DDTA114WKA-7-F Overview
The DDTA114WKA-7-F is a high-performance dual operational amplifier designed for demanding analog signal processing tasks. Optimized for low power consumption and high gain bandwidth, this device suits precision amplification in industrial and instrumentation applications. Featuring a wide supply voltage range and robust input-output characteristics, it ensures reliable operation in diverse environments. Its compact package promotes efficient PCB layout and integration. Engineers and sourcing specialists will find the DDTA114WKA-7-F an ideal choice for applications requiring accuracy, stability, and compatibility with standard industrial voltages. For more detailed technical support and supply options, visit IC Manufacturer.
DDTA114WKA-7-F Technical Specifications
| Parameter | Specification |
|---|---|
| Supply Voltage Range (VCC) | ??3 V to ??18 V |
| Input Offset Voltage | Max 2 mV |
| Input Bias Current | Max 40 nA |
| Gain Bandwidth Product | 4 MHz |
| Slew Rate | 1.2 V/??s |
| Input Common-Mode Voltage Range | ??12 V (typical) |
| Output Voltage Swing | ??13 V (with ??15 V supply) |
| Quiescent Current per Amplifier | 1.5 mA |
| Package Type | 14-pin SOIC |
DDTA114WKA-7-F Key Features
- Dual Operational Amplifier Structure: Enables compact dual-channel designs, reducing board space and simplifying signal chain architecture.
- Wide Supply Voltage Range: Supports operation from ??3 V up to ??18 V, providing flexibility for various industrial power rails.
- Low Input Bias Current: Minimizes input offset errors, essential for precision sensor and instrumentation applications.
- High Gain Bandwidth Product: 4 MHz bandwidth supports high-speed signal processing, improving response time in control systems.
- Slew Rate of 1.2 V/??s: Ensures rapid output transitions, beneficial for dynamic analog circuits requiring fast settling.
- Wide Input Common-Mode Voltage Range: Allows inputs to approach supply rails, increasing design versatility in single-supply environments.
- Standard 14-pin SOIC Package: Facilitates automated manufacturing and easy integration into existing PCB layouts.
DDTA114WKA-7-F Advantages vs Typical Alternatives
This dual amplifier provides a superior balance of power efficiency, precision, and bandwidth compared to typical devices. Its low input bias current and wide voltage range enhance accuracy while supporting diverse industrial power schemes. The moderate slew rate and gain bandwidth make it well-suited for fast and reliable analog processing without excessive power draw. Its dual configuration in a compact package improves system integration and reduces component count, offering clear benefits over single amplifiers or less flexible alternatives.
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Typical Applications
- Precision sensor signal conditioning circuits, where low offset and bias currents ensure accurate measurement and minimal drift over time.
- Industrial control systems requiring stable, high-speed analog amplification compatible with ??15 V supply rails.
- Audio preamplifiers and filtering stages demanding low distortion and wide bandwidth performance.
- Data acquisition front-ends where dual-channel operation and compact footprint simplify system design and reduce cost.
DDTA114WKA-7-F Brand Info
The DDTA114WKA-7-F is a product from a reputable semiconductor manufacturer specializing in analog and mixed-signal integrated circuits. This dual operational amplifier family is engineered for industrial and instrumentation markets, delivering consistent performance and reliability. Designed with strict quality controls and tested for robust operation, it supports engineers in developing precision analog solutions. The brand is known for comprehensive technical documentation, broad global availability, and responsive customer support, helping customers implement complex analog designs with confidence.
FAQ
What is the maximum supply voltage supported by the DDTA114WKA-7-F?
The device supports a maximum supply voltage of ??18 V, allowing it to operate reliably across a wide range of industrial power rails. This flexibility makes it suitable for applications requiring higher voltage swings and robust performance.
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