The DSC6183CE1A-380K000 is a state-of-the-art MEMS oscillator from Microchip Technology, designed to provide exceptional timing solutions for a wide array of electronic applications. This precision device is part of Microchip's DSC6000 family of high-performance silicon MEMS oscillators that offer an ideal alternative to traditional crystal oscillators.
Key Features
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Frequency Range: The oscillator operates at a fixed frequency of 38.000 MHz, which is suitable for high-speed digital systems that require a stable clock signal.
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Supply Voltage: It is designed to work with a supply voltage of 1.8V, making it compatible with low-power devices and helping to reduce overall power consumption.
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Stability: The DSC6183CE1A-380K000 offers excellent frequency stability, ensuring reliable performance even under varying environmental conditions.
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Package: Enclosed in a compact 6-SMD, no lead package, this oscillator is designed for space-constrained applications without compromising on performance.
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Temperature Range: It operates across an industrial temperature range, making it suitable for use in environments that experience extreme temperatures.
Applications
The DSC6183CE1A-380K000 is versatile and can be used in a broad spectrum of applications. These include but are not limited to:
- Networking: Routers, switches, and other networking equipment that require precise timing.
- Consumer Electronics: High-definition televisions, gaming consoles, and home theater systems.
- Industrial: Factory automation, robotics, and industrial control systems.
- Telecommunications: Base stations, mobile phones, and other communication devices.
Benefits
The MEMS technology incorporated into the DSC6183CE1A-380K000 provides several advantages over traditional crystal oscillators, including better shock and vibration resistance, smaller size, and lower power consumption. Its precise and stable frequency output is crucial for system performance, making it a reliable choice for designers looking to enhance their products with a high-quality timing solution.