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MSM56V16160F-8TSK-7

Part No MSM56V16160F-8TSK-7
Manufacturer OKI/Metcal
Catalog SD
Description SD 1Mx16-8 PC100
Sample
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ECAD Module
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Categories Memory
Win Source Part Number 945205-MSM56V16160F-8TSK-7
Series *
Ultra Librarian 3D Model Ultra Librarian MSM56V16160F-8TSK-7 CAD Model

Description

The MSM56V16160F-8TSK-7 is a 16Mb Synchronous DRAM (SDRAM) manufactured by OKI/Metcal. It's designed for applications requiring high-speed data access. The component is organized as 4 banks x 256K x 16. The -8TSK-7 suffix likely refers to the speed grade, packaging, and potentially a specific revision or customer requirement.

Applications:

  • Embedded systems
  • Networking devices (routers, switches)
  • Graphics cards
  • Digital signal processors (DSPs)
  • Industrial control systems

Features:

  • 16Mb SDRAM Capacity
  • Organized as 4 banks x 256K x 16
  • Operating frequency up to 125MHz (estimated based on -8)
  • Single 3.3V Power Supply
  • LVTTL Compatible Inputs and Outputs
  • Self Refresh Mode for Low Power Consumption
  • Programmable Burst Length and Latency

Benefits:

  • High-speed data transfer for performance-critical applications
  • Low latency ensures quick memory access times
  • Energy efficient with self-refresh capability
  • Easy integration with existing systems due to LVTTL compatibility
  • Flexible memory operation through programmable burst options

Additional Details:

The MSM56V16160F-8TSK-7 SDRAM operates on a single 3.3V power supply and utilizes LVTTL compatible inputs and outputs, simplifying integration into various digital systems. Its programmable burst length and latency features allow for fine-tuning memory performance based on specific application requirements. The self-refresh mode minimizes power consumption when the memory is not actively being accessed. The '-8' likely denotes a speed grade, suggesting a frequency around 125MHz. The 'TSK' and '-7' likely denote packaging and revision information.

This SDRAM is well-suited for use in applications where high memory bandwidth and low latency are essential, such as graphics processing, networking, and real-time data acquisition.

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