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Current_Ref._100uA.pdf
Input PACKAGE/ORDERING INFORMATION PACKAGE DRAWING TEMPERATURE (1) PRODUCT PACKAGE NUMBER RANGE REF200AP 8-Pin Plastic DIP 006 –25°C to +85°C REF200AU 8-Pin SOIC 182 –25°C to +85°C ELECTROSTATIC NOTE: (1) For detailed drawing and dimension table, please see end of data sheet, or Appendix C of Burr-Brown
in „Stromreferenz Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Diode-Based_Temperature_Measurement_sboa019__TI.pdf
relatively high temperature coefficient of about –2mV/°C is fairly linear. To make a temperature REF200 measurement system with a diode requires excitation, offset- ting, and amplification. The circuitry can be quite simple. 100µA 100µA This Bulletin contains a collection of circuits to address a variety
in „Schnelle Temperaturmessung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FTSH-105-01-L-D-K.pdf
27/1996 SHEET 2 OF 3 REVISION BX ((No OF POS x .0500[1.270]) -.003[0.08]±.006[0.15] .085 2.16 02 REF .200 5.08 REF 01 L .085 2.16 REF .200 5.08 REF .126 3.20 REF PT-1-24-05-09 FTSH-50-CN-XX PT-1-24-01-43 PT-1-24-11-09 SEE NOTE 10 FIG 7 -K OPTION (LEAD STYLE -01) (DIFFERENT AS SHOWN, OTHERWISE SAME AS
in „J-Link EDU Mini“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA114.pdf
buffering trim voltage with an op amp as shown. Thermocouple INA114 VIN V+ VO RG INA114 100µA + Ref 1/2 REF200 V IN 10k OPA177 100 ±10mV Adjustment Range 10k INA114 100 100µA Center-tap provides 1/2 REF200 bias current return. V– FIGURE3.ProvidinganInputCommon-ModeCurrentPath. FIGURE 2. Optional Trimming of
in „Genaue Funktion eines Schaltungsteiles“ · Mikrocontroller und Digitale Elektronik ·
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ina114.pdf
buffering trim voltage with an op amp as shown. Thermocouple INA114 VIN V+ VO RG INA114 100µA + Ref 1/2 REF200 V IN 10k OPA177 100 ±10mV Adjustment Range 10k INA114 100 100µA Center-tap provides 1/2 REF200 bias current return. V– FIGURE3.ProvidinganInputCommon-ModeCurrentPath. FIGURE 2. Optional Trimming of
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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INA114.pdf
buffering trim voltage with an op amp as shown. Thermocouple INA114 VIN V+ VO RG INA114 100µA + Ref 1/2 REF200 V IN 10k OPA177 100 ±10mV Adjustment Range 10k INA114 100 100µA Center-tap provides 1/2 REF200 bias current return. V– FIGURE3.ProvidinganInputCommon-ModeCurrentPath. FIGURE 2. Optional Trimming of
in „Differnezverstärker für Strommessung?“ · Analoge Elektronik und Schaltungstechnik ·
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INA114.pdf
buffering trim voltage with an op amp as shown. Thermocouple INA114 VIN V+ VO RG INA114 100µA + Ref 1/2 REF200 V IN 10k OPA177 100 ±10mV Adjustment Range 10k INA114 100 100µA Center-tap provides 1/2 REF200 bias current return. V– FIGURE3.ProvidinganInputCommon-ModeCurrentPath. FIGURE 2. Optional Trimming of
in „Messen von Mikrofonpegeln“ · Mikrocontroller und Digitale Elektronik ·
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ina114.pdf
buffering trim voltage with an op amp as shown. Thermocouple INA114 VIN V+ VO RG INA114 100µA + Ref 1/2 REF200 V IN 10k OPA177 100 ±10mV Adjustment Range 10k INA114 100 100µA Center-tap provides 1/2 REF200 bias current return. V– FIGURE3.ProvidinganInputCommon-ModeCurrentPath. FIGURE 2. Optional Trimming of
in „OP INA114 Regelt nur bis 2,25V am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
WK_In.pdf
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 Wandler RC4153DC Raytheon DIP 3 Schaltregler
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INA111_BB.pdf
follower circuit to assure low impedance on the Ref pin. INA111 V IN V+ V O RG INA111 100µA + Ref 1/2 REF200 Center-tap provides VIN bias current return. 100 (1) OPA177 FIGURE3.ProvidinganInputCommon-ModeCurrentPath. ±10mV 10k (1) Adjustment Range INPUT COMMON-MODE RANGE 100 (1) The linear common-mode range
in „INA111 als Verstärker für Solarzelle?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina111.pdf
follower circuit to assure low impedance on the Ref pin. INA111 V IN V+ V O RG INA111 100µA + Ref 1/2 REF200 Center-tap provides VIN bias current return. 100 (1) OPA177 FIGURE3.ProvidinganInputCommon-ModeCurrentPath. ±10mV 10k (1) Adjustment Range INPUT COMMON-MODE RANGE 100 (1) The linear common-mode range
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA121.pdf
Ref pin. INA121 V IN V+ VO Center-tap provides RG INA121 100µA bias current return. + VIN Ref 1/2 REF200 INA121 100 (1) V Bridge OPA277 REF ±10mV 10k (1) Adjustment Range 100 (1) Bridge resistance provides bias current return. NOTE: (1) For wider trim range required 100µA FIGURE3.ProvidinganInputCommon-ModeCurrentPath. in high gains, scale resistor values larger/2 REF200 V– INPUT COMMON-MODE RANGE The linear input voltage range of the input circuitry of the FIGURE 2. Optional Trimming of Output Offset Voltage. INA121 is from approximately 1.2V below the positive supply
in „Instrumentenverstärker INA121 hat zu hohe Verstärkung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA125.pdf
produces the G INA125 O 100µA bandgap reference voltage (1.24V ±0.5%) at the reference + IREF 1/2 REF200 V IN output. Positive supply voltage must be 1.25V above the desired OPA237 10k 100 reference voltage. For example, with V+ = 2.7V, only the ±10mV 1.24V reference (V REFBG) can be used. If using dual
in „Signal einer Wägezelle auswerten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA125.pdf
produces the G INA125 O 100µA bandgap reference voltage (1.24V ±0.5%) at the reference + IREF 1/2 REF200 V IN output. Positive supply voltage must be 1.25V above the desired OPA237 10k 100 reference voltage. For example, with V+ = 2.7V, only the ±10mV 1.24V reference (V REFBG) can be used. If using dual
in „Verstärker für Messbrücke“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sbea001.pdf
measures the laser/TEC V temperature. If a 10kΩ at 25°C thermistor is excited by 0 100µA from a REF200 Current Reference, it will read 0 0.5 1.0 1.5 2.0 VIN(V) 1.000V across the thermistor at 25°C. By using this con- stant-current source, the thermistor’s output voltage is a FIGURE 36. InputVoltage,
in „OP-Stromregelung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pt100-Vierleiter-Verdrahtungsdiagnose.pdf
Diagnose) Mux, Ablauf, Schwellen ADC ADS1220 oder ADS124S08 24-bit, optional 2× IDAC intern IDAC REF200, Howland (OPA192 + 2,49 kΩ) oder ADC-IDAC 1 mA, umkehrbar Mux 3× TMUX1134 oder 1× ADG1414 Quelle, Rückführung, Sense A/B INA INA333 V_sense, hohe Gleichtaktunterdrückung Schutz 100 Ω + SMAJ5.0A + BAT54S
in „ESP 32 oder Nano“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina121.pdf
Ref pin. INA121 V IN V+ VO Center-tap provides RG INA121 100µA bias current return. + VIN Ref 1/2 REF200 INA121 100 (1) V Bridge OPA277 REF ±10mV 10k (1) Adjustment Range 100 (1) Bridge resistance provides bias current return. NOTE: (1) For wider trim range required 100µA FIGURE3.ProvidinganInputCommon-ModeCurrentPath. in high gains, scale resistor values larger/2 REF200 V– INPUT COMMON-MODE RANGE The linear input voltage range of the input circuitry of the FIGURE 2. Optional Trimming of Output Offset Voltage. INA121 is from approximately 1.2V below the positive supply
in „Pulsmessung über Kontaktflächen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina128.pdf
to preserve good common-mode rejection. VIN Thermocouple V+ INA128 RG INA128 VO 100µA V+ Ref 1/2 REF200 IN 10kΩ 100Ω OPA177 10kΩ ±10mV Adjustment Range 100Ω INA128 100µA 1/2 REF200 Center−tap provides bias current return. V− Figure 3. Providing an Input Common-Mode Figure 2. Optional Trimming of Output
in „Probleme Spannungsmessung mit INA 128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OP_INA2126PA.pdf
INA126 V V+ G ✻ O Gain is set by connecting an external resistor, R , as shown: + G VIN Ref 100µA 1/2 REF200 80kΩ (1) G = 5+ R G 100Ω OPA237 10kΩ Commonly used gains and R resistGr values are shown in ±10mV Figure 1. Adjustment Range The80kΩterminequation1comesfromtheinternalmetalfilm 100Ω resistors which
in „OPV Signal von µV Bereich verstärken“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina125.pdf
produces the G INA125 O 100µA bandgap reference voltage (1.24V ±0.5%) at the reference + IREF 1/2 REF200 V IN output. Positive supply voltage must be 1.25V above the desired OPA237 10k 100 reference voltage. For example, with V+ = 2.7V, only the ±10mV 1.24V reference (V REFBG) can be used. If using dual
in „Kraftsensor PSD-S1 in Verbindung mit INA125“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina125.pdf
produces the G INA125 O 100µA bandgap reference voltage (1.24V ±0.5%) at the reference + IREF 1/2 REF200 V IN output. Positive supply voltage must be 1.25V above the desired OPA237 10k 100 reference voltage. For example, with V+ = 2.7V, only the ±10mV 1.24V reference (V REFBG) can be used. If using dual
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PDF
ina139.pdf
using the current source method shown on the right hand side of Figure 14 . With this method, a REF200 constant current source is used to generate a constant output offset. Using this method. the gain is determined by R and the offset is L determined by the product of the value of the current source and R . L 3 4 V 3 4 V+ R INA139 R INA139 REF200 1 100 µA VO VO 1 1 R R 2 L Copyright © 2017, Texas Instruments Incorporated (1) Gain set by R || R . Output offset = (V ) R / (R + R ) using resistor divider. 1 2 R 2 1 2 (2) Gain set by RL. Output
in „DC-Strom messen 0-1A Ausgang 0-10V“ · Analoge Elektronik und Schaltungstechnik ·
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INA138.pdf
2. Buffering Output to Drive A/D Converter. FIGURE 3. Output Filter. 3 4 VR 3 4 V+ INA138 INA138 REF200 R 1 100µA V0 V0 1 1 R 2 R L Gain Set by1R 2R Gain Set by L Output Offset =R)R2 Output Offset = (100µL)(R ) R1+R2 (independent of V+) a). Using resistor divider. b). Using current source. FIGURE 4
in „AD8628/AD8629/AD8630 Instrumentenverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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INA138.PDF
2. Buffering Output to Drive A/D Converter. FIGURE 3. Output Filter. 3 4 VR 3 4 V+ INA138 INA138 REF200 R 1 100µA V0 V0 1 1 R 2 R L Gain Set by1R 2R Gain Set by L Output Offset =R)R2 Output Offset = (100µL)(R ) R1+R2 (independent of V+) a). Using resistor divider. b). Using current source. FIGURE 4
in „Stromverbrauch am Akku messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM10.pdf
drift 60 90 pA/˚C Line regulation 1.2V (1.3V) ≤S ≤6.5V 0.001 0.01 0.001 0.02 %/V 0≤IREF≤0.5 mA, REF=200 mV 0.02 0.03 %/V 3 www.national.com 0 1 M Electrical Characteristics (Continued) L TJ=25˚C, T MIN≤T JT MAX (Boldface type refers to limits over temperature range) (Note 5) Parameter Conditions LM10BL
in „Labornetzgerät als Projekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA139_Copy.pdf
ideas are illustrated in Figures 4 through 7. INA139, INA169 6 www.ti.com SBOS181C 3 3 4 VR 4 V+ REF200 INA139 R1 INA139 100µA V O V O 1 1 R R 2 L Gain Set by R R 1 2 Gain Set by L (VR)R2 Output Offset = (100µAL(R ) Output Offset R + R (independent of V+) 1 2 a) Using resistor divider. b) Using current
in „genauer Messshunt für kleinere Ströme gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM10.PDF
˚C 60 90 pA/˚C Line regulation 1.2V (1.3V) ≤V ≤40V 0.001 0.003 0.001 0.008 % /V S 0≤IREF≤1.0 mA, REF=200 mV 0.006 0.01 % /V www.national.com 2 Electrical Characteristics (Continued) T =25˚C, T ≤T ≤T (Boldface type refers to limits over temperature range) (Note 5) J MIN J MAX Parameter Conditions LM10
in „Suche Batteriewächter“ · Analoge Elektronik und Schaltungstechnik ·
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ina139-q1.pdf
wide range of circuitry. A few ideas are illustrated in Figure 4 through Figure 7. 2 1 2 1 V R V+ REF200 INA139 R 1 INA139 100 A 1 VO 1 VO R 2 R L Gain Set by R R Gain Set by R 1 2 L Output Offset =R)R2 Output Offset = (100 AL(R ) R1+ R 2 (independent of V+) a) Using resistor divider b) Using current
in „200A Shunt und Ina139“ · Mikrocontroller und Digitale Elektronik ·
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fhs_40-p_sp600.pdf
front end electronics control Drift, Offset Sensitivity 3.03 *Rref sign change Programmer Standby R ref 200 Ohm Hall biasing and temperature comp. Bandgap Ref. 1.23V 200 Ohm 0V Ref calibration V Ref Page 2/18 100727/10 LEM reserves the right to carry out modifications on its transducers, in order to improve
in „Stromsensor CT220: Welche Stromstärken messen die verschiedenen Varianten?“ · Analoge Elektronik und Schaltungstechnik ·
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ina169.pdf
ideas are illustrated in Figures 4 through 7. INA139, INA169 6 www.ti.com SBOS181D 3 3 4 VR 4 V+ REF200 INA139 R1 INA139 100µA V O V O 1 1 R R 2 L Gain Set by R R 1 2 Gain Set by L (VR)R2 Output Offset = (100µAL(R ) Output Offset R + R (independent of V+) 1 2 a) Using resistor divider. b) Using current
in „Stromaufnahme von Digitaleservo mit ADC messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv8833.pdf
shown below: OCP VM VM VCP, VINT xOUT1 xIN1 Pre- DCM drive xOUT2 xIN2 PWM OCP - xISEN + Optional REF (200mV) Figure 1. Motor Control Circuitry Bridge Control and Decay Modes The AIN1 and AIN2 input pins control the state of the AOUT1 and AOUT2 outputs; similarly, the BIN1 and BIN2 input pins control the
in „TI DRV8833 Muss man den PWM Pin wechseln?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS1211.pdf
REF200 100µA 100µA A B 3 +In 7 1 5 RG INA118 AIN REF 8 6 IN 1.0µF R 1 R2 A N REF 100Ω 100Ω IN OUT –In 2 4 AGND AV AV AGND DD DD AGND AGND VBIAS MODE DV R3 DD CS ADS1210 DRDY 14kΩ C 1 DGND 12pF DSYNC SDOUT
in „Hardware SPI vs. BIT BANGING AD Wandler“ · Mikrocontroller und Digitale Elektronik ·
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AoE3_chapter9.pdf
40 Voltage (volts) SST505 LND150 IXCP10M90 Figure 9.37. Measured current versus voltage for the REF200 two- terminal current source (parallel connection of the 100 200Ω 300Ω lator and LED Driver” devices from ON Semi- C. D. E. conductor. These are inexpensive ($0.10–$0.20 in Figure 9.36. 2-terminal
in „Labornetzgerät - Fragen zum Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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ads8684.pdf
a 89 -----± 2.5*REF i -----± 1.25REF ±160 S88.5 ----- ± 0.62REF ------ +2.5*V 88 ------+1.25*V REF ±200 87.5 0 50000 100000 150000 200000 250000 100 1000 10000 Input Frequency (Hz) C034 Input Frequency (Hz) C035 Number of points = 64k, f = 1 kHz, SNR = 89.55 dB, IN SINAD = 89.4 dB, THD = 104 dB, SFDR
in „Problem mit der SPI Datenübertragung zwischen einem Arduino Portenta H7 und einem ADS8684 (ADC)“ · Mikrocontroller und Digitale Elektronik ·
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EKG_usw_Informationformedicalapplications_von_TI.pdf
10.0 0.1%/0.05%/ 10/5/2.5 20 5 1.4 –25 to +85 PDIP-8, SOIC-8 1.65/4.15/ buried Zener 0.025% 4.85 REF200 Dual current reference Two 100 µA ±1 µA 25 (typ) — — — –25 to +85 PDIP-8, SOIC-8 2.54 with current mirror 1 Suggested resale price in U.S. dollars in quantities of 1,000. For a complete product listing
in „EKG Schaltung Neuling“ · Analoge Elektronik und Schaltungstechnik ·
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kicad_8450_dcm_liste_neu_v3.pdf
references 5V REF196 Precision voltage references 3.3V REF198 Precision voltage references 4.096V REF200AU 2x100μA Current Sources/Sinks with Current Mirror REF3012 1.25V 50-ppm/°C Max, 50-μA, CMOS Voltage Reference in SOT-23-3 REF3020 2.048V 50-ppm/°C Max, 50-μA, CMOS Voltage Reference in SOT-23-3 REF3025
in „KiCAD Eeschema, Bibliotheksdokumentation *.dcm als PDF-Datei“ · Platinen ·