Voltage Doubler and Tripler Circuit

Voltage Doubler and Tripler Circuit

Product Details:

  • Usage Voltage amplification for laboratory, hobbyist, or educational kits
  • Power Depends on input, typically up to 10W
  • Voltage Doubler: Input x 2, Tripler: Input x 3; e.g., 12V in = 24V (Doubler), 36V (Tripler) DC output
  • Display No display (LED indicator optional)
  • Product Type Electronic Circuit Module
  • Material FR4 PCB base, copper traces, silicon diodes, electrolytic capacitors
  • Design Discrete component voltage multiplier circuit
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Voltage Doubler and Tripler Circuit Price And Quantity

  • 1 Unit
  • Through-hole or PCB mount
  • 6V to 24V AC (typical), or equivalent DC
  • Two (doubler) or three (tripler)
  • 1.6 mm standard
  • Approximately 100mA (varies with design and input voltage)
  • Screw terminals or solder pads
  • 0°C to 70°C
  • Full-wave voltage multiplier
  • 50 Hz to 1 kHz (AC input recommended)
  • Depends on load and capacitance, typically 1-3Vpp at full load
  • 55-65% (subject to load and capacitor quality)

Voltage Doubler and Tripler Circuit Product Specifications

  • Not applicable (passive electrical circuit)
  • FR4 PCB base, copper traces, silicon diodes, electrolytic capacitors
  • 35 grams
  • Electronic Circuit Module
  • Depends on input, typically up to 10W
  • External AC or unrectified DC supply
  • Voltage amplification for laboratory, hobbyist, or educational kits
  • Discrete component voltage multiplier circuit
  • 2% (typical, depends on component tolerances)
  • 85 mm x 45 mm x 20 mm
  • No display (LED indicator optional)
  • Doubler: Input x 2, Tripler: Input x 3; e.g., 12V in = 24V (Doubler), 36V (Tripler) DC output
  • Instantaneous upon supply, depends on load and input frequency
  • Through-hole or PCB mount
  • 6V to 24V AC (typical), or equivalent DC
  • Two (doubler) or three (tripler)
  • 1.6 mm standard
  • Approximately 100mA (varies with design and input voltage)
  • Screw terminals or solder pads
  • 0°C to 70°C
  • Full-wave voltage multiplier
  • 50 Hz to 1 kHz (AC input recommended)
  • Depends on load and capacitance, typically 1-3Vpp at full load
  • 55-65% (subject to load and capacitor quality)

Voltage Doubler and Tripler Circuit Trade Information

  • 5 Unit Per Week
  • 4-5 Days
  • Australia, South America, Eastern Europe, Western Europe, Middle East, Africa, Central America, Asia
  • All India

Product Description

Voltage Doubler & Tripler Circuit (AE 248 )

Objective : To study Voltage multiplication using Diodes, Resistances & Capacitors.

Features : Instrument comprises of AC Power Supply with Output selectable using band switch, Circuit diagram of Doubler and Tripler Printed & Components mounted on the front panel.



Reliable Voltage Multiplication for Versatile Use

This voltage doubler and tripler offers dependable performance for voltage amplification tasks. It accommodates a broad AC (or DC) input voltage range, supports a frequency up to 1kHz, and works instantly upon supply connection. Its robust FR4 PCB base, copper traces, and discrete silicon diodes assure consistent operation in various laboratory and experimental settings.


Simple Integration and Flexible Mounting

Designed for ease of use, the circuit features screw terminals or solder pads for straightforward wiring. Through-hole or PCB mounting options allow for seamless incorporation into custom projects, educational kits, or test benches. The compact size makes it suitable for space-constrained applications without sacrificing current capacity.

FAQs of Voltage Doubler and Tripler Circuit:


Q: How does the voltage doubler and tripler circuit operate?

A: The circuit utilizes a full-wave voltage multiplier configuration with two or three stages, employing diodes and capacitors to successively increase the peak voltage at each stage. Depending on the number of stages, it can output two or three times the input voltage. The design is passive and functions upon applying an appropriate input supply.

Q: What types of input power can this circuit accept?

A: The circuit operates on AC input voltages between 6V and 24V at frequencies from 50 Hz to 1 kHz, or on equivalent unrectified DC. For optimal performance and maximum output, AC input is recommended.

Q: When is it beneficial to use a voltage doubler or tripler circuit?

A: These circuits are valuable when a higher DC voltage is required but only a lower-voltage AC or DC supply is available. They are commonly used in educational demonstrations, laboratory experiments, and hobby projects where compactness and simplicity are prioritized.

Q: Where can this module be mounted or installed?

A: The module supports installation on standard PCBs using through-hole pins or on flat surfaces with screw terminals for wiring. Its versatile mounting and compact dimensions make it adaptable for various prototyping or permanent setups.

Q: What is the maximum current and efficiency of the circuit?

A: The maximum output current is approximately 100mA, but this depends on design, input voltage, and load. Efficiency typically ranges from 55% to 65%, influenced by the quality of the capacitors and actual load conditions.

Q: How can output ripple be minimized?

A: Output ripple mainly depends on the load and the capacitance values used. To reduce ripple, select high-quality electrolytic capacitors with higher capacitance ratings compatible with the desired output voltage and load.

Q: What are the main benefits of this voltage multiplier module?

A: Its principal advantages are compact design, straightforward integration, reliable voltage multiplication for a range of applications, and ease of use. Its suitable for anyone needing a higher DC voltage without complex circuitry or large transformers.

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