SIT8209AI-81-XXX-000.FP0000X Allicdata Electronics

SIT8209AI-81-XXX-000.FP0000X Crystals, Oscillators, Resonators

Allicdata Part #:

1473-1716-2-ND

Manufacturer Part#:

SIT8209AI-81-XXX-000.FP0000X

Price: $ 1.72
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: SiTime
Short Description: PROG OSC BLANK 80-220MHZ LVCMOS
More Detail: XO (Standard) LVCMOS 80MHz ~ 220MHz Programmable O...
DataSheet: SIT8209AI-81-XXX-000.FP0000X datasheetSIT8209AI-81-XXX-000.FP0000X Datasheet/PDF
Quantity: 750
250 +: $ 1.55189
500 +: $ 1.50754
750 +: $ 1.37453
1250 +: $ 1.28584
2500 +: $ 1.19716
Stock 750Can Ship Immediately
$ 1.72
Specifications
Series: SiT8209
Packaging: Tape & Reel (TR) 
Part Status: Active
Base Resonator: MEMS
Type: XO (Standard)
Programmable Type: Blank (User Must Program)
Available Frequency Range: 80MHz ~ 220MHz
Function: Enable/Disable, Standby
Output: LVCMOS
Voltage - Supply: 1.8V, 2.5 V ~ 3.3 V
Frequency Stability: ±20ppm
Frequency Stability (Total): ±20ppm
Operating Temperature: -40°C ~ 85°C
Spread Spectrum Bandwidth: --
Current - Supply (Max): 36mA
Ratings: --
Mounting Type: Surface Mount
Package / Case: 4-SMD, No Lead
Size / Dimension: 0.276" L x 0.197" W (7.00mm x 5.00mm)
Height: 0.039" (1.00mm)
Description

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Programmable Oscillators, such as SIT8209AI-81-XXX-000.FP0000X, are a type of electronic circuit that uses a crystal oscillator to generate a programmable signal. This signal is then used to control a wide range of electronic devices, such as circuit boards, sensors, receivers, actuators, and other components. It works by generating an oscillating signal at a specific frequency, which is then used to convey information or to control a certain function within the device.

The working principle of the Programmable Oscillator is quite simple, yet very effective. It works by using two elements, the capacitor and the crystal oscillator. The capacitor charges up and then discharges in a continuous cycle, creating a pulse of energy that passes through the crystal oscillator and produces the oscillating signal. This signal is then used to control a wide range of devices, depending on the design of the oscillator. For example, a Programmable Oscillator can be used to control and adjust the speed of an automotive part, or to control the operation of a microprocessor on a circuit board.

The most common applications for Programmable Oscillators include automotive, aerospace, military, communications, and medical technology. In the automotive industry, Programmable Oscillators are used to control engine RPMs, transmission control and other vehicle functions. In the aerospace and military industries, they are used to determine the position of aircraft and control the speed of missiles and satellites. In the communications sector, Programmable Oscillators are used in many radio broadcasting and satellite communication systems, as well as in cellular telephones. In the medical field, Programmable Oscillators are used for a wide range of applications, including patient monitoring, electromyography (EMG), and physiological parameter measurements.

Programmable Oscillators are especially useful in the fields of research and development, where they are used to test new electronic products and technologies. Researchers can use the oscillating signals of Programmable Oscillators to study and analyze the data they receive, and to make sure their products are working correctly. They are also used to test new circuits and equipment, as they can easily adjust the frequency and amplitude of the oscillating signals in order to simulate various conditions.

In conclusion, Programmable Oscillators such as SIT8209AI-81-XXX-000.FP0000X are a versatile and reliable type of electronic circuit that is used for a wide range of applications in many different industries. With the help of these oscillators, researchers and engineers can better understand and analyze the data they receive, and can more accurately test and develop new products and technologies.

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

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