PQ3TR5M3BZZ Allicdata Electronics
Allicdata Part #:

425-1738-5-ND

Manufacturer Part#:

PQ3TR5M3BZZ

Price: $ 0.83
Product Category:

Integrated Circuits (ICs)

Manufacturer: Sharp Microelectronics
Short Description: IC REG LINEAR 3.3V 500MA SC63
More Detail: Linear Voltage Regulator IC Positive Fixed 1 Outpu...
DataSheet: PQ3TR5M3BZZ datasheetPQ3TR5M3BZZ Datasheet/PDF
Quantity: 2927
1 +: $ 0.75600
10 +: $ 0.66780
25 +: $ 0.60329
100 +: $ 0.52788
250 +: $ 0.46325
500 +: $ 0.40937
1000 +: $ 0.32319
2500 +: $ 0.30164
Stock 2927Can Ship Immediately
$ 0.83
Specifications
Voltage Dropout (Max): 0.5V @ 300mA
Supplier Device Package: SC-63
Package / Case: TO-252-6, DPak (5 Leads + Tab)
Mounting Type: Surface Mount
Operating Temperature: -20°C ~ 80°C
Protection Features: Over Current, Over Temperature
Control Features: Enable, Reset
PSRR: 60dB (120Hz)
Current - Quiescent (Iq): 10mA
Current - Output: 500mA
Series: --
Voltage - Output (Max): --
Voltage - Output (Min/Fixed): 3.3V
Voltage - Input (Max): 10V
Number of Regulators: 1
Output Type: Fixed
Output Configuration: Positive
Part Status: Obsolete
Packaging: Tube 
Description

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PQ3TR5M3BZZ is a type of voltage regulator modeled by a linear equation. Voltage regulators are an integral part of the modern world’s power management system, serving to control the current and voltage running through our power grids, allowing components and devices to draw exactly the amount of current they require without damaging them.

PQ3TR5M3BZZ follows the basic form of a linear regulator, using a feedback loop to remain active against changing input voltage as well as load current. Its construction is based on a three stage circuit, regulating the voltage using two stages of voltage adjustment transistors and one stage of current amplification transistors.

The first stage is a voltage adjustment stage which creates a base voltage for the voltage regulator, which is then adjusted by the second stage - an error amplifier - according to its feedback principle. The error amplifier serves to regulate the output voltage such that it matches a predetermined target voltage by means of an external reference signal. This voltage is then sent to the final stage in the form of a signal which is amplified by a current-amplifying transistor, thus allowing the current to be increased or decreased according to the input signal.

The working of PQ3TR5M3BZZ is based on five key components. The first component is the rectifiying diode, which is used to allow only positive current flow to the output of the regulator. The second component is the voltage adjustment transistor, which is responsible for controlling the output voltage of the regulator. The third component is the error amplifier, which serves to monitor the output voltage of the regulator by comparing it to the reference voltage, and adjusts the output accordingly. The fourth component is the current-amplifying transistor, which is responsible for controlling the current to the output of the regulator. Finally, the fifth component is the feedback resistor, which is used to maintain a constant voltage at the output of the regulator.

PQ3TR5M3BZZ voltage regulator can be used in many applications, such as computer systems, industrial systems, robotics, medical equipment, and automotive systems. In these applications, the regulator is used to maintain a steady DC voltage output by controlling the amount of current which is supplied to the load. It is designed to provide reliable, stable output performance while operating over a wide temperature range and under rapidly changing load conditions. Additionally, the regulator is designed to provide maximum efficiency with minimal power loss, making it ideal for usage in high-power applications.

To summarize, PQ3TR5M3BZZ is a linear voltage regulator which utilizes a three-stage circuit in order to regulate the output voltage of a power source according to a reference voltage. It employs a rectifying diode and several transistors in order to monitor and adjust the output, and is capable of working under a wide range of temperatures and load conditions. It is commonly used in computer systems, industrial systems, robotics, medical equipment, and automotive systems, where it is used to ensure a steady DC voltage output from the power source.

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

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