1 of 1

Mitsubishi Electric L60TCTT4BW-CM MELSEC-L Series Temperature Control Module

Mitsubishi Electric L60TCTT4BW-CM MELSEC-L Series Temperature Control Module

Only 10 item(s) left in stock
  • Manufacturer: Mitsubishi Electric

  • Product No.: L60TCTT4BW-CM

  • Country of origin:United States

  • Product Type: PLC Temperature Control Modules

  • Payment: T/T, Western Union

  • Weight: 330g

  • Shipping port: Xiamen

  • Warranty: 12 months

Quantity
View full details

Description

Designed for precise, high-density thermal loop regulation, the Mitsubishi Electric L60TCTT4BW-CM provides advanced multi-channel temperature control directly integrated into the MELSEC-L Series PLC platform. This module features four independent thermocouple input channels combined with integrated heater burnout detection, allowing for real-time diagnostics and closed-loop PID control without relying on external transmitter hardware or heavy CPU overhead.

Features

  • Four thermocouple input channels supporting multiple sensor types for high flexibility.
  • Integrated heater disconnection detection using external current transformers (CT) to prevent process failures.
  • Internal PID control loop execution to offload thermal processing from the main PLC CPU.
  • Compact, rack-free modular structure designed for space-restricted control cabinets.
  • Direct parameterization and calibration via standard GX Works2 and GX Works3 software environments.

Applications

  • Plastic extrusion lines and injection molding thermal zones.
  • Industrial packaging machinery and heat-sealing bars.
  • Heat treatment furnaces, drying ovens, and industrial kilns.
  • Chamber temperature regulation in semiconductor manufacturing processes.

Technical Specifications

Parameter Specification
Manufacturer Mitsubishi Electric
Model Code L60TCTT4BW-CM
Module Type Temperature Control Module (Thermocouple Type)
Number of Input Channels 4 Channels
Compatible Sensor Types Thermocouples: K, J, T, B, R, S, E, N, PLII, W5Re/W26Re
Heater Burnout Detection Supported (via external current transformer inputs)
Sampling Cycle 50 ms / channel
Internal Current Consumption (5V DC) 0.33 A
Weight 0.33 kg
Shipping Weight (Calculated) 2.00 kg
Country of Origin Japan

Connections and Interfaces

Terminal Group Functional Assignment
CH1 to CH4 (+ / -) Thermocouple sensor positive and negative differential inputs
CT1 to CT4 Current Transformer inputs for heater disconnection/burnout monitoring
CJC Cold Junction Compensation sensor connection point

Alternative Models & Compatibility

The L60TCTT4BW-CM serves as a direct drop-in replacement for standard L60TCTT4 series modules. The "-CM" suffix denotes localized documentation packaging but retains absolute hardware, electrical, and register-map parity. It mounts seamlessly to all MELSEC-L CPUs, including the L02CPU, L26CPU-BT, and standard fieldbus interface head modules.

Application Pitfalls & Engineering Notes

When deploying the heater disconnection feature, use only compatible current transformers (CTs) with precise turn ratios as specified in the MELSEC-L hardware manual. Unused thermocouple input channels must be explicitly disabled in the system parameter configurations to prevent the module from throwing sensor open-circuit faults and generating invalid diagnostic data.

Commissioning & Wiring Tips

To guarantee measurement integrity, always route thermocouple compensation cables through dedicated, low-voltage wire ways separate from 480V AC motor cables or VFD outputs. Ensure the shield of the compensation cable is grounded at a single, clean grounding terminal block near the PLC enclosure entry to prevent ground loops from corrupting the high-resolution analog-to-digital converters.

Installation Guidelines

CRITICAL WARNING: Disconnect all power sources feeding the PLC rack, sensor loops, and heater supply lines prior to starting the installation or physical wiring. Failure to isolate power can lead to critical component degradation, short circuits, or electrical shock.
1

Snap the module onto the standard 35mm DIN rail and engage the integrated side-locking joint to interface with the neighboring MELSEC-L module.

2

Connect the thermocouple sensor wires to the terminal block, paying strict attention to correct positive (+) and negative (-) polarity mapping.

3

Terminate the current transformer (CT) cables to the burnout detection pins if utilizing active heater health monitoring.

4

Power up the controller rack and transfer the hardware configuration, including sensor-scaling tables, using GX Works software.

What sensor types are supported by the L60TCTT4BW-CM?

The module natively supports standard industrial thermocouples including K, J, T, B, R, S, E, N, PLII, and W5Re/W26Re configurations.

How does the heater burnout detection work?

It utilizes external current transformers (CTs) wired to dedicated CT inputs on the module, allowing real-time monitoring of current flow while control outputs are active.

Does the L60TCTT4BW-CM require a separate power supply?

No, it draws its primary operating power (0.33 A) directly from the 5V DC internal bus of the MELSEC-L system.

Can I use this module without connecting CT sensors?

Yes. If heater disconnection monitoring is not required, you can leave the CT inputs unwired and disable the detection alarm parameters in the configuration software.

Global Express Shipping

  • Standard Delivery: 4-6 Business Days via DHL, FedEx, and UPS.
  • Express Dispatch: Same-day dispatch for in-stock orders placed before 2:00 PM (GMT+8).
  • Worldwide Coverage: Serving over 150 countries, including rapid delivery to Saudi Arabia and UAE.

Returns & Warranty

  • 30-Day Guarantee: Returns accepted for in-stock products in original, factory-sealed packaging.
  • 12-Month Warranty: Every industrial component is backed by our professional technical warranty.

Orders are processed and delivered Monday-Friday (excluding public holidays).


For full eligibility, restocking fees, and international return details, please view our official Refund & Return Policy .

TECHNICAL SPECIFICATIONS

Country of origin
United States

Recently Viewed Products

Technical knowledge

Modernizing Bailey INFI 90 Symphony HMIs Running on OpenVMS Alpha

A practical guide to replacing aging Bailey Symphony operator stations running on OpenVMS Alpha. It compares Alpha emulation, OpenVMS x86 migration, OPC re-platforming, and phased ABB modernization.

Why Maintenance Data Is Essential for Industrial Reliability

Maintenance data connects work orders, sensor signals, asset history, costs, and technician knowledge. Used well, it improves planning, reliability, predictive maintenance, spare-parts control, and...

Сұйықтық қуат жүйелерін ауыстыруға арналған электрлік актуаторлар: Практикалық өнеркәсіптік автоматтандыру нұсқаулығы

Бұл мақала SMC компаниясының e-Actuator сериясы сияқты біріктірілген электрлік актюаторлардың дәстүрлі пневматикалық және гидравликалық жүйелерді ауыстыра отырып, өнеркәсіптік қозғалысты басқаруды...

Өнеркәсіптік автоматтандыру қолданбалары үшін OpenPLC көмегімен математикалық операциялар

Бұл мақалада PLC жүйелерінің өнеркәсіптік автоматтандыруда қосу, алу, көбейту, бөлу, модуль және дәрежелеу сияқты негізгі математикалық операцияларды қалай орындайтыны түсіндіріледі. Онда осы функция...

FBD PLC бағдарламалауындағы жетілдірілген булев логика: Негізгі логикадан тыс практикалық өнеркәсіптік қолданбалар

Мақалада PLC бағдарламалауында негізгі AND, OR және NOT операцияларынан тыс қолданылатын бірнеше күрделі Булев логика функциялары түсіндіріледі. Онда шындық кестелері, мультиплексорлар, импульс...

PLC бағдарламалаудағы логикалық операторлар: FBD логикалық қақпаларын түсіну

Булев логика әрбір ПЛК бағдарламасының негізі болып табылады. Қарапайым машина басқару жүйелерінен күрделі өнеркәсіптік автоматтандыру жүйелеріне дейін, логикалық қақпалар контроллерлердің өзгеретін...