5031: Difference between revisions
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{{Oscilloscope Sidebar | | {{Oscilloscope Sidebar | ||
|manufacturer=Tektronix | |||
summary=1 MHz | |series=5030 | ||
image=Tek-5031-front.jpg | | |model=5031 | ||
caption=Tektronix 5031 front view | | |summary=1 MHz diff-input dual-beam storage scope | ||
introduced=1969 | | |image=Tek-5031-front.jpg | ||
discontinued=1972 | | |caption=Tektronix 5031 front view | ||
manuals= | |introduced=1969 | ||
* [ | |discontinued=1972 | ||
* [[Media:Tek 5030 5031 from Catalog 1970.pdf|Models 5030/5031 in 1970 catalog | |designers=Val Garuts | ||
|manuals= | |||
* [[Media:070-1005-00.pdf|Tektronix R5031 Manual]] | |||
* [[Media:Tek 5030 5031 from Catalog 1970.pdf|Models 5030/5031 in 1970 catalog]] | |||
* [[Media:Tek 5031 eis signature page.pdf|Tek 5031 Engineering Instrument Specification Signature Page]] | |||
}} | }} | ||
The '''Tektronix 5031''' is a dual-beam split-screen, bi-stable storage oscilloscope introduced in 1969 (no longer listed in the 1973 catalog). There is a portable benchtop model, the 5031, and a rack-mount model, the R5031, as well as a sister model [[5030]]/R5030 without storage. The 503x series are monolithic scopes (no plugins). | The '''Tektronix 5031''' is a dual-beam split-screen, bi-stable storage oscilloscope introduced in 1969 (no longer listed in the 1973 catalog). There is a portable benchtop model, the 5031, and a rack-mount model, the R5031, as well as a sister model [[5030]]/R5030 without storage. The 503x series are monolithic scopes (no plugins). | ||
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{{Spec | Noise | < 15 μV / 200 μA }} | {{Spec | Noise | < 15 μV / 200 μA }} | ||
{{Spec | Input impedance | 1 MΩ // 50 pF }} | {{Spec | Input impedance | 1 MΩ // 50 pF }} | ||
{{Spec | Time base | 1 μs/Div to 5 s/Div ( | {{Spec | Time base | 1 μs/Div to 5 s/Div (1–2–5), magnifier × 1, 2, 5, 10, 20, 50 (1 μs/Div max.)}} | ||
{{Spec | CMRR | 100,000:1 to 100 kHz }} | {{Spec | CMRR | 100,000:1 to 100 kHz }} | ||
{{Spec | X input | 20 mV/Div to 500 mV/Div on Ext Horizontal, or Channel 2 in X-Y mode}} | {{Spec | X input | 20 mV/Div to 500 mV/Div on Ext Horizontal, or Channel 2 in X-Y mode}} | ||
{{Spec | CRT | 8 × 10 Div @ 1.27 cm (0.5"), P31 phosphor }} | {{Spec | CRT | 8 × 10 Div @ 1.27 cm (0.5"), P31 phosphor }} | ||
{{Spec | Acceleration | 4 kV }} | {{Spec | Acceleration voltage | 4 kV }} | ||
{{EndSpecs}} | {{EndSpecs}} | ||
==Links== | ==Links== | ||
* http://www.eevblog.com/forum/testgear/vintage-tektronix-oscilloscope/ | * http://www.eevblog.com/forum/testgear/vintage-tektronix-oscilloscope/ | ||
{{Documents|Link=5031}} | |||
{{Documents|Link=R5031}} | |||
{{PatentLinks|5031}} | |||
==Internals== | ==Internals== | ||
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Tek r5031 3.jpg|R5031 Rear | Tek r5031 3.jpg|R5031 Rear | ||
</gallery> | </gallery> | ||
==Components== | |||
{{Parts|5031}} | |||
[[Category:5030 series scopes]] | [[Category:5030 series scopes]] | ||
[[Category:Analog storage scopes]] | [[Category:Analog storage scopes]] | ||
[[Category:Dual beam scopes]] | [[Category:Dual beam scopes]] |
Latest revision as of 00:07, 18 June 2024
The Tektronix 5031 is a dual-beam split-screen, bi-stable storage oscilloscope introduced in 1969 (no longer listed in the 1973 catalog). There is a portable benchtop model, the 5031, and a rack-mount model, the R5031, as well as a sister model 5030/R5030 without storage. The 503x series are monolithic scopes (no plugins).
The 5030 and 5031 feature differential and current probe (for P6021) inputs on both channels. Input ranges are similar to the contemporary 3A9 diff/current amplifier plugin but without the variable bandwidth and DC offset controls. The horizontal deflection system is shared.
The 5031/5030 include a readout system which uses small lightbulb/fiber dot matrix displays external to the CRT, similar to that in the 576 curve tracer. Only the first and last steps on the time/div and volts/div switches are labelled.
Key Specifications
Bandwidth | DC to 1 MHz (5 kHz limit switchable) |
---|---|
Deflection | 10 μV/Div to 10 V/Div or 1 mA/Div to 200 mA/Div (1—2—5) |
Noise | < 15 μV / 200 μA |
Input impedance | 1 MΩ // 50 pF |
Time base | 1 μs/Div to 5 s/Div (1–2–5), magnifier × 1, 2, 5, 10, 20, 50 (1 μs/Div max.) |
CMRR | 100,000:1 to 100 kHz |
X input | 20 mV/Div to 500 mV/Div on Ext Horizontal, or Channel 2 in X-Y mode |
CRT | 8 × 10 Div @ 1.27 cm (0.5"), P31 phosphor |
Acceleration voltage | 4 kV |
Links
Documents Referencing 5031
Document | Class | Title | Authors | Year | Links |
---|---|---|---|---|---|
Tekscope 1970 V2 N2 Apr 1970.pdf | Article | A Dual-beam Family | 1970 | 5030 • R5030 • 5031 • R5031 • C-70 |
Documents Referencing R5031
Document | Class | Title | Authors | Year | Links |
---|---|---|---|---|---|
Tekscope 1970 V2 N2 Apr 1970.pdf | Article | A Dual-beam Family | 1970 | 5030 • R5030 • 5031 • R5031 • C-70 |
Patents that may apply to 5031
Page | Title | Inventors | Filing date | Grant date | Links |
---|---|---|---|---|---|
Patent US 3453403A | Power selection device | Eldon Hoffman | 1966-08-18 | 1969-07-01 | 115 • 140 • 141 • 141A • 144 • 145 • 146 • 147 • 148 • 149 • 149A • 230 • 284 • 286 • 453 • 454 • 491 • 520A • 521A • 522 • 545B • 547 • 556 • 561B • 564B • 568 • 576 • 611 • 647A • 2101 • 2601 • 5030 • R5030 • 5031 • R5031 • 7503 • 7504 • 7704 • 7704A • 7904 • R7903 |
Patent US 3618130A | High efficiency regulated oscillator circuit having a substantially sinusoidal waveform | Val Garuts | 1969-07-28 | 1971-11-02 | 5030 • 5031 |
Internals
The channel-1 and channel-2 input attenuators use a rotary barrel cam that moves several small contact arms to select the desired path through the attenuator networks.
The design is similar to that seen in several 7000-series plug-ins. The front-end amplifier starts with a differential amplifier formed by both halves of a 151-1027-00 dual JFET, Q46, followed by a dual PNP. The rest of the signal path comprises differential amplifiers made of discrete BJTs, including the deflection amplifier, which uses SE7056 transistors for its output stage.
The 5031 makes extensive use of relays in the signal path.
The 5031 has −4.1 kV on the CRT cathode, and no post-deflection acceleration. The 5031 uses a T7020 CRT.
Pictures
5031
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Tektronix 5031
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Left view
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Right view
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Display detail (1)
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Display detail (2)
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Display detail (3)
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Detail of fiberoptic readout module
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Bottom view (1)
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Bottom view (2)
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Bottom view (3)
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Tektronix 5031 and TDS2014
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5031 trace
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5031 right internal
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5031 left internal
R5031
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R5031 Front
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R5031 Front Controls
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R5031 Rear