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UCC27322DR
+NomenclatureIC GATE DRVR LOW-SIDE 8SOIC
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FabricantTexas Instruments
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Pièce fabricant #UCC27322DR
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Package SOIC-8
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En stock5226
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Spécifications
| Attribut | Valeur |
| Package / Case | Tape & Reel (TR),Cut Tape (CT) |
| Part Status | Active |
| Driven Configuration | Low-Side |
| Channel Type | Single |
| Number of Drivers | 1 |
| Gate Type | N-Channel, P-Channel MOSFET |
| Voltage - Supply | 4V ~ 15V |
| Logic Voltage - VILVIH | 1.1V, 2.7V |
| Current - Peak Output(Source Sink) | 9A, 9A |
| Input Type | Non-Inverting |
| Rise / Fall Time(Typ) | 20ns, 20ns |
| Operating Temperature | -40°C ~ 105°C (TA) |
| Mounting Type | Surface Mount |
Présentation
Description
Key features of the UCC27322DR include a peak current drive capability of 9A, making it suitable for driving large MOSFETs. It operates with input voltages ranging from 4.5V to 15V, providing flexibility for different power supply configurations. The driver features fast rise and fall times, which enhance the efficiency of power conversion and reduce switching losses.
The device comes in a compact SOIC-8 package, which is ideal for space-constrained designs. Additionally, it includes built-in protection features like undervoltage lockout to ensure reliable operation under varying conditions. The UCC27322DR is well-suited for applications requiring rapid switching and high current drive capability, contributing to improved performance and energy efficiency.
Equivalent
1. MIC4421/4422 from Microchip Technology
2. TC4420/4429 from Microchip Technology
3. FAN3100 from ON Semiconductor
4. IXDD404 from IXYS
These alternatives offer similar functionalities such as high peak current outputs, fast switching speeds, and low propagation delays. Always check the datasheets for specific parameters to ensure compatibility with your application.
Features
1. High Current Drive Capability: It offers a peak output current of 9 A, allowing it to drive large gate charge MOSFETs efficiently.
2. Fast Switching Speeds: The device features very fast rise and fall times, contributing to reduced switching losses and enhanced power conversion efficiency.
3. Wide Supply Voltage Range: Operates from a 4.5 V to 15 V supply, making it versatile for various applications.
4. Inverting and Non-Inverting Configurations: Provides flexibility in driving different types of power devices.
5. Low Propagation Delay: The device has low propagation delay times, ensuring timely and accurate switching.
6. Thermal Protection: Incorporates thermal shutdown features to protect against overheating.
7. Robust Design: Built with a wide operating temperature range, making it suitable for demanding environments.
These features make the UCC27322DR ideal for applications in power supplies, motor drives, and high-speed power switching circuits.
Pinout
1. Pin 1 (NC): No connection.
2. Pin 2 (IN): Input pin for controlling the gate driver. It is used to accept the input signal that will be amplified to drive the MOSFET.
3. Pin 3 (GND): Ground pin, connected to the circuit's ground.
4. Pin 4 (OUT): Output pin, which drives the gate of the MOSFET.
5. Pin 5 (VDD): Supply voltage pin, which provides power to the device.
6. Pin 6, 7, 8 (NC): No connection.
The UCC27322DR is designed to provide high peak current drive capability and fast switching speeds, making it suitable for driving power MOSFETs in various applications like power supplies, motor drives, and DC-DC converters.
Manufacturer
Application
1. Switch-Mode Power Supplies (SMPS): Used for driving power MOSFETs and IGBTs in SMPS for improved efficiency.
2. Motor Control: Supports efficient motor driver circuits, enhancing performance in industrial and automotive settings.
3. DC-DC Converters: Facilitates high-frequency switching in step-up, step-down, and other converter topologies.
4. Lighting Systems: Integrated into LED and HID lighting for precise control and efficiency.
5. Renewable Energy Systems: Used in solar inverters and other renewable energy applications to optimize power conversion.
These applications leverage the UCC27322DR's fast switching capabilities and robust performance characteristics.