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Signal Conditioning ist eine Technik, die zur Verarbeitung von Signalen verwendet wird, um sie für die Verarbeitung durch ein System vorzubereiten. Es ist eine Kombination aus verschiedenen Techniken, darunter Analog-to-Digital-Konvertierung, Filterung und Amplifizierung. Ein modulares und universelles System ermöglicht es dem Benutzer, die Komponenten des Systems an die spezifischen Anforderungen anzupassen. Mit einem Module Gesamtprogramm können Benutzer eine Reihe von Modulen zusammenstellen, die ein vollständiges System bilden. Andere Module können auch hinzugefügt werden, um die Funktionalität des Systems zu erweitern.

Produkte

39 Produkte

Nr. Code Produkt Preis Menge
7.1.4.6 Frequenz/Spannungswandler 0..500Hz, IN >= 30mVpp, Out 0..5V MDF1101
Frequenz/Spannungswandler 0..500Hz, IN >= 30mVpp, Out 0..5V

- **Frequency-to-Voltage Conversion:** Converts input signal frequencies between 0 Hz and 500 Hz into a linear voltage output from 0 V to 5 V. - **Wide Input Signal Compatibility:** Accepts various waveform types including **square wave, triangle wave, and sine wave**. - **Low Input Signal Threshold:** Operates with input amplitudes as low as **30 mV peak-to-peak (mVpp)**, enabling use with low-level signal sources. - **Linear Output Response:** Provides a proportional voltage output corresponding to the input frequency, ensuring accurate analog representation of frequency variations. - **Compact and Robust Design:** Suitable for integration into industrial control panels, instrumentation systems, and laboratory setups. - **High Sensitivity and Stability:** Designed for stable operation across the full frequency range with minimal drift and noise. - **Ease of Integration:** Standardized output voltage range (0–5 V) compatible with most analog input modules, PLCs, and data acquisition systems. - **Versatile Signal Processing:** Ideal for converting frequency signals from sensors, tachometers, flow meters, or other transducers into measurable voltage signals.

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7.1.4.6 Frequenz/Spannungswandler 0..1000Hz, IN >= 30mVpp, Out 0..5V MDF1102
Frequenz/Spannungswandler 0..1000Hz, IN >= 30mVpp, Out 0..5V

- **Wide Frequency Input Range:** Accepts input frequencies from **0 Hz up to 1000 Hz**, suitable for low- to mid-frequency signal applications. - **Low Input Signal Requirement:** Operates with input amplitudes as low as **30 mVpp**, enabling direct connection to low-level signal sources without extensive pre-amplification. - **Multiple Waveform Compatibility:** Supports **square, triangular, and sinusoidal** input waveforms, providing flexibility across various signal types and sensor outputs. - **Linear Output Conversion:** Converts frequency variations directly into a proportional **0–5 V DC** output signal, ideal for analog control and measurement systems. - **High Sensitivity and Stability:** Designed for stable operation across the full input range, ensuring consistent output voltage proportionality and minimal drift. - **Compact and Robust Design:** Engineered for integration into control panels, instrumentation racks, or embedded systems where space and reliability are critical. - **Ease of Integration:** Standardized output voltage range allows direct interfacing with PLCs, analog input modules, data loggers, and control circuits. - **Low Power Consumption:** Optimized internal circuitry ensures efficient operation with minimal heat generation. - **Industrial-Grade Reliability:** Suitable for continuous operation in demanding environments, with robust signal conditioning and noise immunity.

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7.1.4.6 Frequenz/Spannungswandler 0..2500Hz, In >= 30mVpp, Out 0..5V MDF1103
Frequenz/Spannungswandler 0..2500Hz, In >= 30mVpp, Out 0..5V

- **Wide Frequency Range:** Accepts input frequencies from **0 Hz up to 2500 Hz**, enabling compatibility with a broad spectrum of signal sources. - **Low Input Signal Requirement:** Operates with input amplitudes as low as **30 mVpp**, allowing direct connection to low-level signal sources without extensive pre-amplification. - **Versatile Input Waveform Compatibility:** Supports **square, triangular, and sinusoidal** input waveforms, ensuring flexibility across various signal types and measurement systems. - **Linear Voltage Output:** Provides a **0 to 5 V DC** output proportional to the input frequency, suitable for analog control systems, data acquisition modules, and PLC analog inputs. - **High Conversion Accuracy:** Designed for stable and linear frequency-to-voltage conversion, minimizing distortion and ensuring repeatable measurement results. - **Compact and Robust Design:** Typically housed in a durable enclosure suitable for industrial environments, with reliable connectors and mounting options. - **Ease of Integration:** Standardized output voltage range compatible with most analog input devices, controllers, and monitoring systems. - **Low Power Consumption:** Optimized internal circuitry for efficient operation, reducing thermal load and power requirements. - **Signal Conditioning Capability:** Can serve as an interface between frequency-based sensors (e.g., tachometers, flow meters) and analog control systems.

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7.1.4.6 Frequenz/Spannungswandler 0..5000Hz, In >= 30mVpp, Out 0..5V MDF1104
Frequenz/Spannungswandler 0..5000Hz, In >= 30mVpp, Out 0..5V

- **Wide Frequency Range:** Operates from **0 Hz up to 5000 Hz**, enabling compatibility with a broad spectrum of signal sources. - **Low Input Sensitivity:** Accepts input signals with amplitudes as low as **30 mV peak-to-peak**, allowing direct connection to low-level signal sources without additional amplification. - **Multiple Waveform Compatibility:** Supports **square, triangular, and sinusoidal** input waveforms, ensuring flexibility across different signal types and sensor outputs. - **Linear Output Response:** Provides a **0 to 5 V DC** output proportional to the input frequency, ensuring accurate analog representation of frequency variations. - **High Conversion Accuracy:** Designed for precise frequency-to-voltage conversion with minimal nonlinearity and low drift over time and temperature. - **Compact and Robust Design:** Suitable for integration into control panels, instrumentation racks, or embedded systems. - **Ease of Integration:** Standard voltage output simplifies interfacing with analog input modules, data acquisition systems, and PLCs. - **Stable Operation:** Engineered for consistent performance across the full frequency range, with internal signal conditioning to minimize noise and distortion.

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7.1.4.6 Frequenz/Spannungswandler 0..10KHz, In >= 30mVpp, Out 0..5V MDF1105
Frequenz/Spannungswandler 0..10KHz, In >= 30mVpp, Out 0..5V

- **Frequency-to-Voltage Conversion:** Converts input frequencies from **0 to 10 kHz** into a proportional DC voltage output ranging from **0 to 5 V**. - **Wide Input Signal Compatibility:** Accepts **square, triangular, and sinusoidal waveforms**, ensuring flexibility across various signal sources. - **Low Input Signal Requirement:** Operates with input amplitudes as low as **30 mVpp**, allowing direct interfacing with low-level signal sources without additional amplification. - **Linear Output Response:** Provides a linear relationship between input frequency and output voltage, enabling precise analog representation of frequency-based signals. - **Compact and Robust Design:** Engineered for integration into control panels, instrumentation systems, and embedded electronic assemblies. - **High Signal Integrity:** Designed to minimize noise and distortion, ensuring stable and accurate voltage output even under varying input conditions. - **Versatile Application Range:** Suitable for use in speed measurement, flow monitoring, frequency sensing, and process control systems.

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7.1.4.6 Frequenz/Spannungswandler 0..20KHz, In >= 30mVpp, Out 0..5V MDF1106
Frequenz/Spannungswandler 0..20KHz, In >= 30mVpp, Out 0..5V

- **Wide Frequency Input Range:** Accepts input frequencies from **0 Hz up to 20 kHz**, enabling use with a broad spectrum of signal sources such as tachometers, flow sensors, and pulse generators. - **Low Input Signal Requirement:** Operates with input amplitudes as low as **30 mVpp**, allowing direct connection to low-level signal sources without the need for pre-amplification. - **Multiple Waveform Compatibility:** Supports **square, triangular, and sinusoidal** input waveforms, ensuring flexibility across different signal types and sensor outputs. - **Linear Voltage Output:** Provides a proportional **0 to 5 V DC** output corresponding to the input frequency, suitable for analog input modules, data acquisition systems, and control circuits. - **High Conversion Accuracy:** Designed for stable and linear conversion characteristics across the entire frequency range, minimizing distortion and nonlinearity. - **Compact and Robust Design:** Typically housed in a durable enclosure suitable for industrial environments, ensuring long-term reliability and resistance to electrical noise. - **Ease of Integration:** Standardized output voltage range and simple input interface make it easy to integrate into existing systems. - **Low Power Consumption:** Efficient internal circuitry minimizes power draw, suitable for continuous operation in embedded or distributed systems.

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7.1.4.6 Filter, Antialiasing, 0-100Hz, Eingang ±5V, Ausgang ±5V MDF6001
Filter, Antialiasing, 0-100Hz, Eingang ±5V, Ausgang ±5V

- **Antialiasing Functionality:** Designed to suppress high-frequency components above 100 Hz, preventing aliasing effects during analog-to-digital conversion. - **Defined Frequency Range:** Operates effectively within a **0–100 Hz passband**, ensuring accurate representation of low-frequency signals. - **Bipolar Signal Handling:** Accepts and outputs **±5 V analog signals**, compatible with standard instrumentation amplifiers and ADC input stages. - **Precision Analog Filtering:** Utilizes high-stability components to maintain consistent frequency response and minimal phase distortion. - **Low Noise Design:** Optimized for low noise and low distortion, ensuring high signal fidelity in sensitive measurement applications. - **Compact Modular Form Factor:** Designed as a plug-in or panel-mounted module for easy integration into existing systems. - **Stable Performance:** Temperature-compensated design ensures consistent operation across a wide environmental range. - **Ease of Integration:** Standardized input/output voltage levels and connector interfaces simplify system design and reduce setup time. - **High Reliability:** Industrial-grade construction for long-term stability and durability in demanding environments.

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7.1.4.6 Filter, Antialiasing, 0-200Hz, Eingang ±5V, Ausgang ±5V MDF6002
Filter, Antialiasing, 0-200Hz, Eingang ±5V, Ausgang ±5V

- **Antialiasing Low-Pass Filter:** Designed to suppress high-frequency components above 200 Hz, preventing aliasing effects during analog-to-digital conversion. - **Frequency Range:** 0–200 Hz nominal cutoff frequency, optimized for low-frequency measurement and control applications. - **Input Range:** ±5 V differential input, suitable for standard analog signal levels. - **Output Range:** ±5 V differential output, compatible with most ADC and signal processing modules. - **High Signal Fidelity:** Maintains linear phase and amplitude response within the passband, ensuring accurate signal reproduction. - **Precision Analog Design:** Utilizes high-quality operational amplifiers and precision passive components for stable performance. - **Low Noise and Distortion:** Engineered for minimal harmonic distortion and low noise floor, ideal for sensitive measurement systems. - **Compact Modular Form Factor:** Designed for integration into modular instrumentation systems, offering standardized mechanical and electrical interfaces. - **Stable Temperature Characteristics:** Ensures consistent performance across a wide operating temperature range. - **Ease of Integration:** Plug-and-play compatibility with modular DAQ chassis or signal conditioning racks.

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7.1.4.6 Filter, Antialiasing, 0-500Hz, Eingang ±5V, Ausgang ±5V MDF6003
Filter, Antialiasing, 0-500Hz, Eingang ±5V, Ausgang ±5V

- **Antialiasing Functionality:** Designed to suppress high-frequency components above 500 Hz, preventing aliasing effects during digital sampling. - **Wide Bandwidth:** Operates effectively from DC up to 500 Hz, suitable for low-frequency precision measurements. - **Bipolar Signal Handling:** Accepts and outputs signals in the range of **±5 V**, ideal for standard analog instrumentation systems. - **High Linearity and Low Distortion:** Ensures accurate signal reproduction with minimal phase and amplitude distortion within the passband. - **Compact Modular Design:** Engineered as a standalone module for integration into larger measurement or control systems. - **Stable Frequency Response:** Factory-calibrated cutoff frequency ensures consistent performance across temperature and time. - **Noise Reduction:** Provides effective suppression of unwanted high-frequency noise, improving signal-to-noise ratio (SNR). - **Plug-and-Play Integration:** Designed for easy incorporation into analog front-end circuits, data acquisition systems, or laboratory setups.

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7.1.4.6 Filter, Antialiasing, 0-1KHz, Eingang ±5V, Ausgang ±5V MDF6004
Filter, Antialiasing, 0-1KHz, Eingang ±5V, Ausgang ±5V

- **Antialiasing Functionality:** Designed specifically to eliminate high-frequency components above 1 kHz, ensuring accurate signal representation during sampling. - **Defined Frequency Range:** Operates effectively within a 0–1 kHz bandwidth, ideal for low-frequency analog signal processing. - **Symmetrical Voltage Range:** Accepts and outputs signals within ±5 V, compatible with standard analog instrumentation and ADC input stages. - **Precision Analog Design:** Utilizes high-stability components to maintain consistent frequency response and minimal phase distortion. - **Low Noise and Distortion:** Engineered for high signal fidelity, minimizing noise introduction and harmonic distortion. - **Compact Modular Form Factor:** Designed as a self-contained module for easy integration into larger systems or test setups. - **Plug-and-Play Integration:** Standardized electrical interface simplifies connection to existing analog front-end circuits. - **High Linearity:** Maintains linear response across the entire input range, ensuring accurate amplitude representation. - **Temperature Stability:** Built with components rated for stable operation across typical industrial temperature ranges. - **Robust Construction:** Suitable for laboratory, industrial, and embedded system environments.

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7.1.4.6 Filter, Antialiasing, 0-2KHz, Eingang ±5V, Ausgang ±5V MDF6005
Filter, Antialiasing, 0-2KHz, Eingang ±5V, Ausgang ±5V

- **Antialiasing Functionality:** Designed specifically to suppress high-frequency components above 2 kHz, preventing aliasing artifacts during digital sampling. - **Defined Frequency Range:** Operates effectively within a 0–2 kHz passband, ensuring linear phase and amplitude response for precision measurement signals. - **Bipolar Signal Compatibility:** Accepts and outputs symmetrical analog signals in the range of ±5 V, suitable for differential or single-ended analog systems. - **High Signal Integrity:** Provides low distortion and noise characteristics, maintaining signal fidelity across the entire operating bandwidth. - **Compact Modular Design:** Packaged as a self-contained filter module for easy integration into existing analog front-end systems. - **Stable Performance:** Designed for consistent frequency response and minimal drift over temperature and time. - **Plug-and-Play Integration:** Can be directly inserted into modular signal conditioning racks or used as a standalone inline filter. - **Robust Construction:** Built for industrial and laboratory environments requiring reliable analog filtering performance.

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7.1.4.6 Filter, Antialiasing, 0-5KHz, Eingang ±5V, Ausgang ±5V MDF6006
Filter, Antialiasing, 0-5KHz, Eingang ±5V, Ausgang ±5V

- **Antialiasing Functionality:** Designed to suppress high-frequency components above 5 kHz, preventing aliasing effects during digital sampling. - **Defined Frequency Range:** Operates effectively within a 0–5 kHz passband, ensuring accurate signal representation for low- to mid-frequency analog signals. - **Symmetrical Voltage Range:** Accepts and outputs signals within ±5 V, compatible with standard analog instrumentation and ADC input stages. - **Precision Analog Design:** Utilizes high-quality passive and active components to maintain linearity, low distortion, and stable frequency response. - **Compact Modular Form Factor:** Suitable for integration into rack-mounted systems, laboratory setups, or embedded signal processing environments. - **Low Noise and High Stability:** Optimized for minimal phase distortion and low noise contribution, ensuring high-fidelity signal conditioning. - **Plug-and-Play Integration:** Designed as a ready-to-use module requiring minimal external circuitry. - **Robust Construction:** Built for industrial and laboratory environments, offering reliable performance under continuous operation.

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7.1.4.6 Filter, Antialiasing, 0-10KHz, Eingang ±5V, Ausgang ±5V MDF6007
Filter, Antialiasing, 0-10KHz, Eingang ±5V, Ausgang ±5V

- **Antialiasing Functionality:** Designed specifically to suppress frequency components above the Nyquist frequency, preventing aliasing during analog-to-digital conversion. - **Wide Bandwidth:** Operates effectively across a **0 Hz to 10 kHz** passband, suitable for low- to mid-frequency analog signal processing. - **Precision Input/Output Range:** Accepts and delivers **±5 V analog signals**, compatible with standard instrumentation and data acquisition interfaces. - **High Signal Integrity:** Provides low noise, minimal phase distortion, and high linearity across the operating range. - **Modular Design:** Compact, self-contained filter module for easy integration into larger systems or test setups. - **Stable Frequency Response:** Engineered for consistent performance across temperature and load variations. - **Plug-and-Play Compatibility:** Designed for straightforward connection to analog front-end circuits, ADC modules, or control systems. - **Robust Construction:** Built for industrial and laboratory environments requiring reliable, repeatable filtering performance.

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7.1.4.6 Filter, Antialiasing, 0-20KHz, Eingang ±5V, Ausgang ±5V MDF6008
Filter, Antialiasing, 0-20KHz, Eingang ±5V, Ausgang ±5V

- **Antialiasing Low-Pass Filter:** Designed to attenuate frequencies above 20 kHz, preventing aliasing artifacts in sampled data systems. - **Wide Bandwidth Range:** Operates effectively from DC up to 20 kHz, suitable for audio, vibration, and general-purpose analog signals. - **Precision Analog Signal Path:** Maintains linear phase and low distortion across the passband for accurate signal reproduction. - **Input/Output Voltage Range:** ±5 V differential input and output, compatible with standard analog signal levels used in measurement and control systems. - **Modular Design:** Compact, self-contained filter module for easy integration into existing analog front-end architectures. - **High Signal Integrity:** Low noise and high common-mode rejection ratio (CMRR) ensure clean signal transmission. - **Stable Frequency Response:** Factory-calibrated cutoff frequency ensures consistent performance across temperature and time. - **Robust Construction:** Designed for industrial and laboratory environments requiring long-term reliability. - **Ease of Integration:** Standardized pinout and mechanical form factor for plug-in or panel-mounted configurations.

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7.1.4.6 Frequenz/Spannungswandler, In >= 1Vpp, Out 0..5V MDFH110x
Frequenz/Spannungswandler, In >= 1Vpp, Out 0..5V

- **Frequency-to-Voltage Conversion:** Converts input frequency signals into proportional DC voltage outputs. - **Input Signal Compatibility:** Accepts multiple waveform types—square, triangle, and sine waves—with a minimum input amplitude of 1 Vpp. - **Output Range:** Provides a linear output voltage from 0 V to 5 V, compatible with standard analog input modules, PLCs, and data acquisition systems. - **High Sensitivity:** Operates reliably with low-level input signals (≥ 1 Vpp), ensuring compatibility with a wide range of signal sources. - **Wide Frequency Range:** Designed to handle variable frequency inputs, enabling use in speed measurement, frequency monitoring, and process control. - **Stable and Linear Output:** Ensures accurate voltage representation of input frequency, minimizing distortion and drift. - **Compact Design:** Suitable for integration into control panels, instrumentation racks, or embedded systems. - **Industrial Reliability:** Built for continuous operation in demanding environments, with robust electronic design and stable performance characteristics.

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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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