The NI SCXI-1140 is an 8-channel per-channel independent differential amplifier module for high-speed dynamic signal conditioning, paired natively with the SCXI-1304 AC/DC coupling terminal block. It provides seven software-selectable gain ranges from ×1 to ×500 and a full-power signal bandwidth up to 2 MHz, supporting vibration, acoustic and strain dynamic signal acquisition. Each channel adopts discrete amplifier circuitry without shared components, featuring 100 MΩ ultra-high input impedance and low input noise density of 12 nV/√Hz. It supports jumper-configured input bias current paths for floating sensors and ±30 V powered-on overvoltage protection. All eight differential channels are multiplexed to occupy only one DAQ analog input channel, compatible with all standard SCXI chassis and SCXI-1600 USB controllers for portable high-precision dynamic testing.
Telephone/WhatsApp: +86 15339537795 Email address: 2645963284@qq.com
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NI SCXI-1140 8-Channel High-Bandwidth Differential Amplifier Module

NI SCXI-1140 8-Channel High-Bandwidth Differential Amplifier Module

The NI SCXI-1140 is an 8-channel per-channel independent differential amplifier module for high-speed dynamic signal conditioning, paired natively with the SCXI-1304 AC/DC coupling terminal block. It provides seven software-selectable gain ranges from ×1 to ×500 and a full-power signal bandwidth up to 2 MHz, supporting vibration, acoustic and strain dynamic signal acquisition. Each channel adopts discrete amplifier circuitry without shared components, featuring 100 MΩ ultra-high input impedance and low input noise density of 12 nV/√Hz. It supports jumper-configured input bias current paths for floating sensors and ±30 V powered-on overvoltage protection. All eight differential channels are multiplexed to occupy only one DAQ analog input channel, compatible with all standard SCXI chassis and SCXI-1600 USB controllers for portable high-precision dynamic testing.
Telephone/WhatsApp: +86 15339537795 Email address: 2645963284@qq.com

Description

Channel & Wiring Configuration

  • 8-channel fully differential independent analog input
  • Per-channel discrete amplifier circuit, no shared gain components
  • Rear 96-pin shielded DIN connector for terminal block connection
  • All channels multiplexed to one DAQ analog input channel via SCXI backplane
  • Jumper configurable bias resistance for floating signal grounding

Programmable Gain & Input Range

  • Software-selectable gain multiples: ×1, ×2, ×5, ×10, ×20, ×100, ×500
  • Max differential input range: ±10 V across all gain settings
  • Minimum measurable input: ±20 mV at ×500 maximum gain
  • Slew rate: 15 V/μs for fast transient signal response

Bandwidth & Noise Parameters

  • Full-power signal bandwidth: 2 MHz (-3dB)
  • Input voltage noise density: 12 nV/√Hz
  • Output voltage noise density: 75 nV/√Hz
  • Channel crosstalk: <-85 dB at 1 kHz, <-60 dB at 100 kHz

Key Electrical Specifications

  • Input impedance: 100 MΩ parallel with 20 pF per channel
  • 60Hz CMRR: >110 dB; 1kHz CMRR: >100 dB
  • Overvoltage protection: ±30 VDC powered on, ±15 VDC powered off
  • Backplane power consumption: 3.4 W typical operating power
  • Channel-to-channel isolation: 250 Vrms continuous isolation

Mechanical & Environmental Specifications

  • Dimension: 172×86×32 mm, standard single-slot SCXI module
  • Operating temperature: -20℃ ~ +70℃
  • Storage temperature: -40℃ ~ +85℃
  • Humidity: 10%–90% non-condensing

Compatibility Matching List

  • Matched terminal block: SCXI-1304 AC/DC coupling terminal block
  • Compatible chassis: SCXI-1000, SCXI-1001
  • Compatible controllers: SCXI-1600, PCI/PXI SCXI bus adapters
  • Official status: Obsolete, supplied for aftermarket replacement

Software Compatibility

  • Drivers: NI-DAQmx, Traditional NI-DAQ
  • Configuration tools: NI Measurement & Automation Explorer (MAX)
  • Supported software: LabVIEW, LabWindows/CVI, Python DAQmx, C#

Pros & Limitations

  • Pros: Wide 2 MHz dynamic bandwidth, ultra-low input noise, independent per-channel amplification, flexible AC/DC signal support via matched terminal block, robust common-mode interference suppression
  • Limitations: No onboard anti-aliasing filter, no built-in cold junction compensation, not applicable for direct thermocouple low-frequency measurement

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