CY62256NLL-70SNIT Overview
The CY62256NLL-70SNIT is a high-performance 32K x 8-bit Static RAM (SRAM) designed for fast and reliable data storage in embedded systems. Operating with a 70 ns access time, it supports low power consumption and features a 28-pin JEDEC standard plastic Small Outline Integrated Circuit (SOIC) package. Its single 5V power supply and static operation eliminate the need for refresh cycles, ensuring consistent, non-volatile memory access ideal for industrial and commercial applications. For detailed technical resources, visit IC Manufacturer.
CY62256NLL-70SNIT Technical Specifications
| Parameter | Specification |
|---|---|
| Memory Size | 32K x 8 bits (256Kbit) |
| Access Time | 70 ns |
| Operating Voltage | 5 V ?? 10% |
| Power Consumption (Max) | 90 mW (Operating) |
| Standby Current | 10 ??A (Typ, CMOS standby) |
| Package Type | 28-pin SOIC (Small Outline IC) |
| Operating Temperature Range | 0??C to +70??C |
| Data Retention Voltage | 2 V (Minimum) |
| Interface | Asynchronous SRAM |
| Pin Configuration | JEDEC standard |
CY62256NLL-70SNIT Key Features
- Fast 70 ns Access Time: Enables rapid data retrieval and storage, improving system throughput and performance in time-critical applications.
- Low Power CMOS Technology: Reduces power consumption during both active operation and standby, extending battery life in portable and embedded designs.
- Static Operation without Refresh: Eliminates the need for refresh cycles, simplifying memory management and enhancing system reliability.
- Standard 28-pin SOIC Package: Offers easy integration into existing PCB layouts with JEDEC standard pin assignments, facilitating design compatibility and manufacturing efficiency.
CY62256NLL-70SNIT Advantages vs Typical Alternatives
This SRAM device provides superior speed with a 70 ns access time, outperforming many traditional memory types that require refresh cycles or have slower access. Its low power CMOS design ensures reduced energy consumption compared to older bipolar SRAMs, making it ideal for power-sensitive industrial applications. The standardized SOIC package simplifies integration and enhances reliability, positioning this module as a robust alternative to typical asynchronous memories.
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Typical Applications
- Embedded Systems: Serves as high-speed volatile memory in microcontroller-based platforms requiring fast, reliable data storage and retrieval.
- Industrial Control Equipment: Supports real-time data buffering and temporary storage in automation and process control devices.
- Networking Hardware: Functions as cache or buffer memory in routers and switches to maintain data integrity during high-speed operations.
- Consumer Electronics: Used in devices requiring quick access memory with low power consumption, such as handheld instruments and digital cameras.
CY62256NLL-70SNIT Brand Info
This memory component is part of a renowned product line offering high-quality static RAM solutions tailored for industrial and commercial electronics. Known for stringent quality control and adherence to JEDEC standards, this product line guarantees consistent performance and compatibility across diverse applications. The 28-pin SOIC packaged SRAM is engineered to meet the rigorous demands of modern embedded systems, combining speed, reliability, and power efficiency in a compact form factor.
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%. This standard voltage level ensures compatibility with a wide range of industrial and commercial electronic systems.
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Does this SRAM require refresh cycles like DRAM?
No, this is a static RAM which does not require refresh cycles. It retains data as long as power is supplied, simplifying system design and reducing complexity compared to dynamic RAM types.
What package type does this product use, and why is it beneficial?
The SRAM is housed in a 28-pin Small Outline Integrated Circuit (SOIC) package, compliant with JEDEC standards. This package type offers a compact footprint and easy integration on printed circuit boards, facilitating




