MUBW10-12A7 Allicdata Electronics
Allicdata Part #:

MUBW10-12A7-ND

Manufacturer Part#:

MUBW10-12A7

Price: $ 35.09
Product Category:

Discrete Semiconductor Products

Manufacturer: IXYS
Short Description: CONVERTER/BRAKE/INVERTER 2.3VCE
More Detail: IGBT Module NPT Three Phase Inverter with Brake 12...
DataSheet: MUBW10-12A7 datasheetMUBW10-12A7 Datasheet/PDF
Quantity: 1000
6 +: $ 31.90000
Stock 1000Can Ship Immediately
$ 35.09
Specifications
Current - Collector Cutoff (Max): 600µA
Base Part Number: MUBW
Supplier Device Package: E2
Package / Case: E2
Mounting Type: Chassis Mount
Operating Temperature: -40°C ~ 125°C (TJ)
NTC Thermistor: Yes
Input: Three Phase Bridge Rectifier
Input Capacitance (Cies) @ Vce: 0.6nF @ 25V
Series: --
Vce(on) (Max) @ Vge, Ic: 2.7V @ 15V, 10A
Power - Max: 105W
Current - Collector (Ic) (Max): 20A
Voltage - Collector Emitter Breakdown (Max): 1200V
Configuration: Three Phase Inverter with Brake
IGBT Type: NPT
Part Status: Active
Description

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The MUBW10-12A7 is a type of module that belongs to a class of components known as Insulated Gate Bipolar Transistors (IGBTs). IGBTs are used for the creation of various electronic devices, such as amplifiers and power converters. They have several advantages over other components, such as their low power consumption, their higher efficiency, and their wide voltage operation range. In this regard, these modules have become essential components of many electronic circuits. This article aims to provide an overview of the application field and working principle of MUBW10-12A7 modules.

An IGBT module consists of three main components – an emitter, a gate, and a collector. The emitter is responsible for the flow of current in the device and the gate and collector are responsible for controlling the current flow. As such, the gate works as a switch, allowing current to pass when the gate is activated and blocking it when it is deactivated. As for the collector, it is used to store charge and the gate is used to gate the current from the collector. The gate-collector structure is the most important characteristic of an IGBT module, as it allows for the efficient switching and control of large currents.

IGBTs are often used in the production of power converters and amplifiers. They are capable of switching large currents in a highly efficient manner, and thus they are often used in the production of drivers, power electronics and associated systems. IGBTs are also used in the production of inverters, which convert AC power to DC power in order to be used by various devices. They are particularly well-suited for this purpose due to their low power consumption and the ability to switch currents quickly and efficiently.

MUBW10-12A7 is a type of IGBT module that has been designed for use in high-power applications. It has an operating voltage of 1200 volts and a current limit of 10 amperes. The module can switch at frequencies up to 200 kHz, allowing for the production of devices with high speed and low noise. The module also has low switch loss and fast switching times, making it suitable for applications in which high speed is required. Furthermore, the module is extremely reliable, making it ideal for use in industrial applications.

The working principle of the MUBW10-12A7 module is based on the principle of positive voltage gating. When a positive voltage is applied to the gate of the module, the collector-emitter path is opened, allowing current to flow through the device. This is done in order to control the current flow in the module and make sure that it is within safe limits. The current flow can then be controlled by adjusting the gate voltage. The module is highly reliable, as it can typically handle large amounts of current with very little power loss.

In conclusion, the MUBW10-12A7 module is an IGBT module that has been specifically designed for the production of power electronics and related systems. It has an operating voltage of 1200 volts and a current limit of 10 amperes. The module has low switch loss and fast switching times, making it suitable for applications in which high speed is required. It also has a high reliability, making it ideal for use in industrial applications. Its working principle is based on a positive voltage gating system, allowing current to be controlled safely and efficiently.

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

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