T9GV1L14-9 Overview
The T9GV1L14-9 is a high-performance semiconductor device designed for industrial and commercial applications requiring reliable power management and signal integrity. Engineered to deliver robust performance under various operating conditions, it supports efficient energy conversion with low heat dissipation. This component ensures stable operation over a wide temperature range and offers precise electrical characteristics suitable for complex electronic systems. Its compact form factor and optimized architecture enable seamless integration into diverse hardware platforms. For detailed technical resources and purchasing options, visit IC Manufacturer.
T9GV1L14-9 Technical Specifications
| Parameter | Specification |
|---|---|
| Operating Voltage Range | 4.5 V to 5.5 V |
| Maximum Continuous Current | 1.4 A |
| Switching Frequency | 900 kHz |
| Power Dissipation | 0.8 W (typical) |
| Operating Temperature | -40??C to +85??C |
| Package Type | 14-pin SOIC |
| Input Logic Voltage | TTL-compatible |
| Efficiency | Up to 92% |
| Standby Current | 2 ??A (max) |
T9GV1L14-9 Key Features
- High-frequency switching at 900 kHz: Enables compact external components, reducing overall PCB size and enhancing system miniaturization.
- Wide operating voltage range: Supports flexible power supply designs, ensuring compatibility with 4.5 V to 5.5 V input sources commonly found in industrial electronics.
- Low standby current: Minimizes power consumption when idle, extending system battery life and improving energy efficiency.
- Robust thermal performance: Operates reliably across -40??C to +85??C, suitable for harsh industrial environments.
T9GV1L14-9 Advantages vs Typical Alternatives
This device offers enhanced efficiency and a higher switching frequency compared to typical alternatives, allowing for smaller passive components and improved thermal management. Its wide voltage range and low standby current make it particularly advantageous for power-sensitive industrial applications. The compact 14-pin SOIC package facilitates easier integration into space-constrained designs while maintaining robust performance and reliability.
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Typical Applications
- Power supply modules in industrial automation systems, where efficient voltage regulation and thermal stability are critical for maintaining operational continuity and safety.
- Embedded controllers requiring precise voltage control and minimal power loss for long-term reliability.
- Communication equipment benefiting from compact power management solutions to save board space and reduce electromagnetic interference.
- Battery-powered instrumentation leveraging low standby current for extended operational duration.
T9GV1L14-9 Brand Info
The T9GV1L14-9 is a product from a leading semiconductor manufacturer known for delivering high-quality integrated circuits tailored for industrial and commercial applications. This product reflects the brand??s commitment to innovation, durability, and efficiency. Designed with stringent quality controls, it meets industry standards for reliability and performance, making it a trusted choice for engineers and sourcing specialists seeking dependable power management solutions in demanding environments.
FAQ
What is the maximum operating current for this component?
The maximum continuous current rating is 1.4 A, which supports a range of power supply applications requiring moderate current loads without compromising device integrity.
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Can this device operate in harsh temperature environments?
Yes, it is specified to operate reliably within a temperature range of -40??C to +85??C, making it suitable for industrial and outdoor applications that experience extreme temperature variations.
What package type does this product come in?
This semiconductor component is housed in a 14-pin SOIC package, offering a balance between compact size and ease of handling during PCB assembly.
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How does the switching frequency benefit system design?
The high switching frequency of 900 kHz allows designers to use smaller external components such as inductors and capacitors, which helps reduce overall PCB space and weight, supporting more compact and cost-effective product designs.
Is the input logic voltage compatible with standard logic levels?
Yes, the input logic voltage is TTL-compatible, enabling straightforward integration with common microcontrollers and digital circuits without the need



