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ADF7020.pdf
. . . . 1 0 10 . . . . . . . . 1 1 30 1 0 0 1 1 1 0 78 3 1 0 0 1 1 1 1 79 7 1 0 1 0 0 0 0 80 1 0 Figure51.Register9—AGCRegister Register9—AGCRegisterComments • Default AGC_LOW_THRESHOLD = 30, default AGC_HIGH_THRESHOLD = 70. See the RSSI/AGC section for
in „erfahrung mit adf7020?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hc11dat.pdf
expanded and test modes, R/W indicates the direction of transfers on the external data bus. VRH andV RL These pins provide the reference voltage for the analog-to-digital converter. Use bypass capacitors to minimize noise on these signals. Any noise RH and VRL will directly affect A/D accuracy. These pins
in „68HC11 MC68HC11 Layout gesucht PLCC68“ · Mikrocontroller und Digitale Elektronik ·
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Dienstleister, Brunel GmbH
wirklich... Heuchler. Psycho schrieb im Beitrag #2983916: > Ich hoffe insofern, dass ich dir im RL nie über den Weg laufen werden, > du bist imho eine Gefahr für deine Mitmenschen. Der beste Weg ist immer sich seiner Umwelt gegenüber freundlich und friedlich zu verhalten und vor allem andere
und bekommen habe ich die auch, abzüglich Weihnachtsgeld zu Beginn mit einem Teilsatz waren es dann 78.5 oder so. Nach 3 Jahren hatte ich 88k (volles WG + Tariferhöhungen + Zulagenerhöhung wegen Leistung). Geht also! Bei einem Jobwechsel vor knapp 1Jahr (Firma stagniert wegen Corona, obwohl es ihr
Ausbildung, Studium & Beruf ·TechInfo · ·452 Antworten
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Thread
Samsung Festplatte Motor Defekt
heute am späten Abend mal versuchen ein Bild dazu zu liefern, ist halt alles sehr winzig ... Danke, RL.
4,78V ist sehr grenzwertig. Stimmt das? Eventuell geht die Festplatte da bereits in Reset-Zustand bzw. spinnt.
PC Hard- und Software ·Funkamateur1 · ·330 Antworten
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PDF
LT.pdf
of6.5A.Theequivalentcircuitforthispinis (I − 0.44* )( ) shown in Figure 8. R FB = SC L (RLink ) 0.5* (RL – 1 )–I SC CIRCUITTVIN 320 A *Change 0.44 to 0.16, and 0.5 to 0.18 for LT1076. D2 Example: I = 4A, I = 1.5A, R = (4)(2k) + 1k = 9k Q1 LIM SC LIM D1 4.3V R1 (5 − 0 44)9k 8K D3 R = ( ) 6V FB 0 5 (k − 1k
in „Prinzipielle Fragen zum Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MBI5016.pdf
Serial data in/parallel data out l Output current: 5-90 mA l 20MHz clock frequency SDIP24-P-300-1.78 Weight: 1.11g(typ) MBI5016CF MBI5016CF Product Description MBI5016, utilizing the most advanced silicon technology, is targeted for LED panel display. MBI5016 contains CMOS shift registers and latch
in „Treiber für 12-stellige 7-Segment-LED-Anzeige (ohne Mux!)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FN8222.pdf
, X9C104, X9C503 PIN CONFIGURATION DIP/SOIC INC 1 8 VCC U/D 2 7 CS X9C102/103/104/503 VH/RH 3 6 VL/RL VSS 4 5 VW/R W ORDERING INFORMATION PART NUMBER PART MARKING RTOTAL (kΩ) TEMPERATURE RANGE (°C) PACKAGE X9C102P X9C102P 1 0 to 70 8 Ld PDIP X9C102PZ (Note) X9C102P Z 0 to 70 8 Ld PDIP (Pb-free) X9C102PI
in „digitales Poti gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
max232.pdf
see Note 4) PARAMETER TEST CONDITIONS MIN TYP † MAX UNIT VOH High-level output voltage T1OUT, T2OUT RL= 3 kΩ to GND 5 7 V VOL Low-level output voltage T1OUT, T2OUT RL= 3 kΩ to GND −7 −5 V ro Output resistance T1OUT, T2OUT VS+ = S− = 0, VO = ±2 V 300 Ω I § Short-circuit output current T1OUT, T2OUT V =
in „MAX3232 Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0093.pdf
CAP2- 540 -700 103 SEG17 1880 700 163 SEG77 -2920 700 44 CAP2+ 630 -700 104 SEG18 1800 700 164 SEG78 -3000 700 45 CAP2+ 720 -700 105 SEG19 1720 700 165 SEG79 -3080 700 46 CAP1- 810 -700 106 SEG20 1640 700 166 SEG80 -3160 700 47 CAP1- 900 -700 107 SEG21 1560 700 167 COMI2 -3400 440 48 CAP1+ 990 -700
in „LCD seriell ansteuern ST7093/KS0093“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA8425.pdf
gain setting; THD = −60 dB; f = 1 kHzS R = 600 ; RL= 10 k ; bass/treble = 0 dB; V CC = 12 V. Fig.11 Output signal handling capability; gain = 6 dB; S = 600 ; RL= 10 k , bass/treble = 0 dB, VCC = 12 V. October 1988 15 Philips Semiconductors Product specification
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PDF
TDA8425.PDF
gain setting; THD = −60 dB; f = 1 kHzS R = 600 ; RL= 10 k ; bass/treble = 0 dB; V CC = 12 V. Fig.11 Output signal handling capability; gain = 6 dB; S = 600 ; RL= 10 k , bass/treble = 0 dB, VCC = 12 V. October 1988 15 Philips Semiconductors Product specification
in „Eingangsspannung beim TDA8425“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
s1d13700.pdf
. . . . . . . .76 12.2 Screen Configuration . . . . . . . . . . . . . . . . . . . . . . . . . . . .78 12.2.1 Screen Configuration . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 78 12.2.2 Display Address Scanning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 79 12.2.3
in „LPC2140 an S1D13700 Display driver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD620.pdf
0.15 0.30 % G = 1000 0.40 0.70 0.35 0.50 0.40 0.70 % Nonlinearity, VOUT = –10 V to +10 V, G = 1–1000 RL= 10 k 10 40 10 40 10 40 ppm G = 1–100 RL= 2 k 10 95 10 95 10 95 ppm Gain vs. Temperature G =1 10 10 10 ppm/°C Gain >12 –50 –50 –50 ppm/°C VOLTAGE OFFSET (Total RTI Error = OSI V OSO/G) Input Offset,
in „Probleme mit Instrumentenverstärker AD620“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ST__L200.pdf
initialcharging current. D prevents dis- SC 1 charge ofthe battery throught the regulator. The resistor RL limits the reverse currents through ther regulator (which should be 100 mA max) when the bat- tery is accidentally reverse connected.If R is in series L with a bulb of 12 V/50 mA rating this will indicate
in „liegender einstellbarer Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS73133.pdf
36.5kΩ Ref Servo 2.8V 44.2kΩ 33.2kΩ 27k 3.0V 46.4kΩ 30.9kΩ Bandgap Error 3.3V 52.3kΩ 30.1kΩ Amp 5.0V 78.7kΩ 24.9kΩ OUT Current NOTE: V OUT = (1 + R2)/2 × 1.204; Limit GND 8kΩ 80kΩ R1R2≅ 19kΩ for best R1 accuracy. FB R2 Figure 2. Adjustable Voltage Version 4 TPS731xx www.ti.com SBVS034F–SEPTEMBER 2003
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PDF
AN920-D_MC34063_Theory_and_Applications_.pdf
onsemi.com 3 AN920/D 30 Q1 L ) TA= 25⋅C +V in +Vout A 10 VCC = 40 V ( + n V CC = 5 V MC34063 D1 Co RL r 3.0 A78S40 C g 1.0 g a a. Step–Down V out▯ Vin C 0.3 g L I 0.1 Ichg= Idischg +V in +Vout D1 + 0.030 0.2 0.4 0.6 0.8 1.0 MC34063 Q1 C R A78S40 o L V CLS, Current–Limit Sense Voltage (V) Figure 6. Timing
in „MC34063 Strombegrenzung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT89S8253-24PU.pdf
function. C/T2 = 1 for external event counter (falling edge triggered). Capture/Reload select. CP/RL2 = 1 causes captures to occur on negative transitions at T2EX if EXEN2 = 1. CP/RL2 = 0 CP/RL2 causes automatic reloads to occur when Timer 2 overflows or negative transitions occur at T2EX when EXEN2
in „AT89S8253-24PU ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA7294.pdf
31V, L = 6 60 70 W VS= ± 27V, L = 4 60 70 W Music Power (RMS) d = 10% IEC268.3 RULES - t = 1s (*) RL= 8 ; S =±38V 100 W RL= 6 ; S =±33V 100 W RL= 4 ; S =±29V (***) 100 W d Total Harmonic Distortion (**)PO = 5W; f = 1kHz 0.005 % PO= 0.1 to 50W; f = 20Hz to 20kHz 0.1 % VS= ±7V, R L 4 : PO= 5W; f = 1kHz
in „Problem mit TDA7294 datasheet“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Disassembler8048_mc1981.pdf
ADD A,R6",6F,"ADD A,R7",70,"ADDC A,&RO",71 350 DATA "ADDC A,&R1",E3,"MOVP3 A,&A",75,ENTO CLK,77,RR A,78 355 DATA "ADDC A,RO",79 360 DATA "ADDC A,R1",7A,"ADDC A/R2",7B/"ADDC A/R3"/7C/"ADDC A,R4",7D 370 DATA "ADDC A,R5",7E,"ADDC A,R6",7F/"ADDC A/R7",80/"MOVX A,&RO",81 380 DATA "MOVX A,&R1",83,RET,85,CLR
in „80C48 MCS48 Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCPL-063.pdf
7 6 5 6.35 ± 0.25 OPTION CODE* (0.250 ± 0.010) A XXXXZ DATE CODE YYWW RU UL 1 2 3 4 RECOGNITION 1.78 (0.070) MAX. 1.19 (0.047) MAX. 0.254 + 0.076 5° TYP. - 0.051 + 0.003) 3.56 ± 0.13 4.70 (0.185) MAX. (0.010 - 0.002) (0.140 ± 0.005) 0.51 (0.020) MIN. 2.92 (0.115) MIN. DIMENSIONS IN MILLIMETERS AND (
in „Logic Gate Optocoupler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCPL-263.pdf
and FallTime vs.Temperature h a 80 600 n s 500 l ( 60 s : i IF= 7.5 mA: ( Conditions: N r VCC= 5 V RL= 4 kΩ i400 VCC = 5 VA 1 s l RL= 4 kΩ (tr) 3 D 40 a300 7 t RL= 1 kΩ d RL= 1 kΩ (tr) , i RL= 350Ω a H e 20 e200 RL= 350Ω (tr) P l R L P -100 - - / 6 W 0 T 0 P 0 RL= 1 kΩ 1 RL= 4 kΩ (tf) , RL= 350Ω H -60
in „Logic Gate Optocoupler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ISP1160_PHI.pdf
voltage - - 0.8 V V HIGH-level input voltage 2.0 - - V IH Output levels V OL LOW-level output voltage RL= 1.5 k to - - 0.3 V +3.6 V V OH HIGH-level output voltage RL= 15 k to GND 2.8 - 3.6 V Leakage current I OFF-state leakage current −10 - +10 A LZ Capacitance C IN transceiver capacitance pin to GND -
in „USB Host Controller (ISP1160) an StrongARM 1110 anbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCPL-0500.pdf
Device Min. Typ.** Max. Units Test Conditions Fig. Note Propagation PHL* 6N135 0.2 1.5 s T A 25°C RL= 4.1 k 5, 6, 8, 9 Delay Time HCPL-0500 2.0 11 to Logic Low HCNW135 at Output 6N136 0.2 0.8 T A 25°C RL= 1.9 k HCPL-2502 HCPL-4502/3 HCPL-0501 HCPL-0452/3 1.0 HCNW136 HCNW4502/3 Propagation PLH* 6N135 1.3 1.5 s T A 25°C RL= 4.1 k 5, 6, 8, 9 Delay Time to HCPL-0500 2.0 11 Logic High at HCNW135 Output 6N136 0.6 0.8 T A 25°C RL= 1.9 k HCPL-2502 HCPL-4502/3 HCPL-0501 HCPL-0452/3 1.0 HCNW136 HCNW4502/3 Common Mode |CM H 6N135
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PDF
203493453ADF7020_0.pdf
0 1 0 0 4 . . . . . . . . 0 0 <1 0 1 3 . . . . . . . . 1 0 10 . . . . . . . . 1 1 30 1 0 0 1 1 1 0 78 3 1 0 0 1 1 1 1 79 5 1 0 1 0 0 0 0 80 1 0 Figure51. Notes 1. DefaultAGC_LOW_THRESHOLD = 30,defaultAGC_HIGH_THRESHOLD = 70.See the RSSI/AGC for details. 2. AGC high and low settings must be more than
in „LFCP_VQ löten/belichten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EW40420YLY.pdf
A Y TECHNOLOGIES CORPORATION 40420 (LED TYPES) 3 5 7 . DETAIL DRAWING OF DOT MATRIX 140.45 3.53 2.78 0.50 0.0± 0.01 0 0 0 . 7 6 4 0 . 6 0 . 2 UNIT : mm SCALE : NTS NOT SPECIFIED TOLERANCE IS 0.± 8 . BLOCK DIAGRAM DB0 LCD 8 4 SEGMENT DB7 E1 40 DRIVER * 2 LCD 160 R/W CONTROLLER RS 16 VDD LCD PANEL VSS
in „4x40 LCD Display ohne HD Controller ansteuern.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ad620.pdf
0.15 0.30 % G = 1000 0.40 0.70 0.35 0.50 0.40 0.70 % Nonlinearity, VOUT = –10 V to +10 V, G = 1–1000 RL= 10 k 10 40 10 40 10 40 ppm G = 1–100 R = 2 k 10 95 10 95 10 95 ppm L 2 Gain vs. Temperature Gain <1000 –50 –50 –50 ppm/°C VOLTAGE OFFSET (Total RTI Error = OSI V OSO/G) Input Offset, V V = ±5 V to ±
in „Verständnisproblem Beschaltung Instrumentenverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
6N137.pdf
and FallTime vs.Temperature h a 80 600 n s 500 l ( 60 s : i IF= 7.5 mA: ( Conditions: N r VCC= 5 V RL= 4 kΩ i400 VCC = 5 VA 1 s l RL= 4 kΩ (tr) 3 D 40 a300 7 t RL= 1 kΩ d RL= 1 kΩ (tr) , i RL= 350Ω a H e 20 e200 RL= 350Ω (tr) P l R L P -100 - - / 6 W 0 T 0 P 0 RL= 1 kΩ 1 RL= 4 kΩ (tf) , RL= 350Ω H -60
in „Optokoppler mit TTL/Schmitt-Trigger?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sn75452b.pdf
SEPTEMBER 1999 PARAMETER MEASUREMENT INFORMATION 5 ns 10 ns 3 V Input 2.4 V 10 V 90% 90% Input RL= 50 ’451B 1.5 V 1.5 V ’451B ’453B 10% 10% ’452B 0 V Pulse Output 0.5 s Generator 5 ns 10 ns Circuit 3 V (see Note A) Input 90% 90% Under ’452B Test ’454B 1.5 V 1.5 V 10% 10% CL= 15 pF 0 V (see Note
in „Suche Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CNY17-2.pdf
BE (Black Package) (White Package) 5.0 5.0 n p4.5 V CC =0 V n 4.5 VCC =10 V ( C = 2 mA p C = 2 mA t RL = 100 Ω n 4.0 RL = 100 Ω )4.0 t B ) 3.5 (3.5 B t n - ( 3.0 o3.0 - t t 2.5 E2.5 D I E 2.0 A2.0 L M A 1.5 O M N1.5 O N 1.0 1.0 0.5 10 100 1000 10000 100000 10 100 1000 10000 100000 RBE- BASE RESISTANCE
in „Optokoppler CNY17“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Laptop.txt
1650 MB/s P4EE 3400 MHz Intel D925XCV i925X Dual DDR2-533 1640 MB/s P4 520 2800 MHz Soltek SL-PT880E-RL PT880 Dual PC3200 DDR 1550 MB/s Xeon 2800 MHz Asus PC-DL i875P Dual PC2700 DDR 1540 MB/s P4 2800 MHz Gigabyte GA-8S655TX Ultra SiS655TX Dual PC3200 DDR 1480 MB/s P4 3000 MHz Intel D865PERL i865PE Dual
in „Woher Treiber und Manual für Comtrade PC?“ · Softwareentwicklung ·
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PDF
MOS4066_SMD4066_STM.pdf
VC= V SS = – 5V, Feedthrough Vis(p-p) = 5V Frequency(switch (sine wave centured on 1 MHz off) 0V) RL= 1k - 50 dB Crosstalk VC (A) = VDD = + 5V Frequency VC(B) = V SS = – 5V V (A) = 5Vp-p, is 8 MHz 50 source RL= 1k pd Propagation Delay RL= 200k (signal input to VC = V DD, VSS= GND, 5 20 40 signal output
in „Varkaufe V4066D“ · Markt ·
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PDF
MOS4051_MOS4052_MOS4053_SMD4051_SMD4052_SMD4053_STM.pdf
Feedthrough 0.2 CONTROL (Address or Inhibit) VIL Input Low Voltage = VDD VEE = VSS 5 1.5 1.5 1.5 Thru RL= 1K 10 3 3 3 V 1K to V 15 4 4 4 SS 5 3.5 3.5 3.5 VIH Input High Voltage IIS< 2 A 10 7 7 7 (on all off15 11 11 11 V channels) IH IL Input HCC VI= 0/18V –3 Leakage Types 18 〉 0.1 〉 10 〉 0.1 〉 1 HCF V =
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PDF
mc68hc11a1.pdf
description. PE0 AN0 VRH 8-BIT CAPACITIVE DAC WITH SAMPLE AND HOLD PE1 V AN1 RL PE2 AN2 SUCCESSIVE APPROXIMATION REGISTER AND CONTROL PE3 RESULT AN3 ANALOG MUX PE4 AN4 PE5 AN5 INTERNAL DATA BUS PE6 AN6 N T C C U D C B A PE7 C S M C C C C AN7 ADCTL A/D CONTROL RESULT REGISTER INTERFACE
in „mc68hc11a1fn-uC-8bit“ · Markt ·
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Datei
lcd.c
,0 ,0 ,0 ,0 }, //4{"OK to START prog"},{"Down to continue" {10,0 ,0 ,0 ,4 ,6 ,0 ,0 ,0 ,0 }, //5{VL RL KK WW "},{" } {12,0 ,0 ,0 ,5 ,7 ,0 ,0 ,0 ,0 }, //6" AT IT Abg"},{" "} {14,0 ,0 ,0 ,6 ,8 ,0 ,0 ,0 ,0 }, //7"BR PV PWW "},{" " {16,0 ,0 ,0 ,7 ,9 ,0 ,0 ,0 ,0 }, //8"temp wasser "},{"interwall s" {18,0 ,
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „8051: An Port 1 nur 3.5V anstatt 5V ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „8051: An Port 0 kann nichts ausgegeben werden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST24C32_ST24C64_STM.pdf
The memory Figure 3. Maximum R ValLe versus Bus Capacitance (C BUS ) for an I C Bus V CC 20 )16 ( u RL RL a12 P SDA R u 8 MASTER SCL C BUS i fc = 100kHz a M 4 fc = 400kHz CBUS 0 10 100 1000 C BUS (pF) AI01665 3/18 M24C64, M24C32 Figure 4. I2C Bus Protocol SCL SDA START SDA SDA STOP CONDITION INPUT CHANGE
in „I²c mit Bascom und ATmega“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS2482-800-DS2482S-800.pdf
, and the voltage starts rising as soon as t is over. 1-Wire device data W1L sheets use the term t RL instead of tW1L to describe a read-data time slot. Technically, t RL and tW1L have identical specifications and cannot be distinguished from each other. 1-Wire Write Byte Command Code A5h Command Parameter
in „1-Wire Leitungs Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „Displaybeleuchtung mit PWM dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „Displaybeleuchtung faden ohne Analog I/O“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „Temperatur ohne AD-Eingang messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „EEPROM schreiben/lesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX232.pdf
2V 300 Ω M A Output Short-Circuit Current ±10 ±60 mA X TIMING CHARACTERISTICS 2 3 Maximum Data Rate RL= 3kΩ to 7kΩ, L = 50pF to 1000pF, 120 kbps one transmitter switching 2 All parts, normal operation 0.5 10 E Receiver Propagation Delay tPLHR, CL= 150pF MAX213E (R4, R5), µs / PHLR SHDN = 0V, EN = VCC
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „8051: Oszillatorfrequenz und Maschinenzyklus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
8XCE558.pdf
during theses accesses internal pull-ups are activated). Port 0 can sink/source 8 LSTTL inputs. XTAL3 78 Crystal pin, output of the inverting amplifier that forms the 32 kHz oscillator XTAL4 79 Crystal pin, input to the inverting amplifier that forms the 32 kHz oscillator. XTAL3 and XTAL4 are pulled LOW
in „Gesucht: schnelles 8051-Derivat mit Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICL7660.pdf
MAX A MAX1044 ICL7660 PARAMETER CONDITIONS UNITS M MIN TYP MAX MIN TYP MAX TA= +25°C 30 200 80 175 RL= ∞, pins 1 and 7 TA= 0°C to +70°C 200 225 Supply Current no connection, TA= -40°C to +85°C 200 250 µA LV open TA= -55°C to +125°C 200 250 RL= ∞, pins 1 and 7 = V+ = 3V 10 R = 10kΩ, LV open 3.0 10.0 Supply Voltage L V Range (Note 1) RL= 10kΩ, LV to GND 1.5 10 1.5 3.5 TA= +25°C 65 100 55 100 L = 20mA, f = 5kHz, TA= 0°C to +70°C 130 120 LV open TA= -40°C to +85°C 130 140 T = -55°C to +125°C 150 150 Output Resistance A Ω OSC = 2.7kHz
in „neg. Spannung mit Z-Diode erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
74HC4066_74HCT4066_SMDHC4066_PHI.pdf
PARAMETER TYP. UNIT V CC VIS(p−p) CONDITIONS (V) (V) sine wave distortion f = 1 kHz 0.04 % 4.5 4.0 RL = 10 k ; CL= 50 pF 0.02 % 9.0 8.0 (see Fig.16) sine wave distortion f = 10 kHz 0.12 % 4.5 4.0 RL= 10 k ; C L 50 pF (see Fig.16) 0.06 % 9.0 8.0 switch ÒOFFÓ signal feed-through −50 dB 4.5 note 3 RL =
in „welche relais für rs232 und atmega32“ · Mikrocontroller und Digitale Elektronik ·
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TIC263_BOU.pdf
Repetitive peak V = Rated V I = 0 T = 110°C ±2 mA DRM off-state current D DRM G C V supply +12 V† RL= 10 Ω p(g)> 20 µs 15 50 Gate trigger V = +12 V† R = 10 Ω t > 20 µs -30 -50 IGT supply L p(g) mA current V supply -12 V† RL= 10 Ω p(g)> 20 µs -20 -50 V = -12 V† R = 10 Ω t > 20 µs 32 supply L p(g) V supply +12 V† RL= 10 Ω p(g)> 20 µs 0.8 2 Gate trigger V = +12 V† R = 10 Ω t > 20 µs -0.8 -2 VGT supply L p(g) V voltage V supply -12 V† RL= 10 Ω p(g)> 20 µs -0.8 -2 V = -12 V† R = 10 Ω t > 20 µs 0.8 2 supply L p(g) VT
in „Hilfe zum Datenblatt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
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