CY7C164-35VC Overview
The CY7C164-35VC is a high-performance 16K x 8-bit static RAM designed for fast, reliable memory storage in various industrial and computing applications. Operating at a 35 ns access time, this device provides efficient data access with low power consumption, making it suitable for embedded systems requiring quick read/write operations. Its standardized pinout and CMOS technology ensure seamless integration with other digital components. Engineered for durability and consistent performance, the CY7C164-35VC meets the demands of modern electronics designs. For detailed technical support and sourcing, visit IC-fabrikant.
CY7C164-35VC Technical Specifications
Parameter | Specificatie |
---|---|
Memory Organization | 16K x 8 bits |
Toegangstijd | 35 ns |
Voedingsspanning | 5 V ??10% |
Bedrijfstemperatuurbereik | 0??C to +70??C |
Input/Output Voltage | TTL-compatibel |
Type verpakking | 28-pin Plastic DIP / SOJ |
Stand-by stroom | 20 mA (max) |
Operationele stroom | 70 mA (max) |
Spanning gegevensbewaring | 2 V (min) |
CY7C164-35VC Key Features
- Fast 35 ns access time: Enables rapid data retrieval and storage, improving system throughput and responsiveness in demanding applications.
- 16K x 8-bit memory organization: Provides a balanced memory size suitable for mid-level buffering and cache tasks without excessive power consumption.
- Low power CMOS technology: Reduces power dissipation during operation and standby, enhancing reliability and energy efficiency in embedded systems.
- TTL-compatible inputs and outputs: Ensures easy interface with standard digital logic circuits, simplifying design integration.
- Breed temperatuurbereik: Supports industrial and commercial applications where environmental conditions vary.
- Standard 28-pin DIP/SOJ packaging: Facilitates straightforward implementation on existing PCBs and allows for easy replacement or upgrades.
- Data retention at low voltage: Maintains stored data integrity during power-down modes, critical for system stability and data preservation.
CY7C164-35VC Advantages vs Typical Alternatives
This memory device offers a superior 35 ns access speed compared to many standard SRAMs, ensuring faster data handling. Its low power CMOS design provides significant energy savings, critical for power-sensitive applications. The TTL-compatible interface guarantees broad compatibility with existing digital systems. Additionally, its stable operation over a wide temperature range enhances reliability and robustness in industrial environments, distinguishing it from less versatile alternatives.
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Typische toepassingen
- Embedded system memory requiring fast, reliable SRAM for buffering and temporary data storage, such as microcontroller-based control units or digital signal processing modules.
- Cache memory in computing devices where quick access times improve overall system performance.
- Industrial automation systems that demand durable memory capable of withstanding variable temperature conditions.
- Communication equipment where low power consumption and fast data access optimize operational efficiency.
CY7C164-35VC Brand Info
The CY7C164-35VC is a product from a leading semiconductor manufacturer known for providing high-quality CMOS static RAM solutions. This device exemplifies the brand??s commitment to delivering robust, high-speed memory components optimized for industrial and commercial electronics. Designed with strict quality controls, the product supports seamless integration into diverse applications, backed by reliable performance and comprehensive technical support from the manufacturer.
FAQ
What is the primary memory capacity and organization of this SRAM?
The SRAM features a memory capacity of 16K words with an 8-bit data width, organized as 16,384 addresses each storing 8 bits of data. This structure is well-suited for mid-level buffering and cache memory requirements in embedded and industrial systems.
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What are the power supply requirements and power consumption characteristics?
The device operates at a standard 5 V power supply with a tolerance of ??10%. It utilizes