CY62128DV30L-55ZAI Overview
The CY62128DV30L-55ZAI is a high-performance, low-power 128K x 8-bit static random-access memory (SRAM) device designed for fast access in demanding industrial and embedded applications. Operating at a 3.0V power supply, it offers a 55ns access time, enabling efficient data storage and retrieval essential for system responsiveness. Its CMOS technology ensures reduced power consumption, making it ideal for battery-powered and energy-sensitive designs. The SRAM??s compact 28-pin SOJ package supports easy integration into space-constrained PCBs. This reliable memory solution is suitable for a range of embedded systems requiring high-speed, low-latency data handling. For detailed product information, visit the IC Manufacturer.
CY62128DV30L-55ZAI Technical Specifications
| Parameter | Specification |
|---|---|
| Memory Organization | 128K x 8 bits |
| Access Time | 55 ns |
| Operating Voltage | 3.0 V ?? 0.3 V |
| Standby Current | 3 ??A (typical) |
| Operating Current | 70 mA (typical) |
| Data Retention Voltage | 1.5 V (minimum) |
| Package Type | 28-pin SOJ (Small Outline J-lead) |
| Input/Output Compatibility | TTL compatible |
| Temperature Range | 0??C to +70??C (Commercial) |
CY62128DV30L-55ZAI Key Features
- Fast 55ns access time: enables rapid data access for performance-critical applications, reducing system latency.
- Low power CMOS technology: minimizes power consumption during both active and standby modes, extending battery life in portable devices.
- 3.0V single power supply operation: simplifies power management and reduces system complexity.
- TTL compatible inputs and outputs: ensure seamless interface with common digital logic circuits, facilitating easy integration.
- Compact 28-pin SOJ package: supports high-density PCB layouts while maintaining thermal efficiency.
- Data retention down to 1.5V: guarantees data integrity in low voltage conditions, critical for power-sensitive applications.
- Commercial temperature range: suitable for a wide variety of industrial and consumer applications operating within standard ambient conditions.
CY62128DV30L-55ZAI Advantages vs Typical Alternatives
This SRAM device offers superior speed and low power consumption compared to typical asynchronous SRAMs operating at higher voltages. Its 3.0V operation reduces power demands significantly, while the 55ns access time enhances throughput. The CMOS technology ensures better energy efficiency and reliability over standard bipolar designs. Compact packaging and TTL compatibility further streamline integration, making it a preferred choice for embedded systems requiring fast, stable memory with minimal power overhead.
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Typical Applications
- Embedded systems memory: Provides fast, reliable storage for microcontrollers and digital signal processors in consumer electronics and industrial control equipment, where low latency and low power are essential.
- Cache memory: Serves as a high-speed cache in computing systems to accelerate processor access to frequently used data.
- Data buffering: Ideal for temporary data storage in communication devices and networking equipment requiring quick data handling.
- Portable instrumentation: Supports battery-operated measurement and test instruments needing efficient power use without compromising performance.
CY62128DV30L-55ZAI Brand Info
The CY62128DV30L-55ZAI is a product designed and manufactured by a leading semiconductor supplier specializing in robust, high-quality memory solutions. This device exemplifies the brand??s commitment to delivering cost-effective, reliable SRAM components optimized for industrial and embedded applications. Engineered with advanced CMOS technology, it reflects the company??s focus on power efficiency, performance, and ease of integration, supporting engineers and sourcing professionals with dependable memory products that meet stringent technical requirements.
FAQ
What is the significance of the 55ns access time for this SRAM?
The 55ns access time indicates the maximum delay between the address input and valid data output. This fast response improves system performance by reducing wait states,
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