CY7C199L-15ZC Overview
The CY7C199L-15ZC is a high-performance 4K x 8 CMOS Static RAM designed for fast and reliable data storage and retrieval. Operating at a 15 ns access time, this device supports low power consumption, making it ideal for applications requiring both speed and efficiency. Its 32-pin PLCC package ensures easy integration into various systems. The SRAM??s robust architecture supports seamless asynchronous operation with straightforward control signals, optimizing system design. Engineers and sourcing specialists will find the memory??s balance of speed, power, and ease of use valuable for high-speed buffering and cache applications. For detailed product sourcing and specifications, visit IC Manufacturer.
CY7C199L-15ZC Technical Specifications
| Parameter | Specification |
|---|---|
| Memory Organization | 4K x 8 bits |
| Access Time | 15 ns |
| Operating Voltage | 5V ?? 10% |
| Power Supply Current (Max) | 70 mA (Active) |
| Standby Current | 10 mA max (TTL Input Levels) |
| Package Type | 32-pin PLCC |
| Data Retention Voltage | 2.0V min |
| Input/Output Type | Three-State TTL Compatible |
| Operating Temperature Range | 0??C to +70??C |
CY7C199L-15ZC Key Features
- High-Speed 15 ns Access Time: Enables rapid data retrieval, critical for performance-sensitive buffering and caching in embedded systems.
- Low Power Consumption: Designed with efficient CMOS technology to minimize power use during both active and standby modes, extending system battery life.
- Asynchronous Operation: Supports flexible timing control without the need for a clock signal, simplifying integration into various digital systems.
- Three-State Outputs: Allows easy bus sharing and multiplexing, enhancing system design flexibility.
- 32-Pin PLCC Packaging: Provides a compact footprint with reliable socket or surface mounting for industrial and commercial applications.
- Data Retention Mode: Maintains memory contents at low voltage, supporting data integrity during power interruptions.
- TTL Compatible Inputs and Outputs: Ensures seamless interface with standard logic families across a broad range of systems.
CY7C199L-15ZC Advantages vs Typical Alternatives
This SRAM device offers a compelling advantage over typical memory alternatives by combining ultra-fast 15 ns access times with low power consumption, critical for high-speed computing environments. Its asynchronous operation and three-state outputs enable straightforward system integration while maintaining data integrity with a reliable data retention voltage. Compared to other static RAM options, it delivers enhanced flexibility and efficiency, making it an excellent choice for engineers prioritizing speed and power savings.
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Typical Applications
- High-speed cache memory in microprocessor systems, where rapid data access and low latency are essential for system performance.
- Buffer memory in communication devices, facilitating smooth data flow between subsystems with minimal delay.
- Embedded system storage requiring reliable and fast static RAM for temporary data retention during processing tasks.
- Industrial control systems that demand robust, low-power memory components capable of maintaining data integrity under varying operational conditions.
CY7C199L-15ZC Brand Info
The CY7C199L-15ZC is a product from a leading semiconductor manufacturer known for delivering reliable and high-quality CMOS SRAM solutions. This device is part of a family of memory products engineered to meet the demands of industrial and commercial applications requiring fast access times and low power consumption. With stringent quality control and adherence to industry standards, the brand supports designers and sourcing professionals in implementing efficient and durable memory solutions.
FAQ
What is the operating voltage range for this SRAM device?
The device operates at a nominal voltage of 5V with a tolerance of ??10%. This standard voltage range ensures compatibility with typical TTL logic systems and supports stable performance across the specified temperature range.
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Can this SRAM be used in low-power applications?
Yes, the CMOS technology used in this SRAM enables low power consumption during both active and standby modes




