T9GS1L14-5 Overview
The T9GS1L14-5 is a high-performance semiconductor device designed for industrial and electronic applications requiring precise control and reliability. Engineered with advanced specifications, it offers optimized electrical parameters that support efficient power management and signal processing. Its robust construction ensures stable operation under varying environmental conditions, making it ideal for integration into complex electronic systems. Sourcing engineers and design specialists will appreciate its balance of performance, durability, and compatibility with standard industrial protocols. For detailed technical support and sourcing information, visit IC Manufacturer.
T9GS1L14-5 Technical Specifications
| Parameter | Specification |
|---|---|
| Package Type | SOIC-14 |
| Operating Voltage | 4.5 V to 5.5 V |
| Input Current | Max 14 mA |
| Output Current | Up to 1 A |
| Switching Frequency | Up to 100 kHz |
| Operating Temperature Range | -40 ??C to +85 ??C |
| Power Dissipation | 1.5 W |
| Logic Input Threshold | 2.0 V (typical) |
T9GS1L14-5 Key Features
- High switching frequency: Enables efficient power conversion and precise signal modulation, supporting compact and lightweight system designs.
- Wide operating voltage range: Provides flexibility in various power environments, ensuring compatibility with standard 5 V logic systems.
- Low input current: Minimizes power consumption, contributing to overall system energy efficiency and thermal management.
- Robust thermal performance: Supports reliable operation across a broad temperature range, enhancing durability in industrial settings.
T9GS1L14-5 Advantages vs Typical Alternatives
This device offers superior integration with common 5 V systems while maintaining low power consumption and high switching frequency. Its compact SOIC-14 package ensures easy PCB layout and thermal dissipation compared to bulkier alternatives. Reliability under wide temperature ranges and optimized electrical characteristics provide a competitive edge for engineers seeking consistent performance in demanding industrial environments.
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Typical Applications
- Power supply modules requiring efficient DC-DC conversion for industrial control systems, enhancing energy management and system stability.
- Signal conditioning circuits where precise switching and low power draw are critical for sensor interfacing.
- Embedded system controls needing robust semiconductor components suitable for extended temperature operation.
- Automation equipment that demands reliable performance in harsh environmental conditions.
T9GS1L14-5 Brand Info
The T9GS1L14-5 is part of a product line offered by a renowned semiconductor manufacturer specializing in industrial-grade integrated circuits. This product exemplifies the brand’s commitment to delivering reliable, high-performance components tailored for demanding electronic applications. The manufacturer provides comprehensive technical documentation and support, ensuring seamless integration and long-term availability for sourcing specialists and design engineers.
FAQ
What is the maximum operating voltage for this device?
The maximum recommended operating voltage is 5.5 V, allowing the device to function reliably within typical 5 V system environments without risk of damage or performance degradation.
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Can this device operate in harsh temperature conditions?
Yes, it supports an operating temperature range from -40 ??C to +85 ??C, making it suitable for industrial applications where temperature extremes are common.
What package type does this device use, and how does it benefit PCB design?
The device comes in a SOIC-14 package, which is compact and widely used in the industry. This package type simplifies PCB layout, improves heat dissipation, and supports automated assembly processes.
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How does the low input current affect system power consumption?
With a maximum input current of 14 mA, the device minimizes the overall power draw of the system. This efficiency helps reduce thermal load and extends the operational lifespan of battery-powered or energy-sensitive equipment.
Is this device suitable for high-frequency switching applications?


