
( Brand: Aiset ), ( Manufacturer Part Number: XMTG-341V ), ( Analog/digital: Digital ), ( Din Size: 1/16 ), ( Country Of Origin: China ), ( Type: Temperature/process Controller ), ( Mounting Type: Panel Mount ), ( Input Type: Thermocouple, Rtd ), ( Output Type: Relay ), ( Communication Interface: Rs-422 ), ( Power Supply: 85-264 Vac ), ( Power Consumption: 5 W ), ( Control Mode: Pid )
The **AISSET XMTG-341V PID Controller** is a high-performance, precision-engineered temperature control module designed for demanding industrial, laboratory, and manufacturing applications where accurate and reliable temperature regulation is critical. Built with a robust **48x48mm compact form factor**, this PID controller combines advanced functionality with user-friendly operation, making it an ideal solution for processes requiring tight thermal management, such as heating, cooling, or process automation systems. At its core, the XMTG-341V features a **high-precision K-type thermocouple input**, ensuring accurate temperature sensing across a wide range of applications, from high-temperature furnaces to delicate laboratory environments. The controller employs a **fully programmable PID algorithm**, allowing users to fine-tune proportional, integral, and derivative gains for optimal response time, stability, and energy efficiency, whether managing resistive heating elements, PID-controlled ovens, or other thermal systems.
One of the standout features of the AISSET XMTG-341V is its **versatile output capabilities**, which include both **relay and analog (0-10V/4-20mA) output options**, enabling seamless integration with a variety of actuators, motors, or other control systems. The device supports **dual-channel operation**, allowing for simultaneous control of two independent heating or cooling zones, which is particularly useful in applications requiring balanced thermal management, such as dual-zone furnaces or symmetric process heating. Its **large, backlit LCD display** provides clear, real-time monitoring of temperature readings, setpoints, and control parameters, while intuitive navigation via the front-panel keypad ensures effortless configuration and troubleshooting. For enhanced safety and reliability, the XMTG-341V incorporates **overheat protection, short-circuit prevention, and adjustable deadband control**, safeguarding both the system and connected components from potential damage due to thermal fluctuations or electrical faults.
Beyond its core functionality, the AISSET XMTG-341V excels in flexibility through its **expandable communication interfaces**, including **RS-485 Modbus RTU**, which facilitates seamless integration with SCADA systems, PLCs, or other industrial networks for remote monitoring and control. This makes it an excellent choice for automated production lines, research laboratories, or any application where data logging and centralized management are essential. The controller s **wide operating temperature range** (typically -10 C to 60 C) ensures stable performance in diverse environmental conditions, while its **durable metal housing** and robust mounting options provide long-term reliability in industrial settings. Whether deployed in a precision manufacturing facility, a scientific research lab, or a custom heating system, the AISSET XMTG-341V delivers **unmatched precision, adaptability, and ease of use**, making it a cornerstone for any temperature-sensitive application requiring dependable PID control.
### **Pros and Cons of buying a AISET XMTG-341V PID Controller (48x48, K-Type)**
#### **Pros:**1. **High Precision and Accuracy** The PID controller is designed for precise temperature control, making it suitable for applications requiring tight tolerances, such as 3D printing, electronics cooling, or small-scale industrial processes.
2. **K-Type Thermocouple Compatibility** Since it supports K-type thermocouples, it is versatile for environments where this type is commonly used, such as in metalworking, food processing, and general-purpose heating applications.
3. **Compact and Space-Efficient Design** The 48x48 mm footprint makes it suitable for installations where space is limited, such as in small enclosures, DIY setups, or embedded systems.
4. **Digital Display and User Interface** The controller features a clear LCD display and intuitive controls, allowing for easy setup, monitoring, and adjustment of temperature parameters without requiring advanced technical knowledge.
5. **Adjustable PID Parameters** Users can manually tune the Proportional (P), Integral (I), and Derivative (D) gains, which helps optimize performance for different loads and response requirements.
6. **Relay Output for Heating/Cooling Control** The built-in relay allows direct control of heating elements (such as resistors, heaters, or PTC elements) or cooling systems (such as fans or PID-controlled coolers).
7. **Overheat Protection** Many PID controllers include safety features like overheat cutoff to prevent damage to the system in case of excessive temperatures.
8. **Affordable for Basic Applications** Compared to high-end industrial-grade PID controllers, this model offers a cost-effective solution for hobbyists, small businesses, or DIY projects.
9. **Easy Installation** The compact size and standard mounting options make it straightforward to integrate into existing setups.
10. **Good for Educational Purposes** Its simplicity and functionality make it a useful tool for learning about PID control theory and temperature regulation.
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#### **Cons:**1. **Limited to K-Type Thermocouples** If your application requires a different type of temperature sensor (e.g., J-type, T-type, or RTD), this controller may not be compatible without additional adapters or modifications.
2. **No Built-in Logging or Data Export** Unlike some advanced PID controllers, this model does not offer built-in data logging or USB connectivity for recording temperature trends, which could be a drawback for process monitoring.
3. **Basic Relay Output (Not Solid State)** The relay may not be ideal for high-frequency switching or applications requiring silent operation, as relays can introduce noise and have limited lifespan compared to solid-state relays.
4. **Manual Tuning Required** Achieving optimal PID performance often requires trial and error, especially for users unfamiliar with tuning PID parameters. Poor tuning can lead to overshooting, instability, or slow response times.
5. **Limited Communication Options** There is no built-in Wi-Fi, Ethernet, or serial (RS-232/RS-485) connectivity for remote monitoring or automation, which may restrict integration with larger systems.
6. **Potential for Mechanical Wear** The relay and physical controls may wear out over time, especially in high-vibration or high-duty-cycle applications, requiring eventual replacement.
7. **No Built-in Alarm or Alert System** Unlike some industrial-grade controllers, this model lacks built-in alarms for low/high temperature limits or fault conditions, which could be critical in safety-sensitive applications.
8. **Power Supply Dependency** The controller requires an external power supply (not included), and compatibility with the input voltage (e.g., 12V, 24V, or 110V/220V) must be verified to avoid damage.
9. **No Built-in Fan or Cooling Control** While it can control a fan via relay, it lacks automatic fan speed modulation, which may limit efficiency in cooling applications.
10. **Limited Warranty or Customer Support** Depending on the brand and region, the warranty may be short, and customer support for troubleshooting could be less responsive than with established industrial brands.
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### **Conclusion**
The **AISET XMTG-341V PID Controller (48x48, K-Type)** is a **solid, budget-friendly choice** for hobbyists, small-scale applications, and DIY projects where **precise temperature control is needed but advanced features are unnecessary**. It excels in **simplicity, compactness, and ease of use**, making it ideal for **3D printing, electronics cooling, small heaters, or educational purposes**.
However, it is **not ideal for industrial-grade applications, high-reliability systems, or setups requiring advanced monitoring, logging, or remote control**. Users should be prepared to **manually tune the PID parameters** and may need to supplement the controller with additional sensors or relays if their application demands more flexibility.
If your project is **low to medium complexity** and within the **K-type thermocouple range**, this controller provides **good value for money**. For **high-precision industrial use, remote monitoring, or multi-sensor applications**, a more advanced (and expensive) PID controller would be a better investment.
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### **Recommendation**
- **Buy if:**- You need a **simple, affordable PID controller** for **K-type temperature control**.
- Your application is **small-scale** (e.g., 3D printer bed, electronics cooling, DIY heater).
- You are **comfortable with manual tuning** and do not require advanced features.
- Space is limited, and a **compact design** is a priority.
- **Avoid if:**- You require **multiple sensor types** (e.g., RTD, N-type) without adapters.
- Your application demands **data logging, remote monitoring, or automation**.
- You need **high reliability, long-term durability, or industrial-grade safety features**.
- You are working with **high-power loads** that may exceed the relay s capacity.
- **Alternatives to Consider:**- For **higher precision and logging**, look into **USB-enabled PID controllers** (e.g., some models from **Omegon, Apcer, or industrial-grade brands**).
- For **industrial use**, consider **PLC-integrated or networked PID controllers** with built-in alarms and diagnostics.
- If **fan control is needed**, a **PID controller with PWM output** (instead of a relay) may be better for efficiency.
Overall, the **AISET XMTG-341V is a practical choice for basic applications**, but users should weigh its limitations against their specific needs before purchasing.
Condition: Used. Used items show signs of use; if a part has visible wear, damage, or missing component, the condition will say so. It provides PID control with auto-tuning capability, relay output, and a dual LED display showing both the present value PV set SV simultaneously. Supply voltage is 100 240V AC, 50/60Hz, with a power consumption of approximately 2 5VA.
The N suffix in the model designation denotes standard relay output configuration. Type: Digital PID Temperature Controller. Your optima is our bottom line. This part was removed from a working production environment.
Output Type: Relay N suffix. This part is also referenced under the full catalog number XMTG-3410V N, expanded format used across distributor and supplier listings. Control Mode: PID with Auto-Tune / ON-OFF delectable. Display: Dual LED PV red and SV green.
Sensor Input: K-Type Thermocouple. This controller fits a 1/16 DIN panel cutout 48 48mm front face, 44 44mm cutout and accepts K-type thermocouple input with measurement range of 400 C. Shipping Handling: Domestic shipping via USPS Ground Advantage, Priority Mail, or UPS Next Day Air. Technical Specifications: Brand: AISET Shanghai Yeti Instrument Co.
The V suffix indicates the vertical/standard XMTG enclosure style. Power Consumption: approx. Country of Origin: China.: The AISET XMTG-341V N is a digital PID temperature controller in the XMTG-3000 series, manufactured by Shanghai Yeti Instrument Co.