SN74ALS990N Product Introduction:
Texas Instruments Part Number SN74ALS990N(Logic - Latches), 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.
SN74ALS990N is one of the part numbers distributed by Jinftry, and you can learn about its specifications/configurations, package/case, Datasheet, and other information here. Electronic components are affected by supply and demand, and prices fluctuate frequently. If you have a demand, please do not hesitate to send us an RFQ or email us immediately sales@jinftry.com Please inquire about the real-time unit price, Data Code, Lead time, payment terms, and any other information you would like to know. We will do our best to provide you with a quotation and reply as soon as possible.
Introducing the Texas Instruments SN74ALS990N, a versatile and high-performance octal bus transceiver designed to meet the demands of modern electronic systems. With its advanced features and robust design, this product is perfect for a wide range of applications.
The SN74ALS990N features eight bidirectional buffers with separate input and output ports, allowing for seamless data transfer between different parts of a system. Its high-speed operation, with a maximum propagation delay of just 6ns, ensures efficient and reliable data transmission even in demanding environments.
This transceiver also boasts a wide operating voltage range of 4.5V to 5.5V, making it compatible with a variety of power supply systems. Its low power consumption and ESD protection further enhance its reliability and longevity.
The SN74ALS990N is ideal for use in various application fields, including industrial automation, telecommunications, and automotive electronics. It can be used to interface microprocessors, memory modules, and other digital devices, enabling efficient data exchange and communication.
With its exceptional performance, versatility, and reliability, the Texas Instruments SN74ALS990N is the perfect choice for engineers and designers looking to enhance the functionality and efficiency of their electronic systems. Experience the power of this innovative transceiver and unlock new possibilities for your projects.
Latches are an important logical storage element in integrated circuits, which are mainly used to temporarily store data or status information in digital circuits until new data or reset signals are received. The locking pin is usually composed of cross-coupled inverter pairs, forming a positive feedback loop to maintain its output state. This design principle allows the locking pin to maintain the stability of the data without the control of the clock signal until the external signal changes its state. The characteristics of the lock pin include its hold function and transparent function, that is, under the control of the enable signal, data can be passed transparently, or in the non-enable state of the latch. These characteristics make locking pins play a key role in digital circuit design, especially in scenarios where transient data or state is required.
Application
Latches play an important role in many application areas of integrated circuits. In the microprocessor, digital signal processor (DSP), field programmable gate array (FPGA) and other high-performance computing and logic control chips, the locking pin is widely used in registers, registers, triggers and other key components to achieve temporary data storage and state management. In addition, in the communication system, the locking pin is also often used in the circuit design of key links such as data synchronization and clock recovery to ensure the accuracy and stability of data transmission. In consumer electronics, automotive electronics, industrial automation and other fields, locking pins are also indispensable, they support the realization of a variety of complex functions, such as audio and video processing, sensor data reading, motor control and so on. In short, as a basic component in digital circuits, the locking pin has a wide range of applications, which is of great significance to improve the performance and stability of the system.
ATMEGA328P-PU Microcontroller Introduction and Frequently Asked Questions
The ATMEGA328P-PU is a high-performance microcontroller used in a wide range of embedded systems and projects. Produced by Microchip Technology Inc. (formerly Atmel Corporation), this microcontroller is popular among creators, engineers, and students for its power, flexibility, and ease of use.
L7805CV Transistor: Pinout, Datasheet and Applications
What is the L7805CV Transistor? The ST model L7805CV is a voltage regulator in a three-end regulator TO-220 package that can be used in a wide range of applications. It ensures a steady 5V output from a higher input voltage. If sufficient heat dissipation is provided, the L1981301772 can provide an output current of more than 1A. Although these devices are primarily designed as fixed voltage regulators, they can be used with external components to obtain adjustable voltages and currents.
What is IC 741 Op Amp: Pin Diagram & Datasheet
The 741 IC op-amp is a widely used general-purpose operational amplifier that resembles a chip. The diagram of the 741 IC op-amp features 8 pins, with pins 2, 3, and 6 being the most critical. Pin 2 and Pin 3 are the inverting and non-inverting terminals, respectively, while Pin 6 represents the output voltage. The triangular symbol in the op-amp diagram signifies an operational amplifier integrated circuit, with the 741 op-amp being a well-known modern version.
Ring Counter: Working Principle, Truth Table, Diagram
What is a Ring Counter? A ring counter is a type of sequential logic circuit that is commonly used in digital systems. It consists of a series of flip-flops connected in a circular fashion, where the output of one flip-flop is the input of the next, and the last flip-flop's output is fed back to the first flip-flop's input.