
GB 19043-2003 Energy efficiency limits and energy efficiency grades for double-capped fluorescent lamps for general lighting
time:
2024-08-05 21:14:31
- GB 19043-2003
- in force
Standard ID:
GB 19043-2003
Standard Name:
Energy efficiency limits and energy efficiency grades for double-capped fluorescent lamps for general lighting
Chinese Name:
普通照明用双端荧光灯能效限定值及能效等级
Standard category:
National Standard (GB)
-
Date of Release:
2003-03-01 -
Date of Implementation:
2003-09-01
Standard ICS number:
Energy and Heat Transfer Engineering >> 27.010 Energy and Heat Transfer Engineering ComprehensiveChina Standard Classification Number:
Energy, Nuclear Technology>>Energy, Nuclear Technology Comprehensive>>F01 Technology Management
publishing house:
China Standards PressISBN:
155066.1-19567Publication date:
2003-09-01
Release date:
2003-03-17Review date:
2004-10-14Drafting Organization:
China Standards Research CenterFocal point Organization:
National Energy Basics and Management Standardization Technical CommitteeProposing Organization:
State Economic and Trade Commission, State Administration of StandardizationPublishing Department:
General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of ChinaCompetent Authority:
National Standardization Administration

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Summary:
This standard specifies the energy efficiency grade, energy efficiency limit value, energy saving evaluation value, target energy efficiency limit value, test method and inspection rules for double-capped fluorescent lamps for general lighting. This standard is applicable to preheated cathode double-capped fluorescent lamps with AC power frequency starter and preheated cathode double-capped fluorescent lamps with high frequency operation with nominal power in the range of 14W-65W. GB 19043-2003 Energy efficiency limit value and energy efficiency grade of double-capped fluorescent lamps for general lighting GB19043-2003 Standard download decompression password: www.bzxz.net

Some standard content:
This standard is mandatory in terms of clauses 4.3 and 4.5. The rest of the clauses are recommended. Clause 1.5 of this standard was implemented on May 1, 2005. This standard was issued by the National Economic and Trade Commission and the National Standardization Administration: This standard was issued by the National Energy Basics and Management Standardization Technical Committee Rational Electricity Use Subcommittee GA19043-2003
The main drafting units of this standard are: International Standard Research Center, Beijing Electric Source Research Institute, National Electric Light Source Quality Supervision and Inspection Center (Beijing), National Electric Light Source Quality Supervision and Safety Inspection Center (Shanghai), Nanjing Huadong Center, Beijing Matsushita Mingguang Light Co., Ltd., Jiangyang Sunshine Group Co., Ltd., National Planning Commission Energy Research Institute. The main drafters of this standard are Liu Shu, Li Aixian, Ya Suo Shi, Dao Wenning, Hua Shujiao, Qian Anhong, Zhao Qingjin, Chen Youhong, Yao, Hangjun, and Liu.
1 Scope
Energy efficiency limit values and energy efficiency grades of double-capped fluorescent lamps for general lighting
GB 190432003
This standard specifies the energy efficiency grades, energy efficiency values, energy efficiency evaluation levels, target energy efficiency limits, test methods and inspection rules of double-capped fluorescent lamps for general lighting (hereinafter referred to as double-capped fluorescent lamps). This standard is applicable to preheated double-capped fluorescent lamps with starters and preheated cathode-ray tube fluorescent lamps with high frequency operation and with a nominal power of 14W-65W. 2 Normative references
The clauses in the following documents become clauses of this standard through reference. For references with a date indicated, all subsequent amendments (excluding those related to errors) or revisions are not applicable to this standard. However, the parties who have reached an agreement on this standard are encouraged to study whether the latest versions of these documents can be used: For any referenced document without an imported version, the latest version applies to this standard. GB/T2825 Sampling table for reverse batch inspection by counting (applicable to inspection of consecutive batches) 13/T2821) Improvement of sampling procedure for periodic inspection by counting (applicable to control process stability) GB/T11682 Performance requirements for double-capped fluorescent lamps
3 Terms and definitions
In addition to the definitions in 13/T0532, this standard also uses the following terms and definitions. 3.1
Initial luminous efficiency of double-capped fluorescent lamps Parameter for evaluating the energy efficiency level of double-capped fluorescent lamps. The ratio of the initial luminous flux of double-capped fluorescent lamps to the actual efficiency, in lumens (lmw) wwW.bzxz.Net
Energy efficiency limit values for double-capped fluorescent lamps Mildened energy efficiency limit values for double-capped fluorescent lamps The minimum initial luminous efficiency value allowed for double-capped fluorescent lamps under standard thermal conditions: 3. 3
Energizing values for double-capped fluorescent lamps
Energy conservation values for double-capped fluorescent lamps lamps
The most general initial luminous efficacy of evaluating the energy saving level of double-ended fluorescent lamps, 4 Technical requirements
4.1 Requirements
The performance of the double-ended fluorescent lamps to which this standard applies shall comply with the requirements of (T/T1682). 4.2 Efficiency grade and luminous flux retention rate
4.2.1 Energy efficiency grade
The energy efficiency of double-ended fluorescent lamps is divided into 3 grades, with the highest energy efficiency grade. The initial luminous efficacy of each grade of fluorescent lamp shall be lower than the requirements of the table【,
GB19043-2003
Wind energy market
14 -2]
22·~35
36·~55
Table 1 Double-ended fluorescent lamp energy efficiency grade
Initial luminous intensity/:en/W)
Efficiency grade (color measurement: K:, RF)
Energy efficiency grade (color measurement: K:, RF)
Energy efficiency grade (color measurement: K:, RN, RDI
The table should also meet the requirements of CB/T1U633 chromaticity standard. Non-standard color lamps can be manufactured according to the requirements of the vehicle, but the target values of other color coordinates must be set at the same time, which should be within the range of 5SLXM. 4.2.2 Luminous flux maintenance rate
The luminous flux maintenance rate of double-ended yellow lamps of various energy efficiency levels shall comply with the relevant provisions of GB/T-9582 when burning at 2000b. 4.3 Energy efficiency determination Luminous flux maintenance rate
For double-ended yellow lamps with energy efficiency levels in Table 1, their luminous flux maintenance rate shall comply with the provisions of 4.2.2. 4.4 Energy saving evaluation value and luminous flux maintenance rate
The energy saving evaluation value of high efficiency double-ended fluorescent lamps (14W, 2:W, 2RW, 3≤W) shall be 1st level of energy efficiency level in Table 1, and the energy saving evaluation value of other double-ended fluorescent lamps shall be 2nd level of energy efficiency level in Table 1. The luminous flux maintenance rate shall comply with the provisions of 4.2.2. 4.5 Target energy efficiency rating and luminous flux maintenance The target energy efficiency rating of this lamp before implementation on August 1, 2005 is shown in Table 2. The luminous flux maintenance rate shall comply with the provisions of 4.2.2. Table 2 National energy efficiency rating of double-ended fluorescent lamps in 2005 Nominal power range 14~-21 22~·5 35~·5 5 Test method Test requirements Follow the requirements in GB/T10662. 5.2 Initial luminous efficacy Prepare light number/(im:W) Color: RE.R Measure the initial luminous flux of the lamp and the actual value according to the requirements in GB/T10682 and calculate the luminous efficacy. 5.3 Chromaticity coordinates
According to the provisions of GR/1068?, 5.4 Luminous flux maintenance rate
According to the provisions of n/T10682, 5 Inspection standards
6.1 Acceptance test
The manufacturer shall conduct a variable acceptance test on the energy efficiency limit of the double-capped fluorescent lamps produced by the enterprise. Products that fail the acceptance test shall not be allowed to leave the factory. The double-capped fluorescent lamp holders for acceptance test shall be randomly selected from each model of lamp produced by the manufacturer. The acceptance test shall be carried out in accordance with G/T282R, and the inspection items and inspection levels shall be in accordance with Table 3. Table 3 Acceptance test sampling plan, inspection level and qualified quality level test plan!
Initial light rescue
Initial test
Technical requirements
Trial method
Selection plan
Inspection sound level
AQI/36
The manufacturer shall conduct a close test on the double-effect light lamps produced by the enterprise, at least once every six months, and randomly select the test products from the lamps that have passed the delivery test: Routine tests should also be carried out when the following circumstances occur:) The product trial design and identification is returned;
When the production is resumed for more than one year,
When the change of process materials may affect its performance: d) When the technical supervision department proposes routine tests, routine tests shall be carried out in accordance with the GB/T282U discrimination level I/- sampling plan, and the test items shall be sampled and the quality level and the number of unqualified judgments shall be specified in Table 4.
Table 4 Routine test unqualified quality level, sampling quantity and judgment group test items date
Welcome to the light effect
Heart world acceptance
Light transmission matter
Technical requirements
Test method
¥Technology is too small
Tip: This standard content only shows part of the intercepted content of the complete standard. If you need the complete standard, please go to the top to download the complete standard document for free.
The main drafting units of this standard are: International Standard Research Center, Beijing Electric Source Research Institute, National Electric Light Source Quality Supervision and Inspection Center (Beijing), National Electric Light Source Quality Supervision and Safety Inspection Center (Shanghai), Nanjing Huadong Center, Beijing Matsushita Mingguang Light Co., Ltd., Jiangyang Sunshine Group Co., Ltd., National Planning Commission Energy Research Institute. The main drafters of this standard are Liu Shu, Li Aixian, Ya Suo Shi, Dao Wenning, Hua Shujiao, Qian Anhong, Zhao Qingjin, Chen Youhong, Yao, Hangjun, and Liu.
1 Scope
Energy efficiency limit values and energy efficiency grades of double-capped fluorescent lamps for general lighting
GB 190432003
This standard specifies the energy efficiency grades, energy efficiency values, energy efficiency evaluation levels, target energy efficiency limits, test methods and inspection rules of double-capped fluorescent lamps for general lighting (hereinafter referred to as double-capped fluorescent lamps). This standard is applicable to preheated double-capped fluorescent lamps with starters and preheated cathode-ray tube fluorescent lamps with high frequency operation and with a nominal power of 14W-65W. 2 Normative references
The clauses in the following documents become clauses of this standard through reference. For references with a date indicated, all subsequent amendments (excluding those related to errors) or revisions are not applicable to this standard. However, the parties who have reached an agreement on this standard are encouraged to study whether the latest versions of these documents can be used: For any referenced document without an imported version, the latest version applies to this standard. GB/T2825 Sampling table for reverse batch inspection by counting (applicable to inspection of consecutive batches) 13/T2821) Improvement of sampling procedure for periodic inspection by counting (applicable to control process stability) GB/T11682 Performance requirements for double-capped fluorescent lamps
3 Terms and definitions
In addition to the definitions in 13/T0532, this standard also uses the following terms and definitions. 3.1
Initial luminous efficiency of double-capped fluorescent lamps Parameter for evaluating the energy efficiency level of double-capped fluorescent lamps. The ratio of the initial luminous flux of double-capped fluorescent lamps to the actual efficiency, in lumens (lmw) wwW.bzxz.Net
Energy efficiency limit values for double-capped fluorescent lamps Mildened energy efficiency limit values for double-capped fluorescent lamps The minimum initial luminous efficiency value allowed for double-capped fluorescent lamps under standard thermal conditions: 3. 3
Energizing values for double-capped fluorescent lamps
Energy conservation values for double-capped fluorescent lamps lamps
The most general initial luminous efficacy of evaluating the energy saving level of double-ended fluorescent lamps, 4 Technical requirements
4.1 Requirements
The performance of the double-ended fluorescent lamps to which this standard applies shall comply with the requirements of (T/T1682). 4.2 Efficiency grade and luminous flux retention rate
4.2.1 Energy efficiency grade
The energy efficiency of double-ended fluorescent lamps is divided into 3 grades, with the highest energy efficiency grade. The initial luminous efficacy of each grade of fluorescent lamp shall be lower than the requirements of the table【,
GB19043-2003
Wind energy market
14 -2]
22·~35
36·~55
Table 1 Double-ended fluorescent lamp energy efficiency grade
Initial luminous intensity/:en/W)
Efficiency grade (color measurement: K:, RF)
Energy efficiency grade (color measurement: K:, RF)
Energy efficiency grade (color measurement: K:, RN, RDI
The table should also meet the requirements of CB/T1U633 chromaticity standard. Non-standard color lamps can be manufactured according to the requirements of the vehicle, but the target values of other color coordinates must be set at the same time, which should be within the range of 5SLXM. 4.2.2 Luminous flux maintenance rate
The luminous flux maintenance rate of double-ended yellow lamps of various energy efficiency levels shall comply with the relevant provisions of GB/T-9582 when burning at 2000b. 4.3 Energy efficiency determination Luminous flux maintenance rate
For double-ended yellow lamps with energy efficiency levels in Table 1, their luminous flux maintenance rate shall comply with the provisions of 4.2.2. 4.4 Energy saving evaluation value and luminous flux maintenance rate
The energy saving evaluation value of high efficiency double-ended fluorescent lamps (14W, 2:W, 2RW, 3≤W) shall be 1st level of energy efficiency level in Table 1, and the energy saving evaluation value of other double-ended fluorescent lamps shall be 2nd level of energy efficiency level in Table 1. The luminous flux maintenance rate shall comply with the provisions of 4.2.2. 4.5 Target energy efficiency rating and luminous flux maintenance The target energy efficiency rating of this lamp before implementation on August 1, 2005 is shown in Table 2. The luminous flux maintenance rate shall comply with the provisions of 4.2.2. Table 2 National energy efficiency rating of double-ended fluorescent lamps in 2005 Nominal power range 14~-21 22~·5 35~·5 5 Test method Test requirements Follow the requirements in GB/T10662. 5.2 Initial luminous efficacy Prepare light number/(im:W) Color: RE.R Measure the initial luminous flux of the lamp and the actual value according to the requirements in GB/T10682 and calculate the luminous efficacy. 5.3 Chromaticity coordinates
According to the provisions of GR/1068?, 5.4 Luminous flux maintenance rate
According to the provisions of n/T10682, 5 Inspection standards
6.1 Acceptance test
The manufacturer shall conduct a variable acceptance test on the energy efficiency limit of the double-capped fluorescent lamps produced by the enterprise. Products that fail the acceptance test shall not be allowed to leave the factory. The double-capped fluorescent lamp holders for acceptance test shall be randomly selected from each model of lamp produced by the manufacturer. The acceptance test shall be carried out in accordance with G/T282R, and the inspection items and inspection levels shall be in accordance with Table 3. Table 3 Acceptance test sampling plan, inspection level and qualified quality level test plan!
Initial light rescue
Initial test
Technical requirements
Trial method
Selection plan
Inspection sound level
AQI/36
The manufacturer shall conduct a close test on the double-effect light lamps produced by the enterprise, at least once every six months, and randomly select the test products from the lamps that have passed the delivery test: Routine tests should also be carried out when the following circumstances occur:) The product trial design and identification is returned;
When the production is resumed for more than one year,
When the change of process materials may affect its performance: d) When the technical supervision department proposes routine tests, routine tests shall be carried out in accordance with the GB/T282U discrimination level I/- sampling plan, and the test items shall be sampled and the quality level and the number of unqualified judgments shall be specified in Table 4.
Table 4 Routine test unqualified quality level, sampling quantity and judgment group test items date
Welcome to the light effect
Heart world acceptance
Light transmission matter
Technical requirements
Test method
¥Technology is too small
Tip: This standard content only shows part of the intercepted content of the complete standard. If you need the complete standard, please go to the top to download the complete standard document for free.
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