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ANTIC Interview 441 - Nick Kennedy, Atari Morse Code Keyer

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Manage episode 446876687 series 28049
Contenu fourni par Randy Kindig, Kay Savetz, Brad Arnold, Randy Kindig, Kay Savetz, and Brad Arnold. Tout le contenu du podcast, y compris les épisodes, les graphiques et les descriptions de podcast, est téléchargé et fourni directement par Randy Kindig, Kay Savetz, Brad Arnold, Randy Kindig, Kay Savetz, and Brad Arnold ou son partenaire de plateforme de podcast. Si vous pensez que quelqu'un utilise votre œuvre protégée sans votre autorisation, vous pouvez suivre le processus décrit ici https://fr.player.fm/legal.
Nick Kennedy, Atari Morse Code Keyer I was adding a batch of ham radio newsletters to the Internet Archive's Digital Library of Amateur Radio And Communications, and I noticed the word "Atari" on one of the pages. In the September 2019 issue of Solid Copy, the newsletter of The CW Operators Club, Nick Kennedy had written: "Few hams who are both CW [morse code] enthusiasts and programmers of microcontrollers have been able to resist trying their hand at a keyer or two. I’ve done several in the past 30+ years, starting with one for the 6502 in an Atari 800 and on through PICs, AVRs and now...the Arduino." So I contacted Nick, amateur radio call sign WA5BDU, to find out what his Atari project was all about. First, a tiny bit of ham radio background: Morse code, that language of dots and dashes, can be sent over the radio waves using a Morse code key. Even if you know nothing about ham radio, I bet you picture a basic Morse code key: when tap the little lever, it makes an electrical connection that makes a sound. That's called a straight key. Avid Morse code enthusiasts may prefer a fancier "paddle" key: with two levers, one for short beeps and one for longer ones. A keyer is a device that is connected between the paddle key and the radio: it allows the sender to control timing of the transmitted signals, and other factors. Nick's software, WA5BDU Computer Keyer, turned his Atari computer into a keyer. He wired his Morse code paddle and his ham radio to joystick port 2. As he sent a message using his paddle, the Atari interpreted the signal, adjusted it as necessary, displayed the outgoing message on the screen, and sent the signal to the radio. Or, Nick could simply type on the Atari's keyboard to send Morse code messages, skipping the paddle key altogether. Nick sent me the keyer program and source code — as well as a packet radio terminal program that he wrote, and a tank game written by his brother. Check the show notes for links to all of those. Our interview took place on January 21, 2023. Video version of this interview Keyer software and source code at Internet Archive Ham Terminal software (with source code) at Internet Archive Various amateur radio software for for Atari 8-bit Nick interviewed by the QSO Today podcast in 2015 Nick's keyer article in Solid Copy Nick's web site Ad Astra magazine Pat Kennedy's tank game Digital Library of Amateur Radio & Communications Support Kay's interviews on Patreon
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557 episodes

Artwork
iconPartager
 
Manage episode 446876687 series 28049
Contenu fourni par Randy Kindig, Kay Savetz, Brad Arnold, Randy Kindig, Kay Savetz, and Brad Arnold. Tout le contenu du podcast, y compris les épisodes, les graphiques et les descriptions de podcast, est téléchargé et fourni directement par Randy Kindig, Kay Savetz, Brad Arnold, Randy Kindig, Kay Savetz, and Brad Arnold ou son partenaire de plateforme de podcast. Si vous pensez que quelqu'un utilise votre œuvre protégée sans votre autorisation, vous pouvez suivre le processus décrit ici https://fr.player.fm/legal.
Nick Kennedy, Atari Morse Code Keyer I was adding a batch of ham radio newsletters to the Internet Archive's Digital Library of Amateur Radio And Communications, and I noticed the word "Atari" on one of the pages. In the September 2019 issue of Solid Copy, the newsletter of The CW Operators Club, Nick Kennedy had written: "Few hams who are both CW [morse code] enthusiasts and programmers of microcontrollers have been able to resist trying their hand at a keyer or two. I’ve done several in the past 30+ years, starting with one for the 6502 in an Atari 800 and on through PICs, AVRs and now...the Arduino." So I contacted Nick, amateur radio call sign WA5BDU, to find out what his Atari project was all about. First, a tiny bit of ham radio background: Morse code, that language of dots and dashes, can be sent over the radio waves using a Morse code key. Even if you know nothing about ham radio, I bet you picture a basic Morse code key: when tap the little lever, it makes an electrical connection that makes a sound. That's called a straight key. Avid Morse code enthusiasts may prefer a fancier "paddle" key: with two levers, one for short beeps and one for longer ones. A keyer is a device that is connected between the paddle key and the radio: it allows the sender to control timing of the transmitted signals, and other factors. Nick's software, WA5BDU Computer Keyer, turned his Atari computer into a keyer. He wired his Morse code paddle and his ham radio to joystick port 2. As he sent a message using his paddle, the Atari interpreted the signal, adjusted it as necessary, displayed the outgoing message on the screen, and sent the signal to the radio. Or, Nick could simply type on the Atari's keyboard to send Morse code messages, skipping the paddle key altogether. Nick sent me the keyer program and source code — as well as a packet radio terminal program that he wrote, and a tank game written by his brother. Check the show notes for links to all of those. Our interview took place on January 21, 2023. Video version of this interview Keyer software and source code at Internet Archive Ham Terminal software (with source code) at Internet Archive Various amateur radio software for for Atari 8-bit Nick interviewed by the QSO Today podcast in 2015 Nick's keyer article in Solid Copy Nick's web site Ad Astra magazine Pat Kennedy's tank game Digital Library of Amateur Radio & Communications Support Kay's interviews on Patreon
  continue reading

557 episodes

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