OEM/ODM Supplier for TU-1D05 thermal wax actuator for industrial thermostatic water regulations mixing valve to Malta Manufacturers

OEM/ODM Supplier for
 TU-1D05 thermal wax actuator for industrial thermostatic water regulations mixing valve to Malta Manufacturers

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We support our purchasers with ideal premium quality products and substantial level company. Becoming the specialist manufacturer in this sector, we've acquired rich practical working experience in producing and managing for Thermal Actuator Conversion , Thermostatic Rad Valves , Where To Get Paraffin Wax , "Passion, Honesty, Sound service, Keen cooperation and Development" are our goals. We are here expecting friends all over the world!
OEM/ODM Supplier for TU-1D05 thermal wax actuator for industrial thermostatic water regulations mixing valve to Malta Manufacturers 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:

OEM/ODM Supplier for
 TU-1D05 thermal wax actuator for industrial thermostatic water regulations mixing valve to Malta Manufacturers detail pictures


Our advancement depends over the highly developed devices, excellent talents and continually strengthened technology forces for OEM/ODM Supplier for TU-1D05 thermal wax actuator for industrial thermostatic water regulations mixing valve to Malta Manufacturers, The product will supply to all over the world, such as: Russia , Korea , San Francisco , Customer satisfaction is our first goal. Our mission is to pursue the superlative quality, making continual progress. We sincerely welcome you to make progress hand in hand with us, and construct a prosperous future together.



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    1. System error
    2. Actual value feeler virtually
    3. Actual value interior feeler console
    4. Actual value outside temperature – feeler wasserkasten
    5. Actual value outside temperature – feeler bumper
    6. Actual value blowing out feeler floor space
    7. Actual value blowing out feeler man Anstroemer
    8. Display check
    9. Actual digital value acknowledging potentiometer temperature flap
    10. Target digital value temperature flap
    11. Actual digital value acknowledging potentiometer A/C flap
    12. Target digital value A/C flap
    13. Actual digital value acknowledging potentiometer Fuss/Def flap
    14. Target digital value Fuss/Def flap
    15. Actual digital value acknowledging potentiometer ram air flap
    16. Target digital value ram air flap
    17. Driving speed (km/h) ( used on movie )
    18. Actual value of the blower tension (volt)
    19. Desired value of the blower tension (volt)
    20. Actual value of the compressor/on-board tension (volt)
    21. Number of low-voltage events
    (not volatilely)
    22. Switching status of the high pressure switch
    23. Number of high pressure events (volatile)
    24. Number of high pressure events (not volatile)
    25. A/D value kickdown switch
    26. A/D value hot light
    27. Engine speed
    28. Compressor number of revolutions
    29. Coding
    30. Software-Version
    31. Software index
    32. Potentiometer error counter temperature flap
    33. Potentiometer error counter A/C flap
    34. Potentiometer error counter Fuss/Def flap
    35. Potentiometer error counter ram air flap
    36. Temperature flap notice cold
    37. Temperature flap notice warm
    38. A/C flap notice closed
    39. A/C flap notice opened
    40. Fuss/Def flap notice Def
    41. Fuss/Def flap notice foot
    42. Ram air flap notice up
    43. Ram air flap notice too
    44. Operating cycle counter
    45. Interior temperature counted (Ninc) dig
    46. Outside temperature filtered (°C)
    47. Outside temperature not filtered (°C)
    48. ECOR
    49. Coolant temperature
    50. Service life in min
    51. Engine temperature °C
    52. Compressor switching off conditions
    53. Announcement more actively el. Exits:
    Compressor/circulating air valve/water valve
    54. Rule index
    55. Outside temperature °C
    56. Interior feeler virtually °C
    57. Interior feeler console °C
    58. Temperature wasserkasten °C
    59. Temperature bumper °C
    60. Blowing out feeler floor space °C
    61. Blowing out feeler man Anstroemer °C
    62. Sun intensity W/m-1
    63. Sun intensity filtered W/m-1
    64. Delta exhaust rise
    65. Delta A/C Klappenverschiebung
    66. Time constant/1.6 seconds
    67. Cold weather starting correction
    68. Maximum correcting variable for i and p-portion
    69. Actual value blowing out feeler foot (cnts)
    70. Desired value blowing out feeler foot (cnts)
    71. Deviation (Epsilon)
    72. Portion (+ heat/- cool)



    24″ 600# ball valve. The valve weighs over 14,000 lbs. Torque required is approx 500,000 in/lbs. Actuator is rated for 600,000 in/lbs (50,000 ft/lbs) torque. It is 1 of 3 terminal inlet pressure control valves on a main liquid pipeline being built down the middle of the US. The actuator is a discrete, self-contained electro-hydraulic type with no oil tank. It is a sealed, closed-loop, positive pressure design that requires no periodic oil/filter maintenance. It is motor hybrid type – motor driving a hydraulic circuit instead of a gearbox. High output torque, high speed, high duty cycle, high accuracy, low power consumption (motor only activates when position change is required), low maintenance. This design has become the industry standard for liquid pipeline pressure/flow control applications. Low deadband (0.05%), short deadtime (90 mS), with brushless servo motors (no limitation on starts/stops per hour). True system approved hazardous area ratings (not only component level approvals) – these have firm complete system approvals and the documentation to go along with it. Total oil volume in this high torque hydraulic system is 10 quarts (9.5 liters) – about 2.5 US Gallons. An electric actuator and gearbox in this torque range would contain more grease. Other EH type actuators would have at least 10X the oil – which would require routine maintenance – and continuously consume power.
    The REXA electraulic design is the standard for modulating control valves of all sizes on liquid pipelines in N. America and China, and is preferred by many major liquid pipeline companies in other countries/regions. For more info you can visit www.rexa.com or e-mail me directly at ghynes@rexa.com

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