Lattice Semiconductor_ISPGDX160VA-3B208

Lattice Semiconductor
ISPGDX160VA-3B208  
Encoders, Decoders, Multiplexers & Demultiplexers

ISPGDX160VA-3B208
743-ISPGDX160VA-3B208
Ersa
Lattice Semiconductor-ISPGDX160VA-3B208-datasheets-895208.pdf
IC ISP CROSSPOINT 160IO 208FBGA
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ISPGDX160VA-3B208 Description

ISPGDX160VA-3B208 Description

The ISPGDX160VA-3B208 is a high-performance, 160 x 160 crosspoint switch from Lattice Semiconductor, designed for applications requiring efficient signal routing and switching. This device is part of the ispGDX® series, known for its advanced features and robust performance. The ISPGDX160VA-3B208 operates within a temperature range of 0°C to 70°C (TA) and is powered by a single supply voltage of 3V to 3.6V. It features a surface mount package with a 208-pin FBGA configuration, making it suitable for compact and high-density designs.

ISPGDX160VA-3B208 Features

  • High-Density Crosspoint Switch: The ISPGDX160VA-3B208 offers a 160 x 160 crosspoint matrix, providing extensive flexibility in signal routing and switching.
  • Single Supply Operation: The device operates from a single supply voltage range of 3V to 3.6V, simplifying power management and reducing design complexity.
  • Surface Mount Packaging: The 208-pin FBGA package is ideal for surface mount applications, ensuring high reliability and ease of integration into modern electronic systems.
  • High Current Capability: The ISPGDX160VA-3B208 supports output currents of 12mA for high and 24mA for low states, making it suitable for driving various types of loads.
  • Moisture Sensitivity Level: With an MSL rating of 3 (168 hours), the device is well-suited for environments with varying humidity levels.
  • Compliance and Standards: The ISPGDX160VA-3B208 is REACH unaffected and classified under HTSUS code 8542.39.0001, ensuring compliance with international regulations.
  • ECCN Classification: The device is classified under ECCN 3A991D, indicating its suitability for a wide range of applications while adhering to export control regulations.

ISPGDX160VA-3B208 Applications

The ISPGDX160VA-3B208 is ideal for applications requiring high-density signal routing and switching, such as:

  • Telecommunications: For switching and routing signals in communication systems, including base stations and network equipment.
  • Data Centers: Efficiently managing and routing data signals in high-density server environments.
  • Industrial Automation: Controlling and routing signals in complex industrial systems, ensuring reliable and efficient operation.
  • Medical Equipment: Routing signals in medical imaging and diagnostic devices, where precision and reliability are critical.
  • Consumer Electronics: Enabling flexible signal routing in devices such as high-end gaming consoles and multimedia systems.

Conclusion of ISPGDX160VA-3B208

The ISPGDX160VA-3B208 from Lattice Semiconductor is a versatile and high-performance crosspoint switch designed to meet the demanding requirements of modern electronic systems. Its 160 x 160 crosspoint matrix, single supply operation, and surface mount packaging make it an ideal choice for applications requiring efficient signal routing and switching. The device's compliance with international standards and its robust performance characteristics ensure reliability and ease of integration. While the ISPGDX160VA-3B208 is now considered obsolete, it remains a valuable component for existing designs and legacy systems, offering unique advantages over similar models in terms of density, flexibility, and reliability.

Tech Specifications

Operating Temperature
ECCN
Independent Circuits
Circuit
Mounting Type
Voltage Supply Source
Product Status
Supplier Device Package
Series
Type
Package / Case
Voltage - Supply
REACH Status
Mfr
HTSUS
Package
RoHS Status
Base Product Number
Current - Output High, Low
Moisture Sensitivity Level (MSL)

ISPGDX160VA-3B208 Documents

Download datasheets and manufacturer documentation for ISPGDX160VA-3B208

Ersa ispGDX160V,VA      
Ersa All Dev Pkg Mark Chg 12/Nov/2018      
Ersa Tin/Lead Devices 23/Jun/2015      
Ersa Top Mark Format Change 20/Dec/2023      

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