PHPT610030PKX Allicdata Electronics

PHPT610030PKX Discrete Semiconductor Products

Allicdata Part #:

1727-2267-2-ND

Manufacturer Part#:

PHPT610030PKX

Price: $ 0.19
Product Category:

Discrete Semiconductor Products

Manufacturer: Nexperia USA Inc.
Short Description: TRANS 2PNP 100V 3A 8LFPAK
More Detail: Bipolar (BJT) Transistor Array 2 PNP (Dual) 100V 3...
DataSheet: PHPT610030PKX datasheetPHPT610030PKX Datasheet/PDF
Quantity: 1500
1500 +: $ 0.17188
3000 +: $ 0.15577
7500 +: $ 0.14503
10500 +: $ 0.14324
Stock 1500Can Ship Immediately
$ 0.19
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Active
Transistor Type: 2 PNP (Dual)
Current - Collector (Ic) (Max): 3A
Voltage - Collector Emitter Breakdown (Max): 100V
Vce Saturation (Max) @ Ib, Ic: 360mV @ 200mA, 2A
Current - Collector Cutoff (Max): 100nA
DC Current Gain (hFE) (Min) @ Ic, Vce: 150 @ 500mA, 10V
Power - Max: 1.25W
Frequency - Transition: 125MHz
Operating Temperature: 175°C (TJ)
Mounting Type: Surface Mount
Package / Case: SOT-1205, 8-LFPAK56
Supplier Device Package: LFPAK56D
Description

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Introduction

The PHPT610030PKX is an integrated array of four bipolar transistors, commonly known as a "BJT" array. This device can be used in a variety of applications, including amplifying, switching, and logic level shifting. This article will discuss the application fields and working principles of the PHPT610030PKX array.

Application Areas

The PHPT610030PKX is used in a variety of applications, such as amplifying, switching, and logic level shifting. It is well-suited for these applications due to its high gain and fast response time. Amplification applications include power amplification, audio, video, and radar systems. The PHPT610030PKX has a maximum collector-to-emitter voltage of 230 V and a minimum base current of 2 mA, making it ideal for high-power applications. It can also be used for inverting and non-inverting amplifier circuits. Switching applications include power application, gate drive, and load control. The PHPT610030PKX has a low power dissipation and a high current gain, making it well-suited for power applications. In addition, the output voltage is scalable, allowing for wide input voltage range and precise control of the output voltage. The device is also suitable for gate drive applications, as the response time is fast enough to handle high-frequency switching signals. Logic level shifting applications are also possible due to the wide input voltage range and precise control of the output voltage. Logic level shifting is used to convert an input signal from one voltage level to another in order to ensure compatibility between two systems. The PHPT610030PKX is suitable for this application as it has a wide input voltage range, allowing for compatibility between different systems.

Working Principle

The PHPT610030PKX array is a bipolar transistors integrated circuit composed of four NPN transistors. Each transistor is connected to a respective collector, emitter, and base. The current flows through the collector and the emitter when the base is forward biased. When the base-emitter junction is forward biased, current flows from the collector to the emitter, creating a voltage across the collector-emitter junction. This voltage is known as the collector-emitter voltage, or Vce. The collector-emitter voltage determines the voltage gain of the transistor. The base current, or Ib, controls the collector current, or Ic. The ratio of the collector current to the base current is known as the current gain, or hFE. The greater the current gain, the higher the output voltage. The PHPT610030PKX also features internal features such as resistors and capacitors, which enable the device to act as an amplifier or buffer. The internal resistors and capacitors enable the device to perform the necessary tasks for applications such as amplifying and logic level shifting.

Conclusion

The PHPT610030PKX is an integrated array of four bipolar transistors, commonly known as a "BJT" array. This device is well-suited for a variety of applications, including power amplification, switching, and logic level shifting. It has a high current gain, low power dissipation, and a wide input voltage range, making it an ideal choice for these applications. At the same time, the internal components of the device provide the necessary components for the device to act as an amplifier or buffer. Therefore, this device can be used in a variety of applications and can provide very precise control of the output voltage.

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

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