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Modulare And Universal System

Signal Conditioning ist ein Prozess, der dazu dient, Signale zu verändern, zu modifizieren, zu konvertieren und zu übertragen, um sie für eine bestimmte Anwendung zu optimieren. Es gibt zwei Arten von Signal Conditioning-Systemen: modulare und universell. Modulare Systeme sind speziell für eine bestimmte Anwendung konzipiert und können nicht für andere Anwendungen verwendet werden. Universelles Signal Conditioning ermöglicht es, ein einzelnes System zu verwenden, um Signale für verschiedene Anwendungen zu verarbeiten. Es bietet ein hohes Maß an Flexibilität und ist daher in vielen Anwendungen sehr beliebt.

Unterkategorien

7.1.1 - (PC Basisplatine und Slotbleche) Bauen Sie Ihr eigenes Signal Conditioning System mit modularen und universellen PC-Basisplatine und Slotblechen
7.1.2 - (Euroformat Basisplatine mit Frontplatten) Signal Conditioning mit modularem und universelem System auf Euroformat Basisplatine mit Frontplatten
7.1.3 - (Standard Mod.) Signal Conditioning mit modularen und universellen Systemen: Ein Standardmodul-Ansatz
7.1.4 - (Module Gesamtprogramm) Ein modulares und universelles System für Signal Conditioning: Ein Gesamtprogramm an Modulen
7.1.4.1 - (Spannungsverstärkung DC/AC 4Hz/10kHz) Ein modulares und universelles Signal Conditioning-System für DC/AC-Spannungsverstärkung von 4Hz bis 10kHz.
7.1.4.2 - (Pt100 2/3/4L Anschluss (Pt500/Pt1000)) Modulares und universelles Signal Conditioning-System für Pt100 2/3/4L Anschluss (Pt500/Pt1000)
7.1.4.3 - (Thermoelement) Maximale Flexibilität durch Modulares und Universales Signal Conditioning System mit Thermoelement Modulen im Gesamtprogramm.
7.1.4.4 - (Strom 0-20/4-20mA) Modulares und universelles Signal Conditioning-System für Strom 0-20/4-20mA.
7.1.4.5 - (DMS / strain gauge / Brückenverstärker) Modulares und universelles Signal Conditioning System: DMS/Strain Gauge/Brückenverstärker im Modulprogramm
7.1.4.6 - (Other Modules) Komplettes Modulprogramm für Signal Conditioning, Universell und Modular

Produkte

146 Produkte

Nr. Code Produkt Preis Menge
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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Kategorie: Other Modules

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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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Kategorie: Other Modules

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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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Kategorie: Other Modules

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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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Kategorie: Other Modules

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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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Kategorie: Other Modules

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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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Kategorie: Other Modules

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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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Kategorie: Other Modules

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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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Kategorie: Other Modules

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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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