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ina326.pdf
, and Circuit Values for detail. 0.2 400k 40k || 2.5 VIN− 1 RO 0.5 400k 100k || 1 4 VO 100Ω 1 400k 200k || 0.5 6 2 200k 200k || 0.5 R1 INA326 VOFiltered 8 CO(1) 5 80k 200k || 0.5 5 1µF G = 2(R2/R1) 10 40k 200k || 0.5 3 VIN+ (3) O = 1kHz 20 20k 200k || 0.5 50 8k 200k || 0.5 R (1) 2 C 2 100 4k 200k ||
in „Spannungsmesserbau mit XMega128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0900766b80e31c6b.pdf
specifications. PACKAGE/ORDERING INFORMATION (1) PACKAGE PACKAGE PRODUCT GAIN PACKAGE DESIGNATOR MARKING INA210 200V/V SC70-6 DCK CET INA210 200V/V Thin QFN-10 RSW KNJ INA211 500V/V SC70-6 DCK CEU INA212 1000V/V SC70-6 DCK CEV INA213 50V/V SC70-6 DCK CFT INA213 50V/V Thin QFN-10 RSW KPJ INA214 100V/V SC70-
in „bidirektionale Strommessung Frage“ · Mikrocontroller und Digitale Elektronik ·
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INA138.pdf
TA= +25°C, V+ = 5V, VIN= 12V, RL= 125k , unless otherwise noted. STEP RESPONSE STEP RESPONSE 200mV G = 1 G = 25 1V/div 100mV 0V 50mV/div 100mV G = 1 G = 10 500mV/div 0mV 0V 10 s/div 10 s/div ® 5 INA138, INA168 BASIC CONNECTION OPERATION Figure 1 shows the basic connection of the INA138. The Figure
in „AD8628/AD8629/AD8630 Instrumentenverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA138.PDF
TA= +25°C, V+ = 5V, VIN= 12V, RL= 125k , unless otherwise noted. STEP RESPONSE STEP RESPONSE 200mV G = 1 G = 25 1V/div 100mV 0V 50mV/div 100mV G = 1 G = 10 500mV/div 0mV 0V 10 s/div 10 s/div ® 5 INA138, INA168 BASIC CONNECTION OPERATION Figure 1 shows the basic connection of the INA138. The Figure
in „Stromverbrauch am Akku messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA121.pdf
input protection can with- WIDE SUPPLY RANGE: ±2.25V to ± 18V stand up to ±40V without damage. The INA121 is laser-trimmed for very low offset LOW NONLINEARITY ERROR: 0.001% max INPUT PROTECTION TO ±40V voltage (±200 V), low offset drift (±2 V/°C), and high common-mode rejection (106dB at G = 100). It
in „Instrumentenverstärker INA121 hat zu hohe Verstärkung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA114.pdf
common-mode rejection. This is achieved by 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
in „Genaue Funktion eines Schaltungsteiles“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina114.pdf
common-mode rejection. This is achieved by 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
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina199.pdf
dimensions are nominal Device Package Type Package Drawing Pins SPQ Length (mm) Width (mm) Height (mm) INA199A1DCKR SC70 DCK 6 3000 202.0 201.0 28.0 INA199A1DCKR SC70 DCK 6 3000 180.0 180.0 18.0 INA199A1DCKR SC70 DCK 6 3000 195.0 200.0 45.0 INA199A1DCKT SC70 DCK 6 250 195.0 200.0 45.0 INA199A1DCKT SC70 DCK
in „INA199 so einfach?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA114.pdf
common-mode rejection. This is achieved by 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
in „Differnezverstärker für Strommessung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA114.pdf
common-mode rejection. This is achieved by 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
in „Messen von Mikrofonpegeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina114.pdf
common-mode rejection. This is achieved by 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
in „OP INA114 Regelt nur bis 2,25V am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina121.pdf
input protection can with- WIDE SUPPLY RANGE: ±2.25V to ± 18V stand up to ±40V without damage. The INA121 is laser-trimmed for very low offset LOW NONLINEARITY ERROR: 0.001% max INPUT PROTECTION TO ± 40V voltage (±200 V), low offset drift (±2 V/°C), and high common-mode rejection (106dB at G = 100).
in „Pulsmessung über Kontaktflächen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA111_BB.pdf
amp 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 of the input op amps of the INA111 is approximately ±12V (or 3V from the power NOTE: (1) For wider trim range required 100µA supplies). As the output voltage increases, however, the in high gains, scale resistor values larger/2 REF200
in „INA111 als Verstärker für Solarzelle?“ · Analoge Elektronik und Schaltungstechnik ·
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ina111.pdf
amp 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 of the input op amps of the INA111 is approximately ±12V (or 3V from the power NOTE: (1) For wider trim range required 100µA supplies). As the output voltage increases, however, the in high gains, scale resistor values larger/2 REF200
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OP_INA2126PA.pdf
16-Pin DIP, SO-16, SSOP-16 Dual INA2126PA DIP-16 INA2126PA – – INA2126P DIP-16 INA2126P V INA 1 16 VINB V INA 2 15 VINB INA2126UA SO-16 INA2126UA INA2126U SO-16 INA2126U R 3 14 R (2) GA GB INA2126EA SSOP-16 INA2126EA " " " RGA 4 13 RGB
in „OPV Signal von µV Bereich verstärken“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina128.pdf
Current-feedback input circuitry provides wide D WIDE SUPPLY RANGE: +2.25V to +18V bandwidth even at high gain (200kHz at G = 100). D LOW QUIESCENT CURRENT: 700µA A single external resistor sets any gain from 1 to 10,000. D 8-PIN PLASTIC DIP, SO-8 The INA128 provides an industry-standard gain equation; the INA129
in „Probleme Spannungsmessung mit INA 128“ · Mikrocontroller und Digitale Elektronik ·
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INA125.pdf
REF G provides an accurate voltage source for bridge applications. Figure 1. V+ SLEEP (1) 0.1µF 1 2 INA125 DESIRED GAIN R NEAREST 1% VREFCOM 12 G (V/V) ( ) R GALUE ( ) (2) 4 NC NC R 13 5 60k 60.4k V REFG 10 10k 10k 20 3750 3740 R 50 1304 1300 100 625 619 V 2.5 14 200 306 309 REF 2R 500 121 121 1000 60
in „Signal einer Wägezelle auswerten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA125.pdf
REF G provides an accurate voltage source for bridge applications. Figure 1. V+ SLEEP (1) 0.1µF 1 2 INA125 DESIRED GAIN R NEAREST 1% VREFCOM 12 G (V/V) ( ) R GALUE ( ) (2) 4 NC NC R 13 5 60k 60.4k V REFG 10 10k 10k 20 3750 3740 R 50 1304 1300 100 625 619 V 2.5 14 200 306 309 REF 2R 500 121 121 1000 60
in „Verstärker für Messbrücke“ · Analoge Elektronik und Schaltungstechnik ·
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INA101.pdf
DIP 169 INA101CG 14-Pin Ceramic DIP 169 propriateprecautions.Failuretoobserveproperhandlingand INA101HP 14-Pin Plastic DIP 010 installation procedures can cause damage. INA101KU SOL-16 Surface-Mount 211 INA101SG
in „Pulsmessung und Anzeige der Pulswelle auf einem LCD Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina125.pdf
REF G provides an accurate voltage source for bridge applications. Figure 1. V+ SLEEP (1) 0.1µF 1 2 INA125 DESIRED GAIN R NEAREST 1% VREFCOM 12 G (V/V) ( ) R GALUE ( ) (2) 4 NC NC R 13 5 60k 60.4k V REFG 10 10k 10k 20 3750 3740 R 50 1304 1300 100 625 619 V 2.5 14 200 306 309 REF 2R 500 121 121 1000 60
in „Kraftsensor PSD-S1 in Verbindung mit INA125“ · Analoge Elektronik und Schaltungstechnik ·
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ina125.pdf
REF G provides an accurate voltage source for bridge applications. Figure 1. V+ SLEEP (1) 0.1µF 1 2 INA125 DESIRED GAIN R NEAREST 1% VREFCOM 12 G (V/V) ( ) R GALUE ( ) (2) 4 NC NC R 13 5 60k 60.4k V REFG 10 10k 10k 20 3750 3740 R 50 1304 1300 100 625 619 V 2.5 14 200 306 309 REF 2R 500 121 121 1000 60
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ina105.pdf
Amplifier. ® 9 INA105 INA105 INA105 2 5 V 2 R 2 5 6 R V 6 V 3 1 1 01 V 1 3 1 IO= (V1– V2) (1/25k + 1/R) For R≅ 200 , Figure 24 will Load O provide superior performance. V2 FIGURE 19. Precision Voltage-to-Current Converter
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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ina139-q1.pdf
SEPTEMBER 2003 − REVISED APRIL 2008 FEATURES DESCRIPTION D Qualified for Automotive Applications The INA139 and INA169 are high-side, unipolar, current D ESD Protection Exceeds 2000 V Per shunt monitors. Wide input common-mode voltage range, MIL-STD-883, Method 3015; Exceeds 200 V high-speed, low quiescent
in „200A Shunt und Ina139“ · Mikrocontroller und Digitale Elektronik ·
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0900766b80c827e9.pdf
Rejection Ratio (PSRR) is specified in µV/V. For the INA332, worst case PSRR is 200µV/V, which means networks. Also, R Xnd C caL be added to reduce high- frequency noise. for each volt of change in power supply, the offset may shift up to 200µV. Common-Mode
in „Magnetfeldsensor mit LED Display“ · Mikrocontroller und Digitale Elektronik ·
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EKG_usw_Informationformedicalapplications_von_TI.pdf
max) (max) (min) (typ) Swing (V) (min) (V) (max) Package(s) Price1 High-Side Current Shunt Monitors INA138 36V max 1 200 1000 1 100 0.8 0 to (V+) –0.8 +2.7 to 36 0.045 SOT23-5 0.95 INA139 High-Speed, 40V max 1 1000 1000 1 100 4.4 0 to (V+) –0.9 +2.7 to 40 0.125 SOT23-5 0.95 INA168 60V max 1 200 1000 1
in „EKG Schaltung Neuling“ · Analoge Elektronik und Schaltungstechnik ·
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INA139_Copy.pdf
SpecificationMINto TMAX –40 85 ✽ ✽ °C Operating –55 125 ✽ ✽ °C Storage –65 150 ✽ ✽ °C Thermal Resistance θJA 200 ✽ °C/W ✽ Specification same as for the INA139NA. NOTE: (1) Defined as the amount of input voltSENSEV to drive the output to zero. INA139, INA169 3 SBOS181C www.ti.com TYPICAL CHARACTERISTICS At T =
in „genauer Messshunt für kleinere Ströme gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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INA102.pdf
+In 3 x100 e 7 11 IN 6 INA102 14 10 –In 9 –15V e OUT +15V 15 12 +In 3 x100 7 11 INA102 6 14 10 –In 9 Overall Gain = OUT/ IN= 200 –15V FIGURE 15. Differential Input/Differential Output Amplifier (twice the gain of one INA). ® +15V 11 S 12 1 15 +In 16 1 3 x100 S 2 1/2 7 11 9 8 e DG5043CJ INA102 IN 6 1/2 S 3 10 0.1µF 3 4 14 –In DG5043CJ S 15 13 14 9 1k 5 4 6 e OUT Reference 10 –15V OPA111 or OPA121 +15V 11 DG5040CJ S 5 16 1 15 13 14 200µs Control –15V CONTROL S S S S S MODE All switches
in „Pulsmessung und Anzeige der Pulswelle auf einem LCD Display“ · Mikrocontroller und Digitale Elektronik ·
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INA163_datasheet.pdf
APPLICATIONS tion to extremely low levels, even in high gain. The PROFESSIONAL MICROPHONE PREAMPS INA163 provides near-theoretical noise performance MOVING-COIL TRANSDUCER AMPLIFIERS for 200 source impedance. Its differential input, low DIFFERENTIAL RECEIVERS noise, and low distortion provide superior
in „Frage zu Schutzdioden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina105.pdf
Amplifier. ® 9 INA105 INA105 INA105 2 5 V 2 R 2 5 6 R V 6 V 3 1 1 01 V 1 3 1 IO= (V1– V2) (1/25k + 1/R) For R≅ 200 , Figure 24 will Load O provide superior performance. V2 FIGURE 19. Precision Voltage-to-Current Converter
in „Spannungs / Strom Wandler mit Offset versehen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina139.pdf
–65 150 °C Thermal resistanceJAθ 200 °C/W (1) Defined as the amount of voltagSENSE) to drive the output to zero. 6 Submit Documentation Feedback Copyright © 2000–2017, Texas Instruments Incorporated Product Folder Links: INA139 INA169
in „DC-Strom messen 0-1A Ausgang 0-10V“ · Analoge Elektronik und Schaltungstechnik ·
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ina169.pdf
SpecificationMINto TMAX –40 85 ✽ ✽ °C Operating –55 125 ✽ ✽ °C Storage –65 150 ✽ ✽ °C Thermal Resistance θJA 200 ✽ °C/W ✽ Specification same as for the INA139NA. NOTE: (1) Defined as the amount of input voltSENSEV to drive the output to zero. INA139, INA169 3 SBOS181D www.ti.com TYPICAL CHARACTERISTICS At T =
in „Stromaufnahme von Digitaleservo mit ADC messen“ · Mikrocontroller und Digitale Elektronik ·
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Texas_Instruments_INA105_Precision_Unity_Gain_Differential_Amplifier.pdf
Amplifier. ® 9 INA105 INA105 INA105 2 5 V 2 R 2 5 6 R V 6 V 3 1 1 01 V 1 3 1 IO= (V1– V2) (1/25k + 1/R) For R≅ 200 , Figure 24 will Load O provide superior performance. V2 FIGURE 19. Precision Voltage-to-Current Converter
in „INA105 Invertierungsproblem“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Ver6.ino
/draw keypad entry buttons keyPadEntry(); //keypad input entry routine } } if ((y >= 180) && (y <= 200)) //keypad top row coordinates { if ((x >= 110) && (x <= 180)) //Output ON button selected { digitalWrite(A2, HIGH); //switch output voltage ON } } if ((y >= 180) && (y <= 200)) //keypad top row { if
in „TFT-Touchscreen leicht verschoben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX4249-MAX4257.pdf
Configurations TOP VIEW (BUMPS ON BOTTOM) 1 2 3 A1 A2 A3 A4 A OUTA VDD OUTB OUTB INB- INB+ SHDNB B1 B4 B INA- MAX4252 INB- VDD MAX4253 VSS C1 C2 C3 C4 C INA+ SS INB+ OUTA INA- INA+ SHDNA UCSP UCSP Pin/Bump Configurations continued at end of data sheet. UCSP is a trademark and µMAX is a registered trademark
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PDF
max5056.pdf
15 V V DDUndervoltage Lockout UVLO V DD rising 3.00 3.50 3.85 V V DDUndervoltage Lockout Hysteresis 200 mV V DDUndervoltage Lockout to Output Delay V DD rising 12 µs INA- = INB- = DD, VDD = 4V 28 55 IDD INA+ = INB+ = 0V µA V = 15V 40 75 (not switching) DD V DDSupply Current INA- = 0V, INB+ = DD= 15V,
in „Dual Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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2207251030_Mixic-MX1616H_C5119044-1.pdf
VDD1 OUTB1 8 VDD2 100uF- C3 1.8V-5V 1 M1 470uF VCC1 0.1uF 5 VCC2 C1 4.7uF 16 OUTA1 C2 INB1 3 INB1 INA1 2 INA1 9 OUTB2 INB2 7 INB2 6 INA2 INA2 C4 M2 15 0.1uF GND 14 GND 11 GND 12 10 OUTA2 GND Chongqing Zhongkexin Yida Electronics Co., Ltd. Shenzhen Rev1.2 2020-12-11 www.mixic.com.cn Office: Room 1408
in „MX1616H Dual H-Bridge Motor Driver“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA186.pdf
: – INA186A4: 200 V/V – INA186A5: 500 V/V 25 V/V, 50 V/V, 100 V/V, 200 V/V, or 500 V/V. The device is specified over the operating temperature 2 Applications range of –40°C to +125°C, and offered in SC70, •
in „INA186 Noise Problem“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
vnh2sp30.pdf
to 150 °C T Storage Temperature -55 to 150 °C STG Figure 4. Current and Voltage Conventions I S VCC INA VCC INA IOUTA IINB OUT A IN OUTB IENA B OUT B I VOUTA DIAG /EN CS SENSE I A A ENB VSENSE VOUTB DIAG BEN B VINA PWM GND A GND B V INB Ipw VENA GND VENB IGND V pw 4/26 VNH2SP30-E Table 7. Thermal Data
in „25A Regler per PWM“ · Mikrocontroller und Digitale Elektronik ·
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ADS1293_3_Kanal_24BIT_EKG_SPI_Dez_2014.pdf
High Cap Drive 50 4.5 36 0: Low BW mode 11: High Cap Drive 50 8 55 1: High BW mode 00: Low Cap Drive 200 0.4 23 1: High BW mode 01: Medium Low Cap Drive 200 0.65 29 1: High BW mode 10: Medium High Cap Drive 200 1 39 1: High BW mode 11: High Cap Drive 200 1.6 60 8.3.14 Error Status: RLD Rail The RLD amplifier
in „Warum soll ADS1293 mit einem 4,096 MHz Quarz betrieben werden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS1293_3_Kanal_24BIT_EKG_SPI_.pdf
electrodes. The maximum differential input voltage range of the Sigma-Delta Modulator (SDM) behind the INA is ±1.4V, and the gain of the INA is 3.5x. Therefore, the maximum differential input voltage of the INA is ±400mV. The input common-mode voltage range (CMVR) of the INA is 0.95V to VDD-0.95V. If the
in „EKG-IS ADS1293 rückt keine Messwerte raus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Orion_Rev_3.0__1_.pdf
DB6 51 1 6 9 1 V- 9 DA7 28 INA7 V- 12 12 DB7 52 20 V- 17 ENC DA8 29 INA8 C J31 C76 C75 GND V- R45 DB8 53 C 3 DA9 INA9 100NF 100PF 51 DB9 30 1 LTC6400-20 R44 DA10 54 INA10 DB10 33 2 55 INA11 51 13 DA11 34 RX1 IN MICRO COAXIAL L11
in „Suche Firma die für Privat BGA FPGA reballing macht“ · Markt ·
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INA137.pdf
div ® 7 INA137, INA2137 The INA137 and INA2137 have excellent distortion charac- APPLICATIONS INFORMATION teristics. THD+Noise is below 0.001% throughout the audio The INA137 and INA2137 are differential line receivers
in „Differenzverstärker IC gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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ucc37324.pdf
IN to OUT) C LOAD= 1.8 nF, See Figure 1 35 50 ns overall PARAMETER TEST CONDITION MIN TYP MAX UNITS INA = 0 V, INB = 0 V 300 450 INA = 0 V, INB = HIGH 300 450 UCCx7323 INA = HIGH, INB = 0 V 300 450 INA = HIGH, INB = HIGH 300 450 INA = 0 V, INB = 0 V 2 50 INA = 0 V, INB = HIGH 300 450 IDD, static operating current UCCx7324 µA INA = HIGH, INB = 0 V 300 450 INA = HIGH, INB = HIGH 600 750 INA = 0 V, INB = 0 V 150 300 INA = 0 V, INB = HIGH 450 600 UCCx7325 INA = HIGH, INB = 0 V 150 300 INA = HIGH, INB = HIGH 450 600 NOTES: 1. Ensured
in „Wofür einen Mosfet Treiber?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Bauteile.pdf
LP2951ACD-3.3G LM2936HVMA-5.0 LDO LDO 5V 50mA 4 926-LM2936HVMA50NOPB 2,81 € TPS7A0533PDBZR LDO 5,5V 3,3V 200mA 3 595-TPS7A0533PDBZR 0,76 € MCP1811BT-033/TT LDO 5,5V 3,3V 150mA 3 LM2941LD LDO 26V Adj 1A 926-LM2941LD/NOPB 2,66 € TPS79030DBVT LDO 10V 3,0V 50mA 7 595-TPS79030DBVT 1,97 € MSP430F2252TRHAT MCU 1
in „[V] diverse Bauteile“ · Markt ·
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PDF
Vollbr_cke_VNH3SP30.pdf
temperature -40 to 150 °C TSTG Storage temperature -55 to 150 °C CURRENT AND VOLTAGE CONVENTIONS ICC V I CC INA VCC I INA OUT OUTA INB A I INB OUT OUTB ENA B V OUTA DIAG AEN A IENB V OUTB DIAG BEN B PWM GND A GND B pw GND V IGND VINA VINB VENA ENB Vpw 4/26 VNH3SP30 THERMAL DATA See MultiPowerSO-30 Thermal Data
in „VNH3SP30 auch als Halbbrücke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX961-MAX999.pdf
MAX962 MAX963 MAX964 A 1, 5 — — — — — N.C. No Connection. Not internally connected. 2 4 2 2 1 1 IN-, INA-Comparator A Inverting Input M – 3 3 1 1 2 2 IN+, INA+ Comparator A Noninverting Input 1 LE, LEA, Latch-Enable Input. The output latches when LE_ 6 — — 4 — 3, 5 — LEB is high. The latch is transparent
in „Komparator gesucht bis 20 Mhz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX941-MAX944.pdf
trademark of Maxim Integrated Products, Inc. Pin Configurations TOP VIEW MAX941 MAX942 OUTA 1 14 OUTD INA-2 13 IND- V+ 1 8 N.C. OUTA 1 8 V+ A D + 2 2 INA+ 3 12 IND IN 7 OUT INA- A 7 OUTB V+ 4 11 GND IN-3 6 GND INA 3 6 INB- MAX944 4 4 B INB 5 10 INC SHDN 5 LATCH GND 5 INB INB-6 B C 9 INC- DIP/SO/µMAX DIP
in „Verstärkung 2V -> 3.3V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ISO124.pdf
°C Nonlinearity) ±0.005 ±0.010 %FSR INPUT OFFSET VOLTAGE Initial Offset ±20 ±50 mV vs Temperature ±200 V/°C vs Supply ±2 mV/V Noise 4 V/√Hz INPUT Voltage Range ±10 ±12.5 V Resistance 200 k OUTPUT Voltage Range ±10 ±12.5 V Current Drive ±5 ±15 mA Capacitive Load Drive 0.1 F (3) Ripple Voltage 20 mVp-p
in „Optokoppler etc“ · Mikrocontroller und Digitale Elektronik ·
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PDF
El_2017_0506_118-125.pdf
und die Ladung ist beendet. Formatierungsprozess läuft. • LED1 = rot. Ladephase. Der Ladestrom ist >200 mA. Bei Betätigung von S2 blinkt die LED solange, bis die Entladeschlussspannung von 3 V erreicht ist. Alle Prozesse • LED1 = grün. Ladephase. Der Ladestrom ist 80...200 mA. kann man jederzeit durch
in „Ladezustand von Li-Ion-Akku messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX4465-MAX4469.pdf
Selector Guide EXTERNAL PART MINIMUM STABLE MICROPHONE GBWP PIN-PACKAGE GAIN (kHz) SHDN MAX4465 +1 No 200 5 SC70/5 SOT23 MAX4466 +5 No 600 5 SC70/5 SOT23 MAX4467 +1 Yes 200 8 SOT23/8 SO MAX4468 +5 Yes 600 8 SOT23/8 SO MAX4469 +1 No 200 8 SOT23/8 SO Pin Configurations (continued) GND 1 8 OUT MIC_BIAS 8 SHDN OUTA1 8 VCC IN+ 2 MAX4467 7 VCC IN-2 7 VCC INA-2 7 OUTB MAX4468 MAX4468 MAX4469 IN- 3 6 SHDN IN+3 6 OUT INA+3 6 INB- MIC_BIA4 5 N.C. GND 4 5 N.C. GND 4 5 INB+ SOT23 SO SOT23/SO 10 _________________________________________________________________
in „Funktioniert denn kein Mikrofon-Vorverstärker?!?“ · Analoge Elektronik und Schaltungstechnik ·