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Honeywell dc to 60 Hz 51304754-150 MC-PAIH03 16 Inputs High Level Analog Input Processor

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Honeywell dc to 60 Hz 51304754-150 MC-PAIH03 16 Inputs High Level Analog Input Processor

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Brand Name :Honeywell
Model Number :MC-PAIH03
Place of Origin :USA
MOQ :1
Price :negotiable
Payment Terms :T/T, Western Union
Supply Ability :100
Delivery Time :2-3 work days
Packaging Details :New in original box
Brand :Honeywell
Model :MC-PAIH03
Part :51304754-150
Tpye :circuit card
Series :C300
HZ :60
Inputs :16
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Honeywell dc to 60 Hz 51304754-150 MC-PAIH03 16 Inputs High Level Analog Input Processor

Manufacturer : Honeywell
Product No. : 51304754-150
Product type : ??-PAIH03 High Level Analog Input Processor-16 Inputs
FTA Models: MU-TAIH02, TAIH12, TAIH52, TAIH03, TAIH13, TAIH23, TAIH53, TAIH22, TAIH62
Input Type: Voltage, current (2-wire or self-powered transmitters)
Input Channels : 16 differential input channels
Common Mode Rejection Ratio, dc to 60 Hz (500 source imbalance): 70 dB
Common Mode Voltage, dc to 60 Hz(1): -6 to +5 V peak
A/D Converter Resolution: 16 bits (14 bits used)
Input Range 0 to 5 V, 1 to 5 V, 0.4 to 2 V, 4-20 mA (through 250 )
Normal Mode Rejection Ratio, at 60 Hz: 32 dB
Normal Mode Filter Response : Single-pole RC, -3 dB @ 1 Hz
Maximum Normal Mode Input(differential inputs, no damage): ± 30 Volts
Crosstalk, dc to 60 Hz(channel-to-channel): 60 dB
Input Impedance (Voltage Inputs): > 10 M powered
Maximum Input Voltage(any input referenced to common, no damage): ± 30 Volts
Input Scan Rate: 4 samples per second per channel.All channels sampled within a 250 ms window
Hardware Accuracy (@ CMV = 0 V): ± 0.075% full-scale (23.5°± 2°C), ± 0.15% full-scale (0 to 50°C)
Surge withstand capability (Common mode) ANSI/IEEE C37.90.1-1978
Shipping Weight : 3 Kg


SIMILAR PRODUCTS

MU-GAIH83 MU-TAIH23 MU-TAIH02
MC-GAIH83 MC-TAIH23 MC-TAIH02
MU-GAIH14 MU-TAIH52 MU-TAIH03
MC-GAIH14 MC-TAIH52 MC-TAIH03
MU-GAIH84 MU-TAIH53 MU-TAIH12
MC-GAIH84 MC-TAIH53 MC-TAIH12
MU-GAIH22 MU-TAIH62 MU-TAIH13
MC-GAIH22 MC-TAIH62 MC-TAIH13
MU-GAIH92 MU-GAIH13 MU-TAIH22
MC-GAIH92 MC-GAIH13 MC-TAIH22
They perform engineering unit conversion, including fifth-order polynomial temperature input characterization, if the high level processor receives these inputs from mV/I converters. Through use of a dual processor design and custom integrated circuits, the low level analog input processor supports software configuration per channel for different thermocouples or RTD types with excellent resolution and accuracy. Open thermocouple detection is performed once per scan so that no bad data is propagated for control processing. The Low Level Multiplexer (LLMUX) processor provides an economical way to bring in a large number of data acquisition signals. Each processor can handle 32 points, using two 16-point FTAs. Every point is scanned once per second with a one second scan delay for processing. Open thermocouple detection is performed every 30 seconds for all points.
Options for either local or remote cold junction reference are available. The Remote Hardened Multiplexer (RHMUX) processor provides functionality similar to that of the LLMUX, but the two 16-input FTAs may be mounted up to 2 km away from the xPM cabinet. Each FTA is mounted in its own NEMA-4 or -4X enclosure, providing protection against precipitation, hosedown, and windblown dust. The FTA itself is conformally coated, and is capable of operation in a GX “Severe” corrosive environment and in the presence of condensing humidity.
Power for the RHMUX’s remote FTAs is provided by one of two power adapters, which provide power limiting, serial data interfaces, and galvanic isolation. The power adapter mounts in the FTA tray in the xPM cabinet, and provides the interface between the IOP and the two remote FTAs. The Intrinsically Safe Power Adapter (ISPA) allows the FTAs to be placed in Division 1 or Zone 0 environments
Every point is scanned once per 4 seconds. Data is made available at the end of each scan; there is no additional processing latency. Open-thermocouple detection (OTD) is optionally performed on every measurement. If enabled, the OTD test is performed immediately after the A/D conversion. If the test indicates an open thermocouple, data from the just-completed conversion will not be propagated. To prevent spurious ground paths from affecting readings, ground-fault detection is performed. All RHMUX remote FTAs are equipped with a local cold junction reference The RHMUX IOP is configured into the TPS PM system as a standard LLMUX. This permits using the RHMUX in Release 300 and greater systems.



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