UC3706NG4 Allicdata Electronics
Allicdata Part #:

UC3706NG4-ND

Manufacturer Part#:

UC3706NG4

Price: $ 4.80
Product Category:

Integrated Circuits (ICs)

Manufacturer: Texas Instruments
Short Description: IC HS MOSFET DRIVER 16-DIP
More Detail: Low-Side Gate Driver IC Inverting, Non-Inverting 1...
DataSheet: UC3706NG4 datasheetUC3706NG4 Datasheet/PDF
Quantity: 1000
75 +: $ 4.36783
Stock 1000Can Ship Immediately
$ 4.8
Specifications
Logic Voltage - VIL, VIH: 0.8V, 2.2V
Base Part Number: UC3706
Supplier Device Package: 16-PDIP
Package / Case: 16-DIP (0.300", 7.62mm)
Mounting Type: Through Hole
Operating Temperature: 0°C ~ 70°C (TA)
Rise / Fall Time (Typ): 40ns, 30ns
Input Type: Inverting, Non-Inverting
Current - Peak Output (Source, Sink): 1.5A, 1.5A
Series: --
Voltage - Supply: 5 V ~ 40 V
Gate Type: N-Channel MOSFET
Number of Drivers: 2
Channel Type: Independent
Driven Configuration: Low-Side
Part Status: Active
Packaging: Tube 
Description

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Gate Drivers are a type of Power Management Integrated Circuit (PMIC). These specialized integrated circuits provide an interface between a system\'s logic switching circuits, such as transistors, and the peripheral circuits such as motors, solenoids, valves, or lamps. Gate Drivers provide the necessary electrical potential to turn some of the input signals on or off in order to control the system\'s output.

The UC3706NG4 is a gate driver IC that is typically used in systems that require a low-side, high-side, or complementary output. It is a 5th generation device that is meant to provide superior performance and reliability compared to previous generations. It has two independent high-side and two independent low-side outputs and features built-in protection features and can operate up to 37V. One of its key features is the ability to drive up to an 8-amp load current, making it suitable for controlling high-power circuitry.

The UC3706NG4 has a number of applications in which it can be used. It is commonly used in three-phase motor control, UPS systems, and Programmable Logic Controllers (PLCs). It is also used in various automotive applications such as braking systems, airbags, and traction control. The UC3706NG4 is also well-suited to be used in home automation applications, such as lighting and HVAC control applications.

In order to understand the working principle of the UC3706NG4, it is important to understand the operation and function of a gate driver. A gate driver is essentially an amplifier that controls the switching speed and voltage of an ELECTRICAL component. These components typically have a certain set of inputs, such as a supply voltage, a logic signal, and an output terminal. The gate driver amplifies the low-level logic input, increases the magnitude and speed of the switching signal, and then provides a higher voltage output which is used to actuate the component. The UC3706NG4 is designed to provide higher efficiency, improved surge protection, and a lower rise and fall time.

The UC3706NG4 features a number of features designed to improve its performance, such as the capability to provide 1.3A peak source and sink current. It also features a control input that can be used to control the switch times of the outputs and can be used to enable the output stages. The UC3706NG4 also features a thermal protection circuit which shuts down an output if the temperature gets too high. Additionally, it has a built-in half-bridge function which allows the output to be controlled with a single input.

In conclusion, the UC3706NG4 is a 5th generation gate driver IC that is well-suited for a variety of applications due to its robust design and high-performance feature set. It is capable of driving up to an 8-amp load current and features built-in protection features to keep it running smoothly. The UC3706NG4 is commonly used in three-phase motor control, UPS systems, and Programmable Logic Controllers (PLCs) as well as in various automotive applications. Its working principle relies on amplifying low-level logic inputs, increasing the magnitude and speed of the switching signal, and then providing a higher voltage output to actuate the component.

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

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