DS92LV1021AMSA/NOPB Description
The DS92LV1021AMSA/NOPB is a high-performance serializer integrated circuit (IC) designed by Texas Instruments. This 10-bit serializer is engineered to convert parallel data inputs into a high-speed serial data stream, facilitating efficient data transmission over long distances with minimal signal degradation. The DS92LV1021AMSA/NOPB operates with a data rate of up to 400Mbps, making it suitable for applications requiring high-speed data processing and transmission.
DS92LV1021AMSA/NOPB Features
- Input Type: The DS92LV1021AMSA/NOPB supports LVCMOS and LVTTL input types, providing flexibility in interfacing with various digital systems.
- Output Type: The serializer outputs data in LVDS format, which is known for its high-speed capability and noise immunity.
- ECCN: Classified under ECCN 5A991B1, this IC complies with export control regulations.
- Mounting Type: Surface mount technology (SMT) ensures ease of integration into modern PCB designs.
- Product Status: Although the DS92LV1021AMSA/NOPB is now obsolete, it remains a reliable choice for legacy systems and applications where its specific features are required.
- Number of Outputs: The serializer provides a single LVDS output, ideal for applications needing a compact and efficient solution.
- Function: The primary function of the DS92LV1021AMSA/NOPB is to serialize parallel data inputs, enhancing data transmission efficiency.
- Data Rate: With a maximum data rate of 400Mbps, this serializer is well-suited for high-speed data applications.
- Voltage - Supply: Operating within a supply voltage range of 3V to 3.6V, the DS92LV1021AMSA/NOPB ensures compatibility with a wide range of power supply configurations.
- REACH Status: The DS92LV1021AMSA/NOPB is REACH unaffected, ensuring compliance with environmental regulations.
- Number of Inputs: The serializer accepts 10 parallel inputs, making it suitable for applications requiring multiple data channels.
- Mfr: Manufactured by Texas Instruments, a leading semiconductor company known for its high-quality and reliable products.
- HTSUS: The DS92LV1021AMSA/NOPB is classified under HTSUS 8542.39.0001, facilitating accurate tariff classification.
- Package: The IC is packaged in a tube, ensuring safe handling and storage.
- RoHS Status: The DS92LV1021AMSA/NOPB is ROHS3 compliant, adhering to stringent environmental standards.
- Base Product Number: The base product number DS92LV1021 identifies this serializer within Texas Instruments' product lineup.
- Moisture Sensitivity Level (MSL): Rated at MSL 3 (168 Hours), the DS92LV1021AMSA/NOPB is suitable for standard manufacturing processes without requiring special handling for moisture sensitivity.
DS92LV1021AMSA/NOPB Applications
The DS92LV1021AMSA/NOPB is ideal for a variety of applications that require high-speed data serialization. Some specific use cases include:
- Telecommunications: In telecom systems, the serializer can efficiently transmit data over long distances with minimal signal loss.
- Industrial Automation: For industrial applications, the DS92LV1021AMSA/NOPB can handle multiple data channels, ensuring reliable data transmission in harsh environments.
- Medical Equipment: In medical devices, the serializer's high-speed capability and noise immunity make it suitable for applications requiring precise data handling.
- Consumer Electronics: The DS92LV1021AMSA/NOPB can be used in consumer electronics for applications such as high-speed data interfaces in monitors and displays.
Conclusion of DS92LV1021AMSA/NOPB
The DS92LV1021AMSA/NOPB is a versatile and reliable serializer IC from Texas Instruments, offering high-speed data transmission capabilities with minimal signal degradation. Its support for multiple input types and LVDS output ensures compatibility with a wide range of digital systems. Despite its obsolete status, the DS92LV1021AMSA/NOPB remains a valuable component for legacy systems and applications requiring its specific features. Its compliance with environmental regulations and industry standards further enhances its suitability for various applications in the electronics industry.