• GZLOZONE HIFI 100VA Ultra Low Noise LPS HI-END 100W Linear Power Supply For Audio DC 5V-24V
  • GZLOZONE HIFI 100VA Ultra Low Noise LPS HI-END 100W Linear Power Supply For Audio DC 5V-24V
  • GZLOZONE HIFI 100VA Ultra Low Noise LPS HI-END 100W Linear Power Supply For Audio DC 5V-24V
  • GZLOZONE HIFI 100VA Ultra Low Noise LPS HI-END 100W Linear Power Supply For Audio DC 5V-24V
  • GZLOZONE HIFI 100VA Ultra Low Noise LPS HI-END 100W Linear Power Supply For Audio DC 5V-24V
  • GZLOZONE HIFI 100VA Ultra Low Noise LPS HI-END 100W Linear Power Supply For Audio DC 5V-24V
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  • GZLOZONE HIFI 100VA Ultra Low Noise LPS HI-END 100W Linear Power Supply For Audio DC 5V-24V
  • GZLOZONE HIFI 100VA Ultra Low Noise LPS HI-END 100W Linear Power Supply For Audio DC 5V-24V
  • GZLOZONE HIFI 100VA Ultra Low Noise LPS HI-END 100W Linear Power Supply For Audio DC 5V-24V
  • GZLOZONE HIFI 100VA Ultra Low Noise LPS HI-END 100W Linear Power Supply For Audio DC 5V-24V
  • GZLOZONE HIFI 100VA Ultra Low Noise LPS HI-END 100W Linear Power Supply For Audio DC 5V-24V
  • GZLOZONE HIFI 100VA Ultra Low Noise LPS HI-END 100W Linear Power Supply For Audio DC 5V-24V

GZLOZONE HIFI 100VA Ultra Low Noise LPS HI-END 100W Linear Power Supply For Audio DC 5V-24V

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$130.00 $104.00
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  • Input voltage:
    AC115V
    AC230V
  • Output voltage:
    DC5V
    DC9V
    DC12V
    DC15V
    DC18V
    DC19V
    DC24V
    custom-make voltage
    Please select the information you wantX
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  • Description
 

HIFI 100VA Ultra Low Noise LPS HI-END 100W Linear Power Supply For Audio DC 5V-24V

 

 

 

 

Input voltage: AC 115V or 230V (for choose)
Output voltage: DC 5V/12V/15V/18V/19V/24V (For choose)

Dimensions: 210mm Width X 70mm high X 257mm deep
Transformer Power : 100VA
Weight: about 4.5kg
DC cable Power Polarity: inner"+" external"-"
DC Head Size: Outer diameter 5.5mm, internal diameter 2.1mm ( if you need other Size DC head, Please contact us)



Package include:
Finished linear Power supply X 1
1.2M output DC cable X 1 (5.5*2.1mm)

Default is not include the AC input cable.


Output voltage / current)

1. 5V /6A

2. 9V /5.7A

3. 12V /5.5A

4. 15V /5.3A

5. 18V /4.4A

6. 19V /4.2A

7. 24V /3.3A

 

We can accept custom-make all kinds of voltage.if you need, Please contact us.


 

Technical highlights

All-discrete topology.

Single-pass, series regulator design.
No IC (integrated circuits) are used. This allows complete design control over all operating points and parameters for superior performance.
Low noise, high PSRR

A constant-current source feeds a zener diode as a stable voltage reference. A low-pass filter (with a corner frequency of 1.6Hz) prevents zener noise from being introduced into the error amplifier. This is an effective yet lower-cost alternative to expensive voltage reference ICs. The low-pass filter also provides a soft-start characteristic.
The output noise (unloaded) is less than 13µV at 24VDC output (measured using a Tangent LNMP (low-noise measurement preamplifier) and a Fluke 187 50000-count DMM in ACmV mode). The output noise is even less when the output voltage is lower. This is much better than the noise of an IC regulator based PSU tested under identical conditions.
The error amplifier is a discrete implementation of an opamp with a high open-loop gain of 102.5dB. The voltage supply to the error amplifier is isolated with capacitance multipliers to boost its PSRR (power supply rejection ratio). This greatly improves the line regulation performance of the PSU.
A long-tailed pair differential amplifier with current mirror and constant current source forms the first stage of the error amplifier. The second stage is the voltage amplification stage (VAS), also with constant current source load. The 3rd stage is comprised of the power MOSFET output devices configured as a source follower.

High-current MOSFET pass transistors

Two paralleled high-current, highly reliable MOSFETs (rated at 18A each) serve as the "pass" transistor.
The high current rating provides a very high safety headroom against overcurrent damage.
The use of paralleled MOSFETs divides the heat dissipation, simplifying thermal management. Onboard heatsinks can be used which would allow the this PSU to supply up to 1A continuous (with much higher peak currents). More sustained currents are possible by using larger, offboard heatsinks.
The negative temperature coefficient of MOSFETs prevents damaging thermal-runaway conditions that may plague conventional BJT devices.
No current-limiting.





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