1-Wire +5V 6 MAIN MIC C1 V CC 5 CONT DS2409 DATA GND 1 6 MAIN MIC CONT DS2409 DATA BAT54S AUX 4 GND 1 DATA DS2406 BAT54S GND

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1 9 4 6 BAT4S BAT4S +V DS406 6 B A 4.kΩ.kΩ.kΩ.kΩ DS409 6 MAIN DATA CONT AUX 4 DS409 V CC V CC 6 MAIN DATA CONT AUX 4 D G D G + C 4.7µF MIC940 MIC940 00kΩ S 00kΩ S DATA

2 V Dallas Semiconductor ( ) 480µs PC ( ) V ) TMEX TM ibutton ) ) CMOS/TTL.8V 6V / DS9097U RS- DS480 ROM (MSB) (CRC) CRC 7 48 µs 0 60µs 64k / ID ibutton ibutton Dallas Semiconductor TMEX Dallas Semiconductor

3 (SHA-) DS409 DS406 DS409 DS406 DS409 DS409 MicroLAN TM DS409 AUX (CONT) DS40 EEPROM LED CONT MAIN x LED DS409 DS406 X Y M x N DS409 AUX DS406 DS409 AUX DS406 B ( ) ibutton DS409 AUX CONT PMOS LED +V S D C 4.7µF + 6 V CC MAIN CONT 00kΩ MIC940 G.kΩ.kΩ DS409 DATA AUX 4 S D 6 V CC MAIN CONT 00kΩ MIC940 G.kΩ.kΩ DATA BAT4S DS409 DATA AUX 4 BAT4S DS406 4 A B 6. DS409 DS406 MicroLAN Dallas Semiconductor 4

4 DS409 AUX LED DS409 DS406 LED 0.0 DS406 DS409 LED ibutton DS909 (RH) DS406 DS409 (ADC) IC RH DS48 ADC ( ) HIH-60 DS48 ADC U DS48 V DD ID BAT4S U U RH U U DATA -0.4V 0.6V NET DS4 CR BAT4S C 0.0µF A DS4 BAT U 6 B SW R MΩ MΩ. DS4

5 NET CR BAT4S C 0.µF V DD U HIH-60 HONEYWELL. DS48 4 V DD 8 DQ V s + V AD DS48 U V s ADC S S.V ADC B C R R R R 0.66V CC 4 6.V. DS40 ADC DS48 MPXA4 0mA (V ) DS48 DS48 ( ) DS DS40 ADC ( ) U DS40 D C B (V) (V) (V) A (V) S ( ) 7 V CC / V CC V.V 6 ADC 4 DS48 ADC 6

6 N NET CR BAT4S C 0µF + DATA V CC A IN -A 6 A IN -B DS40 7 A IN -C U 8 A IN -D 4 R 47kΩ R 47kΩ R4 47kΩ R 47kΩ S S4 8 S R 47kΩ S S 9 6 S8 S ADC DS40 6 TC ID DS760 (TC) DS760 TC TC.6µV/LSB TC TC TC mv ) 6 R V DD ( DS760 DS760 TC NET DATA CR BAT4S C 0.µF 8 V DD DQ 4 DS48 V s + V AD U V s - OP94 Rsens 80Ω CR BAT4S C 0.µF R kω 7 V DD DQ 9 PLS IS 6 V IN C 0.µF DS760 8 IS U 4,, 6 RED (-) SNS,, TYPE E THERMOCOUPLE PURPLE (+). DS48 6. DS760 TC 7

7 ROM EPROM EEPROM ibutton SHA- ibutton ( ) (ibutton) IC 8

8 T (.44Mbps) T T (WAN) T 00Ω T T E E Maxim/ Dallas Semiconductor T/E T/E T/E/T/E (ITU) G (ANSI) ANSI T.0-99 T T Dallas Semiconductor/Maxim T (DSX-) ( 6 AWG ) (CSU) ( -6dB ) (LBO) (DSX-) (CSU) Dallas Semiconductor/Maxim T LBO T T T. T.44Mbps 00Ω ±%.4V.6V.0 9

9 E T E(.048Mbps) E T E ( ) E ( ) E E T E 7Ω 0Ω 7Ω T0.7V ±0% 0Ω.0V ±0% E. T (.44Mbps) T0 T E T.0-99 T T0.4V.6V ANSI.0 T0 T E T (44.76Mbps) 8 T E E (4.68Mbps) 6 E T E T E 4 T E 7Ω T 40 E T E 4. E.048Mbps.048Mbps 7Ω ±% 0Ω ±%.7V.0V 0

10 4. E 4.68Mbps 7Ω ±%.0V 4. E (.048Mbps). T T T T T 44.76Mbps 7Ω ±% 0.6V 0.8V.0. T (44.76Mbps)

11 LBO T T ( 6) 4. E (4.68Mbps) N x Semiconductor GPIB Maxim/Dallas E E 6 T/E (DSQ) T/E (DS4) DSQ DSMAT0X8 DSQ DSMAT7X DSMAT0X8 8 x T 00Ω ±% TTIP TRING 0Ω ±% E 0Ω 60Ω ±% TWISTED-PAIR CABLE 60Ω/0Ω 60Ω/0Ω CHANNEL A OSCILLOSCOPE DIFFERENTIAL MODE HIGH-IMPEDANCE INPUT CHANNELB COAXIAL CABLE 7Ω CHANNEL A OSCILLOSCOPE SINGLE-ENDED HIGH-IMPEDANCE INPUT Tektronix LeCroy HP T E.

12 00Ω 0Ω 0 DSMAT7X x 7Ω T E 7Ω/00Ω/0Ω DSQ 6 DS4 DSQ T E T E 7Ω DSMAT7X T LBO E T 00Ω 6 DSMAT0X8 LBO E 0Ω 7Ω Dallas Semiconductor/Maxim E T/E T/E E DSQ T/E x 4 TRANSCEIVER DSMAT0X8 8 x DIFFERENTIAL- SWITCH MATRIX 0Ω DSMAT7X x DIFFERENTIAL- SWITCH MATRIX 7Ω LINE SIMULATOR LONG LINE (ME-00) SHORT LINE (ME-00) OSCILLOSCOPE CHANNEL A PROPERLY TERMINATED HIGH-IMPEDANCE INPUT CHANNEL B PROPERLY TERMINATED HIGH-IMPEDANCE INPUT OSCILLOSCOPE DS4 T/ x 4 LIU DSMAT7X x DIFFERENTIAL- SWITCH MATRIX 7Ω LINE SIMULATOR 7Ω CABLE (ME-00) CHANNEL A PROPERLY TERMINATED HIGH-IMPEDANCE INPUT 6. T T

13 DESIGN SHOWCASE (PTAT) Semiconductor /PTAT IC Maxim/Dallas 0. C PTAT PTAT PTAT 0 DS6 DS6 - C +8 C C NIST RTD DS6 RTD DS6 ERROR ( C) ( ) RTD TEMPERATURE ( C) (). DS6 RTD T TS T ZERO_SLOPE α OFFSET T ZERO_SLOPE 4

14 ERROR ( C) DS6 MEASUREMENT ERROR FITTED-ERROR CURVE T ZERO_SLOPE OFFSET α T ZERO_SLOPE OFFSET α RTD TEMPERATURE ( C). DS6 DS6 T ZERO_SLOPE + C OFFSET -0. C α α =.8 x 0-4 α OFFSET T ZERO_SLOPE ( ) RTD - C +8 C 0.06 C +0. C/-0. C EEPROM DS6 () DS6 COMPENSATED ERROR ERROR ( C) RTD TEMPERATURE ( C).

15 DESIGN SHOWCASE 97 (FCC) () FCC Part Dallas/Fort Worth FCC FCC (EMC) B FCC Part 68 Part 68 A Part 68 B Part PC PC ( ) PC ( ) FCC (FCC Part 68 B ). 6

16 94 8 Hedy Keisler Markey George ATTENUATION (db) FCC MAXIMUM SPECIFIED VALUE FOR A PARTICULAR FREQUENCY TYPICAL CRYSTAL OSCILLATOR Antheil,9,87 ) ( DEVIATION FROM NOMINAL FREQUENCY (MHz). FCC ) ( PC PC EMI FCC ( ) 4 DS086 PC DS086 0% 4% FCC 7

17 OSCILLATOR CENTER FREQUENCY + N% OSCILLATOR CENTER FREQUENCY TIME OSCILLATOR CENTER FREQUENCY - N%. DS086 DS086 EconOscillator TM 66MHz MHz EMI 0% % 4% DS086 k 8kHz SO EMI ( ) 8 MHz EconOscillator DS086 (DAC) (VCO) VCO DS086 (0% SPREAD) TYPICAL CRYSTAL OSCILLATOR 0% % 4% EconOscillator 0% % ATTENUATION (db) dB ATTENUATION DS086 (4% SPREAD) EconOscillator 0% 0dBm FCC DEVIATION FROM NOMINAL FREQUENCY (MHz) EMI 4. DS086 DS07 DS07 DS077 EconOscillator FM EconOscillator Dallas Semiconductor 8

18 DS086 POWER-DOWN PIN -WIRE BUS BITS DIGITAL- TO-ANALOG CONVERTER VOLTAGE- CONTROLLED OSCILLATOR DIVIDER EEPROM CONTROL REGISTERS ENABLE OUTPUT PIN ENABLE SPREAD OUTPUT PIN TRIANGLE WAVE GENERATOR. DS086 EconOscillator 00ppm 00ppm /% 4% 9

Dallas Semiconductor 17

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