DSC1121DM1-033.3333 Allicdata Electronics
Allicdata Part #:

DSC1121DM1-033.3333-ND

Manufacturer Part#:

DSC1121DM1-033.3333

Price: $ 1.12
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: Microchip Technology
Short Description: OSC MEMS 33.3333MHZ CMOS SMD
More Detail: 33.3333MHz MEMS (Silicon) CMOS Oscillator 2.25 V ~...
DataSheet: DSC1121DM1-033.3333 datasheetDSC1121DM1-033.3333 Datasheet/PDF
Quantity: 93
1 +: $ 1.02060
25 +: $ 0.85000
Stock 93Can Ship Immediately
$ 1.12
Specifications
Frequency Stability: ±50ppm
Current - Supply (Disable) (Max): 22mA
Height - Seated (Max): 0.035" (0.90mm)
Size / Dimension: 0.098" L x 0.079" W (2.50mm x 2.00mm)
Package / Case: 6-SMD, No Lead
Mounting Type: Surface Mount
Ratings: --
Current - Supply (Max): 35mA
Operating Temperature: -55°C ~ 125°C
Series: DSC1121
Voltage - Supply: 2.25 V ~ 3.6 V
Output: CMOS
Function: Enable/Disable
Frequency: 33.3333MHz
Type: MEMS (Silicon)
Part Status: Active
Packaging: Tube 
Description

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Oscillators are electronic circuits used to generate a continuous waveform, typically alternating current (AC) waveforms. The most common type of oscillator is the linear oscillator, which is used to generate sine, square, sawtooth, and triangular waves. The DSC1121DM1-033.3333 oscillator is an ideal choice for applications that require high performance oscillation and precision timing. This oscillator offers a wide range of frequencies, ranging from low to high, and is suitable for generating both sine and square waveforms.

Application Field

The DSC1121DM1-033.3333 oscillator is used in many different applications and is typically used in communication systems, industrial applications, automotive applications, medical devices, and consumer electronics. This oscillator is designed to provide precise timing and signal fidelity, making it an ideal choice for various tasks such as frequency division, frequency synthesis, clock generation, and timing control.

The oscillator is often used in communication systems as a frequency reference for a signal source, such as a radio transmitter. It is also used in industrial applications, such as motion control and stepper motor control, to provide precise timing and signal frequency accuracy. In automotive applications, the oscillator is often used in proximity sensors, ECU controllers, and noise suppression systems. It is also used in medical devices, such as implantable pacemakers, to provide precise timing and signal accuracy.

The DSC1121DM1-033.3333 oscillator is also commonly used in consumer electronics, such as wireless mouse and keyboards, touchscreens, remote controls, and digital video recorders. The oscillator is designed to provide a reliable, low-power source of timing signals that can be used to control the operation of electronic devices.

Working Principle

The DSC1121DM1-033.3333 oscillator uses a principle of operation known as feedback. This mechanism relies on a negative feedback loop to maintain a constant output frequency. In a feedback loop, a signal is generated by the oscillator, and the output of the oscillator is then fed back to the input. As the input is changed, the output frequency of the oscillator is also changed.

The oscillator generates an output signal by performing a comparison between the input signal and a reference signal. The reference signal is generated by the oscillator itself and is usually a sine or square wave. The oscillator compares the input signal to the reference signal and adjusts the output signal as needed to maintain a constant level. To ensure a constant frequency, the oscillator uses a phase-locked loop (PLL) circuit.

The PLL circuit is used to keep the oscillator\'s output frequency in sync with the reference signal. To do this, the PLL circuit uses a phase detector to measure the difference between the input signal and the reference signal. It then adjusts the voltage or current supplied to the oscillator\'s generator to match the desired frequency.

The DSC1121DM1-033.3333 oscillator is designed to operate with high accuracy and provide a reliable source of timing signals. It is also capable of providing stable, low-noise waveforms. This makes it an ideal choice for applications that require precise timing and signal accuracy, such as communication systems, industrial applications, automotive applications, medical devices, and consumer electronics.

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

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