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PDF
via_datasheet.pdf
PAGES DATES VERSION VERSION MAIN CONTENTS 1 10/01/2004 0.5 N/A First published preliminary version. 2 11/09/2004 0.51 N/A Correct typo at 5.11. 1. Correct DC CHARACTERISTICS description 3 12/07/2004 0.52 N/A 2. Update Demo Circuit 3. Add Pb-free part no:W83627EHG TM 4 03/18/2005 0.6 N/A Add SMART FAN
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PDF
ATMEGA8_DATENBLATT.pdf
2 LD Rd, Y Load Indirect Rd ← (Y) None 2 LD Rd, Y+ Load Indirect and Post-Inc. Rd ← (Y), Y ← Y + 1 None 2 LD Rd, - Y Load Indirect and Pre-Dec. Y ← Y - 1, Rd ← (Y) None 2 LDD Rd,Y+q Load Indirect with Displacement Rd ← (Y + q) None 2 LD Rd, Z Load Indirect Rd ← (Z) None 2 LD Rd, Z+ Load Indirect and Post-Inc. Rd ← (Z), Z ← Z+1 None 2 LD Rd, -Z Load Indirect and Pre-Dec. Z ← Z - 1, Rd ← (Z) None 2 LDD Rd, Z+q Load
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
db_atmega8.pdf
2 LD Rd, Y Load Indirect Rd ← (Y) None 2 LD Rd, Y+ Load Indirect and Post-Inc. Rd ← (Y), Y ← Y + 1 None 2 LD Rd, - Y Load Indirect and Pre-Dec. Y ← Y - 1, Rd ← (Y) None 2 LDD Rd,Y+q Load Indirect with Displacement Rd ← (Y + q) None 2 LD Rd, Z Load Indirect Rd ← (Z) None 2 LD Rd, Z+ Load Indirect and Post-Inc. Rd ← (Z), Z ← Z+1 None 2 LD Rd, -Z Load Indirect and Pre-Dec. Z ← Z - 1, Rd ← (Z) None 2 LDD Rd, Z+q Load
in „ADC-Input und Auswahlverfahren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at91rm9200-ek.pdf
Stereo Output 1-4 AT91RM9200-EK Evaluation Board User Guide 6103C–ATARM–05-Jan-06 Section 2 Setting Up the AT91RM9200-EK Evaluation Board 2.1 Electrostatic The AT91RM9200-EK Evaluation Board is shipped in protective anti-static
in „SD-RAM aus PC für AT91RM9200 (ARM9)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD725.pdf
/PAL 4FSC CLOCK QUADRATURE FSC 9C 6180C FSC 90C/278C 4FSC +4 (PAL ONLY) DECODER FSC 0C CLOCK CSYNC AT 8FSC 2-POLE RED DC Y LP PRE- SADATAD- LP POST- X2 LUMINANCE CLAMP FILTER DELAY LINE FILTER OUTPUT LUMINANCE TRAP U NTSC/PAL COMPOSITE DC RENCODINGV 4-POLE CLAMP S X2 OUTPUT GREEN CLAMP MATRIX LPF BALANCED
in „(F)UZE-Box Zusatzmodul für AVR NET-IO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0462674001173254381.pdf
97 1A/600V RLCD1 VC3 35 VC3 P2.7 96 CS JmA1 JuA1 36 95 WR RSIN1 mA uA VCC COM4 37 VCC P2.6 94 RD 100K F2 COM3 38 COM4/P6.3 P2.5 93 ALE 1 2 RA2 RA3 AMP_IN RCPN2 JAin1 AX1 COM2 39 COM3/P6.2 P2.4 92 COM1 40 COM2/P6.1 P2.3 91 15A/600V 0.99,5W,10ppm 99,0.25W,10ppm 100K Ain BZR1 SEG1 41 COM1 P2.2 90 RXD RSO1 RA1 2.5kHz SEG1 P2.1 L2 0.01,2W,10ppm SEG2 42 SEG2 FSup01N P2.0 89 TXD 3K VDD SEG3 43 SEG3 P1.7 88 RT3 VSS 1 2 AMP.TEST VSS RCR21M SEG4 44 SEG4 P1.6 87 RT2 SEG5 45 SEG5 P1.5 86 RT1 DioR
in „DT80000 -> RS232<-???“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FS970X.pdf
97 1A/600V RLCD1 VC3 35 VC3 P2.7 96 CS JmA1 JuA1 36 95 WR RSIN1 mA uA VCC COM4 37 VCC P2.6 94 RD 100K F2 COM3 38 COM4/P6.3 P2.5 93 ALE 1 2 RA2 RA3 AMP_IN RCPN2 JAin1 AX1 COM2 39 COM3/P6.2 P2.4 92 COM1 40 COM2/P6.1 P2.3 91 15A/600V 0.99,5W,10ppm 99,0.25W,10ppm 100K Ain BZR1 SEG1 41 COM1 P2.2 90 RXD RSO1 RA1 2.5kHz SEG1 P2.1 L2 0.01,2W,10ppm SEG2 42 SEG2 FSup01N P2.0 89 TXD 3K VDD SEG3 43 SEG3 P1.7 88 RT3 VSS 1 2 AMP.TEST VSS RCR21M SEG4 44 SEG4 P1.6 87 RT2 SEG5 45 SEG5 P1.5 86 RT1 DioR
in „Erfahrungen mit DM 620 (Digitalmultimeter mit Datenlogger)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CMUcam2_manual.pdf
4,1) R(4,2) G(4,3) R(4,4) G(4,5) R(4,6) ...G(4,355) R(4,356) The camera module takes the data from two sensor rows at a time to generate each line output from the camera module: Row 1: B(1,1) G(2,1) R(2,2) G(1,2
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40001722A.pdf
TMR2IE TMR1IE 86 PIE2 — — — — BCL1IE — — CCP2IE 87 PIE3 — — — ZCDIE — — — — 88 PIR1 TMR1GIF ADIF — — SSP1IF CCP1IF TMR2IF TMR1IF 89 PIR2 — — — — BCL1IF — — CCP2IF 90 PIR3 — — — ZCDIF — — — — 91 STATUS — —
in „PIC16(L)F1703 low voltage Programmierung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet__4_.pdf
. min. max. 1 2 1 E H max. mm 4.2 0.51 3.2 1.73 0.53 1.07 0.36 9.8 6.48 2.54 7.62 3.60 8.25 10.0 0.254 1.15 1.14 0.38 0.89 0.23 9.2 6.20 3.05 7.80 8.3 inches 0.17 0.020 0.13 0.068 0.021 0.042 0.014 0.39 0.26 0.10 0.30
in „Wie verbindet man pcf8593 und arduino (eigentlich irgend uC)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
devlist.txt
. . .1) 5635 D1 93C56(x16) . . .1) 4278 D1 93C66(x8) . . . .1) 5636 D1 93C66(x16) . . .1) 4279 D1 AT87F51 . . . . .1) 6518 D1,P4 AT87F52 . . . . .1) 6517 D1,P4 AT89C51 . . . . .1) 5508 D1,P4 AT89C52 . . . . .1) 5734 D1,P4 AT89C1051 . . . .1) 5953 D1 AT89C2051 . . . .1) 5952 D1 AT89C55 . . . . .1) 6275 D1,P4 AT89LV51 . . . .1) 6277 D1,P4 AT89LV52 . . . .1) 6278 D1,P4 AT89S8252 . . . .1)$ 6397 D1 AT90S1200 . . . .1) 6482 D1 AT90S2313 . . . .1) 6485 D1 AT90S4414 . . . .1) 6484 D1,P4 AT90S8515 . . . .1) 6481 D1
in „PROM lesen /schreiben / Programmiergerät“ · Mikrocontroller und Digitale Elektronik ·
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PDF
opa354.pdf
ns 0.01% 60 ns Overload Recovery Time V • Gain = V 5 ns IN S Harmonic Distortion 2nd-Harmonic G = +1, f = 1MHzO V = 2VpLp, R = 20CM= 1.5V –75 dBc 3rd-Harmonic G = +1, f = 1MHz, V = 2Vp-p, R = 200Ω= 1.5V –83 dBc O L CM Differential Gain Error NTSC, R L 150Ω 0.02 % Differential Phase
in „OP Verstärker scheint zu schwingen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LG_L1733TR_L1933TR_Monitor_Service_manual.pdf
R527 0RJ0332D677 MCR03EZPJ33033OHM5%1/10W R4 0RD1201Q609 RDM94T1J1K201.2KOHM5%1/4W R530 0RJ1002D677 MCR03EZPJ10310KOHM5%1/10W R5 0RD1201Q609 RDM94T1J1K201.2KOHM5%1/4W R701 0RJ4701D677 MCR03EZPJ4724.7KOHM5%1/10 SW1 140-058E THVV502GBC1C1P12VDC0.05A
in „Monitor TFT und Röhre Computer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
M12021PB_SM_PANASONIC_EN.pdf
6.90 175.2 3.51 89.1 1.61 40.8 9. 3 237.0 0 5 6.89 175.0 3.55 90.1 1.46 37.2 9.19 233.4 7.5° 6.87 174.5 3.58 90.9 1.32 33.5 9.04 229.7 ° 10 6.84 173.7 3.61 91.6 1.17 19.8 8.90 226.0 Sym Part Name t. Note g G) CRT
in „CRT Monitor gegen VGA Monitor tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
M12021PB_SM_PANASONIC_EN.pdf
6.90 175.2 3.51 89.1 1.61 40.8 9. 3 237.0 0 5 6.89 175.0 3.55 90.1 1.46 37.2 9.19 233.4 7.5° 6.87 174.5 3.58 90.9 1.32 33.5 9.04 229.7 ° 10 6.84 173.7 3.61 91.6 1.17 19.8 8.90 226.0 Sym Part Name t. Note g G) CRT
in „Heidenhain Monitor BE 212 für TNC 351“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt_PIC12F1822.pdf
518h — 598h — 618h — 698h — 718h — 798h — 8 419h — 499h — 519h — 599h — 619h — 699h — 719h — 799h — 2 41Ah — 49Ah — 51Ah — 59Ah — 61Ah — 69Ah — 71Ah — 79Ah — — — — — — — — — 2 41Bh 49Bh 51Bh 59Bh 61Bh 69Bh 71Bh 79Bh 41Ch — 49Ch — 51Ch — 59Ch — 61Ch — 69Ch — 71Ch — 79Ch — P 41Dh — 49Dh — 51Dh — 59Dh —
in „PIC12F1822-PWM Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_PIC12F1822.pdf
518h — 598h — 618h — 698h — 718h — 798h — 8 419h — 499h — 519h — 599h — 619h — 699h — 719h — 799h — 2 41Ah — 49Ah — 51Ah — 59Ah — 61Ah — 69Ah — 71Ah — 79Ah — — — — — — — — — 2 41Bh 49Bh 51Bh 59Bh 61Bh 69Bh 71Bh 79Bh 41Ch — 49Ch — 51Ch — 59Ch — 61Ch — 69Ch — 71Ch — 79Ch — P 41Dh — 49Dh — 51Dh — 59Dh —
in „Interrupt-PIC12F1822“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
518h — 598h — 618h — 698h — 718h — 798h — 8 419h — 499h — 519h — 599h — 619h — 699h — 719h — 799h — 2 41Ah — 49Ah — 51Ah — 59Ah — 61Ah — 69Ah — 71Ah — 79Ah — — — — — — — — — 2 41Bh 49Bh 51Bh 59Bh 61Bh 69Bh 71Bh 79Bh 41Ch — 49Ch — 51Ch — 59Ch — 61Ch — 69Ch — 71Ch — 79Ch — P 41Dh — 49Dh — 51Dh — 59Dh —
in „Auflösung PWM-Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
518h — 598h — 618h — 698h — 718h — 798h — 8 419h — 499h — 519h — 599h — 619h — 699h — 719h — 799h — 2 41Ah — 49Ah — 51Ah — 59Ah — 61Ah — 69Ah — 71Ah — 79Ah — — — — — — — — — 2 41Bh 49Bh 51Bh 59Bh 61Bh 69Bh 71Bh 79Bh 41Ch — 49Ch — 51Ch — 59Ch — 61Ch — 69Ch — 71Ch — 79Ch — P 41Dh — 49Dh — 51Dh — 59Dh —
in „8Bits und 2Bits in eine Integer-Variable“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
518h — 598h — 618h — 698h — 718h — 798h — 8 419h — 499h — 519h — 599h — 619h — 699h — 719h — 799h — 2 41Ah — 49Ah — 51Ah — 59Ah — 61Ah — 69Ah — 71Ah — 79Ah — — — — — — — — — 2 41Bh 49Bh 51Bh 59Bh 61Bh 69Bh 71Bh 79Bh 41Ch — 49Ch — 51Ch — 59Ch — 61Ch — 69Ch — 71Ch — 79Ch — P 41Dh — 49Dh — 51Dh — 59Dh —
in „Timer2 auf 10bit einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC12FLF1822PIC16FLF1823.pdf
518h — 598h — 618h — 698h — 718h — 798h — 8 419h — 499h — 519h — 599h — 619h — 699h — 719h — 799h — 2 41Ah — 49Ah — 51Ah — 59Ah — 61Ah — 69Ah — 71Ah — 79Ah — — — — — — — — — 2 41Bh 49Bh 51Bh 59Bh 61Bh 69Bh 71Bh 79Bh 41Ch — 49Ch — 51Ch — 59Ch — 61Ch — 69Ch — 71Ch — 79Ch — P 41Dh — 49Dh — 51Dh — 59Dh —
in „PIC16lf1823 General purpose I/Os mit Schmitt Trigger ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Switch.pdf
KUHP-11A51-120 A2 120VAC DPDT 20A 655-KUHP-11D51-12 KUHP-11D51-12 A2 12VDC DPDT 20A C D 655-KUHP-11D51-24 KUHP-11D51-24 A2 24VDC DPDT 20A Gehäuse mit Flansch oben 655-KUHP-5AT1-120 KUHP-5AT1-120 B1 120VAC SPDT 30A 35.71 38.89 35.71 38.89 655-KUHP-5DT1-12 KUHP-5DT1-12 B1 12VDC SPDT 30A 655-KUHP-5DT1-24 KUHP-5DT1-24 B1 24VDC SPDT 30A 655-KUHP-11AT1-120 KUHP-11AT1-120 B2 120VAC DPDT 20A 48.41 655-KUHP-11DT1-12 KUHP-11DT1-12
in „Ausfallursache Printtaster DeLonghi Kaffeeautomat?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A300_ATMEGA8xxx.pdf
2 LD Rd, Y Load Indirect Rd ← (Y) None 2 LD Rd, Y+ Load Indirect and Post-Inc. Rd ← (Y), Y ← Y + 1 None 2 LD Rd, - Y Load Indirect and Pre-Dec. Y ← Y - 1, Rd ← (Y) None 2 LDD Rd,Y+q Load Indirect with Displacement Rd ← (Y + q) None 2 LD Rd, Z Load Indirect Rd ← (Z) None 2 LD Rd, Z+ Load Indirect and Post-Inc. Rd ← (Z), Z ← Z+1 None 2 LD Rd, -Z Load Indirect and Pre-Dec. Z ← Z - 1, Rd ← (Z) None 2 LDD Rd, Z+q Load
in „atMega8-16 Au beschreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CMAC_Xtal.pdf
0.3 × BP 0.6 × BP 0.9 × BP 1 × BP Value of T at Fo Tinseconds/BPinHz 4 CHEB. 5 19.4 22.6 142 150 0.95/BP CHEB. 1 6.5 22.6 97 97 0.95/BP S.L.P. 5.3 6.4 112 125 1.03/BP BUTTER 4.7 23.2 51 51 0.83/BP GAUSS6 3 3 4.5 4.5 0.71/BP BESSEL 0 0 0 0 0.66/BP
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S1D13504_MF1072-04.pdf
Read Cycle SYSCLK TS TA A[0:31] RD/WR TSIZ[0:1], AT[0:3] D[0:31] Valid Transfer Start Wait States Transfer Next Transfer Complete Starts Figure 4-2 Power PC Memory Write Cycle 5-24 EPSON APPLICATION NOTES (S19A-G-005-05) 4: INTERFACING
in „[V] Displaycontroller Epson SED1354 (800*600)“ · Markt ·
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PDF
AIO486.PDF
3 Inhaltsverzeichnis 2.4 Award PowerBIOS 39 2.4.1 Time and Date 42 2.4.2 AT Hard Disk 43 2.4.3 Floppy Disk 44 2.4.4 Boot Features 45 2.4.5 Standard Chipset 47 2.4.6 Timeout 49 2.4.7 Peripherals 50 2.4.8 Peripherals (Advanced
in „AIO486 CPU-Board“ · Offtopic ·
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PDF
AIO486.PDF
3 Inhaltsverzeichnis 2.4 Award PowerBIOS 39 2.4.1 Time and Date 42 2.4.2 AT Hard Disk 43 2.4.3 Floppy Disk 44 2.4.4 Boot Features 45 2.4.5 Standard Chipset 47 2.4.6 Timeout 49 2.4.7 Peripherals 50 2.4.8 Peripherals (Advanced
in „AIO486 CPU-Board“ · Offtopic ·
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PDF
Atiny2313.pdf
and Post-Inc. Rd ← (X), X ← X + 1 None 2 LD Rd, - X Load Indirect and Pre-Dec. X ← X - 1, Rd ← (X) None 2 LD Rd, Y Load Indirect Rd ← (Y) None 2 LD Rd, Y+ Load Indirect and Post-Inc. Rd ← (Y), Y ← Y + 1 None 2 LD Rd, - Y Load Indirect and Pre-Dec. Y ← Y - 1, Rd ← (Y) None 2 LDD Rd,Y+q Load Indirect with Displacement Rd ← (Y + q) None 2 LD Rd, Z Load Indirect Rd ← (Z) None 2 LD Rd, Z+ Load Indirect and Post-Inc. Rd ← (Z), Z ← Z+1 None 2 LD Rd, -Z Load Indirect
in „Suche tutorial“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Kap6.pdf
Quarzkapazität C ist: 0 1 Lp= 2 (36) ω s 0 Die Ziehformeln haben die gleiche Form wie die Gleichungen 31 bis 34, jedoch ohne den Term C . 0m einzelnen: Eine Serienkapazität C erhvht die Serienresonanz auf f = f ( 1 + C1 ) (37) Cv
in „4060 + Quarz wollen nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Kap6.pdf
Quarzkapazität C ist: 0 1 Lp= 2 (36) ω s 0 Die Ziehformeln haben die gleiche Form wie die Gleichungen 31 bis 34, jedoch ohne den Term C . 0m einzelnen: Eine Serienkapazität C erhvht die Serienresonanz auf f = f ( 1 + C1 ) (37) Cv
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PDF
ttester.pdf
LowPin hp1 > (hp2+599) ? N lp2 > (lp1+599) ? H N T L Y Y tp2 H 470k T 680 L lp2 H CheckPins 470k T Exit L tp2 < 977 ? Y N lp2 > 3911 ? Y N Part = FET Part = FET Typ = P−D−MOS Typ = P−JFET Part = FET Part = FET Typ = N
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PDF
ttester.pdf
LowPin hp1 > (hp2+599) ? N lp2 > (lp1+599) ? H N T L Y Y tp2 H 470k T 680 L lp2 H CheckPins 470k T Exit L tp2 < 977 ? Y N lp2 > 3911 ? Y N Part = FET Part = FET Typ = P−D−MOS Typ = P−JFET Part = FET Part = FET Typ = N
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PDF
ttester.pdf
LowPin hp1 > (hp2+599) ? N lp2 > (lp1+599) ? H N T L Y Y tp2 H 470k T 680 L lp2 H CheckPins 470k T Exit L tp2 < 977 ? Y N lp2 > 3911 ? Y N Part = FET Part = FET Typ = P−D−MOS Typ = P−JFET Part = FET Part = FET Typ = N
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PDF
FS970X-2.pdf
voltage, power consumption is under 1.2mA 6) Standby saving mode 7) Low battery detection 8) Good CMRR at 50/60HZ 9) Built-in crystal oscillator circuit 10) 2.5 kHz beeper driver 11) Standard 4-bit parallel interface to directly connect to
in „Erfahrungen mit DM 620 (Digitalmultimeter mit Datenlogger)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
esp32-c3_technical_reference_manual_en.pdf
(Version 1.1) Submit Documentation Feedback 4 eFuse Controller (EFUSE) GoBack Register 4.88. EFUSE_RD_SYS_PART2_DATA0_REG (0x015C) T20 PA T_ _DA _SS UE E 31 0 0x000000 Reset EFUSE_SYS_DATA_PART2_0 Stores the 0th 32 bits of the 2nd part of system data. (RO) Register 4.89. EFUSE_RD_SYS_PART2_DATA1_REG
in „Mit dem ESP32C3 laufen lernen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
esp32-c3_technical_reference_manual_en.pdf
(Version 1.1) Submit Documentation Feedback 4 eFuse Controller (EFUSE) GoBack Register 4.88. EFUSE_RD_SYS_PART2_DATA0_REG (0x015C) T20 PA T_ _DA _SS UE E 31 0 0x000000 Reset EFUSE_SYS_DATA_PART2_0 Stores the 0th 32 bits of the 2nd part of system data. (RO) Register 4.89. EFUSE_RD_SYS_PART2_DATA1_REG
in „ESP32C3 > PLL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN_Hybrid_Kit_for_HP2_module_V1.1.pdf
10k 10k 3 PACKAGE = 1 6 PACKAGE = 1 3 PACKAGE = 2 Q1B Q2A Q2B 0 0 0 2 2 2 2 2 2 R R R D D D GND_DIG1 GND_DIG1 GND_DIG1 Figure 27 Fault Logic R88 PWM_WT 100R C85 100pF/100V/COG R89 15k GND_DIG1 GND_DIG1 PWM_WB R90 100R C86 100pF/100V/COG R91 15k GND_DIG1
in „Linksammlung für Leistungselektronik“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon-TLE493D-W2B6-DataSheet-v01_20-EN-1366185.pdf
6B H H TLE493D-W2B6A1 ED SP001605340 PG-TSOP6-6-8 44H/45 H TLE493D-W2B6A2 EE SP001605344 PG-TSOP6-6-8 F0H/ F1H TLE493D-W2B6 A3 EF SP001605348 PG-TSOP6-6-8 88 /89 H H 1) Engineering samples are marked with “SA”. DataSheet
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PDF
doc7707.pdf
in I/O Register I/O(P,b) ← 1 None 2 CBI P,b Clear Bit in I/O Register I/O(P,b) ← 0 None 2 LSL Rd Logical Shift Left Rd(n+1) ← Rd(n), Rd(0) ← 0 Z,C,N,V 1 LSR Rd Logical Shift Right Rd(n) ← Rd(n+1), Rd(7) ← 0 Z,C,N,V 1 292 AT90USB82/162
in „AVR (AT90USB162) - Sleep Mode und PCINT“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_ATmega32.pdf
2 LD Rd, Y Load Indirect Rd ← (Y) None 2 LD Rd, Y+ Load Indirect and Post-Inc. Rd ← (Y), Y ← Y + 1 None 2 LD Rd, - Y Load Indirect and Pre-Dec. Y ← Y - 1, Rd ← (Y) None 2 LDD Rd,Y+q Load Indirect with Displacement Rd ← (Y + q) None 2 LD Rd, Z Load Indirect Rd ← (Z) None 2 LD Rd, Z+ Load Indirect and Post-Inc. Rd ← (Z), Z ← Z+1 None 2 LD Rd, -Z Load Indirect and Pre-Dec. Z ← Z - 1, Rd ← (Z) None 2 LDD Rd, Z+q Load
in „Anschwingvorgang µC & Quarz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16c554_Quad-UART_Datasheet.pdf
7 7 7 7 6 6 6 6 6 6 6 6 6 n.c. 1 60 n.c. CDD 2 59 CDC RID 3 58 RIC RXD 4 57 RXC VCC 5 56 GND INTSEL 6 55 TXRDY D0 7 54 RXRDY D1 8 53 RESET D2 9 52 n.c. n.c.10 51 XTAL2 SC16C554BIB80 D3 11 50 XTAL1 D4 12 49 n.c. D5 13 48 A0 D6 14 47 A1 D7 15 46 A2
in „Pegelwandlung RS232 2,7V <->3,3V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1963_Rev1.6.pdf
and end at the rising edge of RD#. The detailed timing will show in the chapter 13.2.2. 7.1.3 Register Pin Mapping When user access the registers via the parallel MCU interface, only D[7:0] will be used regardless
in „SSD1963 Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1963_V014.pdf
and end at the rising edge of RD#. The detailed timing will show in the chapter 13.2.2. 7.1.3 Register Pin Mapping When user access the registers via the parallel MCU interface, only D[7:0] will be used regardless
in „SSD1963 Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
R6581.txt
9L 1N^NuNV ~9`2 ~9` ~9` 0N^Nu@Y ~9` ~9`z lp~9`n `JJ R+z 0N^NuNV ~9`* ~9` ~9` 0N^NuNV ~9` ~9` ~9`p* N l ~9` Hx' ~9L 1N^NuNV ~9`: ~9`&J ~9` ~9` 0N^NuNV ~9`> ~9`* ~9` ~9` 0N^NuNV ~9`lJ ~9`d. `4J f0. ` . ~9` 89N^NuNV ~9
in „Hilfe bei Disassembler 68000 Binary“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmega8China.pdf
X+ 加载间接寻址数据,然后地址加一 Rd ← (X), X ← X + 1 无 2 LD Rd, - X 地址减一后加载间接寻址数据 X ← X - 1, Rd ← (X) 无 2 LD Rd, Y 加载间接寻址数据 Rd ← (Y) 无 2 LD Rd, Y+ 加载间接寻址数据,然后地址加一 Rd ← (Y), Y ← Y + 1 无 2 LD Rd, - Y 地址减一后加载间接寻址数据 Y ← Y - 1, Rd ← (Y) 无 2 LDD Rd,Y+q 加载带偏移量的间接寻址数据 Rd ← (Y + q) 无 2 LD Rd, Z 加载间接寻址数据 Rd ← (Z) 无 2 LD Rd, Z+ 加载间接寻址数据,然后地址加一 Rd ← (Z), Z ← Z+1 无 2 LD Rd, -Z 地址减一后加载间接寻址数据 Z ← Z - 1, Rd ← (Z) 无 2 LDD Rd, Z+q 加载带偏移量的间接寻址数据 Rd ← (Z + q
in „Buch AVR von Günter Schmitt durcharbeiten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TC2014.pdf
should have an Effective Series is at or above V ,IHnd disabled (shutdown) when SHDN is at or below V . SHDN may be controlled by a Resistance (ESR) of 0.01 to 5 for V OUT 2.5V, and IL 0.05. to 5 for VOUT < 2.5V. Ceramic, tantalum
in „Mcp3551 PT1000 Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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KEI_181_Service.pdf
U126 Pin 2 ‘TTL level pulses Strobe puisos U120 Pin 1, U121 Pin 1 Refer to Figure 5 13 of AT102 21 AT103 Pin 4, U120 Pin 2 “TTL level pulses Data to U120 Refer 1” Figure 5- 14 22 AT104 Pin 4, U120 Pin 3 I ‘TTL
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MN-RBXEB-01.pdf
, 3rd IDE, 4th IDE, Floppy, ARMD-FDD, ARMD-HDD, ATAPI-CDROM, SCSI, Network and I2O. The default is: 1st Boot Device - Floppy 2nd Boot Device - 1st IDE-HDD 3rd Boot Device - ATAPI-CDROM 4th Boot Device - Disabled
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technical.pdf
the following equation: 1 1 fc= f −3dB · cosh n ·arcosh √ 10RdB/10 − 1 (16.34) 16.2.2 LC ladder filters The best possibility to realize a filters in VHF and UHF bands are LC ladder filters. The usual way to synthesize them is to first calculate a low-pass (LP) filter
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PDF
SSD1963_1.1.pdf
and end at the rising edge of RD#. The detailed timing will show in the chapter 13.2.2. 7.1.3 Register Pin Mapping When user access the registers via the parallel MCU interface, only D[7:0] will be used regardless
in „TFT- Ansteuerung ET0350G0DH6 (Glyn) mit HX8238 LCD Driver und Microchip Graphic Lib“ · Mikrocontroller und Digitale Elektronik ·