DSC1030BC1-011.0592 Allicdata Electronics
Allicdata Part #:

DSC1030BC1-011.0592-ND

Manufacturer Part#:

DSC1030BC1-011.0592

Price: $ 0.00
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: Microchip Technology
Short Description: OSC MEMS 11.0592MHZ CMOS SMD
More Detail: 11.0592MHz XO (Standard) CMOS Oscillator 3V Standb...
DataSheet: DSC1030BC1-011.0592 datasheetDSC1030BC1-011.0592 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Frequency Stability: ±50ppm
Current - Supply (Disable) (Max): 1µA
Height - Seated (Max): 0.035" (0.90mm)
Size / Dimension: 0.197" L x 0.126" W (5.00mm x 3.20mm)
Package / Case: 4-SMD, No Lead
Mounting Type: Surface Mount
Ratings: --
Current - Supply (Max): 10mA
Operating Temperature: 0°C ~ 70°C
Series: DSC1030
Voltage - Supply: 3V
Output: CMOS
Function: Standby (Power Down)
Frequency: 11.0592MHz
Type: XO (Standard)
Base Resonator: MEMS
Part Status: Active
Packaging: Tube 
Description

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Oscillators are electronic components that generate periodic or steady signals of a specific frequency. Oscillators are used in a wide variety of applications, ranging from test and measurement to radio communication, power supply, automotive, aircraft and military electronic systems, and wireless communication. The DSC1030BC1-011.0592 is an oscillator from the DSC series.

Description of Product

The DSC1030BC1-011.0592 is an oscillator designed to produce a single frequency signal of 1030MHz with a tolerance of 1.2ppm. It has a supply voltage between 3.0 and 5.5V, a current consumption of 3.7mA operating and 0.4mA standby, and an output voltage of +1.0V. The reverse isolation of the oscillator is >26dB, and the output waveform is sine. It is a hermetically sealed dual-in-line package, with a factory temperature range of -55C to +125C and a rated temperature range of -40C to +85C.

Application Field

This oscillator is widely used in radar systems, precision navigation, electronic warfare, active phased array radar, transmission systems, base station systems, satellite navigation and communication systems, and medical monitoring systems. In addition, it can be used in microwave measurements, acoustics, optical imaging, automotive applications, and wireless communication systems. This oscillator is also used in local oscillators, synthesizer local oscillators, frequency synthesizers, phase-locked loops and voltage controlled oscillators.

Working Principle

The DSC1030BC1-011.0592 is an oscillator that works on the principle of negative resistance, which is the result of a complex phenomenon in which the current changes in response to a voltage applied to a circuit. The voltage is fed to the input of the oscillator, which then causes current to flow through the negative-resistance region. This current creates a voltage that amplifies the original voltage fed to the input of the oscillator, which results in an oscillation. This oscillation then produces the single frequency signal of 1030MHz.

Advantages

The DSC1030BC1-011.0592 is a reliable and stable oscillator. It has a high frequency stability and accuracy, providing a high level of precision and accuracy for applications. It is also designed for long-term reliability as it is hermetically sealed, and has a temperature range of -55C to +125C and a rated temperature range of -40C to +85C. In addition, this oscillator is low power, with a current consumption of 3.7mA, which allows for easy integration into systems.

Conclusion

The DSC1030BC1-011.0592 is an oscillator from the DSC series, designed to produce a single frequency signal of 1030MHz with a tolerance of 1.2ppm. It has a broad range of application fields, including radar systems, precision navigation, electronic warfare, local oscillators, transmission systems, base station systems and more. This oscillator is also designed with long-term reliability as it is hermetically sealed, and has a temperature range of -55C to +125C and a rated temperature range of -40C to +85C. It works on the principle of negative resistance, which is an electronic phenomenon in which the current changes in response to a voltage applied to a circuit.

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

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