CY62128BLL-70ZAE Overview
The CY62128BLL-70ZAE is a high-performance, low-power 128K x 8 static RAM designed for embedded system applications requiring fast access times and reliable data storage. Operating at a 70 ns access speed, this semiconductor memory device offers stable operation in a wide voltage range, making it ideal for industrial and consumer electronics. Its compact 32-pin SOJ package supports efficient PCB layout and thermal management. Optimized for seamless integration, it delivers consistent performance for buffering, caching, and temporary data retention tasks. For more detailed product insights, please visit IC Manufacturer.
CY62128BLL-70ZAE Technical Specifications
| Parameter | Specification |
|---|---|
| Memory Density | 128K x 8 bits |
| Access Time | 70 ns |
| Operating Voltage | 5 V ??10% |
| Data Retention Voltage | 2.0 V (minimum) |
| Power Supply Current (Active) | 50 mA (typical) |
| Standby Current | 100 ??A (max) |
| Package Type | 32-pin SOJ |
| Operating Temperature Range | 0??C to +70??C |
| Data Input/Output | TTL compatible |
| Write Cycle Time | 100 ns (max) |
CY62128BLL-70ZAE Key Features
- Fast 70 ns access time: Enables high-speed data retrieval, enhancing system throughput in time-critical applications.
- Low power consumption: Reduces energy usage during both active and standby modes, contributing to longer device lifespan and system efficiency.
- 5 V power supply operation: Ensures compatibility with standard industrial voltage levels, simplifying power design requirements.
- 32-pin SOJ package: Facilitates compact PCB layouts and reliable soldering, improving mechanical stability and thermal dissipation.
- TTL compatible inputs/outputs: Provides straightforward interface with common logic families for seamless integration.
- Wide operating temperature range: Supports reliable operation in typical commercial environments, ensuring stable performance.
- Data retention at low voltage: Maintains stored information even during power fluctuations, enhancing data integrity.
CY62128BLL-70ZAE Advantages vs Typical Alternatives
This static RAM stands out with its balanced combination of fast 70 ns access speed and low power consumption, making it more efficient than many traditional SRAMs that trade speed for power savings. Its 5 V operation and TTL compatibility simplify integration into existing systems, while the compact SOJ package offers better thermal management and PCB space utilization compared to bulkier DIP packages. These advantages result in improved system reliability and cost-effective implementation.
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Typical Applications
- Buffer memory in communication equipment where fast data access and stable operation under 5 V supply are critical for signal processing and data handling.
- Cache memory in embedded controllers requiring low latency and reliable data retention for real-time operations.
- Temporary data storage in industrial automation devices operating within standard temperature ranges.
- General-purpose high-speed memory in consumer electronics such as printers and networking hardware.
CY62128BLL-70ZAE Brand Info
The CY62128BLL-70ZAE is a product from a reputable semiconductor manufacturer known for delivering high-quality, reliable memory devices tailored for industrial and commercial electronics. This SRAM module exemplifies the brand??s commitment to performance, power efficiency, and ease of integration, offering engineers a trusted solution for diverse memory requirements. The brand??s focus on robust design ensures that the CY62128BLL-70ZAE meets stringent quality and operational standards.
FAQ
What is the typical power consumption of this SRAM during active operation?
The device typically consumes about 50 mA of current during active read or write operations at 5 V supply. This low power draw helps minimize heat generation and supports energy-efficient system designs.
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Can the memory retain data during power interruptions?
Yes, the SRAM maintains data retention down to a minimum voltage of 2.0 V, which ensures stored information remains intact during brief power fluctuations




