0-1A High Current Linear Control Isolation Amplifier|0-3A Linear Output Isolation Amplifier

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  • 33、DIN ISO(SY) U(A)-P-A Series Electrohydraulic Proportional Valve Linear Regulation Display Control Linear Isolation Amplifier

  • Proportional regulation and control of high-power isolation amplifier is composed of a variety of analog isolation amplifier circuits and high-precision power amplifier circuits, mainly used in proportional valves, precision temperature controllers, electric flow control valves, precision solenoid displacement gauges and other occasions that require precision drive control of high-power loads. The product adopts the standard DIN35 rail mounting mode, which can isolate and power amplify the analog output of PWM/4-20mA/0-10V/0-5KHZ/0-5KΩ/RPM/displacement/pressure/flow/temperature and other sensors, transmitters and PLC outputs. The products are widely used in electro-hydraulic proportional valves, CNC machine tools, robots, engineering vehicles, shipbuilding, petrochemical, water industry, hydraulic transmission, industrial automation and other fields.

      SunYuan proportional regulation control high-power isolation amplifier is composed of various analog isolation amplifier circuits and high-precision power amplifier circuits, which is mainly used in proportional valves, precision temperature controllers, electric flow control valves, precision solenoid displacement gauges, and other occasions that require precision drive control of high-power loads. The product adopts standard DIN35 rail mounting mode, which can isolate and power amplify the analog output of PWM/4-20mA/0-10V/0-5KHZ/0-5KΩ/RPM/displacement/pressure/flow/temperature and other kinds of sensors, transmitters and PLC outputs, and output linear and high-precision analog large driving current such as 0-100mA/0-500mA/0-1A/0-2A/0-3A.

       
      The products are designed with small size and simple structure, low cost and high reliability, suitable for - 40 ~ + 85 ℃ industrial site. Widely used in electro-hydraulic proportional valves, CNC machine tools, robots, engineering vehicles, shipbuilding, petrochemical, water industry, hydraulic transmission, industrial automation and other fields.


 

Input Signal Classification Description 


1、Z-W : RTD temperature signal input 

      RTD type Z1: Pt100 Z2: Pt10 Z3: Cu100 Z4: Cu50                                      

      Input temperature range W1: -20-100℃ W2: 0-100℃ W3: 0-150℃ W4: 0-200℃ W5: 0-400℃ W8: User-defined 


2、PWM : Pulse Width Modulation Signal Input       

      D1: 50Hz-99Hz PWM signal input        D2: 100Hz-0.9KHz PWM signal input 

      D3: 1KHz-9KHz PWM signal input        D4: 10KHz-19KHz PWM signal input                        

      D5: 20KHz-50KHz PWM signal input     D8: User defined



3、AC : AC signal input                                                   

      Input rated voltage value AC : 0~1Vrms


4、R : Electronic ruler, displacement signal input    

      R1 : 0-50Ω R2 : 0-100Ω   R3 : 0-200Ω    R4 : 0-500Ω 

      R5 : 0-1KΩ R6 : 0-2KΩ    R7 : 0-5KΩ     R8 : User-defined R9 : 0-10KΩ


5、RMS : True RMS signal input    

      200RMS: 0-200mV;    1000RMS: 0-1000mV 

6、F : Frequency signal input    

      F1: 0-1KHz F2: 0-5KHz    F3: 0-10KHz       F8: user-defined



Product Selection Example 

Example 1: Input/output isolated type; Input signal: 4-20mA; Output signal: 0-3A, max 4.5Ω; Auxiliary power supply: 24VDC Model No.: DIN 1X1 ISO A4-P-3A 


Example 2: Non-isolated input/output type; Input signal: 0-1KHz; Output signal: 0-2A, max 10Ω; Auxiliary power supply: 24VDC 

 Model No.: DIN 1X1 SY F1-P-2A



Potentiometer Adjustment Instructions 


 

Users can tell us the field application parameters before ordering the product, so that it can be adjusted and sealed according to the technical requirements at the factory.

As shown in the figure: four multi-turn potentiometer knobs on the side of the housing, turn clockwise to adjust the decrease, counterclockwise for the increase.

Zero calibration adjustment: Given the minimum input signal, adjust the potentiometer knob so that the output current is zero.

Fullness calibration adjustment: Given the maximum input signal, adjust the potentiometer knob so that the output current is the maximum value. 
Rising Edge Response Time: Connect the oscilloscope to both ends of the output load, adjust the potentiometer and observe the rising edge time of the waveform.

Falling Edge Response Time: Connect the oscilloscope to both ends of the output load, adjust the potentiometer and observe the falling edge time of the waveform.

 


Typical Application Examples 

Application 1: Direct input of sensor-transmitter signals such as 0-10V/PWM/0-10K/Pt100/0~1Vrms/RMS. 

In this application mode, the signal input, signal output and auxiliary power supply are 3000VDC triple isolated.





Application 2: Apply the module's own distribution output of 10VDC, and external resistors or potentiometers to form an electronic ruler or bridge input application mode。 
In this application mode, the ground of the signal input (GND) and the ground of the distribution output (GND1) are connected to a common ground. Therefore, the signal input and signal output are 3000VDC isolated from each other. 

 

High Power Isolation Amplifier for Linear Regulation Control of Electrohydraulic Proportional Valves: DIN 1X1 ISO(SY) U(A)-P-A Series

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