DDTA114ECAQ-13-F Overview
The DDTA114ECAQ-13-F is a high-performance dual differential comparator designed for precision signal processing in industrial and instrumentation applications. Featuring low offset voltage and fast response times, it delivers reliable, accurate comparisons with minimal power consumption. Its small footprint and robust packaging make it ideal for integration into complex electronic systems requiring stable threshold detection and switching. Engineers and sourcing specialists benefit from its proven performance and consistent quality, ensuring dependable operation across a wide range of operating conditions. For more detailed information, visit IC Manufacturer.
DDTA114ECAQ-13-F Technical Specifications
| Parameter | Specification |
|---|---|
| Supply Voltage Range | 2.7 V to 12 V |
| Input Offset Voltage | Max 2 mV |
| Input Bias Current | Max 25 nA |
| Propagation Delay | Typical 150 ns |
| Output Type | Open-Drain |
| Operating Temperature Range | -40??C to +85??C |
| Supply Current | Typical 0.8 mA per comparator |
| Package | SOIC-8 |
DDTA114ECAQ-13-F Key Features
- Dual differential comparator architecture: Enables simultaneous comparison of two independent input pairs, improving system efficiency and reducing component count in multi-channel designs.
- Low input offset voltage: Ensures high accuracy in threshold detection, critical for sensitive measurement and control systems.
- Fast propagation delay: Supports rapid response in high-speed signal processing applications, minimizing latency in switching events.
- Open-drain output stage: Allows wired-AND configurations and easy interface with various logic levels, enhancing design flexibility.
- Wide supply voltage range: Provides compatibility with diverse power supplies, facilitating integration into existing industrial platforms.
- Low power consumption: Ideal for battery-powered or low-energy systems, extending operational lifetime without sacrificing performance.
- Robust SOIC-8 packaging: Offers reliable mechanical and thermal performance with easy PCB mounting and soldering.
DDTA114ECAQ-13-F Advantages vs Typical Alternatives
This device offers superior sensitivity with its low input offset voltage and fast propagation delay compared to typical comparators. Its dual comparator design reduces board space and component count, while the open-drain output stage enhances interface versatility. Additionally, the wide supply voltage range and low power consumption improve overall system reliability and efficiency, making it a preferred choice for industrial and embedded applications.
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Typical Applications
- Precision threshold detection in industrial automation control systems, where accurate and rapid switching is essential for process reliability and safety.
- Battery-powered instrumentation requiring low power consumption and stable operation over a broad temperature range.
- Signal conditioning and level detection circuits in measurement and data acquisition systems.
- Wired-AND logic implementation in multiplexed sensor interfaces and mixed-signal processing environments.
DDTA114ECAQ-13-F Brand Info
The DDTA114ECAQ-13-F is part of a comprehensive portfolio of analog and mixed-signal components by IC Manufacturer, a trusted name in semiconductor solutions for industrial and instrumentation markets. Designed with precision and reliability in mind, this comparator variant delivers consistent performance for demanding applications. The brand??s commitment to quality and innovation ensures that this product meets stringent industry standards and supports engineers in achieving optimal system designs.
FAQ
What is the typical supply voltage range for this comparator?
The device operates reliably within a supply voltage range from 2.7 V up to 12 V, allowing it to be used in a variety of industrial and instrumentation systems with different power profiles.
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How does the open-drain output benefit system design?
The open-drain output allows multiple comparator outputs to be wired together in a wired-AND configuration, enabling more flexible logic integration and simplifying system-level interconnections.





