CY74FCT163543CPAC Overview
The CY74FCT163543CPAC is a high-speed 16-bit synchronous FIFO memory device designed for advanced data buffering and storage in complex electronic systems. Featuring a 32,768-word by 16-bit architecture, it supports efficient data transfer and temporary data storage with low latency and high throughput. This FIFO operates at performance-optimized clock rates, providing seamless integration into high-frequency digital designs. Its architecture supports dual-port operation, enabling simultaneous read and write processes which improve system efficiency. The device is ideal for applications requiring rapid data handling and reliable memory management. For more technical solutions, visit IC Manufacturer.
CY74FCT163543CPAC Technical Specifications
| Parameter | Specification |
|---|---|
| Memory Organization | 32,768 words ?? 16 bits |
| Interface Type | Synchronous FIFO |
| Operating Voltage | 5 V ?? 10% |
| Clock Frequency | Up to 50 MHz |
| Access Type | Dual-port (separate read/write pointers) |
| Data Width | 16 bits |
| Package Type | 44-pin Plastic Leaded Chip Carrier (PLCC) |
| Operating Temperature Range | 0??C to 70??C |
| Power Consumption | Low power CMOS technology |
CY74FCT163543CPAC Key Features
- Large 32K-depth FIFO memory: Enables extensive buffering capacity for systems requiring high data throughput, reducing bottlenecks in data streams.
- Synchronous operation with separate read/write clocks: Allows simultaneous, independent read and write operations, minimizing data latency and maximizing system efficiency.
- Dual-port access: Supports concurrent data access which simplifies interface design and improves overall system performance in complex applications.
- High-speed clock frequency up to 50 MHz: Provides fast data access and transfer rates crucial for real-time data processing.
- Low power CMOS technology: Ensures reduced power dissipation, enhancing device reliability and suitability for power-sensitive industrial environments.
- Compact 44-pin PLCC package: Facilitates easy mounting on high-density circuit boards while maintaining thermal performance.
- Robust operating temperature range: Ensures stable performance in commercial temperature conditions, suitable for industrial applications.
CY74FCT163543CPAC Advantages vs Typical Alternatives
This device offers significant advantages over typical FIFO alternatives by combining a large memory depth with high-speed synchronous operation and dual-port access. Its low power consumption and robust CMOS design enhance reliability and efficiency, making it ideal for demanding industrial and communication systems where performance and power are critical. The 44-pin PLCC package also enables easier integration without compromising board space.
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Typical Applications
- High-speed data buffering in telecommunications equipment, allowing reliable temporary storage of streaming data between asynchronous systems.
- Data rate matching in digital signal processing where fast, simultaneous read/write access is essential.
- Video frame buffering in imaging systems requiring large memory depth and rapid data cycling.
- Industrial control systems that demand low latency and robust memory management under continuous operation.
CY74FCT163543CPAC Brand Info
The CY74FCT163543CPAC is part of a well-established family of high-performance FIFO memory devices designed and manufactured by a leading semiconductor company known for innovation in digital logic and memory components. This product embodies the brand??s commitment to delivering reliable, high-speed memory solutions tailored for industrial and communication markets. It supports engineers and designers with proven technology optimized for demanding system requirements.
FAQ
What is the maximum clock frequency supported by this FIFO memory?
The device supports synchronous operation with a maximum clock frequency of up to 50 MHz, enabling fast data transfer rates suitable for high-performance digital systems.
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How does the dual-port feature improve system performance?
Dual-port operation allows simultaneous read



