-40%

National Instruments SC-2040 8 Channel Sampling Differential Amplifier (MIO-16E

$ 263.99

Availability: 100 in stock
  • Condition: The unit is guaranteed to work.
  • MPN: SC-2040
  • Brand: National Instruments
  • Model: SC-2040
  • All returns accepted: ReturnsNotAccepted

    Description

    National Instruments SC-2040 8 Channel Simultaneously Sampling Differential Amplifier (For MIO-16E Series DAQ Boards)
    Comes with a manual and what you see in the pictures. If you don't see it, you probably wont get it.
    Specifications are from National Instruments and may vary slightly due to upgrades, options, or revisions this unit may or may not have.
    This unit is sold as-is, untested.
    The Unit's Serial Number Tag Reads:
    Model Number:
    SC-2040
    Part Number:
    182665A-01
    Serial Number:
    AEC46B
    CE Marked:
    Yes
    Description:
    The SC-2040 is an eight-channel simultaneously sampling differential amplifier for the National Instruments MIO-16E Series DAQ boards. Each channel provides DIP-switch-selectable gain followed by a track-and-hold amplifier. The track-and-hold amplifiers sample all the inputs at the same time, which is useful for preserving interchannel phase relationships. The MIO-16E can trigger the track-and-hold amplifiers, or you can supply an external trigger source.
    The SC-2040 is a circuit
    board assembly that is placed on a workbench or mounted in a 19-in. rack. You can configure teh SC-2040 to draw power from the MIO-16E board or from an external +5 V supply. A red LED indicates when the board is powered on. Input signal leads are attached at screw terminals.
    Analog Input Specifications:
    Input Characteristics:
    Number of Channels:
    8 differential
    Input Signal Ranges:
    Board Gain
    (Hardward Selectable):
    Board Range
    Max Output Range ±10 V:
    1
    ±10 V
    10
    ±1 V
    100
    ±100 mV
    200
    ±50 mV
    300
    ±33.3 mV
    500
    ±20 mV
    600
    ±16.67 mV
    700
    ±14.29 mV
    800
    ±12.5 mV
    Input Coupling:
    DC
    Max Working Voltage (Signal + Common Mode):
    Average of 2 inputs should remain within ±7 V of ground
    Overvoltage Protection:
    ±30 V powered on, ±15 V powered off
    Inputs Protected:
    ACH <0 .. 7>
    Transfer Characteristics:
    Offset Error:
    Pregain Error After Calibration:
    ±100 µV max
    Postgain Error After Calibration:
    ±2 mV max
    Gain Error and Non Linearity:
    Gain
    (DIP-switch-selectable):
    Max
    Gain Error:
    Max
    Gain Tempco:
    Max
    Nonlinearity:
    1
    ±0.05%
    ±25 ppm/°C
    ±0.01%
    10
    ±0.1%
    ±25 ppm/°C
    ±0.01%
    100
    ±0.2%
    ±45 ppm/°C
    ±0.02%
    200
    ±0.4%
    ±60 ppm/°C
    ±0.02%
    300
    -0.3%, ±0.6%
    ±80 ppm/°C
    ±0.03%
    500
    1.0%
    ±100 ppm/°C
    ±0.04%
    600
    -0.2%, 1.5%
    ±120 ppm/°C
    ±0.05%
    700
    -0.1%, 2.0%
    ±150 ppm/°C
    ±0.06%
    800
    -0.3%, 3.0%
    ±200 ppm/°C
    ±0.07%
    Amplifier Characteristics:
    Input Impedance:
    Normal Powered On:
    100 GΩ in parallel with 20 pF
    Input Bias Current:
    ±100 pA, ±10 mA max
    Input Offset Current:
    ±10 pA
    CMRR:
    Gain:
    dB (Min and Typ):
    Gain = 1
    70 dB min, 90 dB typ
    Gain = 10
    87 dB min, 104 dB typ
    Gain > or = to 100
    100 dB min, 110 dB typ
    Output Range:
    ±10 V
    Dynamic Characteristics:
    Bandwidth:
    Gain:
    -3 dB
    Bandwidth:
    1
    2      MHz
    10
    800 kHz
    100
    500 kHz
    200
    300 kHz
    300
    180 kHz
    500
    120 kHz
    600
    100 kHz
    700
    80 kHz
    800
    70 kHz
    System Noise:
    Gain:
    Filter:
    1
    175 µVrms
    10
    50 µVrms
    100
    45 µVrms
    200
    40 µVrms
    300
    35 µVrms
    500
    33 µVrms
    600
    30 µVrms
    700
    29 µVrms
    800
    27 µVrms
    Noise Spectral Density:
    Input Noise (Gain = 1):
    12 nV/√Hz
    Output Noise:
    85 nV/√Hz
    Slew Rate:
    8 V/µs
    S/H Characteristics:
    Measurement:
    0.012%:
    0.003%:
    0.0015%:
    0.00076%:
    Track Mode Acquisition Time:
    7 µs
    10 µs
    50 µs
    1 ms
    Hold Mode Settling Time:
    1 µs
    1 µs
    1 µs
    2 µs
    Hold Step:
    -5 mV
    -
    -
    -
    Droop Rate:
    ±10 mV/s
    -
    -
    -
    Aperture Time:
    250 ns
    -
    -
    -
    Interchannel Skew:
    ±50 ns
    -
    -
    -
    Stability:
    Recommended Warm-Up Time:
    15 min
    Offset Temperature Coefficient:
    ±(10 + 150/gain) µV/°C
    Gain Temperature Coefficient:
    Gain (DIP-switch-selectable):
    Max Gain Tempco:
    1
    #25 ppm/C
    10
    #25 ppm/C
    100
    #45 ppm/C
    200
    #60 ppm/C
    300
    #80 ppm/C
    500
    #100 ppm/C
    600
    #120 ppm/C
    700
    #150 ppm/C
    800
    #200 ppm/C
    Power Requirement Specifications:
    +5 VDC (±10%):
    800 mA
    Total Power Dissipation:
    4 W
    Physical Specifications:
    Dimensions:
    1.8" x 7.9" x 4.9" (4.6 cm x 20.1 cm x 12.4 cm)
    I/O Connectors:
    Input:
    20-screw terminals
    Output:
    50-pin male ribbon-cable rear connector, 68-pin male ribbon-cable rear connector
    Environment Specifications:
    Operating Temperature:
    0° to 50°C
    Storage Temperature:
    -55° to 150°C
    Relative Humidity:
    5% to 90% noncondensing
    For Domestic Customers: Packaging, handling, and order processing included in shipping in all domestic shipments as quoted by the shipping calculator. For International Customers there is a .00 minimum for packaging, handling, and order processing. International shipping to be determined by destination.
    Prior to shipment I will need to know the following information (filled out on a form that I will send you) for International Customers or Packages/Freight being Forwarded internationally. International customers may also be subject to a freight forwarder form if applicable.:
    (1) Are you the end-user of this item?
    (2) If you are not the ultimate end-user of the item, please state the ultimate end user's name.
    (3) What is the ultimate country destination?
    08/29/12