IDT71V67602S150PFI Allicdata Electronics
Allicdata Part #:

IDT71V67602S150PFI-ND

Manufacturer Part#:

IDT71V67602S150PFI

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: IDT, Integrated Device Technology Inc
Short Description: IC SRAM 9M PARALLEL 100TQFP
More Detail: SRAM - Synchronous Memory IC 9Mb (256K x 36) Paral...
DataSheet: IDT71V67602S150PFI datasheetIDT71V67602S150PFI Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Write Cycle Time - Word, Page: --
Base Part Number: IDT71V67602
Supplier Device Package: 100-TQFP (14x14)
Package / Case: 100-LQFP
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 85°C (TA)
Voltage - Supply: 3.135 V ~ 3.465 V
Memory Interface: Parallel
Access Time: 3.8ns
Series: --
Clock Frequency: 150MHz
Memory Size: 9Mb (256K x 36)
Technology: SRAM - Synchronous
Memory Format: SRAM
Memory Type: Volatile
Part Status: Obsolete
Packaging: Tray 
Description

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Introduction

The IDT71V6762S150PFI is a high-speed, low latency static random access memory that is mainly used for high data rate applications. It offers a wide range of features such as optimum throughput, low power dissipation, high capacity and low power operation. This memory is suitable for a variety of applications including digital signal processing (DSP), consumer electronics, embedded applications and storage devices.

Application Field

The IDT71V6762S150PFI is ideally suited for embedded applications such as digital audio, digital video, and gaming applications. Its ability to access multiple memory locations with its high-speed controller contributes significantly to its performance in these types of applications. Its low latency and high throughput also make it suitable for high-speed data transfer such as in storage systems, industrial automation, and medical imaging.

This memory is also excellent for networking applications as it can both transmit and receive data at high speeds. Its low power operation makes it ideal for applications that are power sensitive such as solar systems, green energy systems, and power plant automation.

The IDT71V6762S150PFI is also applicable in automotive applications such as collision avoidance, guidance, and navigation systems. It is also suitable for medical applications such as medical imaging and instrument control.

Working Principle

The IDT71V6762S150PFI operates with a synchronous interface which allows it to access multiple memory locations simultaneously. The controller in the memory unit provides a high-speed interface to the memory which helps enhance the performance of the memory. The data is stored in the memory in a serial format which helps reduce the memory\'s latency.

The IDT71V6762S150PFI utilizes an on-chip write buffer which helps reduce the overall power consumption of the memory. The write buffer temporarily stores the written data until it can be written to the memory. This reduces the number of write cycles required and reduces the power consumption of the memory.

The IDT71V6762S150PFI utilizes self-timed write operations which allows it to write data to the memory in a predetermined time. This ensures that the data is not corrupted and that all write operations are performed in the same time, irrespective of the speed of the system. This helps prevent data corruption and reduce the memory\'s power consumption.

The IDT71V6762S150PFI uses a low power dissipation interface which ensures that the memory consumes less power during its different operations. The low power interface helps to increase the efficiency of the memory, reducing the overall power consumption of the system.

Conclusion

The IDT71V6762S150PFI is an ideal memory for a wide range of applications, especially for those which require high-speed data transfer and low power consumption. Its low latency ensures that the transfer speeds are much higher than those of other types of memory. Its low power consumption makes it ideal for applications which are power-sensitive, such as solar systems, green energy systems, and automotive applications.

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

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