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UCC27201ADDAR
+BOMIC GATE DRVR HALF-BRIDGE 8SOPWR
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メーカーSTマイクロエレクトロニクス
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メーカー品番 #UCC27201ADDAR
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データシート UCC27201ADDAR DataSheet
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在庫状況5008
365 日間品質保証
7*24 日間の品質保証
90-時間単位のサービス保証
1日間のアフターサービス保証
仕様
| 属性 | 値 |
| Part Status | Active |
| Base Product Number | UCC27201 |
| DigiKey Programmable | Not Verified |
| Driven Configuration | Half-Bridge |
| Channel Type | Independent |
| Number of Drivers | 2 |
| Gate Type | MOSFET (N-Channel) |
| Voltage - Supply | 8V ~ 17V |
| Logic Voltage - VIL, VIH | 0.8V, 2.5V |
| Current - Peak Output (Source, Sink) | 3A, 3A |
| Input Type | Non-Inverting |
| Rise / Fall Time (Typ) | 8ns, 7ns |
| Operating Temperature | -40°C ~ 140°C (TJ) |
| Mounting Type | Surface Mount |
| Package | 8-PowerSOIC (0.154", 3.90mm Width) |
| Supplier Device Package | 8-SO PowerPad |
| Packaging | Cut Tape (CT), Tape & Reel (TR) |
| High Side Voltage - Max (Bootstrap) | 120 V |
概要
Description
Key features include a source and sink current capability of up to 4A, which ensures rapid gate charging and discharging, and built-in dead-time control to prevent shoot-through in half-bridge configurations. The device also incorporates a high-voltage level-shift capability, allowing it to drive high-side switches in a high-voltage environment.
Additionally, the UCC27201 offers robust protection features, such as under-voltage lockout (UVLO) and desaturation detection, enhancing the reliability of power systems. Its compact size, combined with these features, makes it suitable for space-constrained applications in both commercial and industrial sectors. Overall, the UCC27201ADDAR is an effective solution for enhancing the performance of high-frequency power electronics.
Equivalent
Features
1. High Output Current: Capable of sourcing and sinking up to 4A, enabling fast switching and reduced transition losses.
2. Wide Supply Voltage Range: Operates from 4.5V to 20V, accommodating various power supply requirements.
3. Fast Switching Speed: Achieves rise and fall times of 20 ns, enhancing overall efficiency in switching applications.
4. Built-in Cross-Conduction Prevention: Features a dead time control to prevent shoot-through in half-bridge configurations.
5. Low Propagation Delay: Offers a propagation delay of 20 ns, allowing for precise timing in high-frequency applications.
6. Thermal Protection: Integrated thermal shutdown feature to protect against overheating.
7. Bootstrap Capability: Supports high-side driving with bootstrap configuration, making it suitable for half-bridge circuits.
8. Compact Package: Available in a small, thermally efficient SOIC-8 package for space-constrained applications.
These features make the UCC27201ADDAR ideal for motor control, power supplies, and other high-performance applications.
Pinout
### Pin Functions:
1. VDD (Pin 1): Supply voltage input for the driver.
2. GND (Pin 2): Ground reference.
3. HO (Pin 3): High-side output driver.
4. HS (Pin 4): High-side source connection.
5. LO (Pin 5): Low-side output driver.
6. COM (Pin 6): Common reference for the low-side driver.
7. IN (Pin 7): Input control signal for the low-side driver.
8. VCC (Pin 8): Supply voltage for the high-side drive circuitry.
The device is designed for fast switching, low output delay, and high peak current to efficiently drive MOSFETs in various applications including DC-DC converters and motor drives.
Manufacturer
Founded in 1930, TI primarily serves markets such as automotive, industrial, communications, and personal electronics. The company is recognized for its innovative technologies and solutions, particularly in power management and analog applications. The UCC27201ADDAR is a high-speed, dual gate driver designed for driving MOSFETs and IGBTs in power conversion applications, showcasing TI's expertise in power management solutions. TI's commitment to research and development has positioned it as a leader in the semiconductor industry.
Application
1. Power Conversion: Enhancing the efficiency of DC-DC converters and power inverters.
2. Motor Drives: Driving MOSFETs or IGBTs in industrial and automotive motor control systems.
3. Switching Power Supplies: Improving performance in isolated and non-isolated designs.
4. Renewable Energy Systems: Optimizing the operation of solar inverters and energy storage systems.
5. High-Frequency Applications: Suitable for applications requiring fast switching speeds and high drive currents.
Its features include low propagation delay and high current output, making it ideal for demanding applications.