 |
|
- |
| Cl 10.6(Tesr For Modulus Of Elasticity & Mudulus Of Rupture) |
- |
0 |
|
- |
| Cl 10.5(For Swelling in water Test ) |
- |
0 |
|
- |
| Cl 10.4(For Water AbsorptionTest ) |
- |
0 |
|
- |
| Cl 10.3(Test For Moisture Content) |
- |
0 |
|
- |
| Cl 10.2(Test For Density) |
- |
0 |
|
- |
| Cl 8(Dimensions & Tolerances) |
- |
0 |
|
- |
| Cl 7(Finish) |
- |
0 |
|
- |
| Cl 6(Manufacture) |
- |
0 |
|
- |
| Cl 4(Grades & Types) |
- |
0 |
|
- |
| Cl 10.15(Test for Formaldehyde Content/Emission) |
- |
0 |
|
- |
| Cl 10.10 & Annex C( Test For Abrasion Resistance) |
- |
0 |
|
- |
| Cl 10.10 & Annex C( Test For Abrasion Resistance) |
- |
0 |
|
- |
| Cl 10.10 & Annex C( Test For Abrasion Resistance) |
- |
0 |
|
- |
| Cl-11(ADDITIONAL REQUIREMENTS FOR
ECO-MARK) |
- |
0 |
|
- |
| Cl 4(Grades & Types) |
- |
0 |
|
- |
| Cl 6(Manufacture) |
- |
0 |
|
- |
| Cl 7(Finish) |
- |
0 |
|
- |
| Cl 8(Dimensions & Tolerances) |
- |
0 |
|
- |
| Cl 10.2(Test For Density) |
- |
0 |
|
- |
| Cl 10.3(Test For Moisture Content) |
- |
0 |
|
- |
| Cl 10.4(For Water AbsorptionTest ) |
- |
0 |
|
- |
| Cl 10.5(For Swelling in water Test ) |
- |
0 |
|
- |
| Cl 10.6(Tesr For Modulus Of Elasticity & Mudulus Of Rupture) |
- |
0 |
|
- |
| Cl 10.7(For Determination of Tensile Strength Perpendicular to Surface) |
- |
0 |
|
- |
| Cl 10.8(For Determination of Tensile Strength Perpendicular to Surface After Ageing Test) |
- |
0 |
|
- |
| Cl 10.9(Test For Screw Withdrawal Strength) |
- |
0 |
|
- |
| Cl 10.11 & Annex D( Test For Resistance to Steam) |
- |
0 |
|
- |
| Cl 10.12 & Annex E( Test For Crack Resistance) |
- |
0 |
|
- |
| Cl 10.13 & Annex F( Test For Resistance to Cigarette Burn) |
- |
0 |
|
- |
| Cl 10.14 & Annex G( Test For Resistance to Stain) |
- |
0 |
|
- |
| Cl 4(Grades & Types) |
- |
0 |
|
- |
| Cl 6(Manufacture) |
- |
0 |
|
- |
| Cl 7(Finish) |
- |
0 |
|
- |
| Cl 8(Dimensions & Tolerances) |
- |
0 |
|
- |
| Cl 10.2(Test For Density) |
- |
0 |
|
- |
| Cl 10.3(Test For Moisture Content) |
- |
0 |
|
- |
| Cl 10.4(For Water AbsorptionTest ) |
- |
0 |
|
- |
| Cl 10.5(For Swelling in water Test ) |
- |
0 |
|
- |
| Cl 10.6(Tesr For Modulus Of Elasticity & Mudulus Of Rupture) |
- |
0 |
|
- |
| Cl 10.7(For Determination of Tensile Strength Perpendicular to Surface) |
- |
0 |
|
- |
| Cl 10.8(For Determination of Tensile Strength Perpendicular to Surface After Ageing Test) |
- |
0 |
|
- |
| Cl 10.9(Test For Screw Withdrawal Strength) |
- |
0 |
|
- |
| Cl 10.11 & Annex D( Test For Resistance to Steam) |
- |
0 |
|
- |
| Cl 10.12 & Annex E( Test For Crack Resistance) |
- |
0 |
|
- |
| Cl 10.13 & Annex F( Test For Resistance to Cigarette Burn) |
- |
0 |
|
- |
| Cl 10.14 & Annex G( Test For Resistance to Stain) |
- |
0 |
|
- |
| Cl 10.14 & Annex G( Test For Resistance to Stain) |
- |
0 |
|
- |
| Cl 10.13 & Annex F( Test For Resistance to Cigarette Burn) |
- |
0 |
|
- |
| Cl 10.12 & Annex E( Test For Crack Resistance) |
- |
0 |
|
- |
| Cl 10.11 & Annex D( Test For Resistance to Steam) |
- |
0 |
|
- |
| Cl 10.9(Test For Screw Withdrawal Strength) |
- |
0 |
|
- |
| Cl 10.8(For Determination of Tensile Strength Perpendicular to Surface After Ageing Test) |
- |
0 |
|
- |
| Cl 10.7(For Determination of Tensile Strength Perpendicular to Surface) |
- |
0 |
|
- |
| Cl 10.6(Tesr For Modulus Of Elasticity & Mudulus Of Rupture) |
- |
0 |
|
- |
| Cl 10.5(For Swelling in water Test ) |
- |
0 |
|
- |
| Cl 10.4(For Water AbsorptionTest ) |
- |
0 |
|
- |
| Cl 10.3(Test For Moisture Content) |
- |
0 |
|
- |
| Cl 10.2(Test For Density) |
- |
0 |
|
- |
| Cl 8(Dimensions & Tolerances) |
- |
0 |
|
- |
| Cl 7(Finish) |
- |
0 |
|
- |
| Cl 6(Manufacture) |
- |
0 |
|
- |
| Cl 4(Grades & Types) |
- |
0 |
|
- |
| Cl 10.10 & Annex C( Test For Abrasion Resistance) |
- |
0 |
|
- |
| Cl 10.10 & Annex C( Test For Abrasion Resistance) |
- |
0 |
|
- |
| Cl 10.10 & Annex C( Test For Abrasion Resistance) |
- |
0 |
|
- |
| Cl-11(ADDITIONAL REQUIREMENTS FOR
ECO-MARK) |
- |
0 |
|
- |
|
15 Aug, 2028 |
- Included w.e.f 18.12.2024
Exclusion : Cl 10.15.2 Steady state formaldehyde emission |
| 8843 |
MicroChem Silliker Pvt. Ltd, Navi Mumbai
| 7123316
| IS 10500 (2012) |
Drinking water - Specification (Second Revision) |
- |
18000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4. SL No.i)of
Table I(Colour) |
- |
0 |
|
Complete testing charges 18000 |
| 4.SL No.ii) of
Table I(Odour) |
- |
0 |
|
- |
| 4.SL No.iii)of
Table I(pH) |
- |
0 |
|
- |
| 4.SL No.v)of
Table I(Turbidity, NTU, Max) |
- |
0 |
|
- |
| 4.SL No.vi)of
Table I(Total dissolved solids, mg/l, max) |
- |
0 |
|
- |
| table 2 sl.no 1( Aluminium (as Al), mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 2(Ammonia (as total ammonia-N),
mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 3(Anionic detergents (as MBAS), mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 4(Barium (as Ba), mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 5(Boron (as B), mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 6(Calcium (as Ca), mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 9(Copper (as Cu), mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 10( Fluoride (as F) mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 11(Free residual chlorine, mg/l, Min) |
- |
0 |
|
- |
| table 2 sl.no 12(Iron (as Fe), mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 13(Magnesium (as Mg), mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 14(Manganese (as Mn), mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 15(Mineral oil, mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 16(Nitrate (as NO3), mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 17(Phenolic compounds (as C6H5OH), mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 18(Selenium (as Se), mg/l, Ma) |
- |
0 |
|
- |
| table 2 sl.no 19(Silver (as Ag), mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 20(Sulphate (as SO4) mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 21(Sulphide (as H2S), mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 22(Total alkalinity as calcium
carbonate, mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 23(Total hardness (as CaCO3
mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 24(Zinc (as Zn), mg/l, Max) |
- |
0 |
|
- |
| TABLE 3 sl no 1(Cadmium (as Cd), mg/l, Max) |
- |
0 |
|
- |
| TABLE 3 sl no 2(Cyanide (as CN), mg/l, Max) |
- |
0 |
|
- |
| TABLE 3 sl no 3(Lead (as Pb), mg/l, Max) |
- |
0 |
|
- |
| TABLE 3 sl no 4(Mercury (as Hg), mg/l, Max) |
- |
0 |
|
- |
| TABLE 3 sl no 5( Molybdenum (as Mo), mg/l, Max) |
- |
0 |
|
- |
| TABLE 3 sl no 6(Nickel (as Ni), mg/l, Max) |
- |
0 |
|
- |
| TABLE 3 sl no 7(Pesticides, µg/l, Max) |
- |
0 |
|
- |
| TABLE 3 sl no 8(Polychlorinated biphenyls, mg/l,) |
- |
0 |
|
- |
| TABLE 3 sl no 9(Polynuclear aromatic hydro-carbons (as PAH), mg/l, Max) |
- |
0 |
|
- |
| TABLE 3 sl no 10(Total arsenic (as As), mg/l, Max) |
- |
0 |
|
- |
| TABLE 3 sl no 11(Total chromium (as Cr), mg/l, Max) |
- |
0 |
|
- |
| TABLE 3 sl no 12(Bromoform, mg/l, Max) |
- |
0 |
|
- |
| TABLE 3 sl no 13(Dibromochloromethane,) |
- |
0 |
|
- |
| TABLE 3 sl no 14(Dibromochloromethane,mg/l, Max) |
- |
0 |
|
- |
| TABLE 3 sl no 15(Chloroform, mg/l, Max) |
- |
0 |
|
- |
| TABLE 5 sl no 1(Alachlor) |
- |
0 |
|
- |
| TABLE 5 sl no 2(Atrazine) |
- |
0 |
|
- |
| TABLE 5 sl no 4( Alpha HCH) |
- |
0 |
|
- |
| TABLE 5 sl no 5(Beta HCH) |
- |
0 |
|
- |
| TABLE 5 sl no 6(Butachlor) |
- |
0 |
|
- |
| TABLE 5 sl no 7(Chlorpyriphos) |
- |
0 |
|
- |
| TABLE 5 sl no 8(Delta HCH) |
- |
0 |
|
- |
| TABLE 5 sl no 9(2,4- Dichlorophenoxyacetic acid) |
- |
0 |
|
- |
| TABLE 5 sl no 10( DDT (o, p and p, p – Isomers of DDT, DDE and DDD)) |
- |
0 |
|
- |
| TABLE 5 sl no 11(Endosulfan (alpha, beta, and sulphate)) |
- |
0 |
|
- |
| TABLE 5 sl no 12( Ethion) |
- |
0 |
|
- |
| TABLE 5 sl no 13(Gamma — HCH (Lindane)) |
- |
0 |
|
- |
| TABLE 5 sl no 14( Isoproturon) |
- |
0 |
|
- |
| TABLE 5 sl no 15(Malathion) |
- |
0 |
|
- |
| TABLE 5 sl no 16(Methyl parathion) |
- |
0 |
|
- |
| TABLE 5 sl no 17(Monocrotophos) |
- |
0 |
|
- |
| TABLE 5 sl no 18(Phorate) |
- |
0 |
|
- |
| TABLE 6 sl no 1(All water intended for drinking:
a) E. coli or thermotolerant coliform bacteri) |
- |
0 |
|
- |
| TABLE 6 sl no 2(Treated water entering the distribution system:
a) E. coli or thermotolerant coliform bacteria) |
- |
0 |
|
- |
| TABLE 6 sl no 3(b) Total coliform bacteria) |
- |
0 |
|
- |
| 4.3.8 (Cryptosporidium ) |
- |
0 |
|
- |
| 4.2.7(4.2.7 MS2 phage) |
- |
0 |
|
- |
| Table 3, x)(Uranium) |
- |
0 |
|
- |
| Table 5(Aldrin and Dieldrin ) |
- |
0 |
|
- |
| Table 3 (Clause 4)xii) Trihalomethanes: (b)(Bromodichloromethane) |
- |
0 |
|
- |
| Table 1 clause(iv)(Taste) |
- |
0 |
|
- |
| 4, Table 2, Sr. no. vii(Chloramines) |
- |
0 |
|
- |
| 4, Table 2, Sr.no. viii(Chloride) |
- |
0 |
|
- |
| 4.3.9(Giardia) |
- |
0 |
|
- |
| 4 ,Table (1), (i)(Colour, Hazen units, Max) |
- |
0 |
|
- |
| 4 ,Table (1), (iI)(Odour) |
- |
0 |
|
- |
| 4 ,Table (1), (Iii)(pH value) |
- |
0 |
|
- |
| 4 ,Table (1), (iv)(Taste) |
- |
0 |
|
- |
| 4 ,Table (1), (v)(Turbidity, NTU, Max) |
- |
0 |
|
- |
| 4 ,Table (1), (vi)(Total dissolved solids,
mg/l,Max) |
- |
0 |
|
- |
| 4, Table (2), (i)(Aluminium (as Al), mg/l,
Max) |
- |
0 |
|
- |
| 4, Table (2), (ii)(Ammonia (as total ammonia-N),mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (iii)(Anionic detergents (as MBAS) mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (iv)(Barium (as Ba), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (v)(Boron (as B), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (vi)(Calcium (as Ca), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (vii)(Chloramines (as Cl2 ), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (viii)(Chloride (as Cl), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (ix)(Copper (as Cu), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (x)(Fluoride (as F) mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xi)(Free residual chlorine, mg/l, Min) |
- |
0 |
|
- |
| 4, Table (2), (xii)(Iron (as Fe), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xiii)(Magnesium (as Mg), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xiv)(Manganese (as Mn), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xv)(Mineral oil, mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xvi)(Nitrate (as NO3), mg/l, Max
) |
- |
0 |
|
- |
| 4, Table (2), (xvii)(Phenolic compounds
(as C6H5OH),mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xviii)(Selenium (as Se), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xix)(Silver (as Ag), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xx)(Sulphate (as SO4 ) mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xxi)(Sulphide (as H2 S), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xxii)(Total alkalinity as calcium
carbonate, mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xxiii)(Total hardness (as CaCO3 ),
mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xxiv)(Zinc (as Zn), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (i)(Cadmium (as Cd), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (ii)(Cyanide (as CN), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (iii)(Lead (as Pb), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (iv)(Mercury (as Hg), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (v)(Molybdenum (as Mo), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (vi)(Nickel (as Ni), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (vii)(Pesticides, µg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (viii)(Polychlorinated biphenyls,
mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (ix)(Polynuclear aromatic
hydro-carbons (as PAH), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (x)(Total arsenic (as As), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (xi)(Total chromium (as Cr), mg/l,
Max) |
- |
0 |
|
- |
| 4, Table (3), (xii), (a)(Bromoform, mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (xii), (b)(Dibromochloromethane,
mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (xii), (c)(Bromodichloromethane,
mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (xii), (d)(Chloroform, mg/l, Max) |
- |
0 |
|
- |
| 4 ,Table (1), (i)(Colour, Hazen units, Max) |
- |
0 |
|
- |
| 4 ,Table (1), (iI)(Odour) |
- |
0 |
|
- |
| 4 ,Table (1), (Iii)(pH value) |
- |
0 |
|
- |
| 4 ,Table (1), (iv)(Taste) |
- |
0 |
|
- |
| 4 ,Table (1), (v)(Turbidity, NTU, Max) |
- |
0 |
|
- |
| 4 ,Table (1), (vi)(Total dissolved solids,
mg/l,Max) |
- |
0 |
|
- |
| 4, Table (2), (i)(Aluminium (as Al), mg/l,
Max) |
- |
0 |
|
- |
| 4, Table (2), (ii)(Ammonia (as total ammonia-N),mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (iii)(Anionic detergents (as MBAS) mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (iv)(Barium (as Ba), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (v)(Boron (as B), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (vi)(Calcium (as Ca), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (vii)(Chloramines (as Cl2 ), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (viii)(Chloride (as Cl), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (ix)(Copper (as Cu), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (x)(Fluoride (as F) mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xi)(Free residual chlorine, mg/l, Min) |
- |
0 |
|
- |
| 4, Table (2), (xii)(Iron (as Fe), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xiii)(Magnesium (as Mg), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xiv)(Manganese (as Mn), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xv)(Mineral oil, mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xvi)(Nitrate (as NO3), mg/l, Max
) |
- |
0 |
|
- |
| 4, Table (2), (xvii)(Phenolic compounds
(as C6H5OH),mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xviii)(Selenium (as Se), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xix)(Silver (as Ag), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xx)(Sulphate (as SO4 ) mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xxi)(Sulphide (as H2 S), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xxii)(Total alkalinity as calcium
carbonate, mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xxiii)(Total hardness (as CaCO3 ),
mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xxiv)(Zinc (as Zn), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (i)(Cadmium (as Cd), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (ii)(Cyanide (as CN), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (iii)(Lead (as Pb), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (iv)(Mercury (as Hg), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (v)(Molybdenum (as Mo), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (vi)(Nickel (as Ni), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (vii)(Pesticides, µg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (viii)(Polychlorinated biphenyls,
mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (ix)(Polynuclear aromatic
hydro-carbons (as PAH), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (x)(Total arsenic (as As), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (xii), (a)(Bromoform, mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (xii), (b)(Dibromochloromethane,
mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (xii), (c)(Bromodichloromethane,
mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (xii), (d)(Chloroform, mg/l, Max) |
- |
0 |
|
- |
| table 2 sl.no 7(Calcium (as Ca), mg/l, Max) |
- |
0 |
|
- |
| TABLE 5 sl no 3(Atrazine) |
- |
0 |
|
- |
| table 2 sl.no 8(Calcium (as Ca), mg/l, Max) |
- |
0 |
|
- |
| TABLE 6 sl no 4(Treated water in the distribution system:
a) E. coli or thermotolerant coliform bacteria) |
- |
0 |
|
- |
| 4.1(Bacteriological Requirements) |
- |
0 |
|
- |
| 4.2(Virological Requirements) |
- |
0 |
|
- |
| 4.3(Biological Requirements) |
- |
0 |
|
- |
| TABLE 6 sl no 5(b) Total coliform bacteria) |
- |
0 |
|
- |
| 4, Table (3), (xi)(Total chromium (as Cr), mg/l,
Max) |
- |
0 |
|
- |
| Table 3, x)(Uranium) |
- |
0 |
|
- |
| Table 5(Aldrin and Dieldrin ) |
- |
0 |
|
- |
| Table 3 (Clause 4)xii) Trihalomethanes: (b)(Bromodichloromethane) |
- |
0 |
|
- |
| Table 1 clause(iv)(Taste) |
- |
0 |
|
- |
| 4, Table 2, Sr. no. vii(Chloramines) |
- |
0 |
|
- |
| 4, Table 2, Sr.no. viii(Chloride) |
- |
0 |
|
- |
| 4.3.9(Giardia) |
- |
0 |
|
- |
| 4 ,Table (1), (i)(Colour, Hazen units, Max) |
- |
0 |
|
- |
| 4 ,Table (1), (iI)(Odour) |
- |
0 |
|
- |
| 4 ,Table (1), (Iii)(pH value) |
- |
0 |
|
- |
| 4 ,Table (1), (iv)(Taste) |
- |
0 |
|
- |
| 4 ,Table (1), (v)(Turbidity, NTU, Max) |
- |
0 |
|
- |
| 4 ,Table (1), (vi)(Total dissolved solids,
mg/l,Max) |
- |
0 |
|
- |
| 4, Table (2), (i)(Aluminium (as Al), mg/l,
Max) |
- |
0 |
|
- |
| 4, Table (2), (ii)(Ammonia (as total ammonia-N),mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (iii)(Anionic detergents (as MBAS) mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (iv)(Barium (as Ba), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (v)(Boron (as B), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (vi)(Calcium (as Ca), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (vii)(Chloramines (as Cl2 ), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (viii)(Chloride (as Cl), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (ix)(Copper (as Cu), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (x)(Fluoride (as F) mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xi)(Free residual chlorine, mg/l, Min) |
- |
0 |
|
- |
| 4, Table (2), (xii)(Iron (as Fe), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xiii)(Magnesium (as Mg), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xiv)(Manganese (as Mn), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xv)(Mineral oil, mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xvi)(Nitrate (as NO3), mg/l, Max
) |
- |
0 |
|
- |
| 4, Table (2), (xvii)(Phenolic compounds
(as C6H5OH),mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xviii)(Selenium (as Se), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xix)(Silver (as Ag), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xx)(Sulphate (as SO4 ) mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xxi)(Sulphide (as H2 S), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xxii)(Total alkalinity as calcium
carbonate, mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xxiii)(Total hardness (as CaCO3 ),
mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xxiv)(Zinc (as Zn), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (i)(Cadmium (as Cd), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (ii)(Cyanide (as CN), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (iii)(Lead (as Pb), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (iv)(Mercury (as Hg), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (v)(Molybdenum (as Mo), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (vi)(Nickel (as Ni), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (vii)(Pesticides, µg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (viii)(Polychlorinated biphenyls,
mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (ix)(Polynuclear aromatic
hydro-carbons (as PAH), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (x)(Total arsenic (as As), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (xi)(Total chromium (as Cr), mg/l,
Max) |
- |
0 |
|
- |
| 4, Table (3), (xii), (a)(Bromoform, mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (xii), (b)(Dibromochloromethane,
mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (xii), (c)(Bromodichloromethane,
mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (xii), (d)(Chloroform, mg/l, Max) |
- |
0 |
|
- |
| 4 ,Table (1), (i)(Colour, Hazen units, Max) |
- |
0 |
|
- |
| 4 ,Table (1), (iI)(Odour) |
- |
0 |
|
- |
| 4 ,Table (1), (Iii)(pH value) |
- |
0 |
|
- |
| 4 ,Table (1), (iv)(Taste) |
- |
0 |
|
- |
| 4 ,Table (1), (v)(Turbidity, NTU, Max) |
- |
0 |
|
- |
| 4 ,Table (1), (vi)(Total dissolved solids,
mg/l,Max) |
- |
0 |
|
- |
| 4, Table (2), (i)(Aluminium (as Al), mg/l,
Max) |
- |
0 |
|
- |
| 4, Table (2), (ii)(Ammonia (as total ammonia-N),mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (iii)(Anionic detergents (as MBAS) mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (iv)(Barium (as Ba), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (v)(Boron (as B), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (vi)(Calcium (as Ca), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (vii)(Chloramines (as Cl2 ), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (viii)(Chloride (as Cl), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (ix)(Copper (as Cu), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (x)(Fluoride (as F) mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xi)(Free residual chlorine, mg/l, Min) |
- |
0 |
|
- |
| 4, Table (2), (xii)(Iron (as Fe), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xiii)(Magnesium (as Mg), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xiv)(Manganese (as Mn), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xv)(Mineral oil, mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xvi)(Nitrate (as NO3), mg/l, Max
) |
- |
0 |
|
- |
| 4, Table (2), (xvii)(Phenolic compounds
(as C6H5OH),mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xviii)(Selenium (as Se), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xix)(Silver (as Ag), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xx)(Sulphate (as SO4 ) mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xxi)(Sulphide (as H2 S), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xxii)(Total alkalinity as calcium
carbonate, mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xxiii)(Total hardness (as CaCO3 ),
mg/l, Max) |
- |
0 |
|
- |
| 4, Table (2), (xxiv)(Zinc (as Zn), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (i)(Cadmium (as Cd), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (ii)(Cyanide (as CN), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (iii)(Lead (as Pb), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (iv)(Mercury (as Hg), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (v)(Molybdenum (as Mo), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (vi)(Nickel (as Ni), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (vii)(Pesticides, µg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (viii)(Polychlorinated biphenyls,
mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (ix)(Polynuclear aromatic
hydro-carbons (as PAH), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (x)(Total arsenic (as As), mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (xii), (a)(Bromoform, mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (xii), (b)(Dibromochloromethane,
mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (xii), (c)(Bromodichloromethane,
mg/l, Max) |
- |
0 |
|
- |
| 4, Table (3), (xii), (d)(Chloroform, mg/l, Max) |
- |
0 |
|
- |
| 4.1(Bacteriological Requirements) |
- |
0 |
|
- |
| 4.2(Virological Requirements) |
- |
0 |
|
- |
| 4.3(Biological Requirements) |
- |
0 |
|
- |
| 4, Table (3), (xi)(Total chromium (as Cr), mg/l,
Max) |
- |
0 |
|
Complete testing charges 18000 |
|
31 Dec, 2026 |
- Included w.e.f.11.11.2024
Exclusion
CL 4, Table (4), (i), (a) (Alpha emitters Bq/l, Max)
CL 4, Table (4), (i), (b) (Beta emitters Bq/l, Max)
CL 4.2 (Virological Requirements)
CL 4.3 (Biological Requirements) |
| 8844 |
INDIAN TESTING LABORATORY PRIVATE LIMITED, GREATER NOIDA
| 8171306
| IS 12406 (2021) |
Medium density fibre boards for general purpose - Specification |
Solid Board Grade I, Solid Board Grade II,SBG I,SBG II |
21000 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Clauses 5.2, 9 and 10.2.2(Density) |
- |
2000 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Density) |
- |
2000 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Variation from mean density) |
- |
1000 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Moisture Content) |
- |
2000 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Variation from mean moisture content) |
- |
1000 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Linear expansion
(Thickness Swelling in Water)
Due to general Absorption after 24h soaking) |
- |
2500 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Internal Bond Strength) |
- |
1000 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Internal Bond strength
(i) (After Cyclic test)
(ii) (After accelerated water resistance test)) |
- |
1000 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Modulus of Rupture
a) Avg. Value
b) Min. Individual) |
- |
1500 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Modulus of Elasticity
a) Avg. Value
b) Min. Individual) |
- |
1500 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Screw withdrawl strength
(i) Face
(ii) Edge (For thickness >12mm)) |
- |
2500 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Formaldehyde Content
(i) For Formaldehyde Class, E1
(ii) For Formaldehyde Class, E2) |
- |
1500 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Steady State Formaldehyde emission (Fc
(i) For Formaldehyde Class, E1
(ii) For Formaldehyde Class, E2) |
- |
0 |
|
Exclusion |
| 8(DIMENSIONS AND TOLERANCES) |
- |
1000 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Density) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Density) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Variation from mean density) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Moisture Content) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Variation from mean moisture content) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Linear expansion
(Thickness Swelling in Water)
Due to general Absorption after 24h soaking) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Internal Bond Strength) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Internal Bond strength
(i) (After Cyclic test)
(ii) (After accelerated water resistance test)) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Modulus of Rupture
a) Avg. Value
b) Min. Individual) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Modulus of Elasticity
a) Avg. Value
b) Min. Individual) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Screw withdrawl strength
(i) Face
(ii) Edge (For thickness >12mm)) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Formaldehyde Content
(i) For Formaldehyde Class, E1
(ii) For Formaldehyde Class, E2) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Steady State Formaldehyde emission (Fc
(i) For Formaldehyde Class, E1
(ii) For Formaldehyde Class, E2) |
- |
0 |
|
- |
| 8(DIMENSIONS AND TOLERANCES) |
- |
0 |
|
- |
| Cl-11(ADDITIONAL REQUIREMENTS FOR
ECO-MARK) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Density) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Density) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Variation from mean density) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Moisture Content) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Variation from mean moisture content) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Linear expansion
(Thickness Swelling in Water)
Due to general Absorption after 24h soaking) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Internal Bond Strength) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Internal Bond strength
(i) (After Cyclic test)
(ii) (After accelerated water resistance test)) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Modulus of Rupture
a) Avg. Value
b) Min. Individual) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Modulus of Elasticity
a) Avg. Value
b) Min. Individual) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Screw withdrawl strength
(i) Face
(ii) Edge (For thickness >12mm)) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Formaldehyde Content
(i) For Formaldehyde Class, E1
(ii) For Formaldehyde Class, E2) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Steady State Formaldehyde emission (Fc
(i) For Formaldehyde Class, E1
(ii) For Formaldehyde Class, E2) |
- |
0 |
|
- |
| 8(DIMENSIONS AND TOLERANCES) |
- |
0 |
|
- |
| Cl-11(ADDITIONAL REQUIREMENTS FOR
ECO-MARK) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Density) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Density) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Variation from mean density) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Moisture Content) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Variation from mean moisture content) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Linear expansion
(Thickness Swelling in Water)
Due to general Absorption after 24h soaking) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Internal Bond Strength) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Internal Bond strength
(i) (After Cyclic test)
(ii) (After accelerated water resistance test)) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Modulus of Rupture
a) Avg. Value
b) Min. Individual) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Modulus of Elasticity
a) Avg. Value
b) Min. Individual) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Screw withdrawl strength
(i) Face
(ii) Edge (For thickness >12mm)) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Formaldehyde Content
(i) For Formaldehyde Class, E1
(ii) For Formaldehyde Class, E2) |
- |
0 |
|
- |
| 8(DIMENSIONS AND TOLERANCES) |
- |
0 |
|
- |
| Cl-11(ADDITIONAL REQUIREMENTS FOR
ECO-MARK) |
- |
0 |
|
- |
| Clauses 5.2, 9 and 10.2.2(Steady State Formaldehyde emission (Fc
(i) For Formaldehyde Class, E1
(ii) For Formaldehyde Class, E2) |
- |
0 |
|
- |
| Cl 7(Finish) |
- |
100 |
|
- |
|
15 Aug, 2028 |
- Included w.e.f 04.03.2025
Exclusion : Clauses 5.2, 9 and 10.2.2 (Steady State Formaldehyde emission (Fc (i) For Formaldehyde Class, E1 (ii) For Formaldehyde Class, E2) |
| 8845 |
INDIAN TESTING LABORATORY PRIVATE LIMITED, GREATER NOIDA
| 8171306
| IS 5509 (2021) |
Fire Retardant Plywood - Specification ( Third Revision ) |
BWR |
12800 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 8.3 (Table 1)(b) 6 mm and above) |
- |
500 |
|
- |
| 4.1(Flame retardant chemicals) |
- |
200 |
|
- |
| 4.2(Flame retardant and preservative treatment) |
- |
500 |
|
- |
| 4.3(Treatment) |
- |
500 |
|
- |
| 5(PREPARATION FOR TREATMENT) |
- |
500 |
|
- |
| 6.1.1(Treatment of Plywood by Pressure Impregnation after Manufacture) |
- |
400 |
|
- |
| 6.1.2(Soaking Treatment) |
- |
300 |
|
- |
| 6.2(Choice of Treatment) |
- |
200 |
|
- |
| 7(CONDITIONING AFTER TREATMENT) |
- |
300 |
|
- |
| 8.1(Dimensions) |
- |
500 |
|
- |
| 8.2(Thickness) |
- |
200 |
|
- |
| 8.3, Taable-1 (i)(Tolerance- Length) |
- |
200 |
|
- |
| 9(WORKMANSHIP AND FINISH) |
- |
200 |
|
- |
| 10(SAMPLING AND CRITERIA FOR CONFORMITY) |
- |
200 |
|
- |
| 11 (a)(For flammability) |
- |
1200 |
|
- |
| 11 (b)(For flame penetration) |
- |
1200 |
|
- |
| 11 (c)(For rate of burning) |
- |
1200 |
|
- |
| 12.1 Table - 2 (i)(Moisture content, percent, Max) |
- |
300 |
|
- |
| 12.1 Table - 2 (ii)(Flammability (see Note 1), minutes, Min) |
- |
1200 |
|
- |
| 12.1 Table - 2 (iii)(Flame penetration (see Note 2), minutes, Min) |
- |
1200 |
|
- |
| 12.1 Table - 2 (iv)(Rate of burning (see Note 3), minutes, Min) |
- |
1200 |
|
- |
| 12.2(Other Tests) |
- |
500 |
|
- |
| 14(Marking) |
- |
100 |
|
- |
| 8.3 (Table 1)(b) 6 mm and above) |
- |
0 |
|
- |
| 4.1(Flame retardant chemicals) |
- |
0 |
|
- |
| 4.2(Flame retardant and preservative treatment) |
- |
0 |
|
- |
| 4.3(Treatment) |
- |
0 |
|
- |
| 5(PREPARATION FOR TREATMENT) |
- |
0 |
|
- |
| 6.1.1(Treatment of Plywood by Pressure Impregnation after Manufacture) |
- |
0 |
|
- |
| 6.1.2(Soaking Treatment) |
- |
0 |
|
- |
| 6.2(Choice of Treatment) |
- |
0 |
|
- |
| 7(CONDITIONING AFTER TREATMENT) |
- |
0 |
|
- |
| 8.1(Dimensions) |
- |
0 |
|
- |
| 8.2(Thickness) |
- |
0 |
|
- |
| 8.3, Taable-1 (i)(Tolerance- Length) |
- |
0 |
|
- |
| 9(WORKMANSHIP AND FINISH) |
- |
0 |
|
- |
| 10(SAMPLING AND CRITERIA FOR CONFORMITY) |
- |
0 |
|
- |
| 11 (a)(For flammability) |
- |
0 |
|
- |
| 11 (b)(For flame penetration) |
- |
0 |
|
- |
| 11 (c)(For rate of burning) |
- |
0 |
|
- |
| 12.1 Table - 2 (i)(Moisture content, percent, Max) |
- |
0 |
|
- |
| 12.1 Table - 2 (ii)(Flammability (see Note 1), minutes, Min) |
- |
0 |
|
- |
| 12.1 Table - 2 (iii)(Flame penetration (see Note 2), minutes, Min) |
- |
0 |
|
- |
| 12.1 Table - 2 (iv)(Rate of burning (see Note 3), minutes, Min) |
- |
0 |
|
- |
| 12.2(Other Tests) |
- |
0 |
|
- |
| 14(Marking) |
- |
0 |
|
- |
| Cl-13(ADDITIONAL REQUIREMENTS FOR
ECO-MARK) |
- |
0 |
|
- |
| 8.3 (Table 1)(b) 6 mm and above) |
- |
0 |
|
- |
| 4.1(Flame retardant chemicals) |
- |
0 |
|
- |
| 4.2(Flame retardant and preservative treatment) |
- |
0 |
|
- |
| 4.3(Treatment) |
- |
0 |
|
- |
| 5(PREPARATION FOR TREATMENT) |
- |
0 |
|
- |
| 6.1.1(Treatment of Plywood by Pressure Impregnation after Manufacture) |
- |
0 |
|
- |
| 6.1.2(Soaking Treatment) |
- |
0 |
|
- |
| 6.2(Choice of Treatment) |
- |
0 |
|
- |
| 7(CONDITIONING AFTER TREATMENT) |
- |
0 |
|
- |
| 8.1(Dimensions) |
- |
0 |
|
- |
| 8.2(Thickness) |
- |
0 |
|
- |
| 8.3, Taable-1 (i)(Tolerance- Length) |
- |
0 |
|
- |
| 9(WORKMANSHIP AND FINISH) |
- |
0 |
|
- |
| 10(SAMPLING AND CRITERIA FOR CONFORMITY) |
- |
0 |
|
- |
| 11 (a)(For flammability) |
- |
0 |
|
- |
| 11 (b)(For flame penetration) |
- |
0 |
|
- |
| 11 (c)(For rate of burning) |
- |
0 |
|
- |
| 12.1 Table - 2 (i)(Moisture content, percent, Max) |
- |
0 |
|
- |
| 12.1 Table - 2 (ii)(Flammability (see Note 1), minutes, Min) |
- |
0 |
|
- |
| 12.1 Table - 2 (iii)(Flame penetration (see Note 2), minutes, Min) |
- |
0 |
|
- |
| 12.1 Table - 2 (iv)(Rate of burning (see Note 3), minutes, Min) |
- |
0 |
|
- |
| 12.2(Other Tests) |
- |
0 |
|
- |
| 14(Marking) |
- |
0 |
|
- |
| Cl-13(ADDITIONAL REQUIREMENTS FOR
ECO-MARK) |
- |
0 |
|
- |
|
15 Aug, 2028 |
- Included w.e.f. 25.07.2024 |
| 8846 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 16018 (2012) |
Wheeled fire extinguishers - Performance and construction - Specification |
All types and all capacity |
247300 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl 4(Types of Wheeled Fire Extinguishers) |
- |
200 |
|
- |
| Cl 5.3(Fill Density) |
- |
600 |
|
- |
| Cl 5.4(Filling Tolerance) |
- |
600 |
|
- |
| Cl 5.5.1(Nominal Charge) |
- |
200 |
|
- |
| Cl 6.1(Operating Temperature) |
- |
300 |
|
- |
| Cl 6.2.1(Effective Discharge Time) |
- |
600 |
|
- |
| Cl 6.2.2(Bulk Range) |
- |
600 |
|
- |
| Cl 6.5(Intermittent Discharge Test) |
- |
1500 |
|
- |
| 9.1(Colour) |
- |
200 |
|
- |
| 8.18.3(Hose Retaining Unit) |
- |
200 |
|
- |
| 8.18.2(Mobility) |
- |
1300 |
|
- |
| 8.18.1(Carriage Assembly) |
- |
1100 |
|
- |
| 8.17(Dip tubes and Filters for water based Extinguisher) |
- |
1200 |
|
- |
| 8.16(Pressure gauges for low pressure extinguishers) |
- |
8500 |
|
- |
| 8.15(Safety Locking Devices) |
- |
1200 |
|
- |
| 8.14(Method of operation for gas cartridge type extinguishers) |
- |
1200 |
|
- |
| 8.14(Method of operation for carbon dioxide extinguishers) |
- |
1200 |
|
- |
| 8.13.3(Load test on discharge horn) |
- |
1500 |
|
- |
| 8.13.2(Requirement to prevent loosening or detachment) |
- |
300 |
|
- |
| 8.13.1(Horn of carbon dioxide extinguisher) |
- |
200 |
|
- |
| 8.12(Control valve test) |
- |
300 |
|
- |
| 8.11.3(Requirement of burst pressure of hose assemblies for carbon dioxide fire extinguishers) |
- |
400 |
|
- |
| 8.11.3(Requirement of burst pressure of hose assemblies for except carbon dioxide fire extinguishers) |
- |
400 |
|
- |
| 8.11.2(Requirement of hose and coupling system) |
- |
400 |
|
- |
| 8.11.1(Requirement of the Discharge Assemblies) |
- |
400 |
|
- |
| 8.9.2(Leakage Test) |
- |
600 |
|
- |
| 8.8(Safety and Anti-overfill devices) |
- |
1100 |
|
Cl. 8.8.1 - Rs 600, Cl. 8.8.2 - Rs 500 |
| 8.7.6(Requirement of edges and surfaces) |
- |
0 |
|
- |
| 8.7.5(Requirement of burst test of cap,valve and closure) |
- |
2200 |
|
- |
| 8.7.4(Requirement of collar) |
- |
0 |
|
- |
| 8.7.3(Requirement of filling opening diameter) |
- |
200 |
|
- |
| 8.7.2(Requirement of threaded connections on cylinder) |
- |
200 |
|
- |
| 8.7.1(Caps valves and closure) |
- |
200 |
|
- |
| 8.6(Minimum wall thickness of the cylinder) |
- |
600 |
|
- |
| 8.3.3(Pressure cycling Test) |
- |
3000 |
|
- |
| 8.3.2(Deformation Test) |
- |
1600 |
|
- |
| 8.3.1(Burst Test) |
- |
3000 |
|
- |
| 8.2(High Pressure Cylinder) |
- |
300 |
|
- |
| 8.1.7(Drain Plug) |
- |
100 |
|
- |
| 8.1.6(Thread of Plastic Components) |
- |
200 |
|
- |
| 8.1.4(Construction Requirement) |
- |
0 |
|
- |
| 8.1.3(Requirement of Welding) |
- |
300 |
|
- |
| 8.1.2(Leakage Observation during conditioning Test) |
- |
500 |
|
- |
| 7.2(Class 'B' Fire Test 233B) |
- |
85000 |
|
- |
| 7.2(Class 'B' Fire Test 183B) |
- |
75000 |
|
- |
| 7.2(Class 'B' Fire Test 144B) |
- |
67000 |
|
- |
| 7.2(Class 'B' Fire Test 113B) |
- |
57000 |
|
- |
| 7.2(Class 'B' Fire Test 89B) |
- |
52000 |
|
- |
| 7.2(Class 'B' Fire Test 70B) |
- |
42000 |
|
- |
| 7.2(Class 'B' Fire Test 55B) |
- |
37000 |
|
- |
| 7.2(Class 'A' Fire Test 20A) |
- |
73000 |
|
- |
| 7.2(Class 'A' Fire Test 15A) |
- |
51000 |
|
- |
| 7.2(Class 'A' Fire Test 10A) |
- |
37000 |
|
- |
| 7.2(Class 'A' Fire Test 6A) |
- |
32000 |
|
- |
| 7.2(Class 'A' Fire Test 4A) |
- |
27000 |
|
- |
| 7.2(Class 'A' Fire Test 3A) |
- |
1800 |
|
- |
| 6.7.4(Displaced Test) |
- |
300 |
|
- |
| 6.7.3(Nozzle Drop Test) |
- |
200 |
|
- |
| 6.7.2(Durability test of trailer mounted fire extinguisher) |
- |
3000 |
|
- |
| 6.7.1(Observation of Durability Test after Nozzle Drop Test and Displaced Test) |
- |
2500 |
|
- |
| 6.6.2(Internal Corrosion Test) |
- |
6000 |
|
- |
| 6.6.1(External Corrosion Test) |
- |
6000 |
|
- |
| 6.4(Retention of charge) |
- |
600 |
|
- |
| 5.5.2(Gross Mass) |
- |
300 |
|
- |
| 3.16 and 8.1.1(Determination of maximum service pressure) |
- |
600 |
|
- |
| 3.19 and 8.3(Determination of Service Pressure) |
- |
200 |
|
- |
| Cl no 4(16018 :2012) |
- |
200 |
|
- |
| Cl no 5.3(16018 :2012) |
- |
600 |
|
- |
| Cl no 5.4(16018 :2012) |
- |
600 |
|
- |
| Cl no 5.5.1(16018 :2012) |
- |
200 |
|
- |
| Cl no 5.5.2(16018 :2012) |
- |
300 |
|
- |
| Cl no 6.1(16018 :2012) |
- |
300 |
|
- |
| Cl no 6.2.1 & 6.2.1.1(16018 :2012) |
- |
600 |
|
- |
| Cl no 6.6.2(16018 :2012) |
- |
600 |
|
- |
| Cl no 6.3 & 6.3.1(16018 :2012) |
- |
2200 |
|
- |
| Cl no 6.4(16018 :2012) |
- |
600 |
|
- |
| Cl no 6.5(16018 :2012) |
- |
1500 |
|
- |
| Cl no 6.6.1(16018 :2012) |
- |
6000 |
|
- |
| Cl no 6.2.2 & 6.2.2.1(16018 :2012) |
- |
6000 |
|
- |
| Cl no 6.7(16018 :2012) |
- |
6000 |
|
- |
| Cl no 6.8(16018 :2012) |
- |
30000 |
|
- |
| Cl no 7.1(16018 :2012) |
- |
85000 |
|
- |
| Cl no 8.2(16018 :2012) |
- |
300 |
|
- |
| Cl no 8.1(16018 :2012) |
- |
1000 |
|
- |
| Cl no 8.3(16018 :2012) |
- |
0 |
|
- |
| Cl no 8.3.1(16018 :2012 Burst test) |
- |
3000 |
|
- |
| Cl no 8.3.2(16018 :2012) |
- |
1600 |
|
- |
| Cl no 8.3.3(16018 :2012) |
- |
3000 |
|
- |
| Cl no 8.6(16018 :2012) |
- |
600 |
|
- |
| Cl no 8.7(16018 :2012) |
- |
200 |
|
- |
| Cl no 8.7.2(16018 :2012) |
- |
200 |
|
- |
| Cl no 8.7.3(16018 :2012) |
- |
200 |
|
- |
| Cl no 8.7.4(16018 :2012) |
- |
0 |
|
- |
| Cl no 8.7.5(16018 :2012) |
- |
2200 |
|
- |
| Cl no 8.7.6(16018 :2012) |
- |
0 |
|
- |
| Cl no 8.8.1(16018 :2012) |
- |
600 |
|
- |
| Cl no 8.8.2(16018 :2012) |
- |
500 |
|
- |
| Cl no 8.9.2(16018 :2012) |
- |
600 |
|
- |
| Cl no 8.12(16018 :2012) |
- |
300 |
|
- |
| Cl no 8.13.1 to 8.13.3(Horn for Carbon Di-oxide
Extinguishers) |
- |
200 |
|
- |
| Cl no 8.14(16018 :2012) |
- |
1200 |
|
- |
| Cl no 8.15(16018 :2012) |
- |
1200 |
|
- |
| Cl no 8.17(16018 :2012) |
- |
1200 |
|
- |
| Cl no 8.18.1(16018 :2012) |
- |
1100 |
|
- |
| Cl no 8.18.2(16018 :2012) |
- |
1300 |
|
- |
| Cl no 8.18.3(16018 :2012) |
- |
200 |
|
- |
| Cl no 9.1(16018 :2012) |
- |
200 |
|
- |
| Cl no 9.2(16018 :2012) |
- |
300 |
|
- |
| Cl no 4(16018 :2012) |
- |
200 |
|
- |
| Cl no 5.4(16018 :2012) |
- |
600 |
|
- |
| Cl no 5.5.1(16018 :2012) |
- |
200 |
|
- |
| Cl no 5.5.2(16018 :2012) |
- |
300 |
|
- |
| Cl no 6.1(16018 :2012) |
- |
300 |
|
- |
| Cl no 6.2.1 & 6.2.1.1(16018 :2012) |
- |
600 |
|
- |
| Cl no 6.2.2 & 6.2.2.1(16018 :2012) |
- |
600 |
|
- |
| Cl no 6.3 & 6.3.1(16018 :2012) |
- |
2200 |
|
- |
| Cl no 6.4(16018 :2012) |
- |
600 |
|
- |
| Cl no 6.5(16018 :2012) |
- |
1500 |
|
- |
| Cl no 6.6.1(16018 :2012) |
- |
6000 |
|
- |
| Cl no 6.6.2(16018 :2012) |
- |
6000 |
|
- |
| Cl no 6.7(16018 :2012) |
- |
6000 |
|
- |
| Cl no 6.8(16018 :2012) |
- |
30000 |
|
- |
| Cl no 7.1(16018 :2012) |
- |
85000 |
|
- |
| Cl no 8.1(16018 :2012) |
- |
1000 |
|
- |
| Cl no 8.2(16018 :2012) |
- |
300 |
|
- |
| Cl no 8.3(16018 :2012) |
- |
0 |
|
- |
| Cl no 8.3.1(16018 :2012) |
- |
3000 |
|
- |
| Cl no 8.3.2(16018 :2012) |
- |
1600 |
|
- |
| Cl no 8.3.3(16018 :2012) |
- |
3000 |
|
- |
| Cl no 8.6(16018 :2012) |
- |
600 |
|
- |
| Cl no 8.7(16018 :2012) |
- |
200 |
|
- |
| Cl no 8.7.2(16018 :2012) |
- |
200 |
|
- |
| Cl no 8.7.3(16018 :2012) |
- |
200 |
|
- |
| Cl no 8.7.4(16018 :2012) |
- |
0 |
|
- |
| Cl no 8.7.5(16018 :2012) |
- |
2200 |
|
- |
| Cl no 8.7.6(16018 :2012) |
- |
0 |
|
- |
| Cl no 8.8.1(16018 :2012) |
- |
600 |
|
- |
| Cl no 8.9.2(16018 :2012) |
- |
600 |
|
- |
| Cl no 8.11.1 to 8.11.3(Discharge assembly) |
- |
400 |
|
- |
| Cl no 8.12(16018 :2012) |
- |
300 |
|
- |
| Cl no 8.13.1(16018 :2012) |
- |
200 |
|
- |
| Cl no 8.14(16018 :2012) |
- |
1200 |
|
- |
| Cl no 8.15(16018 :2012) |
- |
1200 |
|
- |
| Cl no 8.17(16018 :2012) |
- |
1200 |
|
- |
| Cl no 8.18.1(16018 :2012) |
- |
1100 |
|
- |
| Cl no 8.18.2(16018 :2012) |
- |
1300 |
|
- |
| Cl no 8.18.3(16018 :2012) |
- |
200 |
|
- |
| Cl no 9.1(16018 :2012) |
- |
200 |
|
- |
| Cl no 9.2(16018 :2012) |
- |
300 |
|
- |
| Cl 6.3(Resistance To Temperature Changes) |
- |
2200 |
|
- |
| Cl no 5.3(16018 :2012) |
- |
600 |
|
- |
|
03 Mar, 2027 |
- Exclusion: Welded low carbon steel Cl 8.4.1.1, Stainless steel Cylinders Cl 8.4.2.1 & 8.4.2.2,
Aluminium Cylinders Cl 8.5
Plastic component Cl 8.10
Pressure gauge Cl 8.16.5, 8.16.6, 8.16.8
Gasket and O ring Cl 8.19 |
| 8847 |
Bharat Test House Pvt Ltd 1474 Sonipat Haryana
| 9135626
| IS 15063 (2001) |
Alkaline manganese dioxide cells - Specification |
Alkaline Manganese Dioxide Cells |
46250 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 13(Delayed Life Test) |
- |
12500 |
|
- |
| 12(Leakage Test) |
- |
17500 |
|
- |
| 11, 11.1, 11.3(Intermittent Discharge Initial Application Test (Table 5E, 6LR61)) |
- |
12500 |
|
- |
| 11, 11.1, 11.3(Intermittent Discharge Initial Application Test (Table 5D, LR20)) |
- |
12500 |
|
- |
| 11, 11.1, 11.3(Intermittent Discharge Initial Application Test (Table 5C, LR14)) |
- |
12500 |
|
- |
| 11, 11.1, 11.3(Intermittent Discharge Initial Application Test (Table 5B, LR6)) |
- |
12500 |
|
- |
| 11, 11.1, 11.3(Intermittent Discharge Initial Application Test (Table 5A, LR03)) |
- |
12500 |
|
- |
| 11, 11.1, 11.2(Continuous Discharge Initial Life Test) |
- |
12500 |
|
- |
| 10.2.3(Standard Atmospheric Condition of Testing) |
- |
0 |
|
- |
| 10.1(General) |
- |
0 |
|
- |
| 9(Marking) |
- |
500 |
|
- |
| 8(Terminals) |
- |
500 |
|
- |
| 7(Battery Connections) |
- |
750 |
|
- |
| 6(Materials and Construction) |
- |
500 |
|
- |
| 5(Dimensions) |
- |
1000 |
|
- |
| 4(Designation ) |
- |
500 |
|
- |
|
19 Mar, 2026 |
- - |
| 8848 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 4989 (2018) |
Foam concentrate for producing mechanical foam for fire fighting - Specification (Fourth Revision) |
All types of foam concentrate |
117800 View breakup
AFFF, FFFP- Rs 71,300/-
PF, FP- Rs 68,900
SF-Rs 8,900/-
AR-FP- Rs 1,15,400/-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Cl. 4.1, Table 1, Sr. No. 1 (Visual Examination ) |
- |
200 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 2(Freezing and thrawing) |
- |
1800 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 3(pH (Original Sample)) |
- |
300 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 3(pH (ageing Sample)) |
- |
600 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 5(Viscosity) |
- |
600 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 6(pour point) |
- |
600 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 7(Sludge content) |
- |
900 |
|
original - Rs 300, ageing - RS 600 |
| Cl. 4.1, Table 1, Sr. No. 8(Surface tension) |
- |
1200 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 10(spreading coefficient) |
- |
1200 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 1 (Visual Examination ) |
- |
200 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 2(Freezing and thrawing) |
- |
1800 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 3(pH (Original Sample)) |
- |
300 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 3(pH (ageing Sample)) |
- |
600 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 4(Miscibility with distilled water) |
- |
600 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 5(Viscosity) |
- |
600 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 6(pour point) |
- |
600 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 7(Sludge content) |
- |
900 |
|
original - Rs 300, ageing - Rs 600 |
| Cl. 4.1, Table 1, Sr. No. 8(Surface tension) |
- |
1200 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 10(spreading coefficient) |
- |
1200 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 1 (Visual Examination ) |
- |
200 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 2(Freezing and thrawing) |
- |
1800 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 3(pH (Original Sample)) |
- |
300 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 3(pH (ageing Sample)) |
- |
600 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 4(Miscibility with distilled water) |
- |
600 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 5(Viscosity) |
- |
600 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 6(pour point) |
- |
600 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 7(Sludge content) |
- |
900 |
|
original - RS 300, ageing - RS 900 |
| Cl. 4.1, Table 1, Sr. No. 8(Surface tension) |
- |
1200 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 10(spreading coefficient) |
- |
1200 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 1 (Visual Examination ) |
- |
200 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 2(Freezing and thrawing) |
- |
1800 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 3(pH (Original Sample)) |
- |
300 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 3(pH (ageing Sample)) |
- |
600 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 4(Miscibility with distilled water) |
- |
600 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 5(Viscosity) |
- |
600 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 6(pour point) |
- |
600 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 7(Sludge content) |
- |
900 |
|
original - RS 300, ageing - RS 900 |
| Cl. 4.1, Table 1, Sr. No. 8(Surface tension) |
- |
1200 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 10(spreading coefficient) |
- |
1200 |
|
- |
| Clause No. 4.2, Sr. No. IV(d) of Table 2, Annex-M(Burn Back for Polar Solvent Fires with synthetic sea water) |
- |
24000 |
|
- |
| Clause No. 4.2, Sr. No. IV(d) of Table 2, Annex-M(Burn Back for Polar Solvent Fires with synthetic sea water) |
- |
24000 |
|
- |
| Clause No. 4.2, Sr. No. IV(c) of Table 2, Annex-M(Sealability/Film forming for Polar Solvent Fires with synthetic sea water) |
- |
24000 |
|
- |
| Clause No. 4.2, Sr. No. IV(b) of Table 2, Annex-M(Fire Extinction Time Polar Solvent Fire with synthetic sea water) |
- |
24000 |
|
- |
| Clause No. 4.2, Sr. No. IV(b) of Table 2, Annex-M(Fire Extinction Time Polar Solvent Fire with synthetic sea water) |
- |
24000 |
|
- |
| Clause No. 4.2, Sr. No. IV(a) of Table 2, Annex-M(Fire Control Time for Polar Solvent Fire with synthetic sea water) |
- |
24000 |
|
- |
| Clause No. 4.2, Sr. No. IV(a) of Table 2, Annex-M(Fire Control Time for Polar Solvent Fire with synthetic sea water) |
- |
24000 |
|
- |
| Clause No. 4.2, Sr. No. IV(d) of Table 2, Annex-M(Burn Back for Polar Solvent Fires) |
- |
24000 |
|
- |
| Clause No. 4.2, Sr. No. IV(d) of Table 2, Annex-M(Burn Back for Polar Solvent Fires) |
- |
24000 |
|
- |
| Clause No. 4.2, Sr. No. IV(b) of Table 2, Annex-M(Fire Extinction Time Polar Solvent Fire) |
- |
24000 |
|
- |
| Clause No. 4.2, Sr. No. IV(c) of Table 2, Annex-M(Sealability/Film forming for Polar Solvent Fires) |
- |
24000 |
|
- |
| Clause No. 4.2, Sr. No. IV(b) of Table 2, Annex-M(Fire Extinction Time Polar Solvent Fire) |
- |
24000 |
|
- |
| Clause No. 4.2, Sr. No. IV(a) of Table 2, Annex-M(Fire Control Time for Polar Solvent Fire) |
- |
24000 |
|
- |
| Clause No. 4.2, Sr. No. IV(a) of Table 2, Annex-M(Fire Control Time for Polar Solvent Fire) |
- |
24000 |
|
- |
| Clause No. 4.2, Sr. No. III(d) of Table 2, Annex-K(Burn Back for Hydrocarbon Fires (Non Polar) with synthetic sea water) |
- |
30000 |
|
- |
| Clause No. 4.2, Sr. No. III(d) of Table 2, Annex-K(Burn Back for Hydrocarbon Fires (Non Polar) with synthetic sea water) |
- |
30000 |
|
- |
| Clause No. 4.2, Sr. No. III(c) of Table 2, Annex-K(Sealability/Film forming for Hydrocarbon Fires (Non Polar) with synthetic sea water) |
- |
30000 |
|
- |
| Clause No. 4.2, Sr. No. III(b) of Table 2, Annex-K(Fire Extinction Time for Hydrocarbon Fires (Non Polar) with synthetic sea water) |
- |
30000 |
|
- |
| Clause No. 4.2, Sr. No. III(b) of Table 2, Annex-K(Fire Extinction Time for Hydrocarbon Fires (Non Polar) with synthetic sea water) |
- |
30000 |
|
- |
| Clause No. 4.2, Sr. No. III(b) of Table 2, Annex-K(Fire Extinction Time for Hydrocarbon Fires (Non Polar) with synthetic sea water) |
- |
30000 |
|
- |
| Clause No. 4.2, Sr. No. III(a) of Table 2, Annex-K(Fire Control Time for Hydrocarbon Fires (Non Polar) with synthetic sea water) |
- |
30000 |
|
- |
| Clause No. 4.2, Sr. No. III(a) of Table 2, Annex-K(Fire Control Time for Hydrocarbon Fires (Non Polar) with synthetic sea water) |
- |
30000 |
|
- |
| Clause No. 4.2, Sr. No. III(d) of Table 2, Annex-K(Burn Back for Hydrocarbon Fires (Non Polar) with potable water) |
- |
30000 |
|
- |
| Clause No. 4.2, Sr. No. III(d) of Table 2, Annex-K(Burn Back for Hydrocarbon Fires (Non Polar) with potable water) |
- |
30000 |
|
- |
| Clause No. 4.2, Sr. No. III(c) of Table 2, Annex-K(Sealability/Film forming for Hydrocarbon Fires (Non Polar) with potable water) |
- |
30000 |
|
- |
| Clause No. 4.2, Sr. No. III(b) of Table 2, Annex-K(Fire Extinction Time for Hydrocarbon Fires (Non Polar) with potable water) |
- |
30000 |
|
- |
| Clause No. 4.2, Sr. No. III(b) of Table 2, Annex-K(Fire Extinction Time for Hydrocarbon Fires (Non Polar) with potable water) |
- |
30000 |
|
- |
| Clause No. 4.2, Sr. No. III(b) of Table 2, Annex-K(Fire Extinction Time for Hydrocarbon Fires (Non Polar) with potable water) |
- |
30000 |
|
- |
| Clause No. 4.2, Sr. No. III(a) of Table 2, Annex-K(Fire Control Time for Hydrocarbon Fires (Non Polar) with potable water) |
- |
30000 |
|
- |
| Clause No. 4.2, Sr. No. III(a) of Table 2, Annex-K(Fire Control Time for Hydrocarbon Fires (Non Polar) with potable water) |
- |
30000 |
|
- |
| Clause No. 4.2, Sr. No. II of Table 2, Annex-J(25% Drainage Time) |
- |
1200 |
|
- |
| Clause No. 4.2, Sr. No. II of Table 2, Annex-J(25% Drainage Time) |
- |
1200 |
|
- |
| Clause No. 4.2, Sr. No. II of Table 2, Annex-J(25% Drainage Time) |
- |
1200 |
|
- |
| Clause No. 4.2, Sr. No. II of Table 2, Annex-J(25% Drainage Time) |
- |
1200 |
|
- |
| Clause No. 4.2, Sr. No. I of Table 2, Annex-J(Expansion) |
- |
1200 |
|
- |
| Clause No. 4.2, Sr. No. I of Table 2, Annex-J(Expansion) |
- |
1200 |
|
- |
| Clause No. 4.2, Sr. No. X of Table 1, Annex-G(Spreading Coefficient) |
- |
1200 |
|
- |
| Clause No. 4.2, Sr. No. X of Table 1, Annex-G(Spreading Coefficient) |
- |
1200 |
|
- |
| Clause No. 4.2, Sr. No. IX of Table 1, Annex-G(Surface Tension) |
- |
1200 |
|
- |
| Clause No. 4.2, Sr. No. VIII of Table 1, Annex-F(Sludge Content for Aged Sample) |
- |
600 |
|
- |
| Clause No. 4.2, Sr. No. VIII of Table 1, Annex-F(Sludge Content for Original Sample) |
- |
300 |
|
- |
| Clause No. 4.2, Sr. No. VIII of Table 1, Annex-F(Sludge Content for Original Sample) |
- |
300 |
|
- |
| Clause No. 4.2, Sr. No. VII of Table 1, Annex-E(Pour Point) |
- |
600 |
|
- |
| Clause No. 4.2, Sr. No. VI of Table 1, using viscosity meter see sl No. (iv) of table 2 of IS 1206 (Part 3)(Viscosity (Kinematic)) |
- |
600 |
|
- |
| Clause No. 4.2, Sr. No. VI of Table 1, using viscosity meter see sl No. (iv) of table 2 of IS 1206 (Part 3)(Viscosity (Kinematic)) |
- |
600 |
|
- |
| Clause No. 4.2, Sr. No. V of Table 1, Annex-D(Misciblity with synthetic sea water) |
- |
600 |
|
- |
| Clause No. 4.2, Sr. No. V of Table 1, Annex-D(Misciblity with distilled water) |
- |
600 |
|
- |
| Clause No. 4.2, Sr. No. IV of Table 1, Annex-C(Specific Gravity of aged sample) |
- |
600 |
|
- |
| Clause No. 4.2, Sr. No. IV of Table 1, Annex-C(Specific Gravity of original sample) |
- |
300 |
|
- |
| Clause No. 4.2, Sr. No. IV of Table 1, Annex-C(Specific Gravity of aged sample) |
- |
600 |
|
- |
| Clause No. 4.2, Sr. No. IV of Table 1, Annex-C(Specific Gravity of original sample) |
- |
300 |
|
- |
| Clause No. 4.2, Sr. No. IV of Table 1, Annex-C(Specific Gravity of aged sample) |
- |
600 |
|
- |
| Clause No. 4.2, Sr. No. IV of Table 1, Annex-C(Specific Gravity of original sample) |
- |
300 |
|
- |
| Clause No. 4.2, Sr. No. IV of Table 1, Annex-C(Specific Gravity of aged sample) |
- |
600 |
|
- |
| Clause No. 4.2, Sr. No. IV of Table 1, Annex-C(Specific Gravity of original sample) |
- |
300 |
|
- |
| Clause No. 4.2, Sr. No. III of Table 1, Annex-B(pH of aged sample) |
- |
600 |
|
- |
| Clause No. 4.2, Sr. No. III of Table 1, Annex-B(pH of original sample) |
- |
300 |
|
- |
| Clause No. 4.2, Sr. No. III of Table 1, Annex-B(pH of aged sample) |
- |
600 |
|
- |
| Clause No. 4.2, Sr. No. III of Table 1, Annex-B(pH of original sample) |
- |
300 |
|
- |
| Clause No. 4.2, Sr. No. II of Table 1, Annex-A-2(Freezing and thawing) |
- |
1800 |
|
- |
| Clause No. 4.2, Sr. No. I of Table 1, Annex-A-1(Visual Examination) |
- |
200 |
|
- |
| Clause No. 4.1(General observation regarding colour and odour) |
- |
0 |
|
- |
| Clause No. 4.1(General observation regarding colour and odour) |
- |
0 |
|
- |
| Cl no 4.1(4989:2018) |
- |
0 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (A-1)) |
- |
300 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (A-2)) |
- |
1800 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex B)) |
- |
900 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex B)) |
- |
900 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex C)) |
- |
900 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex C)) |
- |
900 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex C)) |
- |
900 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex D)) |
- |
600 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Using Viscocity meter See Sl no(iv)of Table 2of IS 1206 part 3)) |
- |
600 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex E)) |
- |
600 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex F)) |
- |
900 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex F)) |
- |
900 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex G)) |
- |
1200 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex G)) |
- |
1200 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex J)) |
- |
2400 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex J)) |
- |
2400 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex K)) |
- |
30000 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex K)) |
- |
30000 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex K)) |
- |
30000 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex M)) |
- |
24000 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex M)) |
- |
24000 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex M)) |
- |
24000 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex M)) |
- |
24000 |
|
- |
| Cl no 4.1(4989:2018) |
- |
0 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (A-1)) |
- |
200 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (A-2)) |
- |
1800 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex B)) |
- |
900 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex B)) |
- |
900 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex C)) |
- |
900 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex C)) |
- |
900 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex D)) |
- |
600 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Using Viscocity meter See Sl no(iv)of Table 2of IS 1206 part 3)) |
- |
600 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex E)) |
- |
600 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex F)) |
- |
900 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex F)) |
- |
900 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex G)) |
- |
1200 |
|
- |
| Cl no 4.2 Table no 1(4989:2018 (Annex G)) |
- |
1200 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex J)) |
- |
2400 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex J)) |
- |
2400 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex K)) |
- |
30000 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex K)) |
- |
30000 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex K)) |
- |
30000 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex K)) |
- |
30000 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex M)) |
- |
24000 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex M)) |
- |
24000 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex M)) |
- |
24000 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex M)) |
- |
24000 |
|
- |
| Cl. 4.1, Table 1, Sr. No. 4(Miscibility with distilled water) |
- |
600 |
|
- |
| Clause No. 4.2, Sr. No. VIII of Table 1, Annex-F(Sludge Content for Aged Sample) |
- |
600 |
|
- |
| Cl no 4.2 Table no 2(4989:2018 (Annex K)) |
- |
30000 |
|
- |
|
03 Mar, 2027 |
- - |
| 8849 |
Advance Firetec and Research Lab Pvt. Ltd
| 8176606
| IS 4308 (2019) |
Dry Chemical Powders for Fire Fighting — BC, ABC and D Types — Specification ( Third Revision ) |
All types of Dry Chemical Powder |
80400 View breakup
Rs 34,854.45/- for Type BC
Rs 44,240.925 for Type ABC
Rs 18,200/- for Type D
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| Clause 5 Table 1(i)(Main Chemical constituent-Sodium/Potassium
bicarbonate
) |
- |
1800 |
|
- |
| Clause 5 Table 1(iii)(Apparent density (Declared value by
the manufacturer)) |
- |
600 |
|
- |
| Clause 5 Table 1(iv)(Particle size / sieve analysis (Declared value by
the manufacturer)) |
- |
600 |
|
- |
| Clause 5 Table 1(vi)(Water repellency) |
- |
1200 |
|
- |
| Clause 5 Table 1(vii)(Moisture content) |
- |
600 |
|
- |
| Clause 5 Table 1(viii)(Rate of flow) |
- |
600 |
|
- |
| Clause 5 Table 1(ix)(Foam compatibility (required if declared by the manufacturer)) |
- |
5000 |
|
- |
| Clause 5 Table 1(x)(Fire test) |
- |
37000 |
|
55B - RS 37000 |
| Clause 5 Table 1(xi)(Temperature resistance test) |
- |
1800 |
|
- |
| Clause 5 Table 1(xii)(colour) |
- |
200 |
|
- |
| Clause 5 Table 1(i)(Main chemical constituent-(Monoammonuim
phosphate)) |
- |
2400 |
|
- |
| Clause 5 Table 1(iii)(Apparent density (Declared value by
the manufacturer)) |
- |
600 |
|
- |
| Clause 5 Table 1(iv)(Particle size / sieve analysis (Declared value by
the manufacturer)) |
- |
600 |
|
- |
| Clause 5 Table 1(vi)(Water repellency) |
- |
1200 |
|
- |
| Clause 5 Table 1(vii)(Moisture content) |
- |
600 |
|
- |
| Clause 5 Table 1(viii)(Rate of flow) |
- |
600 |
|
- |
| Clause 5 Table 1(ix)(Foam compatibility (required if declared by the manufacturer)) |
- |
5000 |
|
- |
| Clause 5 Table 1(x)(Fire test) |
- |
53000 |
|
2A - RS 16000, 55B-RS 37000 |
| Clause 5 Table 1(xi)(Temperature resistance test) |
- |
1800 |
|
- |
| Clause 5 Table 1(xii)(colour) |
- |
200 |
|
- |
| Clause 5 Table 1(i)(Main chemical constituent(Eutectic mixture of
chlorides of sodium,
potassium and barium)) |
- |
800 |
|
- |
| Clause 5 Table 1(iii)(Apparent density (Declared value by
the manufacturer)) |
- |
600 |
|
- |
| Clause 5 Table 1(iv)(Particle size / sieve analysis (Declared value by
the manufacturer)) |
- |
600 |
|
- |
| Clause 5 Table 1(vi)(Water repellency) |
- |
1200 |
|
- |
| Clause 5 Table 1(vii)(Moisture content) |
- |
600 |
|
- |
| Clause 5 Table 1(viii)(Rate of flow) |
- |
600 |
|
- |
| Clause 5 Table 1(x)(Fire test) |
- |
10000 |
|
D Class - RS 10000 |
| Clause 5 Table 1(xi)(Temperature resistance test) |
- |
1800 |
|
- |
| Clause 5 Table 1(xii)(colour) |
- |
200 |
|
- |
| Clause No. 5, Sr. No. XII of Table 1(Colour of 'D' Powder) |
- |
200 |
|
- |
| Clause No. 5, Sr. No. XII of Table 1(Colour of 'BC' Powder) |
- |
200 |
|
- |
| Clause No. 5, Sr. No. XII of Table 1(Colour of 'ABC' Powder) |
- |
200 |
|
- |
| Clause No. 5, Sr. No. XI of Table 1, Annex-K(Temperature Resistance Test) |
- |
1800 |
|
- |
| Clause No. 5, Sr. No. X of Table 1, Annex-J(Fire test for Class 'D') |
- |
10000 |
|
- |
| Clause No. 5, Sr. No. X of Table 1, Annex-J(Fire test for Class 'B') |
- |
37000 |
|
- |
| Clause No. 5, Sr. No. X of Table 1, Annex-J(Fire test for Class 'A') |
- |
16000 |
|
- |
| Clause No. 5, Sr. No. IX of Table 1, Annex-H(Foam Compatibility) |
- |
5000 |
|
- |
| Clause No. 5, Sr. No. VIII of Table 1, Annex-G(Rate of flow/ Free flowing Characteristic for Class D Powder) |
- |
600 |
|
- |
| Clause No. 5, Sr. No. VIII of Table 1, Annex-G(Rate of flow/ Free flowing Characteristic) |
- |
600 |
|
- |
| Clause No. 5, Sr. No. VII of Table 1, Annex-F(Moisture Content) |
- |
600 |
|
- |
| Clause No. 5, Sr. No. VI of Table 1, Annex-E(Water Repellency) |
- |
1200 |
|
- |
| Clause No. 5, Sr. No. V of Table 1, Annex-D(Hygroscopicity) |
- |
1800 |
|
- |
| Clause No. 5, Sr. No. IV of Table 1, Annex-C(Particle Size/ Sieve Analysis) |
- |
600 |
|
- |
| Clause No. 5, Sr. No. III of Table 1, Annex-B(Aparent Denisty) |
- |
600 |
|
- |
| Clause No. 5, Sr. No. II of Table 1, Annex-A(Minimum Main Chemical Constituent for D Powder) |
- |
800 |
|
- |
| Clause No. 5, Sr. No. II of Table 1, Annex-A(Minimum Main Chemical Constituent for BC Powder) |
- |
1800 |
|
- |
| Clause No. 5, Sr. No. II of Table 1, Annex-A(Minimum Main Chemical Constituent for ABC Powder) |
- |
2400 |
|
- |
| Clause No. 5, Sr. No. I of Table 1, Annex-A(Main Chemical Constituent for D Powder) |
- |
800 |
|
- |
| Clause No. 5, Sr. No. I of Table 1, Annex-A(Main Chemical Constituent for BC Powder) |
- |
1800 |
|
- |
| Clause No. 5, Sr. No. I of Table 1, Annex-A(Main Chemical Constituent of ABC Powder) |
- |
2400 |
|
- |
| Clause 5 Table 1(iv)(Particle size / sieve analysis (Declared value by the manufacturer)) |
- |
600 |
|
- |
| Clause 5 Table 1(i)(Minimum main chemical constituent) |
- |
2400 |
|
ABC -RS 2400, BC - RS 1800, D - RS 800 |
| Clause 5 Table 1(iii)(Apparent density (Declared value by the manufacturer)) |
- |
600 |
|
- |
| Clause 5 Table 1(v)(Hygroscopicity) |
- |
1800 |
|
- |
| Clause 5 Table 1(vi)(Water repellency) |
- |
1200 |
|
- |
| Clause 5 Table 1(vii)(Moisture Content) |
- |
600 |
|
- |
| Clause 5 Table 1(xii)(Colour) |
- |
200 |
|
- |
|
03 Mar, 2027 |
- - |
| 8850 |
Bharat Test House Pvt Ltd 1474 Sonipat Haryana
| 9135626
| IS 8144 (2018) |
Multipurpose dry batteries - Specification (Second Revision) |
Multipurpose Dry Batteries |
18250 View breakup
-
| Clause No. |
Exclusion |
Testing Charges (Excl. Of Taxes) |
Effective Date |
Remark |
| 4(Designation Of Cells and Batteries, IS 8144) |
- |
250 |
|
- |
| 5(Dimensions, IS 8144) |
- |
500 |
|
- |
| 5(Dimensions, IS 8144) |
- |
500 |
|
- |
| 6.1(Terminals, IS 8144) |
- |
250 |
|
- |
| 6.2(Terminals, IS 8144) |
- |
250 |
|
- |
| 7.1(Requirements, IS 8144) |
- |
0 |
|
- |
| 7.2(Requirements, IS 8144) |
- |
0 |
|
- |
| 7.3(Requirements, IS 8144) |
- |
0 |
|
- |
| 8.1(Marking- Cl. 4.1.6, IS 6303) |
- |
250 |
|
- |
| 8.1(Marking- Cl. 4.1.6, IS 6303) |
- |
250 |
|
- |
| 8.1(Marking- Cl. 4.1.6, IS 6303) |
- |
250 |
|
- |
| 8.1(Marking- Cl. 4.1.6, IS 6303) |
- |
250 |
|
- |
| 8.1(Marking- Cl. 4.1.6, IS 6303) |
- |
250 |
|
- |
| 8.1(Marking- Cl. 4.1.6, IS 6303) |
- |
250 |
|
- |
| 8.1(Marking- Cl. 4.1.6, IS 6303) |
- |
250 |
|
- |
| 8.2(Marking, IS 8144) |
- |
250 |
|
- |
| 9.4(Initial Life Test, IS 8144) |
- |
4000 |
|
- |
| 9.4(Initial Life Test (Flash light), IS 8144) |
- |
4000 |
|
- |
| 9.4(Initial Life Test (Digital audio), IS 8144) |
- |
4000 |
|
- |
| 9.4(Initial Life Test (Radio/clock), IS 8144) |
- |
4000 |
|
- |
| 9.4(Initial Life Test (Remote control), IS 8144) |
- |
4000 |
|
- |
| 9.4(Initial Life Test (Motor/toy), IS 8144) |
- |
4000 |
|
- |
| 9.4(Initial Life Test (Tape recorder), IS 8144) |
- |
4000 |
|
- |
| 9.4(Initial Life Test (Pulse test), IS 8144) |
- |
4000 |
|
- |
| 9.4(Initial Life Test (Portable lighting), IS 8144) |
- |
4000 |
|
- |
| 9.4(Initial Life Test (Accelerated/ lot acceptance test), IS 8144) |
- |
4000 |
|
- |
| 9.4(Initial Life Test, IS 8144) |
- |
4000 |
|
- |
| 9.5(Delayed Life Test, IS 8144) |
- |
5000 |
|
- |
| 9.5(Delayed Life Test, IS 8144) |
- |
5000 |
|
- |
| 9.6(Leakage Test, IS 8144) |
- |
3000 |
|
- |
| 9.7(Delayed life test under dry heat conditions, IS 8144) |
- |
5000 |
|
- |
| 9.7(Delayed life test under dry heat conditions, IS 8144) |
- |
5000 |
|
- |
|
19 Mar, 2026 |
- - |