To: | [email protected] |
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Subject: | Re: [rsgb_lf_group] Re: LF: PIC-based GPSDO with A/D converter / supported serial baudrates ? |
From: | Andy Talbot <[email protected]> |
Date: | Fri, 19 Feb 2016 15:12:53 +0000 |
Cc: | [email protected] |
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I modified an existing module containing a 16F688 (a 14 pin PIC with UART and A/D converter very useful chip) and SP485 driver. Wrote some code to send all the letters of the alphabet and the numbers and [formatting- something immediately recognisable on a screen at various fast baud rates. The characters are sent contiguously with absolutely no gaps between serial words With a 16MHz clocked chip, the maximum baud rate is 1MB/s Using an FTDI RS485 module and my existing serial port monitor written in Visual Basic , I then tested at various speeds. Initially I had the UART set for 1 stop bit, and things began to go a bit flakily with errors even at 250000 baud, then very wrong at 500k and 1M locked up my monitor prog. completely! Then I realised that there was no leeway for clock slippage having just one stop bit, and wondered how to set the PIC's USART for two stop bits. Finally realised the 9 bit data option was the way to do it, with the 9 bit = '1' The result is perfect! Watching the letters of the alphabet and numbers whip up the screen there are no errors to be seen at rates up to the maximum with this crystal - 1MB/s. 8 bit data with one start and two stop = 11 symbols per byte so nearly 91000 bytes per second. So 12 or even possibly 14 bit data could be sent (with some framing) at 45kS/s. 16 bit at 30kS/s or a bit more with careful format frigging I'm also pleased to discover that the serial terminal programme, 'PUTTY' allows 1Mbaud to be set and again gives perfect reception at that speed. So it looks like the FTDI chipset gives us a decent easy to implement interface at speeds sufficient for our purposes. The spec'ed maximum the 16F688 can run at is 20MHz, so even if that were thrashed it couldn't reach the next speed option the FTDI232R can go at, which is 3MBaud. Your faster device with multiplier may manage that though... if it uses the same USART hardware as the 16F688. You will need to clock at 48MHz to get 3Mbaud Andy G4JNT (In all my bit banging RSxxx implementation I have always used two stop bits, so never thought that the USARt would be implementing this by default On 17 February 2016 at 20:58, Wolfgang Büscher [email protected] [rsgb_lf_group] <[email protected]> wrote:
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