CY7C1362C-250AJXC Allicdata Electronics
Allicdata Part #:

CY7C1362C-250AJXC-ND

Manufacturer Part#:

CY7C1362C-250AJXC

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Cypress Semiconductor Corp
Short Description: IC SRAM 9M PARALLEL 100TQFP
More Detail: SRAM - Synchronous Memory IC 9Mb (512K x 18) Paral...
DataSheet: CY7C1362C-250AJXC datasheetCY7C1362C-250AJXC Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Write Cycle Time - Word, Page: --
Base Part Number: CY7C1362
Supplier Device Package: 100-TQFP (14x20)
Package / Case: 100-LQFP
Mounting Type: Surface Mount
Operating Temperature: 0°C ~ 70°C (TA)
Voltage - Supply: 3.135 V ~ 3.6 V
Memory Interface: Parallel
Access Time: 2.8ns
Series: --
Clock Frequency: 250MHz
Memory Size: 9Mb (512K x 18)
Technology: SRAM - Synchronous
Memory Format: SRAM
Memory Type: Volatile
Part Status: Obsolete
Packaging: Tray 
Description

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The CY7C1362C-250AJXC is a memory device used in a variety of applications. It is an ultra low-power, synchronous SRAM memory device, with a bus width of 16-bits. This device is based on the CMOS technology, and optimised for low-power operation. It is ideal for use in embedded applications that require both low-power and high-speed operation, such as storage, security and communication systems.

The CY7C1362C-250AJXC has 256Kbits (32 kbytes) of memory with a maximum operating frequency of 25 MHz. It is packaged in a small 64-pin TQFP package. The device is easy to use and has built-in diagnostic features, such as self-refresh and monitor functions, which allow for quick diagnosis and troubleshooting of memory defects for applications that require high levels of reliability.

The CY7C1362C-250AJXC is designed to provide maximum performance while using low active power while reading and writing to the SRAM. This is achieved by using a synchronous design with an optimized write cycle. The device operates at 0.9 V, which allows for operation at very low power levels, while still providing excellent performance and reliability. In order to reduce the number of package pins, the CY7C1362C-250AJXC is designed to support a bidirectional data bus.

The working principle of the CY7C1362C-250AJXC utilizes a synchronous design, where data is stored in the SRAM in synchronous frames. These frames contain 8 bits of data and 8 bits of parity that are stored in 16 bit words. The frames are read out in a parallel, synchronous manner, which allows for high speed accesses and read/write operations. The device utilizes a two-phase write cycle, where data is written to the SRAM in two phases: first the 8 bits of data, and then the 8 bits of parity. This two-phase write cycle reduces the time required to write data to the SRAM.

The CY7C1362C-250AJXC has a number of features that make it suitable for many applications. It has a low-power standby mode, which allows the device to enter a low power standby, which reduces active power consumption. The device also has programmable power control, which allows for the device to be put into a lower power state for specific periods of time. There is also an integrated power-on reset circuit that provides a reset signal when the power is applied.

The CY7C1362C-250AJXC is designed to be used in many different applications. It is used in medical devices, alarm systems, automation systems, controllers, embedded systems, etc. The device would also be useful in communication systems, where it is used as a data storage device in high speed applications. Additionally, the CY7C1362C-250AJXC can be used in automotive applications, where the device may be used to store data in vehicles, such as engine control units or navigation systems.

In conclusion, the CY7C1362C-250AJXC is a low power, high speed and reliable memory device that can be used in many applications. It is an ideal candidate for use in applications requiring low power and high speed operation. With its two-phase write cycle, low-power standby mode, and programmable power control, the CY7C1362C-250AJXC provides excellent performance and reliability for embedded applications.

The specific data is subject to PDF, and the above content is for reference

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