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UCC27423DR
IC GATE DRVR LOW-SIDE 8SOIC
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- Mfr。パート #UCC27423DR
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- データシート UCC27423DR DataSheet
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仕様
| Part Status | Active |
| DigiKey Programmable | Not Verified |
| Driven Configuration | Low-Side |
| Channel Type | Independent |
| Number of Drivers | 2 |
| Gate Type | MOSFET (N-Channel, P-Channel) |
| Voltage - Supply | 4V ~ 15V |
| Logic Voltage - VIL, VIH | 1V, 2V |
| Current - Peak Output (Source, Sink) | 4A, 4A |
| Input Type | Inverting |
| Rise / Fall Time (Typ) | 20ns, 15ns |
| Operating Temperature | -40°C ~ 125°C (TA) |
| Mounting Type | Surface Mount |
| Package / Case | 8-SOIC (0.154", 3.90mm Width) |
| Supplier Device Package | 8-SOIC |
| Base Product Number | UCC27423 |
概要
Description
The UCC27423DR is a dual high-speed low-side power MOSFET driver from Texas Instruments. Designed to improve power efficiency and performance, it provides high current drive capability with fast switching speeds, making it suitable for driving large capacitive loads such as power MOSFETs and IGBTs. The device features two independent channels, each capable of sourcing and sinking peak currents of up to 4A, which enables efficient driving of two separate power stages.
The UCC27423DR operates within a wide supply voltage range and is equipped with TTL and CMOS compatible inputs, ensuring compatibility with a variety of digital control signals. The inclusion of built-in thermal shutdown and undervoltage lockout protection mechanisms enhances the reliability and safety of the device in demanding applications.
Housed in a small SOIC-8 package, the UCC27423DR is suitable for space-constrained designs. It is commonly used in applications such as switch-mode power supplies, motor control, and DC-DC converters, where high-speed, efficient driving of power transistors is essential.
The UCC27423DR operates within a wide supply voltage range and is equipped with TTL and CMOS compatible inputs, ensuring compatibility with a variety of digital control signals. The inclusion of built-in thermal shutdown and undervoltage lockout protection mechanisms enhances the reliability and safety of the device in demanding applications.
Housed in a small SOIC-8 package, the UCC27423DR is suitable for space-constrained designs. It is commonly used in applications such as switch-mode power supplies, motor control, and DC-DC converters, where high-speed, efficient driving of power transistors is essential.
Features
The UCC27423DR is a dual-channel high-speed MOSFET driver from Texas Instruments. Key features include:
1. High-Speed Performance: It offers fast switching with a typical propagation delay of 25 ns and a rise/fall time of 20 ns, enabling efficient driving of MOSFETs.
2. Output Drive: The device provides strong output drive capabilities, featuring 4 A source and 4 A sink current capability to effectively drive large MOSFET gates.
3. Operating Voltage Range: It operates over a wide input voltage range from 4.5 V to 15 V, suitable for various applications.
4. Input Configuration: It supports both inverting and non-inverting inputs, providing flexibility in driving configurations.
5. Thermal Protection: The UCC27423DR includes thermal shutdown protection to safeguard the device against overheating.
6. Package: It is available in an 8-pin SOIC package, which is compact and allows for easy integration into different circuit designs.
7. Applications: Ideal for switch-mode power supplies, motor control, and other power management applications where efficient MOSFET driving is required.
Overall, the UCC27423DR is a robust and versatile driver for high-speed and high-power applications.
1. High-Speed Performance: It offers fast switching with a typical propagation delay of 25 ns and a rise/fall time of 20 ns, enabling efficient driving of MOSFETs.
2. Output Drive: The device provides strong output drive capabilities, featuring 4 A source and 4 A sink current capability to effectively drive large MOSFET gates.
3. Operating Voltage Range: It operates over a wide input voltage range from 4.5 V to 15 V, suitable for various applications.
4. Input Configuration: It supports both inverting and non-inverting inputs, providing flexibility in driving configurations.
5. Thermal Protection: The UCC27423DR includes thermal shutdown protection to safeguard the device against overheating.
6. Package: It is available in an 8-pin SOIC package, which is compact and allows for easy integration into different circuit designs.
7. Applications: Ideal for switch-mode power supplies, motor control, and other power management applications where efficient MOSFET driving is required.
Overall, the UCC27423DR is a robust and versatile driver for high-speed and high-power applications.
Package
The UCC27423DR is a dual low-side gate driver from Texas Instruments, and it comes in an 8-pin SOIC (Small Outline Integrated Circuit) package, which is denoted by the "DR" suffix. This package type is compact, suitable for surface mounting on PCBs.
Pinout
The UCC27423DR is a dual high-speed low-side MOSFET driver from Texas Instruments. It is typically available in an 8-pin SOIC (Small Outline Integrated Circuit) package. The key functions of the UCC27423DR include driving power MOSFETs in switching applications, such as in power supply, motor control, and other converters.
Here is a concise description of its pin functions:
1. VDD (Pin 1): Supply voltage input for the driver.
2. IN1 (Pin 2): Input signal for the first driver channel.
3. IN2 (Pin 3): Input signal for the second driver channel.
4. GND (Pin 4): Ground reference for the device.
5. OUT2 (Pin 5): Output from the second driver channel.
6. PGND (Pin 6): Power ground, typically connected to GND.
7. OUT1 (Pin 7): Output from the first driver channel.
8. NC (Pin 8): No connection, may be internally not connected and can be used for trace routing if needed.
This IC is designed for high-speed switching and offers fast rise and fall times, ensuring efficient operation in various applications.
Here is a concise description of its pin functions:
1. VDD (Pin 1): Supply voltage input for the driver.
2. IN1 (Pin 2): Input signal for the first driver channel.
3. IN2 (Pin 3): Input signal for the second driver channel.
4. GND (Pin 4): Ground reference for the device.
5. OUT2 (Pin 5): Output from the second driver channel.
6. PGND (Pin 6): Power ground, typically connected to GND.
7. OUT1 (Pin 7): Output from the first driver channel.
8. NC (Pin 8): No connection, may be internally not connected and can be used for trace routing if needed.
This IC is designed for high-speed switching and offers fast rise and fall times, ensuring efficient operation in various applications.
Manufacturer
The UCC27423DR is manufactured by Texas Instruments, an American technology company. Texas Instruments is a global leader in designing and manufacturing semiconductors and various integrated circuits, which are used in a wide range of electronics applications. The company is well-known for producing a diverse array of electronic components, including microcontrollers, processors, and power management devices, among others. It serves multiple industries, including automotive, communications, consumer electronics, and industrial markets.
Application
The UCC27423DR is a dual high-speed MOSFET driver that is commonly used in applications requiring fast switching, such as DC-DC converters, motor controllers, and power supplies. It is ideal for driving high-power MOSFETs and IGBTs, and is used in applications like synchronous rectification, switch-mode power supplies, and other power electronics where efficient and effective load driving is essential.
Equivalent
The UCC27423DR is a dual high-speed MOSFET driver IC. Equivalent products include:
1. MIC4423 by Microchip Technology
2. TC4423 by Microchip Technology
3. FAN3100 by ON Semiconductor
4. TPS2829 by Texas Instruments
These alternatives provide similar functionalities and performance, but it's important to compare specific electrical characteristics and package options to ensure compatibility with your application.
1. MIC4423 by Microchip Technology
2. TC4423 by Microchip Technology
3. FAN3100 by ON Semiconductor
4. TPS2829 by Texas Instruments
These alternatives provide similar functionalities and performance, but it's important to compare specific electrical characteristics and package options to ensure compatibility with your application.
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