SN74HCS164DR Product Introduction:
Texas Instruments Part Number SN74HCS164DR(Logic - Shift Registers), developed and manufactured by Texas Instruments, distributed globally by Jinftry. We distribute various electronic components from world-renowned brands and provide one-stop services, making us a trusted global electronic component distributor.
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Introducing the Texas Instruments SN74HCS164DR, a versatile and high-performance shift register that is designed to meet the needs of various applications. This shift register is part of the popular SN74HCS series, known for its reliability and efficiency.
The SN74HCS164DR features a 8-bit parallel-in to serial-out shift register, making it ideal for applications that require data transfer and storage. With a wide operating voltage range of 2V to 6V, this shift register can be easily integrated into a wide range of electronic systems.
One of the key features of the SN74HCS164DR is its high-speed operation, with a maximum clock frequency of 100MHz. This allows for fast and efficient data transfer, making it suitable for applications that require real-time data processing.
The SN74HCS164DR also offers a wide temperature range of -40°C to 85°C, ensuring reliable performance even in harsh environments. Additionally, it has a low power consumption, making it suitable for battery-powered devices.
This shift register is commonly used in a variety of applications, including LED displays, serial data communication, and data storage systems. Its compact size and easy integration make it a popular choice among designers and engineers.
In summary, the Texas Instruments SN74HCS164DR is a high-performance shift register that offers fast and efficient data transfer, wide operating voltage range, and low power consumption. With its versatility and reliability, it is the perfect choice for a wide range of applications.
Shift Registers are integrated circuit devices that belong to the logical classification of electronic devices, mainly used for storing and transmitting data. It consists of a series of triggers, each of which can store one bit of binary information. These triggers are sequentially connected, allowing data to move bit by bit under the control of the clock signal. The basic design principle of a shift register is to use clock pulses to control the shift operation of data, that is, data can be input from one end of the register, output at the other end, or cyclically shifted internally. When receiving a clock pulse, the state of each flip-flop is updated to the input data, and the data moves along the register to the next flip-flop. There are two basic types of shift registers: serial input/serial output (SISO) and serial input/parallel output (SIPO). The SISO structure only allows data to enter and exit in a serial manner; The SIPO structure allows data to be input in a serial manner and output in a parallel manner, making it suitable for situations where all bits need to be read quickly. In addition, there are variants such as Parallel Input/Serial Output (PISO) and Parallel Input/Parallel Output (PIPO).
Application
Shift Registers play important roles in multiple fields. In digital communication systems, it is used for the transmission and reception of serial data, achieving data synchronization and recovery. In microprocessors and microcontrollers, shift registers are used as part of the I/O interface to exchange data with external devices, especially when controlling multiple LED lights, button inputs, or serial communication interfaces. In addition, shift registers also play a key role in applications such as image processing, audio processing, and timing control, such as generating pixel clock signals, serial transmission of audio samples, and controlling various timing related operations. In a wide range of fields such as consumer electronics, automotive electronics, industrial automation, and data communication, shift registers have become an indispensable electronic component due to their efficient and flexible data processing capabilities.
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