556: Difference between revisions

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<gallery>
<gallery>
Tek 556 trace.jpg
Tek 556 trace.jpg
File:556_front.JPG | Front panel of a 556
556_front.JPG | Front panel of a 556
File:Rm556.jpg | Front view of an RM556
Rm556.jpg | Front view of an RM556
File:Wellenkino 556.jpg
Wellenkino 556.jpg
Tek 556 rear2.jpg|Rear View
Tek 556 rear2.jpg|Rear View
File:Tek 556 rear.jpg | Rear view
Tek 556 rear.jpg | Rear view
File:Tek556-LT-AppNote49.jpg | 556 screen shot showing a total of six traces, two on one timebase and four on the other. From Jim Williams, Linear Technology Application Note #49
Tek556-LT-AppNote49.jpg | 556 screen shot showing a total of six traces, two on one timebase and four on the other. From Jim Williams, Linear Technology Application Note #49
Tek 556 two trace.jpg|Two beams making two traces
Tek 556 two trace.jpg|Two beams making two traces
Tek 556 two 1a1.jpg
Tek 556 two 1a1.jpg
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===Internal===
===Internal===
<gallery>
<gallery>
File:Rm556 trigboard.jpg | Trigger board contains two tunnel diodes and a reed relay
Rm556 trigboard.jpg | Trigger board contains two tunnel diodes and a reed relay
File:556-top.JPG | Top view
556-top.JPG | Top view
File:Rm556 top2.jpg | Top view of RM556
Rm556 top2.jpg | Top view of RM556
File:556-right.JPG | Right side view
556-right.JPG | Right side view
File:556_bottom.JPG | Bottom view
556_bottom.JPG | Bottom view
File:556_bottom2.JPG | Bottom view with power supply/calibrator/delay pickoff chassis swung out
556_bottom2.JPG | Bottom view with power supply/calibrator/delay pickoff chassis swung out
File:Rm556 output amp.jpg | Output amplifier driving deflection plates
Rm556 output amp.jpg | Output amplifier driving deflection plates
File:556_tube1.jpg | Neck of 556 CRT - the tube contains two electrically independent guns and vertical and horizontal deflection plates
556_tube1.jpg | Neck of 556 CRT - the tube contains two electrically independent guns and vertical and horizontal deflection plates
</gallery>
</gallery>
===Schematics===
===Schematics===
<gallery>
<gallery>
File:Tek 556 vert.png|Vertical amp schematic
Tek 556 vert.png|Vertical amp schematic
File:Tek 556 hvps.png|CRT Circuit
Tek 556 hvps.png|CRT Circuit
</gallery>
</gallery>



Revision as of 20:17, 13 January 2018

{{{manufacturer}}} 
50 MHz dual beam scope
Tektronix 556 front

Produced from 1966 to 1975

Manuals
(All manuals in PDF format unless noted otherwise)
Manuals – Specifications – Links – Pictures


The Tektronix 556 is a dual-beam scope, the successor to the Tektronix 555. It uses letter-series and 1-series plug-ins. A rack-mount version, the R556, also exists.

The 556, which is wider than the average 500-series scope, fits in the 205 cart.

The 556 was the last 500-series scope produced. It was present in the 1974 catalog, but gone in the 1975 catalog.

Dual-Beam Modes

The 556 is a true dual-beam scope and none of the signal path is shared between the two beams. Electrically speaking, the power supply and the calibrator are the only parts that are common to both beams. The 556 has almost complete left-right symmetry, corresponding to upper and lower beams.

Although the beams can be operated completely independently, the 556 provides many options for routing signals between the vertical plug-ins, triggers, sweeps, horizontal and vertical amplifiers. For example, a common use for a 556 is to view two simultaneous single-shot events, both sweeps being triggered by one of the traces. For this purpose, the 556 allows the output of one sweep generator to be routed to the horizontal amplifier of the other beam, so it drives both beams. Many other more sophisticated modes are also available.

Comparison with other scopes

Tektronix 555

The 556 is a one-piece unit whereas the 555 has the power supply in a separate box. Triggering and sweep circuitry is integrated into the 556 mainframe, as opposed to the removable timing units in the 555. The 556 takes two letter-series or 1-series vertical plug-ins. The 556's bandwidth is 50 MHz, whereas the 555's is 30.

The 555 and 556 both use separate HV transformers for the lower beam and upper beam voltages. In both models, the lower beam HV transformer produces the CRT anode voltage.

Tektronix 565

The 556 superficially resembles the 565, which is is also a dual-beam one-piece scope, but the 565 takes two 560-series vertical plug-ins and has much lower vertical and trigger bandwidth. Also, the 565 uses a single HV transformer to produce all CRT voltages, whereas the 556 uses two transformers. The 556 uses post-deflection acceleration; the 565 does not.

Internals

Triggering

The triggering in the 556 is done using tunnel diodes and the trigger circuit sits on its own small PC board just behind the trigger source selection switch.

Vertical Amplifiers

The vertical amplifier of the 556 is solid state except for the input cathode followers (12AT7) and and the output stage (8608).

CRT Circuit

The CRT circuit of the 556 uses two HV transformers. The lower beam transformer, T1301, produces:

  • CRT anode voltage: +8150 V
  • lower beam cathode voltage: -1850 V
  • lower beam control grid (blanking) voltage: varies, about -2000 V

The upper beam transformer, T1351, produces:

  • upper beam cathode voltage: -1850 V
  • upper beam control grid (blanking) voltage: varies, about -2000 V

The CRT in model 556 is the T5560.

Pictures

Internal

Schematics