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NLSV1T34AMUTCG
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NLSV1T34AMUTCG Description
NLSV1T34AMUTCG Description
The NLSV1T34AMUTCG is a unidirectional translator IC from onsemi, designed to provide reliable signal conversion in various electronic systems. With a 1-bit per element configuration, this device offers efficient signal translation in a compact 6UDFN package. The NLSV1T34AMUTCG is specifically designed to operate within a wide voltage supply range of 0.9V to 4.5V, making it suitable for low-power applications. The device is also compliant with the RoHS3 directive, ensuring environmental responsibility in manufacturing.
NLSV1T34AMUTCG Features
- Voltage - Supply: 0.9V ~ 4.5V, providing flexibility for low-power applications.
- Current - Output High, Low: 24mA each, ensuring consistent signal strength.
- Mounting Type: Surface Mount, facilitating easy integration into PCB designs.
- Package: Tape & Reel (TR), optimizing for automated assembly processes.
- REACH Status: REACH Unaffected, adhering to European chemical safety regulations.
- ECCN: EAR99, indicating export control classification.
- HTSUS: 8542.39.0001, for international trade classification.
- Moisture Sensitivity Level (MSL): 1 (Unlimited), ensuring reliability in various environmental conditions.
- Base Product Number: NLSV1T34, indicating the core functionality of the device.
NLSV1T34AMUTCG Applications
The NLSV1T34AMUTCG is ideal for applications requiring signal translation between different voltage levels, such as:
- Automotive Electronics: For translating signals in sensor interfaces and control units.
- Industrial Control Systems: In systems where signal integrity across different voltage domains is crucial.
- Telecommunications: For signal conversion in data transmission equipment.
Conclusion of NLSV1T34AMUTCG
Despite being classified as obsolete, the NLSV1T34AMUTCG remains a robust solution for legacy systems or applications where its specific features are required. Its wide voltage range, consistent output current, and surface mount packaging make it suitable for a variety of electronic designs. While it may not be the latest in technology, its compliance with environmental standards and reliable performance make it a worthy consideration for specific use cases where its unique attributes are beneficial.



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