DF1: Difference between revisions

876 bytes added ,  6 December 2023
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|series=7D01
|series=7D01
|type=DF1
|type=DF1
|summary=Display Formatter
|summary=display formatter
|image=Tek df1 front.JPG
|image=Tek df1 front.JPG
|caption=DF1 front panel
|caption=DF1 front panel
|introduced=1977
|introduced=1976
|discontinued=1985
|discontinued=1985
|designers=Murlan Kaufman;Dave Lowry;Jeff Bradford;Ed Wolf
|manuals=
|manuals=
'''DF1'''
'''DF1'''
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* [[Media:070-2478-00.pdf|Tektronix DF2 Manual]] (OCR)  
* [[Media:070-2478-00.pdf|Tektronix DF2 Manual]] (OCR)  
* [[Media:Tek_DF1_DF2_Anleitung_Deutsch.pdf|Tektronix DF1/DF2 Anleitung]] (Operators Manual, German, OCR)
* [[Media:Tek_DF1_DF2_Anleitung_Deutsch.pdf|Tektronix DF1/DF2 Anleitung]] (Operators Manual, German, OCR)
<small>
'''Alternate copies'''
* [http://w140.com/smb/df1_sm.pdf Tektronix DF1 Manual] (OCR)
</small>


{{ROM Images}}
{{ROM Images}}
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The '''Tektronix DF2''', [[introduced in 1978]], is the same as the DF1 with the exception of an added front-panel "Menu" key and an additional ROM (on a daughter board) that supports GPIB and ASCII modes.   
The '''Tektronix DF2''', [[introduced in 1978]], is the same as the DF1 with the exception of an added front-panel "Menu" key and an additional ROM (on a daughter board) that supports GPIB and ASCII modes.   


The DF2 does not have a GPIB interface, it can only analyze external GPIB traffic.  For this purpose, a [[103-0209-00|103-0209-00 GPIB to probe comb adapter]] was supplied with the DF2.  This connects GPIB DIO1..DIO8 to CH8..CH15, DAV to the CLOCK input, ATN to CH7, EOI to CH6, SRQ to CH5, and REN to CH4.  GPIB signals DAV, NRFD, NDAC and IFC brought out to pins on the connector.  CH3..0 are user defined inputs that can track any of these signals, or others as needed.  For GPIB analysis, bus data is acquired synchronously using the negative-going edge of the GPIB DAV (Data Valid) line as an external clock.
The DF2 does not have a GPIB interface, it can only analyze external GPIB traffic.  For this purpose, a [[103-0209-00|103-0209-00 GPIB to probe comb adapter]] was supplied with the DF2, which connects GPIB DIO1..DIO8 to CH8..CH15, DAV to the CLOCK input, ATN to CH7, EOI to CH6, SRQ to CH5, and REN to CH4.  GPIB signals DAV, NRFD, NDAC and IFC brought out to pins on the connector.  CH3..0 are user defined inputs that can track any of these signals, or others as needed.  For GPIB analysis, bus data is acquired synchronously using the negative-going edge of the GPIB DAV (Data Valid) line as an external clock.


Project manager for the DF1/DF2 was [[Murlan Kaufman]].
From TekScope V.8 N.4 1976:
<blockquote>
Project manager for the DF1/DF2 was [[Murlan Kaufman]], with [[Dave Lowry]] and [[Jeff Bradford]] doing the electrical and software design, and [[Ed Wolfe]] doing mechanical design.
[[Roy Kaufman]] and [[Joe Gaudio]], Evaluation Engineers, and [[Dave McCullough]], Marketing Program Manager, also made valuable contributions.
Special thanks are due to [[Jack Lyngdal]] and [[Nick Colvin]], Manufacturing; [[Betty Spohn]], ECB; [[Jan Bowden]], Prototypes; and to everyone else who contributed to a a speedy, efficient completion of the project.
</blockquote>


{{BeginSpecs}}
{{BeginSpecs}}
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{{Spec | Reset output | Positive 100 μs pulse, ≤0.4 V / ≥2.4 V }}
{{Spec | Reset output | Positive 100 μs pulse, ≤0.4 V / ≥2.4 V }}
{{EndSpecs}}
{{EndSpecs}}
==Links==
{{Documents|Link=DF1}}


==Internals==
==Internals==
An internal jumper allows the user to select the source of the on-screen readout in timing diagram mode, which can be either the mainframe readout supplied by the 7D01, or superimposed by the DF1/DF2.  The latter is the standard setting and allows the DF1/DF2+7D01 combination to be used in mainframes without readout, e.g. the large-screen [[7603N]].
An internal jumper allows the user to select the source of the on-screen readout in timing diagram mode, which can be either the mainframe readout supplied by the 7D01, or superimposed by the DF1/DF2.  The latter is the standard setting and allows the DF1/DF2+7D01 combination to be used in mainframes without readout, e.g. the large-screen [[7603N]].


The DF1/DF2 has no direct connection to the scope mainframe, it attaches to the 7D01 through a 50-pin [[D-sub connector]] on the right side panel only.  The DF1/DF2 and 7D01 are mechanically coupled by three nylon standoffs that slide into cutouts in the 7D01's case rails. The bottom two standoffs are fixed and are inserted first, then the connector is plugged in and the third, sliding, stand-off at the top is moved to its locked position.
The DF1/DF2 has no direct connection to the scope mainframe it attaches to the 7D01 through a 50-pin [[D-sub connector]] on the right side panel only.  The DF1/DF2 and 7D01 are mechanically coupled by three nylon standoffs that slide into cutouts in the 7D01's case rails. The bottom two standoffs are fixed and are inserted first, then the connector is plugged in and the third, sliding, stand-off at the top is moved to its locked position.


The DF1/DF2 is built around a [[Motorola 6800]] microprocessor with two (DF2: three) 2K×8 masked ROMs and sixteen 1K×1 SRAMs ([[Intel 2102]]).  
The DF1/DF2 is built around a [[Motorola 6800]] microprocessor with two (DF2: three) 2K×8 masked ROMs and sixteen 1K×1 SRAMs ([[Intel 2102]]).  


The DF1, DF2 and 7D01 are often affected by [[bad TI IC sockets]], see [[7D01/Repairs|the Repairs tab]].
The DF1, DF2 and 7D01 are often affected by [[bad TI IC sockets]] and/or ROM failures, see [[7D01/Repairs|the Repairs tab]].


===Memory map===
===Memory map===
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|}
|}
</small>
</small>
==Links==
* Dave Lowry, Jeff Bradford: ''A display formatter — the indispensable tool for the data domain.'' In [[Media:Tekscope_1976_V8_N4_with_Supplement.pdf|TekScope Vol. 8 No. 4, Winter 1976]]
==Pictures==
==Pictures==


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Tek DF1 right 0670-4661-01.jpg                  | DF1 internal, right side
Tek DF1 right 0670-4661-01.jpg                  | DF1 internal, right side
Tek DF1 left 0670-4662-00 with ROMs removed.jpg | DF1 internal, left side, ROM chips removed from sockets
Tek DF1 left 0670-4662-00 with ROMs removed.jpg | DF1 internal, left side, ROM chips removed from sockets
Tek DF1 left with ROM adapter.jpg              | DF1 internal, left side, with ROM replacement piggyback (prototype) board
Tek DF1 left with ROM adapter.jpg              | DF1 internal, left side, with [[7D01/Repairs|ROM replacement piggyback board]] (prototype)  
Tek DF1 ROM piggyback PCB.jpg                  | ROM replacement piggyback (production) board
Tek DF1 ROM piggyback PCB.jpg                  | [[7D01/Repairs|ROM replacement piggyback board]] (production)  
Tek DF1 keyboard PCB.jpg                        | DF1 front with faceplate removed, showing keyboard PCB
Tek DF1 keyboard PCB.jpg                        | DF1 front with faceplate removed, showing keyboard PCB. Note three unpopulated key positions.


Tek df1 internal right.jpg
Tek df1 internal right.jpg
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DF2 display 04.jpg | Binary state table with reference
DF2 display 04.jpg | Binary state table with reference
DF2 display 05.jpg | DF2 GPIB table (random data)
DF2 display 05.jpg | DF2 GPIB table (random data)
DF2 display 06.jpg | DF2 ASCII table (16 bit mode in 2 columns). Note lowercase characters "o" is displayed as <O>.
DF2 display 06.jpg | DF2 ASCII table (16 bit mode in 2 columns). Note lowercase character "o" is displayed as <O>.
Tek_7D01-DF01_timing.jpg  | 7D01 + DF1/DF2 Timing Diagram (with DF1/DF2 readout)
Tek_7D01-DF01_timing.jpg  | 7D01 + DF1/DF2 Timing Diagram (with DF1/DF2 readout)
Tek_7D01-DF01_table.jpg    | 7D01 + DF1/DF2 State Table example - 8 bit mode, 7D01 table left with highlighted differences to DF1/DF2 reference table on the right
Tek_7D01-DF01_table.jpg    | 7D01 + DF1/DF2 State Table example - 8 bit mode, 7D01 table left with highlighted differences to DF1/DF2 reference table on the right
</gallery>
</gallery>


==Components==
{{Parts|DF1}}
{{Parts|DF2}}


[[Category:7000 series special-function plugins]]
[[Category:7000 series special-function plugins]]
[[Category:Logic analyzers]]
[[Category:Logic analyzers]]