T9GV1L24-15 Overview
The T9GV1L24-15 is a high-performance semiconductor device tailored for industrial and automotive applications requiring precise control and reliable operation under demanding conditions. Designed with robust electrical characteristics, it offers a low on-resistance and fast switching capabilities that optimize energy efficiency and thermal management. This product is engineered to support high-current loads while maintaining stability and durability, making it ideal for power management and motor control systems. Its compact package and standardized pinout simplify integration into a wide range of systems. For detailed specifications and purchasing information, visit IC Manufacturer.
T9GV1L24-15 Technical Specifications
| Parameter | Specification |
|---|---|
| Maximum Drain-Source Voltage (VDS) | 150 V |
| Continuous Drain Current (ID) @ 25??C | 24 A |
| Gate Threshold Voltage (VGS(th)) | 2.0 ?C 4.0 V |
| Static Drain-Source On-Resistance (RDS(on)) | ?? 15 m?? @ VGS = 10 V |
| Input Capacitance (Ciss) | 1200 pF |
| Power Dissipation (PD) | 60 W |
| Operating Junction Temperature (TJ) | -55??C to +150??C |
| Package Type | TO-220 |
T9GV1L24-15 Key Features
- Low On-Resistance: Ensures minimal conduction losses, improving overall system efficiency and reducing heat generation during operation.
- High Current Capability: Supports continuous drain currents up to 24 A, enabling use in demanding power applications such as motor drives and power converters.
- Wide Operating Temperature Range: Operates reliably across -55??C to +150??C, suitable for harsh industrial and automotive environments.
- Fast Switching Speeds: Enhances performance in high-frequency applications, reducing switching losses and improving power management.
T9GV1L24-15 Advantages vs Typical Alternatives
This device offers superior on-resistance and higher current handling compared to typical MOSFETs in its class, resulting in improved efficiency and lower thermal stress. Its broad operating temperature range and rugged package enhance reliability in industrial settings. These features collectively provide better performance and longer operational life compared to common alternatives, making it a preferred choice for high-demand power management applications.
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Typical Applications
- Power management circuits in industrial systems, where efficient switching and thermal stability are critical for sustained operation and safety.
- Motor control drivers requiring high current capacity and fast switching to optimize torque and speed control.
- DC-DC converters in automotive electronics demanding robust voltage handling and minimal power loss.
- Load switching applications benefiting from the device??s low on-resistance and reliable operation in varying temperature conditions.
T9GV1L24-15 Brand Info
Manufactured by a leading semiconductor supplier, the T9GV1L24-15 integrates advanced MOSFET technology to deliver reliable power switching solutions. The brand emphasizes quality, consistency, and compliance with industry standards, ensuring that the product meets stringent requirements for performance and durability. This device is part of a comprehensive product lineup designed to address diverse industrial and automotive power electronics needs.
FAQ
What is the maximum voltage rating for this device?
The maximum drain-source voltage rating is 150 V, allowing it to operate safely in medium-voltage applications without risk of breakdown or damage.
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How does the low on-resistance benefit system efficiency?
Lower on-resistance reduces conduction losses during operation, which decreases heat generation and improves overall power efficiency. This results in better thermal management and longer component life.
Can this product operate in automotive temperature conditions?
Yes, it supports a wide junction temperature range from -55??C to +150??C, making it suitable for the rigorous thermal environments typically found in automotive applications.
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Is this device compatible with high-frequency switching applications?
Its fast switching capability and low input capacitance make



