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Message-ID: | <54FA053F.3010102@ecosensory.com> |
Date: | Fri, 06 Mar 2015 13:51:27 -0600 |
From: | John Griessen <john AT ecosensory DOT com> |
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To: | geda-user AT delorie DOT com |
Subject: | Re: [geda-user] [OT] Temperature sensor and control recommendation |
References: | <CAF3uCZ=G0FztqBtpfvssYCz9WrUORX8+J45xmH9+KutaX6c+gw AT mail DOT gmail DOT com> <201503051621 DOT t25GL09H018380 AT envy DOT delorie DOT com> <CAF3uCZnSwMfNTVybJ+U89RTOk5=B+5FSSci1tD2nW9Ywo9Armg AT mail DOT gmail DOT com> <CAM2RGhS_=rQL1UyMg8xixfOsrXq=AhZ__S70ijhSi=pLg=ZjQQ AT mail DOT gmail DOT com> <54F9CC6C DOT 7070903 AT ecosensory DOT com> <9488B6EF-F9D8-49FF-8377-23BEF868FC82 AT noqsi DOT com> |
In-Reply-To: | <9488B6EF-F9D8-49FF-8377-23BEF868FC82@noqsi.com> |
Reply-To: | geda-user AT delorie DOT com |
On 03/06/2015 11:24 AM, John Doty wrote: > Some delta-sigma ADCs have differential inputs for both reference and measurement. This allows you to make a direct ratiometric > comparison between a reference resistor and an RTD. Wire them in series, make the voltage across the reference resistor the > reference voltage, and the voltage across the RTD the measurement. This reduces the analog accuracy problem to a very small > number of components. That sounds great! If you also used high purity wire able to take the heat, and kept the ref R close to the RTD on a conductive block right in the oven, there would be no thermocouple effects to speak of. You would still want the amplifier/ADC to be out of the breeze and as close to same temperature as its enclosure surroundings as is practical. Maybe put it on a large copper pour ground plane and solder a brass box over that...or run a little fan inside the circuit enclosure... anything to stop temp gradients on the chip as ambient fluctuates.
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