BCX55-10,115 Allicdata Electronics
Allicdata Part #:

1727-4915-2-ND

Manufacturer Part#:

BCX55-10,115

Price: $ 0.08
Product Category:

Discrete Semiconductor Products

Manufacturer: Nexperia USA Inc.
Short Description: TRANS NPN 60V 1A SOT89
More Detail: Bipolar (BJT) Transistor NPN 60V 1A 180MHz 1.25W S...
DataSheet: BCX55-10,115 datasheetBCX55-10,115 Datasheet/PDF
Quantity: 1000
1000 +: $ 0.07779
2000 +: $ 0.07001
5000 +: $ 0.06612
10000 +: $ 0.06029
25000 +: $ 0.05640
50000 +: $ 0.05186
Stock 1000Can Ship Immediately
$ 0.08
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Active
Transistor Type: NPN
Current - Collector (Ic) (Max): 1A
Voltage - Collector Emitter Breakdown (Max): 60V
Vce Saturation (Max) @ Ib, Ic: 500mV @ 50mA, 500mA
Current - Collector Cutoff (Max): 100nA (ICBO)
DC Current Gain (hFE) (Min) @ Ic, Vce: 63 @ 150mA, 2V
Power - Max: 1.25W
Frequency - Transition: 180MHz
Operating Temperature: 150°C (TJ)
Mounting Type: Surface Mount
Package / Case: TO-243AA
Supplier Device Package: SOT-89-3
Base Part Number: BCX55
Description

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Examining the BCX55-10,115 Transistor

The BCX55-10,115 transistor is a device capable of amplifying current. It is a single bipolar junction transistor featuring an NPN silicon semiconductor. The BCX55-10,115 is typically used in switching power supplies, computer peripheral applications, and a wide range of other common electronic devices.

Technical Overview

The BCX55-10,115 has a wide range of features designed for specific applications. It features a voltage range of 20V up to 80V, a current rating of 0.15A and a power dissipation rating of 625mW. It has a high gain current transfer ratio of 230 to 250.

The BCX55-10,115 has a junction capacitance of 0.12pF and a thermal resistance of 6.3k Ω/2. It operates in a temperature range of -55°C to +150°C, and a storage temperature range of -55°C to +150°C. The BCX55-10,115 also has a wide range of maximum ratings including a collector current rating of 0.15A, a collector-emitter voltage rating of 80V, a base current rating of 0.1A and a base-emitter voltage rating of 7V.

Applications

The BCX55-10,115 transistor is most commonly utilized in switching power supply designs. It can be used in a variety of other applications including computer peripherals and other digital devices. It is also ideal for a range of power-saving applications due to its rating for reduced consumption.

Other common applications for the BCX55-10,115 include audio amplifiers, voltage regulators, and a wide range of small-signal switching designs. It is an ideal choice for consumer electronics due to its low thermal resistivity and high current gain.

Working Principle

The BCX55-10,115 transistor operates on the principle of a bipolar junction transistor. It utilizes the current that is injected into the base of the transistor to control the current flowing between the collector and emitter. The applied current between the base and emitter creates a “forward” bias which causes current to flow through the collector and emitter junction.

Once this is achieved, the BCX55-10,115 transistor has a gain, or current amplification factor. It allows a tiny amount of current to control a large current between the collector and emitter. It is also capable of amplifying the voltage as it passes through the emitter and collector.

The BCX55-10,115 transistor is also capable of performing analog switching. This means that it is able to switch between two different states in response to a control signal. It can switch from a conducting state to a non-conducting state, allowing for the accurate control of the current and voltage passing through the circuit.

Conclusion

The BCX55-10,115 is a single bipolar junction transistor featuring an NPN silicon semiconductor. It has a wide range of features designed for specific applications and operates on the principle of a bipolar junction transistor. The BCX55-10,115 is most commonly utilized in switching power supply designs and is capable of performing analog switching. It is an ideal choice for consumer electronics due to its low thermal resistivity and high current gain.

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

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