GCON
GCON 3pcs DC-DC Boost Converter 8-32V to 45-390V gender changer
A three-pack of non-isolated boost modules that raise 10-32 V inputs to a continuously adjustable 45-390 V output for capacitor charging or high-voltage testing
- Wide 8-32 V input range fits many DC sources
- Continuously adjustable 45-390 V output covers diverse high-voltage needs
- Default 50 V output works immediately without tuning
- Non-isolated step-up topology keeps the module compact
- Supports capacitor charging, glow tubes and withstand-voltage tests
High-voltage boost module for capacitor charging
This DC-DC boost converter steps input voltages from 8 to 32 volts up to a continuously adjustable output between 45 and 390 volts. The module ships in a pack of three and is intended for capacitor charging, high-voltage testing and glow-tube power supplies.
Non-isolated step-up design with wide input range
The non-isolated topology accepts a default input span of 10 to 32 volts and regulates the output voltage across the full adjustment range. Normal operation produces the required high voltage without additional isolation stages, keeping the circuit compact for bench use.
Replaces individual high-voltage supplies
Builders who previously assembled separate transformer-based units for each test voltage can consolidate to these adjustable modules. The jump is worthwhile when a single bench tool must cover multiple capacitor-charging or withstand-voltage scenarios from a low-voltage source.
Highlights
- Wide 8-32 V input range fits many DC sources
- Continuously adjustable 45-390 V output covers diverse high-voltage needs
- Default 50 V output works immediately without tuning
- Non-isolated step-up topology keeps the module compact
- Supports capacitor charging, glow tubes and withstand-voltage tests
Specifications
No published specifications for this item yet.
Questions about this item
How do I install the DC-DC boost converter and what step is often missed?
Connect an 8 to 32 volt DC source to the input terminals, then adjust the output trimmer to the required 45 to 390 volt level; the step often missed is verifying the input is at least 10 volts before powering the module.
What maintenance or replacement will the boost converter need later?
The module has no user-serviceable parts; if the output voltage drifts or the unit fails under load, replace the entire converter.
What limit appears first during sustained high-voltage operation?
The converter’s maximum continuous output is 390 volts; exceeding this level or drawing excessive current will trigger thermal shutdown first.
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