-
PDF
488161_1_.pdf
W110 1:9,0 für LPG/E85, 200 B 700 35,0 / 4600 100 250 / 11,0 VJU4BR29, 180A & 190 VJUR- 4BR27, VJUR14 & 22 C 800 45,0 / 4000 100 250 / 10,0 VJUR4BR28, 180B 0231.115.029 D 700 27,0 / 2600 100 300 / 10,0 VJUBR11, 190SL VJR4BR24 E • • • • • • F 600 30,0
in „Funktionsweise von analogen elektronischen Drehzahlmessern?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
BC320-Motorola.pdf
Type Symbol Min. | Typ. | Max. | Unit OFF CHARACTERISTICS Collector-EmitteBreakdown Voltage BC320 V(BR)CE0 45 Vdc IC= 1mA, Ib = BC321 30 BC322 20 Collector-EmitteBreakdown Voltage BC320 V(BR)CES 50 Vdc IC= 100uA, VBE = BC321 40 BC322 30 Collector-BaseBreakdown Voltage BC320 V(BR)CBO 50 Vdc IC= 100 uA,Ie = BC321 40 BC322 30 Emitter-Base Breakdown Voltage BC320 V(BR)EBO 6 Vdc IE= 100 uA,Ic = BC321 5 BC322 5 CollectorCutoffCurrent ICBO nAdc VcB = 20 V, Ie= 30 ON CHARACTERISTICS Base-Emitteron Voltage VBE(on) Vdc IC= 2 mA, VcE = 5 V 0.57 0.68 0.72 = 10 mA, = V IC
in „[V] ca. 250-280St 2N3702 (PNP TO92) und 128St. BC320 (PNP TO92)“ · Markt ·
-
PDF
BC320-Motorola.pdf
Type Symbol Min. | Typ. | Max. | Unit OFF CHARACTERISTICS Collector-EmitteBreakdown Voltage BC320 V(BR)CE0 45 Vdc IC= 1mA, Ib = BC321 30 BC322 20 Collector-EmitteBreakdown Voltage BC320 V(BR)CES 50 Vdc IC= 100uA, VBE = BC321 40 BC322 30 Collector-BaseBreakdown Voltage BC320 V(BR)CBO 50 Vdc IC= 100 uA,Ie = BC321 40 BC322 30 Emitter-Base Breakdown Voltage BC320 V(BR)EBO 6 Vdc IE= 100 uA,Ic = BC321 5 BC322 5 CollectorCutoffCurrent ICBO nAdc VcB = 20 V, Ie= 30 ON CHARACTERISTICS Base-Emitteron Voltage VBE(on) Vdc IC= 2 mA, VcE = 5 V 0.57 0.68 0.72 = 10 mA, = V IC
-
PDF
schaltplan_fft_klirr.pdf
1e-07 PTF=0 KF=0 AF=1 R15 AC 0.9 V3 R8 C4 1.5k .1µ .MODEL D1N4148 D(IS=0.1P RS=16 CJO=2P TT=12N BV=100 IBV=3.867E-10) SINE(0 0.9 1k) 27k out_gnd 470p Qmj15004 in_gnd C2 Q2 .MODEL Qbd140 pnp Qbd140 +IS=1e-09 BF=650.842 NF=0.85 VAF=10 10µ +IKF=0.0950125 ISE=1e-08 NE=1.54571 BR=56.177 Q10 +NR=1.5 VAR=2.11267
in „class ab - verstärker“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
msp430f149.h
) /* ADC12 Sample Hold 0 Select Bit: 3 */ #define SHT0_4 (4*0x100u) /* ADC12 Sample Hold 0 Select Bit: 4 */ #define SHT0_5 (5*0x100u) /* ADC12 Sample Hold 0 Select Bit: 5 */ #define SHT0_6 (6*0x100u) /* ADC12 Sample Hold 0 Select Bit: 6 */ #define SHT0_7 (7*0x100u) /* ADC12 Sample Hold 0 Select Bit: 7 */ #define SHT0_8 (8*0x100u) /* ADC12 Sample Hold 0 Select Bit: 8 */ #define SHT0_9 (9*0x100u) /* ADC12 Sample Hold 0 Select Bit: 9 */ #define SHT0_10 (10*0x100u) /* ADC12 Sample Hold 0 Select Bit: 10 */ #define SHT0_11 (11*0x100u
in „MSP430 Portfehler“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LT1014CN_DN.pdf
BALANCED SOURCE RESISTANCE FREE-AIR TEMPERATURE 10 250 TA= 25°C VCC± = ±15 V 200 V V 150 m µ − − g g 100 l 1 l o o 50 t t s s 0 f V = 5 V f t CC± t u VCC− = 0 p −50 I 0.1 I − − −100 I I V V −150 RS VCC± = ±15 V − + −200 0.01 RS −250 1 k 3 k 10 k 30 k 100 k 300 k 1 M 3 M 10 M −50 −25 0 25 50 75 100 125
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
bmp085.c
// master, i2c, synchron UCB0CTL1 = UCSSEL_2 + UCSWRST; // SMCLK = 1.1MHz, usci immer noch auf UCB0BR0 = 11; // SMCLK = 1.1 MHz/11 ~ 100kHz UCB0BR1 = 0; // ... UCB0I2COA = 0x43; // msp addr UCB0CTL1 &= ~UCSWRST; // usci zu while(1){ //transmit Setup_TX(); NUM_BYTES_TX = 2; PTxData = (unsigned char *)
in „msp430f2274 bmp085 i2c ohne interrupt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Ultrasonic_Anemometer_2D_Ultrasonic.pdf
, No Parity, 1 Stop bit <ID> BR 00003 2400 Baud N 8 1 <ID> BR 00011 2400 Baud E 7 1 Data rate 2400 Baud, 7 Data bits, Parity Equal, 1 Stop bit <ID> BR 00004 4800 Baud N 8 1 Data rate 4800 Baud, 8 Data bits, No Parity, 1 Stop bit <ID> BR 00012 4800 Baud E 7 1 Data rate 4800 Baud, 7 Data bits, Parity Equal, 1 Stop bit <ID> BR 00005 9600 Baud N 8 1 Data rate 9600 Baud, 8 Data bits, No Parity, 1 Stop bit <ID> BR 00013 9600 Baud E 7 1 Data
in „Hitzdrahtanemometer“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Ultrasonic_Anemometer_2D_Ultrasonic.pdf
, No Parity, 1 Stop bit <ID> BR 00003 2400 Baud N 8 1 <ID> BR 00011 2400 Baud E 7 1 Data rate 2400 Baud, 7 Data bits, Parity Equal, 1 Stop bit <ID> BR 00004 4800 Baud N 8 1 Data rate 4800 Baud, 8 Data bits, No Parity, 1 Stop bit <ID> BR 00012 4800 Baud E 7 1 Data rate 4800 Baud, 7 Data bits, Parity Equal, 1 Stop bit <ID> BR 00005 9600 Baud N 8 1 Data rate 9600 Baud, 8 Data bits, No Parity, 1 Stop bit <ID> BR 00013 9600 Baud E 7 1 Data
in „Modellbau Anemometer und Windrichtung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ax_2.200_40.pdf
Hz L5 Tanδ ESR Z TAPED TAPED MOUNTING R 100 Hz 5 min 100 Hz 10 kHz IN BOX ON REEL IN BOX RING (V) (µF) ∅ D ×L 85 °C (µA) 100 Hz Ω ) (Ω ) FORM (mm) (mA) AA FORM FORM FORM BR BA MR 6.3 470 8× 11 260 10 0.25 0.85 0.64 − 23471 33471 − 1000 8× 18
in „H-Brücke DC Motor Strom oszilliert schwingt“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
serverinfo.htm
" alink="#FF0000"><b><font face="Arial,Helvetica"><font size=+2>Infos Webserver</font></font></b> <br><br> <table BORDER=0 COLS=2 WIDTH="340" BGCOLOR="#CCCCCC"> <tr><td WIDTH="140" BGCOLOR="#CCCCCC"><b><font face="Arial,Helvetica">Hardware</font></b></td><td></td></tr> <tr><td><font face="Arial,Helvetica
-
Datei
ardu_ethernet.c
client.println("</head>"); client.print("<body bgcolor='#444444'>"); //---Überschrift--- client.println("<br><hr />"); client.println("<h1><div align='center'><font color='#2076CD'>Arduino Webserver 1.0 by Poldi</font color></div></h1>"); client.println("<hr /><br>"); //---Überschrift--- //---Ausgänge schalten
in „Arduino Ethernet-Problem“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
opa128lm.pdf
noted. OPEN-LOOP FREQUENCY RESPONSE POWER SUPPLY REJECTION vs FREQUENCY 140 140 120 –45 ) 120 Gain d ) 100 s ( B r i 100 ( Ø g c i 80 –90 D e 80 G f R e h l +PSRR a 60 Phase S p 60 o s S –PSRR V 40 Margin –135 h r 40 ∼90° P w o 20 P 20 0 –180 0 1 10 100 1k 10k 100k 1M 10M 1 10 100 1k 10k 100k 1M 10M Frequency
in „Verkaufe 15 x OPA128LM“ · Markt ·
-
PDF
schaltplan.pdf
CJC=1.22855e-09 VJC=0.95 MJC=0.23 XCJC=0.803115 D1 C7 C8 +FC=0.638728 CJS=0 VJS=0.75 MJS=0.5 R10 R6 100µ .1µ +TR=1e-07 PTF=0 KF=0 AF=1 D1N41482 1k 68 .MODEL Qmj15004 pnp +IS=1e-09 BF=226.431 NF=0.85 VAF=43.4348 D1N4148 BC556B Qbd140 +IKF=10 ISE=1e-08 NE=1.79698 BR=1.65466 +NR=1.5 VAR=434.348 IKR=4.42319
in „class ab - verstärker“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
tle2082.pdf
DIFFERENTIAL VOLTAGE AMPLIFICATION AND PHASE SHIFT vs FREQUENCY 140 0° VCC± = ±15 V 120 RL= 2 kΩ 20° C = 100 pF a 100 Gain L 40° n B TA= 25°C r – e n 80 60° i t t l a Phase Shift h n i 60 80° S i p s - m 40 100° a a A P m g S l 20 120° – o V V 0 140° A – 20 160° – 40 180° 1 10 100 1 k 10 k 100 k 1 M 10 M 100
in „Bauteil gesucht: unbekannter TI-Baustein“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
73244.pdf
Aperture Jitter 30 ps Step Response 350 ns DYNAMIC CHARACTERISTICS Signal-to-Noise Ratio VIN= 5Vp-p at 100kHz 72 dB Total Harmonic Distortion) VIN= 5Vp-p at 100kHz –78 –72 –82 –75 dB Signal-to-(Noise+Distortion) V = 5Vp-p at 100kHz 68 70 70 72 dB IN Spurious Free Dynamic Range VIN= 5Vp-p at 100kHz 72 78
in „ADC Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
drv103.pdf
SN Level-1-260C-UNLIM Power no Sb/Br) PAD DRV103HG3 NRND SO DDA 8 100 Green (RoHS & CU SN Level-1-260C-UNLIM Power no Sb/Br) PAD DRV103U NRND SOIC D 8 100 Green (RoHS & CU NIPDAU Level-2-260C-1 YEAR no Sb/Br) DRV103U/2K5 NRND SOIC D 8 2500 Green (RoHS & CU NIPDAU Level-2-260C-1 YEAR no Sb/Br) DRV103U/2K5G4 NRND SOIC D 8 2500 Green (RoHS & CU NIPDAU Level-2-260C-1 YEAR no Sb/Br) DRV103UG4 NRND SOIC D 8 100 Green (RoHS & CU NIPDAU Level-2-260C-1 YEAR no Sb/Br) (1) The marketing status values
in „Widerstände dimensionieren.“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ina105.pdf
2 100 Gain Error = 0.005% 1% CMR = 100dB V– 6 Nonlinearity = 0.0002% V 100 0 0 to 2V 1% 3 1 FIGURE 3. Precision Difference Amplifier. IN 0 to 20mA FIGURE 5. Current Receiver with Compliance to Rails. ® INA105
in „Spannungs / Strom Wandler mit Offset versehen“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
Release_Notes.html
font-family: Verdana;">SDIO_SetSDIOReadWaitMode() function: correct values of SDIO_ReadWaitMode parameter<br>change <br> #define SDIO_ReadWaitMode_CLK ((uint32_t)0x00000000)<br> #define SDIO_ReadWaitMode_DATA2 ((uint32_t)0x00000001)<br>by<br> #define SDIO_ReadWaitMode_CLK ((uint32_t)0x00000001)<br> #define SDIO_ReadWaitMode_DATA2&
in „STM32F10x Std Peripherals Lib V3.5.0 vs. V3.6.1“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AN574_STM.pdf
The Transil is a clamping device which suppresses all overvoltages above the breakdown voltage (V BR) The Trisil is a crowbar device which switches on when overvoltages rise up to the breakover voltage (± V ). BO Figure 2. Electrical characteristics I TRANSIL TRISIL I -BR -V V BO V VBR VBO REV. 2 May
in „Welche Suppresordiode ist besser: Kleine oder große Klemmspannung?“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
main.c
gesetzt wird //P2IFG &= ~(T_SET); //P2IE |= T_SET; // Freigebe Taster für Interrupt P7SEL |= LED_X_Br; // LED_X_Br = Spez. Out P7DIR |= LED_X_Br; // LED_X_Br auf Timer TB0 P2IFG &= ~(T_SET); P2IE |= T_SET; // Freigebe Taster für Interrupt Saegezahn = 1; i = 18; Wobbel_Dir =1; TimerB0(); // START Timer
in „kein definiertes Verhalten in der ISR“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LM393-N.pdf
/Br) LM2903ITL/NOPB ACTIVE DSBGA YZR 8 250 Green (RoHS SNAGCU Level-1-260C-UNLIM -40 to 85 C & no Sb/Br) 03 LM2903ITLX/NOPB ACTIVE DSBGA YZR 8 3000 Green (RoHS SNAGCU Level-1-260C-UNLIM -40 to 85 C & no
in „LM393 Komparatorschaltung gescheitert“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
P4SMA_LIF.PDF
70.10 77.90 86.10 1 113.0 3.6 1 X P4SMA91A P4SMA91CA 91A 91C 77.80 86.50 95.50 1 125.0 3.3 1 X P4SMA100A P4SMA100CA 100A 100C 85.50 95.00 105.00 1 137.0 3.0 1 X P4SMA110A P4SMA110CA 110A 110C 94.00 105.00 116.00 1 152.0 2.7 1 X P4SMA120A P4SMA120CA 120A 120C 102.00 114.00 126.00 1 165.0 2.5 1 X P4SMA130A
in „Warum noch KFZ-Relais?“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
sd_card_speed_test.c
void test_file_write_speed(void) { UINT br, i; int32_t size; // total file size uint16_t start, end, block=100; uint16_t test_array[9] = {100, 200, 500, 1000, 2000, 5000, 10000, 20000, 32768 }; char filename[]="/testwrite.dmx"; for (i=0; i< (
in „SD Karte mit FatFs über SPI an Atmega, wie kann man die Schreibgeschwindigkeit maximieren?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ADum1200pdf.pdf
Temperature Package Model VDD1Side V DD2Side (Mbps) Delay, 5 V(ns) (ns) Range(°C) Option1 ADuM1200AR 2 0 1 100 40 −40 to +105 R-8 ADuM1200AR-RL7 2 0 1 100 40 −40 to +105 R-8 ADuM1200ARZ 2 2 0 1 100 40 −40 to +105 R-8 2 ADuM1200ARZ-RL7 2 0 1 100 40 −40 to +105 R-8 ADuM1200BR 2 0 10 50 3 −40 to +105 R-8 ADuM1200BR-RL7
in „ADum1200 Digitalisolator“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ADUM1201.pdf
Temperature Package Model VDD1Side V DD2Side (Mbps) Delay, 5 V(ns) (ns) Range(°C) Option1 ADuM1200AR 2 0 1 100 40 −40 to +105 R-8 ADuM1200AR-RL7 2 0 1 100 40 −40 to +105 R-8 ADuM1200ARZ 2 2 0 1 100 40 −40 to +105 R-8 2 ADuM1200ARZ-RL7 2 0 1 100 40 −40 to +105 R-8 ADuM1200BR 2 0 10 50 3 −40 to +105 R-8 ADuM1200BR-RL7
in „Mega8 funktioniert ohne Versorgungsspannung :)“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
10); enc28j60PhyWrite(PHLCON,0x476); _delay_ms(100); //init the ethernet/ip layer: init_udp_or_www_server(mymac,myip); www_server_port(MYWWWPORT); register_ping_rec_callback(PingCallback); sendToSerial("Init \r\n"); while(1){ // handle ping and wait
in „SPI Antwortet beim ENC28J60 nicht. Hilfe“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Explanation_of_Data_Sheet_Parameters__INF.pdf
Characteristics . . . . . . . . . . . . 19 3.1 Kollektor-Emitter- 3.1 Collector-Emitter Durchbruchspannung V(BR)CES . 19 Breakdown Voltage V(BR)CES. . . 19 3.2 Drain-Source- 3.2 Drain-Source Durchbruchspannung V(BR)DSS. 19 Breakdown Voltage V(BR)DSS. . . 19 3.3 Gate-Schwellenspannung 3.3 Gate Threshold Voltage
in „Sperrstrom BJT vs. MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
opa1632.pdf
TA= 25°C, V = S15 V, and R = 2 kL (unless otherwise noted) 10 10 z z H H V / 1 ( p n In V 1 0.1 10 100 1k 10k 100k 10 100 1k 10k 100k Frequency (Hz) Frequency (Hz) Figure 7. Voltage Noise vs Frequency Figure 8. Current Noise vs Frequency 15 100 R F 1kW VCC = ±5V G = +2 VCC = ±15V 10 ) V = ±5V ( 5 CC e 10 n V d ( 0 p V V = ±5V m CC t -5 t 1 u O -10 V = ±15V CC -15 0.1 100 1k 10k 100k 100k 1M 10M 100M 1G R (W) Frequency (Hz) L Figure 9. Output Voltage Figure 10. Output Impedance vs Frequency vs Differential Load Resistance 8 Submit Documentation Feedback Copyright © 2003
in „Frage bezüglich einer Analog-Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
S8050.PDF
FEATURES Power dissipation P : 0.625 W(Tamb=25℃) CM Collector current CM : 0.5 A Collector-base voltage V(BR)CBO: 40 V ELECTRICAL CHARACTERISTICS ( Tamb=25 ℃ unless otherwise specified ) Parameter Symbol Test conditions MIN TYP MAX UNIT Collector-base breakdown voltage V(BR) Ic= 100μA , I =0 40 V CBO E Collector-emitter breakdown voltage V(BR)CEO Ic= 0.1 mA, IB=0 25 V Emitter-base breakdown voltage V(BR)EBO IE= 100μ A, C =0 5 V Collector cut-off current CBO VCB 40 V , IE=0 0.1 μ A Collector cut-off current CEO VCE 20 V , IB=0 0.1 μ A Emitter
in „Drehzahlmesser an DIY Motorsteuerung“ · Fahrzeugelektronik ·
-
PDF
S8550.pdf
FEATURES Power dissipation P : 0.625 W(Tamb=25℃) CM Collector current CM : 0.5 A Collector-base voltage V(BR)CBO: 40 V ELECTRICAL CHARACTERISTICS ( Tamb=25 ℃ unless otherwise specified ) Parameter Symbol Test conditions MIN TYP MAX UNIT Collector-base breakdown voltage V(BR) 40 V CBO Ic= 100μA , E =0 Collector-emitter breakdown voltage V(BR) Ic= 0.1 mA, I =0 25 V CEO B Emitter-base breakdown voltage V(BR)EBO I = 100μ A, I =0 5 V E C Collector cut-off current CBO VCB 40 V , IE=0 0.1 μ A Collector cut-off current CEO VCE 20 V , IB=0 0.2 μ
in „Drehzahlmesser an DIY Motorsteuerung“ · Fahrzeugelektronik ·
-
PDF
MSP430F233TPM.pdf
External: UCLK SYSTEM MHz Duty cycle = 50% ± 10% fSCL SCL clock frequency 2.2 V/3 V 0 400 kHz SCL ≤ 100kHz 4.0 tHD,STA Hold time (repeated) START f > 100kHz 2.2 V/3 V 0.6 µs SCL SCL ≤ 100kHz 4.7 tSU,STA Setup time for a repeated START 2.2 V/3 V µs SCL > 100kHz 0.6 t Data hold time 2.2 V/3 V 0 ns HD,DAT
in „MSP430 SPI A25L080 Flash“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ADS7846.pdf
Pins Package Eco Plan Lead/Ball Finish MSL Peak Temp Type Drawing Qty ADS7846E ACTIVE SSOP/ DBQ 16 100 Green (RoHS & CU NIPDAU Level-2-260C-1 YEAR QSOP no Sb/Br) ADS7846E/2K5 ACTIVE SSOP/ DBQ 16 2500 Green (RoHS & CU NIPDAU Level-2-260C-1 YEAR QSOP no Sb/Br) ADS7846E/2K5G4 ACTIVE SSOP/ DBQ 16 2500 Green (RoHS & CU NIPDAU Level-2-260C-1 YEAR QSOP no Sb/Br) ADS7846EG4 ACTIVE SSOP/ DBQ 16 100 Green (RoHS & CU NIPDAU Level-2-260C-1 YEAR QSOP no Sb/Br) ADS7846IGQCR ACTIVE BGA MI GQC 48 2500 TBD SNPB Level-2A-235C-4 WKS CROSTA R JUNI OR ADS7846IRGVR ACTIVE
in „Frage zu ADS7846“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LM393.pdf
/Br) LM2903ITL/NOPB ACTIVE DSBGA YZR 8 250 Green (RoHS SNAGCU Level-1-260C-UNLIM -40 to 85 C & no Sb/Br) 03 LM2903ITLX/NOPB ACTIVE DSBGA YZR 8 3000 Green (RoHS SNAGCU Level-1-260C-UNLIM -40 to 85 C & no
in „Schaltung angucka“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LM393.pdf
/Br) LM2903ITL/NOPB ACTIVE DSBGA YZR 8 250 Green (RoHS SNAGCU Level-1-260C-UNLIM -40 to 85 C & no Sb/Br) 03 LM2903ITLX/NOPB ACTIVE DSBGA YZR 8 3000 Green (RoHS SNAGCU Level-1-260C-UNLIM -40 to 85 C & no
in „Acc-Sensor -> Filter/OPV -> ADC(µC) -> PC -> Filter“ · Mikrocontroller und Digitale Elektronik ·
-
Bild
Nahaufnahme einer bestückten Leiterplatte mit elektronischen Bauteilen
YL ES 185 9000 452 731 20-24V BR4 C109 BR100 C23 R38 BR52 BR51 BR53 BR50 C20 A 754 06
in „Siemens Backofen HB76GB560 Display tot + kein Start“ · Haus & Smart Home · · Platinenfotos
-
PDF
BCR48.pdf
Symbol Values Unit min. typ. max. DC Characteristics for NPN Type Collector-emitter breakdown voltage V(BR)CEO V IC= 100 µA, IB= 0 50 - - Collector-base breakdown voltage V(BR)CBO I = 100 µA, I = 0 50 - - C B Collector cutoff current CBO nA V CB = 40 V, E = 0 - - 100 Emitter cutoff current EBO µA V = 10 V
in „Frage zu Bauelement BCR48 (NPN und PNP Transistor)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ts3v340.pdf
/Br) TS3V340PWG4 ACTIVE TSSOP PW 16 90 Green (RoHS CU NIPDAU Level-1-260C-UNLIM -40 to 85 TF340 & no Sb/Br) TS3V340PWR ACTIVE TSSOP PW 16 2000 Green (RoHS CU NIPDAU Level-1-260C-UNLIM -40 to 85 TF340 & no
in „Analog Switch/Multiplexer für Digitale Signale“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LM809.pdf
S8B & no Sb/Br) LM809M3X-2.63/NOPB ACTIVE SOT-23 DBZ 3 3000 Green (RoHS CU SN Level-1-260C-UNLIM -40 to 105 S3B & no Sb/Br) LM809M3X-2.93/NOPB ACTIVE SOT-23 DBZ 3 3000 Green (RoHS CU SN Level-1-260C-UNLIM -40 to 105
in „3.3V uC LDO mit UVLO, Batterie/Solarbetrieb“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
Wall-E_ESP8266_v1.15.ino
</p>"; s += " <form action='/action'>"; s += " <input type='submit' name='action' value='START' /><br>"; s += " <input type='submit' name='action' value='STOP' /><br>"; s += " <br>"; s += " <input type='submit' name='action' value='HOME' /><br>"; s += " <input type='submit' name='action' value='MAN' /><br>"; s += " <input type='submit' name='action' value='AUTO' /><br>"; s += " </form>"; s += " <br>"; s += " Status:<br>"; s += " <div class='box'>"; s += " <table class='status'>"; s += " <tr><td>Mower<
in „Automower G3 mit USB Diagnoseport fernsteuern?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
lm324-n_OPV.pdf
0.7 1.2 0.7 1.2 0.7 1.2 Large Signal V = 15 V, L ≥ 2 kΩ, Voltage Gain (V = 1 V to 11 V), T = 25°C 50 100 50 100 25 100 V/mV O A Common-Mode DC, V = 0 V to V − 1.5 V, CM 70 85 70 85 65 85 dB Rejection Ratio TA= 25°C + Power Supply V = 5 V to 30 V, (LM2902-N, V = 5V to 26 V), 65 100 65 100 65 100 dB Rejection
in „Schwebende Magnetkugel - Simulation“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
src.txt
form_post_subject"><b>Betreff</b>:</label></td> <td class="value"><input size="50" minlength="12" maxlength="100" class="two_columns" required="required" id="form_post_subject" type="text" value="Re: Verweis/Referenzierung zu anderen Beiträgen" name="post[subject]" /><br /></td> </tr> <tr><td colspan="2"> <div
in „Verweis/Referenzierung zu anderen Beiträgen“ · www.mikrocontroller.net ·
-
PDF
tmp275.pdf
Between STOP and START Condition t(BUF) 600 160 ns Hold time after repeated START condition. t(HDSTA) 100 100 ns After this period, the first clock is generated. Repeated START Condition Setup Time t(SUSTA) 100 100 ns STOP Condition Setup Time t(SUSTO) 100 100 ns Data Hold Time t(HDDAT) 0 0 ns Data Setup
in „Abmessungen Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
sn74cbtd16210.pdf
ACTIVE TVSOP DGV 48 2000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) 74CBTD16210DLRG4 ACTIVE SSOP DL 48 1000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) SN74CBTD16210DGGR ACTIVE TSSOP DGG 48 2000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) SN74CBTD16210DGVR ACTIVE TVSOP DGV 48 2000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) SN74CBTD16210DL ACTIVE SSOP DL 48 25 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) SN74CBTD16210DLG4 ACTIVE SSOP DL 48 25 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) SN74CBTD16210DLR
in „Level Shifter TI SN74CBTD16210“ · Mikrocontroller und Digitale Elektronik ·
-
Bild
Schaltplan eines HD44780 Textdisplays mit PFS 154 Controller
HD44780 kompatibles Textdisplay, +5V, BR3, BR4, LED, LED, LED, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, LED, LED, +5V, LED_RV, Kontrast, 220n, +5V, BR2, BR1, +5V, D7, D6, D5, clk, rs, 2, 11, 15, 14, 13, 8, 8, 8, B7, 5, Vdd, 10, PFS 154
in „"Intelligenter" Textdisplayadapter mit Padauk PFS154“ · Projekte & Code · · Schaltpläne
-
PDF
PT2388-5-f-Equalizer.pdf
Preset Equalizer IC PT2388 APPLICATION CIRCUIT DIRECT KEY MODE + + Vcc IN_L 1 INL INR 24 IN_R 2 BL1 BR1 23 0.068µ 3 BL2 BR2 22 0.068µ 5.6K 1500p 5.6K 4.7K 4 TL TR 21 + 1500p 1500p 1500p + OUT_L 5 OUTL OUTR 20 OUT_R VCC + 6 VCC PT2388 Jazz 19 Jazz 10K 7 Bias Classic 18 Classic 100 10K 47µ 8 GND Pops 17
in „Interessanter Audio-IC PT2388“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
SD211SeriesDSRevA10.pdf
213 Series 215 Series UNIT Min Max Min Max Min Max Static Drain - Source VGS V =BS, I =1DµA 35 30 V(BR)DS Breakdown Voltage VGS V =BSV, I =D0 nA 30 10 10 20 Source - Drain V V = V =-5V, I =10 nA 22 10 10 20 Breakdown Voltage (BR)SD GS BD S Drain - Substrate VGB0V, I D 10nA V Breakdown Voltage V(BR)DBO
in „Schaltung mit 2 N-Kanal Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
tlc5916.pdf
NIPDAU Level-1-260C-UNLIM no Sb/Br) TLC5916IPWG4 ACTIVE TSSOP PW 16 90 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLC5916IPWR ACTIVE TSSOP PW 16 2000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLC5916IPWRG4 ACTIVE TSSOP PW 16 2000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLC5917ID ACTIVE SOIC D 16 40 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLC5917IDG4 ACTIVE SOIC D 16 40 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLC5917IDR ACTIVE SOIC D 16 2500
in „Current Sink in Current Source transformieren“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
TLC5916.pdf
NIPDAU Level-1-260C-UNLIM no Sb/Br) TLC5916IPWG4 ACTIVE TSSOP PW 16 90 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLC5916IPWR ACTIVE TSSOP PW 16 2000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLC5916IPWRG4 ACTIVE TSSOP PW 16 2000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLC5917ID ACTIVE SOIC D 16 40 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLC5917IDG4 ACTIVE SOIC D 16 40 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLC5917IDR ACTIVE SOIC D 16 2500
in „Gesucht: LED-Treiber 8 LED (100mA-200ma)“ · Mikrocontroller und Digitale Elektronik ·
-
Bild
Leiterplatte eines Netzteils mit Transformator und Elektrolytkondensatoren
ST12 R38 T12 T10 C4 C20 T11 KK10 BR11 C50 KK100 T124 20-240V 50/60Hz 9,6V 135 T85 9000 108 928 C109 BR100 BD#4 BR51 BR52 B3 11 94V02
in „Backofen Gaggenau BO 210-110 komplett dunkel und tot“ · Haus & Smart Home · · Platinenfotos