SIT9005ACT2H-XXNI Allicdata Electronics
Allicdata Part #:

SIT9005ACT2H-XXNI-ND

Manufacturer Part#:

SIT9005ACT2H-XXNI

Price: $ 4.35
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: SiTime
Short Description: OSC MEMS
More Detail: SSXO LVCMOS 1MHz ~ 141MHz Programmable Oscillator ...
DataSheet: SIT9005ACT2H-XXNI datasheetSIT9005ACT2H-XXNI Datasheet/PDF
Quantity: 1000
1 +: $ 3.91860
Stock 1000Can Ship Immediately
$ 4.35
Specifications
Frequency Stability: ±20ppm, ±25ppm, ±50ppm
Height: 0.030" (0.76mm)
Size / Dimension: 0.126" L x 0.098" W (3.20mm x 2.50mm)
Package / Case: 4-SMD, No Lead
Mounting Type: Surface Mount
Ratings: --
Current - Supply (Max): 6.5mA
Spread Spectrum Bandwidth: ±1.155%, Center Spread
Operating Temperature: -20°C ~ 70°C
Frequency Stability (Total): --
Series: SIT9005
Voltage - Supply: 2.5 V ~ 3.3 V
Output: LVCMOS
Function: --
Available Frequency Range: 1MHz ~ 141MHz
Programmable Type: Programmed by Digi-Key (Enter your frequency in Web Order Notes)
Type: SSXO
Base Resonator: MEMS
Part Status: Active
Description

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Programmable oscillators are electronic components consisting of an amplifier, a frequency-determining element and a voltage control element. They are used to produce an oscillating electrical signal at a specific frequency. The SIT9005ACT2H-XXNI is one such oscillator, used in a variety of applications. This article discusses both the application fields for the SIT9005ACT2H-XXNI, as well as its working principle.

Applications of the SIT9005ACT2H-XXNI

The SIT9005ACT2H-XXNI is a highly versatile oscillator, combining a range of features such as low-noise operation, high linearity, wide modulation bandwidth and low power consumption. This makes it suitable for a wide range of applications, including:

  • Wireless communications: The SIT9005ACT2H-XXNI can be used in Radio Frequency (RF) circuits to generate the desired transmission and reception frequencies. It can also be used in frequency hopping schemes and spread spectrum transmissions used in secure military communications.
  • Telecommunications: The SIT9005ACT2H-XXNI is used in telecommunications systems to provide synchronization of data and functions. It can also provide clock signals for controlling the transfer of information.
  • Navigational/positioning applications: The SIT9005ACT2H-XXNI is often used in navigation and positioning systems such as GPS receivers and inertial navigation systems. It can also be used in motion sensing applications.
  • Test and measurement: The SIT9005ACT2H-XXNI is used in a variety of test and measurement systems, such as frequency counters, signal and noise generators, and coherent-noise receivers.
  • Medical: The SIT9005ACT2H-XXNI can be used in medical equipment, such as ultrasounds and probes. It can also be used in pacemakers and other implantable medical devices.

Working Principle of the SIT9005ACT2H-XXNI

As mentioned earlier, the SIT9005ACT2H-XXNI consists of three main components: an amplifier, a frequency-determining element and a voltage control element. The amplifier\'s role is to amplify the signal received by the oscillator to generate a desired frequency. The frequency-determining element can be a resistor, a capacitor, or a combination of the two. This element is used to control the frequency of the signal produced by the oscillator. Finally, the voltage control element controls the frequency of the signal produced by the oscillator according to a variable voltage applied to the element.

The working principle of the SIT9005ACT2H-XXNI can be better understood by looking at its internal circuitry. The amplification of the signal is carried out by the amplifier, which consists of transistors, resistors and capacitors. The frequency-determining element determines the frequency of the signal by controlling the circuit\'s resonant frequency. Finally, the voltage control element modulates the frequency of the signal by modulating the voltage applied to the element.

The combined effect of these three components is that the SIT9005ACT2H-XXNI produces an oscillating signal at the desired frequency. This signal can then be used in a variety of applications, such as wireless communications, navigation, and medical equipment.

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

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