CY7C1470V33-200BZI

CY7C1470V33-200BZI

Manufacturer No:

CY7C1470V33-200BZI

Manufacturer:

Infineon Technologies

Description:

IC SRAM 72MBIT PARALLEL 165FBGA

Datasheet:

Datasheet

Delivery:

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CY7C1470V33-200BZI Specifications

  • Type
    Parameter
  • Memory Interface
    -
  • Packaging
    Tray
The CY7C1470V33-200BZI is a specific integrated circuit chip manufactured by Cypress Semiconductor. It is a 3.3V low-power synchronous SRAM chip with a capacity of 4 Megabytes (Mbyte). Advantages of the CY7C1470V33-200BZI chip: 1. High Speed: It operates at a high speed, allowing for quick access and transfer of data. 2. Low Power Consumption: The chip is designed to consume low power, making it suitable for power-constrained applications where energy efficiency is important. 3. Non-Volatile: The chip features non-volatile memory, allowing data to be retained even when power is lost, making it suitable for applications that require data persistence. 4. Integrated Components: The chip integrates various components like SRAM, synchronous interface, and non-volatile memory in a single package, reducing the need for external components and simplifying the overall design.Application scenarios of CY7C1470V33-200BZI chip: 1. Embedded Systems: This chip can be used in various embedded systems like industrial control systems, robotics, and automotive applications where high-speed, low-power, and non-volatile memory are required. 2. Communication Systems: It can be used in networking devices, routers, and switches where quick data access and persistence are needed. 3. Data Storage: The chip's non-volatile memory makes it suitable for applications like solid-state drives (SSDs), disk drives, and data logging systems. 4. Medical and Aerospace Applications: Due to its low power consumption and reliability, the chip can be used in medical equipment and aerospace systems where power efficiency and data integrity are crucial.These are just a few examples, and the CY7C1470V33-200BZI chip may find usage in various other applications based on the specific requirements of those applications.