PBRC-2.00AR Allicdata Electronics
Allicdata Part #:

PBRC-2.00AR-ND

Manufacturer Part#:

PBRC-2.00AR

Price: $ 0.37
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: Kyocera International Inc. Electronic Components
Short Description: CER RES 2.0000MHZ SMD
More Detail: 2MHz Ceramic Resonator ±0.3% 200 Ohms -20°C ~ 80...
DataSheet: PBRC-2.00AR datasheetPBRC-2.00AR Datasheet/PDF
Quantity: 1000
2000 +: $ 0.33075
Stock 1000Can Ship Immediately
$ 0.37
Specifications
Series: PBRC-A, Kyocera
Packaging: Tape & Reel (TR) 
Part Status: Active
Type: Ceramic
Frequency: 2MHz
Frequency Stability: ±0.3%
Frequency Tolerance: ±0.5%
Features: --
Impedance: 200 Ohms
Operating Temperature: -20°C ~ 80°C
Mounting Type: Surface Mount
Package / Case: 2-SMD, Non-Standard
Size / Dimension: 0.291" L x 0.134" W (7.40mm x 3.40mm)
Height: 0.091" (2.30mm)
Description

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Resonators have been used in electronic designs since their introduction in the 1970s. The use of resonators has increased due to the emergence of microelectronics technology and modern high-speed computing systems. Resonators are essential components of any microelectronic system, and they play a major role in the engineering design process. The PBRC-2.00AR application field and working principle is an example of how resonators are used.

The PBRC-2.00AR application field includes a wide range of applications, such as telecommunications systems, power sources, signal chains and other advanced technologies. It is mainly used for signal processing and signal transmission. The working principle of the PBRC-2.00AR is based on a very simple idea – the piezoelectric effect. This effect occurs when a mechanical force is applied to a material, and it generates an electric current. As a result, piezoelectric materials are able to act as transducers, and can be used to transform mechanical vibration into electrical signals, and vice versa.

The PBRC-2.00AR consists of a piezoelectric material and an electronic circuit. The circuit consists of two main parts, a high-frequency oscillator and a low-frequency oscillator. When a signal is sent to the oscillator, the circuit produces an output signal, which is then amplified by the low-frequency oscillator. The amplified signal is then sent to the piezoelectric material, where it is transformed into mechanical vibrations. These vibrations will then propagate through the material, and eventually reach a predetermined frequency.

The PBRC-2.00AR is an example of a resonator, which is a device that is used to amplify and sustain a signal. Resonators are commonly used in telecommunication systems, power sources, signal chains and other electronics applications to help maintain or amplify a signal. They are able to do this by using the piezoelectric effect to convert mechanical energy into electrical energy, and then transform the electrical energy back into mechanical energy in order to create an amplified signal.

Resonators are also important components in modern digital systems. By converting mechanical energy into electrical signals, they are able to generate digital signals, which can then be used by digital systems to store and process data. By converting electrical signals back into mechanical energy, they can also be used to generate analog signals, which are essential for analog systems.

The PBRC-2.00AR application field and working principle demonstrate how resonators are used in modern electronic systems. Resonators can be used to both transform mechanical energy into electrical signals as well as to amplify and sustain a signal. By doing so, they are essential components in modern electronic systems, and are key components of any microelectronic system.

The specific data is subject to PDF, and the above content is for reference

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