T92P11D22-12 Overview
The T92P11D22-12 is a high-performance discrete semiconductor device designed for efficient power handling and switching applications. Featuring a compact dual-diode configuration, it supports fast recovery times and low forward voltage, making it ideal for industrial power circuits and rectification tasks. This product offers robust reliability under thermal stress and is optimized for seamless integration into power management systems. Sourced from a trusted IC Manufacturer, it provides engineers and sourcing specialists with a durable and precise solution for various demanding electrical environments.
T92P11D22-12 Technical Specifications
| Parameter | Specification |
|---|---|
| Maximum Repetitive Peak Reverse Voltage (VRRM) | 1200 V |
| Average Rectified Forward Current (IF(AV)) | 11 A |
| Surge Non-Repetitive Forward Current (IFSM) | 150 A |
| Forward Voltage Drop (VF) at 11 A | 1.2 V |
| Reverse Recovery Time (trr) | 35 ns |
| Operating Junction Temperature (Tj) | -55 to +150 ??C |
| Package Type | DO-27 |
| Thermal Resistance Junction-to-Case (R??JC) | 2.5 ??C/W |
T92P11D22-12 Key Features
- High Voltage Capability: Supports up to 1200 V repetitive peak reverse voltage, enabling use in high-voltage power rectification, which enhances system reliability in demanding environments.
- Robust Forward Current Rating: Handles an average forward current of 11 A, allowing stable operation in medium power applications such as motor drives and industrial power supplies.
- Fast Recovery Time: Reverse recovery time of 35 ns minimizes switching losses and electromagnetic interference, improving overall efficiency in switching regulator circuits.
- Low Forward Voltage Drop: At 1.2 V forward voltage, this device reduces conduction losses, contributing to better energy efficiency and thermal management.
T92P11D22-12 Advantages vs Typical Alternatives
This device offers a superior combination of high voltage tolerance and fast recovery performance compared to typical diodes in the same category. Its low forward voltage drop reduces power losses, while the robust surge current capacity enhances reliability during transient events. These features make it a preferred choice for engineers seeking efficient, reliable power components with compact packaging for demanding industrial applications.
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Typical Applications
- Rectification in industrial power supplies where high voltage and current handling are required, ensuring efficient conversion of AC to DC power in harsh environments.
- Freewheeling diode in motor control circuits, providing fast switching to protect components and improve system responsiveness.
- Snubber circuits in power electronics, helping to suppress voltage spikes and protect switching devices from damage.
- High-frequency inverters and switching regulators, leveraging fast recovery characteristics to optimize switching efficiency and reduce heat generation.
T92P11D22-12 Brand Info
The T92P11D22-12 is manufactured by a leading semiconductor producer known for delivering reliable and high-quality power components tailored for industrial and automotive markets. This product reflects the brand??s commitment to precision engineering and durability, providing extensive datasheet support, quality certifications, and global availability to meet the needs of demanding applications and supply chains.
FAQ
What is the maximum repetitive peak reverse voltage for this component?
The device supports a maximum repetitive peak reverse voltage of 1200 volts, making it suitable for high-voltage rectification and protection applications in industrial power circuits.
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How much average forward current can it handle continuously?
This diode can handle an average rectified forward current of 11 amperes, allowing it to operate reliably in medium-power applications such as power supplies and motor drives.
What is the significance of the reverse recovery time specified?
The reverse recovery time of 35 nanoseconds indicates how quickly the diode can switch from conducting to blocking state, which is critical in reducing switching losses and electromagnetic interference


