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SCC-LP01

The National Instruments SCC-LP01 is a lowpass filter module with two differential input channels, a ±10 volts range, fourth order Butterworth filter, 25 Hertz cutoff frequency, and a maximum analog power consumption of 135 mW.

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    Description

    The National Instruments SCC-LP01 Lowpass Filter Module, with Part Number 777459-07, is designed for a variety of industrial applications requiring low pass filtering.

    This module features two differential input channels, each with a voltage range of ± 10 volts, and utilizes a fourth order Butterworth filter to ensure precise signal processing.

    It provides a cut-off frequency of 25 Hertz and delivers an output signal range of ± 5 volts, with a gain value of 0.5.

    The input impedance of the SCC-LP01 is a high 10 Giga-ohms, in parallel with a 10 Pico-farad capacitor, and it can operate at a maximum working voltage of ±15 V.

    The module boasts an impressive roll-off rate of 80 dB per decade and maintains a low total harmonic distortion of -90 decibels at the cutoff frequency, optimizing signal fidelity.

    With a maximum analog power consumption of just 135 mW and a light weight of 37 grams, it is engineered for efficiency and ease of integration into existing systems.

    The SCC-LP01’s field wiring is compatible with diameters ranging from 28 to 16 AWG, making it versatile for various wiring requirements.

    Specification Details
    Part Number 777459-07
    Product Name National Instruments SCC-LP01 Lowpass Filter Module
    Manufacturer National Instruments
    Channels 2 differential inputs
    Voltage Range ± 10 volts
    Filter Type Fourth order Butterworth filter
    Cut-off Frequency 25 Hertz
    Output Signal Range ± 5 volts
    Gain Value 0.5
    Input Impedance 10 Giga-ohms (parallel with 10 Pico-farad capacitor)
    Maximum Working Voltage ±15 V
    Roll-off Rate 80 dB per decade
    Total Harmonic Distortion -90 decibels at the cutoff frequency
    Maximum Analog Power Consumption 135 mW
    Weight 37 grams
    Field Wiring Diameter 28 to 16 AWG

    Question 1: What is the input impedance and associated capacitor value for the National Instruments SCC-LP01 Lowpass Filter Module with Part Number 777459-07?
    Answer 1: The maximum working voltage for the National Instruments SCC-LP01 Lowpass Filter Module with Part Number 777459-07 is ±15 volts, and the total harmonic distortion at the cutoff frequency is -90 decibels.

    Question 2: What is the maximum working voltage and the total harmonic distortion value at the cutoff frequency for the National Instruments SCC-LP01 Lowpass Filter Module with Part Number 777459-07?
    Answer 2: The input impedance of the National Instruments SCC-LP01 Lowpass Filter Module is 10 Giga-ohms, and it is in parallel with a 10 Pico-farad capacitor.

    Question 3: What are the characteristics and performance specifications of the National Instruments SCC-LP01 Lowpass Filter Module with Part Number 777459-07?
    Answer 3: The maximum operating voltage of the National Instruments SCC-LP01 Lowpass Filter Module with Part Number 777459-07 is ±15 volts, and its maximum analog power consumption is 135 milliwatts.

    Question 4: What is the input impedance and the associated capacitor value for the National Instruments SCC-LP01 Lowpass Filter Module?
    Answer 4: The input impedance of the National Instruments SCC-LP01 Lowpass Filter Module with Part Number 777459-07 is 10 Giga-ohms, in parallel with a capacitor value of 10 Pico-farads.

    Question 5: What is the maximum operating voltage and analog power consumption of the National Instruments SCC-LP01 Lowpass Filter Module with Part Number 777459-07?
    Answer 5: The National Instruments SCC-LP01 Lowpass Filter Module, Part Number 777459-07, features two differential input channels with a voltage range of ±10 volts, employs a fourth order Butterworth filter with a 25 Hertz cut-off frequency, outputs signals in the range of ±5 volts with a gain of 0.5, and has an input impedance of 10 Giga-ohms in parallel with a 10 Pico-farad capacitor. It operates at a maximum