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onbire.html
document.nsunter.document.open(); document.nsunter.document.write("<div align='center' class='Text'><br><br><br> Bildschirmreinigung aktiv!</div>"); document.nsunter.document.close(); } else if(document.getElementById) document.getElementById("ie_unterschrift").innerHTML = 'Bildschirmreinigung
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PDF
ads8326.pdf
8192 point FFT, fIN= 9.9792kHz, –0.2dB) 0 0 -20 -20 -40 -40 ) ) d -60 d -60 e ( d -80 d -80 l l p p A-100 m -100 A -120 -120 -140 -140 -160 -160 0 25 50 75 100 125 0 25 50 75 100 125 Frequency (kHz) Frequency (kHz) Figure 8. Figure 9. Copyright © 2007–2009, Texas Instruments Incorporated Submit Documentation
in „Problem mit OP als Spannungsfolger vor ADC“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Neues_Textdokument__2_.txt
client.println("</head>"); client.print("<body bgcolor='#999999'>"); //---Überschrift--- client.println("<br><hr />"); client.println("<h1><div align='center'><font color='#2076CD'>Webserver </font color></div></h1>"); client.println("<hr /><br>"); //---Überschrift--- //---Ausgänge schalten--- client.println
in „atmaga2560 + Interrupt + lan = abbruch.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
i2c2.c
UCB0CTL0_ 0x0068 sfrb(UCB0CTL0,UCB0CTL0_); #define UCB0CTL1_ 0x0069 sfrb(UCB0CTL1,UCB0CTL1_); #define UCB0BR0_ 0x006A sfrb(UCB0BR0,UCB0BR0_); #define UCB0BR1_ 0x006B sfrb(UCB0BR1,UCB0BR1_); #define UCB0I2CIE_ 0x006C sfrb(UCB0I2CIE,UCB0I2CIE_); #define UCB0STAT_ 0x006D sfrb(UCB0STAT,UCB0STAT_); #define UCB0RXBUF
in „I2C bei MSP430F2122“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADSP-2181_Datenblatt.pdf
A12 65 ECLK 97 D19 2 PF3 34 A13 66 ELOUT 98 D20 3 PF2 35 IRQE 67 ELIN 99 D21 4 PF1 36 MMAP 68 EINT 100 D22 5 PF0 37 PWD 69 EBR 101 D23 6 WR 38 IRQ2 70 BR 102 GND 7 RD 39 BMODE 71 EBG 103 IWR 8 IOMS 40 PWDACK 72 BG 104 IRD 9 BMS 41 IACK 73 VDD 105 IAD15 10 DMS 42 BGH 74 D0 106 IAD14 11 CMS 43 VDD 75 D1
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SitePlayer_Software_Manual.pdf
content="5" --> </head> <body bgcolor="#666666"> <h1 align="center"><font color="#FFFF00">SitePlayer<br> Audio Receiver Demo<br> Text Version</font><br> <br> <font color="#00FF00">^channel:3^^channel:2.^channel:1 FM</font><br> The current volume is <font color="#00FF00">^volume</font><br> <br> Seek <a
in „RS232 nach HTTP/HTML Konverter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HSMP-381x__481x.pdf
E0 B Single 381C E2 C Series 381E E3 E Common Anode 381F E4 F Common Cathode Test Conditions V R=V BR VR= 50V IF= 0.01mA I =F20mA IF= 100mA IF= 1mA Measure f = 1MHz f = 100MHz f = 100MHz f = 100MHz f = 100MHz I ≤ 10uA R HighFrequency(LowInductance,500MHz–3GHz)PINDiodes Minimum Maximum Series Typical
in „PIN-Diode "EA2", SOT-23, kennt die jemand?“ · HF, Funk und Felder ·
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PDF
BC847S.pdf
Values Unit min. typ. max. DC Characteristics per Transistor Collector-emitter breakdown voltage V(BR)CEO 45 - - V I = 10 mA, I = 0 C B Collector-base breakdown voltage V(BR)CBO 50 - - C = 10 µA, B = 0 Collector-emitter breakdown voltage V 50 - - (BR)CES C = 10 µA, BE = 0 Emitter-base breakdown voltage
in „Dual Transistor npn+pnp bei Reichelt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tps63031_buckboost.pdf
Save Enabled 10 Power Save Disabled 0 0 0.1 1 10 100 1000 0.1 1 10 100 1000 I - Output Current - mA I - Output Current - mA O O Figure 5. Figure 6. EFFICIENCY EFFICIENCY vs vs INPUT VOLTAGE INPUT VOLTAGE 100 I = 100 mA 100 V O 2.5 V O VO= 4.5 V IO= 100
in „TPS63031 Beschaltungs-Frage“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tps63031.pdf
Save Enabled 10 Power Save Disabled 0 0 0.1 1 10 100 1000 0.1 1 10 100 1000 I - Output Current - mA I - Output Current - mA O O Figure 5. Figure 6. EFFICIENCY EFFICIENCY vs vs INPUT VOLTAGE INPUT VOLTAGE 100 I = 100 mA 100 V O 2.5 V O VO= 4.5 V IO= 100
in „Seltsames SMD-Pad“ · Platinen ·
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Datei
Temp_LAN_display_Volt.ino
client.println("</head>"); client.print("<body bgcolor='#222222'>"); //---Überschrift--- client.println("<br><hr />"); client.println("<h1><div align='left'><font color='#2076CD'> Webserver </font color></div></h1>"); client.println("<hr /><br>"); //---Überschrift--- //---Ausgänge schalten--- client.println
in „atmaga2560 + Interrupt + lan = abbruch.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
header.txt
-1, 16.05.2015), Inbound message X-Antivirus-Status: Clean <span style=3D"font-size:24px;">Inquiry<br> <br>Dear we are Progressiv= e continental trading Co.llc (PTC) based in<br>Qatar,We are in need of your= products, Urgently<br>please send to us your complete catalog / website ?<= br>Best regards,<br> <br>Arshad Suleiman</span>
in „e-mail Problem“ · Offtopic ·
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PDF
PCF8574.pdf
0 25 50 75 100 125 −50 −25 0 25 50 75 100 125 Temperature (°C) Temperature (°C) Figure 1. Supply Current vs Temperature Figure 2. Standby Supply Current vs Temperature 100 20 90 SCL = 100 kHz VCC = 2.5 V All I/Os
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Datei
i2c3.c
UCB0CTL0_ 0x0068 sfrb(UCB0CTL0,UCB0CTL0_); #define UCB0CTL1_ 0x0069 sfrb(UCB0CTL1,UCB0CTL1_); #define UCB0BR0_ 0x006A sfrb(UCB0BR0,UCB0BR0_); #define UCB0BR1_ 0x006B sfrb(UCB0BR1,UCB0BR1_); #define UCB0I2CIE_ 0x006C sfrb(UCB0I2CIE,UCB0I2CIE_); #define UCB0STAT_ 0x006D sfrb(UCB0STAT,UCB0STAT_); #define UCB0RXBUF
in „I2C bei MSP430F2122“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sn74hc165.pdf
/Br) SN74HC165DG4 ACTIVE SOIC D 16 40 Green (RoHS NIPDAU Level-1-260C-UNLIM -40 to 125 HC165 & no Sb/Br) SN74HC165DR ACTIVE SOIC D 16 2500 Green (RoHS NIPDAU | SN Level-1-260C-UNLIM -40 to 125 HC165 & no
in „11110000 im Schieberegister rotieren lassen“ · Mikrocontroller und Digitale Elektronik ·
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bode.htm
<body id="BODY"> <form> <label for="Z1">R1:<input id="Z1" value="22" type="input">kΩ</label><br> <label for="Z2">R2:<input id="Z2" value="22" type="input">kΩ</label><br> <label for="Z3">C1:<input id="Z3" value="68" type="input">nF</label><br> <label for="Z4">C2:<input id="Z4" value="68" type="input">nF</label><br><br> <img src="Tiefpass.gif"> <button type="button" id="Tiefpass">Tiefpass</button> <img src="Hochpass.gif"> <button type="button" id="Hochpass">Hochpass</button><br><br> <div id="Debug"></div> <div
in „Bodediagramm für 2Pol aktiv Hoch und Tiefpass“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TDE1798.pdf
output output stage, and the clamping voltage is the col- stageduring a demagnetizationis : W = V (BR)L [ o − V(BR)− VCC Log ( 1 + VCC ) ] R R V(BR)− V CC Remark 1 : This energy is dissipated inside the loads. The dispersion of the collector-emitter case, then must be included in the whole power breakdownvoltage V(BR) would induce the circuit dissipation. with the lowest V(BR) to dissipate the whole de- Remark 2 : The use of external clamping device magnetizati2n energy (which is roughly propor- is recommended in
in „High Side Switch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_OPA657_2008-12.pdf
80 –12 ) 90 70 –34 i B 20 log(OL) ° 80 +PSRR ( 60 –56 3 B B ) i ( ( ( 70 a 50 –78 s R R –PSRR p 40 –100 h R R 60 o < A P C P - 30 OL –122 o 50 e L p 20 –144 n 40 O p 10 –166 O 30 0 –188 20 –10 –210 1k 10k 100k 1M 10M 100M 100 1k 10k 100k 1M 10M 100M 1G Frequency (Hz) Frequency (Hz) RECOMMENDED R vs CSPACITIVE LOAD FREQUENCY RESPONSE vs CAPACITIVE LOAD 100 )23 d ( CL= 10pF a20 L C = 22pF e L i17 a C L 100pF ) p14 ( 10 C R t I RS i 11 50Ω OPA657 VO a C 1kΩ G 8 453Ω L e l a 5 50Ω For Maximally Flat Frequency Response o 1 N 2 10 100 1k 1 10 100 500 Capacitive
in „Stabilität OPV OPA657“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CD4056.pdf
& no Sb/Br) CD4056BM96G4 ACTIVE SOIC D 16 2500 Green (RoHS CU NIPDAU Level-1-260C-UNLIM -55 to 125 CD4056BM & no Sb/Br) CD4056BME4 ACTIVE SOIC D 16 40 Green (RoHS CU NIPDAU Level-1-260C-UNLIM -55 to 125 CD4056BM
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PDF
CU40025SCPB-W6J_E02.pdf
Cursor move Generator RAM R/L = 1 : Shift to the right ACG: CG RAM R/L = 0 : Shift to the left Address BR1,BR0 = 00 : 100% 01 : 75% ADD: DD RAM 10 : 50% Address 11 : 25% ACC: Address Counter Note: * : don't care 4 CU40025SCPB-W6J 7.2 Display Clear DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 0 0 1 01H RS=0
in „Labels oder so was ähnliches“ · Mikrocontroller und Digitale Elektronik ·
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Wie_archiviert_ihr_Websites__-_Mikrocontroller.net.htm
MathJax_ZoomOverlay {position: absolute; left: 0; top: 0; z-index: 300; display: inline-block; width: 100%; height: 100%; border: 0; padding: 0; margin: 0; background-color: white; opacity: 0; filter: alpha(opacity=0)} #MathJax_ZoomFrame {position: relative; display: inline-block; height: 0; width: 0} #
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PDF
TPD4E001_Eingangsschutz_bis_15kV.pdf
) (1) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT V Supply voltage 0.9 5.5 V CC CC Supply current 1 100 nA VF Diode forward voltage IF= 10 mA 0.65 0.95 V V Breakdown Voltage I = 10mA 11 V BR BR T = 25°C, ±15-kV HBM, Positive transients V CC+ 25 A IF= 10 A Negative transients –25 T = 25°C, Positive transients
in „Einfluss elektrostatischer Ladung auf Schaltungen vermindern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
simple_server.c
devices: static u8 mymac[6] = { 0x54, 0x55, 0x58, 0x10, 0x00, 0x24 }; static u8 myip[4] = { 192, 168, 2, 100 }; u8 st[10] = { 0,2,4,6 }; // base url (you can put a DNS name instead of an IP addr. if you have // a DNS server (baseurl must end in "/"): static char baseurl[] = "http://192.168.2.100/"; static
in „Webpage Webserver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mpy100.pdf
NRND CDIP SB JD 14 1 Green (RoHS & AU N / A for Pkg Type no Sb/Br) MPY100AG3 OBSOLETE CDIP SB JD 14 TBD Call TI Call TI MPY100AM OBSOLETE TO-100 LME 10 TBD Call TI Call TI MPY100BG NRND CDIP SB JD 14 1 Green (RoHS & AU N / A for Pkg Type no Sb/Br) MPY100BG2 OBSOLETE CDIP SB JD 14 TBD Call TI Call TI MPY100BM OBSOLETE TO-100 LME 10 TBD Call TI Call TI MPY100CG NRND CDIP SB JD 14 1 Green (RoHS & AU N / A for Pkg Type no Sb/Br) MPY100CG1 OBSOLETE CDIP SB JD 14 TBD Call TI Call TI MPY100CM OBSOLETE TO-100
in „MPY100AG - warum so teuer?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps5431.pdf
Package Pins Package Eco Plan Lead/Ball Finish MSL Peak Temp Type Drawing Qty TPS5430DDA ACTIVE SO DDA 8 100 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM Power no Sb/Br) PAD TPS5430DDAG4 ACTIVE SO DDA 8 100 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM Power no Sb/Br) PAD TPS5430DDAR ACTIVE SO DDA 8 2500 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM Power no Sb/Br) PAD TPS5430DDARG4 ACTIVE SO DDA 8 2500 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM Power no Sb/Br) PAD TPS5431DDA ACTIVE SO DDA 8 100 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM Power no Sb/Br) PAD TPS5431DDAG4
in „Warum neigt ein (Stepdown) Regler mit Keramik Cs zum schwingen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
rf_physics.pdf
96 11935 C V + 10 V IC measure S2 I L C C IB V S1 0 to 30 V + 5 V V CE V (BR)CEO 3 Pulses V (BR)CEO I(BR)R tp 100 mW T + 0.1 tp + 10 ms Figure 9. IC Second breakdown Onset of second breakdown IC IB V CE E = 0 IB> 0 IB= 0 VBE First breakdown IE B<0 95 10246 V CEOmax V (BR)CEO V(BR)CEV VCE [V (BR)CBO Figure 10. Typical voltage-breakdown behavior of a transistor 8 10.00 Vishay Telefunken V CEsat Saturation voltage, collector emitter The collector saturation voltage is the DC voltage
in „Transistorparameter Erklärung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SMBTA56.pdf
Parameter Symbol Values Unit min. typ. max. DC Characteristics Collector-emitter breakdown voltage V(BR)CEO 80 - - V I = 1 mA, I = 0 C B Collector-base breakdown voltage V(BR)CBO 80 - - IC= 100 µA, IB= 0 Emitter-base breakdown voltage 4 - - V(BR)EBO IE= 10 µA, C = 0 Collector cutoff current ICBO - - 100
in „Constant Current Source“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430f1232.pdf
ACTIVE SOIC DW 20 25 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) MSP430F1132IDWR ACTIVE SOIC DW 20 2000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) MSP430F1132IPW ACTIVE TSSOP PW 20 70 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) MSP430F1132IPWR
in „MSP430 Interrupt Prioritäten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Akku-Lader.pdf
0,385Vbis3,85V.Beimehrals2inReihe bis 200 mV abfallen. 4 Spannungsstabilisierung DieAnpassungderAkkuspannung(Zel- BR2 lenzahl)andenEingangsspannungsbereich ST1 UB der- U-Erfassungvon0,385 Vbis3,85 V T1 wird mit Hilfe des Spannungsteilers R 10 BC548 6 2 7 k R1 R 2 R 1 und R 11 vorgenommen. Wenn R 11 R 10k 100 k beträgt
in „Frage zum Akkuladen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
wandler.html
">-</span><span class="code_number">6</span>·<span class="code_number">100e</span><span class="code_operator">-</span><span class="code_number">6</span>)<span class="code_endofline">$</span><BR> <span class="code_variable">bsp</span><span class="code_operator">:</span>[<span
in „Algorithmus gesucht: Einschwingvorgang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s-cu20049-uw2j_e03.pdf
the brightness control function is not initiated. Screen brightness is as follows. BR1 BR0 Brightness 0 0 100 % (Default) 0 1 75 % 1 0 50 % 1 1 25 % 7.8 Set CG RAM Address DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 1 ACG 40H to 7FH RS=0 This instruction 1. Loads a new 6-bit address into the address
in „[V] VFD, 4x20, CU20049-UW2J von Noritake itron“ · Markt ·
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PDF
15SMC68AT3.PDF
maximum. ELECTRICAL CHARACTERISTICS (A = 25⋅C unless I otherwise noted, V = 3.5 V Max. @ I (Note 5) = 100 A) F F I Symbol Parameter F IPP Maximum Reverse Peak Pulse Current VC Clamping Voltage @ IPP V V V VRWM Working Peak Reverse Voltage C BR RWM V R VF IR Maximum Reverse Leakage Current @ V RWM T VBR
in „Ersatzteilempfehlungen gesucht (TVS-Diode HDD)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
p6ke68-2635878.pdf
66.4 5 118 5.3 P6KE82A P6KE82CA 82 ± 5% 77.9...86.1 70.1 5 113 5.5 P6KE91 P6KE91C 91 ± 10% 81.9...100 73.7 5 131 4.8 P6KE91A P6KE91CA 91 ± 5% 86.5...95.5 77.8 5 125 5.0 P6KE100 P6KE100C 100 ± 10% 90.0...110 81.0 5 144 4.3 P6KE100A P6KE100CA ) 100 ± 5% 95.0...105 85.5 5 137 4.5 P6KE110 P6KE110C 110 ±
in „Schaltung für Umpolung Gleichstrommotor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OPB743.pdf
) V (BR)CEO Collector-Emitter Breakdown Voltage 30 - - V IC= 100 µA V (BR)ECO Emitter-Collector Breakdown Voltage 5 - - V IE= 100 µA ICEO Collector Dark Current - - 100 nA V CE= 10 V, IF= 0, EE=0 Output Photodarlington
in „Ferrariszähler auslesen mit Reflexlichtschranke und LM393“ · Analoge Elektronik und Schaltungstechnik ·
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file.html
cx="100" cy="100" r="60" stroke="black" stroke-width="black" fill="black" /> <circle cx="100" cy="100" r="40" stroke="red" stroke-width="red" fill="red" /> <circle cx="100" cy="100" r="20" stroke="yellow" stroke-width="yellow" fill="yellow" /> <line x1="100" y1="10" x2="100" y2="190" stroke="blue" stroke-width="1" /> <line x1="10" y1="100" x2="190" y2="100" stroke="blue" stroke-width="1" /> <circle cx="100" cy="100" r="10" id="svgcenter" onclick="javascript
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Datei
device2007.txt
NMC93CS66, NM93C46, NM93C56, NM93C66, NM59C11, NM24C02/L, NM24C04/L, NM24C08, NM24C16, ____Serial-ROHM BR24C01A, BR24C02, BR24C04, BR24C08, BR24C16, BR24C32, BR24C64, BR93C46, BR93C56, BR93C66, BR93C46, BR93C56, BR93C66, BR93LC46, BR93LC56, BR93LC66, BR93LC46, BR93LC56, BR93LC66, BR9010AF, BR9020AF, BR9040AF, BR9080AF, BR9080CF, BR9010B, BR9020B, BR9040B, BR9080B, BR9020AM, BR9040AM, BR9080AM, BR9080CL, BR9016A, BR9016AM, BR9016CM, BR9016CH, ____Serial-SAMSUNG KM93C46, KM93C46V, KM93C56, KM93CS56, KM93C57, KM93C66
in „24C04 beschreiben und auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ths6012.pdf
e 6 d Gain = 100 u − 40 l 5 e p e A R = 820 L 30 t 4 F u p t u RF= 1.2 k u 20 O 3 O 2 VCC= ± 5 V 10 Gain = 2 V CC= ± 5 V R G10 1 RL= 25 0 R L 25 VI= 200 mV V = 2 V O 0 −10 100k 1M 10M 100M 500M 100k 1M 10M 100M 500M
in „DDS Endstufe DC-50 Mhz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sn65240_USB_TVS.pdf
Drawing Qty SN65220DBVR ACTIVE SOT-23 DBV 6 3000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) SN65220DBVRG4 ACTIVE SOT-23 DBV 6 3000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) SN65220DBVT ACTIVE SOT-23 DBV 6 250 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) SN65220DBVTG4 ACTIVE SOT-23 DBV 6 250 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) SN65220YZBR ACTIVE DSBGA YZB 4 3000 Green (RoHS & Call TI Level-1-260C-UNLIM no Sb/Br) SN65220YZBT ACTIVE DSBGA YZB 4 250 Green (RoHS & Call TI Level-1-260C-UNLIM no Sb/Br) SN65240P ACTIVE PDIP P 8
in „sn65240 USB TVS Diode. Paralell schalten?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
com_adapter.htm
align="center"><span style="color: windowtext;"> <hr align="center" size="2" width="100%"> </span></div> <p> </p> <p><strong><u><span style="font-size: 24pt; color: rgb(33, 33, 66);">Sercon2</span></u></strong><a name="Sercon2"></a><strong><span style="color: rgb(33, 33, 66);"> ist
in „Verbindungsfehler beim Ponyprog“ · Mikrocontroller und Digitale Elektronik ·
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PDF
top2008.pdf
),P93X16, BR93C56(128x16),P93X16, BR93C66(256x16),P93X16, BR93LC46(128x8), BR93LC56(256x8),P93, BR93LC66(512x8),P93, BR93LC46(64x16),P93X16, BR93LC56(128x16),P93X16, BR93LC66(256x16),P93X16, BR9010AF, BR9020AF, BR9040AF, BR9080AF, BR9080CF, BR9010B(128x16),BR90, BR9020B(128x16),BR90, BR9040B(256x16),BR90, BR9080B(512x16),BR90, BR9020AM(128x16),BR90, BR9040AM(256x16),BR90, BR9080AM(512x16),BR90, BR9080CL(512x16),BR90, BR9016A
in „[V] Top 853 Universal Programmer + 74er Tester“ · Markt ·
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PDF
emw3165.pdf
Crystal oscillator, Baseband PLL, AFE, RF PLL, Radio Note 7: CCK power at chip port. Duty cycle is 100%. Includes PA contribution. Note 8: OFDM power at chip port. Duty cycle is 100%. Includes PA contribution. Note 9: OFDM power at chip port is 16 dBm, duty cycle is 100%, includes PA contribution. Note
in „EMW3165 - Der ESP8266 Killer ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2N3906.pdf
SMALLSIGNALCHARACTERISTICS fT Current Gain - Bandwidth Product IC= 10 mA, V CE= 20 V, 250 MHz f = 100 MHz C obo Output Capacitance V CB = 5.0 V,EI = 0, 4.5 pF f = 100 kHz Input Capacitance V = 0.5 V, I = 0, 10.0 pF C ibo EB C f = 100 kHz NF Noise Figure IC = 100 µA, VCE = 5.0 V, 4.0 dB R S1.0kΩ,f=10
in „SMD version vom 2n3906 / 2n3904“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps65131.pdf
= 15 V POS POS 0 0 0.10 1 10 100 1000 0.1 1 10 100 1000 I − Output Current − mA O O − Output Current − mA Figure 9. Figure 10. TPS65130 TPS65131 EFFICIENCY EFFICIENCY vs vs OUTPUT CURRENT OUTPUT CURRENT 100 100 VIN= 4 V VIN= 5 V 90
in „OLED Sammelbestellung“ · Markt ·
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Bild
Schaltplan eines HD44780 Textdisplays mit PFS 154
HD44780 kompatibles Textdisplay +5 V BR3 LED LED 14 13 12 11 10 9 8 7 6 5 4 3 2 1 +5 V 22k Kontrast LED LED +5 V * aufgrund unterschiedlicher Pinbelegungen der Textdisplays, bei denen die Pins der Beleuchtungsdioden rechts oder links der "
in „"Intelligenter" Textdisplayadapter mit Padauk PFS154“ · Projekte & Code · · Schaltpläne
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Wie_archiviert_ihr_Websites__-_Mikrocontroller.net.html
(100%, #ffb847));background:-webkit-linear-gradient(left, #fa0 0%, #ffb847 100%);background:-o-linear-gradient(left, #fa0 0%, #ffb847 100%);background:-ms-linear-gradient(left, #fa0 0%, #ffb847 100%);background
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PDF
Schieberegister_TPIC_6B595_DB_Datenblatt.pdf
operating free-air temperature range (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT V(BR)DSX Drain-to-source breakdown D = 1 mA 50 V voltage Source-to-drain diode forward VSD F = 100 mA 0.85 1 V voltage I = −20 µA, V = 4.5 V 4.4 4.49 VOH High-level output voltage, SER OH CC V OUT OH = −4
in „Auswahl Schalterarray“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_TPIC6B595.pdf
operating free-air temperature range (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT V(BR)DSX Drain-to-source breakdown D = 1 mA 50 V voltage Source-to-drain diode forward VSD F = 100 mA 0.85 1 V voltage I = −20 µA, V = 4.5 V 4.4 4.49 VOH High-level output voltage, SER OH CC V OUT OH = −4
in „Interne Schaltung: TPIC6B595“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
= 10 -1.3 -1.1 -.1 VBE(SAT) (V) VCE(SAT)- (V) -0.9 -0.7 -.05 -0.5 0 -.02 -1.0 -10 -100 -1000 -1.0 -10 -100 -1000 I - (mA) IC- (mA) C Collector Reverse Current vs Input and Output Capacitances vs Reverse Bias Voltage Reverse Bias Voltage 100 20 T = 25°C 0 A 16 T A= 25°C CIBO 100 12 pF
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Web_Haus_Webserver.bas
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sn75lvds84a.pdf
D11 13 35 15 BLUE0 BLUE0 15 D12 Y2M A2M BLUE1 BLUE1 D13 BLUE2 BLUE2 16 D14 100 Ω 18 34 16 BLUE3 BLUE3 19 D15 Y2P A2P NA BLUE4 D16 NA BLUE5 20 D17 22 33 H_SYNC H_SYNC 23 D18 CLKOUTM CLKINM V_SYNC V_SYNC D19 ENABLE ENABLE 25 D20 100 Ω 26 32 CLOCK CLOCK CLKIN CLKOUTP CLKINP A3M 100
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