A, AH series
Output up to 6kV; 1W, 1.5W




- Proportional Input/Output
- Extremly Low Profile and Small Volume
- Low Noise Quasi-sinewave Oscillator
- Control Pin
- Low Leakage Current
- Low Input/Output Capacitance
- Input to Output Galvanic Isolation
- Short Circuit Protection, 1 Minute Minimum
- No Minimum Load Required
- No External Components Required
- Three Standard Input Voltage Ranges
- Designed to meet RoHS 2 and 3 Directives
The A / AH Series is a line of ultra-miniature, HV DC/DC converters that set an industry standard in high voltage miniaturization. This unique package occupies less than one tenth of a cubic inch of volume, and features an extremely low profile of only 0.250 inches (6.35 mm). Controllable output voltages range from 100 V to 6 kV. These component-sized converters are ideal for applications requiring minimal size and weight.
Turn-on voltage is very low at less than 0.7 V, allowing for wide output voltage operating range. Use of a resonant, quasi-sinewave oscillator and fully shielded transformer result in clean, reliable high voltage conversion with inherently low ripple, EMI/RFI and input ripple current, making this product ideal for integration into noise sensitive equipment.
A separate high impedance control pin is standard and is designed for external error amplifier and/or DAC control in closed or open loop systems. Or simply connect the control pin to the + input for proportional input to output operation.
No external components or minimum load are required. A proprietary encapsulation process and custom 94V0 compliant, high performance formula are used to achieve excellent high voltage and thermal properties. Isolation is ±500 V bias on the output return. Input to output leakage current is very low at less than 100 nA and coupling capacitance is also low at <250pF.
Specifications:
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Applications:
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Model Overview
Output Voltage | 1 W Models - A Series | 1.5 W Models - AH Series | [VDC] | Positive Output Model | Negative Output Model | Max. Output Current *1 [mA] |
Positive Output Model | Negative Output Model | Max. Output Current *1 [mA] |
---|---|---|---|---|---|---|
0 - 100 | A01P-*2 | A01N-*2 | 10 | AH01P-12 | AH01N-*2 | 15 |
0 - 200 | A02P-*2 | A02N-*2 | 5 | AH02P-*2 | AH02N-*2 | 7.5 |
0 - 250 | A025P-5 | 4 | AH025P-*2 | 6 | ||
0 - 300 | A03P-12 | A03N-12 | 3.33 | AH03P-*2 | AH03N-12 | 5 |
0 - 400 | A04P-*2 | A04N-*2 | 2.5 | AH04P-12 | AH04N-12 | 3.75 |
0 - 500 | A05P-*2 | A05N-*2 | 2 | AH05P-*2 | AH05N-*2 | 3 |
0 - 600 | A06P-*2 | A06N-*2 | 1.67 | AH06P-5 | AH06N-5 | 2.5 |
0 - 700 | A07N-24 | 1.43 | ||||
0 - 800 | A08P-*2 | A08N-*2 | 1.25 | AH08P-5 | 1.87 | |
0 - 900 | AH09P-24 | AH09N-5 | 1.67 | |||
0 - 1000 | A10P-*2 | A10N-*2 | 1 | AH10P-12 | AH10N-12 | 1.5 |
0 - 1200 | A12P-*2 | A12N-*2 | 0.83 | AH12P-24 | AH12N-5 | 1.25 |
0 - 1500 | A15P-*2 | A15N-*2 | 0.67 | AH15P-*2 | 1 | |
0 - 2000 | A20P-*2 | A20N-*2 | 0.5 | AH20P-*2 | AH20N-12 | 0.75 |
0 - 3000 | A30P-*2 | A30N-*2 | 0.33 | AH30P-*2 | AH30N-*2 | 0.5 |
0 - 4000 | A40P-5 | A40N-5 | 0.25 | |||
0 - 5000 | A50P-5 | A50N-5 | 0.2 | |||
0 - 6000 | A60P-5 | A60N-5 | 0.16 | AH60P-5 | AH60N-5 | 0.25 |
*1 - At maximum rated output voltage
*2 - Input voltage range designator: "5", "12" or "24" for 0-5 VDC, 0-12 VDC or 0-24 VDC respectively; available for models up to 3kV - eg. A30N-12
Note: Some combinations of input and output voltage are not feasible.
Please refer to the datasheet for available models.
Disclaimer
The information given here is technical data, not assured product characteristics. It has been carefully checked and is believed to be accurate; however, no responsibility is assumed for inaccuracies. The user has to ensure by adequate tests that the product is suitable for his application regarding safety and technical aspects.
hivolt.de GmbH & Co. KG does not assume any liability arising out of the application or use of any product described.
Safety Advice
Design, installation and inspection of machinery and devices carrying high voltage require accordingly trained and qualified personnel. Appropriate safety rules and directives must be complied with.
Improper handling of high voltage can mean severe injuries or death and may cause serious collateral damage!