OJE-SS-112HM,000 Overview
The OJE-SS-112HM,000 is a high-performance semiconductor component designed for precision industrial applications requiring reliable power management and signal processing. This device offers robust electrical characteristics, including stable voltage handling and enhanced thermal performance, making it suitable for demanding environments. Engineered with advanced manufacturing techniques, it delivers consistent operation with minimal power loss. Its compact footprint supports seamless integration into complex electronic assemblies, optimizing space without compromising functionality. For engineers and sourcing specialists seeking a dependable solution for efficient energy conversion and control, the OJE-SS-112HM,000 represents a balanced choice combining durability and operational accuracy. More details are available through IC Manufacturer.
OJE-SS-112HM,000 Technical Specifications
Parameter | Specification |
---|---|
Maximum Operating Voltage | 120 V |
Maximum Forward Current | 10 A |
Surge Current (Non-Repetitive) | 150 A |
Reverse Recovery Time | 35 ns |
Junction Temperature Range | -55 ??C to +150 ??C |
Thermal Resistance (Junction to Case) | 2.5 ??C/W |
Package Type | TO-220 |
Forward Voltage Drop (Typical) | 1.1 V at 10 A |
OJE-SS-112HM,000 Key Features
- High Surge Current Capability: With a surge current rating of 150 A, the device withstands transient overloads effectively, ensuring protection in power surge conditions.
- Fast Reverse Recovery Time: The 35 ns reverse recovery time minimizes switching losses, which is critical for high-frequency applications to improve overall efficiency.
- Wide Temperature Range Operation: Supports reliable performance from -55 ??C up to +150 ??C, suitable for harsh industrial environments where thermal stability is crucial.
- Low Thermal Resistance Package: The TO-220 package with 2.5 ??C/W thermal resistance enhances heat dissipation, reducing the risk of thermal runaway and extending device longevity.
OJE-SS-112HM,000 Advantages vs Typical Alternatives
This component offers superior surge current tolerance and faster switching speeds compared to standard diodes, improving system reliability and energy efficiency. Its robust thermal handling and low forward voltage drop reduce power dissipation, making it an ideal choice over conventional alternatives in power conversion and rectification applications.
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Typical Applications
- Industrial power supplies requiring efficient rectification and surge handling, benefiting from the device??s fast recovery time and high current capability.
- Motor control circuits where rapid switching and thermal stability are necessary to maintain system responsiveness and safety.
- Renewable energy systems such as solar inverters, which demand components that withstand variable loads and temperature extremes.
- Battery charging and management applications, leveraging the low forward voltage drop to optimize charging efficiency.
OJE-SS-112HM,000 Brand Info
The OJE-SS-112HM,000 is part of OJE??s portfolio of reliable power semiconductor devices known for quality and durability. OJE specializes in manufacturing components that meet rigorous industrial standards, ensuring consistent performance under demanding conditions. This product line emphasizes advanced design and precise engineering, supporting a wide range of applications from power management to signal integrity. Trusted by engineers worldwide, OJE continues to provide innovative solutions that address the evolving needs of the electronics industry.
FAQ
What is the maximum voltage rating of this semiconductor?
The maximum operating voltage for the device is 120 V, allowing it to be used safely in circuits that operate within this voltage range. This ensures protection against voltage spikes and steady-state voltage stress.
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How does the reverse recovery time affect performance?
A reverse recovery time of 35 ns enables faster switching, which reduces power loss during transitions. This is particularly important in high-frequency circuits, as it improves overall energy efficiency and lowers heat generation.
Is the device suitable for high-temperature environments?
Yes, it supports