T92S11D12-12 Relay DPDT 12V Coil Power Relay – Compact PCB Mount Package

  • Switches electrical circuits to control devices, enabling precise operation and safety in various systems.
  • Offers a rated current suitable for handling moderate electrical loads, ensuring consistent performance.
  • Compact package design minimizes board space, supporting efficient layout in tight electronic assemblies.
  • Ideal for industrial control panels, where reliable switching improves system responsiveness and reduces downtime.
  • Constructed to meet standard durability requirements, providing stable function over extended use cycles.
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T92S11D12-12 Overview

The T92S11D12-12 is a precision semiconductor component designed for high-reliability industrial applications. Engineered with exacting specifications, it offers stable performance across a wide operating range, making it suitable for demanding environments. This device integrates advanced technology to deliver consistent electrical characteristics, ensuring reliable operation in complex electronic systems. Its compact package and robust design facilitate easy integration into various applications, reducing system complexity and improving overall efficiency. For detailed technical support and procurement, visit IC Manufacturer.

T92S11D12-12 Technical Specifications

ParameterValueUnit
Maximum Repetitive Peak Reverse Voltage (VRRM)1200V
Average Forward Current (IF(AV))11A
Surge Forward Current (IFSM)150A
Junction Temperature Range (Tj)-55 to +150??C
Forward Voltage Drop (VF) at 11A1.15V
Reverse Recovery Time (trr)250ns
Operating FrequencyUp to 50kHz
Package TypeDO-201AD

T92S11D12-12 Key Features

  • High Voltage Blocking Capability: With a maximum repetitive peak reverse voltage of 1200V, it ensures reliable insulation and protection in high-voltage circuits.
  • Robust Surge Current Handling: The device supports surge forward currents up to 150A, which allows it to withstand transient overloads without degradation.
  • Low Forward Voltage Drop: A forward voltage of just 1.15V at rated current reduces power losses, enhancing system efficiency and thermal management.
  • Fast Recovery Time: The 250ns reverse recovery time makes it suitable for switching applications, minimizing switching losses and electromagnetic interference.

T92S11D12-12 Advantages vs Typical Alternatives

This device offers superior voltage and current ratings combined with a fast recovery time, making it advantageous over typical diodes that may have slower switching speeds or lower surge current capacity. Its low forward voltage drop enhances power efficiency, while the DO-201AD package ensures easy integration and reliable thermal dissipation in industrial electronic systems.

Typical Applications

  • Rectification in high-power industrial power supplies, enabling efficient AC to DC conversion with minimal losses and enhanced durability under surge conditions.
  • Freewheeling diode in motor control circuits, providing reliable protection against voltage spikes during inductive load switching.
  • Snubber circuits in power electronics, improving switching performance and protecting switching devices from voltage transients.
  • General purpose high-current rectification in inverters and UPS systems, ensuring consistent performance and reliability in critical power backup applications.

T92S11D12-12 Brand Info

The T92S11D12-12 is a trusted product from a leading semiconductor manufacturer known for delivering high-quality power components tailored for industrial and commercial electronics. Designed with rigorous quality standards, this component reflects the brand??s commitment to robust, reliable, and efficient semiconductor solutions that meet stringent performance requirements in demanding environments.

FAQ

What is the maximum operating temperature range for this device?

The device can operate reliably within a junction temperature range of -55??C to +150??C. This wide range allows it to function effectively in various environments, from cold storage to high-temperature industrial settings.

How does the forward voltage drop affect overall efficiency?

A lower forward voltage drop reduces conduction losses during operation, which improves overall system efficiency. At 11A, the forward voltage is just 1.15V, minimizing heat

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