S2-LPCBQTR Overview
The S2-LPCBQTR is a high-performance semiconductor device designed for efficient power management and signal processing in industrial electronics. Engineered with advanced low-power consumption technology, it ensures reliable operation in demanding environments. Its compact form factor and robust electrical characteristics make it an ideal choice for embedded systems and precision control applications. Developed with stringent quality standards, the S2-LPCBQTR delivers stable performance, helping engineers optimize system efficiency and minimize thermal dissipation. For detailed specifications and sourcing options, visit IC Manufacturer.
S2-LPCBQTR Technical Specifications
| Parameter | Specification |
|---|---|
| Package Type | QFN-32 |
| Operating Voltage Range | 1.8 V to 5.5 V |
| Maximum Operating Frequency | 48 MHz |
| Input Logic Levels | CMOS compatible |
| Operating Temperature Range | -40??C to +85??C |
| Typical Power Consumption | 2.5 mW @ 3.3 V |
| Output Drive Capability | Up to 25 mA per pin |
| ESD Protection | 4 kV Human Body Model |
S2-LPCBQTR Key Features
- Low Power Consumption: Enables energy-efficient operation, reducing thermal stress and extending battery life in portable and embedded applications.
- Wide Operating Voltage Range: Supports flexible integration across various system power rails, improving design versatility.
- High-Frequency Performance: Supports up to 48 MHz operation, ensuring rapid signal processing and responsiveness.
- Robust ESD Protection: Enhances device reliability by safeguarding against electrostatic discharge events during handling and operation.
Typical Applications
- Embedded control systems requiring precise timing and low power usage, such as industrial automation controllers and sensor interfaces.
- Portable electronic devices where efficient power management is critical to extend operational duration.
- Signal processing modules in communication equipment that demand stable high-frequency operation.
- Instrumentation and measurement equipment benefiting from reliable logic level compatibility and robust protection features.
S2-LPCBQTR Advantages vs Typical Alternatives
This device offers superior integration of low power consumption with high-frequency operation, providing a balance that typical alternatives may lack. Its broad operating voltage range and strong ESD protection contribute to higher reliability and design flexibility. These factors make it advantageous for engineers seeking efficient and robust semiconductor solutions in industrial and embedded electronics.
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S2-LPCBQTR Brand Info
The S2-LPCBQTR is part of a product family from S2 Microelectronics, a company recognized for delivering innovative semiconductor solutions tailored for industrial and consumer markets. S2 Microelectronics emphasizes quality, reliability, and energy efficiency in their product design, supporting a wide range of applications from embedded control to communication devices. The S2-LPCBQTR exemplifies this approach, combining advanced process technology with stringent quality controls to meet demanding engineering requirements.
FAQ
What is the maximum operating voltage for the S2-LPCBQTR?
The maximum operating voltage for the device is 5.5 volts, allowing it to function reliably within common industrial power supply ranges and ensuring compatibility with various system voltages.
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What package type is used for this device?
The device is supplied in a compact 32-pin QFN package, which promotes easy PCB layout, improved thermal dissipation, and compatibility with automated assembly processes.
How does the S2-LPCBQTR handle electrostatic discharge (ESD)?
It features robust ESD protection rated at 4 kV Human Body Model, providing enhanced resilience against static discharge events that could otherwise damage sensitive semiconductor components during manufacturing or field use.
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Can this device operate in extreme temperature environments?
Yes, it supports an operating temperature range from -40??C to +85??C, making it suitable for harsh industrial environments and outdoor applications where temperature extremes are common.
What are the typical power consumption characteristics?
At a nominal voltage of 3.3 V, the device typically consumes around 2.5 milliwatts, reflecting its design focus on low power usage to improve energy efficiency in embedded and portable systems.





