Danfoss Types ETS6-10/ETS6-18-25/ETS32-40 Electric expansion valves
Danfoss Types ETS6-10/ETS6-18-25/ETS32-40 Electric expansion valves
Danfoss Types ETS6-10/ETS6-18-25/ETS32-40 Electric expansion valves
Danfoss Types ETS6-10/ETS6-18-25/ETS32-40 Electric expansion valves
Danfoss Types ETS6-10/ETS6-18-25/ETS32-40 Electric expansion valves

Danfoss Types ETS6-10/ETS6-18-25/ETS32-40 Electric expansion valves

CNY 388 - 388 /Unit

Min.Order:1 Unit

Supply Ability:
130 Unit / Units per Month
Port:
Guangzhou
Payment Terms:
PayPal
Delivery Detail:
3 days

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Brand Name:
Danfoss
Place of Origin:
China
Model Number:
ETS6-10,ETS6-18-25,ETS6-32-40
Material:
Brass
Application:
General
Structure:
Regulating

Guangxi COHO Electromechanical Co. Ltd..

Business license
Main Products: Stop valves ,Danfoss valves ,EMERSON valves ,Servo Valves ,Pressure Sensor ,Level Switch ,Check Valves ,Motor Operated Valves ,Liquid Level Sensor ,Liquid Level Regulating Valves ,Solenoid Valves ,Electric Expansion Valves

Product Details

Danfoss Types ETS6-10/ETS6-18-25/ETS32-40 Electric expansion valves introduction

The range of Electric expansion valves are basedon many years of experience.ETS 6 secure reliability and provide a precise solutions for ex pansion and flow control in a wide range of refrigeration and air conditioning systems.

Compact and lightweight. The current range is available with a wide capacity range, and can be used with all common fluorinated refrigerants. Bi-flow operation is also possible for heat pump systems.The valve operation is by means of a uni-polar motor, which can be controlled by a number of controllers from Danfoss or third party vendors.With an EKD 316 and EIM 336 (current drivers) and an AKS sensor, an accuracy better than Danfoss Types ETS6-10/ETS6-18-25/ETS32-40 Electric expansion valves Features

• Optimized energy efficiency of the system.

• Precision flow control with high resolution.

• Compact and lightweight.

• Energy saving design.

• Proven know-how and high reliability.

• Wide range for all common refrigerants.

• Bi-flow for heat pump applications.

Danfoss Types ETS6-10/ETS6-18-25/ETS32-40 Electric expansion valves Technical data

Flow characteristic Bi-flow.

Maximum working pressure 47 bar / 681 psig.

Compatible refrigerants R134a, R404A, R407C, R410A, R22 and other refrigerant.

Refrigerant oil All mineral oils and ester oils (to lubricate ETS 6 valve).

Ambient temperature -30  – 70°C / -22  – 158 °F

Fluid Temperature

(measured at the inlet of the

valve like the image below)

-30  – 70°C / -22  – 158 °F

Durability

Tested for 60 Million total pulses supplies to the valve during partially open

valve, which is comparable to 150,000 cycles if the valve is operated between

100 to 300 pulses open.

Tested for 30,000 full stroke cycles including 20 pulse overdrive at each closing.

Ambient humidity 95 % RH or less.

Capacity control range 10 % – 100 %

Electrical data

Modulation Permanent magnet type direct operating stepper motor.

Excitation method 1-2 phase.

Electrical connection JST XHP-6, JST XHP-5 and AMP connection.

Excitation speed min. 30 pps (pulses per second) to max. 90 pps, recommended 31 pps.

Operating range

0 to 480 pulses, no holding power required (NOTE: do not apply more than

520 pulses).

Full motion transit time e.g. 16 sec @ 30 pps, 6 sec @ 80 pps

Installation position

Liquid line solenoid valve

With coil on the upper side and the valve/coil assembly within ±15˚of the

vertical axis

If using a liquid line solenoid valve, it must be installed in such a way that it

does not create liquid hammering this ETS 6 valve.

Max. coil winding temperature 115 °C / 239 ° F

Compatible Danfoss controller EKD 316, EKD 316C, EXD 316, EIM 336 (for OEM only).

Danfoss Types ETS6-10/ETS6-18-25/ETS32-40 Electric expansion valves Design/function

The ETS 6 Electric expansion valves open and close to regulate refrigerant flow by means of a screw, whose rotating motion is transformed into linear motion. This occurs by the rotation of a magnet-needle valve assembly which moves when electrical signals are applied to the surrounding coil.

Within the coil structure, there are different winding configurations, and the polarities are changed by the electrical signals applied. By application of the appropriate combination of signals, in the form of pulses,the coil forces the rotor of the valve to move in a stepwise fashion.Application of multiple pulses will make the valve mechanism to move through a series of steps in the chosen direction, in order to set the valve with the required opening degree.





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