-
PDF
datasheet.pdf
300 typical ∅ 5.0 optional + 0 rear shaft ∅ Ds -0.013 23HS X series +0.05 ∅ 38.1 19 47.2 dimension L 20.6 57.2 Mechanical Specification: 1.8 degree high performance stepper motors motor type length Shaft number mass Uni-polar Bi-polar Rotor diameter of leads Holding Holding Inertia Torque Torque ‘L’ ‘
in „Schrittmotor -> Schrittmotorsteuerung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Datenblatt_moc3022.pdf
AmbientTemperature Fig. 4 LED Current Required toTrigger vs. LED PulseWidth 1.4 25 ) D ) 1.3 Z D L 20 NORMALIZED TO: Z A PWin≥ 100 µs L 1.2 M A O R ( O 1.1 F15 ( - F T - N T 1.0 R 10 N R R U R 0.9 C C E R G 5 E I G 0.8 R I T T 0 0.7 1 2 5 10 20 50 100 NORMALIZED TO T A = 25∞C LED TRIGGER WIDTH - PW
in „Phasenanschnitt- Fehler“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ProASICPlus_DS.pdf
O K9 VDD VDD L18 VDD VDD N1 I/O / GL1 I/O / GL1 K10 GND GND L19 VDDP VDDP N2 AGND AGND K11 GND GND L20 NC NC N3 I/O / GLMX1 I/O / GLMX1 2-54 v5.2 ProASICPLUSFlash Family FPGAs 676-Pin FBGA 676-Pin FBGA 676-Pin FBGA Pin APA600 APA750 Pin APA600 APA750 Pin APA600 APA750 Number Function Function Number
-
Datei
s3demo_pad.txt
2 |UNUSED | |2 | | | | | | | D16 | |IOB |IO_L17P_2/VREF_2 |UNUSED | |2 | | | | | | | E1 | |IOB |IO_L20N_7 |UNUSED | |7 | | | | | | | E2 | |IOB |IO_L20P_7 |UNUSED | |7 | | | | | | | E3 | |IOB |IO_L19N_7/VREF_7 |UNUSED | |7 | | | | | | | E4 | |IOB |IO_L21P_7 |UNUSED | |7 | | | | | | | E5 | | |VCCINT |
in „Digilent S3Board Erweiterungsboard“ · FPGA, VHDL & Co. ·
-
PDF
TPS73133.pdf
TPS73133 TPS73133 TURN-ON RESPONSE TURN-OFF RESPONSE RL= 1kΩ RL= 20Ω COUT= 0 F V OUT C = 10 F OUT R L 20Ω R = 20Ω 1V/div C OUT= 1 F 1V/div CL = 1 F OUT Ω R = 20Ω RL= 1k L COUT= 0μ F COUT= 10μ F VOUT 2V 2V V EN 1V/div 1V/div 0V 0V VEN 100μs/div 100μs/div Figure 23. Figure 24. TPS73133 I vs TEMPERATURE ENABLE
-
PDF
msp430f1232.pdf
outputs P1.x, P2.x, P3.x, TAx PARAMETER TEST CONDITIONS VCC MIN TYP MAX UNIT f(P20) P2.0/ACLK, C L 20 pF 2.2 V/3 V fSystem Output frequency MHz f TA0, TA1, TA2, CL= 20 pF, 2.2 V/3 V dc f (TAx) Internal clock source, SMCLK signal applied (see Note 1) System SMCLK = LFXT1 = XT1 40% 60% SMCLK = LFXT1 =
in „MSP430 Interrupt Prioritäten?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TDA7294.pdf
1.14 1.27 1.4 0.045 0.050 0.055 G1 17.57 17.78 17.91 0.692 0.700 0.705 H1 19.6 0.772 H2 20.2 0.795 L 20.57 0.810 L1 18.03 0.710 L2 2.54 0.100 L3 17.25 17.5 17.75 0.679 0.689 0.699 L4 10.3 10.7 10.9 0.406 0.421 0.429 L5 5.28 0.208 L6 2.38 0.094 L7 2.65 2.9 0.104 0.114 S 1.9 2.6 0.075 0.102 S1 1.9 2.6 0.075
in „Problem mit TDA7294 datasheet“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
NAT7210_AN110.pdf
; u_8 read_value=0,i=0, errorflag=0; clra clrb stab 4,x clra clrb stab 2,x clra clrb stab 3,x L19: L20: TEST.371:: ; ; ; while((list_of_tests+i)->action) { ldab 2,x clra lsld lsld addd 5,x xgdy ldab 0,y clra cpd #0 bne X0 jmp L21 X0: TEST.373:: ; ; if((list_of_tests+i)->action == RD) { ldab 2,x 61 clra
in „avr und gpib“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
datasheet-13.pdf
O /"ÛÚ +] , :XW;XW 48;0/,9.0 ,W +] 4V ▯ ▯5 ▯ ▯ /"Û{¥ƒ} +] ▯ ▯5 ▯ ▯ , 25,/ /" { %K0 3L4L3;3 6083L99L-20 809L9:LY0 25,/ L9 ▯:K0 3,[L3;3 .,6,.L:LY0 25,/ L9 !1 «Ì ¥ «Ö !1 %5 J;,8,4:00 56:L3;3 9LJ4,2 +,4/2L4J 6081583,4.0 :K0 80,.:LY0 25,/ 51 :K0 , .L8.;L:8\ ▯L4:08.5440.:L549 $ : 1L2:08▯ K,9 :5 -0 :;40/ :5
in „C-Box 2 Platine von Pollin“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
GU112x16G-7806-07.pdf
18H fonts can then be selected by software Display Shift Right L L 1CH Select 4/8 bit interfaceL L 20H (4Bit) / 30H (8Bit) + luminance command. Display Luminance L H 00H-03H (must follow above command) Set CG RAM Addr. L L 40H-7FH FONT SELECTION Set DD RAM Addr. L L 80H-E7H J3 Font Read BUSY/Addr. H
in „Noritake VFD im 10x14-Modus“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
INA111_BB.pdf
MAXIMUM OUTPUT VOLTAGE SWING vs FREQUENCY OUTPUT CURRENT LIMIT vs TEMPERATURE 30 50 V 25 ) 40 ( m d t l 20 e p r 30 A C +I k 15 i –I CL e c CL - i 20 t 10 t k o e S P 5 10 0 0 –75 –50 –25 0 25 50 75 100 125 1k 10k 100k 1M 10M Frequency (Hz) Temperature (°C) ® 5 INA111 TYPICAL PERFORMANCE CURVES (CONT) At
in „INA111 als Verstärker für Solarzelle?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
L9473.pdf
G 2.40 2.54 2.68 0.094 0.10 0.105 G1 17.64 17.78 17.92 0.69 0.70 0.71 H1 19.6 0.772 H2 20.2 0.795 L 20.35 20.65 0.80 0.81 L2 17.05 17.20 17.35 0.67 0.68 0.68 L3 17.25 17.5 17.75 0.679 0.689 0.699 L4 10.3 10.7 10.9 0.406 0.421 0.429 L7 2.65 2.9 0.104 0.114 S 1.9 2.6 0.075 0.102 S1 1.9 2.6 0.075 0.102
in „Suche Bauteil L9473“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
msp430f413.pdf
60% P1.5/TACLK/ACLK, C L 20 pF fACLK = LFXT1 = LF 30% 70% V CC = 2.2 V / 3 V fACLK = LFXT1/n 50% Xdc Duty cycle of output frequency 50%− 50%+ P1.1/TA0/MCLK, fMCLK = LFXT1/n 15 ns 50% 15 ns C = 20 pF, L 50%− 50%+ V CC = 2.2 V /
in „MSP430F413 Analog eingänge“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PVC160203PYL01.pdf
51 9K0 S75/:.9 %6 .30,5 ;K0 796/X.; 4,20 :X90 ;6 X:0 ,-:69-05; .6;;65 .36;K 69 6;K09 :61; 4,;09L,3 3L20 .K,46L: 0,20 :X90 ;6 9X- L; J05;3\ ,5/ /6 56; X:0 .K04L.,3: ZK05 .30,5L5J ,1 # 0 # $ %K0 ,-6Y0 :70.L1L.,;L65: ,90 ;K0 -L5/L5J .9L;09L, 169 !L.YX0¶: 6X;J6L5J 8X,3L;\ L5:70.;L65 %K0 .X:;6409 L: 2L5/3\
in „LCD INIT FEHLER“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Transistoren_cht.pdf
2SK2949 A ST STB16NB25 250 0.25 16 D2PAK 2SK2598 A ST STB19NB20 200 0.18 19 D2PAK 2SK2401 A ST STB40NE03L-20 30 0.02 40 D2PAK 2SK3090 A ST STB50NE08 80 0.024 50 D2PAK ST STB50NE10 100 0.028 50 D2PAK ST STB50NE10L 100 0.025 50 D2PAK ST STB55NE06 60 0.022 55 D2PAK 2SK2376 A ST STB55NE06L 60 0.022 55 D2PAK 2SK2376
in „Frage Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
motor.pdf
Bipolar 200 0.195 1800 0.050 100 - / 12 PM20 S 20 18 0.600 Unipolar 200 0.530 1400 0.090 50 - / 12 L 20 18 0.850 Unipolar 100 0.600 700 0.050 100 - / 12 PM25 S 24 15 1.420 Unipolar 200 0.950 1600 0.380 70 - / 24 48 7.5 2.380 Bipolar 200 1.590 2750 0.500 14 0.6 / ( 24 ) L 24 15 2.030 Bipolar 200 1.560
in „schrittmotor Steuerung“ · Platinen ·
-
PDF
4051.pdf
Figure 7) BW 10 17 — MHz (R = 1 k , V = 1/2 (V –V ) p–p, C = 50pF ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ L 20 Log (out in = – 3 dB) ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ Off Channel Feedthrough Attenuation (Figure 7) — 10 – 50 — dB ÎÎÎÎÎÎÎÎRL= 1K , Vin= 1/2 (DDΖ VEE) p–p f = 4.5 MHz — MC14051B ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
in „V: MC14051BCP“ · Markt ·
-
PDF
e-pm.pdf
(Ω MAX.) Rated ripple (mA rms) Cap.(µF) de (mm) 20°C/100kHz–10°C/100kHz 105°C2 0 Hz105°C/120Hz D L 20°C/100kHz –10°C/100kHz 105°C/H ~~105°C/120Hz 200k z (mm) 200kzHz 22 220 5 11 0.75 1.50 160 85 27 270 5 11 0.60 1.20 180 99 330 6.3 11 0.49 0.98 225 125 33 39 390 6.3 11 0.41 0.82 245 140 47 470 6.3 11
in „LOW ESR Elkos“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
FZT949.pdf
lr-l OmA, VCE=-1 V Current Transfer Ratio 100 200 300 IF-lA, Vw =-IV* 75 140 l@-5A, VCE=-1 V* 35 l@-20A, VCE=-2V’ Transition Frequency fT 100 MHz le-lOOmA, Vcr-l OV f=50MHz Output Capacitance Cobo 122 pF VCF-l OV, f=l MHz -— Switching Times t 120 ns le-4A. lB1=-400mA t;m 130 ns laP400mA, VCF-l OV *Measured
in „TFT Inverter“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MOC304_MOT.pdf
MOC3042 MOC3043 500 1.5 ) n 1.4 T E200 IF=0 1.3 F =RATEDIFT R D U Z1.2 C100 L G M1.1 K R C 50 N 1 L 20.9 B M A 20 ID0.8 P ,1 0.7 M10 ID 0.6 5 –40 –20 0 20 40 60 80 100 –40 –20 0 20 40 60 80 100 TA,AMBIENTTEMPERATURE(⋅C) TA,AMBIENTTEMPERATURE( ⋅C) Figure 3. DRM1 , Peak Blocking Current Figure 4. DRM2
in „Solid state Relais“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
listing.txt
@function 205 write_eeprom: 206 /* prologue: frame size=0 */ 207 /* prologue end (size=0) */ 208 .L20: 209 0120 E199 sbic 60-0x20,1 210 0122 FECF rjmp .L20 211 /* #APP */ 212 0124 F894 cli 213 /* #NOAPP */ 214 0126 8EBB out 62-0x20,r24 215 0128 892F mov r24,r25 216 012a 9927 clr r25 217 012c 8FBB out
in „AVR EEPROM: Reset beim Lesen ?!“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
datasheet.pdf
5.5 0.40 14 e 6.0 g f 6.5 0.35 12 g 7.0 f h 7.5 0.30 10 i 8.0 e 0.25 8 j 9.0 k 10.0 0.20 i d j 6 l 20.0 0.15 c k 4 0.10 VGS[V] = b a b c d e f g h i j k 2 a 0.05 450 5.05.5 6.0 6.5 7.0 7.58.0 9.0 10.0 20.0 0 0.00 0.0 1.0 2.0 3.0 4.0 5.0 6.0 V 8.0 0 2 4 6 8 10 12 14 16 A 20 V I DS D Typ. transfer characteristics
-
PDF
CNY37_CNY36_VIS.pdf
i Operation r T 15 V S5V C 80 o R L100W o r c 70 s u l 60 / 10 C o e 50 r t 40 u ton e – R 30 f 5 l 20 to toff C /n I 10 to 0 0 0 2 4 6 8 10 –0.5–0.4–0.3–0.2–0.1–0.0 0.1 0.2 0.3 0.4 0.5 96 12006 s – Displacement ( mm ) 95 11086 IC– Collector Current ( mA ) Figure 10. Turn on / off Time vs. Collector
in „CNY37 - Gabellichtschranke“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SpartanXL.pdf
(3) (3) I/O - - P125 P145 L19 L18 496 I/O P59 P86 P126 P146 L18 L17 499 (3) I/O P60 P87 P127 P147 L20 L16 502 (3) I/O (D4 ) P61 P88 P128 P148 K20 K19 505 (3) I/O P62 P89 P129 P149 K19 K18 508 (3) (4) VCC P63 P90 P130 P150 VCC K17 - GND P64 P91 P131 P151 GND (4) GND (4) - I/O (D32) P65 P92 P132 P152
in „Logic Analyzer bauen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
E0123N10.pdf
designed. Figure 2-6. Increasing Speed of DRAM 35 General-purpose DRAM 30 (EDO DRAM, etc.) ) s ( 25 e t l 20 c c s 15 u B 10 Synchronous DRAM 5 80 70 60 50 40 30 /RAS access time (ns) Remark The burst cycle time indicates the /CAS cycle time of DRAM and the clock cycle time of SDRAM. 30 User’s Manual E0123N10
in „VGA Grafikkarte mit AVR und 8MB SDRAM“ · Projekte & Code ·
-
PDF
KM62256C.pdf
Max) (Icc 2 ) KM62256CL 100μA Commercial (0~70 °C) 55/70ns 28-DIP, 28-SOP 28-TSOP1 R/F KM62256CL-L 20μA KM62256CLE 100μA 28-SOP Extended (-25~85 °C) 4.5 to 5.5V 70ns 70mA 28-TSOP1 R/F KM62256CLE-L 50μA KM62256CLI 100μA 28-SOP Industrial (-40~85 °C) 70ns KM62256CLI-L 50μA 28-TSOP1 R/F PIN DESCRIPTION
in „billig RAM's abzugeben“ · Markt ·
-
PDF
MC_productmatrix_022005.pdf
32K OTP 512 46 8/10Bit 3 12 / 4 USART - 4-ch - 8 - ! P-MQFP-80 RTC with 32kHz subclock C508-4R/-2R/-L 20MHz 300ns 32/16KB 1280 48 8/10Bit 3 19 / 4 USART - 11-ch - 8 - ! P-MQFP-64 CCU für CD motor control, PLL (10mHz ext. Clock), 2 Port C508-4E 32K OTP P-SDIP-64 with 10mA Sinking Current USART + CMOS /
in „8051-Derivat mit zwei UART gesucht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
5966-3087E.pdf
cumulative LED on-time is 10,000 V U T 30 100 mA PEAK, DF = 10% T hours. For peak drive currents up L 20 H to 50 mA, the long term degrada- R L 10 TA= 55° C tion is projected to be on average 0 10 100 1,000 10,000 100,000 about -30% after 100,000 hours of ELAPSED TIME (HOURS) elapsed time. The light output
in „Einfluss von Stromstärke und Temperatur auf Lebensdauer LED“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MBI5026Datenblatt_V0.9.pdf
ext CLK - SDO tpHL V L4.0 V 15 20 - ns R L52 Ω CLK tw(CLK) C =10 pF 20 - - ns L Pulse Width LE tw(L) 20 - - ns tw(OE) 200 - - ns OE Hold Time for LE t 5 - - ns h(L) Setup Time for LE t 5 - - ns su(L) Hold Time for SDI t 10 - - ns h(D) Setup Time for SDI t 5 - - ns su(D) Cascade Clock Frequency F CLK
in „Ansteuerung von ca. 1200 LED´s“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MOC3022-M.pdf
AmbientTemperature Fig. 4 LED Current Required toTrigger vs. LED PulseWidth 1.4 25 ) D ) 1.3 Z D L 20 NORMALIZED TO: Z A PWin≥ 100 µs L 1.2 M A O R ( O 1.1 F15 ( - F T - N T 1.0 R 10 N R R U R 0.9 C C E R G 5 E I G 0.8 R I T T 0 0.7 1 2 5 10 20 50 100 NORMALIZED TO T A = 25∞C LED TRIGGER WIDTH - PW
in „Problem beim dimmen von NV-Halogenspots“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MOC_3043_MOT.pdf
MOC3042 MOC3043 500 1.5 ) n 1.4 T E200 IF=0 1.3 F =RATEDIFT R D U Z1.2 C100 L G M1.1 K R C 50 N 1 L 20.9 B M A 20 ID0.8 P ,1 0.7 M10 ID 0.6 5 –40 –20 0 20 40 60 80 100 –40 –20 0 20 40 60 80 100 TA,AMBIENTTEMPERATURE(⋅C) TA,AMBIENTTEMPERATURE( ⋅C) Figure 3. DRM1 , Peak Blocking Current Figure 4. DRM2
in „Leistungslos schalten mit Nulldurchgang Erkennung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MOC3022-M.pdf
AmbientTemperature Fig. 4 LED Current Required toTrigger vs. LED PulseWidth 1.4 25 ) D ) 1.3 Z D L 20 NORMALIZED TO: Z A PWin≥ 100 µs L 1.2 M A O R ( O 1.1 F15 ( - F T - N T 1.0 R 10 N R R U R 0.9 C C E R G 5 E I G 0.8 R I T T 0 0.7 1 2 5 10 20 50 100 NORMALIZED TO T A = 25∞C LED TRIGGER WIDTH - PW
-
PDF
TL494.pdf
AVOL 40 E M 12 V A T P 60 60 H A 10 O 50 80 S D 8.0 N 40 φ 100 ES T E C E 6.0 O 30 120 E R 0.001 ▯F ,L20 140 , E 4.0 V φ T 2.0 A 10 160 D 0 180 % 0 1.0 10 100 1.0 k 10 k 100 k 1.0 M 500 k 1.0 k 10 k 100 k 500 k f, FREQUENCY (Hz) f , OSCILLATOR FREQUENCY (Hz) osc Figure 4. Open Loop Voltage Gain and Figure
in „Problem mit TL494“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Power_MOSET_Cross_reference.pdf
2SK2949 A ST STB16NB25 250 0.25 16 D2PAK 2SK2598 A ST STB19NB20 200 0.18 19 D2PAK 2SK2401 A ST STB40NE03L-20 30 0.02 40 D2PAK 2SK3090 A ST STB50NE08 80 0.024 50 D2PAK ST STB50NE10 100 0.028 50 D2PAK ST STB50NE10L 100 0.025 50 D2PAK ST STB55NE06 60 0.022 55 D2PAK 2SK2376 A ST STB55NE06L 60 0.022 55 D2PAK 2SK2376
in „Schaltregler Fragen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Apex_PA03.pdf
R P CC= 470pF E S F 4 C O 40 N A120 P 25° L P R T C= N 20 –150 D 3 5°C E E = 12 O G 2 TC 0 –180 T L –20 –210 V 1 1 10 100 1K 10K .1M 1M 10M 1 10 100 1K 10K .1M 1M 10M 0 5 10 15 20 25 30 FREQUENCY, F (Hz) FREQUENCY, F (Hz) OUTPUT CURRENT, I O (A) ) COMMON MODE REJECTION PULSE RESPONSE INPUT NOISE B120
in „Hochleistungs-Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LH1505.pdf
70 F =0 mA V1.15 TA=25°C ( 60 f=1.0 MHz g TYP. F l ( V1.10 e 50 r MIN. n a i 40 r a F1.05 a 30 D C L 20 1.00 10 0.95 0 -40 -20 0 20 40 60 80 0 20 40 60 80 100 ilh1505ab_04 Ambient Temperature (°C) ilh1505ab_07 Applied Voltage (V) Figure 5. LED Dropout Voltage vs. Temperature Figure 8. Switch Capacitance
in „Wechselspannung mit uC schalten“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MOSFET_Treiber.pdf
ERR Pull-Up Current vs. Voltage 14 IR2125 50 50 40 40 ) Typ. A m ( n n r30 r 30 C C n n o o Typ. l 20 Min. l 20 P P R R E E Max. 10 10 0 0 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature (°C) V CCLogic SupplyVoltage (V) Figure 33A. ERR Pull-Down Current vs.Temperature Figure 33B. ERR Pull-Down
in „MOSFET - Treiber“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LM3914.pdf
LM3914 also decrease with temperature. 13 www.national.com 1 9 Typical Applications (Continued) 3 M L 20-Segment Meter with Mode Switch DS007970-14 *The exact wiring arrangement of this schematic shows the need for Mode Select (pin 9) to sense the V voltage exactly as it appears on pin 3. Programs LEDs
in „Frage zu LM3914“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
tlc274.pdf
kHz, R S 20 Ω, Vn Equivalent input noise voltage See Figure 2 25°C 25 nV/√Hz 25°C 320 VO = VOH , C L 20 P, BOM Maximum output-swing bandwidth RL= 10 Ω , See Figure 1 –40°C 380 kHz 85°C 250 25°C 1.7 VI= 10m , C L= 20PF, B1 Unity-gain bandwidth See Figure 3 –40°C 2.6 MHz 85°C 1.2 25°C 46° φm Phase margin
in „Beschaltung von Photodioden“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
slas272d.pdf
PARAMETER TEST CONDITIONS MIN TYP MAX UNIT TA0..2, TB0–TB6, fTAx Internal clock source, SMCLK signal C L 20 pF DC System applied (see Note 1) MHz fACLK, fMCLK, P5.6/ACLK, P5.4/MCLK, P5.5/SMCLK C L 20 pF System f SMCLK P2.0/ACLK ACLK = LFXT1 = fXT1 40% 60% C L 20 pF, ACLK = LFXT1 = fLF 30% 70% V CC = 2.2 V
in „MSP430 Interrupt Port1“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
L298.pdf
1.14 1.27 1.4 0.045 0.050 0.055 G1 17.57 17.78 17.91 0.692 0.700 0.705 H1 19.6 0.772 H2 20.2 0.795 L 20.57 0.810 L1 18.03 0.710 L2 2.54 0.100 L3 17.25 17.5 17.75 0.679 0.689 0.699 L4 10.3 10.7 10.9 0.406 0.421 0.429 L5 5.28 0.208 L6 2.38 0.094 L7 2.65 2.9 0.104 0.114 S 1.9 2.6 0.075 0.102 S1 1.9 2.6 0.075
in „Motortreiber“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
CFAG320240CFMIT.pdf
RES 20 2 17 Vee 19 1 20- 1.0PTH 1.6 18 FGND . . 20- 1.8PAD 19 NC 2 5 22.86 21.06 (P2.54*9) CCFLB/L 20 NC 148.02 0.5 Thenon-specifiedtoleranceofdimensionis 0.3mm. 0.36 0.34 6 3 0 0 DOTSIZE CCFLB/Ldrivedirectly fromconnector. E CL1 D C R/W M v 1 A0 FLM r 0 DB0~DB7 SED1335 C t CS / v B/L RES Controller
in „Sammelbestellung Grafik-LCD 320x240 blau/weiß“ · Markt ·
-
PDF
moc3041.pdf
MOC3042 MOC3043 500 1.5 ) n 1.4 T E200 IF=0 1.3 F =RATEDIFT R D U Z1.2 C100 L G M1.1 K R C 50 N 1 L 20.9 B M A 20 ID0.8 P ,1 0.7 M10 ID 0.6 5 –40 –20 0 20 40 60 80 100 –40 –20 0 20 40 60 80 100 TA,AMBIENTTEMPERATURE(⋅C) TA,AMBIENTTEMPERATURE( ⋅C) Figure 3. DRM1 , Peak Blocking Current Figure 4. DRM2
in „Optokoppler + Triac = Rauch?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
L298.pdf
1.14 1.27 1.4 0.045 0.050 0.055 G1 17.57 17.78 17.91 0.692 0.700 0.705 H1 19.6 0.772 H2 20.2 0.795 L 20.57 0.810 L1 18.03 0.710 L2 2.54 0.100 L3 17.25 17.5 17.75 0.679 0.689 0.699 L4 10.3 10.7 10.9 0.406 0.421 0.429 L5 5.28 0.208 L6 2.38 0.094 L7 2.65 2.9 0.104 0.114 S 1.9 2.6 0.075 0.102 S1 1.9 2.6 0.075
in „Probleme mit L298“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
CFAG320240CFMIT.pdf
RES 20 2 17 Vee 19 1 20- 1.0PTH 1.6 18 FGND . . 20- 1.8PAD 19 NC 2 5 22.86 21.06 (P2.54*9) CCFLB/L 20 NC 148.02 0.5 Thenon-specifiedtoleranceofdimensionis 0.3mm. 0.36 0.34 6 3 0 0 DOTSIZE CCFLB/Ldrivedirectly fromconnector. E CL1 D C R/W M v 1 A0 FLM r 0 DB0~DB7 SED1335 C t CS / v B/L RES Controller
in „SP14Q002-A1 aus eBay - Erfahrungsaustausch“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LP104V2-B1_CAS_Rev_0.pdf
0.0 July 10, 2002 19 / 25 LP104V2 Liquid Crystal Display Product Specification <REAR VIEW> 1 ( V 0 L 20 / 25 Ver. 0.0 July 10, 2002 LP104V2 Liquid Crystal Display Product Specification 6. Reliability Environment test condition No Test Item Condition 1 High temperature storage test Ta= 60°C 240h 2 Low
in „TFT (3 * 6 Bit TTL Interface) an PIC 16F877“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
KA278R05.pdf
7 KA278R05 Ordering Information Product Number Package Operating Temperature KA278R05TU TO-220F-4L -20°C to +80°C KA278R05YDTU TO-220F-4L(Forming) DISCLAIMER FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY, FUNCTION OR DESIGN
in „5V Spannungsregler für 6V Eingangsspannung ????“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
pcm1716.pdf
XTO CS/IWO 23 S to DGND of D. Source 7 DGND RST 22 External Reset C 2 8 VDD ZERO 21 10k 9 VCC2R VCC2L 20 C C 4 10 AGND2R 3 AGND2L 19 C6 + 11 EXTR EXTL 18 + C 5 10µF 10µF 12 NC NC 17 13 V OUTR VOUTL 16 14 AGND1 VCC1 15 C1 +5V V CC C1, 2 : 10µF + 0.1µF Ceramic C3, 4 : 1µF ~ 10µF Post Post Low-Pass Low-Pass
in „DAC über SPI configurieren??, Codevision“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LM3914.pdf
LM3914 also decrease with temperature. 13 www.national.com 1 9 Typical Applications (Continued) 3 M L 20-Segment Meter with Mode Switch DS007970-14 *The exact wiring arrangement of this schematic shows the need for Mode Select (pin 9) to sense the V voltage exactly as it appears on pin 3. Programs LEDs
in „Drehzahlerfassung und Ausgabe“ · Mikrocontroller und Digitale Elektronik ·
-
Thread
CCFL Spannungsinverter
gibt es ein PDF-Datenblatt ( ohne Schaltplan) hier: http://power.tdk.com/dcac/brochure/pdf/CXA-L10L%20(CTR-0741-A)%20PRODUCT%20DRAWING.pdf EInd Datenblatt-Übersicht von TDK ist hier: http://www.tdk.com.hk/english/products/ferrite.asp?ImageName=PowerS speziell der CXA-L10L: http://www.tdk.com.hk/english
Analoge Elektronik und Schaltungstechnik ·Patrick Schiesser · ·4 Antworten