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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 „Mit welchen Bauteil 230V / 16A über µC regeln?“ · Mikrocontroller und Digitale Elektronik ·
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sed1335.pdf
20H ‘ ’ P5 = 4DH ‘M’ P6 = 61H ‘a’ EPSON P7 = 74H ‘t’ P8 = 72H ‘r’ P9 = 69H ‘i’ Dot matrix LCD P10 = 78H ‘x’ P11 = 20H ‘ ’ P12 = 4CH ‘L’ P13 = 43H ‘C’ P14 = 44H ‘D’ SED1335 Series EPSON 71 Technical Manual APPLICATION NOTES 16.1.3. Display mode setting example 1: combining text and graphics Conditions
in „Extrem schwere Frage“ · Mikrocontroller und Digitale Elektronik ·
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MC34063_AN920-D.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 „Spule für Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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AN920-D.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 „Frage zu Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
lcd.c
,3 ,5 ,0 ,0 ,0 }, //4{"OK to START prog"},{"Down to continue" {10,0 ,0 ,0 ,4 ,6 ,0 ,0 ,0 }, //5{VL RL KK WW "},{" } {12,0 ,0 ,0 ,5 ,7 ,0 ,0 ,0 }, //6" AT IT Abg"},{" "} {14,0 ,0 ,0 ,6 ,8 ,0 ,0 ,0 }, //7"BR PV PWW "},{" " {16,0 ,0 ,0 ,7 ,9 ,0 ,0 ,0 }, //8"temp wasser "},{"interwall s" {18,0 ,0 ,0 ,8 ,
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8051_Instructions.pdf
immediate data to Lade Akkumulator mit 8 Bit Konstante M accumulator A l MOV Rr,#const8 r=0-7 01111 r r r78+r – 2 1 Move immediate data to registLade Register Rr mit 8 Bit Konstante a MOV @Ri,#const8 i=0-1 0111011 i 76+i – 2 1 Move immediate data to data Lade interne Datenspeicherzelle, die durch den Inhalt
in „Wieviel Zyklen pro Befehl??“ · Mikrocontroller und Digitale Elektronik ·
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13_FAI_H11L2M_01.pdf
Min Typ Max Units Supply Current I = 10mA, V = 5V I All 1.6 5.0 mA F CC CC(on) Output Voltage, low RL=270Ω,V CC=5V, IF=F(on)max. VOL All 0.2 0.4 V H11L1M 1.6 Turn-On Threshold Current RL=270Ω, V CC = 5V IF(on) H11L2M 10.0 mA H11L3M 5.0 Turn-Off Threshold Current RL=270Ω, V CC = 5V IF(off) All 0.3 1.0 mA Hysteresis Ratio RL=270Ω, V CC = 5V F(off) F(on) All 0.50 0.75 0.90 AC Characteristics Test Conditions Symbol Device Min Typ Max Units SWITCHING SPEED RL=270Ω, V CC = 5V, F =F(on) Turn-On time T =25°C on All 4 µs A RL=270Ω
in „Logic-Level-MOSFET über Optokoppler???“ · Analoge Elektronik und Schaltungstechnik ·
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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 „Frequenz für µC AT89C51ED2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51rd2.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 „Alternative Funktion von Pins“ · Mikrocontroller und Digitale Elektronik ·
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PDF
15121.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
in „Optokoppler HCPL 4504/4503/4502“ · Mikrocontroller und Digitale Elektronik ·
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4N25.pdf
Package) 5.0 5.0 VCC = 10 V 4.5 V 10 V ))4.5 I = 2 mA ) CC = p RC = 100 Ω p C = 2 mA (4.0 L ( 4.0 RL = 100 Ω o o / / E3.5 )E3.5 R RB n n 3.0 (o3.0 ( - - to t 2.5 D 2.5 D E E I I 2.0 A 2.0 A M M 1.5 R R N 1.5 N 1.0 1.0 0.5 10 100 1000 10000 100000 10 100 1000 10000 100000 R BE - BASE RESISTANCE (k Ω)
in „optocoupler beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SETIBIT.INC
call getibit anl a, @r0 add a, #0FFh ret getibit: ;get byte address and bit mask mov r0, a anl a, #78h ;byte number rl a ; * 2 swap a ; / 16 = / 8 add a, #20h ;start data bit addressable xch a, r0 anl a, #7 ;bit number inc a movc a, @a+pc ;bit mask ret db 1, 2, 4, 8, 10h, 20h, 40h, 80h ;-------------
in „Zeiger auf Bit hochzählen“ · Mikrocontroller und Digitale Elektronik ·
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13_FAI_H11L2M_01.pdf
Min Typ Max Units Supply Current I = 10mA, V = 5V I All 1.6 5.0 mA F CC CC(on) Output Voltage, low RL=270Ω,V CC=5V, IF=F(on)max. VOL All 0.2 0.4 V H11L1M 1.6 Turn-On Threshold Current RL=270Ω, V CC = 5V IF(on) H11L2M 10.0 mA H11L3M 5.0 Turn-Off Threshold Current RL=270Ω, V CC = 5V IF(off) All 0.3 1.0 mA Hysteresis Ratio RL=270Ω, V CC = 5V F(off) F(on) All 0.50 0.75 0.90 AC Characteristics Test Conditions Symbol Device Min Typ Max Units SWITCHING SPEED RL=270Ω, V CC = 5V, F =F(on) Turn-On time T =25°C on All 4 µs A RL=270Ω
in „24VDC per Optokoppler an µC“ · Mikrocontroller und Digitale Elektronik ·
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datenblatt_pic.pdf
.................................................................................................. 78 Index .................................................................................................................................................................................................
in „Flußdiagramm Digitale stoppuhr auf PIC 16F84A“ · Mikrocontroller und Digitale Elektronik ·
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Beschreibung.pdf
contents of the A register without affecting any flag, or any directly addressable bit location. – RL, RLC, RR, RRC, SWAP are the five operations that can be performed on A. RL, rotate left, RR, rotate right, RLC, rotate left through carry, RRC, rotate right through carry, and SWAP, rotate left four.
in „ALI M6759-A1“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.txt
--------- seg000:06B3 seg000:06B3 seg000_6B3: ; CODE XREF: seg000_1A4+509 j seg000:06B3 cjne A, #0x78, seg000_6B9 ; 'x' seg000:06B6 clr INTMEM_26.0 seg000:06B8 ret seg000:06B9 ; --------------------------------------------------------------------------- seg000:06B9 seg000:06B9 seg000_6B9: ; CODE XREF
in „source für at89c2051 nach 87c51 umwandeln“ · Mikrocontroller und Digitale Elektronik ·
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X9C103.pdf
ONE- In(INC)nt Coandol HUNDRED Memory RW W DECODER TRANSFER RESISTOR Device Select GATES ARRAY (CS) RL/L 2 STORE AND RECALL 1 VSSGround) VCC CONTROL GND CIRCUITRY 0 General R L L RW W Detailed 2 ™ E POT is a trademark of Xicor, Inc.11/5/98 ©Xicor, Inc. 1994, 1995 Patents Pending Characteristics subject
in „Präzisionsspannungsquelle mit mindestens 100 Abstufungen“ · Analoge Elektronik und Schaltungstechnik ·
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MAX100.pdf
extended periods may affect device reliability. ELECTRICAL CHARACTERISTICS (VEE = -5.2V, CC = +5V, RL= 50Ω to -2V, VA RT = 1.02V, VA RB = -1.02V, MIN to TMAX = 0°C to +70°C, T A +25°C, unless otherwise noted.) (Note 3) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS ACCURACY Resolution 8 Bits Integral
in „Oszilloskop mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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LH1505.pdf
100 ) L = 50 mA ( N o O 80 a t A1.0 a e m V S . B c a = ( 60 n a I n V =10V s D a0.5 t P s t n o 40 RL=50Ω - e t I n l c c a i 0 / r e 20 a N S 0 -0.0 4 8 12 16 20 102 10 3 104 105 106 107 ilh1505ab_06 LED Forward Current (mA) ilh1505ab_09 Frequency (Hz) Figure 7. Variation in ON-Resistance vs. LED Current
in „Wechselspannung mit uC schalten“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
smsdev.ASM
MOV DPTR,#Tel_Msg_1 MOVC A,@A+DPTR MOV @R0,A INC R0 MOV R7,A ; Convert 7 to 8 MOV A,R7 MOV R7,#0 Loop78: JB ACC.0,Loop78Do JB ACC.1,Loop78Do JB ACC.2,Loop78Do JMP Loop78Dont Loop78Do: INC R7 Loop78Dont: DJNZ ACC,Loop78 MOV A,R7 ADD A,R4 ; And add bytes MOV R4,A MOV A,R0 ; Get Position of Text MOV Text_Start
in „Simens S 35; AT-Befehle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PDFresult.pdf
1527.33 1205.48 75 SEG<5> 75 1527.33 1335.48 76 SEG<6> 76 1527.33 1465.48 77 SEG<7> 77 1527.33 1595.48 78 SEG<8> 78 1527.33 1725.48 79 SEG<9> 79 1527.33 1855.48 80 SEG<10> 80 1527.33 1985.48 81 SEG<11> 81 1242.25 2019.15 82 SEG<12> 82 1112.25 2019.15 83 SEG<13> 83 982.25 2019.15 84 SEG<14> 84 852.25 2019.15
in „Pocket Comm One µC“ · Mikrocontroller und Digitale Elektronik ·
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tlc274.pdf
9.2 VICR (see Note 5) –0.2 Full range to V 8.5 25°C 8 8.5 VOH High-level output voltage VID= 100 mV, RL= 10 kΩ 0°C 7.8 8.5 V 70°C 7.8 8.4 25°C 0 50 VOL Low-level output voltage VID= –100 mV, OL = 0 0°C 0 50 mV 70°C 0 50 25°C 10 36 AVD Large-signal differential voltage VO = 1 V to 6 V, RL= 10 kΩ 0°C 7.5
in „Beschaltung von Photodioden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HM17CM4096.pdf
127 FLM 450 -1396 26 DMY9 -8190 -1396 77 DMY41 -4890 -1396 128 DMY67 570 -1396 27 DMY10 -8130 -1396 78 DMY42 -4830 -1396 129 DMY68 630 -1396 28 DMY11 -8070 -1396 79 RDB -4770 -1396 130 FR 750 -1396 29 DMY12 -8010 -1396 80 DMY43 -4710 -1396 131 DMY69 870 -1396 30 VDD(L) -7950 -1396 81 DMY44 -4650 -1396
in „LCD Graphik Display mit µController ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
etsi_GSM07.07.pdf
R97)$................................................................................................78 8.26 Accumulated call meter maximum +CAMM $(AT R97)$..............................................................................78 8.27 Price per unit and currency table +CPUC $(AT R97)$...........
in „MC mit GRPS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX534.pdf
Channel-to-Channel Isolation (Note 2) -60 dB AC Feedthrough (Note 3) -60 dB DAC OUTPUTS Output Voltage Range RL= open 0 VREF V Code = FF hex, measured withLI = 0mA to Load Regulation 1.6mA 0.156 LSB/mA 2 _______________________________________________________________________________________ +5V, Low-Power, 8-Bit
in „D/A Wandler und der reference pin...“ · Mikrocontroller und Digitale Elektronik ·
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ST_7262.pdf
n 0.1 L S O 0.2 h V i 0.05 0.1 L V 0 0 3.5 4 4.5 5 5.5 6 3.5 4 4.5 5 5.5 6 VDD (V) V DD(V) Figure 78. Typical V DD -V OH vs. V DD (standard port) 0.35 1 0.9 A 0.3 m - - 0.8 = 0.25 O 0.7 I I 0.6 a 0.2 a ) V 0.5 ( 0.15 H 0.4 O O 0.3 - 0.1 D 0.2 D 0.05 D V V0.1 0 0 3.5 4 4.5 5 5.5 6 3.5 4 4.5 5 5.5 6 V
in „Unteschiede I²C / SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STV5730.pdf
Output Dynamic Range 2.0 4.4 V Black Level Voltage 2.20 2.45 2.70 V CL1 Output Capacitor Load 20 pF RL1 Output Resistor Load 10 k ZOUT1 Output Impedance 250 VIDEO OUT2(Pin 26) VOUT2 Output Dynamic Range 2.0 4.4 V Black Level Voltage 2.20 2.45 2.70 V CL2 Output Capacitor Load 20 pF RL2 Output Resistor
in „Videoeinblendung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
super.pdf
...................................................................................................78 9.4 Modus 3...............................................................................................................................79 9.4.1 Modus 3 für Timer 0 ................................
in „Facharbeit Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
super.pdf
...................................................................................................78 9.4 Modus 3...............................................................................................................................79 9.4.1 Modus 3 für Timer 0 ................................
in „Handyansteuerung über uC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2574.pdf
Renco NPI Value (Note 1) (Note 2) (Note 3) Note 2: Renco Electronics Inc., (516) 586-5566 68 µH * RL-1284-68-43 NP5915 60 Jeffryn Blvd. East, Deer Park, NY 11729 100 µH * RL-1284-100-43 NP5916 *Contact Manufacturer 150 µH 52625 RL-1284-150-43 NP5917 220 µH 52626 RL-1284-220-43 NP5918/5919 European Source Note 3: NPI/APC +44 (0) 634 290588 330 µH 52627 RL-1284-330-43 NP5920/5921 470 µH 52628 RL-1284-470-43 NP5922 47 Riverside, Medway City Estate 680 µH 52629 RL-1283-680-43 NP5923 Strood, Rochester, Kent ME2 4DP. UK 1000 µH 52631 RL-1283-1000-43 * 1500
in „Ersatz für 7805 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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sn74lvc245a.pdf
SCAS218R – JANUARY 1993 – REVISED AUGUST 2003 PARAMETER MEASUREMENT INFORMATION VLOAD S1 From Output RL Open TEST S1 Under Test GND PLH PHL Open C L (see Note A) RL PLZ PZL VLOAD PHZ PZH GND LOAD CIRCUIT INPUTS V V V C R V CC V I tr f M LOAD L L ∆ 1.8 V ± 0.15 V CC ≤2 ns VCC/2 2 × CC 30 pF 1 kΩ 0.15 V
in „Suche 74LCX04“ · Mikrocontroller und Digitale Elektronik ·
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S1D15714_Technical_Manual__E_.pdf
F1 F0 fCL [kHz] 1/65Duty 1/49Duty 1/33Duty 0 0 0 0 100 92 120 174 0 0 0 1 86.8 80 104 151 0 0 1 0 78.0 72 94 135 0 0 1 1 69.8 64 84 121 0 1 0 0 65.1 60 78 113 0 1 0 1 59.4 55 71 103 0 1 1 0 55.3 51 66 96 0 1 1 1 51.3 47 62 89 1 0 0 0 49.0 45 59 85 1 0 0 1 45.8 42 55 80 1 0 1 0 43.5 40 52 75 1 0 1 1
in „Nokia LCD 3510“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XC62HR.pdf
StorageTemperature Tstg -40~+25 : NoteOUTmust beless thanPI-OUT). Standard Circuit VIN VOUT CIN CE C L VIN 1µF 1µF RL (Tantalum) V SS (Tantalum) w -45 76 Electrical Characteristics XC62HR2002V OUT (T)=2.0V(Note1) Ta=25: PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS CIRCUIT VOUT (E) IOUT=40mA Output Voltage 1.960 2.000
in „Ladung von Elkos innerhalb kurzer Zeit“ · Analoge Elektronik und Schaltungstechnik ·
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MAX232_MAX.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 „AVR an Handy C35“ · Mikrocontroller und Digitale Elektronik ·
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TEA6300_T_CNV_2.pdf
dB (S + N)/N Vi= 50 mV; o = 200 mV; o = 1 W 65 70 − dB (S + N)/N Vi= 500 mV; Vo= 200 mV; o = 1 W 65 78 − dB (S + N)/N Vi= 50 mV; o = 500 mV; o = 6 W − 70 − dB (S + N)/N V = 500 mV; V = 500 mV; P = 6 W − 85 − dB i o o Noise output power mute position, only contribution of Pno TEA6300; power amplifier for
in „TDA7449 und BB202“ · Markt ·
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PDF
an44fa.pdf
output current in this discontinuous example. The smaller inductor size obtained by discontinuous mode RL= Inductor Copper Resistance maybesomewhatoffsetbythelargercapacitorsrequired on input and output to meet ripple current conditions. COREcan be calculated if the inductor core material is known. See the
in „Festspannungsregler, Alternativen ?“ · Analoge Elektronik und Schaltungstechnik ·
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S1D13305.pdf
bits • Maximum of 256 characters • Table mapping can be changed • Fixed mapping at F000H to FFFFH 78 EPSON S1D13305 Series Technical Manual APPLICATION NOTES 16.4. Smooth Horizontal Scrolling Figure 63 illustrates smooth display scrolling to the left. To scroll the display to the right, the reverse
in „SP14Q002-A1 aus eBay - Erfahrungsaustausch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Epson_S1D13305.pdf
bits • Maximum of 256 characters • Table mapping can be changed • Fixed mapping at F000H to FFFFH 78 EPSON S1D13305 Series Technical Manual APPLICATION NOTES 16.4. Smooth Horizontal Scrolling Figure 63 illustrates smooth display scrolling to the left. To scroll the display to the right, the reverse
in „SP14Q002-A1 aus eBay - Erfahrungsaustausch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sed1335f.pdf
1 15 7 3 2 1 0 L LS P F S D L 7 6 5 4 3 D D D D D C CV L W D Y C D D D D D 5 4 3 2 1 0R ED S C O D RL X X X X X X Y Y V V V V V V V V V V VW VVRR N L R W/ V ( N N 2 L E S Figure 3. SED1330F and SED1335F pinouts 14 268-0.4 S-MOSSystems, Inc. •2460NorthFirst Street •SanJose, CA95131•Tel: (408)922-0200•
in „SP14Q002-A1 aus eBay - Erfahrungsaustausch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6neds.pdf
4 5 6 7 0 1 2 3 4 5 6 7 0 1 2 3 P P P P P P P P P P P P P P P P V P V P P P P P P P P P P P 80 79 78 77 76 75 74 73 72 71 70 69 68 67 66 65 64 63 62 61 60 59 58 57 56 55 54 53 52 51 P0 /AN 07/D7 81 50 P44/CS0 P06/AN 06/D6 82 49 P45/CS1 P0 /AN 05/D5 83 48 P46/CS2 P0 /AN 04/D4 84 47 P47/CS3 P0 /AN 03/
in „M16C- Key Input Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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hc595.pdf
. . . . . 113⋅C/W N package . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 78⋅C/W Storage temperature range, T . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . –65⋅C to 150⋅C stg †Stressesbeyondthoselistedunder“absolutemaximumratings
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MAX485.pdf
M Receiver Skew tSKD CL1= C L2= 100pF 100 ns / 3 Receiver Enable to Output Low ZL Figures 5 and 11,RL = 15pF, S1 closed 20 50 ns 8 Receiver Enable to Output High ZH Figures 5 and 11,RL = 15pF, S2 closed 20 50 ns 4 Receiver Disable Time from Low LZ Figures 5 and 11,RL = 15pF, S1 closed 20 50 ns X Receiver Disable Time from High HZ Figures 5 and 11,RL = 15pF, S2 closed 20 50 ns A Maximum Data Rate fMAX PLH PHL < 50% of data period 250 kbps Time to Shutdown SHDN MAX483/MAX487 (Note 5) 50 200 600 ns M / Driver Enable from Shutdown toZH(SHDN) MAX483/
in „Kommunikation mit PC“ · Mikrocontroller und Digitale Elektronik ·
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I2C_EEPROM_-_ST24C04.pdf
calculated). Figure 4. Maximum R ValuL versus Bus Capacitance (C BUS ) for an I C Bus VCC 20 ) k16 e RL RL l v12 SDA P m MASTER C u 8 fc = 100kHz SCL BUS x M 4 fc = 400kHz C BUS 0 10 100 1000 CBUS (pF) AI01665 3/27 M24C16, M24C08, M24C04, M24C02, M24C01 2 Figure 5. I C Bus Protocol SCL SDA START SDA SDA
in „I²C - EEPROM's (24C04 ...)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX202E-MAX241E.pdf
TRANSMITTERS LOADED 0 7.5 DATA RATE = 120kbps M 7.5 DATA RATE = 120kbps M DATA RATE = 120kbps M M R L= 3kΩ RL= 3kΩ 7.5 RL= 3kΩ / E ) 7.0 ) 7.0 ) 7.0 ( ( ( V CC= 5.5V 2 O V CC= 5.5V O VCC = 5.5V O , 6.5 , 6.5 VCC = 5.0V - 6.5 3 H VCC = 5.0V H H V 6.0 V 6.0 V V = 5.0V 2 6.0 CC X 5.5 5.5 5.5 VCC = 4.5V VCC = 4.5V
in „Touch-screen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dac8512.pdf
ppm/°C FS ANALOG OUTPUT Output Current OUT Data = 800H ±5 ±7 mA Load Regulation at Full Scale LREG RL= 402 to ∞, Data = 80H 1 3 LSB Capacitive Load CL No Oscillation 500 pF LOGIC INPUTS Logic Input Low Voltage VIL 0.8 V Logic Input High Voltage VIH 2.4 V Input Leakage Current IL 10 A Input Capacitance
in „µC soll Strom rausgeben“ · Mikrocontroller und Digitale Elektronik ·
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STV5730A.pdf
Output Dynamic Range 2.0 4.4 V Black Level Voltage 2.20 2.45 2.70 V CL1 Output Capacitor Load 20 pF RL1 Output Resistor Load 10 k ZOUT1 Output Impedance 250 VIDEO OUT2(Pin 26) VOUT2 Output Dynamic Range 2.0 4.4 V Black Level Voltage 2.20 2.45 2.70 V CL2 Output Capacitor Load 20 pF RL2 Output Resistor
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SED1330.pdf
1 15 7 3 2 1 0 L LS P F S D L 7 6 5 4 3 D D D D D C CV L W D Y C D D D D D 5 4 3 2 1 0R ED S C O D RL X X X X X X Y Y V V V V V V V V V V VW VVRR N L R W/ V ( N N 2 L E S Figure 3. SED1330F and SED1335F pinouts 14 268-0.4 S-MOSSystems, Inc. •2460NorthFirst Street •SanJose, CA95131•Tel: (408)922-0200•
in „Hilfe ! Problem mit Minigrafikdisplay und AT90S8535“ · Mikrocontroller und Digitale Elektronik ·
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Kleines Projekt - Kleine Fragen
Ist der FT232RL
Der Spannungsregler braucht theoretisch keine externe Beschaltung wenn ich z.B. einen 78L05 SMD nehme und den mit Vin an einen 9V Block hänge dann benötige ich keinen C´s weil ich doch schon eine "perfekte" Gleichspannung am Eingang liegen habe. Ich will diese ja lediglich auf 5V für den
Mikrocontroller und Digitale Elektronik ·avrler · ·18 Antworten
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Modifizierter Laminator - 1A Ergebnis
Ich hab mir den Laminator von Conrad geholt, und den spannungsteiler wie cdg schrieb auf 78k-10k-gnd gesetzt, und nun ist die plastehalterung vom laminator angeschmolzen. Das Teil ist sozusagen hin :( Irgendwie zuuu heiß geworden
Akku-Block bis maximal 6V (Maximum für ATmega8) - zusätzlich Spannungs-Controller eindesignen, z.B. 78L05 - USB-Spannung von PC benutzen (Strom ist für diese Schaltung mehr als ausreichend) Gruß, Uwe
Platinen ·Dominik Friedrichs · ·813 Antworten
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Thread
Handykamera MCA-25 ansteuern
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Mikrocontroller und Digitale Elektronik ·Sssssss · ·388 Antworten