OJ-SS-112LMH2 Overview
The OJ-SS-112LMH2 is a precision semiconductor component designed to deliver high-performance signal processing in industrial applications. Engineered with advanced semiconductor technology, it offers robust functionality with stable operation under varying environmental conditions. This device excels in providing reliable data acquisition and conversion with a focus on low noise and high sensitivity. Its compact design and efficient power consumption make it an ideal choice for integration into complex electronic systems. For more detailed manufacturer insights, visit IC Manufacturer.
OJ-SS-112LMH2 Technical Specifications
Parameter | Specification |
---|---|
Operating Voltage | 3.0 V to 3.6 V |
Current Consumption | Typical 5.2 mA |
Signal Bandwidth | Up to 1 MHz |
Input Impedance | 1 M?? |
Output Type | Differential analog output |
Operating Temperature Range | -40??C to +85??C |
Package Type | Compact surface-mount 8-pin SOIC |
Noise Density | 15 nV/??Hz @ 1 kHz |
OJ-SS-112LMH2 Key Features
- High sensitivity input stage: Enables precise detection of low-level signals, ensuring accurate measurement and control in sensitive industrial environments.
- Wide operating voltage range: Allows flexible integration with various power systems, enhancing compatibility with existing infrastructure.
- Low noise performance: Minimizes signal distortion and interference, improving signal integrity for critical applications.
- Robust temperature tolerance: Supports reliable operation across a broad temperature range, suitable for harsh industrial conditions.
OJ-SS-112LMH2 Advantages vs Typical Alternatives
This device offers superior sensitivity and lower noise density compared to typical alternatives, which translates to more accurate signal processing and improved system reliability. Its low power consumption supports energy-efficient designs, while the compact surface-mount package facilitates straightforward integration into space-constrained applications. The extended temperature range ensures consistent performance under challenging environmental factors, giving it a distinct edge over other semiconductor components.
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Typical Applications
- Industrial sensor signal conditioning: Ideal for amplifying and filtering analog sensor outputs in automation and process control systems, ensuring precise data acquisition.
- Data acquisition modules requiring high accuracy and low noise operation for measurement systems.
- Embedded control systems demanding low power consumption and compact form factors.
- Analog front-end circuits in instrumentation where temperature stability is critical.
OJ-SS-112LMH2 Brand Info
The OJ-SS-112LMH2 is developed by a leading semiconductor specialist known for delivering high-quality components tailored to industrial electronics. This product embodies the brand??s commitment to precision engineering, reliability, and innovation. Designed for demanding applications, it leverages cutting-edge semiconductor manufacturing processes to offer consistent performance and facilitate seamless integration into modern electronic systems.
FAQ
What is the typical power consumption of this component?
The device typically consumes 5.2 mA of current at its nominal operating voltage range of 3.0 V to 3.6 V, making it efficient for continuous operation in power-sensitive industrial environments.
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Can this component operate in harsh temperature environments?
Yes, it supports an operating temperature range from -40??C up to +85??C, which ensures stable functionality in demanding industrial and outdoor applications.
What type of output does this device provide?
The output is a differential analog signal, designed to enhance noise immunity and improve signal integrity in processing and measurement circuits.
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Is the device suitable for compact electronic assemblies?
Absolutely. It comes in a compact 8-pin SOIC surface-mount package, ideal for applications where PCB space is limited and high-density assembly is required.
How does the device handle signal noise?
It features a low noise density of 15 nV/??Hz at 1 k