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AllansonHigh Voltage Power Supplies

Allanson AHVPS-714-06-MV-PCB High Voltage Power Supply

Our High Voltage Power Supplies convert the 120/240VAC volt, 60 HZ single phase AC supply into the high voltage DC required to power ionizing collection cells. Potential of 14KVDC is required for the Ionizer section…

SKU 3G-OTH-02986

Also listed as: AHVPS71406MVPCB · AHVPS 714 06 MV PCB

Brand
Allanson
Item
AHVPS-714-06-MV-PCB High Voltage Power Supply
Category
High Voltage Power Supplies
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Local availability & support — Singapore

Local office
20 Woodlands Link #09-05, Singapore 738733
Phone
+65 8878 8355
Delivery
Same-day or next-business-day delivery within Singapore for in-stock items; 7–14 days for factory-order parts from Europe.
Payment
Invoicing in SGD. PayNow, bank transfer, and corporate PO accepted.
Ships to
Singapore

Technical Specifications

Allanson
Dimensions
8"x10"x4"
Input Voltage
120V-240V
Construction Type
PCB
Max Output Current mA
6mA
Max Output Power Wattage
100W
Input Current @ 120V/240V
0.85A/0.42A
Max Output Voltage Ionizer/Collector
14/7KVDC

Datasheet Content

[{"filename":"AHVPS714-06-MV-PCB-specs-and-manual-Rev-6-June-27-2022.pdf","text":"Rev. 5 June 27/2022\n\n 14kV / 6mA High Voltage Power Supply for Electrostatic\n Air Cleaner\n\n Specifications and operating manual\n\n Cat # AHVPS714-06-MV-PCB\n\n 1. Overview\n\nThe 14kVDC/6mA HV power supply is an OEM product and comes without AC\npower ON/OFF switch and safety interlocks. It is system integrator responsibility\nto assure that all national, state and local electrical safety codes are followed.\n\n 1.1 Principle of operation\n\nThe block diagram of HV Power Supply is shown in Fig. 1\n\nThe HV Power supply has built in universal input, power factor corrected AC/DC power\nconverter, which produces 450VDC for the resonant DC/DC HV power converter. The\nResonant Power Converter drives the HV step up transformer, which delivers up to\n1.5kV RMS to the HV multiplier. The 4 stage HV multiplier produces up to 14kVDC at\nthe output (Ionizer) and 7kVDC at the output of second stage (collector).\n\nThis PS has capabilities to deliver up to 6mA DC current at 14KVDC to 2 X 24” Linear\ncells. Max input current on 120V is 0.85A\n\nThe resonant power converter is over voltage, over current, overpower protected\nincluding continuous output short circuit condition.\n\nOperating HV and output current limit are set manually however Intelligent Controller\nhas the capability to perform the following functions:\n\n 1. Monitors HV and output current\n\n 2. Maintain the best performance and minimize load cell arcing\n\n 3. Reports HV converter status using LED Lamps and optional serial messages on\n RS-485 port or Modbus.\n Operating HV, Current, number of hours of operation, error codes can be\n monitored on optional RS-485 output or Modus output terminals.\n 1 Rev. 6\n 06/27/2022\n\f Additional HV and current can be monitored on scaled down analog output.\n\n I Monitor – 100mV per 1mA\n\n V monitor – 100mV per 1KV\n\n 4. Keeps track of operating hours\n\n 5. Connect to Remote LED diagnostic PCB.\n\nStatus LED functionality and simplified flowchart are shown in Appendix A.\n\n\n\n Universal Input\n 120 - 240 VAC\n\n N L GND\n\n\n\n J30\n HV POWER FACTOR\n REMOTE J17 CORRECTOR POWER TRANSFORMER\n ON/OFF MODULE\n\n Remote\n LED J6\n Panel 14kV\n J1 7kV\n HV HV MULTIPLIER\n GOOD\n RELAY\n POWER\n CONVERTER\n &\n CURRENT\n RV3 CONTROLLER\n LIMIT\n ADJUST\n\n HIGH\n VOLTAGE RV4\n ADJUST\n\n\n V MONITOR J13 CURRENT FEEDBACK\n\n VOLTAGE FEEDBACK\n I MONITOR\n\n\n\n\n INTELLIGENT\n CONTROLLER\n\n J2 J12\n\n\n BURN IN RS-485\n\n\n\n\nFig.1 HV Power Supply Block Diagram\n 2 Rev. 6\n 06/27/2022\n\f2.0 Modes of operation\n\nStandby Mode (HV converter is OFF, Microcontroller – MCU is ON)\nHV Converter ON Mode\n Voltage Source Mode\n Current Source Mode\n Burn-in Mode\n\n\n2.1 Standby Mode\n\n2.2 In Standby Mode the main supply is On (J30) and powers microcontroller (MCU)\n circuit. The MCU reports the power supply status on serial port. J12 open (Run\n signal is not received) -- Standby Mode\n\n\n\n2.2 HV Converter ON Mode\n\n\nVoltage source Mode\n\nIn Voltage Source Mode the HVPS maintains the preset voltage while current is\ndetermined by the load. If current does not exceed the max limit of 6mA the HVPS will\nmaintain the preset HV.\nVoltage mode example settings: The HV was set to 12kV and current limit was set to\nthe maximum value of 6mA. After connecting the clean load cell, the HVPS was\noperating at 12kV with current floating around 6mA. With the same settings and dirty\nload cell connected, the HVPS was still operating at 12kV, but the load current dropped\nto 5mA.\n\nCurrent Source Mode\n\nIn Current Source Mode the HVPS maintains the preset current while voltage is\ndetermined by the load. If output voltage does not exceed the max limit of 14kV the\nHVPS will maintain the preset current.\nCurrent Mode example settings. The current limit was set to 6mA and HV to 14kV. After\nconnecting the clean load cell, the HVPS was operating at 6mA current and HV floating\naround 12kV. With the same settings and dirty load cell connected, the HVPS\nwas operating with 6mA current, but HV increased to 12.5kV to maintain 6mA current.\n\n\n\n 3 Rev. 6\n 06/27/2022\n\fBurn-In Mode.\n\nThe Burn-in Mode is invoked by the pushbutton momentary switch SW1 located on the\nPCB or by shorting terminals of connector J2 located next to the pushbutton switch or\nterminating two wires to external momentary push button.\n\nIn normal operation the HVPS is exposed to occasional overload conditions caused by\narcing in the load cells. The HVPS monitors the rate and duration of overload conditions\nand shut down if overload condition persists.\n\nNew load cells may be contaminated with remnants of machining process and may\ncause excessively high rate of arcing for first few hours of operation which may cause\nthe HVPS to shut down prematurely. To prevent this unnecessary shutdown the Burn In\nmode was introduced.\n\nWhen Burn In mode is activated (by pressing the Burn In ON/OFF switch), red LED will\nbe blinking until burning process is completed or terminated, the HVPS will not shut\ndown in response to persistent overload condition for 3 hours period.\nIn Burn-In mode the protection algorithm, which monitors rate and duration of overloads\nand shuts down the HVPS if overload persists is suspended for 3 hours.\nThe Burn In mode can be terminated before 3-hour timer expires by pressing the Burn\nIn ON/OFF switch.\nDuring Burn In cycle the display alternates between standard Voltage and Current\nreadings\nand Burn In cycle message.\n\n\n 3.0 Installation and safety\n\n The HV Power Supply must be mounted indoors, protected from weather\n\nElements, in a location easily accessible by operating service personnel.\n\nThe HV Power Supply is equipped with universal input; power factor corrected (PFC)\nAC/DC power supply and can operate from 120VAC or 240VAC power lines.\nThe maximum current draw is 0.85 Amp from 120 VAC line and 0.42 Amp from 240VAC\nline. Use these numbers to select proper wire gage as per applicable standards.\n\nThe connection diagram of HV Power Supply is shown in Fig.2 All connections are\nmade to terminals on the Main Board.\n\nThe HV Multiplier has two outputs:\n\nIonizing Voltage – Labeled as 14kVDC\n\n 4 Rev. 6\n 06/27/2022\n\fCollector Voltage – Labeled as 7kVDC\n\nThe HV and current adjustment trim pots, Dry Contact (J17) terminal block, AC power\ninput (J30), HV Good Relay (J1) and RS-485 serial port (J12) are located at the outside\npart of the Main Board.\nStatus LEDs are placed on the remote panel connected to RJ45 type connector (J6).\n\n\n\n\n 4.0 Field wiring connections\n\n\nThese instructions are for qualified personnel only. To reduce the risk of electric\nshock, do not perform any servicing other than contained in the instructions\nunless you are qualified to do so. All wiring must be installed according to\nnational, state and local codes.\n\nThe HV Power Supply requires the following field connections shown in Fig.2\n\n 1. AC line connection (main input) including safety GND (J3, highlighted in green)\n 2. HV Connection to cells (7kV and 14kV terminal studs, highlighted in red)\n 3. HV Relay status contacts (J1, highlighted in green)\n 4. RS-485 / Modbus communication port (J12, highlighted in green)\n 5. HV GND from the cells to be connected to ground terminal on the enclosure which\n is connected to the aluminum plate and PCB board ( AC GND connection point) -\n connection point is located at the PCB corner which provide connection to\n mounting chassis by mounting screw.\n 6. Remote start ON/OFF terminals J17 highlighted in green (To turn HV converter\n ON - dry contact closure is needed)\n 7. Remote diagnostic LED panel connected to RJ45 type connector J6 on the Main\n Board (highlighted in green)\n 8. Remote momentary push button located on front face of enclosure (burn in\n function ) connected via two wires to J2 (highlighted in green)\n 9. Optional Voltage and current Monitor (J13)\n\n\n\n\n 5 Rev. 6\n 06/27/2022\n\f Air cleaner 14 kV HV power supply\n Connections, indicators and controls\n\n\n\n HV\n 2\n GOOD\n 1 J1\n RELAY\n RESONANT\n POWER HV TRANSFORMER\n CONVERTER\n\n LED\nPANEL J6\n\n RV3\n\n\n Min. Max.\n HV ADJUST HV ON\n RV5 HV GND\n\n\n Min. Max.\n CURRENT\n LIMIT\n ADJUST\n HV MULTIPLIER\n 7 kV\n POWER ON\n\n\n FAULT 14 kV\n\n HV\n GOOD INTELLIGENT\n CONTROLLER PFC AC/DC\n V MONITOR 1 J 13 POWER\n 2 J 30\n GND 3 J 16 SUPPLY\n I MONITOR 4 GND 3\n 2\n 1 J 12\n 3 NEUTRAL 2\n GND 2\n A B J 17\n 1 2\n 1 LINE 1\n BURN IN\n SWITCH HV AC\n RS-485 REMOTE INPUT\n PORT ON/OFF\n\n\n\n\nFig.2 Connections, Indicators and Controls\n\n\n\n…

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Allanson Products
3G Electric (S) Pte. Ltd. — Singapore

Product Description

Our High Voltage Power Supplies convert the 120/240VAC volt, 60 HZ single phase AC supply into the high voltage DC required to power ionizing collection cells. Potential of 14KVDC is required for the Ionizer section and 7KVDC for the collector section of the cells.

Frequently Asked Questions

What is the Allanson 3G-OTH-02986 high voltage power supply used for?

The Allanson 3G-OTH-02986 is used to power electrostatic air cleaners. It converts 120-240VAC input into 14kVDC for the ionizer section and 7kVDC for the collector section of ionizing collection cells, enabling efficient air purification in commercial or industrial HVAC systems.

What are the specifications of the Allanson 3G-OTH-02986?

The Allanson 3G-OTH-02986 has dimensions of 8"x10"x4", input voltage 120-240VAC, max output current 6mA, max output power 100W, and max output voltage of 14/7kVDC for ionizer/collector. Input current is 0.85A at 120V and 0.42A at 240V. It features a PCB construction type.

Where to buy the Allanson 3G-OTH-02986 in Singapore?

3G Electric supplies the Allanson 3G-OTH-02986 to customers in Singapore. We handle logistics, customs clearance, and delivery to your facility. Contact our team for a quote and lead time on this high voltage power supply for electrostatic air cleaners.

How to install the Allanson 3G-OTH-02986?

The Allanson 3G-OTH-02986 is an OEM product without an AC power switch or safety interlocks. The system integrator must follow all national and local electrical safety codes. Mount the PCB securely, connect 120-240VAC input, and ensure proper grounding. Adjust output voltage and current limit using onboard potentiometers.

Used in

Common applications for Allanson
Oil burner retrofit maintenance — Allanson CAT 1092 TYPE F transformer replacement in existing Beckett control circuits
Industrial heating-system commissioning — Control transformer installation in multi-stage flame-safeguard burner startup sequences
Plant emergency maintenance — Same-day T92 transformer procurement to restore failed ignition control voltage supply
Burner control-cabinet assembly — Allanson transformer integration in custom control-circuit designs for process-heating applications
Field technician spare-parts kit — Stocking CAT 1092 and T92 variants for mobile maintenance coverage of regional burner installations

Allanson Products

3G Electric supplies Allanson high voltage power supplies. We supply genuine products with in-stock availability on common SKUs, technical documentation, commissioning support, and warranty service — worldwide.

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