1214-300 Allicdata Electronics
Allicdata Part #:

1214-300-ND

Manufacturer Part#:

1214-300

Price: $ 0.00
Product Category:

Discrete Semiconductor Products

Manufacturer: Microsemi Corporation
Short Description: TRANS RF BIPO 88W 4A 55KT
More Detail: RF Transistor NPN 50V 4A 1.2GHz ~ 1.4GHz 88W Chass...
DataSheet: 1214-300 datasheet1214-300 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Bulk 
Part Status: Obsolete
Transistor Type: NPN
Voltage - Collector Emitter Breakdown (Max): 50V
Frequency - Transition: 1.2GHz ~ 1.4GHz
Noise Figure (dB Typ @ f): --
Gain: 7dB
Power - Max: 88W
DC Current Gain (hFE) (Min) @ Ic, Vce: 20 @ 500mA, 5V
Current - Collector (Ic) (Max): 4A
Operating Temperature: 200°C (TJ)
Mounting Type: Chassis Mount
Package / Case: 55KT
Supplier Device Package: 55KT
Description

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The 1214-300 applications field and working principle applies to transistors, specifically bipolar (BJT) and RF, and explains how these transistors work. This article will cover the basic concepts of bipolar transistors, the types of transistors and their functionality, and the principles behind RF transistors.

Bipolar Transistors

A bipolar transistor is a type of transistor that utilizes both electrons and holes to conduct current. This type of transistor is composed of either p-type and n-type semi-conductive material and an intermediary "base" layer that acts as a barrier between the two conducting materials. By applying a voltage to the base layer, the electrons and holes are forced to move through the transistor, creating a current.

Types of Transistors and Their Functionality

There are two main types of bipolar transistors that are commonly used in RF applications: the NPN transistor and the PNP transistor. The NPN transistor is composed of a p-type semiconductor material surrounded by two n-type semiconductor materials. In this type of transistor, the flow of current occurs when electrons move from the p-type material to the n-type material and through the base layer. The PNP transistor is composed of an n-type semiconductor material surrounded by two p-type semiconductor material. In this type of transistor, the flow of current occurs when holes move from the p-type material to the n-type material and through the base layer.

The Principles Behind RF Transistors

One of the primary uses of the 1214-300 in RF applications is as an oscillator, or a device that produces a continuous periodic electrical signal. In this type of application, the 1214-300 is used to create an alternating current (AC) signal. The AC signal is then amplified by the transistor and used to produce a signal at a higher frequency, typically in the range of 1 MHz to 300 GHz. Another application of the 1214-300 in RF applications is as an amplifier. In this type of application, the 1214-300 is used to increase the power of an incoming signal. This helps to compensate for any losses that may occur during transmission. The transistor amplifies the signal and increases its power before it is sent to its destination. Finally, the 1214-300 can also be used as a switch in RF applications. In this type of application, the transistor is used to control the on and off state of a device or circuit. The transistor is used to open or close a circuit, allowing for the switching of a device or circuit on or off.

Conclusion

The 1214-300 applications field and working principle applies to transistors, specifically bipolar (BJT) and RF, and explains how these transistors work. This article has examined the basic concepts of bipolar transistors, the types of transistors and their functionality, and the principles behind RF transistors. It has also looked at the primary uses of the 1214-300, such as oscillators, amplifiers, and switches. This information can be invaluable when attempting to understand the functionalities and applications of the 1214-300.

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

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