GB/T 24366-2024 in English
VALIDTechnical requirements of optoelectronic detector module for communication
- Issued on:2024-09-29
- Implemented on:2025-01-01
- File Format:PDF
- Delivery:Via email within 5 business days
$301.00
| Standard No: | GB/T 24366-2024 |
| Document status: | VALID |
| Title in English: | Technical requirements of optoelectronic detector module for communication |
| Title in Chinese: | 通信用光电探测器组件技术要求 |
| Language: | English |
| File Format: | Electronic (PDF) |
| Delivery: | Via email within 5 business days |
| Issued on: | 2024-09-29 |
| Implemented on: | 2025-01-01 |
| Superseding: |
GB/T 24366-2009 Technical requirements of optoelectronic detector module for communication
|
| ICS Classification: | 33.180.10-Fiber and cables |
| Chinese Classification: | M33-Optical communication equipment |
| Professional Classification: | GB-National Standard |
| Related Topics: | detector
light detection inorganic photodetector organic photodetector Optical rotation detector Photodetector Parameters organic photodetector Detector Detector Photodetector Index Photodetector Index Optical rotation detector Indicators for photodetectors Photoelectric components Measurement dimension photoelectric technology light detector Photodetector Index |
《GB/T 24366-2024通信用光电探测器组件技术要求》由TC485(全国通信标准化技术委员会)归口,主管部门为工业和信息化部(通信)。
Introduction
1. Standard Overview
GB/T 24366-2024 "Technical Requirements for Photoelectric Detector Components for Communications" replaces the old standard GB/T24366-2009. The main revisions include adding a number of key parameter definitions, updating the classification method and photoelectric characteristic indicators.
2. Comparison of Standard Frameworks
| Standard Version | Main Contents | Additions/Changes |
|---|---|---|
| GB/T24366—2009 | Basic Classification and Basic Technical Requirements | - |
| GB/T 24366—2024 | Added parameter definitions: sensitivity, minimum detectable optical power, etc.; the classification method was adjusted to be based on the type of optoelectronic chip; the extreme working conditions were updated | Tables 1 to 5 were added, and various technical indicators were specified in detail |
3. Analysis of Key Technical Requirements
3.1 Extreme Operating Conditions
Table 1 specifies the extreme operating parameters of the detector components in different environments, including temperature, humidity, optical power, etc. It is particularly noteworthy that:
- Storage temperature range: -40℃ to +85℃
- Input optical power limit: Depending on the chip type, the maximum value ranges from -∞ to +5.5dBm
- Electrostatic discharge threshold: 100V for PIN type components and 300V for other types
3.2 Comparison of Photoelectric Characteristics
| Detector component type | Key parameters | Typical values |
|---|---|---|
| PIN+TIA type | Sensitivity (S) | -34dBm to -11.8dBm |
| APD+TIA type | Photomultiplier factor (M) | 3 to 15 |
| PIN type | Current responsivity (R) | 0.4A/W to 0.8A/W |
3.3 Environmental compliance requirements
Table 6 specifies the content limits of restricted substances in detector components, including heavy metals, organic brominated substances and phthalates, all of which shall not exceed 0.1%. This is to meet the requirements of the RoHS directive and improve the environmental performance of the product.
4. Implementation suggestions
- Design stage:Strictly select components and match parameters in accordance with the standards to ensure compliance with various technical indicators. Pay special attention to stability testing under extreme working conditions.
- Production process: Establish a complete quality control system, focusing on monitoring key parameters such as dark current and optical return loss. It is recommended to use automated testing equipment to improve efficiency.
- Test verification: Refer to GB/T24365—2009 standard for test method selection. For new components such as PIN+TIA+SOA type, it is necessary to focus on verifying its spectral response range and receiving bandwidth.
- Environmental assessment: Establish a material traceability system to ensure that all homogeneous materials meet the content requirements of restricted substances specified in Table 6. It is recommended to conduct regular third-party testing and certification.

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