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Schaltplan eines REF02 Spannungsreferenz-Schaltkreises
2 VIN 6 VOUT Output 3 Temp 5 Trim RPOT 10kOhm (Optional) 4 GND +5V Reference with Trimmed Output
in „Bourns 3296 Spindeltrimmer - Langzeit-Stabilität“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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Schaltplan einer Sensorbeschaltung mit LM358 und REF02AP
+12V, U2 REF02AP, VOUT, TEMP, TRIM, GND, 5V, R3 20k, R4 1.2k, U1A LM358, SENSOR_OUTPUT, 2, 1, 3, +, R1 1.2k, 6, 5, R2 20k, GND, U1B LM358, 7, AIN, J1 Conn_01x08, 1, 2, 3, 4, 5, 6, 7, 8, SENSOR_GND, SENSOR_VCC, SENSOR_OUTPUT
in „Verständnisfrage LM358-Verstärker für Sensor“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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dac8512.pdf
is typically to the DAC’s digital code. Biasing for the controller is provided ±15 V or ±18 V, a REF02 is used to supply the +5 V required to power the DAC. No trimming of the reference is required be- by the REF02 and requires no external trim for two reasons: cause of the reference’s tight initial tolerance and low supply (1) the REF02’s tight initial output voltage tolerance and (2) the current consumption of the DAC8512. The SSM2018 is config- low supply current consumption of both the OP90 and the DAC8512. The entire circuit,
in „µC soll Strom rausgeben“ · Mikrocontroller und Digitale Elektronik ·
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1809271221_Texas-Instruments-DAC5571IDBVR_C24061.pdf
power supply is quite noisy or if the system supply voltages are at some value other than 5 V. The REF02 outputs a steady supply voltage for the DAC5571. If the REF02 is used, the current it needs to supply to the DAC5571 is 140 µA typical. When a DAC output is loaded, the REF02 also needs to supply the
in „Hilfe bei der Berechnung (Voltage Divider)“ · Analoge Elektronik und Schaltungstechnik ·
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FTSH-105-01-L-D-K.pdf
SHEET 1 OF 3 REVISION BX (No OF POS x .050[1.27])+.131[3.32]±.008[0.20] .265 6.73 REF .280 7.11 REF 02 .188 4.78 REF .139 3.53 REF .0699 1.775 01 (No OF POS x .050[1.27])+.101[2.57] .008[0.20] LC-05-TM FTSH-EC ES-FTSH (No OF POS x .050[1.27])+.079[3.30]±.008[0.20] FIG 4 -EC OPTION (DIFFERENT AS SHOWN
in „J-Link EDU Mini“ · Mikrocontroller und Digitale Elektronik ·
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Datei
map.txt
01BD _Z_Wert 01C1 _Y_Wert 01C5 _X_Wert 01C9 _ZWert 01CD _YWert 01D1 _XWert 01D5 _r_ADW 02E3 _RawRef 02E5 _Raw_y 02E7 _Raw_x 02E9 _ySDaten 02EB _xSDaten 02ED _zSDaten 02EF _EEprom_Buf 03EF _Status 03F1 _test3 03F2 _test2 03F3 _test 03F4 _iRxt 03F5 _Baud_ind 03F6 _Read_Mode 03F7 _Free_runing 03F8 _Timer_ind
in „Problem mit SRAM ATmega64“ · Mikrocontroller und Digitale Elektronik ·
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LM334.pdf
einen Spannungsabfall von 1O mV/K verursachen. C 5 unterdrückt durch das Kabel aufgefangene 0 tcz t REF-02 H F-Störungen. Der Sensor TEMJ TRIM wird aus einem 9-V-Block ver- §' sorgt.Die Spannungsdifferenz rc wird direktan Klernme M + N gegen Masse abgegriffen.Hier Q,,u., empf iehltsich ein DVM mit -l Meßwertspeicher
in „Präzise Temperaturmessung mit langer Leitung“ · Analoge Elektronik und Schaltungstechnik ·
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WK_In.pdf
RCA DIP 2 Switcher TOP249Y Power Integrations TO220-7 2 Referenz REF01HP PMI/Texas DIP 2 Referenz REF02EZ PMI/Texas DIP 2 Stromquelle/Senke REF200 BB/Texas DIP 1 A/D Wandler TSC7117CPL Teledyne DIP 2 Referenz MAX675EPA Maxim DIP 3 µC Supervisor MAX690EPA Maxim DIP 2 12Bit A/D MAX172B Maxim DIP 1 V/F
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L_tstation_St_ckliste_OA.pdf
11 1 J02 IEC60130-9 KFV70 Lumberg 12 1 K511 G6C-1117P -US OMRON 13 1 N111 LM7809 CT NSC 14 1 N112 REF-02 CP AD 15 1 N121 LM7909 CT NSC 16 2 N202,N201 LM358 A NSC 17 1 N301 U217B -B TEMIC 18 1 P01 22k 1W ABW1 AB Electronic 19 1 P001 DIN41612D32F 09 04 232 2823 Harting 20 1 P211 1k 3266W Bourns 21 1 P212
in „Lötstation nachbauen, aber welche“ · Mikrocontroller und Digitale Elektronik ·
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L_tstation_Schaltbild_Platine_OA.pdf
8 7 6 5 4 3 2 1 X18P X09P VREF F101 V111 N111 N112 1AT 1N4002 LM7809 REF-02 1 2 2 1 1 IN OUT 3 2 6 1 1 1 GND 3 C111 C112 5 C113 220u 2 100n 100n 2 2 4 2 D D GND GND GND GND GND J001 X09N X09N X24AC X09N X18P X24AC V121 N121 0V AC 32C GND 1N4002 LM7909 0V AC 32A 1 2 2 IN OUT
in „Lötstation nachbauen, aber welche“ · Mikrocontroller und Digitale Elektronik ·
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OP90.pdf
1N914 diode becomes reversed-biased and the Biasing for the current transmitter is provided by the REF-02EZ. signal passes through R1 and R2 to the output. Since output The OP90 regulates the output current to satisfy the current impedance is dependent on input polarity, load impedances summation at the
in „Stromverbrauch eines Mikrocontrollers zeitaufgelöst messen“ · Analoge Elektronik und Schaltungstechnik ·
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thermistor.pdf
thermistor resistance and tem- are 1% metal Film. the 12-bit ±5-V ADC. 5V R1 RT C1 0.1 F perature. REF02 50 k – V1R2 R4 Because the analog circuit OP27 1k 150k and ADC perform a linear LOW-COSTEMBEDDEDTEM- + R3 – translation from resistance to PERATUREMEASUREMENT 64k OP27 VOUT ADC digital output, the
in „regelbare Konstantstromquelle“ · Mikrocontroller und Digitale Elektronik ·
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LT1019.pdf
most bandgap Precision Regulators references presently available including AD580, AD581, REF-01, REF-02, MC1400, MC1404, and LM168. Constant Current Sources V/F Converters For ultra-low drift applications (<2ppm/°C), the LT1019 Bridge Excitation can be operated in a heated mode by driving an internal
in „Referenz Chip LT1019 / Heizung“ · Analoge Elektronik und Schaltungstechnik ·
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LT1019.pdf
References references presently available including AD580, AD581, ■ A/D and D/A Converters REF-01, REF-02, MC1400, MC1404 and LM168. ■ Precision Regulators ■ Constant Current Sources , LTC and LT are registered trademarks of Linear Technology Corporation. All other trademarks are the property of their
in „Hochgenaue 2.5V Referenz“ · Mikrocontroller und Digitale Elektronik ·
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smp04.pdf
every second or less in order to assure the droop does not exceed 10 mV or 1/2 LSB. +12V 1mF + +12V REF02 +5V SMP04 0.1mF V OUT1 +12V VSS WR V VZ VDD 5V TO 10V OUT2 1/2 DAC8228 VO V REF CS GND VSS VOUT3 DIGITAL INPUTS S/H1 V ADDRESS CHANNEL S/H2 SS INPUTS DECODE S/H VOUT4 3 S/H4 VSS DGND Figure 20. Multiplexed
in „Power Supply Bypassing - wie ist es richtig??“ · Analoge Elektronik und Schaltungstechnik ·
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smp04.pdf
every second or less in order to assure the droop does not exceed 10 mV or 1/2 LSB. +12V 1mF + +12V REF02 +5V SMP04 0.1mF V OUT1 +12V VSS WR V VZ VDD 5V TO 10V OUT2 1/2 DAC8228 VO V REF CS GND VSS VOUT3 DIGITAL INPUTS S/H1 V ADDRESS CHANNEL S/H2 SS INPUTS DECODE S/H VOUT4 3 S/H4 VSS DGND Figure 20. Multiplexed
in „Sample-and-Hold-Verstärker - wie richtig beschalten??“ · Analoge Elektronik und Schaltungstechnik ·
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smp04.pdf
every second or less in order to assure the droop does not exceed 10 mV or 1/2 LSB. +12V 1mF + +12V REF02 +5V SMP04 0.1mF V OUT1 +12V VSS WR V VZ VDD 5V TO 10V OUT2 1/2 DAC8228 VO V REF CS GND VSS VOUT3 DIGITAL INPUTS S/H1 V ADDRESS CHANNEL S/H2 SS INPUTS DECODE S/H VOUT4 3 S/H4 VSS DGND Figure 20. Multiplexed
in „Umgang mit Hold-Step bei Sample-and-Hold-Versärkern“ · Mikrocontroller und Digitale Elektronik ·
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DAC7552.pdf
voltage steps between consecutive DAC updates. To obtain a high dynamic range, REF3140 (4.096 V) or REF02 (5 V) are DAC7552 Vtail recommended for reference voltage generation. R1 Generating ±5-V, ±10-V, and ± 12-V Outputs For REF3140 Precision Industrial Control V R2 REF Industrial control applications
in „Problem mit DAC7552“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TopAS21.vhd
für REF Befehl 00 EBENE 0 SIGNAL REF01 :STD_LOGIC := '0';-- signal für REF Befehl 00 EBENE 1 SIGNAL REF02 :STD_LOGIC := '0';-- signal für REF Befehl 00 EBENE 2 ------------------- neue Signale für Ref anfahren------------------- SIGNAL RefBefehl :T_RefBef;--3 Byte für Ebene 0,1,2 SIGNAL StrtCntrR :T_StrCtrlR
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PSpice_LibraryguideOrCAD.pdf
Devices, Inc. Voltage Reference REF-01H REF-01H/AD ANLG_DEV.OLB Analog Devices, Inc. Voltage Reference REF-02 REF-02/AD ANLG_DEV.OLB Analog Devices, Inc. Voltage Reference REF-02 REF-02 OPAMP.OLB Voltage Reference REF-02A REF-02A/AD ANLG_DEV.OLB Analog Devices, Inc. Voltage Reference REF-02C REF-02C/AD ANLG_DEV.OLB Analog Devices, Inc. Voltage Reference REF-02D REF-02D/AD ANLG_DEV.OLB Analog Devices, Inc. Voltage Reference REF-02E REF-02E/AD ANLG_DEV.OLB Analog Devices, Inc. Voltage Reference REF-02H REF-02H/AD ANLG_DEV.OLB Analog Devices, Inc. Voltage Reference
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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VHF-COMM.1984.2--b.pdf
connected to the reference voltage of + 5 V which represents a useful compromise. generated by I 4 (REF 02), The oscillator Inspite of this, it will take approximately 3 should therefore be aligned so that it has its minutes until the frequency is stable t± 1 Hz nominal frequency with + 5V at D 2. A devia
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VHF-COMM.1984.2.pdf
connected to the reference voltage of + 5 V which represents a useful compromise. generated by I 4 (REF 02), The oscillator Inspite of this, it will take approximately 3 should therefore be aligned so that it has its minutes until the frequency is stable t± 1 Hz nominal frequency with + 5V at D 2. A devia
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AD8551_8552_8554.pdf
measurements of up transfer function decreases from V+ at −2.5 V/A. to 1000°C. RSENSE IL 0.1Ω 12V 2 REF02EZ 6 5.000V 3V V+ R 8 3V 0.1µF 4 R R 124kΩ 0.1µF 10.7kΩ 40.2kΩ R1 5V 100Ω 3 8 1N4148 +0µF 1/2 1 D1 AD8552 0.1µF 2 R2 R7 4 2.74kΩ 453Ω 2 – 8 S THERMOCOUPLEPE 1 M1 G 40.7µV/°C AD8551 Si9433 R6 3 + D 200Ω
in „Chopper Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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EKG_usw_Informationformedicalapplications_von_TI.pdf
0.2% max initial accuracy, 15 ppm/ºC max drift, SOT23 package (1.25, 2.048, 2.5, 3.0, 3.3, 4.096 V) REF02 5-V precision voltage reference, 0.2% initial accuracy max, 10 ppm/ºC max drift, excellent line/load regulation, low noise, SO-8 package REF102 10-V ultra-precision voltage reference, 0.05% accuracy
in „EKG Schaltung Neuling“ · Analoge Elektronik und Schaltungstechnik ·
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kicad_8450_dcm_liste_neu_v3.pdf
MCP1541-I_SOT23 4.096V Voltage Reference, SOT-23 MCP1541T-I_TO92 4.096V Voltage Reference, TO-92 REF02AP 5V ±15mV Precision Voltage Reference, PDIP-8 REF02AU 5V ±15mV Precision Voltage Reference, SO8 REF02BP 5V ±10mV Precision Voltage Reference, PDIP-8 REF02BU 5V ±10mV Precision Voltage Reference, SO8
in „KiCAD Eeschema, Bibliotheksdokumentation *.dcm als PDF-Datei“ · Platinen ·