CY7C1041BN-15VXC Overview
The CY7C1041BN-15VXC is a high-performance 4M x 8-bit (32Mb) static RAM designed for fast and reliable data storage in industrial and computing applications. Operating at a 15 ns access time, this SRAM supports efficient memory operations with low power consumption and high-speed data access. The device features asynchronous operation, a 32-pin TSOP II package for compact integration, and an industry-standard interface for seamless compatibility. Engineered for high-density memory solutions, it is ideal for systems requiring quick, volatile data storage. For more information, visit IC Manufacturer.
CY7C1041BN-15VXC Technical Specifications
| Parameter | Specification |
|---|---|
| Memory Size | 4M x 8 bits (32 Megabits) |
| Access Time | 15 ns |
| Operating Voltage | 5 V ?? 10% |
| Package Type | 32-pin TSOP II |
| Data Retention Voltage | 3 V minimum |
| Operating Temperature Range | 0??C to +70??C |
| Interface Type | Asynchronous SRAM |
| Power Consumption (Typical) | Active: 330 mW, Standby: 50 mW |
CY7C1041BN-15VXC Key Features
- Fast 15 ns access time: Enables rapid data retrieval, improving system performance in time-critical applications.
- High-density 32Mb memory: Supports large data storage in a compact form factor, reducing board space requirements.
- Low power consumption: Optimized active and standby power usage extends operational efficiency and reduces thermal load.
- Standard asynchronous interface: Simplifies integration with existing memory controllers and microprocessors.
- Robust 32-pin TSOP II packaging: Ensures reliable mounting and signal integrity in high-density system designs.
CY7C1041BN-15VXC Advantages vs Typical Alternatives
This SRAM offers superior speed and density compared to typical memory devices, delivering a 15 ns access time that enhances processing efficiency. Its low power consumption supports energy-conscious designs without compromising performance. The asynchronous interface and standard TSOP II packaging allow easy integration and reliable operation, making it a preferred choice over alternatives with slower access or higher power needs.
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Typical Applications
- High-speed cache memory for networking and computing equipment, where fast access and large storage capability improve data throughput and system responsiveness.
- Embedded systems requiring volatile memory with low latency for real-time data processing tasks.
- Telecommunications infrastructure supporting buffer memory for packet processing and signal buffering.
- Industrial control systems that demand reliable, fast-access memory for process monitoring and control algorithms.
CY7C1041BN-15VXC Brand Info
This product is part of the CY7C10xx series, known for delivering reliable, high-speed static RAM solutions tailored for industrial and computing applications. The CY7C1041BN-15VXC leverages mature semiconductor technology that meets rigorous quality standards, ensuring consistent performance and longevity in demanding environments. Its design supports seamless integration into systems requiring fast, stable memory with minimal power consumption, reflecting the brand??s commitment to innovation and reliability in memory products.
FAQ
What is the operating voltage range for this SRAM?
The device operates at a nominal voltage of 5 V with a tolerance of ??10%, ensuring compatibility with standard 5 V logic systems. It also supports data retention at a reduced voltage of 3 V minimum, which helps maintain data integrity during low-power or standby conditions.
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How does the asynchronous interface benefit system design?
The asynchronous SRAM interface allows independent control of read and write operations without requiring synchronization to a clock signal. This flexibility simplifies integration with various processors and controllers, enabling straightforward timing control and reducing system complexity.
What packaging options are available for this memory device?
This memory is provided in a 32-pin Thin Small Outline Package (TSOP II), offering a compact footprint and low profile. This package type is well-suited for high-density circuit boards and supports reliable soldering and signal integrity in automated assembly processes.




