MRFE6P3300HR3,128

NXP USA Inc. MRFE6P3300HR3,128

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  • MRFE6P3300HR3,128
  • NXP USA Inc.
  • RF 2-ELEMENT, ULTRA HIGH FREQUEN
  • Transistors - Bipolar (BJT) - Single
  • MRFE6P3300HR3,128 Datasheet
  • -
  • Bulk
  • Lead free / RoHS CompliantLead free / RoHS Compliant
  • 25688
  • Spot Inventory / Athorized Dstributor / Factory Excess Stock
  • 1 year quality assurance 》
  • Click to get rates

What is MRFE6P3300HR3,128

NXP USA Inc. Part Number MRFE6P3300HR3,128Transistors - Bipolar (BJT) - Single), developed and manufactured by NXP USA Inc., distributed globally by Jinftry. We distribute various electronic components from world-renowned brands and provide one-stop services, making us a trusted global electronic component distributor.

MRFE6P3300HR3,128 is one of the part numbers distributed by Jinftry, and you can learn about its specifications/configurations, package/case, Datasheet, and other information here. Electronic components are affected by supply and demand, and prices fluctuate frequently. If you have a demand, please do not hesitate to send us an RFQ or email us immediately [email protected] Please inquire about the real-time unit price, Data Code, Lead time, payment terms, and any other information you would like to know. We will do our best to provide you with a quotation and reply as soon as possible.

MRFE6P3300HR3,128 Specifications

  • Part NumberMRFE6P3300HR3,128
  • CategoryTransistors - Bipolar (BJT) - Single
  • ManufacturerNXP USA Inc.
  • DescriptionRF 2-ELEMENT, ULTRA HIGH FREQUEN
  • PackageBulk
  • Series-
  • Operating Temperature-
  • Mounting Type-
  • Package / Case-
  • Supplier Device Package-
  • Power - Max-
  • Transistor Type-
  • Current - Collector (Ic) (Max)-
  • Voltage - Collector Emitter Breakdown (Max)-
  • Vce Saturation (Max) @ Ib, Ic-
  • Current - Collector Cutoff (Max)-
  • DC Current Gain (hFE) (Min) @ Ic, Vce-
  • Frequency - Transition-

Application of MRFE6P3300HR3,128

Bipolar - Single as the main function of the amplifier and switching element. In amplifier applications, BJTS are capable of amplifying the current of the input signal to drive a larger load. In switching applications, the BJT can be used as a high-speed switch to turn the current path between the collector and the emitter on or off by controlling the base current. In addition, BJT can also be used to build oscillators, mixers and other circuits.

MRFE6P3300HR3,128 Datasheet

MRFE6P3300HR3,128 Datasheet , Bulk

MRFE6P3300HR3,128 Classification

Transistors - Bipolar (BJT) - Single

Bipolar (BJT) -Single refers to a single Bipolar Junction Transistor (BJT), which is a commonly used semiconductor device with two PN junctions, usually composed of an NPN or PNP structure. The BJT is capable of amplifying the current and regulating the current between the collector and emitter by controlling the base current. A single BJT is the basic building block of many electronic circuits and can be used for a variety of functions such as amplification, switching, and signal processing.

FAQ about Transistors - Bipolar (BJT) - Single

  • 1. What is a bipolar transistor?

    A bipolar transistor, or bipolar junction transistor (BJT), is an electronic device with three terminals, consisting of three semiconductors with different doping levels. It was successfully developed by William Shockley, John Bardeen and Walter Brattain of Bell Labs in 1947, marking the birth of semiconductor device technology.

  • 2. Are bipolar transistors still in use?

    Bipolar transistors are still in use and play an important role in many fields. Bipolar transistors, the full name of which is bipolar junction transistor (BJT), commonly known as triode, are electronic devices with three terminals, made of three parts of semiconductors with different doping levels. Its working principle involves the flow of two carriers, electrons and holes, so it is called bipolar.

  • 3. What are the two types of BJT transistors?

    There are two main types of BJT transistors: NPN and PNP.
    NPN transistor
    In an NPN transistor, current flows from the collector to the emitter. The base of an NPN transistor must be connected to a positive voltage for current to flow in. As the current flowing to the base increases, the transistor gradually turns on until the current is completely conducted from the collector to the emitter.
    PNP Transistor
    In a PNP transistor, the current flows from the emitter to the collector. Therefore, the base of the PNP transistor must be grounded. When the output current is small and the base is negative relative to the emitter, the transistor will turn on and a larger current will flow from the emitter to the collector. Basically, if the base and collector are negative relative to the emitter, the PNP transistor will conduct current from the emitter to the collector.

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NXP USA Inc.
NXP USA Inc.
NXP USA Inc. is a globally leading semiconductor company and a subsidiary of NXP in the United States.
The predecessor of NXP USA Inc. can be traced back to Philips' semiconductor division established...
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