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bts621.pdf
- 10 mA or GND pulled up, Vbb30 V, V =IN, see diagram page 8 Turn-on time IN to 90% V OUT: t on 80 200 400 s Turn-off time IN to 10% V OUT: t off 80 200 400 R L 12 ,Tj=-40...+150°C Slew rate on dV /dton 0.1 -- 1 V/ s 10 to 30% V OUT ,RL= 12 ,T j-40...+150°C Slew rate off -dV/dtoff 0.1 -- 1 V/ s 70 to
in „Atmega8 Portpin VCC-loss sicher machen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Vishay_Diode_Marking.pdf
BFF SS3H9 MS9 SM15T15A GEG7 GEG7 SMCJ28A GFG BFG SS3H10 MS10 SM15T18A GEM7 BEM7 SMCJ30 GFH BFH SSC53L 53L SM15T200A GHR7 GHR7 SMCJ30A GFK BFK SSC54 S54 SM15T220A GHR8 GHR8 SMCJ33 GFL BFL TPSMC10 DNP SM15T22A GET7 BET7 SMCJ33A GFM BFM TPSMC10A DPP SM15T24A GEV7 GEV7 SMCJ36 GFN BFN TPSMC11 DQP SM15T27A
in „Unbekanntes Bauteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
marking.pdf
BFF SS3H9 MS9 SM15T15A GEG7 GEG7 SMCJ28A GFG BFG SS3H10 MS10 SM15T18A GEM7 BEM7 SMCJ30 GFH BFH SSC53L 53L SM15T200A GHR7 GHR7 SMCJ30A GFK BFK SSC54 S54 SM15T220A GHR8 GHR8 SMCJ33 GFL BFL TPSMC10 DNP SM15T22A GET7 BET7 SMCJ33A GFM BFM TPSMC10A DPP SM15T24A GEV7 GEV7 SMCJ36 GFN BFN TPSMC11 DQP SM15T27A
in „Suche Datenblatt zu S422“ · Mikrocontroller und Digitale Elektronik ·
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PDF
marking.pdf
BFF SS3H9 MS9 SM15T15A GEG7 GEG7 SMCJ28A GFG BFG SS3H10 MS10 SM15T18A GEM7 BEM7 SMCJ30 GFH BFH SSC53L 53L SM15T200A GHR7 GHR7 SMCJ30A GFK BFK SSC54 S54 SM15T220A GHR8 GHR8 SMCJ33 GFL BFL TPSMC10 DNP SM15T22A GET7 BET7 SMCJ33A GFM BFM TPSMC10A DPP SM15T24A GEV7 GEV7 SMCJ36 GFN BFN TPSMC11 DQP SM15T27A
in „Suche die Bezeichnung eines Bauteils“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
88912_Marking_Diodes_Vishay-061201.pdf
BFF SS3H9 MS9 SM15T15A GEG7 GEG7 SMCJ28A GFG BFG SS3H10 MS10 SM15T18A GEM7 BEM7 SMCJ30 GFH BFH SSC53L 53L SM15T200A GHR7 GHR7 SMCJ30A GFK BFK SSC54 S54 SM15T220A GHR8 GHR8 SMCJ33 GFL BFL TPSMC10 DNP SM15T22A GET7 BET7 SMCJ33A GFM BFM TPSMC10A DPP SM15T24A GEV7 GEV7 SMCJ36 GFN BFN TPSMC11 DQP SM15T27A
in „Bauteil identifizieren diode, SMC, "G DE 47"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R3112x_SERIES_Ricoh.pdf
=85°C l l p p u0.3 u0.4 S -40°C S -40°C 0 0 0 1 2 3 4 5 6 7 0 1 2 3 4 5 6 7 Input VoltageIN(V) Input VoltageIN(V) 2) Detector Threshold vs. Temperature R3112x091x R3112x131x e e g 0.98 g 1.42 l l V V 1.40 d 0.96 +VDET d s s 1.38 +VDET e 0.94 e e ) e )1.36 / ( / ( l E0.92 l E1.34 h V -VDET h V e 0.90 e 1.32 -VDET h h 1.30 T T t 0.88 t 1.28 e e e 0.86 e 1.26 D -50 -25 0 25 50 75 100 D -50 -25 0 25 50 75 100 Temperature Topt(°C) Temperature Topt(°C) 13 R3112x R3112x271x
in „IC von Tiefentladungsschutz identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SH1106_V2.3.pdf
tDS8 Data setup time 80 - - ns tDH8 Data hold time 30 - - ns tCH8 Output disable time 20 - 140 ns C L = 100pF tACC8 RD access time - - 280 ns C L = 100pF tCCLW Control L pulse width (WR) 200 - - ns tCCLR Control L pulse width (RD) 240 - - ns tCCHW Control H pulse width (WR) 200 - - ns tCCHR Control H
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PDF
SH1106.pdf
tDS8 Data setup time 80 - - ns tDH8 Data hold time 30 - - ns tCH8 Output disable time 20 - 140 ns C L = 100pF tACC8 RD access time - - 280 ns C L = 100pF tCCLW Control L pulse width (WR) 200 - - ns tCCLR Control L pulse width (RD) 240 - - ns tCCHW Control H pulse width (WR) 200 - - ns tCCHR Control H
in „SH1106 Init-Sequenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ax_2.200_40.pdf
packaging quantities; see Fig.5 NOMINAL MOUNTING RING: FORM MR CASE SIZE CASE MASS PACKAGING ∅ D ×L CODE ∅d1 ∅ d2 ∅D2 max D3 Lmax (g) QUANTITIES (mm) (mm) (mm) (mm) (mm) (mm) 15 × 30 02 0.8 1.0 +0.4 17.5 16.5 ±0.2 33 ≈11.7 200 18 × 30 03 0.8 1.0 +0.4 19.5 18.5 ±0.2 33 ≈12.9 200 18 × 40 04 0.8 1.0 +
in „H-Brücke DC Motor Strom oszilliert schwingt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MEGA_1284P_Xplained_Schematic.pdf
PJTAGAG00ETMET POHEDEER J3JN8 J1 JTAG USB Mini AB connector J3 7 5 3 1 2 4 6 8 T I I I I I I I I S I S O K J200 USB_AB N N N N N N N N P P P P P P P P R T T T T P P P P P P P P 4 3 2 1 J201 L L L L J202 JTAG_TCK PIJ20101 PIJ20102 GND MUSB-05-F-AB-SM-I I I I D U J203 A TWI_SDA PIJ20201 PIJ20202_SCL GPIO6/JTAG_TDO
in „MEGA1284P XPLAINED über USB mit avrdudue programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ALC5000M_KM_G_111208.pdf
2 3 0 1 2 Display Controller E T T N U L L L L L 0 0 0 0 1 1 1 1 2 2 2 2 3 3 3 3 4 4 4 E E I O T T V V V V V P P P P P P P P P P P P P P P P P P P R T X X X X 1 1 1 1 1 1 1 1 1 2 2 3 3 3 3 3 3 3 3 3 3 4 4 4 ELV06548 2 2 2 2 2 2 Programmier-
in „ELV ALC 5000 - Softwarefehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3108fb.pdf
5V, unless otherwise noted. PARAMETER CONDITIONS MIN TYP MAX UNITS Output Voltage VS1 = VS2 = GND l 2.30 2.350 2.40 V VS1 = VAUX, VS2 = GND l 3.234 3.300 3.366 V VS1 = GND, VS2 = VAUX l 4.018 4.100 4.182 V VS1 = VS2 = VAUX l 4.90 5.000 5.10 V VOUT Quiescent Current VOUT = 3.3V, OUT2_EN= 0V 0.2 μA VAUX Quiescent Current No Load, All Outputs Charged 6 9 μA LDO Output Voltage 0.5mA Load l 2.134 2.2 2.266 V LDO Load Regulation For 0mA to 2mA Load 0.5 1 % LDO Line Regulation For VAUX from2.5V to 5V 0.05 0.2 % LDO Dropout Voltage LDO = 2mA l 100 200 mV LDO Current Limit VLDO = 0V l 4 11
in „Blink LED mit Ladungspumpe für sehr niedrige Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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ADF7020.pdf
Figure8.OutputSpectruminFSKandGFSKModulation Figure11.HarmonicResponse,MurataDielectricFilter 0 10 –5 200kHz FILTER BW –10 0 –15 B –20 ( ) L –25 m –10 E d E –30 ( L E ASK N –35 V –20 I L OOK T –40 L U –45 150kHz FILTER BW A N N –30 T –50 I T 100kHz FILTER BW S A –55 –40 –60 –65 GOOK –70 –50 8 –400 –300
in „erfahrung mit adf7020?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
182853-da-01-en-kmi_151t_drehzahlmesser.pdf
0.6 r 10 0.4 I V = 20 V CC 8 CC V = 12 V CC 0.2 t t 6 ICC(low) V = 8 V r f CC t 0 50 0 50 100 150 200 4 50 0 50 100 150 200 T ( C) amb Tamb ( C) V CC= 12 V; L = 100 pF;LR = 115. Fig.8 Output current levels as functions of Fig.9 Output current switching times as functions ambient temperature. of ambient
in „Drehzahlmesser für Drehbank“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KMI_151T.pdf
0.6 r 10 0.4 I V = 20 V CC 8 CC V = 12 V CC 0.2 t t 6 ICC(low) V = 8 V r f CC t 0 50 0 50 100 150 200 4 50 0 50 100 150 200 T ( C) amb Tamb ( C) V CC= 12 V; L = 100 pF;LR = 115. Fig.8 Output current levels as functions of Fig.9 Output current switching times as functions ambient temperature. of ambient
in „Fragen zur Magnetkraft?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
kmi_151t.pdf
0.6 r 10 0.4 I V = 20 V CC 8 CC V = 12 V CC 0.2 t t 6 ICC(low) V = 8 V r f CC t 0 50 0 50 100 150 200 4 50 0 50 100 150 200 T ( C) amb Tamb ( C) V CC= 12 V; L = 100 pF;LR = 115. Fig.8 Output current levels as functions of Fig.9 Output current switching times as functions ambient temperature. of ambient
in „Signal am Zündkabel abgreifen ?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KMI15.pdf
0.6 r 10 0.4 I V = 20 V CC 8 CC V = 12 V CC 0.2 t t 6 ICC(low) V = 8 V r f CC t 0 50 0 50 100 150 200 4 50 0 50 100 150 200 T ( C) amb Tamb ( C) V CC= 12 V; L = 100 pF;LR = 115. Fig.8 Output current levels as functions of Fig.9 Output current switching times as functions ambient temperature. of ambient
in „KMI15/1 Drehzahlsensor reagiert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
140271-da-01-en-IR_SENSOR_HSDL_9100_021.pdf
Refer Note 1 - 5 - mm Operating CrossTalk Current FD Refer to Fig 3 - - 200 nA RiseTime (LED) T RL R L 50W - 50 - ns FallTime (LED) T FL R L 50W - 50 - ns RiseTime (Photodiode) TRD RL= 5.1KW - 6 - ms FallTime (Photodiode) TFD RL= 5.1KW - 6 - ms ** L = 0 (zero light condition
in „LED Strom und Spannung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM1458M.pdf
Typ Max Input Offset Voltage TA= 25˚C, RS≤ 10 kΩ 1.0 5.0 1.0 6.0 mV Input Offset Current TA= 25˚C 80 200 80 200 nA Input Bias Current TA= 25˚C 200 500 200 500 nA Input Resistance TA= 25˚C 0.3 1.0 0.3 1.0 MΩ Supply Current Both T = 25˚C, V = ±15V 3.0 5.0 3.0 5.6 mA A S Amplifiers Large Signal Voltage Gain
in „Operationsverstaerker widerstaende LM1458M“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
3193_datasheet.pdf
the▯thermocouple▯opens. Typical▯Performance▯Curves 300 400 CA3193 ) V CA3193▯(0 C▯to▯70 C) ▯ ) E V A 200 ( 300 L E O G ▯ T E O CA3193A▯(-25 C▯to▯85 C) F ▯ F 100 CA3193A▯ T 200 ▯ S U F P ▯ I T P 100 I 0 0 500 1000 1500 TIME▯AT▯AMBIENT▯TEMPERATURE▯=▯125 C▯(HOURS) 0 -50 0 50 100 150 0 385 770 1155 TEMPERATURE
in „OP Temperatursteuerung von 1984 verstehen und Reparieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TEKTDS1000B_2000B.PDF
adapter. TDS2014B:100 MHz, 4 Ch, 1 GS/s, Color DSO. P6021 – 15 A, 60 MHz AC current probe. TDS2022B:200 MHz, 2 Ch, 2 GS/s, Color DSO. User Manual Options P6022 – 6 A, 120 MHz AC current probe. Opt. L0 – English manual. TDS2024B:200 MHz, 4 Ch, 2 GS/s, Color DSO. A621 – 2000 A, 5 to 50 kHz AC current probe. Opt. L1 – French manual. A622 – 100 A, 100 kHz AC/DC current probe. Standard Accessories Opt. L2 – Italian manual. P2220 – 200 MHz 10x to 1x Switchable Passive TCP303/TCPA300 – 15 A, 15 MHz AC/DC current Probes
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X7R_Datenblatt.PDF
(0.010±0.006) (0.014±0.006) (0.020±0.010) (0.020±0.010) WVDC 10 16 25 16 25 50 6.3 10 16 25 50 100 200 6.3 10 16 25 50 100 200 6.3 10 16 25 50 100 200 500 Cap 100 A A A (pF) 150 A A A 220 A A A C 330 A A A C G G G J J J J J J K 470 A A C G G G J J J J J J K 680 A A C G G G J J J J J J K 1000 A A C G
in „Vielschicht statt Elko + Keramik“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
koax_pwm_01_06ms.asm
lsr on1cnt_h ror on1cnt_l lsr on1cnt_h ror on1cnt_l lsr on1cnt_h ror on1cnt_l lsr on1cnt_h ror on1cnt_l mov temp1, on1cnt_l subi temp1, -10 mov ppm1, temp1 lsr on2cnt_h ror on2cnt_l lsr on2cnt_h ror on2cnt_l lsr on2cnt_h ror on2cnt_l lsr on2cnt_h ror on2cnt_l mov temp1, on2cnt_l subi temp1, -20 mov ppm2, temp1 dec led_cnt brne cnv_PWM2PPM ldi led_cnt, 25 sbic PORTB, LED_OUT rjmp cnv_LEDon sbi PORTB, LED_OUT rjmp cnv_PWM2PPM cnv_LEDon
in „Ich bräuchte Assembler hilfe.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
349_529-15.pdf
± 40" ± 2” ± 3” Übertragungsfehler* Torsions- Nm Nm Nm Nm Nm Nm Nm Federkonstante 500 rad 150 rad 200 rad 300 rad 60 rad 1500 rad 1200 rad Max. Drehmoment 0,2 Nm 0,1 Nm 0,2 Nm 0,1 Nm 0,2 Nm 0,5 Nm Max. Radial-Versatz l 0,2 mm 0,5 mm 0,2 mm 0,3 mm Max. Winkel-Fehler a 0,5° 1° 0,5° 0,5° Max. Axial-Versatz
in „Wie entsteht das Sinusförmige Signal eines Drehgebers/ Vermutung“ · Offtopic ·
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PDF
ECAD_LBB01v00_LBB02v00.pdf
Rail to Rail Operational Amplifier, order code: OPA344NA Linear Texas Instruments 1 PAD1 SOUT TP_100X200 SMT-Pad 1,0mm x 2,0mm Pad Surface Mount 1 PAD2 BLANK TP_100X200 SMT-Pad 1,0mm x 2,0mm Pad Surface Mount 1 PAD3 SIN TP_100X200 SMT-Pad 1,0mm x 2,0mm Pad Surface Mount 1 PAD4 VCC TP_100X200 SMT-Pad 1,0mm x 2,0mm Pad Surface Mount 1 PAD5 SCLK TP_100X200 SMT-Pad 1,0mm x 2,0mm Pad Surface Mount 1 PAD6 GND TP_100X200 SMT-Pad 1,0mm x 2,0mm Pad Surface Mount 1 PAD7 XLAT TP_100X200 SMT-Pad 1,0mm x 2,0mm Pad Surface Mount 1 Q1 16.000MHZ OSCCC500X700X130-4N
in „LED Blinky Ball Monochrom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
REN_icl7106-07-07s_DST_20251218.pdf
V IINT= 4µA COM Biased between Vi and V-. • FULL SCALE ANALOG INPUT VOLTAGE V (Typ) = 200mV or 2V • VCOM V+ - 2.8V lNFS • INTEGRATE RESISTOR Regulation lost when V+ to V- < 6.8V If VCOM is externally pulled down to (V+ to V-)/2, R = - - - - the COM circuit will turn off. INT INT • ICL7106
in „Panel-Meter KAIFU FR-4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC304_MOT.pdf
OUTPUTPULSEWIDTH–80 s NORMALIZEDTO A +600 1.5 T =25⋅C ( F =30mA 1.4 A T +400 f=60Hz E TA=25⋅C 1.3 R +200 I1.2 U D E 0 Z1.1 A L 1 S –200 M N –400 O0.9 , N0.8 M–600 IT 0.7 –800 –4 –3 –2 –1 0 1 2 3 4 5 –40 –20 0 20 40 60 80 VTM,ON–STATEVOLTAGE(VOLTS) A ,AMBIENTTEMPERATURE(⋅C) Figure 1. On–State Characteristics
in „Solid state Relais“ · Mikrocontroller und Digitale Elektronik ·
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PDF
moc3041.pdf
OUTPUTPULSEWIDTH–80 s NORMALIZEDTO A +600 1.5 T =25⋅C ( F =30mA 1.4 A T +400 f=60Hz E TA=25⋅C 1.3 R +200 I1.2 U D E 0 Z1.1 A L 1 S –200 M N –400 O0.9 , N0.8 M–600 IT 0.7 –800 –4 –3 –2 –1 0 1 2 3 4 5 –40 –20 0 20 40 60 80 VTM,ON–STATEVOLTAGE(VOLTS) A ,AMBIENTTEMPERATURE(⋅C) Figure 1. On–State Characteristics
in „Optokoppler + Triac = Rauch?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC_3043_MOT.pdf
OUTPUTPULSEWIDTH–80 s NORMALIZEDTO A +600 1.5 T =25⋅C ( F =30mA 1.4 A T +400 f=60Hz E TA=25⋅C 1.3 R +200 I1.2 U D E 0 Z1.1 A L 1 S –200 M N –400 O0.9 , N0.8 M–600 IT 0.7 –800 –4 –3 –2 –1 0 1 2 3 4 5 –40 –20 0 20 40 60 80 VTM,ON–STATEVOLTAGE(VOLTS) A ,AMBIENTTEMPERATURE(⋅C) Figure 1. On–State Characteristics
in „Leistungslos schalten mit Nulldurchgang Erkennung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
smartctl_grep_4_patt.txt
Redundancy Code (CRC) error mw@linux-kwm1:~ >grep -i Error /dev/shm/smartctl_mp.txt '-H -i -c -A -l error -l selftest -l selective' '-H -i -A -l error -l selftest'. '-H -i -c -A -l error'. '-H -i -g all -g wcreorder -c -A -f brief -l xerror,error -l xselftest,selftest -l selective -l directory -l scttemp -l scterc -l devstat '-H -i -g all -A -l error -l selftest -l background -l sasphy -l defects -l env_rep'. '-H -i -c -A -l error'. errorsonly - only print: For the '-l error' option, if nonzero, the number
in „smartctl Ausgabe für HDs und SSDs - Seek_Error_Rate“ · PC Hard- und Software ·
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PDF
s8241.PDF
4.295V 4.095V 2.30V 2.30V 0.060V Available (1) Yes S-8241ACHMC-GCHT2G 4.280V 4.080V 2.60V 2.60V 0.200V Available (1) Yes S-8241ACIMC-GCIT2G 4.350V 4.150V 2.05V 2.75V 0.200V Available (2) Yes S-8241ACKMC-GCKT2G 4.350V 4.150V 2.00V 2.00V 0.200V Available (2) Yes S-8241ACLMC-GCLT2G 4.200V 4.200V 2.50V
in „Li-Ion Akku mit oder ohne eingebaute Schutzschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
s8241.PDF
4.295V 4.095V 2.30V 2.30V 0.060V Available (1) Yes S-8241ACHMC-GCHT2G 4.280V 4.080V 2.60V 2.60V 0.200V Available (1) Yes S-8241ACIMC-GCIT2G 4.350V 4.150V 2.05V 2.75V 0.200V Available (2) Yes S-8241ACKMC-GCKT2G 4.350V 4.150V 2.00V 2.00V 0.200V Available (2) Yes S-8241ACLMC-GCLT2G 4.200V 4.200V 2.50V
in „Li-Ion Protection in besser?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
s8241.PDF
4.295V 4.095V 2.30V 2.30V 0.060V Available (1) Yes S-8241ACHMC-GCHT2G 4.280V 4.080V 2.60V 2.60V 0.200V Available (1) Yes S-8241ACIMC-GCIT2G 4.350V 4.150V 2.05V 2.75V 0.200V Available (2) Yes S-8241ACKMC-GCKT2G 4.350V 4.150V 2.00V 2.00V 0.200V Available (2) Yes S-8241ACLMC-GCLT2G 4.200V 4.200V 2.50V
in „Lademodul TP4056“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TNY264-266-268-1.pdf
2 MΩ) UV Resistor Connected to EN/UV Pin. C 6 4/03 TNY264/266-268 C8 680 pF Y1 Safety Shield T1 D5 L2 1N5819 3.3 µH 1 8 + 5 V C5 C6 500 mA 2.2 nF 330 µF 100 µF R2 16 V 35 V D1 200 kΩ 4 5 RTN 1N4005 D2 1N4005 270 Ω D6 1N4937 C1 C2 U2 85-265 3.3 µF 3.3 µF LTV817 R7 VAC 400 V 400 V 100 Ω RF1 U1 D EN/UV
in „Unbekanntes Flyback IC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2N3906.pdf
Saturation T V 3 N vs Collector Current ( Voltage vs Collector Current 9 A G 0 G250 T0.3 6 N VCE= 1.0V L β =10 E 125 °C V0.25 / R200 R U E0.2 P C I Z E M T S150 E0.15 25 °C 3 U 25 °C O 9 P T0.1 A100 E 125°C 0 I - 40 °C L 6 Y O0.05 - 40 °C T - E 50 A 0 h 0.1 0.2 0.5 1 2 5 10 20 50 100 C 1 10 100 200 IC-
in „SMD version vom 2n3906 / 2n3904“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WH1602D-YYK-CTK.pdf
: Instruction code 5 R/W H/L H: Read(MPU→ Module) L: Write(MPU→ Module) 6 E H,H→ L Chip enable signal 第 7 頁,共 21 頁 7 DB0 H/L Data bit 0 8 DB1 H/L Data bit 1 9 DB2 H/L Data bit 2 10 DB3 H/L Data bit 3 11 DB4 H/L Data bit 4 12 DB5 H/L Data bit 5 13 DB6 H/L Data bit 6 14 DB7 H/L Data bit 7 第 8 頁,共 21 頁 8.Contour Drawing &Block Diagram 1 Vdd 85.0 0.5 2 Vss 7.65 71.2 3 Vo 10.25 66.0(VA) 4 RS 5 15.15 56.21(AA) H1Max . . . 0. 5 5 R/W 2
in „LCD mit PCF8574 Frage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
121065-an-01-ml-LCD_PANELMETER_70004_de_en_fr_nl.pdf
à l´adresse et au numéro de téléphone Adaptateurs de mesure en vente optionnelle Bestnr. 12 07 62 200VDC-Spanningsmeetbereik suivants: 3. inbouw Bestnr. 12 08 01 20mADC-Stroommeetbereik Voltcraft , Lindenweg
in „Messwiderstand und Schaltung berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M95160_EEPROM.pdf
.4 Max. 4 Min.5 Max.5 Unit fC fSCK Clock Frequency D.C. 2 D.C. 5 MHz SLCH CSS1 S Active Setup Time 200 90 ns t t SHCH CSS2 S Not Active Setup Time 200 90 ns SHSL CS S Deselect Time 200 100 ns CHSH tCSH S Active Hold Time 200 90 ns CHSL S Not Active Hold Time 200 90 ns t 1 tCLH Clock High Time 200 90
in „SPI EEPROM M95160: read/write probleme, erhalte immer FFh!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheetTD310.pdf
pA I Low Input Current 10 pA IL Propagation Delay (10% input to10% output) ns tdH, eH Output Rise 200 400 dL, eL Output Fall 60 400 T min. Tamb Tmax. tii Input Inhibiting Time 100 ns dd Differential Delay Time Between Channels 20 ns OUTPUT DRIVERS Vsod Sourcing Drop Voltage (A/B/C outputs) V Isource
in „Mosfet Treiber (low side) mit current sense Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheetTD310.pdf
pA I Low Input Current 10 pA IL Propagation Delay (10% input to10% output) ns tdH, eH Output Rise 200 400 dL, eL Output Fall 60 400 T min. Tamb Tmax. tii Input Inhibiting Time 100 ns dd Differential Delay Time Between Channels 20 ns OUTPUT DRIVERS Vsod Sourcing Drop Voltage (A/B/C outputs) V Isource
in „Geteilte Spannungsversorgung von Arduino, IC und Power-LEDs blockiert Funktionsfaehigkeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CM300DY-24H.pdf
CM300DY-24H Powerex, Inc., 200 Hillis Street,Youngwood, Pennsylvania 15697-1800 (724) 925-7272 Dual IGBTMOD™ H-Series Module 300 Amperes/1200 Volts A B M P - DIA. (4 TYP.) 2 C2E1 E2 C1 E R C F 1 L D 1 R C G G H Description: S - M6
in „teslaspulenverzweiflung“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Handschriftliche Berechnung eines RLC-Rezonanzkreises
3.14 f = 500Hz U = 200V R = 100 Ohm L = 100mH Pmox = U * I * cos(phi) = U * I * cos(0) => U = 0 <=> sin(phi) = 0 <=> phi = 0 Damit phi = 0 ist, muss Im(Zger) = 0 sein. Zger = ZL + ZC // R = jwL + R / (jwc) = jwL + R / (R + jwc) = jwL + R^2 / (R^2 + jwcR) = jwL + R^2 / (R^2 + jwcR) + R = jwL + R^2 / (R^2 + jwcR) Im(Zger) = 0 (R^2 / (R^2 + jwcR)) * (1 / (R^2 + jwcR))? No. ... wL = R^2 / (wc) => C = R^2 / (w^2 L) = (R^2 / ((2pi*500)
in „Hilfe bei Wechselstrom Aufgabe“ · Analoge Elektronik und Schaltungstechnik · · Fotos
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murata-kmp-78253j.pdf
78253/35JC 78253/55JC 10 10 8 8 ( ( g 6 g6 o o t 4 t4 t t O O 2 2 0 0 0 20 40 60 80 100 120 0 100 200 300 400 Output Current (mA) Output Current (mA) 78253/35JVC 78253/55JVC 10 10 8 8 V V e 6 e l l6 V V p 4 p4 u u O 2 O2 0 0 0 20 40 60 80 100 0 100 200 300 400 Output Current (mA) Output Current (mA)
in „Isolierter Eingang für Kontakt“ · Analoge Elektronik und Schaltungstechnik ·
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frequenzabhaengigkeit.pdf
Ripple Nominal 3000 h @ 85 ºC Max 25 °C ESR Max 85 °C Ripple Nominal Cap Catalog (Ω) (Arms Size (DxL) Cap Catalog (Ω) (A rms Size (DxL) (μF) Part Number 120 Hz 20kHz 120 Hz 20kHz (mm) (μF) Part Number 120 Hz 20kHz 120 Hz 20kHz (mm) 160Vdc (200Vdc Surge) 200Vdc (250Vdc Surge) 1500 SLPX152M160E7P3 0.133 0.100 3.96 5.82 30 x 40 820 SLPX821M200C7P3 0.243 0.182 2.79 4.10 25 x 40 1500 SLPX152M160H5P3 0.133 0.100 3.94 5.79 35 x 35 820 SLPX821M200E3P3 0.243 0.182 2.75 4.04 30 x 30 1800 SLPX182M160E4P3 0.111 0.083 4.31 6.34 30 x 45 1000 SLPX102M200C4P3
in „Frequenzabhängigkeit Kapazität Elko“ · Analoge Elektronik und Schaltungstechnik ·
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LM10.PDF
(suffix “L”) is arailable in nals or will deliver 20 mA output current with 0.4V the limited temperature ranges at a cost savings. a tion. Reference output can be as low as 200 mV. n The circuit is recommended
in „Suche Batteriewächter“ · Analoge Elektronik und Schaltungstechnik ·
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Bestandsliste.pdf
V 40 mA Pisello 26Stk 0,14 € 3,71 € 330 L*3456B Birnchen 24-30 V 85mA 2W BA9s Fassung 81Stk 0,16 € 13,16 € 331 L*3456 Birnchen 24-30 V 85mA 2W E10 Fassung 3Stk 0,18 € 0,53 € 332 L*3646 Birnchen 3.5 V 200mA E10 Kugel 4Stk 0,26 € 1,02 € 333 L*
in „Auflösung Elektronik Shop“ · Markt ·
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PR02.pdf
CODE PIECES CODE PITCH PIECES CODE 5000 A5 5000 R5 Axial, 52 mm 1000 A1 PR01 4000 N4 17.8 mm 1000 L1 Radial 12.5 mm 1000 K1 Axial, 52 mm 1000 A1 5000 R5 PR02 3000 N3 2000 R2 17.8 mm 1000 L1 Radial 15.0 mm 1000 B1 Axial, 63 mm 500 AC PR03 25.4 mm 500 DC Radial 20.0 mm 500 PC Document Number: 28729 For
in „Warum explodiert dieser Widerstand nicht?“ · Analoge Elektronik und Schaltungstechnik ·
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toshiba_satellite_l755.pdf
INT_DMIC_DATA R417 SBY100505T-221Y-N_300MA 30 29 31 DTC143TKAT146_100MA C499 *0.1U/16V_4Y 30 31 2N7002_200MA 50373-03001-001 R426 C895 *22P/50V_4N 1 100K_4 B2A 10/07 B B CRT <CRT> C183 0.1U/16V_4Y [6] INT_CRT_RED INT_CRT_RED L26 BLM18BA470SN1D_300MA CRT_R1 +5V D23 2 1 B130L-13-F_1A F1 2 1 SMD1206P100TF 5V_CRT2
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B300_PXA_ELKOS_ECC.pdf
1,056 14 5,050 APXA160ARA331MJC0G 120 F60 151 27 2,400 APXA6R3ARA121MF60G 15 F45 150 57 1,300 APXA200ARA150MF45G 150 H70 189 25 3,020 APXA6R3ARA151MH70G 22 F55 88 50 1,650 APXA200ARA220MF55G 220 H70 277 25 3,020 APXA6R3ARA221MH70G 22 F60 88 50 1,650 APXA200ARA220MF60G 330 J80 416 20 4,130 APXA6R3ARA331MJ80G 20 39 H70 156 45 2,000 APXA200ARA390MH70G 390 HC0 491 12 4,770 APXA6R3ARA391MHC0G 47 H70 188 45 2,000 APXA200ARA470MH70G 470 J80 592 20 4,130 APXA6R3ARA471MJ80G 82 J80 328 40 2,500 APXA200ARA820MJ80G 470 HC0 592 12 4,770 APXA6R3ARA471MHC0G
in „Ladungspumpe: welchen Low-ESR Kondensator nehmen?“ · Mikrocontroller und Digitale Elektronik ·
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Schwermetallfaellung.pdf
Komplexbildner gezeigt. Im Praktikum wird das System Kupfer/Tartrat untersucht. 4. Geräte • Maßkolben 1L, • Bechergläser (1500 mL, 800 mL, 150 mL) • Erlenmeyerkolben 200 mL, • Messzylinder, • Imhofftrichter, • Vollpipetten (25 mL, 10 mL, 5 mL), • Tropfpipette, • Trichter, • 1 Tropftrichter 250 mL mit Skalierung