DV75D-010.0M Allicdata Electronics

DV75D-010.0M Connor-Winfield

Allicdata Part #:

CW743DKR-ND

Manufacturer Part#:

DV75D-010.0M

Price: $ 9.45
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: Connor-Winfield
Short Description: OSC TCXO 10.000MHZ LVCMOS SMD
More Detail: 10MHz TCXO LVCMOS Oscillator 3.3V 4-SMD, No Lead
DataSheet: DV75D-010.0M datasheetDV75D-010.0M Datasheet/PDF
Quantity: 129
1 +: $ 8.59320
10 +: $ 8.03880
50 +: $ 7.76160
100 +: $ 7.48440
Stock 129Can Ship Immediately
$ 9.45
Specifications
Frequency Stability: ±1ppm
Current - Supply (Disable) (Max): --
Height - Seated (Max): 0.079" (2.00mm)
Size / Dimension: 0.276" L x 0.197" W (7.00mm x 5.00mm)
Package / Case: 4-SMD, No Lead
Mounting Type: Surface Mount
Ratings: --
Current - Supply (Max): 6mA
Operating Temperature: -40°C ~ 85°C
Series: DV75D
Voltage - Supply: 3.3V
Output: LVCMOS
Function: --
Frequency: 10MHz
Type: TCXO
Part Status: Active
Packaging: Digi-Reel® 
Description

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Oscillators, which form the basic of many electronic designs, are easily identifiable by their alternating signals. The signal can be generated by the flow of electrons or by the movement of mechanical components. A DV75D-010.0M is an example of an oscillator that is powered by the movement of electrons. This specialized oscillator is used in various applications and has a wide range of working principles.

The DV75D-010.0M is best known for its use in medical and dental imaging equipment. This equipment uses high-frequency ultrasonic waves to image the inside of a patient\'s body. The DV75D-010.0M provides the high-frequency signal necessary for imaging. The signal is generated by the oscillator as electrons move through a signaling transistor. As the electrons move through the transistor, they generate a high-frequency signal that is used by imaging equipment to create a detailed image of the patient\'s internal body.

The DV75D-010.0M is also commonly used in communication systems. This oscillator is responsible for generating a signal in the very high frequency (VHF) range. This signal is then used to communicate data, voice, and other various types of information over a network. The signal is generated as electrons move through the oscillator circuit. As the electrons move, they generate a signal that is converted to an analog or digital form and sent over the communication network.

The DV75D-010.0M oscillator can also be used in a variety of industrial control processes. This oscillator is responsible for generating a signal that is used to control the movement of mechanical parts. This signal is generated as electrons move through the oscillator circuit. As the electrons move, they generate a signal that is converted to an analog or digital control signal and sent to the mechanical components related to the industrial process.

This oscillator can also be used in power supply applications. This oscillator is responsible for generating a signal that is used to control the power supply system. This signal is generated as electrons move through the oscillator circuit. As the electrons move, they generate a signal that is converted to an analog or digital control signal and sent to the power supply system. The result is that the power supply is regulated and controlled in accordance with the signal generated by the DV75D-010.0M.

Finally, the DV75D-010.0M can be used in a variety of scientific research applications. This oscillator is responsible for generating a signal that can be used to measure various attributes of a particular specimen. The signal is generated as electrons move through the oscillator circuit. As the electrons move, they generate a signal that is converted to an analog or digital form and sent to a scientific measurement device. The result is that researchers and scientists can measure various properties of a specimen.

The DV75D-010.0M is an excellent example of an oscillator that is powered by the movement of electrons. This oscillator is used in a variety of applications, including medical and dental imaging equipment, communication systems, industrial control processes, power supply systems, and scientific research applications. The signal generated by this oscillator is generated as electrons move through the oscillator circuit, and is then converted to an analog or digital form for the specific application.

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

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