The 74FCT162H245ATPA is a 16-bit bidirectional transceiver manufactured by IDT (Integrated Device Technology). It is designed for high-speed data transmission in bus-oriented systems. This device features low propagation delay and high drive capability, making it ideal for demanding applications such as memory interfaces, data buses, and communication backplanes.
Applications:
- Memory Interfaces
- Data Buses
- Communication Backplanes
- High-Speed Data Transmission
- Bus Transceivers
- Level Translation
Features:
- 16-Bit Bidirectional Transceiver: Enables data transfer in both directions between two buses.
- Low Propagation Delay: Minimizes signal delay for high-speed operation.
- High Drive Capability: Provides sufficient current to drive heavily loaded buses.
- TTL-Compatible Inputs: Interfaces easily with TTL logic levels.
- 3-State Outputs: Allows for bus isolation when the device is not actively transmitting.
- Power-Down Mode: Reduces power consumption when the device is not in use.
Benefits:
- Improved System Performance: The low propagation delay enables faster data transfer rates and improved overall system performance.
- Reliable Data Transmission: The high drive capability ensures reliable data transmission over heavily loaded buses.
- Simplified System Design: The TTL-compatible inputs simplify interfacing with other logic devices.
- Reduced Power Consumption: The power-down mode reduces power consumption, making it suitable for energy-sensitive applications.
- Increased System Flexibility: The bidirectional capability allows for data transfer in both directions, increasing system flexibility.
Additional Details:
The 74FCT162H245ATPA operates with a supply voltage of 5V. Its propagation delay is typically in the nanosecond range, depending on the specific loading conditions. The device is typically packaged in a TSSOP (Thin Shrink Small Outline Package) or similar surface mount package. Specific timing characteristics and power consumption figures should be verified using the manufacturer's datasheet for accurate system design.