
Allicdata Part #: | SG-210SCD66.6667ML3-ND |
Manufacturer Part#: |
SG-210SCD 66.6667ML3 |
Price: | $ 0.85 |
Product Category: | Crystals, Oscillators, Resonators |
Manufacturer: | Epson |
Short Description: | OSC XO 66.6667MHZ CMOS SMD |
More Detail: | 66.6667MHz XO (Standard) CMOS Oscillator 3.3V Stan... |
DataSheet: | ![]() |
Quantity: | 1000 |
250 +: | $ 0.77112 |
Absolute Pull Range (APR): | -- |
Current - Supply (Disable) (Max): | -- |
Height - Seated (Max): | 0.035" (0.90mm) |
Size / Dimension: | 0.098" L x 0.079" W (2.50mm x 2.00mm) |
Package / Case: | 4-SMD, No Lead |
Mounting Type: | Surface Mount |
Ratings: | -- |
Current - Supply (Max): | 8mA |
Operating Temperature: | -40°C ~ 85°C |
Series: | SG-210SCD |
Frequency Stability: | ±50ppm |
Voltage - Supply: | 3.3V |
Output: | CMOS |
Function: | Standby (Power Down) |
Frequency: | 66.6667MHz |
Type: | XO (Standard) |
Base Resonator: | Crystal |
Part Status: | Active |
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The SG-210SCD 66.6667 ML3 oscillator is an electronic frequency-generating device designed to produce periodic output signal of precise frequency. Oscillators are a major part of many electronic applications, and the SG-210SCD 66.6667 ML3 has become particularly popular because of its ability to generate highly accurate signals.
The SG-210SCD 66.6667 ML3 has been designed for use in various radio communication and navigation systems, such as mobile phones, aircraft radar systems, satellites, and many other devices. It is designed to provide a highly stable reference clock for the efficient transmission of data to enable precise navigation, communication or timing applications.
The SG-210SCD 66.6667 ML3 oscillator utilizes a quartz crystal as a controlling element. This quartz crystal has a physical structure that will naturally vibrate at a precise frequency when a voltage is applied. Depending on the design of the oscillator, the quartz crystal vibrates at the same frequency as the voltage applied or at a frequency that is a certain multiple of the applied voltage.
The SG-210SCD 66.6667 ML3 operates using a “push-pull” technique. This has the purpose of alternately applying positive and negative voltages to the crystal in order to keep it oscillating. This method also ensures that the crystal oscillates at the most accurate frequency possible.
The SG-210SCD 66.6667 ML3 oscillator is capable of providing a wide frequency range. This range is adjustable from a base frequency of 3.000MHz to a maximum frequency of 66.6667MHz. This wide frequency range is useful for applications that require a very precise signal, such as radio communication and navigation systems.
The SG-210SCD 66.6667 ML3 oscillator is a highly accurate device, and is capable of providing a very low phase noise performance. This ensures that the signal produced by this oscillator is very stable and doesn’t suffer from any signal discrepancies. In addition, the output of the SG-210SCD 66.6667 ML3 is designed for coaxial cable or printed circuit applications. This makes it a very versatile device.
In addition, the SG-210SCD 66.6667 ML3 oscillator is designed to operate over a wide temperature range, from -20℃ to +70℃. This makes this oscillator suitable for applications where the conditions vary significantly from day to day. This makes it a reliable and robust device.
The SG-210SCD 66.6667 ML3 can be used in numerous applications where precise frequency generation is required. For instance, it can be used in medical ultrasound scanners, police radars, satellite receivers, and numerous other systems. Moreover, this oscillator can be used to provide accurate reference clocks for high-speed data transmission systems requiring a very precise reference clock.
Overall, the SG-210SCD 66.6667 ML3 oscillator is a highly reliable, accurate, and versatile device which can be used in various radio communication and navigation systems. This oscillator utilizes a quartz crystal and push-pull technique to generate an accurate, low phase noise signal over a wide temperature range. In addition, this oscillator is highly versatile and can be used in numerous applications requiring accurate signal generation.
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