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PDF
ACS754SCB100PFF.pdf
Power conversion Ambient, TA, S range .......................–20• Motor control Maximum Junction, TJ(max)............................165°C • Battery monitors Maximum Storage Temperature, T ....–65 to 170°C Use the following complete part numbers when ordering: S Part Number Signal Pins Terminals Ambient
in „80A Strom messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
current-sensor_ACS754.pdf
Ambient, TA, S range .......................–2• Motor control • Battery monitors Maximum Junction, TJ(max)...........................165°C Maximum Storage Temperature, S ....–65 to 170°C Use the following complete part numbers when ordering: Part Number Signal Pins Terminals Ambient ACS754LCB-050-PFF Formed
in „Motorsteuerung AVR Atmega per ISP flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
qt300_102.pdf
SPI-capable microcontrollers. The S 1% o 100 E SPI interface has the following specifications: 1% % 50 Max clock rate, Fckm 40KHz (master mode) Max clock rate, Fcks 40KHz (slave mode) 0 0% Data length 2 bytes (16 bits total) 100 101 102 103 104 105 106 107 108 109 110 Cx, pF Inter-byte delay ≥8µs (master
in „Techniker-Projekt: Füllstandsanzeige für Modellfahrzeug“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC3824fg.pdf
is given by : The maximuminductor current is determined by : V V IRIPPLE P = OUT+ D (I ) (1+δ)R IL(MAX) =IOUT(MAX) + MOSFET V IN D OUT DS(ON) 2 (VIN V OUT )•D + K(V IN(I OUT )(CRSS )(f) where IRIPPLE = f •L ThefirsttermintheequationrepresentstheI Rlossesin VOUT + VD andDuty Cycle D= V + V thedeviceandthesecondtermistheswitchinglosses.K
in „DC/DC Wandler Vin 15-50V, Vout 12V 9A!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DAC80.pdf
addition, ease of use has been enhanced by eliminating the need for a +5V logic SETTLING TIME: 4 s max to ± 0.01% of power supply. Full Scale For applications requiring both reliability and low GUARANTEED MONOTONICITY: cost, the DAC80P in a molded plastic package offers 0°C to +70 °C the same electrical
in „Ersatz für DAC80 (12-Bit DIGITAL-TO-ANALOG CONVERTERS)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1082.pdf
.5V, V = VFB REF, output pin open, unless otherwise specified. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS I Supply Current 3V V V , V = 0.6V 4.5 7.0 mA Q IN MAX C Control Pin Threshold Duty Cycle = 0 0.7 0.9 1.1 V 0.5 1.25 V Normal/Flyback Threshold 0.58 0.67 0.8 V on Feedback Pin f Switching Frequency
in „Boost Converter 2MHz 50V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
69034fe-6.pdf
= 25°C. V = 2.7V to 5.5V, GND = 0V, unless otherwise noted. A SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS ∆fi Initial Frequency Accuracy f = 1.039kHz, V= 3V, CLOAD= 5pF ±0.75 % ∆f Total Frequency Accuracy (Note 7) Single Output Act+ve: Over All Settings+ V 2.7V, LOAD = 5pF 0.5 1.1 % Over All Settings
in „I2C Deadlock beim Senden - LTC6904“ · Mikrocontroller und Digitale Elektronik ·
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PDF
23810294.pdf
LUG02A 4.7K 2 % 3984 K 0.5 % RESISTANCE TEMPERATURE CHARACTERISTICS TEMP. RESISTANCE R/R T Rmin. R max. (°C) R (T) 25 () (%) (%/K) (K) () () - 40 33.43 157 109 3.90 - 6.63 0.59 150 982 163 236 - 35 24.13 113 422 3.72 - 6.41 0.58 109 206 117 638 - 30 17.61 82 782 3.54 - 6.19 0.57 79 851 85714 - 25
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PDF
0754-200.pdf
ambient temperature range unless otherwise stated Characteristic Symbol Test Conditions Min. Typ. Max. Units Primary Sensed Current I –200 – 200 A P Supply Voltage VCC 4.5 5.0 5.5 V Supply Current I V = 5.0 V, output open 6.5 8 10 mA CC CC Output Resistance R OUT OUT = 1.2 mA – 1 2 Ω Output Capacitance
in „Strom 10A bis 300A messen mit Tiny26“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Testplatine.c
RA2 = AN2 Analogeingang Referenzspannung min (VSS/Masse) RA3 = AN3 Analogeingang Referenzspannung max (VDD/5V) RA6/RA7 = Eingaenge fuer den Schwingkreis Q1 (20 MHz) TRISA = 0xFF; PortA als Eingaenge geschalten PORTB : RB0 = Eingang Taster S1 (low active) RB1 = Eingang Taster S2 (low active) RB2 = Eingang
in „Fehlerhafte Werte bei AD-Wandlung PIC18F2420“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Testplatine.c
RA2 = AN2 Analogeingang Referenzspannung min (VSS/Masse) RA3 = AN3 Analogeingang Referenzspannung max (VDD/5V) RA6/RA7 = Eingaenge fuer den Schwingkreis Q1 (20 MHz) TRISA = 0xFF; PortA als Eingaenge geschalten PORTB : RB0 = Eingang Taster S1 (low active) RB1 = Eingang Taster S2 (low active) RB2 = Eingang
in „Fehlerhafte Werte bei AD-Wandlung PIC18F2420“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dir.txt
17.12.2020 16:34 955 justboom-digi.dtbo 17.12.2020 16:34 1.916 ltc294x.dtbo 17.12.2020 16:34 1.933 max98357a.dtbo 17.12.2020 16:34 1.605 mbed-dac.dtbo 17.12.2020 16:34 1.674 mcp23017.dtbo 17.12.2020 16:34 15.205 mcp23s17.dtbo 17.12.2020 16:34 1.797 mcp2515-can0.dtbo 17.12.2020 16:34 1.797 mcp2515-can1
in „Raspberry Pi bootet nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Square2Sinus_UAF42.pdf
OUTLINE DW0016A SOIC - 2.65 mm max height SCALE 1.500 SOIC C 10.63 SEATING PLANE 9.97 TYP PIN 1 ID A AREA 0.1 C 14X 1.27 16 1 10.5 2X 10.1 8.89 NOTE 3 8 9 0.51 16X 0.31 B 7.6 2.65 MAX 7.4 0.25 C A B NOTE 4 0.33TYP 0.10 SEE DETAIL A 0.25
in „Aus Rechteckt Sinus erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
max232.pdf
capacitors. The V+ 2 15 GND M MAX206E/MAX207E/MAX208E come in 24-pin SO, C1- 3 14 T1OUT A SSOP, and narrow DIP packages. The MAX232E/ C2+ 4 MAX202E R1IN MAX241E operate with four 1µF capacitors, while the MAX232E 13 X MAX202E/MAX206E
in „ATMega8L an USB per max232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX232.pdf
capacitors. The V+ 2 15 GND M MAX206E/MAX207E/MAX208E come in 24-pin SO, C1- 3 14 T1OUT A SSOP, and narrow DIP packages. The MAX232E/ C2+ 4 MAX202E R1IN MAX241E operate with four 1µF capacitors, while the MAX232E 13 X MAX202E/MAX206E
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX232_MAX.pdf
capacitors. The V+ 2 15 GND M MAX206E/MAX207E/MAX208E come in 24-pin SO, C1- 3 14 T1OUT A SSOP, and narrow DIP packages. The MAX232E/ C2+ 4 MAX202E R1IN MAX241E operate with four 1µF capacitors, while the MAX232E 13 X MAX202E/MAX206E
in „AVR an Handy C35“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IL300.pdf
Common Mode Transient Immunity Parameter Test condition Symbol Min Typ. Max Unit Common mode capacitance V F= 0, f = 1. MHz C CM 0.5 pF Common mode rejection ratio f = 60 Hz, L = 2.2 KΩ CMRR 130 dB Typical Characteristics (Tamb = 25 °C unless otherwise specified) 35 300 A 0
in „wie linear sind optokoppler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IL300.pdf
Common Mode Transient Immunity Parameter Test condition Symbol Min Typ. Max Unit Common mode capacitance V F= 0, f = 1. MHz C CM 0.5 pF Common mode rejection ratio f = 60 Hz, L = 2.2 KΩ CMRR 130 dB Typical Characteristics (Tamb = 25 °C unless otherwise specified) 35 300 A 0
in „AC Strom mit IL300 messen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA114.pdf
14 INA114 INA14 Precision INSTRUMENTATION AMPLIFIER DESCRIPTION FEATURES LOW OFFSET VOLTAGE: 50 V max The INA114 is a low cost, general purpose instrumen- tation amplifier offering excellent accuracy. Its versa- LOW DRIFT: 0.25 V/ °C max tile 3-op amp design and small size make it ideal for a LOW INPUT
in „Differnezverstärker für Strommessung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA114.pdf
14 INA114 INA14 Precision INSTRUMENTATION AMPLIFIER DESCRIPTION FEATURES LOW OFFSET VOLTAGE: 50 V max The INA114 is a low cost, general purpose instrumen- tation amplifier offering excellent accuracy. Its versa- LOW DRIFT: 0.25 V/ °C max tile 3-op amp design and small size make it ideal for a LOW INPUT
in „Messen von Mikrofonpegeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HT1621.pdf
mil Min. Nom. Max. A 2435 ¾ 2445 B 535 ¾ 555 C 145 155 ¾ D 125 ¾ 145 E 16 ¾ 20 F 50 ¾ 70 G ¾ 100 ¾ H 595 ¾ 615 I 635 ¾ 670 a 0° ¾ 15° Rev. 1.30 15 August 6, 2003 HT1621 48-pin LQFP (7´7) Outline Dimensions Dimensions in mm Symbol Min. Nom. Max. A 8.90 ¾ 9.10 B 6.90 ¾ 7.10 C 8.90 ¾ 9.10 D 6.90 ¾ 7.10 E ¾ 0.50 ¾ F ¾ 0.20 ¾ G 1.35 ¾ 1.45 H ¾ ¾ 1.60 I ¾ 0.10 ¾ J 0.45 ¾ 0.75 K 0.10 ¾ 0.20 a 0° ¾ 7° Rev. 1.30 16 August 6, 2003 HT1621 28-pin SKDIP
in „Picomite und LCD Display PC-6749-UUW von Densitron“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX202E-MAX241E.pdf
. The MAX206E/MAX207E/MAX208E come in C1+ 1 16 CC , V+ 2 GND M 24-pin SO, SSOP, and narrow DIP packages. The 15 A MAX232E/MAX241E operate with four 1µF capacitors, C1- 3 14 T1OUT while the MAX202E/MAX206E/MAX207E
in „Touch-screen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0704-015.pdf
ambient temperature range unless otherwise stated Characteristic Symbol Test Conditions Min. Typ. Max. Units Primary Sensed Current1 I –15 – 15 A P Supply Voltage V CC 4.5 5.0 5.5 V Supply Current I V = 5.0 V, output open 5 8 10 mA CC CC Output Resistance ROUT IOUT = 1.2 mA – 1 2 Ω Output Capacitance
in „Stromfluss detektor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Current_Ref._100uA.pdf
REF200AP, AU PARAMETER CONDITION MIN TYP MAX UNITS CURRENT SOURCES Current Accuracy ±0.25 ±1 % Current Match ±0.25 ±1 % Temperature Drift Specified Temp Range 25 ppm/°C Output Impedance 2.5V to 40V 20 100 M 3.5V to 30V 200 500 M Noise BW = 0.1Hz to 10Hz 1 nAp-p f = 10kHz 20 pA/√Hz Voltage Compliance (1%) TMINto MAX See Curves Capacitance 10 pF CURRENT MIRROR I = 100 A Unless Otherwise Noted Gain 0.995 1 1.005 Temperature Drift 25 ppm/°C Impedance (output) 2V to 40V 40 100 M Nonlinearity I = 0 A to 250 A 0.05 %
in „Stromreferenz Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0704-015.pdf
ambient temperature range unless otherwise stated Characteristic Symbol Test Conditions Min. Typ. Max. Units Primary Sensed Current1 I –15 – 15 A P Supply Voltage V CC 4.5 5.0 5.5 V Supply Current I V = 5.0 V, output open 5 8 10 mA CC CC Output Resistance ROUT IOUT = 1.2 mA – 1 2 Ω Output Capacitance
in „Gibts eigentlich auch ADCs, die Strom messen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0704-015.pdf
ambient temperature range unless otherwise stated Characteristic Symbol Test Conditions Min. Typ. Max. Units Primary Sensed Current1 I –15 – 15 A P Supply Voltage V CC 4.5 5.0 5.5 V Supply Current I V = 5.0 V, output open 5 8 10 mA CC CC Output Resistance ROUT IOUT = 1.2 mA – 1 2 Ω Output Capacitance
in „Spule als Stromwandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA121.pdf
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 8-PIN DIP AND SO-8 SURFACE MOUNT operates on power supplies as low as ±2.25V
in „Instrumentenverstärker INA121 hat zu hohe Verstärkung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTC4414_Power_Manegement.pdf
All voltages are referenced to GND, unless otherwise specified. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS VIN Operating Supply Range VINnd/or V SENSE Must Be in This Range ● 3 36 V VSENSE for Proper Operation IQFL Quiescent Supply Current at Low Supply VIN 3.6V. Measure Combined Current ● 31 60 µA
in „P-Mosfet als Schalter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1121ff.pdf
120ºC/W Power dissipated by the device will be equal to: 1000 sq mm 2500 sq mm 2500 sq mm 120ºC/W IOUT MAX • (VIN MAX– V OUT ) + (GND • VIN 225 sq mm 2500 sq mm 2500 sq mm 125ºC/W 100 sq mm 1000 sq mm 1000 sq mm 131ºC/W where, I OUT MAX = 100mA * Device is mounted on topside. V IN MAX = 7V IGND at (IOUT
in „Missgeschick passiert. Suche LDO 3.3V mit gedrehten TO92 Gehäuse“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina114.pdf
14 INA114 INA14 Precision INSTRUMENTATION AMPLIFIER DESCRIPTION FEATURES LOW OFFSET VOLTAGE: 50 V max The INA114 is a low cost, general purpose instrumen- tation amplifier offering excellent accuracy. Its versa- LOW DRIFT: 0.25 V/ °C max tile 3-op amp design and small size make it ideal for a LOW INPUT
in „OP INA114 Regelt nur bis 2,25V am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina125.pdf
2.5V, 5V or 10V INDUSTRIAL PROCESS CONTROL SLEEP MODE FACTORY AUTOMATION LOW OFFSET VOLTAGE: 250 V max MULTI-CHANNEL DATA ACQUISITION LOW OFFSET DRIFT: 2 V/ °C max BATTERY OPERATED SYSTEMS LOW INPUT BIAS CURRENT: 20nA max GENERAL PURPOSE INSTRUMENTATION HIGH CMR: 100dB min LOW NOISE: 38nV/√Hz at f =
in „Kraftsensor PSD-S1 in Verbindung mit INA125“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina125.pdf
2.5V, 5V or 10V INDUSTRIAL PROCESS CONTROL SLEEP MODE FACTORY AUTOMATION LOW OFFSET VOLTAGE: 250 V max MULTI-CHANNEL DATA ACQUISITION LOW OFFSET DRIFT: 2 V/ °C max BATTERY OPERATED SYSTEMS LOW INPUT BIAS CURRENT: 20nA max GENERAL PURPOSE INSTRUMENTATION HIGH CMR: 100dB min LOW NOISE: 38nV/√Hz at f =
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PDF
Tiny15L.pdf
) 10.90(0.430) MAX *Controlling dimension: Inches REV. A 04/11/2001 9 1187DS–12/01 8S2 .020(.508) .012(.305) .213(5.41) .330(8.38) .205(5.21) .300(7.62) PIN1 .050(1.27)BSC .212(5.38) .203(5.16) .080(2.03) .070(1.78) .013(.330) .004(.102) 0 REF .010(.254) 8 .007(.178) .035(.889) .020(.508) 10 ATtiny15L 1187DS–12/01 Atmel Headquarters Atmel Product Operations Corporate Headquarters Atmel Colorado Springs 2325 Orchard Parkway 1150 E. Cheyenne Mtn. Blvd. San Jose, CA 95131 Colorado
in „Frequenzschalter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BUF634_Datasheet.pdf
www.burr-brown.com/ • FAXLine:(800)548-6133(US/CanadaOnly) • Cable:BBRCORP • Telex:066-6491 • FAX:(520)889-1510 • ImmediateProductInfo:(800)548-6132 ©1993 Burr-Brown Corporation PDS-1206C Printed in U.S.A. June, 1996 SPECIFICATIONS ELECTRICAL At T = +25°C , V = ±15V, unless otherwise noted. A S BUF634P, U, T, F LOW QUIESCENT CURRENT MODE WIDE BANDWIDTH MODE PARAMETER CONDITION MIN TYP MAX MIN TYP MAX UNITS INPUT Offset Voltage ±30 ±100 mV vs Temperature Specified Temperature Range ±100 V/°C vs Power Supply V S ±2.25V (2to ±18V 0.1 1 mV/V Input Bias Current V = 0V ±0.5 ±2 ±5 ±20 A IN
in „OP Ausgang -> Leitung -> AD Messkarte -- Wie\Wo terminieren?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADS830E_8Bit_60MHz__BB.pdf
rate = 60MHz, and external reference, unless otherwise noted. ADS830E PARAMETER CONDITIONS MIN TYP MAX UNITS RESOLUTION 8 Guaranteed Bits SPECIFIED TEMPERATURE RANGE Ambient Air –40 to +85 °C ANALOG INPUT Standard Single-Ended Input Range 2Vp-p 1.5 3.5 V Optional Single-Ended Input Range 1Vp-p 2 3 V
in „Oszilloskop mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lambdacontroller_ai_claude_2.ino
int serial_counter = 0; uint16_t CJ125_Status = 0; // PID int dState = 0; int iState = 0; const int iMax = 250; const int iMin = -250; const float pGain = 120.0; const float iGain = 0.8; const float dGain = 10.0; // ----------------------------- // Lambda- und O2-Tabellen (Platzhalter) // -------------
in „Bosch CJ125 mit AVR AT90CAN64“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lambdacontroller_ai_claude.txt
int serial_counter = 0; uint16_t CJ125_Status = 0; // PID int dState = 0; int iState = 0; const int iMax = 250; const int iMin = -250; const float pGain = 120.0; const float iGain = 0.8; const float dGain = 10.0; // ----------------------------- // Lambda- und O2-Tabellen (Platzhalter) // -------------
in „Bosch CJ125 mit AVR AT90CAN64“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IL300.pdf
Optocoupler Dimensions in inches (mm) FEATURES .021 (0.527) .130 (3.302)n 1 ID. .240 (6.096) .035 (0.889) .150 (3.810) .260 (6.604) • Couples AC and DC signals • 0.01% Servo Linearity .100 (2.540) 1 8 • Wide Bandwidth, >200 kHz 4° • High Gain Stability, ±0.05%/C 2 7 .16 (406) .040 (1.016) • Low Input-Output
in „Galvanisch getrennten 1-10V Ausgang regeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MRF272L.pdf
to +150 °C Operating Junction Temperature TJ 200 °C THERMAL CHARACTERISTICS Characteristic Symbol Max Unit Thermal Resistance, Junction to Case R JC 0.65 °C/W ELECTRICAL CHARACTERISTICS (T = 25°C unless otherwise noted) C Characteristic Symbol Min Typ Max Unit OFF CHARACTERISTICS Drain–Source Breakdown
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PDF
QT110_Touch_Sensor.pdf
3.5 4 4.5 5 Cs, nF Vss, Volts - 11 - Package type: 8pin Dual-In-Line Millimeters Inches SYMBOL Min Max Notes Min Max Notes a 6.096 7.112 0.24 0.28 A 7.62 8.255 0.3 0.325 M 9.017 10.922 Typical 0.355 0.43 Typical m 7.62 7.62 BSC 0.3 0.3 BSC Q 0.889 - 0.035 - P 0.254 - 0.01 - L 0.355 0.559 0.014 0.022
in „"Toch" Lampe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD8228.pdf
to input, unless otherwise noted. Table 2. Conditions A Grade B Grade Parameter (Gain=10) Min Typ Max Min Typ Max Unit COMMON-MODEREJECTIONRATIO CMRR DC to 60 Hz with 1 kΩ VCM= −10 V to +10 V 94 100 dB Source Imbalance CMRR at 2 kHz V = −10 V to +10 V 90 100 dB CM NOISE VIN+= VIN− VREF 0 V Voltage Noise
in „Schaltung verstehen.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OPA548.pdf
isolate the tab of TO-220 package from its ® OPA548 8 RESISTOR METHOD DAC METHOD (Current or Voltage) Max I = I O LIM (4.75) (15000) Max IO= ILIM ±ILIM=13750 + R ±I =15000 I 13750 CL 13750 LIM SET 4.75V 4.75V I SET 3 3 RCL 0.01µF D/A 4 (optional, for noisy 4 environments) V– V– 15000 (4.75V) ISET= ILIM15000
in „Schaltplan für ordentliches Labornetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mpy100.pdf
MPY100B/C MPY100S PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS MULTIPLIER PERFORMANCE (X1– X 2(Y1–Y 2 Transfer Function + Z 2 */* * 10 Total Error –10V ≤ X, Y ≤ 10V Initial TA= +25°C ±2.0 ±1.0/0.5 ±0.5 % FSR vs Temperature –25°C ≤
in „MPY100AG - warum so teuer?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lt3580.pdf
High Efficiency Step-Up DC/DC Converter V IN1.6V to 18V, VOUT(MAX) = 35V, Q = 1.8mA, ISD < 1μA, MS10 Package LT1930/LT1930A 1A (ISW ), 1.2MHz/2.2MHz High Efficiency Step-Up DC/DC V IN2.6V to 16V, VOUT(MAX) = 34V, IQ= 4.2mA/5.5mA, I SD < Converter 1μA, ThinSOT Package
in „Switcher CAD III Simulation - Schaltungsfehler ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTC1174.pdf
°C. V IN9V, V SHUTDOWN = VIN PGM = 0V, unless otherwise noted. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS IFB Feedback Current LTC1174/LTC1174HV 1 A V FB Feedback Voltage LTC1174/LTC1174HV 1.20 1.25 1.30 V V OUT Regulated Output Voltage LTC1174-3.3/LTC1174HV-3.3 3.14 3.30 3.46 V LTC1174-5/LTC1174V
in „DC/DC Wandler LTC1174 Verhalten bei Shutdown?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT3756.pdf
1.5A, 36V, 2MHz High Current LED Driver V IN: 2.8V to 16V, OUT(MAX) = 36V, True Color PWMDimming = 1000:1, with 1000:1 Dimming ISD < 10μA, 5mm× 7mmQFN Package LT3477 3A, 42V, 3MHz Boost, Buck-Boost, Buck LED Driver VIN: 2.5V to 25V, OUT(MAX) = 40V, Dimming = Analog
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PDF
ADNS-3080-Avago.pdf
0x14 SROM_Enable W 0x00 0x15 Reserved 0x16 Reserved 0x17 Reserved 0x18 Reserved 0x19 Frame_Period_Max_Bound Lower R/W 0xE0 0x1a Frame_Period_Max_Bound_Upper R/W 0x2E 0x1b Frame_Period_Min_Bound_Lower R/W 0x7E 0x1c Frame_Period_Min_Bound_Upper R/W 0x0E 0x1d Shutter_Max_Bound_Lower R/W 0x00 0x1e Shutter_Max_Bound_Upper
in „ADNS3080 Steuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACS_750ECA-100__644500_e.pdf
CHARACTERISTICS, over temperature unless otherwise stated Characteristic Symbol Test Conditions Min. Typ. Max. Units Primary Sensed Current I –100 – 100 A P Supply Voltage V CC 4.5 5.0 5.5 V Supply Current I V = 5.0 V, output open – 7 10 mA CC CC Output Resistance ROUT OUT = 1.2 mA – 1 2 Ω Output Capacitance
in „Drehstromzähler“ · Projekte & Code ·
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PDF
ACS_750ECA-100__644500_e.pdf
CHARACTERISTICS, over temperature unless otherwise stated Characteristic Symbol Test Conditions Min. Typ. Max. Units Primary Sensed Current I –100 – 100 A P Supply Voltage V CC 4.5 5.0 5.5 V Supply Current I V = 5.0 V, output open – 7 10 mA CC CC Output Resistance ROUT OUT = 1.2 mA – 1 2 Ω Output Capacitance
in „Op - Messbereich - Strom - ACS 750LCA-050“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC660.pdf
, Boost = Open, C OSC = 0pF, T A 25°C, unless otherwise noted. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS Supply Voltage R L 1k Inverter, LV = Open 3 5.5 V Inverter, LV = GND 1.5 5.5 V Doubler, LV = VOUT 2.5 5.5 V IS Supply Current No Load Boost = Open 0.08 0.5 mA Boost = V + 0.23 3 mA IOUT Output
in „Schaltplankontrolle EVG-Dimmer -PWM, OpAmp und Ladungspumpe“ · Analoge Elektronik und Schaltungstechnik ·