1746-NI4/A | Analog Input Module in Fujian, China
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Specifications
- Condition
 - new
 - Dimensions
 - 14 cm x 13 cm x 3.5 cm
 - Weight
 - 0.25 kg
 - Mfr. part number
 - 1746-NI4/A
 - Part number/catalog no.
 - 1746-NI4
 - Series
 - SLC 500
 - Module type
 - Analog I/O Module
 - Backplane current (5 volts)
 - 25 milliamps
 - Backplane current (24 volts dc)
 - 85 milliamps
 - Input signal category
 - -20 to +20 mA (or) -10 to +10V dc
 - Bandwidth
 - 10 Hertz
 - Current input coding
 - -16,384 to +16,384
 - Update time
 - 512 microseconds
 - Voltage input coding
 - -32,768 to +32,767
 - Resolution
 - 16 bits
 - Chassis location
 - Any I/O module slot except slot 0
 - Step response
 - 60 milliseconds
 - Backplane current
 - (5 Volts) 35 mA;(24 Volts DC) 85 mA
 - Applications
 - Combination 120 Volts AC I/O
 - Conversion type
 - Delta–Sigma Modulation
 - Cable lengths
 - 0.5, 1, 2.5, or 5.0 meters.
 - Converter resolution
 - 16 bit
 - Upc
 - 6.62074E+11
 - Repeatability
 - ±1 LSB
 - Category
 - Input/Output Modules in China
 - Subcategory
 - Plc
 - Subcategory 2
 - Control system components
 - Listing ID
 - 101708864
 
Description
1746-NI4/A Analog Input Module
1746-NI4/A Analog Input Module The 1746-NI4 is a SLC 500 Analog I/O Module. This Analog I/O Module has Four (4) non-isolated differential, voltage or current selectable input channels. This module occupies single slot of the SLC 500 chassis and compatible with fixed or modular style hardware.
The 1746-NI4 is a SLC 500 Analog I/O Module. This Analog I/O Module has Four (4) non-isolated differential, voltage or current selectable input channels. This module occupies single slot of the SLC 500 chassis and compatible with fixed or modular style hardware. The 1746-NI4 has Standard Cable Lengths of 0.5, 1, 2.5, and 5.0 meters. The AIFM Connector of this module is 15-pin D-shell. The 1746-NI4 has Current Loop Input Specifications: the input range is +/-20 mA (nominal) and +/-30 mA (maximum). The Input impedance is 250 Ohms with a resolution of 1.22070 & µA per LSB and an approximate Gain error drift of +/-67 ppm/degrees Celsius.



