TD-35.328MDE-T Allicdata Electronics
Allicdata Part #:

TD-35.328MDE-T-ND

Manufacturer Part#:

TD-35.328MDE-T

Price: $ 0.00
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: TXC Corporation
Short Description: OSC MEMS 35.328MHZ CMOS SMD
More Detail: 35.328MHz XO (Standard) CMOS Oscillator 1.8V Enabl...
DataSheet: TD-35.328MDE-T datasheetTD-35.328MDE-T Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Frequency Stability: ±50ppm
Current - Supply (Disable) (Max): --
Height - Seated (Max): 0.032" (0.80mm)
Size / Dimension: 0.098" L x 0.079" W (2.50mm x 2.00mm)
Package / Case: 4-SMD, No Lead
Mounting Type: Surface Mount
Ratings: --
Current - Supply (Max): --
Operating Temperature: -40°C ~ 85°C
Series: TD
Voltage - Supply: 1.8V
Output: CMOS
Function: Enable/Disable
Frequency: 35.328MHz
Type: XO (Standard)
Base Resonator: MEMS
Part Status: Obsolete
Packaging: Tape & Reel (TR) 
Description

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Oscillators

TD-35.328MDE-T is a type of oscillator with many applications in different fields. It is a type of Crystal Oscillator, which uses the piezoelectric effect to generate a resonant electrical frequency signal. This frequency signal can be used for a wide variety of applications, from timekeeping to communication.

Application

TD-35.328MDE-T crystal oscillators are used widely in various applications, ranging from industrial, computer, consumer electronic products, telecommunications, multimedia, toy, automotive and scientific instruments. It is widely used in the communication area and computer area. For example, in communication area, it can be used for cellular base stations, test and measurement equipments, satellite transponders and multi-media systems. For computer, it can be used in embedded system, clock and data recovery systems, switches, routers, and system on a chip.

Working Principle

The working principle of the TD-35.328MDE-T crystal oscillator is based on the piezoelectric effect. In this process, an electrical charge is applied to two quartz plates, and the quartz plates vibrate at a specific frequency when the electrical charge is applied. The frequency of this oscillation is determined by the quartz\'s thickness, and by the amount of charge applied. The charge is usually applied by an electrical signal which is applied to the quartz plates. The frequency of the oscillation determines the frequency of the electrical current which is developed at the electrical terminals.

The frequency of the oscillation is also determined by the type of the crystal oscillator used. For example, the TD-35.328MDE-T crystal oscillator employs a frequency of 30.25 MHz, which is suitable for a wide range of applications. This oscillator also features a low phase noise, low jitter and stability over a wide temperature range.

The TD-35.328MDE-T crystal oscillator also offers some features which make it useful for other applications. It provides a high drive level which can be used to drive other circuits, and the design of the oscillator is robust enough to remain stable at a wide range of frequencies. Moreover, the design also ensures that the oscillator is highly reliable and can be used in applications requiring high levels of accuracy.

Conclusion

The TD-35.328MDE-T crystal oscillator is a type of oscillator with many applications in different fields. It is based on the piezoelectric effect and works by applying an electrical charge to two quartz plates and vibrating at a specific frequency. This frequency is determined by the quartz\'s thickness and the amount of charge applied, which is provided by an electrical signal. This oscillator is widely used in communication applications, computer application, and provides a high drive level to drive other circuits.

The specific data is subject to PDF, and the above content is for reference

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