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PDF
DS1339.pdf
Real-Time Clock AC ELECTRICAL CHARACTERISTICS (VCC = MIN to MAX, TA= -40°C to +85°C.) (Note 12) PARAMETER SYMBOL CONDITION MIN TYP MAX UNITS Fast mode 100 400 SCL Clock Frequency SCL kHz Standard mode 100 Bus Free Time Between a STOP Fast mode 1.3 and START Condition
in „Sehr lange Zeitspannen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM386_Low_Voltage_Audio_Power_Amplifier.pdf
Soldering Information Electrical Characteristics (Notes 1, 2) T A= 25˚C Parameter Conditions Min Typ Max Units Operating Supply Voltage (V ) S LM386N-1, -3, LM386M-1, LM386MM-1 4 12 V LM386N-4 5 18 V Quiescent Current (I ) V = 6V, V = 0 4 8 mA Q S IN Output Power (POUT) = = = LM386N-1, LM386M-1, LM386MM-1 VS 6V, L 8 , THD 10% 250 325 mW LM386N-3 VS = 9V, L = 8 , THD = 10% 500 700 mW LM386N-4 VS = 16V, L = 32 , THD = 10% 700 1000 mW Voltage Gain (A ) V = 6V, f 1 kHz 26 dB V S 10 µF from Pin 1 to 8 46 dB Bandwidth (BW) VS = 6V, Pins
in „Elektretmikrofon und LM 386N-1 als Verstärker“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm386.pdf
Soldering Information Electrical Characteristics (Notes 1, 2) TA= 25˚C Parameter Conditions Min Typ Max Units Operating Supply Voltage SV ) LM386N-1, -3, LM386M-1, LM386MM-1 4 12 V LM386N-4 5 18 V Quiescent Current QI ) VS= 6V, V IN = 0 4 8 mA Output Power (POUT) LM386N-1, LM386M-1, LM386MM-1 V = 6V, R = 8 , THD = 10% 250 325 mW S L LM386N-3 VS= 9V, R L 8 , THD = 10% 500 700 mW LM386N-4 VS= 16V, R L 32 , THD = 10% 700 1000 mW Voltage Gain (A ) V = 6V, f = 1 kHz 26 dB V S 10 µF from Pin 1 to 8 46 dB Bandwidth (BW) VS= 6V,
in „Spannanungsverstärkung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HMI_board.pdf
-085R S 1 SPI_MISO 1 CH1 C 0 MPZ2012S300X17-2 / MPZ2012S102JTD25 L7 V Z LED 2 CH2 P MPZ20 115-3X17-325 / MPZ2012S102JTD25 L6 / SPI_SCK 3 CH3 5 MPZ20 115-3X17-425 / MPZ2012S102JTD25 L8 D SPI_MOSI 4 CH4 C3T MPZ2012S300X17-5 / MPZ2012S102JTD25 L9 0 D/C 6 CH5 223nf MPZ2012S300X17-6 / MPZ2012S102JTD25 L10
in „Schaltplankontrolle Last- + HMI-Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Intersil_HIP4081A_.pdf
Unless Otherwise Specified TJ = - 40°C TJ = +25°C TO +125°C PARAMETERS SYMBOL TEST CONDITIONS MIN TYP MAX MIN MAX UNITS SUPPLY CURRENTS AND CHARGE PUMPS VDD Quiescent Current DD IN- = 2.5V, Other Inputs = 0V 8 11 14 7 14 mA VDD Operating Current IDDO Outputs switching f = 500kHz, No Load 9 12 15 8 15 mA
in „Umrichter für E-Kart Anwendung 60V / 120A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
smp04.pdf
R L= 20 k 0.06/10.0 V min/max R L 10 k 0.06/9.5 V min/max LOGIC CHARACTERISTICS Logic Input High Voltage V INH 2.4 V min Logic Input Low Voltage V INL 0.8 V max Logic Input Current I 1 A max IN SUPPLY CHARACTERISTICS Power Supply
in „Power Supply Bypassing - wie ist es richtig??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
smp04.pdf
R L= 20 k 0.06/10.0 V min/max R L 10 k 0.06/9.5 V min/max LOGIC CHARACTERISTICS Logic Input High Voltage V INH 2.4 V min Logic Input Low Voltage V INL 0.8 V max Logic Input Current I 1 A max IN SUPPLY CHARACTERISTICS Power Supply
in „Sample-and-Hold-Verstärker - wie richtig beschalten??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
smp04.pdf
R L= 20 k 0.06/10.0 V min/max R L 10 k 0.06/9.5 V min/max LOGIC CHARACTERISTICS Logic Input High Voltage V INH 2.4 V min Logic Input Low Voltage V INL 0.8 V max Logic Input Current I 1 A max IN SUPPLY CHARACTERISTICS Power Supply
in „Umgang mit Hold-Step bei Sample-and-Hold-Versärkern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
171573-da-01-en-LT_1073_5_DIP_8_STEP_UP_1V_5V.pdf
specifications are at A = 25°C. IN= 1.5V unless otherwise specified. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS I Quiescent Current Switch Off 95 130 A Q IQ Quiescent Current, Step-Up No Load LT1073-5 135 A Mode Configuration LT1073-12 250 A VIN Input Voltage Step-Up Mode 1.15 12.6 V 1.0 12.6 V Step-Down
in „LT 1073 Spg.schwankungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OP184_284_484.pdf
0.1890) 0.355 (9.02) 8 5 0.280 (7.11) 8 5 0.250 (6.35) 4.00 (0.1574) 6.20 (0.2441) 1 1 4 0.240 (6.10) 0.325 (8.26) 3.80 (0.1497) 4 5.80 (0.2284) 0.310 (7.87) 0.100 (2.54) 0.300 (7.62) BSC 0.060 (1.52) 0.195 (4.95) MAX 1.27 (0.0500) 0.50 (0.0196) 45° 0.210 (5.33) 0.130 (3.30) BSC 1.75 (0.0688) 0.25 (0.0099
in „Bestellbezeichnung OP184ESZ / OP184FSZ“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
tbf5030_c3a_3.c
duty_pv; if(pwm2_duty_pv > pwm2_max) pwm2_duty_pv = pwm2_duty_pv - 0.1; if(pwm2_duty_pv < pwm2_max && pwm2_duty_pv < pwm2_idle) pwm2_duty_pv = pwm2_max; } } else pwm2_duty_pv = pwm2_duty_pv; //--->> pwm2_duty = (unsigned int)(pwm2_duty_pv
in „Fehler beim Compilieren“ · Mikrocontroller und Digitale Elektronik ·
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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
lt1157.pdf
ICS VS= 2.7V to 5.5V, T A 25°C, unless otherwise noted. LTC1157C SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS IQ Quiescent Current OFF V S 3.3V, VIN1= VIN2= 0V (Note 1) 3 10 A Quiescent Current ON V S 3.3V, VIN 3.3V (Note 2) 80 160 A V S= 5V, VIN 5V (Note 2) 180 400 A V INH Input High Voltage 70%× V S
in „3V Gate-Treiber gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT3475.pdf
at input volt- frequency. ages greater than V . For example, an application IN(MAX) Example: f = 600kHz, V OUT = 4V with an output voltage of 3V and switching frequency of DC =1−167ns 600kHz=0 90 . 1.2MHzhasaV IN(MAX)of20V,asshowninFigure2.Figure MAX 3showsoperationat35V. Outputrippleandpeakinductor
in „3W Luxeon Led energiesparend dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Regler_LM3488.pdf
0.2A 4.5 Ω (bottom) VDR (max) Maximum Drive Voltage V IN< 7.2V VIN V Swing (1) V IN≥ 7.2V 7.2 (2) Dmax Maximum Duty Cycle 100 % T (on) Minimum On Time 325 nsec min 230 nsec(min) 550 nsec(max) I Supply Current (switching) (3) mA SUPPLY 2.7 3.0 mA (max) Q Quiescent Current in V FA/SYNC/SD 5V (4, IN= 5V 5 µA Shutdown Mode 7 µA (max) VSENSE Current Sense Threshold V IN= 5V 156 mV Voltage 135/ 125 mV (min) 180/ 190 mV (max) VSC Short-Circuit Current
in „Kein PWM-Signal bei DC-DC Wandler; 12->140V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HD44780u_lcd2.pdf
Instruction write check check check write ▯ Figure 15 Example of Busy Flag Check Timing Sequence H8/325 HD44780U 8 16 P30 to P37 DB0 to DB7COM1 to COM16 LCD P77 E 40 P76 RS SEG1 to SEG40 P75 & R/W Figure 16 H8/325 Interface (Single-Chip Mode) 0 32 HD44780U • Interfacing to a 4-bit MPU The HD44780U can
in „LCD - Displaycode 4 Bitmodus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.pdf
Instruction write check check check write ▯ Figure 15 Example of Busy Flag Check Timing Sequence H8/325 HD44780U 8 16 P30 to P37 DB0 to DB7COM1 to COM16 LCD P77 E 40 P76 RS SEG1 to SEG40 P75 & R/W Figure 16 H8/325 Interface (Single-Chip Mode) 0 32 HD44780U • Interfacing to a 4-bit MPU The HD44780U can
in „LCD-Anzeige-Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780.pdf
Instruction write check check check write ▯ Figure 15 Example of Busy Flag Check Timing Sequence H8/325 HD44780U 8 16 P30 to P37 DB0 to DB7COM1 to COM16 LCD P77 E 40 P76 RS SEG1 to SEG40 P75 & R/W Figure 16 H8/325 Interface (Single-Chip Mode) 0 32 HD44780U • Interfacing to a 4-bit MPU The HD44780U can
in „Reziproker Frequenzzähler+ Optimierte 64bit uint Routinen“ · Projekte & Code ·
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PDF
1932f.pdf
designs. values give an efficiency 3%to 5%lower than the 6.8 H value. Table 1. Recommended Inductors MAX MAX L DCR HEIGHT 85 PANASONIC PART ( H) (m ) (mm) VENDOR 80 ELJEA6R8 ELJEA4R7 4.7 180 2.2 Panasonic SUMIDA ELJEA6R8 6.8 250 2.2 (714) 373-7334 CLQ4D10-6R8 ( 75 www.panasonic.com Y SUMIDA LQH3C4R7M24
in „step up converter 3,6V -> 8 LED's“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1932.pdf
designs. values give an efficiency 3%to 5%lower than the 6.8 H value. Table 1. Recommended Inductors MAX MAX L DCR HEIGHT 85 PANASONIC PART ( H) (m ) (mm) VENDOR 80 ELJEA6R8 ELJEA4R7 4.7 180 2.2 Panasonic SUMIDA ELJEA6R8 6.8 250 2.2 (714) 373-7334 CLQ4D10-6R8 ( 75 www.panasonic.com Y SUMIDA LQH3C4R7M24
in „IC LED Ansteuerung LTST“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NEXPERIA_BC846_SER.pdf
amplification 1.4 Quick reference data Table 2. Quick reference data Symbol Parameter Conditions Min Typ Max Unit VCEO collector-emitter volopen base - - 65 V I collector current - - 100 mA C hFE DC current gain V CE= 5 V;CI = 2 mA 110 - 450 h FEgroup A 110 180 220 h FEgroup B 200 290 450 Nexperia BC846 series
in „Und wieder eine kleine lustige Teilesucherei Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SSM2019.pdf
Typical specifications SSM2019–SPECIFICATIONS apply atAT = 25 C.) Parameter Symbol Conditions Min Typ Max Unit DISTORTION PERFORMANCE V O 7 V rms R L 2 kW Total Harmonic Distortion Plus NoiseTHD + N f = 1 kHz, G = 1000 0.017 % f = 1 kHz, G = 100 0.0085 % f = 1 kHz, G = 10 0.0035 % f = 1 kHz, G = 1 0.005
in „Wie arbeitet der SM2019 Vorverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
PCM_master.vhd
is generic (clock_frequency: integer:= 49152000; -- Hz : here enter main clock frequency LRCK_CNT_MAX: integer:= 64; -- LRCK_CNT_MAX represents the divider max value referring to LRCK_CNT for generation of LRCK as urgently needed by PCM5142 --spi_clock_frequency: integer:= 3125000; -- Hertz : here enter
in „DDS mit DE0-Nano Board nur niedrige Frequenzen?“ · FPGA, VHDL & Co. ·
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PDF
MCP41010.pdf
(SOIC) E E1 p D 2 B n 1 h α 45° c A2 A φ β L A1 Units INCHES* MILLIMETERS Dimension Limits MIN NOM MAX MIN NOM MAX Number of Pins n 8 8 Pitch p .050 1.27 Overall Height A .053 .061 .069 1.35 1.55 1.75 Molded Package Thickness A2 .052 .056 .061 1.32 1.42 1.55 Standoff § A1 .004 .007 .010 0.10 0.18 0.25
in „Widerstand regeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
11195c.pdf
(SOIC) E E1 p D 2 B n 1 h α 45° c A2 A φ β L A1 Units INCHES* MILLIMETERS Dimension Limits MIN NOM MAX MIN NOM MAX Number of Pins n 8 8 Pitch p .050 1.27 Overall Height A .053 .061 .069 1.35 1.55 1.75 Molded Package Thickness A2 .052 .056 .061 1.32 1.42 1.55 Standoff § A1 .004 .007 .010 0.10 0.18 0.25
in „DC-DC Wandler mit MCP42010“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mcp41xxx.pdf
(SOIC) E E1 p D 2 B n 1 h α 45° c A2 A φ β L A1 Units INCHES* MILLIMETERS Dimension Limits MIN NOM MAX MIN NOM MAX Number of Pins n 8 8 Pitch p .050 1.27 Overall Height A .053 .061 .069 1.35 1.55 1.75 Molded Package Thickness A2 .052 .056 .061 1.32 1.42 1.55 Standoff § A1 .004 .007 .010 0.10 0.18 0.25
in „Schaltregler, Feedback und Op Amp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HF500-30.pdf
FULL-FEATURED FLYBACK REGULATOR ELECTRICAL CHARACTERISTICS VCC = 16V, T = -40°C to 125°C, min and max values are guaranteed by characterization, typical J values are tested under 25°C, unless otherwise noted. Parameter Symbol Conditions Min Typ Max Unit Start-Up Current Source (DRAIN) Drain_0 VCC =
in „Marking Code Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dogs102doku.pdf
SetContrast(unsigned char Contrast) 228 { 229 230 WriteCommand(SET_ELECTRONIC_VOLUME_FIRST); 231 if(Contrast>MAX_CONTRAST) 232 Contrast=MAX_CONTRAST; 233 WriteCommand(Contrast); 234 235 } 236 237 //***************************************************************************** 238 //*****************************
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476733_1.pdf
TEMPERATURE, T A 25 C -40 C - 85 C -55 C - 125 C HC HCT HC HCT HC HCT V V EE CC PARAMETER (V) (V) MIN MAX MIN MAX MIN MAX MIN MAX MIN MAX MIN MAX UNITS Propagation Delay, Switch 0 2 - 60 - - - 75 - - - 90 - - ns In to Out, t, t PLH PHL 0 4.5 - 12 - 12 - 15 - 15 - 18 - 18 ns 0 6 - 10 - - - 13 - - - 15 -
in „Pinbelegung 74HC4053 - 4053“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD623.pdf
Lnd R = 10 kΩ, unless otherwise noted. Table 1. AD623A AD623ARM AD623B Parameter Conditions Min Typ Max Min Typ Max Min Typ Max Unit GAIN G = 1 + (100 kGR Gain Range 1 1000 1 1000 1 1000 1 Gain Error G1V OUT= 0.05Vto3.5V G>1V OUT= 0.05Vto4.5V G = 1 0.03 0.10 0.03 0.10 0.03 0.05 % G = 10 0.10 0.35 0.10
in „PT 100 mit AD623 auswerten möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DG506_507_508_509A.pdf
” AND “C” SUFFIX (NOTE4) (NOTE3) (NOTE4) (NOTE4) (NOTE3) (NOTE4) PARAMETER TEST CONDITIONS MIN TYP MAX MIN TYP MAX UNITS DYNAMIC CHARACTERISTICS Switching Time of See Figure 1 - 0.6 1 - 0.6 - µs Multiplexer,TRANSITION Break-Before-Make See Figure 3 - 0.2 - - 0.2 - µs IntervalOPEN Enable Turn-ON Time,
in „Bestimmtes Bauteil gesucht zur Signalverteilung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6206.pdf
1.250 1.255 E 7.620 8.260 0.300 0.325 e 2.54 0.100 E1 6.350 6.600 6.860 0.250 0.260 0.270 e1 7.620 0.300 L 3.180 3.430 0.125 0.135 M 0° min., 15° max. 28/31 DocID7617 Rev 2 L6206 Package information Figure 32. SO24 package outline ▯▯▯▯▯▯▯ & Table 11. SO24 package mechanical data Dimensions Symbol mm inch Min. Typ. Max. Min. Typ. Max. A 2.35 2.65 0.093 0.104 A1 0.10 0.30 0.004 0.012 B 0.33 0.51 0.013 0.020 C 0.23 0.32 0.009 0.013 (1) D 15.20 15.60 0.598 0.614 E 7.40 7.60 0.291 0.299 e 1.27 0.050 H 10.0 10.65 0.394
in „l6206 Datenblatt Fehler?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sd_aus_ek_8_9_10.pdf
beired.Leistung beired.Leistung beired.Leistung 70beired.Leistung 70beired.Leistung 60beired.Leistung (max.75%) (max.60%) (max.60%); (max.60%) (max.40%) (max.60%) bis70beiU E170V Anschlusstechnik Schraubklemmen, Schraubklemmen Schraubklemmen, Schraubklemmen Schraubklemmen, Schraubklemmen, 2 2 2 2 0,2bis2,5mm
in „EMV bei gekauften Schaltnetzteilen verstehen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NM93C46.PDF
Characteristics V CC = 4.5V to 5.5V unless otherwise specified h r o a Symbol Parameter Conditions Min Max Units n l I Operating Current CS = V , SK=1.0 MHz 1 mA o C CCA IH u M ICCS Standby Current CS = V IL 50 µA s O B S IIL Input Leakage V IN0V to V CC ±-1 µA u E OL Output Leakage (Note 2) ) E P VIL Input
in „EEPROM durch anders tauschen, was beachten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ad420_datasheet.pdf
4 mA–20 mA, 0 mA–20 mA or 0 mA–24 mA Current Output 16-Bit Resolution and Monotonicity VCC 60.012% Max Integral Nonlinearity VLL REFERENCE 60.05% Max Offset (Trimmable) 4kV 40V 60.15% Max Total Output Error (Trimmable) REF OUT AD420 BOOST Flexible Serial Digital Interface (3.3 MBPS) On-Chip Loop Fault
in „Suche AD420 in SMD Format“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD623.pdf
> 1) 25 ppm Gain Drift (G = 1) 200 mV Max Input Offset Voltage (AD623A) 2 mV/8C Max Input Offset Drift (AD623A) 100 mV Max Input Offset Voltage (AD623B) 1 mV/8C Max Input Offset Drift (AD623B) common-mode range and can amplify signals that
in „Op - Messbereich - Strom - ACS 750LCA-050“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ad620.pdf
R = 2 kΩ, unless otherwise noted. S L Table 2. 1 AD620A AD620B AD620S Parameter Conditions Min Typ Max Min Typ Max Min Typ Max Unit GAIN G = 1 + (49.4 kΩ/G ) Gain Range 1 10,000 1 10,000 1 10,000 2 Gain Error VOUT= ±10 V G = 1 0.03 0.10 0.01 0.02 0.03 0.10 % G = 10 0.15 0.30 0.10 0.15 0.15 0.30 % G =
in „Probleme mit AD620 EKG“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1776fs.pdf
IN40V, V SW open, V CC = 5V, VC= 1.4V unless otherwise noted. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS Power Supplies V IN(MIN) MinimumInput Voltage 6.7 7.0 V 7.4 V Thermally Limited Continuous Operating Voltage 40 V IVIN VINupply Current VC= 0V 620 800 A 900 A IVCC VCC Supply Current VC= 0V 3.2
in „Stromausfall Datensicherung auf EEprom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Thermoelement.pdf
die Abb. 12 für verschie- c r dene Rohrabmessungen, die Belastungs- D grenzen (Richtwerte) auf. Die max. Druck- belastung zylindrischer Schutzrohre ist als Funktion der Wandstärke bei verschiedenen Rohrdurchmessern dargestellt. Die Angaben gelten für Schutzrohre aus Edel- stahl 1.4571, Einbaulänge 100mm
in „Wie funktioniert Thermosensor in Heizofen“ · Haus & Smart Home ·
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Datei
readme.txt
ueber ein einzelnes Array das ueber das @ - Zeichen an- gesprochen werden kann. Dieses Array kann max. 32 Werte aufnehmen @(index)= Wert 10 print "Geben Sie 4 Zahlen ein" 20 for i= 1 to 4 30 print "Zahl ",i,": " 40 input z 50 @(i)= z 60 next i 70 print "Die Zahlen waren:" 80 for i= 1 to 4 90 z= @(i)
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PDF
21425b.pdf
141°C IH = Quiescent Current with all outputs LOW TJ= Maximum allowable junction temperature (4 mA max.) I = Quiescent Current with all outputs HIGH (+150°C) L θJA = Junction-to-ambient thernal resistance (0.6 mA max.) (83.3°C/W) 14-pin plastic package D = Duty Cycle V = Supply Voltage S Note: Ambient
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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PDF
133821700AD736_d.pdf
(0.0196) 0.405 (10.29) MAX C BSC 1.75 (0.0688) ⴛ 45ⴗ 0.060 (1.52) 0.290 (7.37) 0.25 (0.0099) 0.015 (0.38) 0.25 (0.0098) 1.35 (0.0532) 0.200 (5.08) 0.10 (0.0040) MAX 8ⴗ 0.200 (5.08) 0.150 (3.81) COPLANARITY 0.51 (0.0201) 0ⴗ 1.27
in „AD736 an mC anschliessen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AT25080A.pdf
Write Disable Instructions for Both Hardware and Software Data Protection Self-timed Write Cycle (5 ms max) EEPROMs High Reliability – Endurance: One Million Write Cycles 8K (1024 x 8) – Data Retention: 100 Years Automotive Grade, Extended Temperature, and Lead-free/Halogen-free 16K (2048 x 8) Devices Available
in „Atmel 25080A - SPI - AT89C51RB2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.pdf
Instruction write check check check write ▯ Figure 15 Example of Busy Flag Check Timing Sequence H8/325 HD44780U 8 COM1 to 16 P30 to P37 DB0 to DB7 COM16 LCD P77 E P76 RS SEG1 to 40 SEG40 P75 R/W & Figure 16 H8/325 Interface (Single-Chip Mode) 0 32 HD44780U • Interfacing to a 4-bit MPU The HD44780U can
in „LCD Dotmatrix kaputt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
www.eio.com-hd44780_18-48-46.pdf
Instruction write check check check write Figure 16 Example of Busy Flag Check Timing Sequence H8/325 HD44780U P30 to P37 8 DB0 to DB7COM1 to 16 COM16 LCD P77 E SEG1 to 40 P76 RS SEG40 P75 R/W Figure 17 H8/325 Interface (Single-Chip Mode) 199 HD44780U • Interfacing to a 4-bit MPU The HD44780U can be
in „Fehler bei 4Bit LCD Init?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780__Dot_Matrix_LCD_Controller_Driver_.pdf
Instruction write check check check write Figure 16 Example of Busy Flag Check Timing Sequence H8/325 HD44780U P30 to P37 8 DB0 to DB7COM1 to 16 COM16 LCD P77 E SEG1 to 40 P76 RS SEG40 P75 R/W Figure 17 H8/325 Interface (Single-Chip Mode) 199 HD44780U • Interfacing to a 4-bit MPU The HD44780U can be
in „Falsche Zeichen bei LCD-Ausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780u.pdf
Instruction write check check check write ▯ Figure 15 Example of Busy Flag Check Timing Sequence H8/325 HD44780U 8 COM1 to 16 P30 to P37 DB0 to DB7 COM16 LCD P77 E P76 RS SEG1 to 40 SEG40 P75 R/W & Figure 16 H8/325 Interface (Single-Chip Mode) 0 32 HD44780U • Interfacing to a 4-bit MPU The HD44780U can
in „Falsche Zeichen bei LCD-Ausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.PDF
Instruction write check check check write Figure 16 Example of Busy Flag Check Timing Sequence H8/325 HD44780U P30 to P37 8 DB0 to DB7COM1 to 16 COM16 LCD P77 E SEG1 to 40 P76 RS SEG40 P75 R/W Figure 17 H8/325 Interface (Single-Chip Mode) 199 HD44780U • Interfacing to a 4-bit MPU The HD44780U can be
in „Busy-Flag bei LCDs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780u.pdf
Instruction write check check check write ▯ Figure 15 Example of Busy Flag Check Timing Sequence H8/325 HD44780U 8 COM1 to 16 P30 to P37 DB0 to DB7 COM16 LCD P77 E P76 RS SEG1 to 40 SEG40 P75 R/W & Figure 16 H8/325 Interface (Single-Chip Mode) 0 32 HD44780U • Interfacing to a 4-bit MPU The HD44780U can
in „2. Zeile LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780.pdf
Instruction write check check check write Figure 16 Example of Busy Flag Check Timing Sequence H8/325 HD44780U P30 to P37 8 DB0 to DB7COM1 to 16 COM16 LCD P77 E SEG1 to 40 P76 RS SEG40 P75 R/W Figure 17 H8/325 Interface (Single-Chip Mode) 199 HD44780U • Interfacing to a 4-bit MPU The HD44780U can be
in „LCD ohne Umlaute?“ · Mikrocontroller und Digitale Elektronik ·