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Module Gesamtprogramm

Signal Conditioning is a modular and universal system that provides a comprehensive range of modules for signal conditioning, filtering, and amplification. It is designed to meet the needs of a variety of applications, from industrial to medical. The system offers a wide range of features, including an intuitive graphical user interface, a wide selection of modules, and a wide range of signal conditioning options. The modular design allows for easy customization and expansion, making it an ideal solution for any application.

Subcategories

7.1.4.1 - (Spannungsverstärkung DC/AC 4Hz/10kHz) Signal Conditioning System with Modular and Universal Modules for DC/AC Voltage Gain from 4Hz to 10kHz
7.1.4.2 - (Pt100 2/3/4L Anschluss (Pt500/Pt1000)) Universal Signal Conditioning System for Pt100 2/3/4L Anschluss (Pt500/Pt1000): Modulare And Module Gesamtprogramm
7.1.4.3 - (Thermoelement) A Comprehensive Guide to Modular and Universal Signal Conditioning Systems for Thermoelements
7.1.4.4 - (Strom 0-20/4-20mA) A Comprehensive Guide to Modular and Universal Signal Conditioning Systems for 0-20/4-20mA Currents
7.1.4.5 - (DMS / strain gauge / Brückenverstärker) A Comprehensive Modular and Universal System for Signal Conditioning with DMS, Strain Gauge and Bridge Amplifier
7.1.4.6 - (Other Modules) A Comprehensive Look at Modular and Universal Signal Conditioning Systems and Other Modules

Products

99 products

No. Code Product Price Quantity
7.1.4.6 Referenzspannung, Ausgang 1,000V MDR1901
Referenzspannung, Ausgang 1,000V

- **Precision Reference Output:** Provides a fixed, highly stable **1.000 V DC output** for calibration and measurement applications. - **High Accuracy and Stability:** Designed for minimal drift over time and temperature, ensuring consistent reference performance. - **Low Noise Output:** Optimized internal circuitry minimizes electrical noise, enabling precise voltage comparison and measurement. - **Compact and Robust Design:** Encased in a durable housing suitable for laboratory and field use. - **Ease of Integration:** Standard output terminals and connectors allow straightforward connection to digital multimeters, data acquisition systems, or calibration benches. - **Temperature Compensation:** Internal compensation circuitry maintains output accuracy across a wide ambient temperature range. - **Long-Term Reliability:** Built with precision components and protective circuitry to ensure stable operation over extended periods. - **Calibration Traceability:** Typically supplied with calibration data traceable to national or international standards (e.g., ISO/IEC 17025). - **Low Power Consumption:** Efficient design minimizes self-heating and power draw, preserving output stability. - **Maintenance-Free Operation:** Solid-state design requires minimal maintenance and no periodic adjustments under normal conditions.

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7.1.4.6 Referenzspannung, Ausgang 2,000V MDR1902
Referenzspannung, Ausgang 2,000V

- **Precision Output Voltage:** Fixed output of **2.000 V DC**, factory-calibrated for high accuracy and long-term stability. - **High Stability:** Designed to maintain voltage consistency over time and temperature variations, ensuring reliable reference performance. - **Low Noise Design:** Optimized internal circuitry minimizes output noise, providing a clean and stable reference signal for sensitive measurement systems. - **Temperature Compensation:** Internal compensation circuitry reduces drift due to ambient temperature changes, maintaining output precision across a wide operating range. - **Compact Form Factor:** Small, robust housing suitable for integration into calibration setups, test fixtures, or portable measurement systems. - **Ease of Use:** Simple connection interface for direct output access; no complex configuration required. - **Calibration-Grade Performance:** Suitable for use as a secondary or working standard in voltage calibration chains. - **Long-Term Reliability:** Built with high-quality components to ensure consistent performance and minimal recalibration requirements.

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7.1.4.6 Referenzspannung, Ausgang 2,500V MDR1903
Referenzspannung, Ausgang 2,500V

- **Precision Output Voltage:** Fixed 2.500 V DC reference output with high accuracy and low temperature coefficient. - **High Stability:** Designed for minimal long-term drift, ensuring consistent performance over extended operational periods. - **Low Noise Design:** Optimized internal circuitry minimizes output noise, supporting high-resolution analog-to-digital conversion and precision measurement. - **Temperature Compensation:** Internal compensation circuitry maintains voltage stability across a wide temperature range. - **Compact Form Factor:** Small, robust package suitable for integration into test equipment, control systems, and embedded electronics. - **Ease of Integration:** Standard pin configuration and output terminals simplify connection to measurement circuits or calibration instruments. - **Reliable Performance:** Built to meet industrial-grade reliability standards, ensuring dependable operation in demanding environments. - **Maintenance-Free Operation:** Solid-state design with no moving parts or mechanical adjustments required. - **Versatile Application Range:** Suitable for use in calibration benches, data acquisition systems, analog signal conditioning, and sensor excitation circuits.

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7.1.4.6 Referenzspannung, Ausgang 3,000V MDR1904
Referenzspannung, Ausgang 3,000V

- **Precision Reference Output:** Fixed output voltage of **3.000 V DC**, factory-calibrated for high accuracy. - **High Stability:** Designed for minimal drift over time and temperature, ensuring consistent performance in demanding environments. - **Low Noise Output:** Optimized internal circuitry minimizes output noise, providing a clean and stable reference signal. - **Compact Design:** Small form factor suitable for integration into test benches, calibration setups, or embedded systems. - **Ease of Use:** Simple connection interface for quick deployment in laboratory or production settings. - **Robust Construction:** Built with high-quality components to ensure long operational life and reliability. - **Calibration-Ready:** Can serve as a traceable reference for calibration of measurement instruments. - **Thermal Compensation:** Internal design compensates for temperature variations to maintain voltage accuracy. - **Protection Features:** May include short-circuit protection and reverse polarity protection (depending on configuration). - **Versatile Application Range:** Suitable for metrology, instrumentation, and precision electronics testing.

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7.1.4.6 Referenzspannung, Ausgang 4,000V MDR1905
Referenzspannung, Ausgang 4,000V

- **Precision Output Voltage:** Fixed output of **4.000 V DC**, factory-calibrated for high accuracy. - **High Stability:** Designed for minimal drift over time and temperature, ensuring consistent reference performance. - **Low Noise Design:** Optimized internal circuitry minimizes output noise, improving measurement repeatability. - **Temperature Compensation:** Internal compensation circuitry maintains voltage accuracy across a wide temperature range. - **Compact Form Factor:** Small, robust housing suitable for integration into test setups or portable calibration kits. - **Ease of Use:** Simple connection interface for direct use as a reference source without additional configuration. - **Calibration-Grade Performance:** Suitable for use as a secondary or working standard in calibration laboratories. - **Reliable Output Protection:** Output circuitry includes protection against short circuits and transient conditions. - **Long-Term Reliability:** Built with precision components and stable reference elements for extended operational life. - **Traceability:** Designed to be compatible with traceable calibration procedures to national or international standards.

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7.1.4.6 Modul für Widerstand DC-4Hz, 0-100Ohm, Ausgang ±5V MDR4601
Modul für Widerstand DC-4Hz, 0-100Ohm, Ausgang ±5V

- **Wide Resistance Measurement Range:** Supports input resistance from **0 Ω to 100 Ω**, suitable for low-resistance sensors, shunts, and transducers. - **Broad Frequency Response:** Operates from **DC up to 4 Hz**, enabling both static and slowly varying resistance measurements. - **Standardized Analog Output:** Provides a **±5 V output signal**, compatible with most analog input devices such as PLCs, DAQs, and control systems. - **High Accuracy and Stability:** Designed for precise resistance-to-voltage conversion with minimal drift and noise. - **Compact Modular Design:** Fits into modular instrumentation racks or DIN-rail systems for scalable integration. - **Galvanic Isolation (typical for MDR series):** Ensures electrical isolation between input, output, and power supply circuits, enhancing safety and reducing interference. - **Industrial-Grade Reliability:** Built for continuous operation in demanding environments, with robust construction and high immunity to electrical noise. - **Ease of Integration:** Standardized connectors and signal levels simplify connection to existing measurement and control systems. - **Low-Frequency Measurement Capability:** Optimized for applications where resistance changes occur slowly, such as temperature sensors (RTDs), strain gauges, or contact resistance monitoring.

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7.1.4.6 Modul für Widerstand DC-4Hz, 0-500Ohm, Ausgang ±5V MDR4602
Modul für Widerstand DC-4Hz, 0-500Ohm, Ausgang ±5V

- **Measurement Type:** Resistance measurement module for DC to low-frequency signals (DC–4 Hz). - **Measurement Range:** 0 Ω to 500 Ω, enabling accurate detection of resistive changes in sensors, transducers, or circuit elements. - **Output Signal:** ±5 V analog voltage output, providing a standardized interface for analog input channels in control or monitoring systems. - **Frequency Response:** DC to 4 Hz bandwidth, optimized for slow or static resistance variations such as temperature sensors, strain gauges, or potentiometric devices. - **High Accuracy and Stability:** Designed for precision measurement with minimal drift and noise, ensuring reliable long-term operation. - **Signal Conditioning:** Converts raw resistance input into a linear voltage output, simplifying integration with analog control systems. - **Compact Modular Design:** Suitable for DIN-rail or panel mounting within industrial enclosures. - **Electrical Isolation (typical for modules of this class):** Provides galvanic isolation between input, output, and power supply circuits to prevent ground loops and interference. - **Industrial Compatibility:** Designed for integration into process control, automation, and laboratory measurement systems. - **Ease of Integration:** Standardized output and connection scheme for compatibility with PLCs, DAQs, and analog monitoring equipment.

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7.1.4.6 Modul für Widerstand DC-4Hz, 0-1KOhm, Ausgang ±5V MDR4603
Modul für Widerstand DC-4Hz, 0-1KOhm, Ausgang ±5V

- **Measurement Range:** 0 Ω to 1 kΩ input resistance range, suitable for low-resistance sensors, transducers, and variable resistive elements. - **Frequency Range:** DC to 4 Hz, optimized for low-frequency or static resistance measurement applications. - **Output Signal:** ±5 V analog output, compatible with standard analog input channels in PLCs, DAQs, and control systems. - **High Accuracy Conversion:** Provides linear and stable conversion of resistance values into proportional voltage signals. - **Bipolar Output Capability:** Allows representation of both increasing and decreasing resistance values around a nominal midpoint, ideal for differential or symmetrical measurement systems. - **Industrial-Grade Design:** Built for continuous operation in demanding environments, with robust electrical isolation and noise immunity. - **Compact Modular Form Factor:** Designed for integration into modular instrumentation racks or DIN-rail systems. - **Low-Frequency Stability:** Maintains consistent performance across the DC–4 Hz range, minimizing drift and noise. - **Ease of Integration:** Standardized output and input interfaces simplify connection to existing measurement or control architectures. - **Versatile Application Range:** Suitable for resistive sensors (RTDs, potentiometers, strain gauges), calibration systems, and process monitoring setups.

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7.1.4.6 Modul für Widerstand DC-4Hz, 0-5KOhm, Ausgang ±5V MDR4604
Modul für Widerstand DC-4Hz, 0-5KOhm, Ausgang ±5V

- **Wide Measurement Range:** Supports resistance inputs from 0 Ω to 5 kΩ, enabling compatibility with a broad range of resistive sensors and transducers. - **Low-Frequency Operation:** Designed for DC to 4 Hz input signals, ensuring stable and accurate readings for slowly varying or static resistance values. - **Bipolar Analog Output:** Provides a ±5 V output signal proportional to the measured resistance, suitable for direct interfacing with analog input channels of PLCs, DAQs, and controllers. - **High Accuracy and Stability:** Engineered for precision measurement applications where linearity and repeatability are critical. - **Compact Modular Design:** The MDR4604 is built as a modular component, allowing easy integration into multi-channel measurement systems or DIN-rail-mounted signal conditioning racks. - **Industrial-Grade Reliability:** Designed for continuous operation in demanding environments, with robust electrical isolation and noise immunity. - **Ease of Integration:** Standardized output voltage range and input characteristics simplify system design and calibration.

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7.1.4.6 Modul für Widerstand DC-4Hz, 0-10KOhm, Ausgang ±5V MDR4605
Modul für Widerstand DC-4Hz, 0-10KOhm, Ausgang ±5V

- **Wide Input Range:** Accepts resistive inputs from **0 Ω to 10 kΩ**, suitable for a broad range of resistive sensors and transducers. - **Frequency Range:** Operates from **DC up to 4 Hz**, optimized for low-frequency or static resistance measurements. - **Analog Output:** Provides a **±5 V** output signal proportional to the measured resistance, compatible with standard analog input channels in control and monitoring systems. - **High Accuracy and Stability:** Designed for precise resistance-to-voltage conversion with minimal drift and noise, ensuring reliable long-term operation. - **Compact Modular Design:** The MDR4605 module is built for easy integration into modular instrumentation racks or DIN-rail systems. - **Signal Conditioning Capability:** Converts raw resistive signals into standardized voltage outputs, simplifying downstream signal processing. - **Industrial Compatibility:** Suitable for use in automation, process control, and laboratory instrumentation environments. - **Low-Frequency Optimization:** Ideal for applications where resistance changes occur slowly or where DC measurement is required.

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7.1.4.6 Modul für Widerstand DC-4Hz, 0-50KOhm, Ausgang ±5V MDR4606
Modul für Widerstand DC-4Hz, 0-50KOhm, Ausgang ±5V

- **Wide Measurement Range:** Measures resistances from **0 Ω to 50 kΩ**, suitable for a broad range of resistive sensors, potentiometers, and transducers. - **Low-Frequency Operation:** Designed for **DC to 4 Hz** input signals, ensuring accurate readings for slowly varying or static resistance values. - **Standardized Analog Output:** Provides a **±5 V output signal**, compatible with most analog input modules, PLCs, and data acquisition systems. - **High Accuracy and Stability:** Optimized for precision resistance-to-voltage conversion with minimal drift and noise. - **Compact Modular Design:** Built as a plug-in or DIN-rail mountable module for easy integration into control cabinets or instrumentation racks. - **Industrial-Grade Reliability:** Engineered for continuous operation in demanding environments, with robust electrical isolation and protection features. - **Ease of Integration:** Standardized electrical interfaces and output scaling simplify connection to existing measurement or control systems. - **Low Power Consumption:** Efficient internal circuitry minimizes heat generation and power draw. - **Signal Conditioning Capability:** Converts raw resistive input into a clean, linear voltage output suitable for further processing or monitoring.

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7.1.4.6 Modul für Widerstand DC-4Hz, 0-100KOhm, Ausgang ±5V MDR4607
Modul für Widerstand DC-4Hz, 0-100KOhm, Ausgang ±5V

- **Wide Measurement Range:** Supports resistance inputs from **0 Ω to 100 kΩ**, accommodating a broad spectrum of resistive sensors and transducers. - **Low-Frequency Operation:** Optimized for **DC to 4 Hz** signals, ensuring accurate readings for slowly varying or static resistance values. - **Standardized Output Signal:** Provides a **±5 V analog output**, compatible with most industrial control and monitoring systems. - **High Accuracy and Stability:** Designed for precision measurement applications, minimizing drift and noise across the operating range. - **Compact Modular Design:** Suitable for DIN-rail or panel mounting within instrumentation racks or control cabinets. - **Signal Conditioning Capability:** Converts raw resistive input into a linear voltage output, simplifying downstream signal processing. - **Industrial Reliability:** Built for continuous operation in demanding environments, with robust electrical isolation and protection features (typical for this class of modules). - **Ease of Integration:** Compatible with standard analog input channels of PLCs, DAQs, and process controllers.

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7.1.4.6 Modul für Widerstand DC-4Hz, 0-500KOhm, Ausgang ±5V MDR4608
Modul für Widerstand DC-4Hz, 0-500KOhm, Ausgang ±5V

- **Wide Measurement Range:** Supports resistance inputs from 0 Ω to 500 kΩ, enabling compatibility with a broad spectrum of resistive sensors and transducers. - **Low-Frequency Operation:** Designed for DC to 4 Hz signal bandwidth, ideal for slowly varying or static resistance measurements such as temperature sensors (RTDs, thermistors), strain gauges, or potentiometric devices. - **Standardized Analog Output:** Provides a bipolar analog output of ±5 V proportional to the measured resistance, suitable for direct interfacing with analog input modules, PLCs, and data acquisition systems. - **High Accuracy and Stability:** Precision internal circuitry ensures linear conversion and minimal drift over time and temperature. - **Compact Modular Design:** Built as a plug-in or DIN-rail mountable module for easy integration into existing control cabinets or instrumentation racks. - **Electrical Isolation (if applicable):** Many MDR-series modules include galvanic isolation between input, output, and power supply to prevent ground loops and enhance measurement integrity. - **Industrial Reliability:** Designed for continuous operation in industrial environments, with robust construction and protection against electrical noise and interference. - **Ease of Integration:** Standardized connectors and pin assignments simplify wiring and system configuration. - **Configurable Scaling:** Output scaling can be adjusted or calibrated to match specific measurement ranges or system requirements.

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7.1.4.6 Modul für Widerstand DC-4Hz, 0-1MOhm, Ausgang ±5V MDR4609
Modul für Widerstand DC-4Hz, 0-1MOhm, Ausgang ±5V

- **Wide Measurement Range:** Measures resistances from 0 Ω to 1 MΩ, covering both low and high resistance applications. - **Frequency Range:** Operates effectively from DC up to 4 Hz, enabling use with static and slowly varying resistive signals. - **Analog Output:** Provides a linear, bipolar output signal of ±5 V proportional to the measured resistance. - **High Accuracy and Stability:** Designed for precision measurement tasks where linearity and repeatability are critical. - **Compact Modular Design:** Suitable for integration into modular instrumentation racks or DIN-rail systems. - **Low Noise and Drift:** Ensures stable readings over time and temperature variations. - **Industrial Compatibility:** Compatible with standard analog input systems, controllers, and data loggers. - **Ease of Integration:** Standardized output voltage simplifies interfacing with analog-to-digital converters (ADCs) and control systems. - **Robust Construction:** Built for reliable operation in laboratory, industrial, and field environments.

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7.1.4.6 Modul für Widerstand DC-4Hz, 0-5MOhm, Ausgang ±5V MDR4610
Modul für Widerstand DC-4Hz, 0-5MOhm, Ausgang ±5V

- **Wide Measurement Range:** Measures resistances from 0 Ω to 5 MΩ, suitable for a broad spectrum of resistive sensors and transducers. - **Low-Frequency Operation:** Designed for DC to 4 Hz signal bandwidth, ensuring stable and accurate readings for slowly varying or static resistive loads. - **Standardized Output Signal:** Provides a linear analog output of ±5 V proportional to the measured resistance, compatible with most analog input modules and controllers. - **High Accuracy and Stability:** Engineered for precision measurement applications requiring low drift and high repeatability. - **Compact Modular Design:** Built as a plug-in module for easy integration into modular measurement systems or DIN-rail-mounted enclosures. - **Electrical Isolation (if applicable):** Typically includes galvanic isolation between input and output circuits to prevent ground loops and enhance measurement reliability. - **Industrial-Grade Construction:** Designed for continuous operation in industrial environments, with robust components and protective circuitry. - **Ease of Integration:** Compatible with standard analog signal processing equipment, PLCs, and data acquisition systems.

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7.1.4.6 Modul für Widerstand DC-4Hz, 0-10MOhm, Ausgang ±5V MDR4611
Modul für Widerstand DC-4Hz, 0-10MOhm, Ausgang ±5V

- **Wide Measurement Range:** Supports resistance measurements from 0 Ω up to 10 MΩ, enabling compatibility with a broad spectrum of resistive sensors and components. - **Low-Frequency Operation:** Designed for DC and low-frequency signals up to 4 Hz, ensuring stable and noise-free readings for slowly varying or static resistances. - **Standardized Analog Output:** Provides a linear ±5 V output proportional to the measured resistance, facilitating direct interfacing with analog input channels of PLCs, data acquisition systems, and control modules. - **High Accuracy and Stability:** Engineered for precision measurement applications where linearity, repeatability, and low drift are critical. - **Compact Modular Design:** Built as a plug-in or DIN-rail mountable module for easy integration into existing measurement racks or control cabinets. - **Signal Conditioning Capability:** Converts raw resistive input into a conditioned voltage signal, minimizing the need for external signal processing. - **Industrial-Grade Reliability:** Designed for continuous operation in industrial environments, with robust electrical isolation and protection features (depending on configuration). - **Ease of Integration:** Compatible with standard analog measurement systems and configurable for various resistance ranges and output scaling.

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7.1.4.6 Schmitt-Trigger, Schaltschwelle 1 V, Ausgang 0V oder 5V MDST1501
Schmitt-Trigger, Schaltschwelle 1 V, Ausgang 0V oder 5V

- **Defined Switching Threshold:** Fixed switching threshold at **1 V**, ensuring precise and repeatable signal triggering. - **Digital Output Levels:** Output voltage levels of **0 V (LOW)** and **5 V (HIGH)**, compatible with standard TTL and CMOS logic families. - **Hysteresis Functionality:** Incorporates Schmitt-trigger hysteresis to eliminate false triggering caused by noise or small signal fluctuations. - **Noise Immunity:** Enhanced noise rejection capability for stable operation in electrically noisy environments. - **Signal Conditioning:** Converts analog or slowly varying input signals into clean, fast digital transitions. - **Compact Design:** Typically available in a small form factor suitable for PCB mounting or integration into modular systems. - **Low Power Consumption:** Designed for efficient operation in low-voltage systems, minimizing power draw. - **High Switching Speed:** Capable of rapid state transitions, supporting high-frequency signal processing. - **Versatile Application Range:** Suitable for use in sensor signal conditioning, waveform shaping, threshold detection, and digital interfacing. - **Robust Output Drive:** Provides sufficient current drive capability for direct interfacing with logic inputs or small loads.

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7.1.4.6 Schmitt-Trigger, Schaltschwelle 2 V, Ausgang 0V oder 5V MDST1502
Schmitt-Trigger, Schaltschwelle 2 V, Ausgang 0V oder 5V

- **Defined Switching Threshold:** Fixed switching threshold at **2 V**, ensuring consistent and repeatable switching behavior. - **Digital Output Levels:** Output voltage levels of **0 V (LOW)** and **5 V (HIGH)**, compatible with standard TTL and CMOS logic circuits. - **Hysteresis Functionality:** Incorporates Schmitt-trigger hysteresis to eliminate signal noise and prevent false triggering from slow or noisy input transitions. - **High Noise Immunity:** Designed to reject small fluctuations around the threshold voltage, providing stable output even in electrically noisy environments. - **Fast Switching Response:** Optimized for rapid transition between logic states, suitable for high-speed signal conditioning. - **Compact and Robust Design:** Typically housed in a small electronic module or IC package for easy integration into circuit boards or control panels. - **Low Power Consumption:** Efficient internal circuitry minimizes current draw, making it suitable for battery-powered or low-power systems. - **Wide Application Range:** Ideal for signal shaping, waveform conditioning, threshold detection, and digital interfacing. - **Standard Logic Compatibility:** Output levels directly interface with 5 V logic systems without additional level shifting. - **Reliable Operation:** Stable performance across a wide range of input signal conditions and environmental factors.

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7.1.4.6 Schmitt-Trigger, Schaltschwelle 3 V, Ausgang 0V oder 5V MDST1503
Schmitt-Trigger, Schaltschwelle 3 V, Ausgang 0V oder 5V

- **Defined Switching Threshold:** The MDST1503 features a fixed switching threshold of **3 volts**, ensuring consistent and repeatable signal triggering. - **Binary Output Levels:** Provides a digital output of **0 V (LOW)** or **5 V (HIGH)**, compatible with standard TTL and CMOS logic levels. - **Noise Immunity:** The Schmitt-Trigger design incorporates hysteresis, effectively filtering out noise and preventing false triggering in environments with signal fluctuations or electrical interference. - **Signal Conditioning:** Converts slow or noisy analog input signals into clean, fast digital transitions suitable for logic circuits. - **High Stability:** Designed for stable operation across a wide range of input signal conditions and environmental factors. - **Compact and Modular:** Typically available in a small form factor suitable for PCB mounting or integration into modular electronic assemblies. - **Low Power Consumption:** Optimized for efficient operation in low-power digital systems. - **Versatile Application Range:** Suitable for use in automation, measurement, control, and embedded electronics.

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7.1.4.6 Schmitt-Trigger, Schaltschwelle 4 V, Ausgang 0V oder 5V MDST1504
Schmitt-Trigger, Schaltschwelle 4 V, Ausgang 0V oder 5V

- **Defined Switching Threshold:** The MDST1504 features a fixed switching threshold of **4 V**, ensuring consistent and repeatable switching behavior. - **Digital Output Levels:** Provides **0 V (LOW)** and **5 V (HIGH)** output states, compatible with standard TTL and CMOS logic levels. - **Noise Immunity:** Incorporates hysteresis characteristics inherent to Schmitt-Trigger circuits, effectively filtering out noise and preventing false triggering from slow or noisy input signals. - **Signal Conditioning:** Converts analog or slowly varying input signals into clean, fast digital transitions. - **High Stability:** Designed for stable operation across a wide range of input conditions and environmental factors. - **Compact Design:** Suitable for integration into printed circuit boards (PCBs) and modular electronic assemblies. - **Low Power Consumption:** Optimized for efficient operation in low-power digital and mixed-signal systems. - **Versatile Application Range:** Ideal for use in sensor signal processing, waveform shaping, threshold detection, and digital interfacing.

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7.1.4.6 Modul für Netzleistungsmessung True RMS, 0-100VA, 0..5V Out MPVA100
Modul für Netzleistungsmessung True RMS, 0-100VA, 0..5V Out

- **True RMS Measurement:** Provides accurate measurement of AC power independent of waveform distortion, ensuring reliable readings even with non-sinusoidal loads. - **Measurement Range:** 0 to 100 VA, suitable for low-power AC circuits and instrumentation applications. - **Analog Output:** Linear output signal of 0 to 5 V DC corresponding to the measured power range, enabling easy interfacing with PLCs, data acquisition systems, or analog input modules. - **Galvanic Isolation:** The output is electrically isolated from the measurement circuit, enhancing safety and minimizing interference or ground loop issues. - **External Modular Design:** Housed in an external modular enclosure (Anreihgehäuse) for convenient installation alongside other control or measurement modules. - **Compact and Robust Construction:** Designed for industrial environments, offering mechanical stability and long-term reliability. - **Ease of Integration:** Standardized output and form factor allow seamless integration into existing monitoring and control systems. - **Low Maintenance:** Solid-state measurement circuitry with minimal drift and no moving parts ensures long operational life and low maintenance requirements.

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7.1.4.6 Modul für Netzleistungsmessung True RMS, 0-1KVA, 0..5V Out MPVA1K
Modul für Netzleistungsmessung True RMS, 0-1KVA, 0..5V Out

- **True RMS Measurement:** Provides accurate measurement of real power (RMS) independent of waveform distortion or harmonic content. - **Measurement Range:** 0 to 1 kVA (kilovolt-ampere), suitable for small to medium power systems. - **Analog Output:** 0 to 5 V DC output signal proportional to measured power. - **Galvanic Isolation:** Electrical isolation between input and output circuits ensures safety and prevents ground loops. - **External Module Design:** Housed in an external enclosure for easy integration into existing systems. - **DIN Rail Mounting:** Designed for quick installation in control cabinets or switchboards. - **High Accuracy and Stability:** True RMS conversion ensures precise readings even under non-sinusoidal load conditions. - **Compact and Robust Construction:** Built for industrial environments with durable housing and reliable connectors. - **Ease of Integration:** Compatible with standard analog input devices such as PLCs, data loggers, and monitoring systems. - **Low Maintenance:** Solid-state design with minimal calibration requirements.

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7.1.4.6 Modul für Netzleistungsmessung True RMS, 0-200VA, 0..5V Out MPVA200
Modul für Netzleistungsmessung True RMS, 0-200VA, 0..5V Out

- **True RMS Measurement:** Provides precise measurement of real power (in VA) independent of waveform distortion, ensuring accuracy even with non-sinusoidal loads. - **Measurement Range:** 0 to 200 VA, optimized for low- to medium-power AC systems. - **Analog Output:** 0 to 5 V DC output signal proportional to the measured power, enabling easy interfacing with PLCs, data acquisition systems, or analog input modules. - **Galvanic Isolation:** The output is electrically isolated from the measurement circuit, ensuring safety and preventing ground loops or interference between measurement and control systems. - **External Module Design:** Housed in a robust external enclosure for easy installation and integration into existing systems. - **DIN-Rail Mountable (Anreihgehäuse):** Designed for standard industrial mounting, allowing quick installation in control cabinets. - **Compact and Modular:** Small footprint suitable for distributed measurement points or modular system architectures. - **High Accuracy and Stability:** True RMS conversion ensures consistent performance across varying load conditions and frequencies. - **Low Output Impedance:** Ensures stable signal transmission over longer cable runs. - **Industrial-Grade Reliability:** Built for continuous operation in industrial environments with stable performance under temperature and electrical noise variations.

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7.1.4.6 Modul für Netzleistungsmessung True RMS, 0-500VA, 0..5V Out MPVA500
Modul für Netzleistungsmessung True RMS, 0-500VA, 0..5V Out

- **True RMS Measurement:** Provides accurate measurement of AC power regardless of waveform distortion, ensuring precise readings even with non-sinusoidal loads. - **Measurement Range:** 0 to 500 VA, suitable for low- to medium-power AC circuits. - **Analog Output:** Linear output signal of 0 to 5 V DC proportional to measured power, enabling easy interfacing with PLCs, data acquisition systems, or analog input modules. - **Galvanic Isolation:** Output is electrically isolated from the measurement circuit, enhancing safety and reducing interference in control systems. - **External Module Design:** Housed in a compact, external DIN-rail mountable enclosure for easy integration into existing electrical panels. - **High Accuracy and Stability:** Designed for consistent performance across a wide range of operating conditions. - **Plug-and-Play Integration:** Simple wiring and standardized output make it compatible with a broad range of industrial monitoring and automation systems. - **Robust Construction:** Industrial-grade housing and components ensure long-term reliability in demanding environments. - **Low Power Consumption:** Efficient internal circuitry minimizes energy loss and heat generation. - **Maintenance-Free Operation:** Solid-state design with no moving parts or calibration drift under normal operating conditions.

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