2SP0115T2A0-06 Allicdata Electronics
Allicdata Part #:

1810-1037-ND

Manufacturer Part#:

2SP0115T2A0-06

Price: $ 62.41
Product Category:

Integrated Circuits (ICs)

Manufacturer: Power Integrations
Short Description: IC DUAL GATE DRIVER
More Detail: Half-Bridge Gate Driver IC Module
DataSheet: 2SP0115T2A0-06 datasheet2SP0115T2A0-06 Datasheet/PDF
Quantity: 30
1 +: $ 56.73150
10 +: $ 54.98640
25 +: $ 50.88540
100 +: $ 43.64010
Stock 30Can Ship Immediately
$ 62.41
Specifications
Logic Voltage - VIL, VIH: --
Supplier Device Package: Module
Package / Case: Module
Mounting Type: Surface Mount
Operating Temperature: -20°C ~ 85°C (TA)
Rise / Fall Time (Typ): 5ns, 10ns
High Side Voltage - Max (Bootstrap): 600V
Input Type: --
Current - Peak Output (Source, Sink): 8A, 15A
Series: SCALE™-2
Voltage - Supply: 14.5 V ~ 15.5 V
Gate Type: IGBT
Number of Drivers: 2
Channel Type: Independent
Driven Configuration: Half-Bridge
Part Status: Active
Packaging: Tray 
Description

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PMIC (Power Management Integrated Circuits) are specially designed integrated circuits (ICs) used to manage power in different electronic devices. Gate drivers are a type of PMIC device used to drive output signals (like power or ground) to a target device, typically a field-effect transistor (FET). In this article we’ll discuss the application fields and working principle of 2SP0115T2A0-06, a type of gate driver.

Applications of 2SP0115T2A0-06

2SP0115T2A0-06 gate drivers can be used in a variety of applications, such as motor, motor driver, DC/DC and AC/DC converter, and industrial applications. The device is designed to drive two independent N-channel FETs, each sourced from the same control signal. This makes the device well suited to applications requiring the controlled parallel operation of two FETs. For example, the device can be used in a motor driver, where two load-dependent FETs are required to drive the motor. This device could also be used in DC/DC or AC/DC converters, as it provides a means of controlling the switching of two FETs by a single control signal. In industrial applications, the device can be used to control the operation of two independent FETs, such as in a process control system.

Working Principle of 2SP0115T2A0-06

The 2SP0115T2A0-06 gate driver operates on the principle of a low-side pre-driver circuit, and is designed to drive two independent N-channel FETs. The device receives a single control signal, which is then used to drive the two FETs in parallel. The control signal is amplified and then used to drive the output FETs. Since the output FETs are sourced from the same signal, they must be operated simultaneously. This ensures that the device is capable of delivering high output current, as both FETs are driven in parallel.

The device also features an enable signal (EN) which allows for the inhibiting of the output stages if required. This is particularly useful in motor drive and industrial applications, where it is desirable to be able to quickly disable the output stages. The device also features a shutdown signal (SD) which can be used to disable all power to the device.

In addition to the primary control signal and enable/shutdown signals, the device features a number of other features which are designed to provide additional protection. These include a slew rate control, an inrush current limiter and an under-voltage lock out (UVLO) circuit. The slew rate control feature prevents large inrush currents when switching, while the inrush current limiter prevents the FETs from becoming over-driven. Finally, the UVLO circuit monitors the input voltage of the device and is designed to shut down the device in the event of a voltage drop below a certain threshold.

In summary, 2SP0115T2A0-06 gate drivers are a type of PMIC device used to drive output signals to a target device, typically a field-effect transistor (FET). The device has a variety of applications, including motor, motor driver, DC/DC and AC/DC converter and industrial applications. The device operates on a low-side pre-driver circuit, and features an enable signal and shutdown signal. The device also features a number of protective features, such as slew rate control, an inrush current limiter and an under-voltage lock out (UVLO) circuit.

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

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