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LM285D-1.2
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LM285D-1.2 Description
LM285D-1.2 Description
The LM285D-1.2 is a fixed-output voltage reference from onsemi, designed for precision applications requiring a stable and reliable voltage reference. With a fixed output voltage of 1.235V, this device offers a low noise output of 60µVrms over the frequency range of 10Hz to 10kHz, ensuring high accuracy and stability in various electronic systems. The LM285D-1.2 features a typical temperature coefficient of 80ppm/°C, providing excellent temperature stability and performance across a wide range of operating temperatures.
LM285D-1.2 Features
- Fixed output voltage of 1.235V
- Low noise output of 60µVrms (10Hz to 10kHz)
- Typical temperature coefficient of 80ppm/°C
- Output current of 20 mA
- Cathode current of 20 µA
- Tolerance of ±1%
- Moisture Sensitivity Level (MSL) of 1 (Unlimited)
- Surface mount packaging in an 8SOIC tube
- REACH Unaffected status
- EAR99 ECCN and HTSUS 8542.39.0001 classifications
LM285D-1.2 Applications
The LM285D-1.2 is ideal for a variety of precision electronic applications where a stable and reliable voltage reference is required. Some specific use cases include:
- Analog-to-digital converters (ADCs) and digital-to-analog converters (DACs) for accurate voltage level shifting and reference generation.
- Precision measurement and control systems, such as temperature sensors, pressure sensors, and flow meters, where accurate voltage references are critical for reliable operation.
- Data acquisition systems and, where stable voltage references are needed for accurate signal conditioning and processing.
- Power management circuits, where precise voltage references are required for voltage regulation and monitoring.
Conclusion of LM285D-1.2
The LM285D-1.2 is a reliable and accurate fixed-output voltage reference from onsemi, offering low noise, excellent temperature stability, and high output current capabilities. Its unique features and advantages make it an ideal choice for a wide range of precision electronic applications, including ADCs, DACs, sensors, and. Although the product is now obsolete, its performance and reliability make it a valuable component for existing designs and systems that require a stable and precise voltage reference.



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