
Allicdata Part #: | SE2515TR-ND |
Manufacturer Part#: |
MA-505 40.0000M-C0 |
Price: | $ 0.00 |
Product Category: | Crystals, Oscillators, Resonators |
Manufacturer: | Epson |
Short Description: | CRYSTAL 40.0000MHZ 18PF SMD |
More Detail: | 40MHz ±50ppm Crystal 18pF 80 Ohms 4-SOJ, 3.30mm pi... |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | MA-505 |
Packaging: | Tape & Reel (TR) |
Part Status: | Obsolete |
Type: | MHz Crystal |
Frequency: | 40MHz |
Frequency Stability: | ±30ppm |
Frequency Tolerance: | ±50ppm |
Load Capacitance: | 18pF |
ESR (Equivalent Series Resistance): | 80 Ohms |
Operating Mode: | 3rd Overtone |
Operating Temperature: | -20°C ~ 70°C |
Ratings: | -- |
Mounting Type: | Surface Mount |
Package / Case: | 4-SOJ, 3.30mm pitch |
Size / Dimension: | 0.500" L x 0.200" W (12.70mm x 5.08mm) |
Height - Seated (Max): | 0.181" (4.60mm) |
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Crystals are a fundamental part of many technologies that we use each day, from a wide range of electronic products such as watches, computers, LCD TVs and smartphones to a variety of communication and navigation devices. The MA-505 40.0000M-C0 crystal is a type of quartz crystal used in a wide range of signal processing applications, where its highly stable frequency and small size make it an ideal choice for many signal processing systems and applications. In this article, we will explore the application fields and working principle of the MA-505 40.0000M-C0 crystal.
Applications
The MA-505 40.0000M-C0 crystal is used in a variety of signal processing applications, including radar, sonar, and other military communication systems. This crystal is also used in automobiles, where it is used to regulate the speed of the engine, as well as to control the fuel injection system and other electronic control modules. It is also used in a variety of medical imaging, laboratory testing and other scientific research applications.
The MA-505 40.0000M-C0 crystal is also used for frequency synthesis, in which its highly stable frequency makes it ideal for controlling the frequency of a generated signal. This crystal can also be used to regulate the frequency of local oscillators, making them useful for radio communication systems. Additionally, the MA-505 40.0000M-C0 crystal is often used in telecommunications systems, where it is used to generate and regulate high-frequency signals.
Working Principle
The MA-505 40.0000M-C0 crystal is a quartz crystal that is composed of a piezoelectric material, such as quartz, that is cut and polished into a thin disc. The thickness of the disc is typically between 25 and 50 micrometers. When an electrical voltage is applied to the crystal, it produces a mechanical strain that causes the crystal to vibrate. The frequency of the mechanical vibration depends on the dimensions of the crystal, and is usually predictable and stable.
The electrical signal applied to the MA-505 40.0000M-C0 crystal is regulated by an external circuit, which is designed to maintain a constant voltage and supply an appropriate frequency signal. The frequency output from the crystal is also controlled by the external components, as well as the load on the circuit. The amount of load required to maintain a constant frequency is determined by the capacitance of the crystal and the external circuit.
When the MA-505 40.0000M-C0 crystal is used for frequency synthesis, the output signal is a combination of the crystal oscillation frequency and the signal from the external circuit. The signal from the crystal is determined by the capacitance of the crystal and the signal from the external circuit, which is typically determined by a digital signal processor or a microcontroller.
Conclusion
The MA-505 40.0000M-C0 crystal is an important type of quartz crystal used in signal processing applications, where its highly stable frequency and small size make it ideal for many signal processing systems and applications. From military communications systems to laboratory testing and other scientific research applications, the MA-505 40.0000M-C0 crystal is used for a variety of purposes, and its working principle depends on the precisely controlled electrical signals applied to the crystal and the external components surrounding it.
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