Newly Arrival TU-3A01 thermal wax actuator for electric switch valve to US Factories
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Newly Arrival TU-3A01 thermal wax actuator for electric switch valve to US Factories Detail:
1. Operation Principle
The Thermostatic Wax that has been sealed in shell body induces expansion by a given temperature, and inner rubber seal part drives its handspike to move under expansion pressure to realize a transition from thermal energy into mechanical energy. The Thermostatic Wax brings an upward movement to its handspike, and automatic control of various function are realized by use of upward movement of handspike. The return of handspike is accomplished by negative load in a given returned temperature.
2. Characteristic
(1)Small body size, occupied limited space, and its size and structure may be designed in according to the location where needs to work.
(2)Temperature control is reliable and nicety
(3)No shaking and tranquilization in working condition.
(4)The element doesn’t need special maintenance.
(5)Working life is long.
3.Main Technical Parameters
(1)Handspike’s height may be confirmed by drawing and technical parameters
(2)Handspike movement is relatives to the temperature range of the element, and the effective distance range is from 1.5mm to 20 mm.
(3)Temperature control range of thermal wax actuator is between –20 ~ 230℃.
(4)Lag phenomenon is generally 1 ~ 2℃. Friction of each component part and lag of the component part temperature cause a lag phenomenon. Because there is a difference between up and down curve of traveling distance.
(5)Loading force of thermal wax actuator is difference, it depends on its’ shell size.
Product detail pictures:

We intention to see quality disfigurement within the creation and supply the ideal support to domestic and overseas buyers wholeheartedly for Newly Arrival TU-3A01 thermal wax actuator for electric switch valve to US Factories, The product will supply to all over the world, such as: London , Dominica , Ethiopia , The company has numbers of foreign trade platforms, which are Alibaba,Globalsources,Global Market,Made-in-china. "XinGuangYang" HID brand products sell very well in Europe, America, Middle East and other regions more than 30 countries.
This is one of the available climate control panels for your vehicle. If your vehicle is equipped with a different climate control system, see your Owner’s Manual for additional information.
The Auto mode may be used all year round. The system automatically regulates and maintains fan speed, airflow and temperature in the cabin. To turn the system ON, press the AUTO button. The indicator light turns ON when the system is activated.
Pressing the DEFROST button or changing the fan speed or airflow mode turns off the AUTO function and switches the system to manual control. To reactivate automatic control, press the AUTO button.
To turn the entire climate control system OFF, press the OFF button.
Your vehicle has separate temperature control buttons for the driver and front seat passenger. Turn the driver’s side control knob to the right for warmer or left for a cooler temperature.
If you want to adjust the passenger side temperature independently from the driver’s side, press the DUAL button or turn the temperature control knob left or right. The DUAL control indicator and the passenger’s side temperature will be displayed on the monitor.
If the DUAL mode is not active, the driver’s temperature control buttons set the temperature for both the driver and passenger. To switch back to driver control when the DUAL mode is active, press the DUAL button again.
Press the air flow control button repeatedly to cycle through these four air flow choices:
• Air will flow from the center and side vents
• Air will flow from center, and side and foot outlets
• Air will flow from mainly foot outlets
• Air will flow from the defroster and foot outlets
The selected air flow mode is displayed on the monitor.
Press the A/C button to manually turn the air conditioning ON or OFF.
Intake air control is automatically regulated in AUTO mode. Press the intake air control button to manually alternate between recirculating inside air and drawing outside air into the cabin.
The indicator light on the button will illuminate when the recirculating mode is active.
The air recirculation mode increases air conditioning efficiency and helps block outside odors from entering the cabin.
To return to automatic control of the air intake mode, press and hold the air intake control button for approximately 2 seconds until the indicator light flashes twice.
Use the fan speed control buttons to adjust the fan speed. Press this button to increase fan speed. Press this button to decrease fan speed. When you manually change fan speeds, it turns off the automatic climate control mode. To return to automatic climate control, press the AUTO button.
To defrost or defog the front and side windows, press the DEFROST button. The indicator light will illuminate. Airflow will be directed to the front and side windows.
In the DEFROST mode, the Air Conditioner activates automatically at temperatures above 23 degrees Fahrenheit and the air recirculate mode automatically turns off, allowing outside air to be drawn into the passenger compartment to improve the defogging and deicing performance. For windshield deicing, the temperature and fan speed should be at the highest settings.
To defrost or defog the rear window and the outside mirrors, push the REAR WINDOW DEFROSTER switch. The indicator light will illuminate. After defrosting, push the switch again to turn OFF. If not turned OFF manually, this feature will automatically deactivate after a period of time.
There is a temperature sensor located on top of the dashboard near the windshield that helps regulate the automatic climate control settings. Keep this area clear of papers and other materials.
For the comfort of your rear passengers, your vehicle is equipped with rear climate controls.
To control the rear automatic air conditioning system with the front air conditioner control, press the REAR button. When the rear automatic air conditioner control is turned on, the indicator light on the rear button illuminates and the front display screen switches to the REAR AIR-CONDITIONING screen.
Press the REAR button again and the REAR AIR-CONDITIONING screen will no longer be visible. The REAR button will remain illuminated and the rear passengers will then have control of the rear climate controls.
These are the rear climate controls. Press the up or down fan buttons to control the fan speed. A comfortable temperature can be selected by locating the TEMP button and pressing the arrows either up or down for warmer or cooler temperatures.
Press the MODE button to change the airflow mode.
The AUTO button on the rear climate controls puts the system in AUTO mode, which automatically regulates the settings for the rear cabin based on the set temperature. The AUTO mode is disabled if the rear passengers manually increase or decrease the fan speed.
Press the OFF button to turn off the rear climate controls.
Please contact us for more information:
Ph: +91 9490219339 (WhatsApp/SMS text only Please)
www.sooxma.com
www.mycollegeproject.com
engprojects@gmail.com
Hyderabad, India.
Students will be provided with complete working hardware kit and other related documentation.
We develop customised projects as per your requirements.
We are specialised in developing IoT based industrial projects usinng various sensor like Temperature, Humidity, light, water level, moisture, pressure, fire, flame sensor, air pollution, gas sensors like MQ-02,MQ-03,MQ-06 etc. Alcohol sensrs, LPG gas, LDR sensor, current CT sensor, voltage sensor for solar panels, IR (infrared) sensors, Laser light sensors, Magnetic sensors like hall effect, read switch etc, tilt sensor, sound sensor, heart rate sensor, blood pressure sensor, body temperature sensor, rain water sensor, ultrasonic distance sensor, Thermisters, PIR sensor, MEMS accelerometer sensor, Digital compass, positional sensor, Direction sensors, RTC, EEPROM, iButton reader, piezo sensors, wireless power, Load cell, weight sensors, flex sensors, Flow sensors, Resistive touch screen, APR voice module, Eye blink sensor, DHT11, LM35, Speech recognition, mp3 player, Barcode reader, color sensor, Capacitive touch sensor, energy meter, Matrix keypad, SD card reader, Tachometer (speed sensor), Nextion displays, Fuel sensors, Vibration sensor, LiFi.
Motors we work with:
DC Motor, PMDC motors, Servo Motor, AC Motor, Series motor, Universal motors, stepper motors, geared motors, brush less motors.
We work with following communication devices.
GSM Modem, GPS Receiver, IoT esp8266, RFID readers (Active and Passive), Zigbee, Bluetooth receivers, WiFi transceivers, RS232 communication, RS485, CAN communication, RF Transceiver, RF 433MHz, PLCC (Power line Carrier Communication), barcode reader, finger print reader, smart card reader, USB communication, PS2 communication, DTMF, Ethernet communication,
We work with PIC Microcontrollers (8bit, 16bit, 32 bit), MSP430, PIC 12F, PIC16F, PIC18F, PIC24F, PIC32F series, STM32, Arduino (Pro mini, Nano, Uno etc), AVR, ATMEGA, esp8266, 8051, 80S52, ARM, LPC2148, Raspberry Pi, Orange Pi(Lite,One,Plus etc), Nodemcu, Wemo etc.
WE develop following Hardware(sensors) accessing mechanisms:
Android apps, PC based applications, Web development with IoT, TCP sockets, UDP, http, remote file systems and data loggers.
Domains we work with:
Security, SCADA, wireless, protection, data loggers, control systems, telecommunications, education, transport, agricultural, industrial, building autommation, home automation, access control, IoT with Android apps, solar, non-conventional power generation, medical, Robotics, advertisement displays (scrolling led sign board, P10 displays, 50-50 led sign board, pixel programmable led sign board,
Displays we work with:
Nokia 5110, Propeller display, 16×2 LCD displays, 20×4 displays, scrolling led displays, 128×64 graphical displays, oled (spi,i2c), TFT displays, seven segment displays,
Power electronics and Switching devices:
MOSFET, Transistor, Power Transistor, IGBT, SCR, TRIAC, Relays etc.
We also develop IEEE projects like IEEE-2016, IEEE-2017 Student projects along with modifications.
Arduino and GSM based Temperature Monitoring and Control System.






