DeltaV™ M-series Traditional I/O

Product Data Sheet - January 2021

Introduction

Traditional I/O is a modular subsystem designed for field installation, offering flexibility and ease of use. It features function and field wiring protection keys to ensure correct I/O card insertion. Its modularity, protection keys, and plug-and-play capabilities make DeltaV™ Traditional I/O a smart choice for process control systems.

Key Benefits:

The DeltaV™ I/O subsystem is designed for easy installation and maintenance.

Product Description

The Traditional I/O subsystem comprises:

I/O Cards

A wide range of analog and discrete I/O cards are available to meet specific requirements, supporting simplex or redundant installations. These include:

All I/O cards feature a common form factor, clear labeling, and indicators for power and internal errors. Eight-channel cards display visible channel status LEDs. Cards meet ISA G3 corrosion specifications with superior components and conformal coating. Pulse counters are supported on most DI cards, with frequencies up to 50 KHz available on the Multi-Function card's high-speed pulse input. The Sequence-of-Events DI card offers high-resolution event data collection.

I/O Card Redundancy

Redundant I/O cards are available for critical applications, utilizing the same cards as simplex installations. When installed on a two-wide redundant terminal block, cards are recognized as a pair by the controller. The system automatically switches to a standby card in case of a fault, with switchover completed within two scans of the I/O bus. Hardware alerts report integrity errors for both primary and secondary cards.

Hardware Specifications

Common Environmental Specifications for all I/O Interfaces:

CategorySpecifications
Operating Temperature*-40 to 70°C (-40 to 158°F)
Storage Temperature-40 to 85°C (-40 to 185°F)
Relative Humidity5 to 95%, non-condensing
Airborne ContaminantsISA-S71.04-1985 Airborne Contaminants Class G3, Conformal coating
Protection RatingIP 20
Shock10 g 1/2-sine wave for 11 ms
Vibration1 mm peak-to-peak from 5 to 16 Hz; 0.5 g from 16 to 150 Hz
DimensionsH 10.7 cm (4.2 in.), W 4.1 cm (1.6 in.), Depth 10.5 cm (4.1 in.)

*Operating electronics at the higher end of its temperature range for long periods may shorten its expected lifetime. Refer to the 'Effects of Heat and Airflow Inside an Enclosure' white paper for more information.

Analog Input I/O Cards

Specifications for HART AI-Card, 8-channel, 4 to 20 mA

SpecificationValue
Number of ChannelsEight
IsolationEach channel is optically isolated from the system and factory tested to 1500V DC.
Nominal Signal Range (span)4 to 20 mA
Full Signal Range1 to 22.5 mA, with over range checking
LocalBus Current (12V DC nominal) per CardSimplex: 120 mA typical, 150 mA maximum; Redundant: 175 mA typical, 250 mA maximum (per card)
Field Circuit Power per Card300 mA maximum at 24V DC (+10%)
Accuracy Over Temperature Range0.1% of span
Resolution16-bits A/D converter
Repeatability0.05% of span
Roll-off Frequency-3 dB at 2.7 Hz, -20.5 dB at ½ the sampling frequency
CalibrationNone required
Optional Fuse2.0 A
Communications SupportHART pass-through for AMS Device Manager. Field device variable and status reporting for control functions.
Hart Scan Time600 - 800 ms (typical) per enabled channel

Simplified circuit and connection diagram for simplex AI card, 8-channel, 4 to 20 mA, HART.

Specifications for AI (Plus) Card, 16-channel, 4 to 20 mA, HART

SpecificationValue
Number of Channels16
Input Sensor Types4 to 20 mA (span), 2-wire
Full Signal Range2 to 22 mA, with over range checking
Transmitter Power13.5 V minimum at 20 mA (max current limited at 29 mA)
Accuracy Over Temperature Range0.2% of span
Repeatability0.05% of span
Resolution16-bit A/D converter
Roll-off Frequency (Anti-aliasing)-3 dB at 2.7 Hz; -20.5 dB at 20 Hz
CalibrationNone required
Local Bus Current per Card (12V DC nominal)Simplex: 85 mA typical, 150 mA maximum; Redundant: 110 mA typical, 200 mA maximum
Field Circuit Power per Card500 mA maximum @ 24V DC (+/-10%)
IsolationEach channel is optically isolated from the system and factory tested to 1000V DC.
HART Communications SupportHART pass-through for AMS Device Manager. HART variable and status reporting for control functions.
Hart Scan Time600 – 800 mS (typical) per enabled channel

Simplified circuit and connection diagram for redundant AI Plus card, 16-channel, 4 to 20 mA, HART.

Specifications for RTD Input Card, 8-channel

SpecificationValue
RTD Channels per CardEight
Sensor Types2 wire, 3 wire, or 4 wire
Sensor ConfigurationResistance, Pt100, Pt200, Pt500, Ni120, Cu10, User Defined
Full Scale Signal RangeSee Table below
AccuracySee Table below
Repeatability0.05% of span
A/D Resolution16-bit
CalibrationNone required
Units°C, °F
Sensor Excitation Current100 μA
Common Mode Rejection120 dB at 50/60 Hz
Common Mode Impedance> 10 mega ohms
LocalBus Current (12V DC nominal)160 mA
Open Sensor Detection Time1 second
Open mV Lead Detection Time15 seconds

RTD, ohms Sensor Type Specifications

Sensor TypeFull ScaleOperating Range25°C Reference AccuracyTemperature DriftResolution
Resistance0 to 2,000 Ω0 to 2,000 Ω+ 6.2 Ω± 0.112 Ω/°C~0.02 Ω
Pt100-200 to 850°C-200 to 850°C± 0.5°C± 0.018°C/°C~0.05°C
Pt200-200 to 850°C-200 to 850°C± 0.5°C± 0.012°C/°C~0.05°C
Pt500-200 to 850°C-200 to 850°C± 3.5°C± 0.063°C/°C~0.18°C
Ni120-70 to 300°C70 to 300°C± 0.2°C± 0.006°C/°C~0.02°C
Cu10-30 to 140°C-30 to 140°C± 2.0°C± 0.157°C/°C~0.23°C
User Defined*0 to 1000 Ω0 to 1000 Ω± 0.4 Ω± 0.009 Ω/°C~0.05 Ω

*The Callendar-Van Dusen linearization equation can be used with user defined Pt RTDs. Refer to Recommended I/O Practices in DeltaV Books online for usage information.

Simplified circuit diagram for RTD Input card, 8 channels.

Specifications for Thermocouple/mV Input Card, 8-channel

SpecificationValue
Channels per CardEight
Sensor Types Thermocouple mVB, E, J, K, N, R, S, T, uncharacterized
Sensor RangesSee table next page
Repeatability0.05% of span
A/D Resolution16-bit
CalibrationNone required
Units°C, °F
Cold Junction Compensation (Not available on mV channels)Local: Integrally mounted in terminal block. External: Configure one channel as external cold junction compensation for remaining inputs.
IsolationEach channel is optically isolated from the system and factory tested to 1500V DC. Channels 1, 2, 3, and 4 are isolated from channels 5, 6, 7, and 8 (verified by 1500V DC factory test). Thermocouples attached to channels 1, 2, 3, and 4 are not electrically isolated and should be within + 0.7V DC of each other. Thermocouples attached to channels 5, 6, 7, and 8 are not electrically isolated and should be within + 0.7V DC of each other.
Common Mode Rejection120 dB at DC/50/60 Hz
Common Mode Impedance> 10 mega ohms
Normal Mode Rejection60 dB at 60 Hz
LocalBus Current (12V DC nominal)210 mA
Open Sensor DetectionYes (< 70 nA)
Open Sensor Detection Time10 seconds

Thermocouple Sensor Type Specifications

Sensor Type25°C Reference AccuracyTemperature DriftNominal ResolutionFull ScaleOperating Range
Uncharacterized (no linearization, no cold junction compensation.)0.1 mV± 0.002 mV/ °C~0.003mV-100 to 100 mV-100 to 100 mV
B±1.2°C±0.116°C/°C0.09°C250 to 1810°C500 to 1810°C
E±0.5°C±0.004°C/°C0.05°C-200 to 1000°C-200 to 1000°C
J±0.6°C±0.005°C/ °C0.06°C-210 to 1200°C-190 to 1200°C
K±0.5°C±013°C/°C0.05°C-270 to 1372°C-140 to 1372°C
N±1.0°C±015°C/ °C0.05°C-270 to 1300°C-190 to 1300°C
R±1.7°C±083°C/°C0.06°C-50 to 1768°C0 to 1768°C
S±1.8°C±095°C/°C0.08°C-50 to 1768°C0 to 1768°C
T±0.7°C±025°C/ °C0.04°C-270 to 400°C-200 to 400°C

RTD, ohms Sensor Type Specifications

Sensor TypeFull ScaleOperating Range25°C Reference AccuracyTemperature DriftResolution
Low-level Voltage Source-100 to 100 mV-100 to 100 mV0.1 mV0.002 mV/°C~0.003 mV°

Simplified circuit diagram of Thermocouple/mV card, 8 channels.

Specifications for Isolated Input Card, 4-channel

SpecificationValue
Number of Channels4
Isolation CAN/CSA-C22.2 No.1010.1-92Installation Cat II, Pollution degree 2
Dielectric StrengthChannel-to-system - 600V AC double insulation. Each channel is optically isolated from the system and factory tested to 5000V DC. Channel-to-channel - 600V basic insulation. Each channel is optically isolated from each other and factory tested to 3100V DC. Channel-to-system - 3700V RMS. Channel-to-channel - 2200V RMS.
ADC Resolution16-bit
-3dB Filter Frequency2.7 Hz
DC/50/60 Hz Common Mode Rejection120 dB
Input Impedance10 Megaohms
Thermocouple Sensor TypesB, E, J, K, N, R, S, T, Uncharacterized
RTD Sensor TypesPT100, PT200, Ni120, Cu10, Resistance/User Defined
mV and V RangesRefer to following tables
Input Type MixIndependently configurable
Ambient Temperature-40° to 70°C
CalibrationNone required
MountingAssigned slot of I/O carrier
LocalBus Power Rating12V DC, 350 mA, no field power required

Isolated Input Card, Thermocouple, and MilliVolt Input Specifications

ItemSpecification
Linearization Error±0.003% full scale
Cold Junction Compensation Accuracy±1.0°C
Cold Junction Compensation TypesOff, local, remote
Cold Junction Compensation Range-40 to 85°C
Temperature ScaleITS90
Open Circuit Detection (Thermocouple Only)0.4 µA DC
Detection Time1 second

Isolated Input Card, RTD, ohms Input Specifications

ItemSpecification
Measurement Configurations2, 3, and 4 wire
Excitation Current100 μA DC
Temperature ScaleITS90
Open Sensor Detection Time1 second
Short Circuit Detection Time1 second
Pt 100 and Pt 200 Alpha0.00385
Detection Time1 second

Isolated Input Card, RTD, ohms Input Specifications

Sensor Type25°C Reference AccuracyTemperature DriftResolutionSensor Input Range
Pt100± 0.5°C± 0.018°C/°C0.05°C-200 to 850°C
Pt200± 0.5°C± 0.012°C/°C0.05°C-200 to 850°C
Ni120± 0.2°C± 0.006°C/°C0.02°C-70 to 300°C
Cu10± 2.0°C± 0.076°C/°C0.23°C-30 to 140°C
Resistance± 0.5 ohms± 0.018 ohms/°C0.02 ohms1 to 1000 ohms
User Defined*±0.4 ohms±0.009 ohms/°C~0.05 ohms0 to 1000 ohms

*The Callendar-Van Dusen linearization equation can be used with user defined Pt RTDs. Refer to Recommended I/O Practices in DeltaV Books online for usage information.

Simplified circuit diagram of Isolated Input card, RTD, 4 channels.

Isolated Input Card, Voltage Input Range Specifications

Sensor TypeSensor Range25°C Reference AccuracyTemperature DriftMaximum Resolution
0-5V0-5V±0.005V±0.0002V/°C0.00009V
0-10V0-10V± 0.010V±0.0004V/°C0.00016V
1-5V1-5V±0.0005V±0.0002V/°C0.00009V
1V+/-1V±0.0025V±0.0002V/°C0.00015V
5V+/-5V±0.005V±0.0002V/°C0.00017V
10V+/-10V±0.010V±0.0004V/°C0.0003V

Analog Output I/O Cards

Specifications for AO Card, 8-channel, 4 to 20 mA, HART

ItemSpecification
Number of ChannelsEight
IsolationEach channel is optically isolated from the system and factory tested to 1500V DC.
Nominal Signal Range (span)4 to 20 mA
Full Signal Range1 to 23 mA
LocalBus Current (12V DC nominal) per Card100 mA typical, 150 mA maximum
Field Circuit Power per Card300 mA maximum @ 24V DC (+/-10%)
Accuracy Over Temperature Range0.25% of span
Resolution12-bit
Output Compliance20 mA at 21.6V DC supply into 700 ohms load
CalibrationInformation stored on card.
Optional Fuse2.0 A

Simplified circuit and connection diagram for simplex AO card, 8-channel, 4 to 20 mA, HART.

Specifications for AO (Plus) Card, 16-Channel, 4 to 20 mA, HART

SpecificationValue
Number of Channels16
Device Types4 to 20 mA
Full Signal Range1 to 23 mA
Accuracy Over Temperature Range0.25% of span
Resolution14-bit A/D converter
CalibrationNone required
Local Bus Current per Card (12V DC nominal)Simplex: 85 mA typical, 150 mA maximum. Redundant: 110 mA typical, 260 mA maximum.
Field Circuit Power per Card400 mA maximum @ 24V DC (+/-10%)
IsolationEach channel is optically isolated from the system and factory tested to 1000V DC.
HART Communications SupportHART pass-through for AMS Device Manager. HART variable and status reporting for control functions.
Hart Scan Time600 – 800 mS (typical) per enabled channel

Simplified circuit and connection diagram for simplex AO (Plus) card, 16-channel, 4 to 20 mA, HART.

Discrete Input I/O Cards

Specifications for DI Card, 8-channel, 24V DC, Dry Contact

SpecificationValue
Number of ChannelsEight
Input CompatibilityDry Contact (known to operate with many NAMUR sensors)
Detection Level for On>2.2 mA
Detection Level for Off<1 mA
Input Impedance5 KΩ (approximate)
Wetting Voltage15 Volts
Fault Detection CapableField resistor pack (known to operate with many NAMUR sensors)
Configurable Channel Types:Input: Dry contact or discrete state sensor changing <2 Hz. Pulse Count: Pulse train <75 Hz
Local Bus current (12V DC nominal) per CardSimplex: 75 mA typical, 100 mA maximum; Redundant: 90 mA typical, 150 mA maximum
Field Circuit Power per Card100 mA at 24V DC (±10%)
IsolationEach channel is optically isolated from the system and factory tested to 1500V DC.
Optional Fuse2.0 A (Terminal block option)

Simplified circuit and connection diagram for DI card, 8-channel, 24V DC, Dry Contact.

Specifications for DI Card, 8-channel, 24V DC, Isolated

SpecificationValue
Number of ChannelsEight
IsolationEach channel is optically isolated from the system and from each other and factory tested to 1500V DC.
Detection Level for On>10V DC
Detection Level for Off<5V DC
Input Impedance5 mA at 24V
LocalBus Current (12V DC nominal) per Card75 mA typical, 100 mA maximum
Field Circuit Power per CardNone
Optional Fuse2.0 A

Simplified circuit and connection diagram for DI card, 8-channel, 24V DC, Isolated.

Specifications for DI Card, 32-channel, 24V DC, Dry Contact

SpecificationValue
Number of Channels32
IsolationEach channel is optically isolated from the system and factory tested to 1500V DC.
Detection Level for On>2 mA
Detection Level for Off<0.25 mA
Input Impedance5K ohm (approximate)
LocalBus Current (12V DC nominal) per Card50 mA typical, 75 mA maximum
Field Circuit Power per Card150 mA at 24V DC
ReturnUses common return
Terminal Block32-screw termination block

Specifications for DI (Plus) Card, 32-channel, 24V DC, Dry Contact

SpecificationValue
Number of Channels32
Detection Level for On>2 mA
Detection Level for Off<0.25 mA
Input Impedance5K ohm (approximate)
Wetting Voltage24V DC
Local Bus Current (12V DC Nominal)50 mA typical, 75 mA maximum
Field Circuit Power per Card150 mA maximum @ 24V DC (+20%/-15%)
IsolationEach channel is optically isolated from the system and factory tested to 1500V DC.

Simplified circuit and connection diagram for DI Card, 32-channel, 24V DC, Dry contact.

Simplified circuit and connection diagram for simplex DI Plus Card, 32-channel, 24V DC, Dry contact.

Specifications for DI Card, 8-channel, 120V AC, Dry Contact

SpecificationValue
Number of ChannelsEight
IsolationEach channel is optically isolated from the system at 250V AC
Detection Level for On>1.4 mA
Detection Level for Off<0.56 mA
Input Impedance60 ΚΩ
LocalBus Current (12V DC nominal) per Card75 mA typical, 100 mA maximum
Field Circuit Power per Card15 mA at 120V AC
Optional Fuse2.0 A

Simplified circuit and connection diagram for DI card, 8-channel, 120V AC, Dry Contact.

Specifications for DI Card, 8-channel, 120V AC, Isolated

SpecificationValue
Number of ChannelsEight
IsolationEach channel is optically isolated from the system at 250V AC and from other channels at 250V AC.
Detection Level for On84 to 130V AC
Detection Level for Off0 to 34V AC
Input Load (contact cleaning)2 mA at 120V AC
Input Impedance60 ΚΩ
LocalBus Current (12V DC nominal) per Card75 mA typical, 100 mA maximum
Field Circuit Power per CardNone
Optional Fuse2.0 A

Simplified circuit and connection diagram for DI card, 8-channel, 120V AC, Isolated.

Specifications for PCI Card, 4-channel, 24V DC, Dry Contact

SpecificationValue
Number of ChannelsFour
Detection Level for ON (min.)>4.8V DC (>5 mA)
Detection Level for OFF (max.)<1.0V DC (<1 mA)
Input Impedance25 mA at 24V DC (960 Ohms)
Input Accuracy0.1% reading (over 0.1 Hz to 50 kHz)
Resolution+/- 1 pulse
Minimum Pulse Width10 μs
Maximum Input Voltage24V DC +20%
Resolution Counter32-bit
Input FrequencySine wave 10 Hz to 50kHz; Square wave 0.1 Hz to 50 kHz
Wetting Voltage24V DC
LocalBus Current (12V DC nominal)150 mA maximum
Field Circuit Power per Card25 mA at 24V DC (1 A resettable fuse)
IsolationEach channel is optically isolated from the system at 250V AC and from other channels at 100V AC.

Simplified circuit and connection diagram for PCI card, 4 channel, 24V DC, Isolated.

Specifications for SOE Card, 16-channel, 24V DC, Dry Contact

SpecificationValue
Number of Channels16
Detection Level for On>2 mA
Detection Level for Off<0.25 mA
Input Impedance5K ohm (approximate)
Wetting Voltage24V DC
Channel Scan Rate0.25 msec for all 16 channels
Time Stamp Accuracy (for SOE enabled channels only)*0.25 msec from same card; 1 msec from same controller
LocalBus Current (12V DC nominal)75 mA typical, 100 mA maximum
Field Circuit Power per Card75 mA at 24V DC
IsolationEach channel is optically isolated from the system and factory tested to 1500V DC.

*Refer to Sequence of Event Product Data Sheet for more information on System capabilities and Sequence of Event data collection.

Simplified circuit and connection diagram for SOE card, 16-channel, 24V DC, Dry contact.

Discrete Output I/O Cards

Specifications for DO Card, 8-channel, 24V DC, Isolated

SpecificationValue
Number of ChannelsEight
IsolationEach channel is optically isolated from the system and from each other and factory tested to 1500V DC.
Output Range2V DC to 60V DC
Output Rating1.0 A
Off State Leakage1.2 mA maximum
LocalBus Current (12V DC nominal) per Card100 mA typical, 150 mA maximum
Field Circuit Power per CardNone
Configurable Channel TypesOutput: Output stays in last state submitted by the controller. Momentary/Output: Output is active for a pre-configured time period (100 ms to 100 s). Continuous Pulse Output: Output is active as a percentage of a pre-configured base time period (100 ms to 100 s). Resolution = 5 ms

Simplified circuit and connection diagram for DO card, 8-channel, 24V DC, Isolated.

Specifications for DO Card, 8-channel, 24V DC, High-Side

SpecificationValue
Number of ChannelsEight
IsolationEach channel is optically isolated from the system and factory tested to 1500V DC.
Output Range2V DC to 60V DC
Output Rating1.0 A continuous per channel; 3.0 A maximum per I/O Interface
Off State Leakage1.2 mA maximum
LocalBus Current (12V DC nominal) per Card100 mA typical, 150 mA maximum
Field Circuit Power per Card3.0 A at 24V DC per I/O Interface
Configurable Channel TypesOutput: Output stays in last state submitted by the controller. Momentary Output: Output is active for a pre-configured time period (100 ms to 100 s). Continuous Pulse Output: Output is active as a percentage of a pre-configured base time period (100 ms to 100 s). Resolution = 5 ms
Optional Fuse2.0 A

Simplified circuit and connection diagram for DO card, 8-channel, 24V DC, High-Side.

Specifications for DO (plus) Card, 32-channel, 24V DC, High-Side

SpecificationValue
Number of Channels32
Output Rating100 mA per channel
Output Range24V DC ±10%
Off-State Leakage0.1 mA maximum
Local Bus Current (12V DC Nominal)100 mA typical, 150 mA maximum
Field Circuit Power per Card3.2 A @ 24V DC (+20%/-15%)
IsolationEach channel is optically isolated from the system and factory tested to 1500V DC.

Simplified circuit and connection diagram for simplex DO (Plus) Card, 32-channel, 24V DC, High-Side.

Specifications for DO Card, 8-channel, 120/230V AC, Isolated

SpecificationValue
Number of ChannelsEight
IsolationEach channel is optically isolated from system at 250V AC and from other channels at 250V AC
Output Range20 to 250V AC
Output Rating1.0 A continuous per channel; 2.0 A maximum per card up to 60°C (140°F); 3.0 A maximum per card up to 50°C (122°F)
Off State Leakage2 mA maximum at 120V AC; 4 mA maximum at 230V AC
LocalBus Current (12V DC nominal) per Card100 mA typical, 150 mA maximum
Field Circuit Power per CardNone
Configurable Channel TypesOutput: Output stays in last state submitted by the controller. Momentary Output: Output is active for a pre-configured time period (100 ms to 100 s). Continuous Pulse Output: Output is active as a percentage of a pre-configured base time period (100 ms to 100 s). Resolution = 5 ms
Optional Fuse2.0 A

Simplified circuit and connection diagram for DO card, 8-channel, 120/230V AC, Isolated.

Specifications for DO Card, 8-channel, 120/230V AC, High-Side

SpecificationValue
Number of ChannelsEight
IsolationEach channel is optically isolated from the system at 250V AC
Output Range20 to 250V AC
Output Rating1.0 A continuous per channel; 2.0 A maximum per card up to 60°C (140°F); 3.0 A maximum per card up to 50°C (122°F)
Off State Leakage2 mA maximum at 120V AC; 4 mA maximum at 230V AC
LocalBus Current (12V DC nominal) per Card100 mA typical, 150 mA maximum
Field Circuit Power per Card3.0 A at 120V AC or 230V AC
Configurable Channel TypesOutput: Output stays in last state submitted by the controller. Momentary Output: Output is active for a pre-configured time period (100 ms to 100 s). Continuous Pulse Output: Output is active as a percentage of a pre-configured base time period (100 ms to 100 s). Resolution = 5 ms
Optional Fuse2.0 A

Simplified circuit and connection diagram for DO card, 8-channel,120/230V AC, High-Side.

I/O Terminal Blocks

A variety of I/O terminal blocks are available to meet specific functionality and environmental requirements. The I/O interface is a combination of the I/O card and the I/O terminal block. Each I/O interface is uniquely keyed to accept only a compatible terminal block.

Standard Terminal Blocks:

Redundant Terminal Blocks:

Mass Termination Blocks:

The keying mechanism ensures correct card-to-terminal block compatibility. Refer to the compatibility tables for specific card and terminal block pairings.

Traditional I/O and Terminal Block Compatibility

This section details the compatibility between various I/O cards and their corresponding terminal blocks and mass termination blocks.

I/O CardI/O Card KeyingTraditional I/O Terminal BlocksMass Termination Blocks
AI, 8-Channel, 4-20 mA, HARTA1I/O terminal block, Fused I/O terminal block, 4-wire I/O terminal block16-pin Mass termination block (Supports 2-wire Devices), 24-pin Mass termination block (Supports 4-wire Devices)
AI Plus, 16-Channel, 4-20 mA, HARTA616-Channel 2-Wire AI terminal block for Series 2 Plus, 16-Channel 4-Wire AI terminal block for Series 2 Plus, Redundant 2- & 4-Wire AI terminal block for Series 2 Plus48-pin AI Mass termination block for Series 2 Plus, Redundant 48-pin AI Mass termination block for Series 2 Plus
AO, 8-Channel, 4-20 mA, HARTA4I/O terminal block, Fused terminal block16-pin Mass termination block
AO Plus, 16-Channel, 4-20 mA, HARTA516-Channel AO terminal block for Series 2 Plus, Redundant 16-Channel AO terminal block for Series 2 Plus48-pin AO Mass termination block for Series 2 Plus, Redundant 48-pin AO Mass termination block for Series 2 Plus
Thermocouple, mVC1I/O terminal block, Cold Junction Compensated (CJC) terminal blockNA
RTD, 8-ChannelC3Resistant Temperature Device (RTD) terminal blockNA
Isolated Input CardC2Isolated Input terminal blockNA
DI, 8-Channel, 24V DC, Dry ContactB1I/O terminal block, Fused terminal block16-pin Mass termination block
DI, 8-Channel, 24V DC, IsolatedB2I/O terminal block, Fused terminal block16-pin Mass termination block
DI, 32-Channel, 24V DC, Dry ContactB332-Channel terminal block40-pin Mass termination block
DI Plus, 32-Channel, 24V DC, Dry ContactE332-Channel DI terminal block for Series 2 Plus, Redundant 32-Channel DI terminal block for Series 2 Plus40-pin DI Mass termination block for Series 2 Plus, Redundant 40-pin DI Mass termination block for Series 2 Plus
PCI, 4-ChannelC632-Channel terminal blockNA
SOE, 16-Channel, 24V DCC532-Channel terminal block40-pin Mass termination block
DO, 8-Channel, 24V DC, High-SideB6I/O terminal block, Fused terminal block10-pin Mass termination block, 16-pin Mass termination block
DO, 8-Channel, 24V DC, IsolatedB5I/O terminal block, Fused terminal block16-pin Mass termination block
DO Plus, 32-Channel, 24V DC High-SideB432-Channel DO terminal block for Series 2 Plus, Redundant 32-Channel DO terminal block for Series 2 Plus40-pin DO Mass termination block for Series 2 Plus, Redundant 40-pin DO Mass termination block for Series 2 Plus
DI, 8-Channel, 120V AC, Dry ContactE1I/O terminal block, Fused terminal blockNA
DI, 8-Channel, 120V AC, IsolatedE4I/O terminal block, Fused terminal blockNA
DO, 8-Channel, 120V AC/ 230V AC, High-SideF1I/O terminal block, Fused terminal blockNA
DO, 8-Channel, 120V AC/ 230V AC, IsolatedF4I/O terminal block, Fused terminal blockNA

System Compatibility

M-series traditional I/O hardware requires MQ, MX or PK controllers, and M-series horizontal or VerticalPlus carriers. S-series and M-series controllers can be installed on the same DeltaV Area Control Network. Control modules can be assigned to any controller with fully supported inter-controller references.

The following traditional I/O Plus cards require v13.3.1 or higher Software:

Termination Fault Detection is a feature that only works within the following cards:

This feature is compatible with redundant 40-pin Mass DI or DO Terminal Blocks combined with M-series Mass Connection Solutions or P+F HiD/HiC IS barriers and termination boards for DeltaV DCS. Other approved third-party mass termination products can be used with both non-Plus S-series and M-series I/O interfaces.

M-series traditional I/O horizontal carriers are not physically compatible with S-series horizontal controller carriers. Install M-series I/O interfaces with M-series controllers and S-series I/O interfaces with S-series controllers.

Certifications

The following certifications are available for M-series Traditional I/O:

Hazardous Area/Location

M-series Traditional I/O Cards can be installed and used based on the following Standards:

Refer to the following documents for installation instructions: Class 1 Division 2 Installation Instructions DeltaV M-series 12P1293, Zone 2 Installation Instructions DeltaV M-series 12P2046.

Additional Field Circuit Certification Information

DC Voltage Traditional I/O Card Description

Class I Division II NonincendiveZone 2 Ex nL CertifiedZone 2 Ex ic CertifiedZone 2 Ex nA Certified
Al, 8 Channels 4-20 mA, HART✓*✓*✓*
Al Plus, 16 Channels 4-20 mA, HART✓*✓*✓*
RTD/Resistance, 8 Channels
TC/mV, 8 Channels
TC/mV/V/RTD Isolated, 4 Channels
AO, 8 Channels 4-20 mA, HART✓*✓*✓*✓*
AO Plus, 16 Channels 4-20 mA, HART
DI, 8 Channels, 24V DC, Dry Contact
DI, 8 Channels, 24V DC, Isolated
DI, 32 Channels, 24V DC, Dry Contact
DI Plus, 32 Channels, 24V DC, Dry Contact
PCI, 4 Channels, 24V DC Dry Contact
SOE, 16 Channels, 24V DC, Dry Contact
DO, 8 Channels 24V DC, High-Side
DO, 8 Channels 24V DC, Isolated
DO Plus, 32 Channels, 24V DC, High-Side

*Field circuit certifications don't apply to redundant card installations.

DC Voltage Traditional I/O Card Description

Class I Division II NonincendiveZone 2 Ex nL CertifiedZone 2 Ex ic CertifiedZone 2 Ex nA Certified
DI, 8 Channels, 120V AC, Isolated
DI, 8 Channels, 120V AC, Dry Contact
DO, 8 Channels 120/230V AC, Isolated
DO, 8 Channels 120/230V AC, High-Side

Ordering Information

Analog Input Cards and Termination Blocks

DescriptionModel Number
8 Channels 4-20 mA, HART
Standard I/O Termination BlockVE4003S2B1
Redundant Standard I/O Termination BlockVE4033S2B1
Fused I/O Termination BlockVE4003S2B2
4-wire I/O Termination BlockVE4003S2B3
16-Pin Mass Termination BlockVE4003S2B4
24-Pin Mass Termination BlockVE4003S2B5
16 Channels 4-20 ma, HART, Plus Card
16-Channel 2-Wire AI Terminal Block for Series 2 PlusVE4003S2B9
16-Channel 4-Wire AI Terminal Block for Series 2 PlusVE4003S2B10
Redundant 16-Channel 2- & 4-Wire AI Terminal Block for Series 2 PlusVE4033S2B10
48-pin AI Mass Termination Block for Series 2 Plus (to be used with DeltaV Signal Conditioning Cards for PLC-5 AI, or P+F HID/HiC IS barriers and terminal boards for DeltaV DCS)VE4003S2B11
48-pin AI Mass Termination Block for Series 2 Plus including 16-channel Analog Mass Connection Boards*VE4053S2B11
Redundant 48-pin AI Mass Termination Block for Series 2 Plus (to be used with DeltaV Signal Conditioning Cards for PLC-5 AI, or P+F HiD/HiC IS barriers and terminal boards for DeltaV DCS)VE4033S2B11
48-pin AI Mass Termination Block for Series 2 Plus including 16-channel Analog Mass Connection Boards *VE4083S2B11
8 Channels Thermocouple, mV
Standard I/O Termination BlockVE4003S4B1
Cold Junction Compensated (CJC) Termination BlockVE4003S5B1
Analog Input Card: 8 Channels RTD
Resistant Temperature Device (RTD) Termination BlockVE4003S6B1
Isolated Input Card
Isolated Input Terminal BlockVE4003S7B1

* For more details on the Mass Connection Boards and connection cables, please refer to the M-series Mass Connection Solutions PDS.

Analog Output Cards and Termination Blocks

DescriptionModel Number
8 Channels 4-20 mA, HART
Standard I/O Termination BlockVE4005S2B1
Redundant Standard I/O Termination BlockVE4035S2B1
Fused I/O Termination BlockVE4005S2B2
16-Pin Mass Termination BlockVE4005S2B3
16 Channels 4-20 mA, HART, Plus Card
16-Channel AO Terminal Block for Series 2 PlusVE4005S2B4
Redundant 16-Channel AO Terminal Block for Series 2 PlusVE4035S2B4
48-pin AO Mass Termination Block for Series 2 Plus (to be used with P+F HiD or HiC IS barriers and termination boards for DeltaV DCS)VE4005S2B5
48-pin AO Mass Termination Block for Series 2 Plus including 16-channel Analog Mass Connection Boards*VE4055S2B5
Redundant 48-pin AO Mass Termination Block for Series 2 Plus (to be used with P+F HiD or HiC IS barriers and termination boards for DeltaV DCS)VE4035S2B5
Redundant 48-pin AO Mass Termination Block for Series 2 Plus including 16-channel Analog Mass Connection Boards *VE4085S2B5

*For more details on the Mass Connection Boards and connection cables, please refer to the M-series Mass Connection Solutions PDS.

Discrete Input Cards and Termination Blocks

DescriptionModel Number
Discrete Input Card: 8 Channels, 24V DC, Isolated
Standard I/O Termination BlockVE4001S2T1B1
Fused I/O Termination BlockVE4001S2T1B2
16-Pin Mass Termination BlockVE4001S2T1B3
Discrete Input Card: 8 Channels, 24V DC, Dry Contact
Standard I/O Termination BlockVE4001S2T2B1**
Redundant Standard I/O Termination BlockVE4031S2T2B1**
Fused I/O Termination BlockVE4001S2T2B2**
16-Pin Mass Termination BlockVE4001S2T2B3**
Discrete Input Card: 32 Channels, 24V DC, Dry Contact
Standard Termination BlockVE4001S2T2B4
40-pin Mass Termination BlockVE4001S2T2B5
Discrete Input Plus Card: 32 Channels, 24V DC, Dry Contact
32-Channel DI Terminal Block for Series 2 PlusVE4001S2T2B6
Redundant32-Channel DI Terminal Block for Series 2 PlusVE4031S2T2B6
40-pin DI Mass Termination Block for Series 2 Plus (to be used with DeltaV Signal Conditioning Cards for PLC-5 DI, or P+F HiD/HiC IS barriers and terminal boards for DeltaV DCS)VE4001S2T2B7
40-pin DI Mass Termination Block for Series 2 Plus including 2 x 16-channel DI Plus Mass Connection Boards *VE4051S2T2B7
Redundant 40-pin DI Mass Termination Block for Series 2 Plus (to be used with DeltaV Signal Conditioning Cards for PLC-5 DI, or P+F HiD/HiC IS barriers and terminal boards for DeltaV DCS)VE4031S2T2B7
Redundant 40-pin DI Mass Termination Block for Series 2 Plus including 2 x 16-channel DI Plus Mass Connection Boards*VE4081S2T2B7
Discrete Input Card: 8 Channels, 120V AC, Isolated
Standard I/O Termination BlockVE4001S3T1B1
Fused I/O Termination BlockVE4001S3T1B2
Discrete Input Card: 8 Channels, 120V AC, Dry Contact
Standard I/O Termination BlockVE4001S3T2B1
Fused I/O Termination BlockVE4001S3T2B2
Pulse Count Input Card: 4-Channels, 24V DC, Dry Contact
Discrete 32 Channel Terminal BlockVE4015
Sequence of Event Input Card: 16 Channels, 24V DC Dry Contact
Discrete 32-Channel Terminal BlockVE4001S5T2B4
40-pin Mass Terminal BlockVE4001S5T2B5

*For more details on the Mass Connection Boards and connection cables, please refer to the M-series Mass Connection Solutions PDS.

** Marine certifications are pending; if marine certification is required, please order KJ3201X1-BA1 or KJ3201X1-BA2.

Discrete Output Cards and Termination Blocks

DescriptionModel Number
Discrete Output Card: 8 Channels 24V DC, Isolated
Standard I/O Termination BlockVE4002S1T1B1
Fused I/O Termination BlockVE4002S1T1B2
16-Pin Mass Termination BlockVE4002S1T1B3
Discrete Output Card: 8 Channels 24V DC, High-Side
Standard I/O Termination BlockVE4002S1T2B1
Redundant Standard I/O Termination BlockVE4032S1T2B1
Fused I/O Termination BlockVE4002S1T2B2
16-Pin Mass Termination BlockVE4002S1T2B3
10-Pin Mass Termination BlockVE4002S1T2B4
Discrete Output Plus Card: 32 Channels, 24 V DC, High-Side
32-Channel DO Terminal Block for Series 2 PlusVE4002S2T2B8
Redundant 32-Channel DO Terminal Block for Series 2 PlusVE4032S2T2B8
40-pin DO Mass Termination Block for Series 2 Plus (to be used with DeltaV Signal Conditioning Cards for PLC-5 DO, or P+F HiD/HiC IS barriers and terminal boards for DeltaV DCS)VE4002S1T2B8
40-pin DO Mass Termination Block for Series 2 Plus including 4 x 8-channel DO Mass Connection Boards *VE4052S1T2B8
Redundant 40-pin DO Mass Termination Block for Series 2 Plus (to be used with DeltaV Signal Conditioning Cards for PLC-5 DO, or P+F HiD/HiC IS barriers and terminal boards for DeltaV DCS)VE4032S1T2B8
Redundant 40-pin DO Mass Termination Block for Series 2 Plus including 4 x 8-channel DO Mass Connection Boards *VE408251T2B8
Discrete Output Card: 8 Channels 115/230V AC, Isolated
Standard I/O Termination BlockVE4002S2T1B1
Fused I/O Termination BlockVE4002S2T1B2
Discrete Output Card: 8 Channels 115/230V AC, High-Side
Standard I/O Termination BlockVE4002S2T2B1
Fused I/O Termination BlockVE4002S2T2B2

*For more details on the Mass Connection Boards and connection cables, please refer to the M-series Mass Connection Solutions PDS.

Spare Part Ordering Information

Spare PartsModel Number
250V 2A Fuse for Fused Terminal Block; Box of 20KJ4010X1-BC1
I/O Module Hold-down Screw; Box of 20KJ4010X1-BP2
Controller Module Hold-down Screw; box of 20KJ4010X1-BP3

PDF preview unavailable. Download the PDF instead.

product-data-sheet-m-series-traditional-i-o-deltav-en-55888 Adobe PDF Library 15.0

Related Documents

PreviewRosemount 802 Wireless Multi Discrete I/O Transmitter Quick Start Guide
Quick start guide for the Rosemount 802 Wireless Multi Discrete I/O Transmitter, covering safety, installation, setup, wiring, and product certifications from Emerson.
PreviewDeltaV Electronic Marshalling with Distributed CHARMS Product Data Sheet
This document provides detailed information on the DeltaV Electronic Marshalling with Distributed CHARMs, including its features, benefits, product description, hardware specifications, and ordering information. It highlights how Distributed CHARMs reduce installation costs, improve flexibility, and enhance ease of use in control system I/O.
PreviewCoreSense Diagnostic Modules for Copeland Scroll Refrigeration Compressors
This document provides comprehensive information on Emerson's CoreSense Diagnostic Modules for Copeland Scroll refrigeration compressors, covering installation, operation, troubleshooting, and safety instructions.
PreviewEmerson Electric Co. 2024 Annual Report
Emerson Electric Co.'s 2024 Annual Report detailing the company's financial performance, business operations, strategic acquisitions and divestitures, and commitment to innovation and sustainability.
PreviewRosemount 3051HT Hygienic Pressure Transmitter Quick Start Guide | Emerson
This Quick Start Guide provides essential information for installing, configuring, and trimming the Rosemount 3051HT Hygienic Pressure Transmitter. It covers system readiness, mounting, wiring, switch settings, HART Revision capabilities (5 and 7), and product certifications (3-A, EHEDG, ASME-BPE, ATEX, IECEx). Includes detailed diagrams and procedures for optimal operation.
PreviewDeltaV Continuous Historian: Frequently Asked Questions
A comprehensive guide answering common questions about Emerson's DeltaV Continuous Historian, detailing its features, architecture, installation, configuration, data analysis, and operational aspects for industrial process management.
PreviewDeltaV PK Controller: Powerful Standalone and Integrated Control
Explore the capabilities of the DeltaV PK Controller, a versatile solution for standalone or integrated process control. Learn about its features, specifications, software, and ordering information.
PreviewEmerson RVO for Santos: On-time, On-budget Expansion with Enhanced Collaboration
Case study detailing how Emerson's Remote Virtual Office (RVO) enabled Santos to achieve an on-time and on-budget upstream hub expansion, improving collaboration and reducing costs for the GLNG project in Queensland.