Vox Conqueror and Dynamic Bass
Power Supply and Power Amp Module
"Under the Hood"



2_Footer
© 1996 - 2023 The Vox Showroom, all rights reserved. No use on online auctions, eBay or Reverb.

The Early Perils of Solid State Amps at JMI
Jennings Musical Industries (JMI), the UK manufacturer of Vox, introduced their first solid state amplifier, the T.60, in 1962. Lightweight, compact and powerful, the T.60 bass head (seen directly below) was even briefly adopted by Paul McCartney of the Beatles.

It didn't take long for JMI to notice that far too many germanium output transistors were failing in the power amp stage of the T.60. JMI discovered that the T.60 output transistors were prone to go into "high frequency oscillation." Simply stated, the output stage of the amp developed a very high pitched squeal beyond the range of human hearing. This oscillation drove the transistors past their safe operating range, causing them to overheat and fail. The T.60 went through several design revisions attempting to address this problem to no avail. Due to this unresolved issue, the T.60 head was discontinued in 1965. JMI would be reluctant to produce another solid state amplifier.


Meanwhile, Thomas Organ in America had started to design and build their own Vox amp designs. Thomas Organ was a proponent of solid state modular amp construction using printed circuit boards. Using this philosophy, Thomas designed a three channel transistorized modular preamp chassis for guitar and a second two channel transistorized modular preamp chassis for bass.

Thomas Organ then developed 30, 60 and 120 watt modular solid state power amps that would connect interchangeably with either the guitar or bass preamp via a nine pin connector. The Super Beatle, Royal Guardsman, Buckingham, Viscount, Sovereign, Westminster and Scorpion amplifiers were all constructed using combinations of these preamp and power amp modules. The 120 watt power amp module from the Super Beatle, V1182 Westminster and Churchill PA is shown at left.

In October 1965, JMI lead engineer Dick Denney visited the Thomas Organ Labs in California to witness first hand the new Thomas Vox solid state amp designs. As a result of his observations, Denney was sold on the benefits of a modular solid state preamp/control section. Due to transistorization, Thomas Organ was able to include an incredible number of effects in their solid state preamp/control section. The circuitry generated little to no heat and required very little current to operate.

However, the engineers at JMI remained skeptical about the dependability of solid state power amplifiers. The memories of the T.60 were just too fresh in their minds. JMI delayed the introduction of another solid state power amp section for a year by first introducing the "UL Series" hybrid amps in 1966. The UL models for guitar had a modular dual channel, solid state preamp that featured reverb, tremolo and distortion. EL84 or KT88 tubes powered the output stages. A Vox UL730 guitar head is pictured at right.

The UL amps became the stepping stones between the tube models Jennings produced through 1965 and the modular, all solid state amplifiers introduced in the April 1967 JMI price list.

JMI Vox Goes Solid State
Following the lead of Thomas Organ in America, JMI introduced new totally solid state Vox amps in their 1967 product catalog. Additionally, JMI also produced an eight page pamphlet entitled "Why We Use New Silicon Transistors in Vox Solid State Amplifiers" in support of this new product line.

30 Watt Power Amp Circuit
A 2N3054 NPN transistor (TR15), mounted to the chassis pan, powered the power amp driver stage to increase the level of the audio signal coming from the preamp module. The output from the power amp driver stage was then sent to an interstage transformer.

The interstage transformer served two purposes. It served primarily as a "phase splitter," dividing the audio waveform into positive and negative conponents to drive the "push-pull" amplifier output stage. Secondarily, driving the output transistors with a interstage transformer that made them virtually immune to failure casued by voltage spikes coming from the preamp. The 30 watt "push-pull" output stage used acpair of 2N3055 output transistors (TR16 and TR17, see diagram at top of page).

Power Supply Circuit
The power supply circuitry was also located in the power amplifier chassis. The power supply converted the local mains AC voltage from the wall socket to the internal DC voltages needed to operate the amp.

The primary side of the power transformer (T1) connected to the local AC wall current. The primary winding had 245, 225, 205, 160 and 120 VAC taps. These taps connected to the rotary mains voltage selector to choose the correct local AC voltage.

The secondary side of the power transformer had two windings. The first winding was rated at 28 VAC and 1.8 amps. Four 10D2 diodes (see photo at right) and a pair of 2500 uf capacitors (C64 and C65, see diagram above) converted the 28 VAC output from the transformer to ~44 VDC to power the preamp and power amp driver circuits.

The second power transformer winding was rated at 6 VAC and 0.3 amps and supplied the indicator power and standby lamps.

The preamp octal socket, mounted on the power amplifier chassis, received a hard wired cable with an eight pin plug from the preamp module. This socket supplied the 33VDC operating voltage for the preamp on pin 1, chassis ground on pin 8, audio signals on pin 3 and connections for the indicator lamps on pins 5, 6 and 7.


The input recepticle for AC mains power cord was located on the rear control panel of the power amp/power supply module. I can no longer suggest a source for these unique plugs or recepticles, I do not believe these are still in production.

A rotary mains voltage selector, also mounted on the rear control panel of the power amp/power supply module, allowed the Vox Conqueror or Dynamic Bass amplifiers to be adjusted to the proper AC voltage for most countries.

Chassis
The 30 watt modular power amplifier/power supply module was constructed on a two piece chassis.

The chassis pan (see photo at top of page) was a rectangular five sided stamped steel structure measuring ~21w" x ~4½" x ~2t." Finished in either a passivated (yellow) finish or in zinc plating, the chassis pan supported the transformers, power supply and power amp driver circuits. Four threaded inserts on the bottom of the chassis pan provided attachment points to secure it to the head cabinet.

To accommodate the added size of the power transformer, the chassis pan for the 100 watt module was 1¼" deeper than the 4½" deep chassis pan found on the 50, 35 and 20 watt solid state modules (see photo at right).

The second member of the chassis was the heat sink support (see photo at top of page). Finished in zinc plating, the steel heat sink support was a "sub-modular" assembly, mounting either two or four finned power amp heat sinks. The 100 watt Supreme and Super Foundation design required four power amp heat sinks (see photo above), but the 50 watt Defiant and Foundation Bass, the 35 watt Conqueror and Dynamic Bass and the 20 watt Virtuoso required only two.

The steel heat sink support bolted to the top of the chassis pan and was further supported by a pair of diagonal steel braces.




3_Footer




The VOX Showroom!


Photos and editorial content courtesy Gary Hahlbeck, North Coast Music


Any and all material presented herein is protected by Copyright.
© 1998 - 2023 The Vox Showroom and North Coast Music, all rights reserved

The images and editorial content in this web site may not be copied or reproduced
in online auction sites such as eBay, Reverb and Craig's List. Sellers may provide a link
to the Vox Showroom web site if they wish to refer to this copyrighted material.


URL: http://www.voxshowroom.com/uk/SS_30W_power_amp_hood.html