Return-Path: Received: from rly-mb08.mx.aol.com (rly-mb08.mail.aol.com [172.21.131.166]) by air-mb01.mail.aol.com (v126.13) with ESMTP id MAILINMB014-d1e4b13b2d8115; Mon, 30 Nov 2009 06:56:25 -0500 Received: from post.thorcom.com (post.thorcom.com [193.82.116.20]) by rly-mb08.mx.aol.com (v125.7) with ESMTP id MAILRELAYINMB082-d1e4b13b2d8115; Mon, 30 Nov 2009 06:56:09 -0500 Received: from majordom by post.thorcom.com with local (Exim 4.14) id 1NF4qR-0006XW-9g for rs_out_1@blacksheep.org; Mon, 30 Nov 2009 11:55:07 +0000 Received: from [193.82.116.32] (helo=relay1.thorcom.net) by post.thorcom.com with esmtp (Exim 4.14) id 1NF4qQ-0006XN-L3 for rsgb_lf_group@blacksheep.org; Mon, 30 Nov 2009 11:55:06 +0000 Received: from imr-da02.mx.aol.com ([205.188.105.144]) by relay1.thorcom.net with esmtp (Exim 4.63) (envelope-from ) id 1NF4qO-0000Ds-Ka for rsgb_lf_group@blacksheep.org; Mon, 30 Nov 2009 11:55:06 +0000 Received: from imo-ma01.mx.aol.com (imo-ma01.mx.aol.com [64.12.78.136]) by imr-da02.mx.aol.com (8.14.1/8.14.1) with ESMTP id nAUBsfQg009565 for ; Mon, 30 Nov 2009 06:54:41 -0500 Received: from MarkusVester@aol.com by imo-ma01.mx.aol.com (mail_out_v42.5.) id l.cdd.602c3a90 (44221) for ; Mon, 30 Nov 2009 06:54:36 -0500 (EST) Received: from Black (g229164008.adsl.alicedsl.de [92.229.164.8]) by cia-dd07.mx.aol.com (v126.13) with ESMTP id MAILCIADD077-acbd4b13b279113; Mon, 30 Nov 2009 06:54:34 -0500 Message-ID: <924E8209A37F47A78332D8037F7A377D@Black> From: "Markus Vester" To: Date: Mon, 30 Nov 2009 12:54:33 +0100 MIME-Version: 1.0 X-Priority: 3 X-MSMail-Priority: Normal X-Mailer: Microsoft Windows Mail 6.0.6000.16480 X-MimeOLE: Produced By Microsoft MimeOLE V6.0.6000.16669 X-Spam-Flag:NO X-AOL-SENDER: MarkusVester@aol.com X-Karma: unknown: X-Spam-Score: 0.0 (/) X-Spam-Report: autolearn=disabled,HTML_MESSAGE=0.001 Subject: LF: DCF39 sidebands and timing Content-Type: multipart/mixed; boundary="----=_NextPart_000_003A_01CA71BC.4355D790" X-Spam-Checker-Version: SpamAssassin 2.63 (2004-01-11) on post.thorcom.com X-Spam-Level: X-Spam-Status: No, hits=0.1 required=5.0 tests=HTML_MESSAGE, MISSING_OUTLOOK_NAME autolearn=no version=2.63 X-SA-Exim-Scanned: Yes Sender: owner-rsgb_lf_group@blacksheep.org Precedence: bulk Reply-To: rsgb_lf_group@blacksheep.org X-Listname: rsgb_lf_group X-SA-Exim-Rcpt-To: rs_out_1@blacksheep.org X-SA-Exim-Scanned: No; SAEximRunCond expanded to false X-AOL-IP: 193.82.116.20 X-AOL-VSS-CODE: clean X-AOL-VSS-INFO: 5.3.00/0 ------=_NextPart_000_003A_01CA71BC.4355D790 Content-Type: multipart/alternative; boundary="----=_NextPart_001_003B_01CA71BC.4355D790" ------=_NextPart_001_003B_01CA71BC.4355D790 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable Dear LF group, since DCF39 got a new transmitter in April 2007, the 137 kHz band has= been plagued by increased interference from it's excessively wide FSK= switching sidebands. Viewed from here, they extend down to below 136.= 9 kHz on a quiet day. There are a few narrow gaps around baudrate mult= iples from the carrier, which can provide clean lanes for narrowband= modes. Recently I noticed a subtile change in the shape of the spectrum (see= screenshot). In addition to the 10 Hz wide gaps at n x 200 Hz from th= e active (space) frequency 139.17 kHz (ie. at 137.77, 137,57, 137.37= ... kHz), there are now additional, slightly wider gaps grouped aroun= d the idle (mark) frequency 138.83 kHz (ie. at 137.83, 137.63, 137.43= ...). This is apparently related to a small modification in the timin= g of the transmitted serial data bytes (one start bit, nine data bits,= one stop bit). The data bits have always been exactly 5.0 ms long, bu= t the duration of the stop interval used to be slightly longer (5.31= ms). This has now been changed to 5.0 ms as well. Most of the transmitted data actually are 16 byte timestamps, which ar= e repeated every 11 seconds and used to synchronize the clocks in the= remote receivers. They now seem to be aligned to UTC time, with the= start bit commencing exactly 875 ms before the second, and the last= data bit ending on the GPS second pulse. Klaus Betke (DL4BBL) has der= ived the binary telegram format and published it on his former website= www.longwave.de. With this information, it should be possible to buil= d a DCF39 (as opposed to DCF77 or MSF) clock. There may also be new op= portunities for DCF39 phase extraction and sideband cancellation. The software noise blanker in Spectrum Lab can be configured to reduce= the impact of the DCF sidebands on QRSS reception. I found it advanta= geous to not suppress the complete telegrams, but only a short time ar= ound each of the individual FSK transition clicks. To do this, you wil= l have to feed the soundcard without enough bandwidth (at least 1 kHz)= to contain the clicks, but not the carrier frequency (138.83 kHz). Th= en you can optimize the noise blanker threshold (9 dB) and ramptime se= ttings (2.5 ms, short enough to retain most of the signal, but long en= ough to restrict the generation of new sidebands). Kind regards, Markus (DF6NM) ------=_NextPart_001_003B_01CA71BC.4355D790 Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable
Dear LF group,
 
since DCF39 got a new transmitte= r in=20 April 2007, the 137 kHz band has been plagued by increased= =20 interference from it's excessively wide FSK switching=20 sidebands. Viewed from here, they extend down to below 136.9= kHz on a=20 quiet day. There are a few narrow gaps around baudrate multiples= from the=20 carrier, which can provide clean lanes for narrowband modes.
 
Recently I noticed a subtile change= in the shape of=20 the spectrum (see screenshot). In addition to the 10 Hz wide gaps at&n= bsp;n x=20 200 Hz from the active (space) frequency 139.17 kHz (ie. at 137.77, 13= 7,57,=20 137.37 ... kHz), there are now additional, slightly wider gaps gr= ouped=20 around the idle (mark) frequency 138.83 kHz (ie. at 137.83, 137.6= 3, 137.43=20 ...). This is apparently related to a small modification in the timing= of the=20 transmitted serial data bytes (one start bit, nine data bits, one= stop=20 bit). The data bits have always been exactly 5.0 ms long, but the dura= tion of=20 the stop interval used to be slightly longer (5.31 ms). This has= now been=20 changed to 5.0 ms as well.
 
Most of the transmitted data actually= are 16 byte=20 timestamps, which are repeated every 11 seconds and used to synchroniz= e the=20 clocks in the remote receivers. They now seem to be aligned to UTC=20 time, with the start bit commencing exactly 875 ms before the=20 second, and the last data bit ending on the GPS second pulse. Klaus Betke (DL4BBL) has derived the= binary telegram format=20 and published it on his former website www.longwave.de. With this information, it=20 should be possible to build a DCF39 (as opposed to DCF77 or MSF)= clock.=20 There may also be new opportunities for DCF39 phase extraction an= d sideband=20 cancellation.
 
The software noise blanker in Spectru= m Lab can be=20 configured to reduce the impact of the DCF sidebands on QRSS rece= ption. I=20 found it advantageous to not suppress the complete telegrams, but= =20 only a short time around each of the individual FSK transiti= on clicks.=20 To do this, you will have to feed the soundcard without enough bandwid= th (at=20 least 1 kHz) to contain the clicks, but not the carrier freq= uency=20 (138.83 kHz). Then you can optimize the noise blanker threshold= (9 dB) and=20 ramptime settings (2.5 ms, short enough to retain most of the&nbs= p;signal,=20 but long enough to restrict the generation of new sidebands).
 
Kind regards,
Markus (DF6NM)
 
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