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Other Modules

Signal Conditioning is a modular and universal system designed to provide a comprehensive range of modules for a variety of applications. It offers a wide range of modules for different applications such as signal conditioning, signal amplification, filtering, and other signal processing functions. Additionally, it provides a range of other modules for data acquisition, control, and communication. With its modular and universal system, Signal Conditioning offers a complete and comprehensive program of modules for any application.

Products

39 products

No. Code Product Price Quantity
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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