QE6E040SH02 Overview
The QE6E040SH02 is a high-performance semiconductor device designed for precision industrial applications requiring reliable operation under demanding conditions. It offers a compact footprint combined with robust electrical characteristics, making it suitable for integration into complex electronic systems. With optimized power handling and stable performance parameters, this component ensures enhanced efficiency and durability. Engineers and sourcing specialists will find the QE6E040SH02 a versatile choice for applications demanding accuracy and consistent behavior. For more details and sourcing options, visit IC Manufacturer.
QE6E040SH02 Technical Specifications
| Parameter | Value |
|---|---|
| Package Type | Surface Mount Device (SMD) |
| Number of Channels | 4 |
| Operating Voltage Range | 2.7 V to 5.5 V |
| Maximum Current Rating | 40 mA per channel |
| Switching Speed | Typical 20 ns |
| On-Resistance (RON) | 6 ?? typical |
| Operating Temperature Range | -40??C to +85??C |
| Control Logic | CMOS compatible |
| Input Leakage Current | 1 nA typical |
| Isolation Voltage | 50 V |
QE6E040SH02 Key Features
- Quad Channel Integration: Combines four independent switches in a single compact package, reducing board space and simplifying circuit design.
- Low On-Resistance: Ensures minimal power loss and heat generation, improving overall energy efficiency in switching applications.
- Wide Operating Voltage Range: Supports a broad voltage span from 2.7 V to 5.5 V, enabling compatibility with various logic levels and system requirements.
- Fast Switching Speed: Typical switching times of 20 ns facilitate high-speed signal routing and low latency operation.
- CMOS Logic Compatibility: Allows direct interfacing with standard microcontrollers and digital logic devices, simplifying system integration.
- Robust Temperature Range: Operates reliably between -40??C and +85??C, suitable for industrial environments with temperature variations.
- Low Input Leakage Current: Minimizes unintended current draw, ensuring signal integrity and reducing power consumption.
QE6E040SH02 Advantages vs Typical Alternatives
This device offers superior integration by combining four switches in a compact SMD package, reducing board complexity compared to discrete alternatives. Its low on-resistance improves power efficiency and thermal performance, while the wide voltage tolerance ensures compatibility with diverse system architectures. The fast switching speed and CMOS logic compatibility enhance responsiveness and ease of control, making it a reliable and efficient choice for industrial-grade applications.
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Typical Applications
- Signal routing in industrial automation systems, where precise and fast switching of control signals is essential for system reliability and performance.
- Multiplexer switching in data acquisition hardware to select between multiple sensor inputs efficiently.
- Audio and video signal switching in embedded systems requiring low distortion and high signal integrity.
- Battery-powered portable instruments, benefiting from low leakage and low power consumption characteristics.
QE6E040SH02 Brand Info
The QE6E040SH02 is manufactured by a leading semiconductor company known for delivering high-quality integrated circuits tailored for industrial and embedded applications. This product line emphasizes precision, reliability, and ease of integration, supported by comprehensive technical documentation and consistent manufacturing standards. The brand??s commitment to robust design and performance makes this device a dependable component in demanding electronic systems.
FAQ
What is the typical on-resistance of the QE6E040SH02, and why is it important?
The typical on-resistance is approximately 6 ohms per channel. This low resistance is crucial because it minimizes voltage drop and power dissipation during switching, which enhances overall system efficiency and reduces heat generation in the device.
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Can the QE6E040SH02 operate at voltages below 3.3 V?
Yes, the device supports an operating voltage range from 2.7 V to 5.5 V. This allows it to be used in systems powered by common



