EKSMA OPTICS HV-200 Manual

High voltage power supplies

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HIGH VOLTAGE POWER
SUPPLIES
HV-200
HV-400
HV2-200
Technical Description
Rev. 2202
2022
Lithuania

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Summary of Contents for EKSMA OPTICS HV-200

  • Page 1 HIGH VOLTAGE POWER SUPPLIES HV-200 HV-400 HV2-200 Technical Description Rev. 2202 2022 Lithuania...
  • Page 3: Table Of Contents

    ONTENTS CHAPTER 1 WARRANTY ........................1 1.1. W ........................1 ARRANTY TATEMENT 1.2. S ......................1 ERVICE ONTACT NFORMATION CHAPTER 2 SPECIFICATIONS....................... 2 2.1. G ........................2 ENERAL NFORMATION 2.1.1. Models ............................ 2 2.1.2. Main Components ........................2 2.2. T ........................
  • Page 4 IST OF IGURES 1. O ..............4 IGURE UTLINE DRAWING AND DIMENSIONS OF THE POWER SUPPLY 2. F ..................4 IGURE RONT CONTROLS OF THE POWER SUPPLY 3. R ................... 5 IGURE EAR CONTROLS OF THE POWER SUPPLY 4. RS232/CAN ......................
  • Page 5: Chapter 1 Warranty

    Any evidence of improper use or unauthorized repair attempts voids the warranty. For service/warranty requests, please contact: EKSMA OPTICS, UAB Phone: +370 5 272 99 00 c/o EKSMA Optics, UAB Fax.: +370 5 272 92 99 Dvarcioniu st. 2B E-mail: info@eksmaoptics.com...
  • Page 6: Specifications

    Chapter 2 S P E CIFICAT IONS The table below lists standard options. Custom voltage modifications may be delivered on request. Table 1. Models Catalog number Maximal HV output, kV Maximal HV current, mA HV-200-1.8 HV-200-2.6 HV-200-3.6 HV-200-4.0 HV-400-1.8 HV-400-2.6 HV-400-3.6 HV-400-4.0 HV2-200-1.5...
  • Page 7: Chapter 3 Device Layout

    Table 3. Technical specifications Parameter Value(s) HV-200 HV-400 HV2-200 Output voltage polarity Positive Bipolar Maximum HV output power at 2×200 maximal output voltage, W 47.5…55 V, 4.5 A Supply voltage DC requirements 47.5…55 V, 9 A Output voltage ripple, % <...
  • Page 8: Figure 1. Outline Drawing And Dimensions Of The Figure 2. Front Controls Of The Hv

    Chapter 3 D E VICE AYOU T Figure 1. Outline drawing and dimensions of the HV power supply Figure 2. Front controls of the HV power supply www.eksmaoptics.com...
  • Page 9: Figure 3. Rear Controls Of The Hv

    Figure 3. Rear controls of the HV power supply Table 4. Controls and connections of the HV power supply Port 1 Potentiometer for HV tuning in potentiometer mode 2 LED HV output on 3 LED +48V 4 +24V auxiliary output connector 5.1 2 pins for +48V input 5.2 2 pins for GND input (-48V) 6.1 Test point for -HV current monitoring (1V = 100mA)
  • Page 10: Rs232/Can Connector Pinout

    Figure 4. RS232/CAN connector pinout www.eksmaoptics.com...
  • Page 11: Safety

    Chapter 4 S AFE T Y Equipment is designed to be safe under normal environmental conditions according to 1.4.1. 61010-1@IEC:2010 (Safety requirements for electrical equipment, control and laboratory use): 1. indoor use; 2. altitude up to 2000 m; 3. temperature 5˚C to 35˚C; 4.
  • Page 12: Supply

    Chapter 5 Q U ICK T ART U IDE Provide the proper ground connection to ground screw (#8) of HV power supply. Connect the +48 VDC power supply to the HV power supply. See Table 3 for requirements. HV level may be tuned by: 1.
  • Page 13 Switch the +48 VDC power on. Measure the voltage on +48 VDC input of HV power supply while HV power supply is loaded. If the voltage measured is below +47V, use thicker wires, or increase the DC supply voltage to compensate voltage drop.
  • Page 14: Control Via Can/Rs232

    Chapter 6 C CAN/RS232 ONT ROL VIA CAN-USB converter is recommended for operation. It can be ordered from Eksma Optics. It comes together with „CAN Browser“ software and a set of required cables. Figure 6. CAN-USB converter 1. Connect CAN-USB converter to PC and HV power supply by cables supplied.
  • Page 15: Rs232

    Chapter 7 CAN B ROW SE R ONT ROLS Below tables 5 and 6 present list of registers that can be accessed and/or read-out using CAN Browser. Table 5. Basic controls Setting Description Command Toggle the HV supply output ON/OFF Uset Set HV output value.

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