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  • Solid State Relay to Control Temperature Programmable Digital PID Temperature Controller
  • Solid State Relay to Control Temperature Programmable Digital PID Temperature Controller
  • Solid State Relay to Control Temperature Programmable Digital PID Temperature Controller
  • Solid State Relay to Control Temperature Programmable Digital PID Temperature Controller
  • Solid State Relay to Control Temperature Programmable Digital PID Temperature Controller
  • Solid State Relay to Control Temperature Programmable Digital PID Temperature Controller
Solid State Relay to Control Temperature Programmable Digital PID Temperature Controller

Solid State Relay to Control Temperature Programmable Digital PID Temperature Controller

  • 2 - 9 Sets
    $99
    $110
  • 10 - 99 Sets
    $90
    $100
  • 100 - 499 Sets
    $76.50
    $85
  • >= 500 Sets
    $54
    $60

Customization:

Customized logo(Min.Order: 10 pieces)
Customized packaging(Min.Order: 10 pieces)
Graphic customization(Min.Order: 10 pieces)

Solid State Relay to Control Temperature Programmable Digital PID Temperature Controller

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Programmable PID Temperature Control: Enables precise temperature regulation using advanced Proportional-Integral-Derivative (PID) algorithms, suitable for applications requiring stable thermal performance.
  • Solid-State Relay Integration: Utilizes a solid-state relay (SSR) for silent, wear-free switching, ensuring efficient and reliable control of heating/cooling systems.
  • Real-Time Monitoring: Features an LED display for live feedback on temperature settings, system status, and operational metrics (e.g., voltage/current).
  • RS485 Communication: Supports RS485 interface for seamless integration into industrial networks, enabling remote monitoring and centralized system management.

Key features

  • 1. Corrosion-Resistant Metal Construction

  • With a corrosion-resistant metal body and dust/moisture protection, ensure reliable operation in harsh industrial environments*.

  • 2. Programmable Temperature Control Interface

  • With multi-temperature presets via intuitive button interface, customize settings for diverse industrial processes* (e.g., heating, cooling cycles).

  • 3. Precision PID Technology

  • With PID technology, achieve ±0.5°C accuracy, outperforming traditional on/off controllers by reducing temperature fluctuations*.

  • 4. Modular Design for Scalability

  • With a modular architecture, adapt to evolving industrial needs by easily integrating additional control modules or sensors*.

  • 5. CE-Certified Safety Compliance

  • With CE certification, ensure compliance with EU safety standards for industrial use, surpassing basic safety requirements of uncertified alternatives*.

Product details

Solid State Relay to Control Temperature Programmable Digital PID Temperature Controller

The Solid State Relay Programmable Digital PID Temperature Controller is a robust industrial control solution designed for precise temperature management in demanding environments. Built with durable metal construction and advanced PID algorithms, it ensures stable operation while offering customizable control options through RS485 communication and LED display feedback.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialMetal (Steel/Aluminum)Industrial settings requiring corrosion resistance
Control FunctionsProgrammable PID, Emergency Stop, Start/StopProcess automation in manufacturing or HVAC systems
Display TypeLED with numerical digitsReal-time monitoring of temperature and system status
CommunicationRS485 (9600 bps)Networking with industrial PLCs or SCADA systems
Power Source24VDCCompatibility with standard industrial power systems
CertificationCECompliance with EU safety and performance standards
Safety FeaturesDust/Moisture Protection (IP54), Emergency StopEnsuring operator safety in harsh environments
Modular DesignInterchangeable I/O modulesCustomizable control configurations for diverse applications

Customization guide

Adjustable input/output modules and interchangeable display types allow customization to meet specific control requirements or system upgrades. The modular design enables seamless integration with existing industrial setups.

Get inspired

With its PID algorithm and real-time LED display, this controller ensures precise temperature stability in processes like food processing or chemical manufacturing. The RS485 interface simplifies remote monitoring, while the rugged metal housing withstands extreme conditions.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Control Accuracy±1°C±0.85°C (+15%)±0.7°C (+30%)
Communication Speed9600 bps19200 bps (+100%)115200 bps (+1200%)
Environmental ResistanceIP54IP65 (+25% better)IP67 (+40% better)

Supplier's note

  1. Technical Breakthroughs:

    • PID Algorithm: Achieves ±0.7°C accuracy in the Pro model, 30% better than the Base, enabling ultra-precise temperature control in semiconductor manufacturing.
    • RS485 Communication: The Pro model’s 115200 bps speed is 12x faster than traditional 9600 bps systems, reducing latency in real-time data transmission.
    • IP67 Rating: The Pro’s waterproof/dustproof design withstands outdoor or wet environments, unlike competitors limited to IP54.
  2. Version Selection Guidance:

    • Base Model: Ideal for standard industrial processes (e.g., HVAC) requiring basic accuracy and IP54 protection.
    • Advanced Model: Suitable for food processing or pharmaceuticals needing faster communication (+100% speed) and IP65 resistance.
    • Pro Model: Best for harsh environments like chemical plants, where tripled accuracy (+30%) and IP67 protection ensure reliable operation.

With the Pro’s IP67 rating, you can deploy it in outdoor oil refineries while maintaining precision. The Advanced model’s enhanced RS485 speed ensures seamless integration with smart factories.

Frequently asked questions

  • Which PID temperature controller with RS485 interface is best for industrial automation systems?

  • How do I clean and maintain the LED display of a programmable PID temperature controller?

  • Can the modular design of this PID controller be customized with additional control modules?

  • What safety features does the temperature controller have for emergency shutdowns?

  • Is the 24VDC power source of this controller compatible with standard industrial power supplies?

  • How does the LED display enhance real-time temperature monitoring?

  • What certifications ensure the safety and compliance of this PID temperature controller?

  • Can the RS485 interface support remote monitoring in temperature control systems?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Industry Standard Temperature ControllerBasic industrial automationAnalog display, manual calibration, no networking (IEC 60730 compliance)Cost-effective, minimal maintenanceLimited accuracy (±2°C), no remote monitoring, incompatible with modern systems
Our Base Model (PID Controller)Manufacturing process controlDigital PID with RS485 (ISO 8482), 24VDC power, CE-certified, LED display (500 cd/m²)RS485 connectivity (long-distance data transmission), durable metal chassisNo advanced safety protocols, no IP rating, limited to basic programming
Our Advanced ModelHigh-precision labs, food processingEthernet (10/100 Mbps)▲, IP65 rating▲, modular design (supports 10+ modules), 0.1°C accuracyEthernet integration, ▲ IP65 dust/water resistance, programmable PIDHigher cost, requires training for advanced features
Competitor X’s Model YHVAC systemsWireless Bluetooth (BLE 5.0), plastic housing, 12-24VDC compatibilityLightweight, easy setupFragile in harsh environments, short communication range
PLC-Based Temperature Control SystemComplex industrial automationIntegrated PLC logic, multi-channel control, 1500V isolation (IEC 61131-3)Full system integration, high scalabilityExpensive, requires PLC programming expertise
Analog Temperature ControllerSmall workshopsDial-based adjustment, 110-240VAC universal input, no displaySimple operation, no electronic failure pointsManual tuning required, no data logging, no alarms

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