Schneider TM3AI8 Analog Input Expansion Module - contactor,cortacircuitos,sensor,Codificador,SOCIEDAD ANÓNIMA,Convertidor

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 Schneider TM3AI8 Analog Input Expansion Module - contactor,cortacircuitos,sensor,Codificador,SOCIEDAD ANÓNIMA,Convertidor

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Schneider TM3AI8 Analog Input Expansion Module

Modicon TM3 series 8-channel analog input expansion module, screw terminal version; spring terminal variant: TM3AI8G ✅ Model Definition TM3: Expansion I/O series for M2xx PLCs AI: Entrada analógica 8: 8 channels TM3AI8: Terminales de tornillo; TM3AI8G: Terminales de jaula de resorte. Parámetros eléctricos idénticos., only terminal construction differs. ✅ Compatible PLC CPUs Modicon M221 / M241 / M251 / ...

  • Detalles del producto

Modicon TM3 series 8-channel analog input módulo de expansión, screw terminal version; spring terminal variant: TM3AI8G

✅ Definición del modelo

TM3: Expansion I/O series for M2xx PLCs

AI: Entrada analógica

8: 8 canales

TM3AI8: Terminales de tornillo; TM3AI8G: Terminales de jaula de resorte. Parámetros eléctricos idénticos., only terminal construction differs.

✅ Compatible PLC CPUs

Modicon M221 / M241 / M251 / M262. software de programación: Experto en máquinas EcoStruxure (anteriormente SoMachine)

✅ Key Technical Specifications

ArtículoParámetro
Número de canales8 single-ended analog inputs
ADC resolution12-poco (11 poco + bit de signo), Σ-Δ sampling
Signal types (configurable per channel)Voltaje: 0~10V, -10~+10V
Actual: 0~20mA, 4~20mA, extended range modes available
Impedancia de entradaVoltage ≥1MΩ; Current ≤50Ω
Overload withstandmáx.. 13V for voltage; máx.. 40mA for current
Exactitud (25℃)±0.2% full scale, temperature drift ±0.01%FS/℃
Sampling time1ms per enabled channel; Total conversion time = 1ms + 1ms por canal + PLC scan time
Fuente de alimentaciónDC24V module supply
MontajeCarril DIN, cascaded via TM3 backplane bus

⚠️ Critical Warning: Hardware wiring (voltage/current) must match software configuration. Configuring a voltage channel as current mode will burn the module circuit directly.

✅ Typical Applications

Acquire signals from pressure transmitters, transmisores de temperatura, sensores de nivel, medidores de flujo, load cells, potentiometers and other sensors. Used in packaging machinery, climatización, production lines and small process control systems.

✅ Wiring Guidelines

  1. All inputs are single-ended; differential input is not supported.
  2. Current signal: Wire 4-20mA loop of transmitter directly to AI+ and AI-.
  3. Voltage signal: Connect sensor voltage output to AI+ and AI-.
  4. Analog ground shall be bonded with PLC power ground to reduce interference. Use shielded cable for long analog runs with single-end grounding.

✅ Diagnostics & Códigos de falla (IBStatus Status Byte)

Status CodeDescripción
0Normal, signal within range
5Over-range high (input too high)
6Under-range / rotura de alambre (alarm at 0mA under 4-20mA mode, wire break detection)
7Module hardware fault
94~20mA low extended range (1.2~3.99mA)

Nota: When 4-20mA channel is open-circuit with no wiring, the module reads the minimum value by default and diagnostic byte = 6. This is normal wire-break detection. Under 0~20mA mode, open circuit reads 0 without this alarm.

✅ Alternative Selection Options

  1. Same-series replacement: TM3AI8G (spring terminals for fast field wiring)
  2. Domestic compatible alternatives: Inovance AM600/AM400 analog input modules, Xinje XL series AI modules
  3. Upgrade for more channels: Select other TM3 AI modules as required. Observe the maximum TM3 expansion limit for M2xx PLCs.

✅ Maintenance & Second-hand Inspection Checklist

  1. control visual: Backplane bus latches intact, terminal block free of burn marks.
  2. Power-up test: PLC recognizes module, module LED status normal.
  3. Channel test: Inject voltage/current reference signal, read raw values and verify linearity.
  4. Firmware: TM3 analog module firmware V29, upgradable in Machine Expert.
  5. Autobús: TM3 module cascade order must not be changed. Poor backplane contact triggers I/O bus fault.

✅ HS Code Reference

PLC analog I/O expansion module, 85371011 (Programmable controller input/output module). Final classification subject to customs broker and local customs ruling.

✅ Program Migration Notes

Upgrade from legacy TM2 AI modules to TM3AI8: Software must be updated to SoMachine V4.3 / EcoStruxure Machine Expert V1.0 or newer.

Memory mapping and channel diagnostic addresses differ from TM2 modules. Hardware configuration and analog acquisition / wire-break logic need reprogramming.

TM3AI8 Channel Configuration in EcoStruxure Machine Expert (anteriormente SoMachine)

CPU compatibles: M221/M241/M251/M262

  1. Add Module on Hardware Bus
  2. Right-click IO_Bus in Device Tree → Add Device, select `TM3AI8` (terminal de tornillo) / `TM3AI8G` (terminal de resorte). Confirm module order, TM3 expansion bus sequence must match physical installation order.
  3. After adding, expand TM3AI8 in device tree. 8 analog channels `CH0~CH7` available.
  4. Channel Parameter Configuration (Centro)
  5. Double-click TM3AI8 in device tree, switch to the I/O Configuration tab. 8 channels can be configured independently.
  6. Channel Type dropdown options (per channel):

No usado: Channel disabled, no acquisition

0~10V

-10~+10V

0~20mA

4~20mA (estándar, wire-break diagnostic supported)

0~20mA extended

4~~20mA extended (detects 1.2~~3.99mA fault range, diagnostic code 9)

⚠️ Importante: Hardware wiring must match software type! Setting voltage channel to current mode will damage module input circuit.

  1. After configuration, raw acquisition word `%IWi.x` (Raw AD value) and diagnostic byte `%IBs.x` are generated automatically:

%IWi: Raw channel value

%IBs: Channel status byte for wire-break / over-range judgment

  1. Switch to I/O Mapping: Bind `%IWi` and `%IBs` to custom variables for program access.
  2. Raw Value Range Mapping (for engineering conversion)
Channel TypeRaw MinRaw Max
0~10V04000
-10~+10V-40004000
0~20mA04000
4~20mA400020000

Example for 4-20mA transmitter: 4mA → 4000; 20mA →20000

Engineering formula:

ProcessValue = (RawValue4000) / (200004000) × (UpperRangeLowerRange)

  1. Diagnostic Byte %IBs.x Definition
Diagnostic CodeDescripción
0Normal, signal within range
5Over-range high
6Under-range / rotura de alambre (typical alarm when 4-20mA wire disconnected)
7Module hardware fault
94~20mA extended mode: 1.2~3.99mA fault range

Nota: Under standard 4~20mA mode, open circuit keeps Raw reading fixed at 4000. Wire break cannot be detected only by raw value; %IBs diagnostic byte must be read.

  1. Descargar & Puesta en servicio
  2. Compile project, verify no hardware configuration errors.
  3. Go online with PLC, open variable watch table to monitor %IW and %IB.
  4. Apply reference voltage/current signal source and verify readings.
  5. Disconnect signal wire to confirm diagnostic byte becomes 6 for 4~20mA channel, wire-break detection works.
  6. Errores comunes
  7. Wrong TM3 module sequence: IO bus fault, PLC fails to identify module.
  8. Mismatch between software type and physical wiring: risk of channel burnout.
  9. Standard 4~20mA mode: relying only on raw value, missing wire-break detection.
  10. Unshielded cable for long analog runs: ground potential difference causes reading fluctuation.

TM3AI8 Analog Input Module Fault Diagnosis Method

General principle: Isolate fault location: sensor / alambrado / módulo / PLC configuration. Do not assume module failure immediately.

Aplicable a Schneider TM3AI8 with M221/M241/M251/M262 + Experto en máquinas EcoStruxure

  1. Step1: Module-level Diagnostic (Whole Module Communication Check)
  2. Connect PLC online, check TM3AI8 icon status in device tree

Red cross: PLC cannot communicate with module

Solución de problemas: Loose expansion bus latch, wrong module installation order, damaged backplane bus, missing DC24V supply, hardware module failure.

Green OK: Module communication healthy. Fault is limited to channel, wiring or configuration.

  1. Read module global status word (module level fault):

Bus fault: Expansion I/O bus error, all channels invalid.

Internal module hardware fault: Module status alarm, abnormal readings for all channels.

  1. Step2: Per-channel Diagnosis (%IBs.x channel diagnostic byte, centro)

Monitor channel diagnostic byte `%IBs.x` in software

Diagnostic CodeDescripciónFault Location
0Normal, signal within rangeChannel hardware OK; unstable reading: check sensor/noise/calibration
5Over-range highInput signal exceeds full scale, check transmitter output
6Under-range / rotura de alambre (4~20mA)Signal wire broken, transmitter power loss, open loop; Not necessarily module damage
7Channel hardware faultChannel chip damaged on module
94~20mA extended mode: 1.2~3.99mATransmitter failure, leakage current in loop; not module damage

Key point: Only diagnostic code 7 indicates hardware damage; código 6 mostly points to external wiring or sensor open circuit.

  1. Step3: Signal Injection Test (Cross Test to Separate External / Module Fault)

Equipo de prueba

Adjustable signal source: 0-10V voltage source / 4-20mA current simulator

  1. Channel swap test (más común)

Ejemplo: CH0 abnormal reading, CH1 normal

Connect signal source to CH0, configure CH0 for matching signal type.

Move same signal source to CH1.

✅ CH1 reads correctly while CH0 remains abnormal: CH0 channel damaged, module faulty.

✅ Both CH0 and CH1 abnormal: Likely signal source, alambrado, grounding or configuration issue, module healthy.

  1. Open-circuit test

Voltage mode: Floating channel shows low drifting reading normally.

4~20mA mode: Floating channel triggers diagnostic byte=6 (wire-break alarm), normal module function, not fault.

⚠️ Forbidden: Feed current signal into channel configured as voltage mode; channel will burn out!

  1. Step4: Inspección visual & Power Supply Check
  2. Fuente de alimentación del módulo: Measure DC24V at module terminals, valid range 20.4V~28.8V. Low voltage causes reading jitter and unstable communication.
  3. Inspección visual

Terminales: Burn marks, melted copper, corrosion, water ingress. Short circuit at terminals burns channels.

Bus de plano posterior: Broken plastic latch, oxidized or deformed metal contact → communication failure.

  1. Ambiente: Temperatura alta, humidity or strong electrical interference leads to analog reading jump, easy to misjudge as module failure.
  2. Quick Fault Phenomenon Table
FenómenoLikely Root CauseModule Fault?
All channels no reading, PLC reports module communication loss24suministro V / expansion bus / module sequencePossible module damage
Single channel diagnostic code=7, still alarm after signal source swapChannel circuit burnout✅ Module faulty
Single channel diagnostic code=6, other channels normalTransmitter power off / rotura de alambre❌ External fault
All channels reading fluctuating continuously, diagnostic byte=0Mala conexión a tierra / no shield / power cable interference❌ Noise issue
Fixed raw %IW value regardless of applied signalChannel latch-up, daño de hardware✅ Module faulty
Software channel type mismatch with physical wiringConfiguration error, may burn channel❌ Configuration error (unless channel already burnt)
  1. Final Fault Confirmation Criteria

✅ Confirmed module failure:

  1. Module communication OK, one channel consistently reports diagnostic code=7.
  2. Raw value does not follow reference signal input, while other channels on same module work normally.
  3. Terminal burn marks and no response to signal injection.

❌ Not module failure:

  1. Diagnostic code 6,5,9. Reading normal after moving signal to another channel.
  2. Reading fluctuates with diagnostic byte=0, recovered after grounding and shielding improvement.
  3. PLC fails to detect module, recovered after re-seating bus and correcting power supply.
  4. Suplementario: Second-hand Module Receiving Inspection Checklist
  5. Encendido, PLC recognizes module without module-level fault.
  6. Inject reference signal to each channel, read %IW and diagnostic byte.
  7. Verify 4~20mA wire-break alarm function.
  8. All channels have good linearity with no fixed offset.

Schneider Modicon TM3 Full Range Expansion Module List (Compatible with M221/M241/M251/M262)

Suffix explanation: No suffix = screw terminal; G = spring-cage terminal; K = HE10 flat cable connector

  1. Módulos analógicos (AI/AQ/Mixed AM, TM3AI8 family)
ModeloChannel DescriptionObservaciones
TM3AI44-entrada analógica del canalTerminal de tornillo; TM3AI4G spring terminal
TM3AI88-entrada analógica del canalModel covered above; TM3AI8G spring terminal
TM3AI2H2-channel high precision analog input,16pocoVoltage/current support, resolución alta
TM3AQ22-salida analógica del canalTM3AQ2G spring terminal
TM3AQ44-salida analógica del canalTM3AQ4G spring terminal
TM3AM64AI+2AO mixed analog moduleTM3AM6G spring terminal
  1. Digital Input Modules DI
ModeloChannel DescriptionObservaciones
TM3DI88-point DC24V digital inputTornillo; TM3DI8G spring
TM3DI8A8-point AC120V digital inputtipo de CA
TM3DI1616-point DC24V digital inputTornillo; TM3DI16G spring
TM3DI32K32-point DC24V digital inputHE10 socket, cable plano
  1. Digital Output Modules DQ
ModeloChannel DescriptionObservaciones
TM3DQ8R8-point relay outputTornillo; TM3DQ8RG spring
TM3DQ8T8-point PNP transistor DC24V outputTornillo; TM3DQ8TG spring
TM3DQ16R16-point relay outputTornillo; TM3DQ16RG spring
TM3DQ16T16-point PNP transistor DC24V outputTornillo; TM3DQ16TG spring
TM3DQ32TK32-point PNP transistor DC24V outputHE10 socket
  1. Mixed Digital I/O Modules DM (DI+DO)
ModeloChannel DescriptionObservaciones
TM3DM8R4DI+4 relay DOTornillo; TM3DM8RG spring
TM3DM24R16DI+8 relay DOTornillo; TM3DM24RG spring
  1. High Speed Counter / Módulos de funciones especiales
ModeloDescripción
TM3XHSC202High speed counter module, terminal de tornilloEncoder acquisition
TM3XHSC202GHigh speed counter module, terminal de resorteEncoder acquisition
TM3XFHSC202High speed counter with event capture, terminal de tornilloEvent capture support
TM3XFHSC202GHigh speed counter with event capture, terminal de resorteEvent capture support
TM3XTYS4TeSys motor management moduleRJ45 interface, motor protection linkage
  1. Bus Extension Modules (E/S remotas, expand module quantity)
ModeloDescripción
TM3XTRA1TM3 bus transmitterCPU side
TM3XREC1TM3 bus receiverRemote cabinet side, max.5m
  1. Bus Coupler (TM3 I/O island, fieldbus slave)
ModeloDescripción
TM3BC8CANopen bus coupler, arriba a 8 TM3 modules
TM3BC24EtherNet/IP bus coupler, arriba a 24 TM3 modules
  1. Safety Module
ModeloDescripción
TM3SAC5Safety relay output moduleSafety related applications

Important System Rules

  1. Direct backplane expansion for M221/M241/M251: max.7 TM3 modules. Arriba a 14 modules when using TM3XTRA1+TM3XREC1 remote extension.
  2. G version (terminal de resorte) shares identical electrical performance with screw terminal variant, only terminal construction differs.
  3. Software: Experto en máquinas EcoStruxure (anteriormente SoMachine) for configuration of all TM3 modules.
  4. Montaje: Instalación en carril DIN, modules cascaded via backplane latches.

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