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Multiple secondary windings feeds diodes for rectification for different voltages. Both center-tap and bridge configuration is used. Its a all Tube design for the regulation. There are multiple 6.3V secondary outputs for heaters, many elevated to different voltage levels based on the section/tube its used for to keep the Heater-Cathode voltage level within limits. | Multiple secondary windings feeds diodes for rectification for different voltages. Both center-tap and bridge configuration is used. Its a all Tube design for the regulation. There are multiple 6.3V secondary outputs for heaters, many elevated to different voltage levels based on the section/tube its used for to keep the Heater-Cathode voltage level within limits. | ||
As is common in many Tektronix scopes, all regulated voltages are referred to the negative regulated rail (−150 V in this case) by fixed low-tolerance dividers. Only the −150 V voltage is trimmed, its reference is a OG3 VR tube. A 12AX7 is used as the comparator, two 6CW5 in parallel are used as series pass tubes. A 6AU6 is used as an error amplifier. | As is common in many Tektronix scopes, all regulated voltages are referred to the negative regulated rail (−150 V in this case) by fixed low-tolerance dividers. Only the −150 V voltage is trimmed, its reference is a [[OG3]] VR tube. A [[12AX7]] is used as the comparator, two [[6CW5]] in parallel are used as series pass tubes. A [[6AU6]] is used as an error amplifier. | ||
Most other stages replicate the same design, except slight changes in tubes used − the , +225 V and +100 V regulators employ a 6080 as the pass element, +350 uses a 6CW5 - and reference for them is the -150V | Most other stages replicate the same design, except slight changes in tubes used − the , +225 V and +100 V regulators employ a [[6080]] as the pass element, +350 uses a [[6CW5]] - and reference for them is the -150V | ||
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