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74LS321 Crystal-Controlled Oscillator IC

Original price was: ₹40.00.Current price is: ₹30.00. inc. GST

  • Crystal-Controlled Oscillator
  • High-level output voltage: 3.3V
  • Low-level output voltage Max.: 0.5V
  • High-level Output current: -24mA
  • Low-level Output current: 24mA
  • Input clamp voltage: -1.5V
  • Maximum clock frequency: 30MHz
  • Supply voltage range: 4.75 to 5.25V
  • Package: DIP-16
Description

74LS321 designed as a Crystal-Controlled Oscillator IC or clock driver. This IC features complimentary standard and high current driver outputs. A synchronization flip flop also included. The driver output F and F’ has very low impedance and used to drive highly capacitive TTL level lines. If the driver output not used, then Vcc’ terminal is left open. Moreover, these 74LS321 crystal-controlled Oscillator IC Two count down output F/2, F/4. These ICs designed specifically for crystal control frequency and capacitive control not recommended. If a fundamental crystal used, an inductor of 5 to 16mh required that connected between the tank 1 and tank 2 input.

A crystal oscillator designed as an electronic oscillator circuit that uses the mechanical resonance of a vibrating crystal of piezoelectric material. This material used to create an electrical signal with a constant frequency. This frequency often used to keep track of time, as in quartz wristwatches. As a result, digital integrated circuits will have a consistent clock signal, and radio transmitters and receivers will have stable frequencies. Meanwhile, these oscillators may be used in a variety of ways. Computers, instruments, digital systems, phase-locked loop systems, modems, maritime, telecommunications, sensors, and disc drives are just a few examples.

In most cases, the inverse piezoelectric effect is used in the crystal oscillator circuit. As a result, the applied electric field causes some materials to deform mechanically. As a result, it makes use of the mechanical resonance of a vibrating crystal constructed of a piezoelectric material to generate an electrical signal of a certain frequency. In general, we know that crystal oscillators are utilized in the design of microprocessors and microcontrollers to provide clock signals. Furthermore, this crystal oscillator has a 455 KHz cycle rate, which is employed to create clock pulses for the synchronisation of all internal processes.

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