Binaries, RS-232, and 9010 tapes
Has anyone succeeded in transferring program tapes that have binary data to head out the RS-232 port? Anyone have any idea HOW this should be possible? When I get my big pile (thirty or so) service tapes I thought it would be nice to back them up to a PC. And share the suckers as well. John :-#)# How to subscribe or unsubscribe from the list: To do either you send email to "MajorDomo@flippers.com" and in the body you state either "Subscribe techtoolslist" or "Unsubscribe techtoolslist", note that the Subject is "" (Blank)...
I haven't. Frederick Rice's compiler does support this but I don't know how. Isn't there a reference in one of the manuals on how to read compiled program code? Perhaps another option would be to monitor 1 9010A with a 2nd 9010A and see how the binary file is stored. (and you could use the Dumper program to extract the raw binary file). Keep us posted! Kev
Has anyone succeeded in transferring program tapes that have binary data to head out the RS-232 port? Anyone have any idea HOW this should be possible? When I get my big pile (thirty or so) service tapes I thought it would be nice to back them up to a PC. And share the suckers as well.
John :-#)#
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Attached is a frequency counter program to be used with the 9100 w/programmer option (display) -003 module & 20 pin dip clip. It reads & displays the 19 pins & frequency counts. The frequency counter is fairly stable (+/- 2) for a stable signal. This program may also be called by other programs but as of yet does not support variable passing. Any comments, questions, suggestions, enhancements appreciated! Kev program freq1 !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! ! ! freq1 ! ! Frequency counter for use with 20 pin dip clip in "A" location of ! parallel I/O module. ! ! This program will clearn the operator screen & print two options over ! function keys F1 & F2. TEST <F1> will prompt the operator to clip the ! 20 pin dip clip over the test chip & press the ready button. Once the ! ready button on the dip module is pressed a pin by pin read out of 1-19 is ! is printed to the PROGRAMMERS monitor screen. ! ! Quit <F2>. ! ! June 6, 2002 ! ! mowerman@erols.com ! !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! declare string ch numeric in_chan = 0 global numeric done global string clrln = "\1B[2K" global string ln1 = "\1B[1;1f" global string ln3 = "\1B[3;1f" global string autolnoff = "\1B[20l" global string cursoroff = "\1B[?25l" global string clr = "\1B[2J" global string rev = "\1B[0m\1B[7m" global string norm = "\1B[0m" end declare function freqread ch2 = open device "/term2", as "output" print "Clip IC with 20 pin clip on MOD A" dev = clip ("TEST",20) reset device dev threshold device dev, level "ttl" counter device dev, mode "freq" arm device dev readout device dev count1=count device dev, pin 1 count2=count device dev, pin 2 count3=count device dev, pin 3 count4=count device dev, pin 4 count5=count device dev, pin 5 count6=count device dev, pin 6 count7=count device dev, pin 7 count8=count device dev, pin 8 count9=count device dev, pin 9 count10=count device dev, pin 10 count11=count device dev, pin 11 count12=count device dev, pin 12 count13=count device dev, pin 13 count14=count device dev, pin 14 count15=count device dev, pin 15 count16=count device dev, pin 16 count17=count device dev, pin 17 count18=count device dev, pin 18 count19=count device dev, pin 19 print on ch2, "" print on ch2, "" print on ch2, "Freq pin 1 of Chip =",count1 print on ch2, "Freq pin 2 of Chip =",count2 print on ch2, "Freq pin 3 of Chip =",count3 print on ch2, "Freq pin 4 of Chip =",count4 print on ch2, "Freq pin 5 of Chip =",count5 print on ch2, "Freq pin 6 of Chip =",count6 print on ch2, "Freq pin 7 of Chip =",count7 print on ch2, "Freq pin 8 of Chip =",count8 print on ch2, "Freq pin 9 of Chip =",count9 print on ch2, "Freq pin 10 of Chip =",count10 print on ch2, "Freq pin 11 of Chip =",count11 print on ch2, "Freq pin 12 of Chip =",count12 print on ch2, "Freq pin 13 of Chip =",count13 print on ch2, "Freq pin 14 of Chip =",count14 print on ch2, "Freq pin 15 of Chip =",count15 print on ch2, "Freq pin 16 of Chip =",count16 print on ch2, "Freq pin 17 of Chip =",count17 print on ch2, "Freq pin 18 of Chip =",count18 print on ch2, "Freq pin 19 of Chip =",count19 print on ch2, "" print on ch2, "" close channel ch2 ! Close Monitor display wait time 2000 ! 4 second pause end freqread init_display = clr+autolnoff+cursoroff+ln1 in_chan = open device"/term1",as"input",mode "unbuffered" loop while poll(in_chan,"input")=1 input ch end loop done=0 loop until done > 0 print init_display print ln1+"20 pin Frequency test" print ln3+clrln+rev+" TEST "+norm+" "+rev+" QUIT "+norm input on in_chan, ch if ch = "\81" then freqread() else if ch ="\82" then done = 2 endif end loop end program
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participants (2)
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John Robertson -
Kev