CY7C1041CV33-15VXC Allicdata Electronics
Allicdata Part #:

428-1734-ND

Manufacturer Part#:

CY7C1041CV33-15VXC

Price: $ 2.88
Product Category:

Integrated Circuits (ICs)

Manufacturer: Cypress Semiconductor Corp
Short Description: IC SRAM 4M PARALLEL 44SOJ
More Detail: SRAM - Asynchronous Memory IC 4Mb (256K x 16) Para...
DataSheet: CY7C1041CV33-15VXC datasheetCY7C1041CV33-15VXC Datasheet/PDF
Quantity: 1000
340 +: $ 2.62132
Stock 1000Can Ship Immediately
$ 2.88
Specifications
Series: --
Packaging: Tube 
Part Status: Active
Memory Type: Volatile
Memory Format: SRAM
Technology: SRAM - Asynchronous
Memory Size: 4Mb (256K x 16)
Write Cycle Time - Word, Page: 15ns
Access Time: 15ns
Memory Interface: Parallel
Voltage - Supply: 3 V ~ 3.6 V
Operating Temperature: 0°C ~ 70°C (TA)
Mounting Type: Surface Mount
Package / Case: 44-BSOJ (0.400", 10.16mm Width)
Supplier Device Package: 44-SOJ
Base Part Number: CY7C1041
Description

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The CY7C1041CV33-15VXC is a specialized type of memory technology and is commonly used in many high-demand applications. A memory device is an active component in many circuits and in most cases, it provides the main storage mechanism for the data and instructions needed for the internal circuit operations. In many applications, the CY7C1041CV33-15VXC has optimal performance, providing special advantages over traditional memory such as fast access times and a larger capacity. It is also capable of handling multiple tasks simultaneously and is often used in order to optimize the overall performance of the system.

The CY7C1041CV33-15VXC is a form of Static Random Access Memory (SRAM). While dynamic random access memory (DRAM) devices rely on a much more complex architecture and use dynamic storage cells that must constantly be refreshed in order to maintain their data, SRAM devices are almost completely independent from any such refresh processes. Instead, SRAM devices employ a fixed two-terminal transistor per bit, which can be used to store single bits of information that remain indefinitely in its logical state.

The fully-integrated architecture of the CY7C1041CV33-15VXC allows it to be implemented in much smaller printed circuit boards than what is required for most other SRAM devices. It provides a cost-effective solution for many applications and is often used to replace more expensive DRAM technologies. It can also be used as a fast cache memory in larger computers containing multiple layers of memory and as a rapidly accessible main memory in small devices. Furthermore, the CY7C1041CV33-15VXC can be used to prohibit the execution of certain instructions on the processor, making it ideal for computer systems requiring additional protection.

The CY7C1041CV33-15VXC also has a wide range of features. These include an integrated sense amplifier for faster memory cycles, an internal power switch to control power consumption, and an interface to external devices. With these feature sets, the CY7C1041CV33-15VXC is a powerful device that delivers efficient and reliable operations in a variety of applications. In addition, its low power consumption and low cost make it an attractive option for many projects.

In terms of application field and working principle, the CY7C1041CV33-15VXC is ideal for a number of different applications. It is widely used in embedded systems, automotive applications, consumer electronics, industrial automation, medical devices, and more. The device works by having a fixed two-terminal transistor per bit, which can be used to store single bits of information and keep them indefinitely in its logical state. This makes it a very predictable and reliable choice for applications in which data must be retained and accessed quickly.

In conclusion, the CY7C1041CV33-15VXC is an ideal choice for many systems and applications, thanks to its high performance, low power consumption, and low cost. It has a wide range of features, making it a reliable and cost-effective choice for many fields. It is capable of handling multiple tasks simultaneously, provides fast access times for its data, and is often used in order to optimize the overall performance of a system.

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

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