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W97AH2KBVX2I
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W97AH2KBVX2I Description
W97AH2KBVX2I Description
The W97AH2KBVX2I is a high-performance Dynamic Random Access Memory (DRAM) IC designed by Winbond Electronics Corporation. This memory IC features a 1Gbit memory size, organized in a 32M x 32 configuration, providing a substantial amount of volatile storage suitable for various applications. The memory operates with a clock frequency of 400 MHz, ensuring rapid data access and processing capabilities. The memory interface is parallel, which is ideal for systems requiring high-speed data transfer and low latency.
The W97AH2KBVX2I is housed in a 134-pin VFBGA package, making it suitable for surface mount applications. It operates within a voltage range of 1.14V to 1.95V, providing flexibility in power supply requirements. The write cycle time for this memory is 15ns, which is remarkably fast and ensures efficient data writing operations. The memory is classified under ECCN EAR99, indicating its general availability for international trade without specific export restrictions.
W97AH2KBVX2I Features
- High-Speed Performance: With a clock frequency of 400 MHz, the W97AH2KBVX2I offers rapid data access and processing capabilities, making it suitable for applications requiring high-speed memory.
- Parallel Memory Interface: The parallel interface ensures efficient data transfer and low latency, which is crucial for applications that require fast data processing.
- Volatile Memory: As a DRAM, the W97AH2KBVX2I provides volatile storage, which means it retains data as long as power is supplied. This is ideal for applications where data needs to be quickly accessed and modified.
- Flexible Power Supply: The memory operates within a voltage range of 1.14V to 1.95V, providing flexibility in power supply requirements and compatibility with various systems.
- Fast Write Cycle Time: The write cycle time of 15ns ensures efficient data writing operations, making the memory suitable for applications that require frequent updates data.
- Surface Mount Compatibility: The 134-pin VFBGA package makes the W97AH2KBVX2I suitable for surface mount applications, which is advantageous for modern electronics manufacturing processes.
- Compliance and Safety: The memory is REACH unaffected and ROHS3 compliant, ensuring it meets environmental and safety standards, making it suitable for use in a wide range of applications.
W97AH2KBVX2I Applications
The W97AH2KBVX2I is ideal for a variety of applications that require high-speed, volatile memory. Some specific use cases include:
- Networking Equipment: Routers, switches, and other networking devices often require high-speed memory to handle data packets efficiently. The W97AH2KBVX2I's fast clock frequency and parallel interface make it suitable for these applications.
- Consumer Electronics: Devices such as gaming consoles, smart TVs, and high-end smartphones can benefit from the fast data access and processing capabilities of the W97AH2KBVX2I.
- Industrial Control Systems: Industrial automation and control systems often require reliable and fast memory to manage real-time data processing. The W97AH2KBVX2I's performance and reliability make it a good fit for these applications.
- Medical Equipment: Medical imaging devices and diagnostic equipment require high-speed memory to process and store large amounts of data quickly. The W97AH2KBVX2I can meet these requirements effectively.
Conclusion of W97AH2KBVX2I
The W97AH2KBVX2I is a high-performance DRAM IC that offers a combination of speed, flexibility, and reliability. Its 400 MHz clock frequency and parallel memory interface ensure rapid data access and processing, making it suitable for applications that require high-speed memory. The memory's flexible power supply range and fast write cycle time further enhance its performance and versatility. While the product is marked as obsolete, its technical specifications and performance benefits make it a valuable component for applications that require high-speed, volatile memory. The W97AH2KBVX2I is particularly well-suited for networking equipment, consumer electronics, industrial control systems, and medical equipment, where its performance and reliability can significantly enhance system efficiency.



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