{"author_link":"\/users\/cptn-b","author_name":"CPTN-B","author_uid":"cptn-b","comments":[],"epoch":1587926548,"event":"LD46","format":"md","ldjam_node_id":208416,"likes":3,"metadata":{"p_key":"145216","p_author":"CPTN-B","p_authorkey":"1026326","p_urlkey":"361629","p_title":"Another example of propagation delay of logic gates","p_cat":"LDJam ","p_event":"LD46","p_time":"1587926548","p_likes":"3","p_comments":"0","p_status":"WAYBACK","us_key":"1026326","us_name":"CPTN-B","us_username":"cptn-b","event_start":"1587081600","event_key":"77","event_name":"Ludum Dare 46"},"node":{"_collation":{"body_sanitizer":"TextUtils::SanitizeHTML via existing importer","event":"LD46","removed_author":false},"_superparent":176557,"_trust":1,"author":26326,"body":"![logic_eye.gif](\/\/\/raw\/6d6\/6\/z\/33586.gif)\n\nFocus on the NOT-gate. The Eye of Logic is commanding you!!!\n\nThis is what would theoreticaly happen if you connect gates in a circle. The input signal would propagate infinitely through the circuit. In reality an infinite propagation wouldn't happen, because every conductor has its own resistance which would weaken the signal every time it is passed from gate to gate. After a certain amount of times the signal would disappear because it lost too much energy (only, of course, if the gates don't have additional power sources^^).\n\nCheck out my first entry on gate delay: https:\/\/ldjam.com\/events\/ludum-dare\/46\/tyson-lee-keep-it-alive-edition\/input-signal-propagating-through-a-series-of-and-gates\n\nCome tinker and play at: https:\/\/ldjam.com\/events\/ludum-dare\/46\/tyson-lee-keep-it-alive-edition\n\n","comments":0,"created":"2020-04-26T18:30:54Z","files":[],"files-timestamp":0,"id":208416,"love":3,"love-timestamp":"2020-04-26T20:05:03Z","meta":[],"modified":"2020-04-26T20:05:03Z","name":"Another example of propagation delay of logic gates","node-timestamp":"2020-04-26T18:42:28Z","parent":195669,"parents":[1,5,9,176557,195669],"path":"\/events\/ludum-dare\/46\/tyson-lee-keep-it-alive-edition\/another-example-of-propagation-delay-of-logic-gates","published":"2020-04-26T18:42:28Z","scope":"public","slug":"another-example-of-propagation-delay-of-logic-gates","subsubtype":"","subtype":"","type":"post","version":632616},"node_metadata":{"n_key":"208416","n_urlkey":"361629","n_parent":"195669","n_path":"\/events\/ludum-dare\/46\/tyson-lee-keep-it-alive-edition\/another-example-of-propagation-delay-of-logic-gates","n_slug":"another-example-of-propagation-d","n_type":"post","n_subtype":"","n_subsubtype":"","n_author":"26326","n_created":"1587925854","n_modified":"1587931503","n_version":"632616","n_status":"WAYBACK"},"source_url":"https:\/\/ldjam.com\/events\/ludum-dare\/46\/tyson-lee-keep-it-alive-edition\/another-example-of-propagation-delay-of-logic-gates","text":"![logic_eye.gif](\/\/\/raw\/6d6\/6\/z\/33586.gif)\n\nFocus on the NOT-gate. The Eye of Logic is commanding you!!!\n\nThis is what would theoreticaly happen if you connect gates in a circle. The input signal would propagate infinitely through the circuit. In reality an infinite propagation wouldn't happen, because every conductor has its own resistance which would weaken the signal every time it is passed from gate to gate. After a certain amount of times the signal would disappear because it lost too much energy (only, of course, if the gates don't have additional power sources^^).\n\nCheck out my first entry on gate delay: https:\/\/ldjam.com\/events\/ludum-dare\/46\/tyson-lee-keep-it-alive-edition\/input-signal-propagating-through-a-series-of-and-gates\n\nCome tinker and play at: https:\/\/ldjam.com\/events\/ludum-dare\/46\/tyson-lee-keep-it-alive-edition\n\n","title":"Another example of propagation delay of logic gates","wayback_source":[]}