Allicdata Part #: | DSC2031FI2-J0001-ND |
Manufacturer Part#: |
DSC2031FI2-J0001 |
Price: | $ 0.00 |
Product Category: | Crystals, Oscillators, Resonators |
Manufacturer: | Microchip Technology |
Short Description: | OSC MEMS CONFIGURABLE OUTPUT |
More Detail: | CMOS XO (Standard) Pin Configurable Oscillator 2.2... |
DataSheet: | DSC2031FI2-J0001 Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | DSC2031 |
Packaging: | Tube |
Part Status: | Active |
Base Resonator: | MEMS |
Type: | XO (Standard) |
Frequency - Output 1: | 74.25MHz, 100MHz, 125MHz, 148.25MHz, 150MHz, 156.25MHz |
Frequency - Output 2: | 25MHz, 50MHz, 74.25MHz, 75MHz, 125MHz |
Function: | Enable/Disable |
Output: | CMOS |
Voltage - Supply: | 2.25 V ~ 3.6 V |
Frequency Stability: | ±25ppm |
Operating Temperature: | -40°C ~ 85°C |
Current - Supply (Max): | 49mA (Typ) |
Size / Dimension: | 0.126" L x 0.098" W (3.20mm x 2.50mm) |
Height: | 0.035" (0.90mm) |
Package / Case: | 14-SMD, No Lead |
Current - Supply (Disable) (Max): | 23mA |
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Pin Configurable/Selectable Oscillators are complex oscillators that have integrated customization, optimization and control options. The DSC2031FI2-J0001 series oscillators are part of this family of oscillators, catering to a range of applications where high frequency stability is paramount.
The DSC2031FI2-J0001 series is a mature yet versatile solution, boasting high-precision frequency control and accuracy without having to resort to the typical manual methods of tuning. Instead, the user is provided with a selection of pin-configurable options that allow frequencies to be set precisely at a variety of levels. This unique approach has seen the pin configurable oscillator become a popular choice for applications that demand highly accurate, complex signals.
At its heart is an innovative design that incorporates a single, on-chip integrated circuit (IC) with three adjustable input pins. This pin-configurable technology allows the user to leverage the oscillator’s capabilities to produce highly precise frequency outputs. For example, the DSC2031FI2-J0001 series oscillators feature a wide range of used defined frequencies that can be fine-tuned with the three input pins. This ensures that the correct frequency is produced for applications such as GPS navigation systems, medical equipment and military radar.
The working principle of the DSC2031FI2-J0001 is based on a patented proprietary design. The central IC contains a pair of frequency control circuits that each provide an adjustable input to the output stage. These circuits provide a two-stage frequency adjustment, allowing the user to finely tune the frequency of the oscillator. This is achieved using two different input pins, each of which allows a specific frequency range to be adjusted independently.
Additionally, the outputs of the two frequency control circuits are then combined in a dual output stage to produce a single, more finely tuned output frequency. The design of the oscillator also features a closed loop circuitry to ensure that the oscillator can maintain its frequency stability over time. This ensures that accuracy is maintained even over long period of time.
Along with the adjustable input pins, the DSC2031FI2-J0001 series oscillators also offer a variety of additional features such as low-noise operation, quick start-up time and superior temperature stability. The output stage also includes a temperature compensated oscillator (TCXO), which ensures that the frequency of the output remains stable over a wide range of temperatures.
The combination of features and advanced proprietary features makes the DSC2031FI2-J0001 series oscillators an ideal choice for a range of applications, both industrial and consumer. From high precision monitoring for medical devices to complex timing for military applications, the DSC2031FI2-J0001 series oscillators offer the necessary performance for high-precision requirements. This makes the DSC2031FI2-J0001 series ideal for a wide range of high-precision synchronous and asynchronous timing applications.
The specific data is subject to PDF, and the above content is for reference
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