ISO-TECH IPS1810H and IPS1603D DC power supply ISO-TECH IPS 1810H et IPS 1603D Alimentation électrique c.c.

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ISO-TECH IPS1810H and IPS1603D DC power supply ISO-TECH IPS 1810H et IPS 1603D Alimentation électrique c.c. ISO-TECH IPS 1810H 204-713 ISO-TECH IPS 1603D 204-729 82IP-1810HME Ei

Statement of Compliance IPS 1810H and IPS1603D is herewith confirmed to comply with the requirements set out in the Council Directive on the Approximation of the Law of Member States relating to Electromagnetic Compatibility (89/366/EEC, 92/31/EEC, 93/68/EEC) and Low Voltage Equipment Directive (73/23/EEC). For the evaluation regarding the Electromagnetic Compatibility and Low Voltage Equipment Directive, the following standards were applied: EN 50081-1 (1992): Electromagnetic Compatibility- Generic Emission Standard. Part 1: Residential, Commercial and Light Industry Conducted and Radiated Emissions EN 55022 class B (1994) Current Harmonic EN 61000-3-2 (1995) Voltage Fluctuation EN 61000-3-3 (1995) EN 50081-2 (1993): Electromagnetic Compatibility- Generic Emission Standard. Part 2: Industrial Environment Conducted and Radiated Emissions EN 55011 class B (1991) EMC Directive 89/366/EEC amended by 92/31/EEC; 93/68/EEC EN 50082-1 (1992): Electromagnetic Compatibility- Generic Immunity Standard. Part 1: Residential, Commercial and Light Industry Electrostatic Discharge IEC 1000-4-2: 1995 Radiated Immunity IEC 1000-4-3: 1995 Electrical Fast Transients IEC 1000-4-4: 1995 Surge Immunity IEC 1000-4-5: 1995 Voltage Dips / Interrupts EN 61000-4-11: 1994 Safety Requirements EN 61010-1: 1995 Low Voltage Equipment Directive 73/23/EEC Eii

CONTENTS SECTION PAGE 1. INTRODUCTION. 1 2. SPECIFICATIONS 2 2-1 General. 2 2-2 Constant Voltage Operation.. 2 2-3 Constant Current Operation.. 3 2-4 Indicator Meter... 3 2-5 Insulation.. 3 2-6 Symbols Description.... 3 3. PANEL CONTROLS AND INDICATORS 5 3-1 Front Panel.. 5 3-2 Real Panel.... 6 4. OPERATION INSTRUCTIONS.. 10 4-1 Precaution.... 10 4-2 Setting Current Limit. 11 4-3 Constant Voltage/Constant Current Characteristic 11 4-4 Operation Mode.. 4-5. Series Operation... 5. MAINTENANCE 13 5-1 Fuse Replacement 13 5-2 Line voltage Conversion. 13 5-3 Adjustment.. 13 11 12 Eiii

1. Introduction The IPS1810H and IPS1603D regulated DC power supplies have been designed to provide the features most often required in the Laboratory, school and production environments. Output voltages and currents of both supplies are continuously adjustable over their respective specified ranges. Coarse and fine potentiometers control the voltage and current outputs while the respective analogue and digital displays accurately indicate the output. The stability of the IPS1810H and IPS1603D has been ensured by some cleverly designed circuitry that also reduces ripple and noise voltages to a minimum (typically less than 1mV rms (5Hz~1MHz). Operation of the unit can be achieved in either constant voltage or current modes, the mode being indicated by a coloured LED. Further details of the operational modes are described in section 4 Operating Instructions. Both the IPS1810H and IPS1603D can be connected in series and parallel to other ISO-TECH power supplies to increase their total output. E1

2. Specifications 2.1 General Main supply 100V/120V/220V/230V ± 10% 50/60Hz (switch selectable) Type Model Max. Rating Input Rating Fuse type and Rating Weight Volts(V) Amps(A) Watts VA 100V/120V 220V/230V (kg) Analog IPS1810H 18 10 390 480 11.5 T 6.3A 250V T3.15A 250V Digital IPS1603D 60 3 360 450 11.5 Dimensions 255(W) 145(H) 355(D) mm Operation mode Series operation Operation temperature and humidity 0 C to 40 C, <80% Storage temperature and humidity 10 C to 70 C < 70% Maximum Altitude 2000m Installation Category II Pollution Degree 2 Product designed for indoor use only. Accessories T3.15A HRC Fuse 1 Test leads 1 Operation manual 1 2.2 Constant Voltage Operation i) Output voltage ranges 0 to maximum rated voltage continuously adjustable ii) Voltage regulation line regulation 0.01%+3mV load regulation 0.02%+5mV iii) Recovery time 100 s iv) Temperature coefficient 300ppm/ C v) Ripple & Noise 1mVrms(5Hz~1MHz)-typical value. E2

2.3 Constant Current Operation i) Output current range 0 to maximum rated current continuously adjustable. ii) Current regulation line regulation 0.2%+3mA load regulation 0.2%+3mA iii) Ripple current 3mA rms typical value. 2.4 Indicator meter i) Digital type Display: 31/2 Digits 0.5 Red LED Display Accuracy: ±(0.5% of rdg + 2 digits) Voltage range: 19.99V of full scale (rated voltage 18V) 199.9V of full scale (rated voltage ]20V) Current range: 19.99A of full scale ii) Analogue type Meter: Voltage and Ammeter each one Class: 2.5 Dimensions: 60 80 mm 2.5 Insulation >20M @ 500VDC between chassis and outputs. >100M @ 500VDC between live parts and earth. 2.6 Symbols Description Indicates where cautionary or other information is found in the manual E3

Fuse Danger High Voltage Danger Hot Surface Protective Ground Terminal Functional Earth Terminal E4

3. Panel controls and Indicators 3.1 Front panel (see figures 3-1 and 3-2) (1) CV indicator-green LED lights when the power is turned on and in constant voltage mode. (2) CC indicator-red LED lights when in constant current mode. (3) Voltage coarse for the coarse adjustment of the output voltage. (4) Voltage fine for the fine adjustment of the output voltage. (5) Current coarse for the coarse adjustment of the output current. (6) Current fine or the fine adjustment of the output current. (7) + output terminal positive polarity. (Red) (8) GND terminal Earth and chassis ground (Green) (9) - output terminal negative polarity. (Black) (10) Voltmeter Indicates the output voltage (digital meter IPS1603D, analogue meter IPS1810H) (11) Ammeter Indicates the output current (digital meter IPS1603D, analogue meter IPS1810H) (12) Power control on/off switch E5

3.2 Rear panel (see figure 3-3) (13) Fuse holder (Fuse type: T3.15A HRC Fuse 220V/230V T6.3A HRC Fuse 100V/120V) (14) Power cord (15) HI-LO switch HI position selects high voltage range (120V, 230V AC inputs), LO position selects low voltage range (100V, 220V AC inputs) (16) AC selects switch With (15) HI-LO switch selects to permit operation of 100, 120, 220 or 230VAC, 50/60Hz line voltages E6

Figure 3-1 (Front Panel IPS1603D) E7

Figure 3-2 (Front Panel IPS1810H) E8

Figure 3-3 (Rear Panel) E9

4. Operating Instructions 4.1 Precaution i) AC input should be within the range of line voltage ±10% 50/60Hz ii) When installing the power supply in a place where the ambient temperature exceeds 40 C ensure that the heat sink located at the rear of the supply has sufficient air space for radiation. iii) Voltage Overshoot Ensure that the voltage between the output terminals never exceeds the preset value when the power is turned on. Fig. 4-1 Constant Current Characteristic Voltage/Constant 4.2 Constant Voltage/Current Characteristics Both the IPS1810H and IPS1603D power supplies have constant voltage constant current automatic crossover characteristics that permit a continuous transition between constant current and constant voltage modes in response to a change in the load. The intersection of constant voltage and constant current modes is called the crossover point and is shown in Figure 4-1. For example, if the load is such that the power supply is operating in the constant voltage mode, a regulated output voltage is provided. The output voltage remains constant as the load increases, up until the point where the preset current limit is reached. At that point, the output current becomes constant and the output voltage drops in proportion to further increases in load. The crossover point is indicated by the front panel LED indicators. The crossover point is reached when the green CV indicator goes off and the CC indicator comes on. A crossover will similarly occur with a E10

decrease in the load when operating in the constant current mode. When a demand for the full current is no longer required then a crossover to the constant voltage mode occurs. 4.3 Setting Current Limit i) Determine the maximum safe current for the device to be powered to. ii) Ensure the power supply is off and that both the current and voltage dials are turned fully anti-clockwise. iii) Temporarily short the (+) and (-) terminals of the power supply with a test lead for example. iv) Turn the power supply on and rotate the coarse voltage control away from zero sufficiently for the red CC LED to light. v) Adjust the current control for the desired current limit. The valve will be displayed on the Ammeter. vi) The current limit (overload protection) has now been preset and so the current control should not be moved from this position. vii) Switch the power supply off and remove the short from between the (+) and (-) terminals. Now connect the load to the binding posts. 4.4 Operating mode When using the supply on its own the following procedure should be followed. i) Set the power switch on the power supply to the OFF position. ii) Plug the mains power lead into the back of the power supply. iii) Ensure that the line voltage is correct for the input power voltage. iv) Switch the power supply on with the power switch at the front left hand corner of the supply. v) Adjust the voltage and current to the desired level. vi) Switch the supply off before connecting the load to the binding posts. Make sure that he correct polarities (+) and (-) are observed on connection of the load. vii) Switch the power supply on. 4.5 Series operation When higher voltage and current outputs are required the IPS1810H and IPS1603D can be connected in both series and parallel modes. Connected in series, the voltage of both supplies are combined to give an output voltage variable over the range from 0 to the maximum combined voltages. Load current may be set on either of the supplies but since the supplies are connected in series then only one of the dials need be set. Figure 4-2 shows the connection required for series operation. E11

Fig. 4-2 Connecting Two Power Supplies in Series E12

5. Maintenance 5.1 Fuse Replacement If the mains fuse fails, then the power supply will not operate. The fuse holder positioned at the rear of the supply should not normally be opened unless the supply fails to operate. Try to determine the cause of the blown fuse, then replace only with a fuse of the correct rating and type. Fuse type: - T3.15A HRC FUSE (220V/230V), T6.3A HRC FUSE (100V/120V) 5.2 Line voltage conversion The IPS1810H and IPS1063D can operate under different line voltages which are tapped from the transformer to permit operation from 100, 120, 220 or 230VAC, 50/60Hz line voltages. Conversion from one line voltage to another is done by changing the AC selector switch as shown in figure 3-3. The rear panel will be currently set to operate for UK mains - 240VAC 50Hz line voltage To convert to a different voltage follow the following procedure:- i) Ensure the power cord is unplugged ii) Change the AC selector to the desired line voltage iii) A change in AC line voltage may also require a corresponding change of fuse value. 5.3 Warning: Do not attempt to open the power supply unless qualified to do so. Ensure that all power to the unit has been isolated before proceeding. If this unit does fail to operate then consult qualified service personnel only. E13