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PDF
CD00043711.pdf
conditions Min Typ Max Unit Operating supply VCC 5.5 16 V voltage Off state with all Fault Cleared & ENx=0 INA = INB= PWM = 0; T j 25°C; V CC = 13V 12 30 µA INA = INB= PWM = 0 60 µA S Supply current Off state: AN = IB = PWM = 0 2 mA On state: INA or IB = 5V, no PWM 10 mA R Static high side IOUT = 15A; Tj= 25
in „Warum Serienwiderstände zwischen µC-I/O und Motortreiber-I/O?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Strommessung.pdf
BUTTON_{OK}} 7 1A 5k1 5k1 D 61 8 _ PB8 62 MP D PB9 GND S PB10 29 F201 30 ~{BUTTON_{OK}} 1A PB11 PB12 33 INA_{~{CS}} 1 34 INA_{SCK} U208 2 PB13 INA239 J204 PB14 35 6 3 36 S R205 4 S S PB15 1 CS V VBUS 8 10R S S 5 10 V V 2 SCK IN+ 9 2 1 D 1 1 MOSI IN- D R201 R202 U202 4 C219 R207 D204 2k 2k STM32L476RGTx 3 MISO D 3 R_Shunt SMBJ6.5CA ALERT N 10n INA_{MOIS} G 4 F204 DJ201 INA_{MISO} 7 1A E 10R O 1 R206 2 6 3 3 D 4 L A S MP S S S U201 5 P 6 U U204 1 C C 5 D201 D203 D202 3 - A 6 4 6 _ U205 1 C 5.0SMDJ51A 5.0SMDJ51A 5.0SMDJ51A L V 3 4 6 B RV-3032-C7
in „Prüfung Schaltplan Power Profiler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ISO124P_datasheet.pdf
demodulation process. 8.2 Functional Block Diagram Isolation Barrier 200µA 200µA 1pF 1pF 1pF Sense 1pF 100µA 100µA Sense 150pF 150pF 200kΩ 200kΩ VIN VOUT A2 A1 S/H S/H G = 1 G = 6 Osc +VS1 Gnd 1 –VS1 +VS2 Gnd 2 –VS2 8 Submit Documentation Feedback Copyright © 1997–2016,
in „Schaltungsaufbau Isolierverstärker für Analogsignal mit Texas Instr. ISO124“ · Analoge Elektronik und Schaltungstechnik ·
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LTspice Schaltplan und Wellenform-Simulation
LTspice XVII QSD-3253-INA.raw File View Plot Settings Simulation Tools Window Help QSD-3253-INA.raw V(HF,Vref)-0.82mV 700uV 0uV -700uV V(I0,Vref)-1.25mV 250uV 0uV -250uV V(1180,Vref)-0.45mV 450uV 0uV -450uV V(I01,I180)+0.001V 180mV 0mV -90mV V(Q90,I270)-1.2mV 200uV 0uV -200uV V(Q270)-0.5mV 420uV 210uV 0uV -210uV -420uV V(VoutQ,Vref)+5mV 150mV 0mV -150mV 0.0ms 0.8ms 1.6ms R1 10k C1 100nF Q1 BC547 I1 100uA Q2 BC547 I2 100uA C10 C12 C13 R2 22k R3 22k R4 22k R5
in „Raspberry Pi Pico SDR“ · HF, Funk und Felder · · Screenshots
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Technical_Information_Isabellenhuette.pdf
convection has the larger share. page 6 Amps for an Overtemperature of: ISOTAN® 40°C 60°C 80°C 100°C 200°C Diameter Resistance Surface Load Surface Load Surface Load Surface Load Surface Load in mm in Ω/m I inA in W/cm² I inA in W/cm² I in in W/cm² I inA in W/cm² I inA in W/cm² 0,020 1560 0,0270 1,82 0,0342
in „Temperatur des Heizdrahtes berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Scheinwerfer_Steuerung.c
PORTD #define DiagEnA 1<<6 #define PDiagEnA PORTD #define DiagEnB 1<<7 #define PDiagEnB PORTB #define InA 1<<7 #define PInA PORTD #define InB 1<<6 #define PInB PORTB #define PHall1 PINC #define Hall1 1<<2 #define PHall2 PINC #define Hall2 1<<3 #define PPosit1 PINB #define Posit1 1<<1 #define PPosit2 PINB
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MCP6562.pdf
Configuration This test circuit configuration is used to determine the AC and DC specifications. V DD MCP656X 200 kΩ OUT 200 kΩ 200 kΩ V OUT 200 kΩ 25 pF V IN= VSS V SS= 0V FIGURE 1-1: AC and DC Test Circuit for the Push-Pull Output Comparators. DS22139B-page 4 © 2009 Microchip Technology Inc. MCP6561/1R/1U/2/4
in „Schmitttrigger mit MCP6562 unklare Abweichung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
008-0335-0.pdf
120 121 910 911 6.8K 682 51.0K 513 390K 394 18 180 130 131 1.0K 102 7.5K 752 56.0K 563 430K 434 20 200 150 151 1.1K 112 8.2K 822 62.0K 623 470K 474 22 220 160 161 1.2K 122 9.1K 912 68.0K 683 510K 514 24 240 180 181 1.3K 132 10.0K 103 75.0K 753 560K 564 27 270 200 201 1.5K 152 11.0K 113 82.0K 823 620K
in „Widerstandsarray Pitch 0,65mm“ · Analoge Elektronik und Schaltungstechnik ·
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WOMA_WM8040-XL_Mooardskiste_-Schaltplang.pdf
C131 VR135 R135 da fr(R IN5817 R132 GND 2 V- D131 1.3k O130 C135 4 RLo (red)10 100r 5 6 + 1uF R138 INA121P +5V 7 4 -5V L130 +5V G=1+(50k/Rg) 2 1 8 3 500 PTC 10K V133 ZD131 VR131 NTC +I(0-10A) 5V In+ 0.1A 1W 130a + out+ 1 500R 200 PTC PTC USP3 (27VAC) 10ohm - (12-60V) R 0 19 F131 F132 V132 V131 0 K 0-
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Current_Ref._100uA.pdf
FET. 10pF For IO= 1A, R = 0.1 , NR = 1k . 0.01µF NR R (e) FIGURE10. AdjustableCurrentSources. ® 9 REF200 INA110 R Instrumentation Amplifier Cable Shield OFFSET RTD VOUT= Gain • 200µA •RTD 200µA 200µA Reference Compensation Current Current +VS 8 7 6 5 I O A B C REF200 1 2 3 4 –VS FIGURE 11. RTD Excitation
in „Stromreferenz Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Bauteilliste2.txt
***Halbleiter 200Stk. BYV72E-100 Doppeldiode TO247 30A/100V 28ns 0,30.- 200Stk. BD441 Trans.NPN 4A/80V 0,10.- 200Stk. BD442 Trans.PNP 4A/80V 0,10.- 100Stk. BDX34C Trans. Darl.PNP 10A/100V 0,10.- 300Stk. BUZ74 Mosfet
in „[V] Bauteile THT“ · Markt ·
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Datei
Bauteilliste4.txt
***Halbleiter 150Stk. BYV72E-100 Doppeldiode TO247 30A/100V 28ns 0,30.- 200Stk. BD441 Trans.NPN 4A/80V 0,10.- 25Stk. BD442 Trans.PNP 4A/80V 0,10.- 50Stk. BDX34C Trans. Darl.PNP 10A/100V 0,10.- 250Stk. BUZ74 Mosfet N TO220 500V/2A/4Ohm 0,10.- 200Stk. BC546 Trans.NPN TO92 65V/100mA 0,02.- 9Stk. 80535 MC Siemens 8Bit inkl.68pol.THT Fassung 1,50.- 200Stk. MC14521 C-MOS 24Stage Div./Osz. DIP16 0.10.- 12Stk. ICM7211AIPL 4Dig.LCD Driver,MC Interface DIP40 1,00.- 3Stk. LCD 4 1/2 Dig,50x32 1,00.- 400Stk. TL084N 4 fach OV DIP14 0,15.- 11Stk. INA111AP Instr.Amp
in „[V] Bauteile THT“ · Markt ·
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PDF
1810211711_Gainsil-GS8331-TR_C157712.pdf
Measurements • Battery-Powered Instrumentation • Electronics Scales Pin Configuration GS8332 OUTA 1 8 VDD INA- 2 7 OUTB INA+ 3 6 INB- VSS 4 5 INB+ DFN-8 Figure 1. Pin Assignment Diagram A0 1/13 GS8331/32 Absolute Maximum Ratings Condition Min Max Power Supply VoltageDDto Vss) -0.5V +7.5V Analog Input Voltage
in „OpAmp für ph-sensor“ · Analoge Elektronik und Schaltungstechnik ·
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rudi_____RX-V4A_TSR-400.pdf
T32A06INA1/T32A06INC1/T32A06INB0/ 146 AINA13/PP5 TEST2 +3.3S_PON I I T32A07INB1/T32A07INC0/T32A07INA0/ 147 STBY_LED AC O O Standby LED control INT10b/AINA14/PP6 148 T32A07INA1/T32A07INC1/T32A07INB0/ DSP2_NIC
in „Test in der Schaltung STR3A400“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
5_-_STM32F_Connectivity_Line.pdf
32KHz + 4~16MHz ChipLCD Glass Storage Media 14.7456MHz Quartz (USB, SD card): MP3, WMA … S TM 32S em ina rN ov em b er2 01 0 STM32 Connectivity Line Industrial gateway implementation example CAN and Ethernet TCP/IP SW stacks STM32 Connectivity Line CORTEXTM-M3 128kB-256kB 72 MHz Flash Memory 48kB-64kB
in „STM32: Timer funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PSpice_LibraryguideOrCAD.pdf
SGS-Thomson Diode BYW51F-200/SGS BYW51F-200/SGS SGSTHOM.OLB SGS-Thomson Diode BYW51G-200/SGS BYW51G-200/SGS SGSTHOM.OLB SGS-Thomson Diode BYW77P-200/SGS BYW77P-200/SGS SGSTHOM.OLB SGS-Thomson Diode BYW77PI-200/SGS BYW77PI-200/SGS SGSTHOM.OLB SGS-Thomson Diode BYW80-200/SGS BYW80-200/SGS SGSTHOM.OLB SGS-Thomson Diode BYW81P-200/SGS BYW81P-200/SGS SGSTHOM.OLB SGS-Thomson Diode BYW81PI-200/SGS BYW81PI-200/SGS SGSTHOM.OLB SGS-Thomson Diode BYW98-200/SGS BYW98-200/SGS
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Bauteilliste3.txt
Siemens 8Bit inkl.68pol.THT Fassung 1,50.- 9Stk. 80535 MC Siemens 8Bit inkl.68pol.THT Fassung 1,50.- 200Stk. MC14521 C-MOS 24Stage Div./Osz. DIP16 0.10.- 12Stk. ICM7211AIPL 4Dig.LCD Driver,MC Interface DIP40 1,00.- 7Stk. LCD 4 1/2 Dig,50x32 1,00.- 400Stk. TL084N 4 fach OV DIP14 0,15.- 11Stk. INA111AP Instr.Amp
in „[V] Bauteile THT“ · Markt ·
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PDF
OPA128KM.pdf
55 +125 –55 +125 °C Storage Ambient Temp. –65 +150 –65 +150 –65 +150 –65 +150 °C θ Junction-Ambient 200 200 200 200 °C/W NOTES: (1) Offset voltage, offset current, and bias current are measured with the units fully warmed up. Bias current doubles approximately every 11°C. (2) Sample tested. (3) Overload
in „OPA 128 KM - veraltet?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Bauteilliste.txt
***Halbleiter 200Stk. BYV72E-100 Doppeldiode TO247 30A/100V 28ns 0,30.- 300Stk. BD441 Trans.NPN 4A/80V 0,10.- 300Stk. BD442 Trans.PNP 4A/80V 0,10.- 100Stk. BDX34C Trans. Darl.PNP 10A/100V 0,10.- 300Stk. BUZ74 Mosfet
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Datei
Bauteilliste.txt
***Halbleiter 200Stk. BYV72E-100 Doppeldiode TO247 30A/100V 28ns 0,30.- 300Stk. BD441 Trans.NPN 4A/80V 0,10.- 300Stk. BD442 Trans.PNP 4A/80V 0,10.- 100Stk. BDX34C Trans. Darl.PNP 10A/100V 0,10.- 300Stk. BUZ74 Mosfet
in „[V] Bauteile THT“ · Markt ·
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PDF
tps63031_buckboost.pdf
kHz Frequency range for synchronization 2200 2400 2600 kHz SW Average switch current limit VIN= V INA= 3.6 V, A = 25°C 900 1000 1100 mA High side switch on resistance V = V = 3.6 V 200 mΩ IN INA Low side switch on resistance VIN= V INA= 3.6 V 200 mΩ Maximum line regulation 0.5% Maximum load regulation
in „TPS63031 Beschaltungs-Frage“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tps63031.pdf
kHz Frequency range for synchronization 2200 2400 2600 kHz SW Average switch current limit VIN= V INA= 3.6 V, A = 25°C 900 1000 1100 mA High side switch on resistance V = V = 3.6 V 200 mΩ IN INA Low side switch on resistance VIN= V INA= 3.6 V 200 mΩ Maximum line regulation 0.5% Maximum load regulation
in „Seltsames SMD-Pad“ · Platinen ·
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PDF
opa376.pdf
OPA376 OPA2376 OPA4376 OPA376 OPA2376 OPA4376 www.ti.com SBOS406D –JUNE 2007–REVISED AUGUST 2010 An INA163 instrumentation amplifier provides The INA163 gain may be set from 0dB to 80dB by differential inputs and receives the balanced audio selecting the R value. The INA163 circuit is typical G signals
in „technische anforderungen“ · Analoge Elektronik und Schaltungstechnik ·
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RCV420.pdf
circuits 6b or 6c. In circuit 6b a power JFET and source resistor are used as a current limit. V+ The 200 potentiometer, R , isXadjusted to provide a current limit of approximately 30mA. This circuit introduces a 2N3970 1–4V drop at full scale. If only a very small series voltage 200 drop at full scale
in „Frage zu 4-20mA Receiver RCV420“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPS63031.pdf
current limit V IN= VINA= 3.6 V, A = 25°C 900 1000 1100 mA High side switch on resistance V = V = 3.6 V 200 mΩ IN INA Low side switch on resistance V IN= VINA= 3.6 V 200 mΩ Maximum line regulation 0.5% Maximum load regulation 0.5% Quiescent VIN and VINA I = 0 mA, V = V = V = 3.6 V, 25 35 A q O EN IN INA current
in „Spannungspeaks / Ripple durch Schaltregler. Abhilfe?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
armbian_modules.txt
helene mt312 tda10023 cxd2820r dib7000m mn88443x as102_fe af9013 lgs8gl5 sp887x dibx000_common nxt200x isl6421 dib9000 itd1000 au8522_dig stv0299 mn88472 si2168 tda10048 m88ds3103 au8522_common m88rs2000 zl10353 dib3000mc or51132 cx22702 dvb-pll stb0899 sp2 lgs8gxx tda10071 l64781 lnbp22 stv090x mb86a20s
in „Samba auf Banana Pi Pro installieren“ · PC Hard- und Software ·
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PDF
Photodiode2.pdf
a challenge better resolved with a capacitor tee network as described in Figure 4a. It is capable 200pF of even subpicofarad tunable capacitance with little effect on stray capacitance in the tuning operation. The tee uses a (b) R1 R 2 capacitive divider formed with C 2 and C t3 attenuate the 10M 10M
in „Beschaltung von Photodioden“ · Mikrocontroller und Digitale Elektronik ·
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AD8610_8620.pdf
Unitygainstable Figure1.8-LeadMSOPand8-LeadSOIC_N Nophasereversal Dual-supplyoperation:±5V to ±13V OUTA 1 8 V+ –INA 2 AD8620 7 OUTB APPLICATIONS +INA 3 TOP VIEW 6 –INB (Not to Scale) Photodiodeamplifiers V– 4 5 +INB - ATE 7 0 Instrumentation Figure2.8-LeadSOIC_N Sensorsandcontrols Highperformancefilters Fast precision
in „Regelbare Stromqulle verstehen“ · Analoge Elektronik und Schaltungstechnik ·
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Schaltplan Arduino Mega mit INA219 Strommessung
Arduino Mega, +5V, GND, SCL, SDA, 4x PullUps jeweils 12k, 200Ω, ADuM1250, Länge:30cm, VDD1, SDA1, SCL1, GND1, weitere I2C-Geräte, VDD2, SDA2, SCL2, GND2, 5V von Powerbank, Vcc, GND, SCK, SDA, INA219, Vin+, Lichtmaschine (48V DC), B+, 5k, 5k, B-
in „Spannung von Lichtmaschine messen mit INA219 und ADUM1250, EMV“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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PDF
Pena.pdf
power consumption is measured by using the As an application of the CNN inference on low-cost robotics INA219 power monitor IC from Texas Instruments. For the we setup a robot to follow a target autonomously. We use the Raspberry Pi and the Intel Joule the INA219 is attached to Raspberry Pi to capture images
in „USB 3.0 Verbrauchsmessgerät (sehr genau)“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan mit Arduino Mega, ADuM1250 und INA219
Arduino Mega, +5V, GND, SCL, SDA, 4x PullUps jeweils 12k, 200Ω, ADuM1250, VDD1, SDA1, SCL1, GND1, Länge:30cm, 2, 3, 4, 7, 6, 5, VDD2, SDA2, SCL2, GND2, 5V von Powerbank, Vcc, GND, SCK, SDA, INA219, Vin+, Lichtmaschine (48V DC), B+, 5k, 5k, B-, weitere I2C-Geräte
in „Spannung von Lichtmaschine messen mit INA219 und ADUM1250, EMV“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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PDF
opa128lm.pdf
55 +125 –55 +125 °C Storage Ambient Temp. –65 +150 –65 +150 –65 +150 –65 +150 °C θ Junction-Ambient 200 200 200 200 °C/W NOTES: (1) Offset voltage, offset current, and bias current are measured with the units fully warmed up. Bias current doubles approximately every 11°C. (2) Sample tested. (3) Overload
in „Verkaufe 15 x OPA128LM“ · Markt ·
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PDF
mcp6004.pdf
1 5 VSS PDIP, SOIC, TSSOP VDD 2 + - V IN + V + V – VOUTA 1 14 VOUTD IN 3 4 IN A D MCP6001 V OUT V INA 2 - + + - 13 VIND MCP6001U V + 12 V + - INA 3 IND SOT-23-5 VDD 4 11 VSS V SS VIN 1 + 5 VDD V INB 5 10 VINC V SS 2 - V INB 6 B+ C - 9 VINC R1 VIN 3 4 VOUT V V R 2 OUTB 7 8 OUTC R 1 Gain = 1 + -- V R
in „Nichtinvertierender Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
L4940TS.pdf
Total Power Dissipation vs Load Dissipation VDD = 12V, R L 8Ω, SE operation, V RIPPLE= 200mV p-p V DD = 12V, SE operation, IN= 1kHz, AV= 10, at (from top to bottom at 60Hz): at (from top to bottom at 1W): R = 4Ω, R = 8Ω C BYPASS = 1µF, CBYPASS = 4.7µF, CBYPASS = 10µF L L Figure 17. Figure
in „Kondensator Audio Amp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS_L6205N.pdf
VBOOT VCP CHARGE PUMP OVER OCD A CURRENT DETECTION OUT1A OUT2A THERMAL 10V 10V PROTECTION ENA GATE INA LOGIC SENSEA INA VOLTAGE 10V REGULATOR 5V BRIDGE A CURRENT OCD B DETECTION VSB OUT1B GATE OUT2B ENB LOGIC IN1 SENSEB B INB BRIDGE B D99IN1091A April 2002 1/18 L6205 ABSOLUTE MAXIMUM RATINGS Symbol Parameter
in „1. Schaltung Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Rauschmessung.pdf
F IC1 C 0 p 3 0 12 V X3-1 C 2 16 V m 11 2 2 15 8 - 13 1 X4-2 p 14 10 R3 R4 3 4 V 6 X4-1 m F 2 185k 200k V . 2 0 7 N C4 GND 0 X3-2 C 2 1 V+ G 5 V+ 9 0,022uF 2 1 3 +OFFS B k k 3 4 -OFFS V- 8 B 7 0 1 0 R6 INA103P V- GND R 1 R 1 Hochpass fg = 0,5Hz Tiefpass Instrumentation Amp. A=100 Unity-Gain Tschebeyscheff
in „Niederfrequenzmessung, Pegelanpassung, uC-Schutzbeschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
analogoptoisolatorintroduction.pdf
photocell. With rise and fall times on the order of 2.5 to 1500msec,mostAOIshavebandwidthsbetween1Hzand200Hz. Figure2.Resistancevs.Time Noise The sources of electrical noise in the output element of AOIs are the sameasforanyothertypeofresistor. Figure1.TransferCurves(25°C) One source of noise is thermal
in „Sanftes Schalten von Sinussignal (Alternativen zu MOSFET?)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
analogoptoisolatorintroduction.pdf
photocell. With rise and fall times on the order of 2.5 to 1500msec,mostAOIshavebandwidthsbetween1Hzand200Hz. Figure2.Resistancevs.Time Noise The sources of electrical noise in the output element of AOIs are the sameasforanyothertypeofresistor. Figure1.TransferCurves(25°C) One source of noise is thermal
in „Spannungsgeregelter Widerstand“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Strombelastbarkeit.pdf
480 V AC S 200 UP 489 240 V AC S 200 U 60 V DC S 200 UDC USA, Kanada 600 V AC S 220 1077 480 V AC S 200 M S 200 P 60 V DC 500 V DC S 200 M UC Schiffsklassifikationen S 200 S 200 P S 220 S 800 S 700 (GL) S 400 M GL LRS S 200 M UC BV DNV Bemessungsschalt- 6 000 max. 25 000 max. 10 000 max. 50 000 25 000 6 000 vermögen I /A 10 000 10 000 cn (230/400 V AC) InA ≤ 63 0,5 ... 63 ≤ 32 ≤ 125 ≤ 100 ≤ 63 10 2CDC401002D0106 Notizen
in „Kleiner Elektromotor wiegt 350g und zeiht 100A im Dauerbetrieb“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Strombelastbarkeit.pdf
480 V AC S 200 UP 489 240 V AC S 200 U 60 V DC S 200 UDC USA, Kanada 600 V AC S 220 1077 480 V AC S 200 M S 200 P 60 V DC 500 V DC S 200 M UC Schiffsklassifikationen S 200 S 200 P S 220 S 800 S 700 (GL) S 400 M GL LRS S 200 M UC BV DNV Bemessungsschalt- 6 000 max. 25 000 max. 10 000 max. 50 000 25 000 6 000 vermögen I /A 10 000 10 000 cn (230/400 V AC) InA ≤ 63 0,5 ... 63 ≤ 32 ≤ 125 ≤ 100 ≤ 63 10 2CDC401002D0106 Notizen
in „32A CEE Steckdose mit 25A absichern?“ · Haus & Smart Home ·
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PDF
Load-Switcher.pdf
1 2 3 4 5 6 7 8 Q4 MMSF3P03HD 5, 6, 7, 8 C5 10u 4 A R10 A 1000k U6 LTC4413-2 R11 2 9 200k ENBA STAT 4 ENBB EP 11 U1 OVI 8 R12 TP4056 Q1 3 GND 7 470k D1 USB1 1 2 MMSF3P03HD OVP L1 SS34 5V MICRO USB N N 4 5 1 10 22uH TVBUS VCC BAT 5, 6, 7, 83 U4 INA OUTA 1 M M D- FS312F-G 5 INB OUTB 6 D+
in „Load-Switch mit LTC4412/LTC4413 und 2p Li-Ionen-Akkus“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TC7920_B080613-1532304.pdf
are desired. Typical Application Circuit V +100V +10V 0.1µF 0.47µF 1.0µF OE VDD VH ENAB OUTA +PULSE INA 1.8 to 5.0V OUTB V NN Logic Imputs -PULSE INB -100V OUTC 1.0µF INC DAMP OUTD IND GND VSS VL Supertex MD1822 10nF Supertex TC7920 Doc.# DSFP-TC7920 Supertex inc. B080613 www.supertex.com TC7920 Ordering
in „Mosfet Gate Treiber MD1822/ TC7920“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
L6207_AN.pdf
withstand at least 24V + 5% + 25% ≅ 32V. A 50V capacitor will be used. Allowing a voltage ripple of 200mV, the capacitor ESR should be lower than 200mV / 1A = 200m ; the AC current capa- bility should be about 1A. Providing a reference voltage of 0.5V, 0.5 sensing resistor are needed. The resistors power
in „Schrittmotor mit L6207“ · Mikrocontroller und Digitale Elektronik ·
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PDF
en.CD00004482.pdf
withstand at least 24V + 5% + 25% ≅ 32V. A 50V capacitor will be used. Allowing a voltage ripple of 200mV, the capacitor ESR should be lower than 200mV / 1A = 200m ; the AC current capa- bility should be about 1A. Providing a reference voltage of 0.5V, 0.5 sensing resistor are needed. The resistors power
in „Treiberstufe fuer Faulhaber Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1014.pdf
S500 TESTED FROM 12 3 + 10mV/°C N THREE RUNS 14 + 11 O400 J PACKAGE LT1014 260Ω 1.8k E –13 M300 1M N 200 4k 6 – 100 USE TYPE K THERMOCOUPLES. ALL RESISTORS = 1% FILM. 7 OUTPUT B COLD JUNCTION COMPENSATION ACCURATE 5 +LT1014 10mV/°C 0 USE 4TH AMPLIFIER FOR OUTPUT C. –300 –200 –100 0 100 200 300 INPUT OFFSET
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssm2404.pdf
be slowly charged up to the R SW3 positive rail by the 100 nA current source. The difference in the INA 20 18 discharge and charging times ensures break-before-make SW4 ROUT operation, even from device to device. R INB 10k 14 The voltage on C1 is inverted by P1 to drive the ramp generator V– differential
in „Audio Switch IC gesucht (4066 Alternative)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD8606.pdf
A ( 0 F S O2000 V–0.05 R E M1500 –0.10 U N1000 –0.15 –0.20 500 0 0 3 –0.25 3 2 2 0 0 –0.30 0 –300 –200 –100 0 100 200 300 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 OFFSET VOLTAGE (µV) V (V) CM Figure7.InputOffsetVoltageDistribution Figure10.InputOffsetVoltagevs.Common-ModeVoltage (200Units,5WaferLots
in „Aktives Filter (Differential), Uref“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Values.txt
2 25R 2 2520- 2 24,3k 2 237 2 230V / 2x6V 2 230 2 2.2uF 2 2.2K 2 220yF 2 220m 3W 2 220k 1% 2 20R 2 200nF 2 200k * 2 1*UM_MATSU 2 1 nF 2 1M5 2 1kOhm 2 1k8 2 1k74R 2 1k3 2 1K2 2 1k1 2 1µF 10V 2 18pf 2 1,8M 2 17,73MHz 2 16 Mhz 2 16k 1% 2 16k 2 16µF 10V 2 160R 2 1.5 kOhm 2 15 k 2 1,5 K 2 1,5µF/35V 2 1,4k
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
opa4376.pdf
cable. AC coupling blocks the different dc voltage levels from each other on each end of the cable. An INA163 instrumentation amplifier provides differential inputs and receives the balanced audio signals from the cable. The INA163 gain may be set from 0 dB to 80 dB by selecting the R value. The INA163 circuiG
in „Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FE1.1s.pdf
USB 2.0 4-Port Hub Data Sheet Rev. 1.0 P ACKAGE 28-pin SSOP (Body Size: 10x4 mm, Pitch: 0.64 mm) P INA SSIGNMENT VSS 1 28 VD18 XOUT 2 27 TESTJ 3 XIN 26 OVCJ DM4 4 25 PWRJ DP4 5 24 LED2 DM3 6 23 LED1 7 DRV DP3 22 DM2 8 FE1.1s 21 VD33_O DP2 9 20 VDD5 DM1 10 19 BUSJ 11 18 DP1 VBUSM VD18_O 12 17 XRSTJ VD33
in „FE1.1s USB-Hub probleme“ · Mikrocontroller und Digitale Elektronik ·