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Evertron Neon Power Supplies

NeonCentral is proud to offer the indsutry-leading Evertron Electronic Power Supply exclusively through the website and the NeonCentral Distributor Network. Use an Evertron to replace an outdated core-and-coil transformer, a broken power supply, or for your custom neon projects.

Data Sheets | Identifying Model | Replacement Table | Determining Equivalent Rating


 

Data Sheets

PDF Format
Product Page
Specs
6kV, 21mA
10kV, 27mA
10kV, 27mA
Evertron 224
3.5kV, 18mA
Evertron 224 w/ Inline Switch
3.5kV, 18mA

 


 

Identifying Model
Below you will see an image of the back of an Evertron Power Supply. You can use this information to find the SERIES NUMBER or P/N you need on the website. After locating, you can go to the Power Supply Page to make your purchase.

 

 


 

Replacement Table
Table of older Evertron Power Supply models and their replacements.

OLD SERIES
OLD P/N
NEW SERIES
NEW P/ N
223
800-0011
224
800-0155/0156(sw)
1210 - 120V
800-0042
2610D
800-0126
3210 - 120V
800-0010
2610
800-0125
3210 - 230V
800-0022
3210C
800-0111
MP-10 - 120V
800-0087
2610D
800-0126
3210C - 120V
800-0097
2610
800-0125
3210C - 230V
800-0111
CALL*
Limited Supply
226 - 120V
800-0106
226H
800-0151
ALL OTHER
VARIOUS
CALL*
-----

 


 

Determining Equivalent Rating
Our rated output is, by UL mandate, the RMS value of the peak voltage. Most people, because of core and coil transformers, think about the rating in terms of the peak to peak value of perfect sine waves. Our actual waveform is taller and skinnier than a perfect sine wave so our actual peak to peak value is even higher. What this means is:

1) Ignore the "Rated Output" unless you are comparing against another UL2161 rated switching power supply.

2) The "Equivalent Sign Volts" from the datasheet can be compared to the amount of a load that a core and coil transformer of that size could drive.

Thus instead of a 224, 226H, and 2610 we really have a 22(3.5), 22(6.4), and a 26(10) unit. The example is that if we compare against a competitors 5020 unit, our 226H can do much better at 6.4kV "Equivalent Sign Volts" and 25mA. Our 226H provides 1400V more strike voltage to power neon and 5mA more current to power argon.

"Okay", you say, "but the 224 is not a 4kV unit if all it can do is 3.5kV Equivalent Sign Volts". Well as I slipped quietly into the explanation above, Our actual waveform is taller and skinnier than a perfect sine wave so our actual peak to peak value is even higher. The 224 waveform is even taller and skinnier than its cousins the 226H and 2610. In fact, on an oscilloscope, the 224 will produce 4.3-4.5kVpk-pk ... which means it can provide just over 4kV of strike voltage for neon and up to 18mA for argon ... so we call it a 224.

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