CY62148DV30LL-55ZSXI 64Kb CMOS SRAM Memory IC – SOIC-28 Package

  • This device provides high-speed synchronous static RAM for efficient data storage and retrieval in digital systems.
  • The CY62148DV30LL-55ZSXI features a fast access time, ensuring quick data availability critical for performance-sensitive applications.
  • Its compact LFCSP package offers board-space savings, facilitating integration into designs with strict size constraints.
  • Ideal for buffering and cache memory in embedded systems, it supports smooth operation and reduces processing delays.
  • Manufactured to meet stringent quality standards, it ensures reliable operation under various environmental conditions.
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CY62148DV30LL-55ZSXI Overview

The CY62148DV30LL-55ZSXI is a high-performance 1Mbit (128K x 8) low-voltage SRAM designed for industrial and embedded applications requiring fast and reliable memory access. Operating at a 3.0V power supply, it delivers quick access times of 55 nanoseconds, ensuring efficient data handling in demanding environments. This non-volatile SRAM offers a compact 48-pin TSSOP package, optimized for space-constrained designs. Its low power consumption and high-speed operation make it ideal for applications requiring stable, high-density memory with minimal latency. For more detailed technical data, visit the IC Manufacturer.

CY62148DV30LL-55ZSXI Technical Specifications

ParameterSpecification
Memory Density1Mbit (128K x 8)
Access Time55 ns
Operating Voltage2.7 V to 3.6 V (typical 3.0 V)
Package Type48-pin TSSOP
Standby Current7 ??A (typical)
Operating Temperature Range-40??C to +85??C
Data Retention Voltage2.0 V (minimum)
InterfaceAsynchronous SRAM
Package Dimensions14.4 mm x 7.5 mm (TSSOP)

CY62148DV30LL-55ZSXI Key Features

  • Low-Voltage Operation: Supports 2.7 V to 3.6 V supply voltage, enabling energy-efficient designs with reduced power consumption.
  • High-Speed Access: 55 ns access time ensures rapid data retrieval and storage, critical for real-time processing systems.
  • Compact 48-Pin TSSOP Package: Saves PCB space while facilitating easy integration into complex systems.
  • Wide Operating Temperature Range: Reliable performance from -40??C to +85??C, suitable for industrial-grade applications.
  • Low Standby Current: Minimizes power draw during idle periods, enhancing overall system efficiency.
  • Asynchronous SRAM Interface: Simplifies memory control without the need for clock signals, reducing system complexity.
  • Data Retention Capability: Maintains stored data at voltages as low as 2.0 V, supporting data integrity during power fluctuations.

CY62148DV30LL-55ZSXI Advantages vs Typical Alternatives

This SRAM provides a superior combination of low-voltage operation and fast access times compared to traditional 5V SRAMs, reducing overall power consumption while maintaining high-speed performance. Its compact TSSOP package offers better PCB space utilization, and the wide temperature range ensures reliability in harsh industrial environments. These advantages enable designers to build efficient, durable, and responsive systems with minimal complexity.

Typical Applications

  • Embedded systems requiring fast and reliable volatile memory for buffering and temporary data storage, such as industrial controllers and communication equipment.
  • Data acquisition modules where low latency memory access is critical for real-time signal processing.
  • Consumer electronics needing compact memory solutions with low power consumption to extend battery life.
  • Automotive electronics systems operating across broad temperature ranges that demand durable and stable memory components.

CY62148DV30LL-55ZSXI Brand Info

The CY62148DV30LL-55ZSXI is part of a well-established line of SRAM products offered by a leading semiconductor manufacturer known for high-quality integrated circuits. This device reflects the brand??s commitment to delivering reliable, high-performance memory solutions tailored for industrial and embedded applications. Engineered to meet stringent quality and operational standards, it supports designers in developing robust, energy-efficient systems.

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What is the power supply voltage range for this SRAM device?

The device operates reliably within a

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