The CY7C1265KV18-550BZC belongs to the category of high-performance synchronous SRAM (Static Random Access Memory) chips.
This product is primarily used in applications that require fast and reliable data storage and retrieval. It is commonly employed in various electronic devices such as computers, servers, networking equipment, and telecommunications systems.
The CY7C1265KV18-550BZC is available in a compact and industry-standard BGA (Ball Grid Array) package. Each package contains one unit of the SRAM chip.
The CY7C1265KV18-550BZC features a 165-ball BGA package with pins assigned as follows:

The CY7C1265KV18-550BZC operates based on the principles of synchronous static random access memory. It stores data in a matrix of memory cells, each consisting of flip-flops that retain information as long as power is supplied. The chip synchronizes its operations with the system clock, allowing for precise data transfer and synchronization.
The CY7C1265KV18-550BZC finds application in various fields, including: 1. Computer Systems: Used as cache memory in high-performance computers to improve data access speeds. 2. Networking Equipment: Employed in routers and switches to store routing tables and facilitate fast packet forwarding. 3. Telecommunications Systems: Utilized in base stations and network infrastructure to handle real-time data processing and storage. 4. Industrial Automation: Integrated into control systems to store critical data and ensure reliable operation. 5. Medical Devices: Used in medical imaging equipment and patient monitoring systems for fast and accurate data processing.
While the CY7C1265KV18-550BZC is a highly capable SRAM chip, alternative models from other manufacturers can also be considered. Some notable alternatives include: - MT45W8MW16BGX-701IT - IS61LV25616AL-10TLI - AS7C4096A-15TIN
These alternative models offer similar specifications and functionalities, providing flexibility in choosing the most suitable SRAM chip for specific applications.
In conclusion, the CY7C1265KV18-550BZC is a high-performance synchronous SRAM chip that offers fast access times, large storage capacity, and low power consumption. Its reliable operation and advanced features make it an ideal choice for various electronic devices and applications.
Sure! Here are 10 common questions and answers related to the application of CY7C1265KV18-550BZC in technical solutions:
1. What is the CY7C1265KV18-550BZC? - The CY7C1265KV18-550BZC is a high-speed, low-power synchronous SRAM (Static Random Access Memory) device.
2. What is the maximum operating frequency of the CY7C1265KV18-550BZC? - The CY7C1265KV18-550BZC can operate at a maximum frequency of 550 MHz.
3. What is the capacity of the CY7C1265KV18-550BZC? - The CY7C1265KV18-550BZC has a capacity of 8 Megabits (1 Megabyte).
4. What voltage does the CY7C1265KV18-550BZC operate at? - The CY7C1265KV18-550BZC operates at a voltage of 1.8V.
5. What are some typical applications of the CY7C1265KV18-550BZC? - The CY7C1265KV18-550BZC is commonly used in networking equipment, telecommunications systems, industrial automation, and high-performance computing applications.
6. Does the CY7C1265KV18-550BZC support multiple read and write operations simultaneously? - Yes, the CY7C1265KV18-550BZC supports simultaneous read and write operations.
7. What is the access time of the CY7C1265KV18-550BZC? - The CY7C1265KV18-550BZC has an access time of 2.5 ns.
8. Does the CY7C1265KV18-550BZC have any power-saving features? - Yes, the CY7C1265KV18-550BZC has a deep power-down mode and a self-refresh mode to conserve power when not in use.
9. Can the CY7C1265KV18-550BZC operate in harsh environments? - The CY7C1265KV18-550BZC is designed to operate in industrial temperature ranges (-40°C to +85°C) and can withstand harsh environmental conditions.
10. Is the CY7C1265KV18-550BZC compatible with other SRAM devices? - Yes, the CY7C1265KV18-550BZC is compatible with other industry-standard SRAM devices and can be easily integrated into existing designs.
Please note that these answers are general and may vary depending on specific implementation requirements.