
Allicdata Part #: | MA-30633.3330M-C:ROHS-ND |
Manufacturer Part#: |
MA-306 33.3330M-C: ROHS |
Price: | $ 0.64 |
Product Category: | Crystals, Oscillators, Resonators |
Manufacturer: | Epson |
Short Description: | CRYSTAL SMD |
More Detail: | 33.333MHz ±50ppm Crystal 18pF 60 Ohms 4-SOJ, 5.50m... |
DataSheet: | ![]() |
Quantity: | 1000 |
100 +: | $ 0.57834 |
Series: | MA-306 |
Part Status: | Active |
Type: | MHz Crystal |
Frequency: | 33.333MHz |
Frequency Stability: | ±30ppm |
Frequency Tolerance: | ±50ppm |
Load Capacitance: | 18pF |
ESR (Equivalent Series Resistance): | 60 Ohms |
Operating Mode: | Fundamental |
Operating Temperature: | -20°C ~ 70°C |
Ratings: | -- |
Mounting Type: | Surface Mount |
Package / Case: | 4-SOJ, 5.50mm pitch |
Size / Dimension: | 0.315" L x 0.126" W (8.00mm x 3.20mm) |
Height - Seated (Max): | 0.100" (2.54mm) |
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Crystals: MA-306 33.3330M-C: ROHS Application Field and Working Principle
Crystals are the most versatile of all electronic components and are used in many kinds of electronic equipment. MA-306 33.3330M-C: ROHS crystals have specific applications in radio frequency circuits and have a wide range of applications in aviation, transportation, industrial and consumer products. In this article, we will discuss the application field and working principle of MA-306 33.3330M-C: ROHS crystals.
Application Field of MA-306 33.3330M-C: ROHS Crystals:
MA-306 33.3330M-C: ROHS crystals are used for frequency control in radio frequency circuits that operate at frequencies of 0.1 MHz to 5.0MHz. The most common application for these crystals is for frequency control in Radio Frequency Identification (RFID) systems, which are used in a variety of applications from security, to inventory tracking systems, to communication systems. The crystals are also used in a wide range of consumer products such as radios, TVs, cell phones, and MP3 players. Other industries, such as automotive and aerospace, also use these crystals.
Working Principle of MA-306 33.3330M-C: ROHS Crystals:
MA-306 33.3330M-C: ROHS crystals are based on the principle of piezoelectricity. Piezoelectricity is the phenomenon wherein a pressure applied to a crystal will result in the generation of an electrical signal. In the case of the MA-306 33.3330M-C: ROHS crystals, this electric signal is then used to control the frequency of oscillation for the circuit and provide frequency stability for the circuit.
The crystal is composed of two layers of quartz crystal, which are mounted on a stainless steel shim to form the oscillator. The two quartz layers are mounted in such a way that one layer is free to move and the other is fixed. When a voltage is applied to the fixed layer, the free layer will move and the quartz crystal will oscillate at its resonant frequency. This phenomenon is known as the \'piezoelectric effect\'.
The process of piezoelectricity is based on the principle that when a force is applied to the quartz crystal, it will create a voltage in the crystal. The voltage generated by the crystal is proportional to the applied force, and this is known as the \'piezoelectric effect\'. The MA-306 33.3330M-C: ROHS crystals use this effect to generate a voltage and then use this voltage to control the frequency of the oscillation.
The flexibility of the MA-306 33.3330M-C: ROHS crystals makes them ideal for a variety of applications in the industry. As the crystals offer a wide frequency range and excellent frequency stability, they are used in applications such as radio frequency identification systems and communication systems.
Conclusion:
MA-306 33.3330M-C: ROHS crystals are used for frequency control in radio frequency circuits and have a wide range of applications in a variety of industries, such as aviation, transportation, industrial and consumer products. The working principle of these crystals is based on the piezoelectric effect, wherein a pressure applied to a crystal will generate an electrical signal that is used to control the oscillation of the circuit.
The specific data is subject to PDF, and the above content is for reference
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