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PDF
TDA1562.pdf
landscape pages to be ... 1 T P 9 E h 8 T w 7 0 p A A h s r N W e 7 + VP D d m 100 2200 A a i c 4700 F nF F P g g n C1− C1+ VP1 VP2 L n h u 3 5 9 10 C s e t T t fi r CLASS-B O c c s status I/O6 CLASS-H TEMPERATURE LOAD DUMP N f e FAST MUTE SENSOR PROTECTION N c n F i c O t y mode 4 STANDBY disableLIFT-SUPPLY
in „Maximale Kapazitat an Lift Supply (TDA1562)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6207.pdf
ground separated on the PCB. Table 8. Component values for typical application Component Value C1 100 F C2 100 nF CA 1 nF CB 1 nF C 220 nF BOOT C 10 nF P C 5.6 nF ENA CENB 5.6 nF C REFA 68 nF C REFB 68 nF D1 1N4148 D2 1N4148 RA 39 K RB 39 K RENA 100 K RENB 100 K R 100 P R 0.3 SENSEA R 0.3 SENSEB
in „Schrittmotor mit L6207“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1822670.pdf
ground separated on the PCB. Table 8. Component values for typical application Component Value C1 100 F C2 100 nF CA 1 nF CB 1 nF C 220 nF BOOT C 10 nF P C 5.6 nF ENA C ENB 5.6 nF CREFA 68 nF CREFB 68 nF D1 1N4148 D2 1N4148 RA 39 K RB 39 K R ENA 100 K R ENB 100 K R 100 P R 0.3 SENSEA R 0.3 SENSEB
in „Treiberstufe fuer Faulhaber Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
650354-da-01-en-energizer_alkali-mangan_monolr20_1_5v.pdf
One No. 3-350 (size “D”) 34.20 1.346 Jacket: Plastic Label 57.00 2.244 Shelf Life: 7 years 57.80 2.276 59.50 2.343 Temperature Effects 61.50 2.421 10000 Typical Service to 0.8 Volts 1000 45 C o 20 C r o 100 H e i r 10 S o -10 C 1 0.1 0.1 1 10 100 1000 Discharge Resistance, Ohms Constant Resistance Discharge
in „Stromversorgung aus einer Zelle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BJTransistor_2N2222A.pdf
collector current (DC) − 800 mA Ptot total power dissipation Tamb≤ 25 °C − 500 mW hFE DC current gain C = 10 mA; CE = 10 V 75 − T transition frequency C = 20 mA; CE = 20 V; f = 100 MHz 2N2222 250 − MHz 2N2222A 300 − MHz off turn-off time Con= 150 mA; Bon= 15 mA; Boff −15 mA − 250 ns 1997 May 29 2 Philips Semiconductors
in „DC DC Verstärkung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2N2222_2222A.pdf
collector current (DC) − 800 mA Ptot total power dissipation Tamb≤ 25 °C − 500 mW hFE DC current gain C = 10 mA; CE = 10 V 75 − T transition frequency C = 20 mA; CE = 20 V; f = 100 MHz 2N2222 250 − MHz 2N2222A 300 − MHz off turn-off time Con= 150 mA; Bon= 15 mA; Boff −15 mA − 250 ns 1997 May 29 2 Philips Semiconductors
in „Transistor mit Basistrom im µA-Bereich schalten?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2n2222-datasheet.pdf
collector current (DC) − 800 mA Ptot total power dissipation Tamb≤ 25 °C − 500 mW hFE DC current gain C = 10 mA; CE = 10 V 75 − T transition frequency C = 20 mA; CE = 20 V; f = 100 MHz 2N2222 250 − MHz 2N2222A 300 − MHz off turn-off time Con= 150 mA; Bon= 15 mA; Boff −15 mA − 250 ns 1997 May 29 2 Philips Semiconductors
in „Oszi v. SUN Motortester zeigt nur kurz einen Punkt.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ssd1623.pdf
T8[5] T8[4] T8[3] T8[2] T8[1] T8[0] Waveform LUT8 1B Timing3 T9[5] T9[4] T9[3] T9[2] T9[1] T9[0] T10[5] T10[4] T10[3] T10[2] T10[1] T10[0] 1C Reserved 1D Reserved 1E Reserved 1F Reserved SSD1623 Rev 0.10 P 18/44 Nov 2007 Solomon Systech 9 COMMAND DESCRIPTIONS R00h Display update Update - When this bit
in „E-Ink Display im Blutzuckermeßgerät“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ED1602_2.pdf
voltage I = −10 mA; I = −0.5 mA − −300 mV CEsat C B C = −100 mA; B = −5 mA − −650 mV VBE base-emitter voltage C = −2 mA; VCE= −5 V −500 −750 mV C collector capacitance I = i = 0; V = −10V; f = 1 MHz − 5 pF c E e CB T transition frequency C = −5 mA; VCE= −5 V; 100 − MHz f = 100 MHz F noise figure C = −0.2 mA; CE = −5 V; − 4 dB RS= 2 k ; f = 1 kHz; B = 200 Hz 1999 Apr 27 3 Philips Semiconductors Product specification PNP general purpose transistor ED1602 PACKAGE OUTLINE
in „Suche Datenblatt Transistor Siemens STr 1602“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BC337_3.pdf
base-emitter voltage I = 500 mA; V = 1 V; note 1 − − 1.2 V BE C CE Cc collector capacitance E = e = 0;CB = 10 V; f = 1 MHz − 5 − pF T transition frequency C = 10 mA; VCE= 5 V; f = 100 MHz100 − − MHz Note 1. V BEdecreases by about 2 mV/K with increasing temperature. 1999 Apr 15 3 Philips Semiconductors Product
in „Stromverstärkung mit Transistor; Arduino“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
base-emitter voltage I = 500 mA; V = 1 V; note 1 − − 1.2 V BE C CE Cc collector capacitance E = e = 0;CB = 10 V; f = 1 MHz − 5 − pF T transition frequency C = 10 mA; VCE= 5 V; f = 100 MHz100 − − MHz Note 1. V BEdecreases by about 2 mV/K with increasing temperature. 1999 Apr 15 3 Philips Semiconductors Product
in „Dimensionierung der Transistorschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BC337_3.pdf
base-emitter voltage I = 500 mA; V = 1 V; note 1 − − 1.2 V BE C CE Cc collector capacitance E = e = 0;CB = 10 V; f = 1 MHz − 5 − pF T transition frequency C = 10 mA; VCE= 5 V; f = 100 MHz100 − − MHz Note 1. V BEdecreases by about 2 mV/K with increasing temperature. 1999 Apr 15 3 Philips Semiconductors Product
in „Transistor für Bewegungsmelder“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
008-0256-0_F.pdf
Tested load condition noted 3.0 3.3 3.6 Supply Current for typical values. CB3 1.5 MHz to 20 MHz CL=50pF - 10 25 20.1 MHz to 80 MHz C L50pF - 30 50 ICC 80.1 MHz to 107 MHz CL=15pF - 40 80 mA CB3LV 1.5 MHz to 20 MHz CL15pF - 7 12 20.1 MHz to 80 MHz C L15pF - 20 40 - 30 60 80.1 MHz to 160 MHz CL=15pF Output
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PDF
ST7735_128x160_SPI_Display.pdf
Partial Mode On, Idle Mode On, Sleep Out Yes Sleep In Yes Status Default Value C7h Power On Sequence F0h Default S/W Reset F0h H/W Reset F0h Flow Chart V2.1 141 2010-02-01 ST7735 10.2.13 WRID2 (D1h): Write ID2 Value D1H WRID2 (Write ID2 Value) D17 Inst / Para D/CX WRX RDX D7 D6 D5 D4 D3 D2 D1 D0 HEX WRID2
in „ST7735 an MCU“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TEST.LST
== 2 ){ b4: c2 30 cpi r28, 0x02 ; 2 b6: 29 f4 brne .+10 ; 0xc2 <display_time+0x4c> digit[1] = 0; b8: 10 92 80 00 sts 0x0080, r1 digit[0] = 0; bc: 10 92 7f 00 sts 0x007F, r1 c0: 0f c0 rjmp .+30 ; 0xe0 <__stack+0x1> }else{ digit[1] = get7s( minute
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PDF
BUW84.PDF
emitter-base cut-off current VEB= 5 V;CI = 0 − − 1 mA hFE DC current gain VCE= 5 V;CI = 5 A; see Fig.10 15 − − V = 5 V; I = 100 mA; 20 50 100 CE C see Fig.10 f transition frequency V = 10 V; I = 200 mA; − 20 − MHz T CE C f = 1 MHz 1997 Aug 14 2 Philips Semiconductors Product specification Silicon diffused
in „Hochspannung Regeln für eine Bildverstärker Röhre“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BD329.PDF
saturation voltaIC= 2 A; B = 0.2 A − − 0.5 V VBE base-emitter voltage IC= 5 mA; V CE = 10 V − 0.6 − V IC = 2 A; CE = 1 V − − 1.2 V T transition frequency IC= 50 mA; V CE = 5 V; f = 100 MHz − 130 − MHz hFE1 DC current gain ratio of the IC = 0.5 A; CE = 1 V − − 1.6 ---------- complementary pairs hFE2 MGD844 handbook, full pagewidth hFE 250 200 150 100 50 0 10−1 1 10 102 10 104 IC(mA) VCE= 1 V. Fig.2 DC current gain; typical values. 1997 Mar 07 4 Philips Semiconductors Product specification NPN power transistor BD329 PACKAGE OUTLINE Plastic single-ended leaded
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PDF
lt1208.pdf
to 70°C 200 V/ s V S= ±5V, AVCL=–2, (Note 3) 150 250 V/ s 0°C to 70°C 130 V/ s Full Power Bandwidth 10V Peak, (Note 4) 6.4 MHz GBW Gain-Bandwidth V S= ±15V, f = 1MHz 45 MHz V S ±5V, f = 1MHz 34 MHz tr ft Rise Time, Fall Time V S ±15V, A VCL= 1, 10%to 90%, 0.1V 5 ns V S ±5V, A VCL = 1, 10%to 90%, 0.1V
in „Operations verstärker als Komparator verschlechterung der Slewrate?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ST7567A_V1.2a.pdf
data setup time tDS6 40 — Write data hold time tDH6 20 — D[7:0] Read data access time tACC6 CL = 16 pF — 140 Read data output disable time tOH6 CL = 16 pF 10 100 Ver 1.2a 60/77 2016/12/06 ST7567A (VDD1 = 1.8V , Ta =25 C) Item Signal Symbol Condition Min. Max. Unit Address setup time tAW6 0 — A0 Address
in „LCD mit ST7567A und I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BD330.PDF
UNIT CBO collector cut-off current E = 0; CB = −32 V − − −100 nA I = 0; V = −32 V; T = 150 °C − − −10 A E CB j EBO emitter cut-off current C = 0; EB = −5 V − − −100 nA hFE DC current gain C = −5 mA; VCE= −10 V 50 − − I = −0.5 A; V = −1 V; see Fig.2 85 − 375 C CE C = −2 A; CE = −1 V; see Fig.2 40 − −
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Datei
fehler.txt
: bad instruction `dcd TIM1_UP_TIM10_IRQHandler' libraries/CMSIS/Device/ST/STM32F4xx/Source/Templates/arm/startup_stm32f429_439xx.s:112: Error: bad instruction `tim1 Update and TIM10' libraries/CMSIS/Device/ST/STM32F4xx/Source/Templates
in „STM32F4 Projekt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
leuchtturm.asm
and r18, r19 e8: 04 04 cpc r0, r4 ea: 05 25 eor r16, r5 ec: 06 06 cpc r0, r22 ee: 07 07 cpc r16, r23 f0: 10 10 cpse r1, r0 f2: 11 31 cpi r17, 0x11 ; 17 f4: 12 12 cpse r1, r18 f6: 13 13 cpse r17, r19 f8: 14 10 cpse r1, r4 fa: 15 15 cp r17, r5 fc: 16 16 cp r1, r22 fe: 17 17 cp r17, r23 100: 80 80 ld r8,
in „Schaltung mit ATtiny13A aus Solar-Leuchtturm weiter gedacht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Display_Controller.pdf
Enable H pulse width (READ) tCCHR 80 ns WRITE Data setup time tDS8 40 — WRITE Data hold time tDH8 10 — D0 to D7 READ access time tACC8 CL = 100 pF — 70 READ Output disable time tOH8 CL = 100 pF 5 50 tF — 10 tR — 10 Ver2.3 73/97 2007/1/3 ST7528 (VDD = 2.7 V , Ta = -30~85°C ) Rating Item Signal Symbol
in „LCD Controler mit Spannungsregulier-Eingängen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sager_D87P_Service_Manual_Part4.pdf
VIN Sheet 34 of 39 4 FCB EXTVCC 21 PC196 10UF/25V(1210) h PR110 PC92 100pF 15K 1% 5 ITH1 INTVCC 20 PC94 PC191 e PC93 *33pF 6 19 1UF 4.7UF/10V(0805) +C204 P+203 System Power 1 SGND PGND 0.1UF/50V PC195 PC194 m PR199 PC89 220pF 7 18 10U/25V_O 10U
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PDF
12785.pdf
C CE BC639-10 63 160 BC635-16; BC637-16; BC639-16 100 250 V collector-emitter saturation voltI = 500 mA; I = 50 mA − 500 mV CEsat C B VBE base-emitter voltage C = 500 mA; VCE= 2 V − 1 V T transition frequency C =
in „Stromverstärkung BC-635“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BD139-16.pdf
BD135-10; BD137-10; BD139-10 (see Fig.2) 63 − 160 BD135-16; BD137-16; BD139-16 100 − 250 V collector-emitter saturation volI = 500 mA; I = 50 mA − − 0.5 V CEsat C B VBE base-emitter voltage IC= 500 mA; VCE =
in „Transistor als Schalter (BD139) richtig auslegen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bd139.pdf
BD135-10; BD137-10; BD139-10 (see Fig.2) 63 − 160 BD135-16; BD137-16; BD139-16 100 − 250 V collector-emitter saturation volI = 500 mA; I = 50 mA − − 0.5 V CEsat C B VBE base-emitter voltage IC= 500 mA; VCE =
in „Basisvorwiderstand Berechung beim BD139 richtig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1019.pdf
15 25 50 15 25 50 mA Output Connected to GND 10 10 mA en Output Voltage Noise 10Hz ≤ f ≤1kHz 2.5 4 2.5 4 ppm(RMS) (Note 9) 0.1Hz ≤ f ≤ 10Hz 2.5 2.5 ppm(P-P) The denotes specifications which apply over the full operating Note 6: Thermal regulation
in „Referenz Chip LT1019 / Heizung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LIS3D.pdf
y, and z- axes measurements are stored in FIFO. 3.7 Auxiliary ADC The LIS3DH contains an auxiliary 10 bit ADC with 3 separate dedicated inputs. Doc ID 17530 Rev 1 17/42 Application hints LIS3DH 4 Application hints Figure 5. LIS3DH electrical connection ADC1 ADC2 Vdd 10µF 16 14 Vdd_IO 1 13 ADC3 TOP VIEW
in „SPI immer gleiche Antwort“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LIS3DH.pdf
y, and z- axes measurements are stored in FIFO. 3.7 Auxiliary ADC The LIS3DH contains an auxiliary 10 bit ADC with 3 separate dedicated inputs. Doc ID 17530 Rev 1 17/42 Application hints LIS3DH 4 Application hints Figure 5. LIS3DH electrical connection ADC1 ADC2 Vdd 10µF 16 14 Vdd_IO 1 13 ADC3 TOP VIEW
in „Accelerometer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
out.lst
, r17 b6: d9 f7 brne .-10 ; 0xae 000000b8 <__do_clear_bss>: b8: 10 e0 ldi r17, 0x00 ; 0 ba: a6 ea ldi r26, 0xA6 ; 166 bc: b0 e0 ldi r27, 0x00 ; 0 be: 01 c0 rjmp .+2 ; 0xc2 000000c0 <.do_clear_bss_loop>: c0: 1d 92 st
in „Multiplikation ist zu schnell...“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.txt
breq .+4 ; 0x108 <__stack+0x29> 104: 22 30 cpi r18, 0x02 ; 2 106: 31 f4 brne .+12 ; 0x114 <__stack+0x35> 108: 23 17 cp r18, r19 10a: 09 f0 breq .+2 ; 0x10e <__stack+0x2f> 10c: 6e c0 rjmp .+220 ; 0x1ea <__stack+0x10b> 10e: 60 e6 ldi r22, 0x60 ; 96 110: 70 e0 ldi r23, 0x00
in „flash-Fehler mit ATtiny2313, compile ok“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sony_str-ks360_ks360s_ver-1.0_sm.pdf
ST_CLK 41 0 ST_CLK INIT R1172 100 AMP_LRCKO R1073 10k 3.3 0 ST_CE SC_INIT 12 91 DMPORT_DET IC1005 ST_CE 40 SOFT_MUTE R1173 100 3.3 R5F3640MDFAR 3.3 RDS_DATA 0.022 SC_SOFT_MUTE MAIN (KS360S) 92 DESTINATION
in „Sony STR KS360S Verstärker geht auf Standby, LED blinkt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD9952arduino.pdf
4B7F 556 1.000 53E2 557 2.000 A7C5 558 3.000 FBA8 559 4.000 14F8B 560 5.000 1A36E 561 6.000 1F751 562 7.000 24B33 563 8.000 29F16 564 9.000 2F2F9 565 10.000 346DC 566 20.000 68DB8 567 30.000 9D495 568 40.000
in „DDS-Chip mit einem AVR ansprechen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BD135_137_139_3.pdf
BD135-10; BD137-10; BD139-10 (see Fig.2) 63 − 160 BD135-16; BD137-16; BD139-16 100 − 250 V collector-emitter saturation volI = 500 mA; I = 50 mA − − 0.5 V CEsat C B VBE base-emitter voltage IC= 500 mA; VCE =
in „Alternative BC327 und 337“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TDA2030.pdf
dB f = 40 to 15,000 Hz 0.1 0.5 % B Power Bandwidth G v 30 dB 10 to 140,000 Hz (-3 dB) Po= 12W R L= 4 Ri Input resistance (pin 1) 0.5 5 M G Voltage gain (open loop) 90 dB v G v Voltage gain (closed loop) f
in „Verstärker für Lernpaket "Elektronik mit ICs" von Franzis“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
semicon.pdf
0603 1400 x 2,2nF / 100V kerámia 1206 2500 x 10nF / 15V kerámia 0603 3000 10nF / 25V kerámia 0603 3500 x 10nF / 50V kerámia 0805 4000 x 18nF / 16V polietilén 0805 2700 x 47nF / 50V kerámia 0805 1500 x 47nF / 100 kerámia
in „4" TFT für 7,97€“ · Markt ·
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PDF
datasheet.pdf
DISCRETE SEMICONDUCTORS DATA SHEET handbook, halfpage M3D329 KMZ10A Magnetic field sensor Product specification 1998 Mar 24 Supersedes data of 1996 Nov 08 File under Discrete Semiconductors, SC17 Philips Semiconductors Product specification Magnetic field sensor KMZ10A DESCRIPTION The KMZ10A is an extremely sensitive magnetic field sensor, employing the magnetoresistive effect of thin-film permalloy. Its properties enable this sensor to be used in a, halfpagey wide range of applications
in „KFZ Start/Ladegerät Amperemeter tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
PinKlasse_klassisch_toggle.ino.elf.txt
e0 ldi r26, 0x00 ; 0 b2: b8 e2 ldi r27, 0x28 ; 40 b4: e6 e2 ldi r30, 0x26 ; 38 b6: f4 e0 ldi r31, 0x04 ; 4 b8: 02 c0 rjmp .+4 ; 0xbe <__do_copy_data+0x10> ba: 05 90 lpm r0, Z+ bc: 0d 92 st X+, r0 be: a4 30 cpi r26, 0x04 ; 4 c0: b1 07 cpc r27, r17 c2: d9 f7 brne .-10 ; 0xba <__do_copy_data
in „Buchempfehlung C++ und MCUs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
device_list_hilo_all03_v9-12.pdf
MB98A90912 *MB98A90913 *MB98A91021 *MB98A91022 *MB98A91023 *MB98A91121 *MB98A91122 *MB98A91123 MBM29F002B MBM29F002NB MBM29F002NT MBM29F002SB MBM29F002ST MBM29F002T *MBM29F016 *MBM29F080PF *MBM29F080PFTN *MBM29F200BA *MBM29F200TA *MBM29F400B *MBM29F400T *MBM29F800B *MBM29F800T *MBM29LV002B *MBM29LV002T
in „PROM programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OM5610_2_1_.pdf
shifts and accepts one bit into LSB. At CLCK LOW the microcontroller writes data F.13 213 102400 (see Fig.3). F.12 212 51200 To write the entire shift register 25 clock pulses are F.11 211 25600 10 necessary. F.10 2 12800 F.9 29 6400 F.8 28 3200 F.7 27 1600 F.6 26 800 5 F.5 2 400 F
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PDF
OM5610_2_1_.pdf
shifts and accepts one bit into LSB. At CLCK LOW the microcontroller writes data F.13 213 102400 (see Fig.3). F.12 212 51200 To write the entire shift register 25 clock pulses are F.11 211 25600 10 necessary. F.10 2 12800 F.9 29 6400 F.8 28 3200 F.7 27 1600 F.6 26 800 5 F.5 2 400 F
in „[V] FM Tuner OM5610“ · Markt ·
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PDF
OM5610_2_1_.pdf
shifts and accepts one bit into LSB. At CLCK LOW the microcontroller writes data F.13 213 102400 (see Fig.3). F.12 212 51200 To write the entire shift register 25 clock pulses are F.11 211 25600 10 necessary. F.10 2 12800 F.9 29 6400 F.8 28 3200 F.7 27 1600 F.6 26 800 5 F.5 2 400 F
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PDF
OM5610.pdf
shifts and accepts one bit into LSB. At CLCK LOW the microcontroller writes data F.13 213 102400 (see Fig.3). F.12 212 51200 To write the entire shift register 25 clock pulses are F.11 211 25600 10 necessary. F.10 2 12800 F.9 29 6400 F.8 28 3200 F.7 27 1600 F.6 26 800 5 F.5 2 400 F
in „[V] FM Tuner OM5610“ · Markt ·
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PDF
182853-da-01-en-kmi_151t_drehzahlmesser.pdf
) current output signal high see Figs 6 and 8 11.2 14.0 16.8 mA r output signal rise time CL= 100 pF; see Fig.9; 10 to 90% value − 0.5 − s t output signal fall time C = 100 pF; see Fig.9; 10 to 90% value − 0.7 − s f L d switching delay time between stimulation pulse (generated − 1 − s by a coil) and
in „Drehzahlmesser für Drehbank“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KMI_151T.pdf
) current output signal high see Figs 6 and 8 11.2 14.0 16.8 mA r output signal rise time CL= 100 pF; see Fig.9; 10 to 90% value − 0.5 − s t output signal fall time C = 100 pF; see Fig.9; 10 to 90% value − 0.7 − s f L d switching delay time between stimulation pulse (generated − 1 − s by a coil) and
in „Fragen zur Magnetkraft?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
kmi_151t.pdf
) current output signal high see Figs 6 and 8 11.2 14.0 16.8 mA r output signal rise time CL= 100 pF; see Fig.9; 10 to 90% value − 0.5 − s t output signal fall time C = 100 pF; see Fig.9; 10 to 90% value − 0.7 − s f L d switching delay time between stimulation pulse (generated − 1 − s by a coil) and
in „Signal am Zündkabel abgreifen ?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KMI15.pdf
) current output signal high see Figs 6 and 8 11.2 14.0 16.8 mA r output signal rise time CL= 100 pF; see Fig.9; 10 to 90% value − 0.5 − s t output signal fall time C = 100 pF; see Fig.9; 10 to 90% value − 0.7 − s f L d switching delay time between stimulation pulse (generated − 1 − s by a coil) and
in „KMI15/1 Drehzahlsensor reagiert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BZX399.pdf
3.00 215 3.0 7V5 7.13 7.88 0.15 3.60 170 3.0 8V2 7.79 8.61 0.15 4.25 150 3.0 9V1 8.65 9.56 0.10 5.00 120 3.0 10 9.50 10.50 0.10 5.80 110 3.0 11 10.45 11.55 0.11 6.70 110 2.5 12 11.40 12.60 0.12 7.65 105 2.5 13 12.35 13.65 0.13 8.60 105 2.5 15 14.25 15.75 0.15 10.50 100 2.0 Note 1. V Z V Zt 100
in „Frage Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
xTalk_10-01-2022_211035_MYL6F04233.txt
xTalk Version 6.7.0.0 Log File Start Time: 10/01/2022 21:10:35 Computer Name: TESTPC Operating System: MS Windows Sever 2012 or Windows 8 Version 6.2 (Build 9200) ____________________________________________________________ Start: 10/01/2022 21:10:35 Device: QUANTUM DLT-V4 MYL6F04233 0:0:255 Start: Device_Health_Check ----------- Script Build Information ------------- V:21.02 \DATA\QUANTUM\SRC\XTALK\TRUNK\DLTSAGE\SHARED\SCRIPTS\TESTS\DEVICE HEALTH