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IEC TS 62282-7-1 - FUEL CELL TECHNOLOGIES - PART 7-1: TEST METHODS - SINGLE CELL PERFORMANCE TESTS FOR POLYMER ELECTROLYTE FUEL CELLS (PEFC) - EDITION 2.0 Organization: IEC
Date: 2017-01-01
Description: This document is used for evaluating: the performance of membrane electrode assemblies (MEAs) for PEFCs in a single cell configuration; materials or structures of PEFCs in a single cell configuration; or, the influence of impurities in fuel and/or in air on the fuel cell performance.
DS/EN 62282-3-201 - FUEL CELL TECHNOLOGIES - PART 3-201: STATIONARY FUEL CELL POWER SYSTEMS - PERFORMANCE TEST METHODS FOR SMALL FUEL CELL POWER SYSTEMS Organization: DS
Date: 2013-09-13
Description: IEC 62282-3-201:2013 provides test methods for the electric/thermal and environmental performance of small stationary fuel cell power systems that meet the following criteria: - output: nominal electric power output of less than 10 kW; - output mode: grid-connected/independent operation or stand-alone operation with single-phase AC output or 3-phase AC output not exceeding 1 000 V, or DC output not exceeding 1 500 V; - operating pressure: maximum allowable working pressure of less than 0,1 MPa (gauge) for the fuel and oxidant passages; - fuel: gaseous fuel or liquid fuel; - oxidant: air.
DSF/FPREN 62282-3-201 - FUEL CELL TECHNOLOGIES - PART 3-201: STATIONARY FUEL CELL POWER SYSTEMS - PERFORMANCE TEST METHODS FOR SMALL FUEL CELL POWER SYSTEMS Organization: DS
Description: No routine tests are required or identified, and no performance targets are set in this standard. This standard covers fuel cell power systems whose primary purpose is the production of electric power and whose secondary purpose may be the utilization of heat.
IEC 62282-3-201 - FUEL CELL TECHNOLOGIES – PART 3-201: STATIONARY FUEL CELL POWER SYSTEMS – PERFORMANCE TEST METHODS FOR SMALL FUEL CELL POWER SYSTEMS - EDITION 1.0 Organization: IEC
Date: 2013-07-01
Description: • operating pressure: maximum allowable working pressure of less than 0,1 MPa (gauge) for the fuel and oxidant passages; • fuel: gaseous fuel (natural gas, liquefied petroleum gas, propane, butane, hydrogen, etc.) or liquid fuel (kerosene, methanol, etc.); • oxidant: air. This standard covers fuel cell power systems whose primary purpose is the production of electric power and whose secondary purpose may be the utilization of by-product heat.
CENELEC - EN 62282-3-201 - FUEL CELL TECHNOLOGIES - PART 3-201: STATIONARY FUEL CELL POWER SYSTEMS - PERFORMANCE TEST METHODS FOR SMALL FUEL CELL POWER SYSTEMS Organization: CENELEC
Date: 2013-09-01
Description: • operating pressure: maximum allowable working pressure of less than 0,1 MPa (gauge) for the fuel and oxidant passages; • fuel: gaseous fuel (natural gas, liquefied petroleum gas, propane, butane, hydrogen, etc.) or liquid fuel (kerosene, methanol, etc.); • oxidant: air. This standard covers fuel cell power systems whose primary purpose is the production of electric power and whose secondary purpose may be the utilization of by-product heat.
CEI EN 62282-3-201 - FUEL CELL TECHNOLOGIES PART 3-201: STATIONARY FUEL CELL POWER SYSTEMS - PERFORMANCE TEST METHODS FOR SMALL FUEL CELL POWER SYSTEMS Organization: CEI
Date: 2014-04-01
Description: This standard covers fuel cell power systems whose primary purpose is the production of electric power and whose secondary purpose may be the utilization of by-product heat. Accordingly, fuel cell power systems for which the use of heat is primary and the use of by-product electric power is secondary are outside the scope of this standard.
DS/IEC TS 62282-7-2 - FUEL CELL TECHNOLOGIES - PART 7-2: TEST METHODS - SINGLE CELL AND STACK PERFORMANCE TESTS FOR SOLID OXIDE FUEL CELLS (SOFC) Organization: DS
Date: 2014-06-02
Description: This technical specification is not applicable to small button cells that are designed for SOFC material testing and provide no practical means of fuel utilization measurement.
IEC TS 62282-7-2 - FUEL CELL TECHNOLOGIES – PART 7-2: TEST METHODS – SINGLE CELL AND STACK PERFORMANCE TESTS FOR SOLID OXIDE FUEL CELLS (SOFC) - EDITION 1.0 Organization: IEC
Date: 2014-05-01
Description: This technical specification is not applicable to small button cells that are designed for SOFC material testing and provide no practical means of fuel utilization measurement.
CEI EN 62282-3-200 - FUEL CELL TECHNOLOGIES PART 3-200: STATIONARY FUEL CELL POWER SYSTEMS - PERFORMANCE TEST METHODS Organization: CEI
Date: 2012-07-01
Description: This part of IEC 62282 covers operational and environmental aspects of the stationary fuel cell power systems performance. The test methods apply as follows: – power output under specified operating and transient conditions; – electric and thermal efficiency under specified operating conditions; – environmental characteristics; for example, gas emissions, noise, etc. under specified operating and transient conditions.
DS/EN 62282-6-200 - FUEL CELL TECHNOLOGIES - PART 6-200: MICRO FUEL CELL POWER SYSTEMS - PERFORMANCE TEST METHODS Organization: DS
Date: 2013-03-13
Description: IEC 62282-6-200:2012 provides test methods which are required for the performance evaluation of micro fuel cell power systems for laptop computers, mobile phones, personal digital assistants, cordless home appliances, TV broadcast cameras, autonomous robots, etc.
DS/EN 62282-3-2 - FUEL CELL TECHNOLOGIES - PART 3-2: STATIONARY FUEL CELL POWER SYSTEMS - PERFORMANCE TEST METHODS Organization: DS
Date: 2006-08-28
Description: This part of IEC 62282 covers operational and environmental aspects of the stationary fuel cell power systems performance. The test methods apply as follows: - power output under specified operating and transient conditions; - electrical and thermal efficiency under specified operating conditions; - environmental characteristics; for example, gas emissions, noise, etc. under specified operating and transient conditions.
IEC 62282-3-2 - FUEL CELL TECHNOLOGIES – PART 3-2: STATIONARY FUEL CELL POWER SYSTEMS – PERFORMANCE TEST METHODS - EDITION 1.0 Organization: IEC
Date: 2006-03-01
Description: This part of IEC 62282 covers operational and environmental aspects of the stationary fuel cell power systems performance. The test methods apply as follows: – power output under specified operating and transient conditions; – electrical and thermal efficiency under specified operating conditions; – environmental characteristics; for example, gas emissions, noise, etc. under specified operating and transient conditions.
DSF/FPREN 62282-6-200 - FUEL CELL TECHNOLOGIES - PART 6-200: MICRO FUEL CELL POWER SYSTEMS - PERFORMANCE TEST METHODS Organization: DS
Description: This part of IEC 62282 provides test methods which are required for the performance evaluation of micro fuel cell power systems for laptop computers, mobile phones, personal digital assistants (PDAs), cordless home appliances, TV broadcast cameras, autonomous robots, etc.
DSF/FPREN 62282-3-200 - FUEL CELL TECHNOLOGIES - PART 3-200: STATIONARY FUEL CELL POWER SYSTEMS - PERFORMANCE TEST METHODS Organization: DS
Description: This part of IEC 62282 covers operational and environmental aspects of the stationary fuel cell power systems performance. The test methods apply as follows: - power output under specified operating and transient conditions; - electric and thermal efficiency under specified operating conditions; - environmental characteristics; for example, exhaust gas emissions, noise, etc. under specified operating and transient conditions.
DSF/FPREN 62282-3-200 - FUEL CELL TECHNOLOGIES - PART 3-200: STATIONARY FUEL CELL POWER SYSTEMS - PERFORMANCE TEST METHODS Organization: DS
Description: This part of IEC 62282 covers operational and environmental aspects of the stationary fuel cell power systems performance. The test methods apply as follows: - power output under specified operating and transient conditions; - electric and thermal efficiency under specified operating conditions; - environmental characteristics; for example, exhaust gas emissions, noise, etc. under specified operating and transient conditions.
IEC 62282-6-200 - FUEL CELL TECHNOLOGIES - PART 6-200: MICRO FUEL CELL POWER SYSTEMS - PERFORMANCE TEST METHODS - EDITION 3.0 Organization: IEC
Date: 2016-09-01
Description: This part of IEC 62282 specifies test methods for the performance evaluation of micro fuel cell power systems for laptop computers, mobile phones, personal digital assistants (PDAs), cordless home appliances, TV broadcast cameras, autonomous robots, etc.
CENELEC - EN 62282-6-200 - FUEL CELL TECHNOLOGIES - PART 6-200: MICRO FUEL CELL POWER SYSTEMS - PERFORMANCE TEST METHODS Organization: CENELEC
Date: 2017-01-01
Description: This part of IEC 62282 specifies test methods for the performance evaluation of micro fuel cell power systems for laptop computers, mobile phones, personal digital assistants (PDAs), cordless home appliances, TV broadcast cameras, autonomous robots, etc.
CEI EN 62282-6-200 - FUEL CELL TECHNOLOGIES PART 6-200: MICRO FUEL CELL POWER SYSTEMS - PERFORMANCE TEST METHODS Organization: CEI
Date: 2013-03-01
Description: This part of IEC 62282 provides test methods which are required for the performance evaluation of micro fuel cell power systems for laptop computers, mobile phones, personal digital assistants (PDAs), cordless home appliances, TV broadcast cameras, autonomous robots, etc.
IEC 62282-3-200 - FUEL CELL TECHNOLOGIES – PART 3-200: STATIONARY FUEL CELL POWER SYSTEMS – PERFORMANCE TEST METHODS - EDITION 2.0 Organization: IEC
Date: 2015-11-01
Description: This part of IEC 62282 covers operational and environmental aspects of the stationary fuel cell power systems performance. The test methods apply as follows: – power output under specified operating and transient conditions; – electrical and heat recovery efficiency under specified operating conditions; – environmental characteristics; for example, exhaust gas emissions, noise, etc. under specified operating and transient conditions.
CENELEC - EN 62282-3-200 - FUEL CELL TECHNOLOGIES - PART 3-200: STATIONARY FUEL CELL POWER SYSTEMS - PERFORMANCE TEST METHODS Organization: CENELEC
Date: 2016-03-01
Description: This part of IEC 62282 covers operational and environmental aspects of the stationary fuel cell power systems performance. The test methods apply as follows: – power output under specified operating and transient conditions; – electrical and heat recovery efficiency under specified operating conditions; – environmental characteristics; for example, exhaust gas emissions, noise, etc. under specified operating and transient conditions.

1 - 20 of 196 results