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1602A_LCD.pdf
PTH 10 DB3 16- 1.0 PTH 6- 2.0 PAD 14 1 16 15 11 DB4 12 DB5 1.8 1.6 10.2 P2.54*15=38.1 2 2- 2.5 PTH 13 DB6 4.0 76.0 2- 5.0 PAD 14 DB7 LED-H/L B/L 15 A/Vee High Low 16 K H1 13.5 12.1 H2 8.9 7.5 3.55 2.95 0.6 0.6 0.55 The
in „LCD 1602A an ATmega8“ · Mikrocontroller und Digitale Elektronik ·
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PDF
140271-da-01-en-IR_SENSOR_HSDL_9100_021.pdf
.E .0+ 00mA 1 V 1 00mA V 100mA V ) m 0 ( .E- e .0+ n 10 t 100 r V C u 0 a u 0 D .E- O .0+ 1 10 .E- 0 - 0 0 0 0 0 0 100 E+0 10 0 0 0 0 0 0 100 1 0 00 00 0 1 10 Temperature (˚C) Distance(mm) Output Voltage Vs Edge
in „LED Strom und Spannung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Powertip_PC1602E.pdf
PC 1602-E OUTLINE DIMENSION & BLOCK DIAGRAM H1 1.0 0.5 66.7 0.5 0.3 0.15 5 2.85 61.0 0.2 0.05 5 5.25 56.2 A1 4 1 5 . 9 . . 6 . 8 1 0 0 1 0 0 0 1 . 0 x3 . . . 2 1 1 11 5 1 2 2 2 ( 1 3 1 1 7 5 0 0 . . . . 1 0 3 5 14.0 1.5 8 A2 1.45 63.8 5.0 0.5 1 87.0 1.5 1.1 1.1 ) SEC A1-A2 a 66.7 0.5 ( 0 EL B/L 0 0 PCB:62.7 0.2 10.0 1.0 DB7 COM 16 3.55 LCD LCD PANEL 2.95 DB0 E CONTROLLER A 0.55 LSI A 0.05 R/W SEG 40 SEG 40 RS Vss Vdd 3 5 6 0 Vo CONTROL SIGNALS 4 6
in „Powertip PC1602-E (HD44780 kompatibles Display)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Powertip_PC1602E_var1.pdf
PC 1602-E OUTLINE DIMENSION & BLOCK DIAGRAM H1 1.0 0.5 66.7 0.5 0.3 0.15 5 2.85 61.0 0.2 0.05 5 5.25 56.2 A1 4 1 5 . 9 . . 6 . 8 1 0 0 1 0 0 0 1 . 0 x3 . . . 2 1 1 11 5 1 2 2 2 ( 1 3 1 1 7 5 0 0 . . . . 1 0 3 5 14.0 1.5 8 A2 1.45 63.8 5.0 0.5 1 87.0 1.5 1.1 1.1 ) SEC A1-A2 a 66.7 0.5 ( 0 EL B/L 0 0 PCB:62.7 0.2 10.0 1.0 DB7 COM 16 3.55 LCD LCD PANEL 2.95 DB0 E CONTROLLER A 0.55 LSI A 0.05 R/W SEG 40 SEG 40 RS Vss Vdd 3 5 6 0 Vo CONTROL SIGNALS 4 6
in „Powertip PC1602-E (HD44780 kompatibles Display)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CNY70_TEM.pdf
Coupler Parameters Test Conditions Symbol Min. Typ. Max. Unit Collector current VCE = 5 V, F = 20 mA, IC 1) 0.3 1.0 mA d = 0.3 mm (figure 1) Cross talk current V = 5 V, I = 20 mA I 2) 600 nA CE F CX (figure 1) Collector emitter IC= 0.1 mA, V CEsat1) 0.3 V saturation voltage IF= 20 mA, d = 0.3 mm (figure
in „cny70 funktioniert nicht wie er sollte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CNY70_TEM.pdf
Coupler Parameters Test Conditions Symbol Min. Typ. Max. Unit Collector current VCE = 5 V, F = 20 mA, IC 1) 0.3 1.0 mA d = 0.3 mm (figure 1) Cross talk current V = 5 V, I = 20 mA I 2) 600 nA CE F CX (figure 1) Collector emitter IC= 0.1 mA, V CEsat1) 0.3 V saturation voltage IF= 20 mA, d = 0.3 mm (figure
in „Spannung direkt am ADC-Eingang messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NC7S08.pdf
6.0 0.0 0.10 0.10 3.0 VIN = VIHor VIL 0.1 0.26 0.33 I = 1.3mA OH 4.5 VIN = VIHor VIL 0.1 0.26 0.33 OL = 2mA 6.0 VIN = VIHor VIL 0.1 0.26 0.33 OL = 2.6mA IN Input Leakage 6.0 VIN = VCC, GND ±0.1 ±1.0 µA Current ICC Quiescent Supply 6.0 VIN =
in „Single Logic“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_SX1261-2_V1.1-1307803.pdf
SLEEP mode IDDSL (SLEEP mode Configuration retained - 600 - nA 2 Configuration retained + RC64k - 1.2 - A with warm start ) IDDSBR STDBY_RC mode RC13M, XOSC OFF - 0.6 - mA IDDSBX STDBY_XOSC mode XOSC ON - 0.8 - mA DC-DC mode used - 2.1 - mA IDDFS Synthesizer mode LDO mode used - 3.55 - mA FSK 4.8
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MAX6607-MAX6608.pdf
6 1 1400 t o 14 o 0 / / T A +25 ° / 1200 6 1.0 6 12 6 7 M ) A A V1000 ( M A M M ( R 0.6 ( 10 G O N T 800 E E 8 A O R 0.2 U T 600 T Y X P E L 6 U P-0.2 U 6 O 400 E S 4 T 6 200 -0.6 2 0 8 0 -1.0 0 -20 -10
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g9ya.pdf
resistance Must set voltage Must reset Maximum Power Item voltage voltage consumption 4.5 VDC 109.8 mA 41 Ω 80%max.ofrated 80%max.ofrated 150% of rated Approx. 500 mW 12 VDC 41.7 mA 288 Ω voltage voltage voltage 15 VDC 33.3 mA 450 Ω 24 VDC 20.8 mA 1,152Ω 28 VDC 17.9 mA 1,568Ω Note: 1. The rated current
in „6 GHz Relais“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOT-AE-B-...DE.pdf
MOT-AE-B_DE_201504#1 DC-Motoren MOT-AE-B . . . / MOT-DC-… Kennlinien (24VDC) MOT-AE-B-024-001-037-F-A-AAAA MOT-AE-B-024-003-037-F-A-AAAA 1,0 2,0 1,5 1,5 1,0 1,0 0,5 1,0 ] 0,5 ] 0,5 m ] m ] [ [ [ [ M I M I 0,0 0,0 0,0 0,0
in „Zuckende DC-Motoren bei Ansteuerung mit H-Brücke/PWM und Arduino UNO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZDS1009TA-datasheet.pdf
Test Circuit ISSUE 2 - JANUARY 2000 3 ZDS1009 TYPICAL CHARACTERISTICS NPN PNP 1.4 +25°C 1.4 +25°C Iout = 0.95Iin Iout = 0.95Iin 1.2 1.2 ) ) ( 1.0 V 1.0 - - e e g 0.8 g 0.8 l Vin l Vin o Vcutoff o Vcutoff V 0.6 V 0.6 0.4 0.4 100µA 1mA 10mA 100mA 1A 100µ 1m 10m 100mA 1A Iin - Input
in „Stromspiegel als Levelshifter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ZDS1009TA-datasheet.pdf
Test Circuit ISSUE 2 - JANUARY 2000 3 ZDS1009 TYPICAL CHARACTERISTICS NPN PNP 1.4 +25°C 1.4 +25°C Iout = 0.95Iin Iout = 0.95Iin 1.2 1.2 ) ) ( 1.0 V 1.0 - - e e g 0.8 g 0.8 l Vin l Vin o Vcutoff o Vcutoff V 0.6 V 0.6 0.4 0.4 100µA 1mA 10mA 100mA 1A 100µ 1m 10m 100mA 1A Iin - Input
in „High-Side-Strom auf Low-Side spiegeln (Stromspiegel?!)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
B43858.pdf
Hz 100 kHz 100 kHz 100 kHz (composition see 20 °C d × l ▯25 °C 20 °C 20 °C 105 °C 85 °C below) F mm mA mA V = 200 V DC R 10 10 × 16 1161 33.16 4.00 200 340 B43858C2106M*** 22 10 × 16 528 15.07 1.50 470 799 B43858C2226M*** 33 10 × 20 352 10.05 1.40 500 850 B43858C2336M*** 47 12.5 × 20 247 7.05 1.05 780
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Datei
Petra-M10_Einblick_offen.html
0-.62.08-1.21.21-1.79L9 15v1c0 1.1.9 2 2 2v1.93zm6.9-2.54c-.26-.81-1-1.39-1.9-1.39h-1v-3c0-.55-.45-1-1-1H8v-2h2c.55 0 1-.45 1-1V7h2c1.1 0 2-.9 2-2v-.41c2.93 1.19 5 4.06 5 7.41 0 2.08-.8 3.97-2.1 5.39z"></path><
in „Lampentaster gesucht“ · Markt ·
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PDF
littelfuse-PTC-Rline-Catalog.pdf
RUEF090 1.31 1.17 1.04 0.90 0.87 0.75 0.69 0.61 0.55 0.47 — RUEF110 1.60 1.43 1.27 1.10 1.07 0.91 0.85 0.75 0.67 0.57 — RUEF135 1.96 1.76 1.55 1.35 1.31 1.12 1.04 0.92 0.82 0.70 — RUEF160 2.32 2.08 1.84 1.60 1.55
in „Batteriehalter mit unbekannten Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
vhfcindex.pdf
/1 55 - 60 Technology 2 m Band FM Hand Held Transceiver for the 2 m Band, Part 2: Construction and R Tellert, DC3NT 1976/2 100 - 115 Alignment 2 m Band Concept of a Combined SSB Station for both 2 m and
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ZN427.pdf
+5and+10Vinputrangesaregiven 1 value is suggested. inFig.15,whichincorporatesbothzeroandgainadjustments. 11 ZN427 AIN VREFIN AIN VREF IN P1 5k 1M P2 P1 10k 1M P2 GAIN ZERO GAIN ZERO ADJUST ADJUST ADJUST ADJUST R1 5k6 680k R3 R1 11k
in „A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
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zn427E.pdf
+5and+10Vinputrangesaregiven 1 value is suggested. inFig.15,whichincorporatesbothzeroandgainadjustments. 11 ZN427 AIN VREFIN AIN VREF IN P1 5k 1M P2 P1 10k 1M P2 GAIN ZERO GAIN ZERO ADJUST ADJUST ADJUST ADJUST R1 5k6 680k R3 R1 11k
in „Austauschtyp gesucht“ · Mikrocontroller und Digitale Elektronik ·
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SED1520.pdf
model 100 95 90 85 1 80 5 75 10 Y 70 m 4 15 X 7 (0, 0) 65 20 60 25 A A 55 0 1 D 30 35 40 45 50 4.80 mm Note: An example of SED1520DAA die numbers is given. These numbers are the same as the bump package. 4 SED1520 Series
in „suche Text- LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32VF103_Datasheet_Rev1.0.pdf
°C(1) IRC8M oscillator Frequency VDD= V DDA= 3.3 V, A = 0C -1.2 — +1.2 % accuracy, Factory-trimmed ~ +85 C (1) ACC IRC8M VDD= V DDA= 3.3 V, A = -1 — +1 % 25 °C IRC8M oscillator Frequency accuracy, User trimming — — 0.5 — % step(1) V DD= VDDA = 3.3 V,IRC8M DucyIRC8M(2)IRC8M oscillator duty cycle 48 50 52 % 8 MHz IRC8M oscillator operatingV DD= VDDA = 3.3 V,IRC8M IDDAIRC8M1) — 80 — μA current 8 MHz (1) IRC8M oscillator startup
in „RISC-V: Wird das was?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32VF103_Datasheet_Rev1.0.pdf
°C(1) IRC8M oscillator Frequency VDD= V DDA= 3.3 V, A = 0C -1.2 — +1.2 % accuracy, Factory-trimmed ~ +85 C (1) ACC IRC8M VDD= V DDA= 3.3 V, A = -1 — +1 % 25 °C IRC8M oscillator Frequency accuracy, User trimming — — 0.5 — % step(1) V DD= VDDA = 3.3 V,IRC8M DucyIRC8M(2)IRC8M oscillator duty cycle 48 50 52 % 8 MHz IRC8M oscillator operatingV DD= VDDA = 3.3 V,IRC8M IDDAIRC8M1) — 80 — μA current 8 MHz (1) IRC8M oscillator startup
in „STM32F103C8T6 => GD32VF103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCA82C250_PHI.pdf
tested at +25 °C. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Supply 3 supply current dominant; 1 = 1 V − − 70 mA recessive; 1 = 4 V; − − 14 mA R8= 47 k recessive; 1 = 4 V; − − 18 mA V8= 1 V standby; amb < 90 °C; − 100 170 A note 1 DC bus transmitter VIH HIGH-level input voltage output recessive
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82C250.pdf
tested at +25 °C. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Supply 3 supply current dominant; 1 = 1 V − − 70 mA recessive; 1 = 4 V; − − 14 mA R8= 47 k recessive; 1 = 4 V; − − 18 mA V8= 1 V standby; amb < 90 °C; − 100 170 A note 1 DC bus transmitter VIH HIGH-level input voltage output recessive
in „I2C vs CAN vs Ethernet“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ART2K0FE_2K0FES_2K0FEG.pdf
= 10 %. DS p DS p (1) IDq = 50 mA per section (1) IDq = 50 mA per section (2) IDq = 100 mA per section (2) IDq = 100 mA per section (3) IDq = 200 mA per section (3) IDq = 200 mA per section (4) IDq = 400 mA per section (
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Microsemi.LX2410A.pdf
reliability. Typical Application LX2410A V vf. Currentt Solar Module 90 - + 85 80 ] 75 [ 70 g 65 l 60 V a 55 o 50 F 45 40 E E E D O D O D O 35 N LX2410A A NLX2410A A N LX2410A A 1 2 3 4 5 6 7 8 9 10 11 12 13 A C A C A C Current [A] Tamb =25°C Figure 1 · Product Highlight / Typical VFWD Vs Current Sept 2015
in „Was sind Idealdioden?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DeWalt_LiFePo4_Boeschuere.pdf
PK, jedoch zusätzlich mit Neigungs- adapter, 1x 18,0 Volt/2,6 Ah NiMH- Akku (anstelle Alkaline-Batterien), Die neuen 1-Std.-Schnellladegerät Rotations- Laserklasse: 3R (< 5 mW), Nivelliergenauig- Laser-Sets keit: +/- 0,1 mm/m, Lasersichtbarkeit im
in „DeWalt Akkubohrschrauber die mit LiFePO4 arbeiten“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
Parallel_Widerstaende_E12.pdf
1k82 2k08 6k8 9,99 14,97 17,95 21,93 26,89 32,84 38,78 46,68 55,54 67,33 81,02 98,55 117,92 146,76 175,36 213,11 259,69 314,73 368,85 439,61 517,39 618,18 731,76 871,79 1k02 1k23 1k42 1k66 1k93 2k22 8k2
in „Excel Zellformatierung für Widerstände Kilo, Meg usw“ · PC Hard- und Software ·
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PDF
zdp.pdf
temperature unless otherwise specified. SYMBOL VALUE UNIT Zener Current (see Table “Characteristics”) (1) Power Dissipation at T amb = 25°C Ptot 500 mW Junction Temperature T j 175 °C Storage Temperature Range T – 55 to +175 °C S NOTES: (1) Valid provided that leads at a distance of 8 mm from case are kept
in „1N827 Z-Diode“ · Markt ·
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PDF
LTV356.pdf
Voltage e 6 A A A A O 500 a m 1 m m m Ta= 25 C o o 5 . 3 5 7 Ta= 75oC o v = A200 50 C 25oC i I (100 0 o a 4 I -25 C t n 50 s r e 3 c 20 i d m ) 2 a 10 t ) r o a F 5 l ( 1 o C 2 C V 0 1 0 5 10 15 0 0.5 1.0 1.5 2.0 2.5 3.0 Forward
in „Potentialtrennung zwischen 74HC595 und ATMega128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPLC780D001BC.pdf
Limit t n Characteristics Symbol Min. Typ. Max. Unit n Test CoOdition Operating Current IDD - 0.2 0.4 mA External clock (Note) Input High Voltage VIH1 0.7VDD - VDD f i d V Pins:(E, RS, R/W, DB0 - DB7) Input Low Voltage VIL1 -0.3 - n0.55 V Input Low Voltagee VIL2 0.-0.2 - o 0.2VDD V U Pin OSC1 Input High
in „LCD Display initialisieren oder geht das automatisch?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
splc780D.pdf
Limit t n Characteristics Symbol Min. Typ. Max. Unit n Test CoOdition Operating Current IDD - 0.2 0.4 mA External clock (Note) Input High Voltage VIH1 0.7VDD - VDD f i d V Pins:(E, RS, R/W, DB0 - DB7) Input Low Voltage VIL1 -0.3 - n0.55 V Input Low Voltagee VIL2 0.-0.2 - o 0.2VDD V U Pin OSC1 Input High
in „2x16 LCD Batron Tabelle?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPLC780D.pdf
Limit t n Characteristics Symbol Min. Typ. Max. Unit n Test CoOdition Operating Current IDD - 0.2 0.4 mA External clock (Note) Input High Voltage VIH1 0.7VDD - VDD f i d V Pins:(E, RS, R/W, DB0 - DB7) Input Low Voltage VIL1 -0.3 - n0.55 V Input Low Voltagee VIL2 0.-0.2 - o 0.2VDD V U Pin OSC1 Input High
in „LCD (HD44780) timing extrem träge“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPLC780D001BC.pdf
Limit t n Characteristics Symbol Min. Typ. Max. Unit n Test CoOdition Operating Current IDD - 0.2 0.4 mA External clock (Note) Input High Voltage VIH1 0.7VDD - VDD f i d V Pins:(E, RS, R/W, DB0 - DB7) Input Low Voltage VIL1 -0.3 - n0.55 V Input Low Voltagee VIL2 0.-0.2 - o 0.2VDD V U Pin OSC1 Input High
in „Bibliothek fuer SPLC780D“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPLC780D.pdf
Limit t n Characteristics Symbol Min. Typ. Max. Unit n Test CoOdition Operating Current IDD - 0.2 0.4 mA External clock (Note) Input High Voltage VIH1 0.7VDD - VDD f i d V Pins:(E, RS, R/W, DB0 - DB7) Input Low Voltage VIL1 -0.3 - n0.55 V Input Low Voltagee VIL2 0.-0.2 - o 0.2VDD V U Pin OSC1 Input High
in „Datenblatt zu HD44780 1602 LCD Modul Display Anzeigen 2X16 Zeichen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TM035PDW01_P_V1.0.pdf
g W l e i 4 o i 5 g ( 2 2 2 G 1 1 1 ) E G - - - V 1 1 1 - - - D 1 1 1 C E C L A E 4 : C M D P P 1 B N T A R O M R I T U E A G A T N R L N E N D U M M H B E E H R R R T M M 1 3 G 3 P T C 5 W 1 M D E 0 0 0 S - 0 1 R 0 0 P 0 锡 T 高 O I 度 s N I = l S 3 i 0 n m n 4 1 e A a 5 1 m T r X ( E e S d . A A N N 5 T E E T L m I E ) B D J T J / : m E 1 1 1 9 8 7 6 5 4 3 2 1 0 The information contained herein is the exclusive property of SHANGHAI TIANMA MICRO-ELECTRONICS
in „Tianma 3,5" TFT Display ansteuern mit STM32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BINBCD.asm
Binaerwandlung BCDZAHL < 65536 ;Verwendet wird MACLIB.ASM - M16X8,ADD16 BCDBIN: Mov A,R0 Push Acc Mov A,R1 Push Acc Mov A,R2 Push Acc M16X8 #010h,#027h,BCD2 Mov BIN0,R0 Mov BIN1,R1 Mov A,BCD1 RR A RR A RR A RR A Anl A,#0Fh Mov R2,A M16X8 #0E8h,#003h,R2 ADD16 BIN0,BIN1,R0,R1 Mov BIN0,R0 Mov BIN1,R1 Mov A,BCD1 Anl A,#0Fh Mov R2,A M16x8 #100,#0,R2 ADD16 BIN0,BIN1,R0,R1 Mov BIN0,R0 Mov BIN1,R1 Mov A,BCD0 RR A RR A RR A RR A Anl A,#0Fh Mov B,#10 Mul AB Mov R0,A Mov A,BCD0
in „8051 assembler bitmuster teilen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TIL-507.pdf
temperature PARAMETER TEST CONDITIONS MIN TVP MAX UNIT Iv Luminous Intensity (See Note 2) V ee= 5 v. IF= 10 mA 40 110 µcd hp Wavelength at Peak Emission 640 655 670 nm ~;\ V ee= 5 v, V L E o= 4V Spectral Bandwidth 20 nm V1H High-Level Input Voltage 2 v V1L Low-Level Input Voltage 0.8 v V1K Input Clamp Voltage V ee= 4.5 v, 11 = -1 2 mA -1 .5 v l1H High-Level Input Current V ee= 5.5 v, V1=2.4 V 150 µA l1L Low-Level Input Current V ee= 5.5 v, V1=0.4 V -1 mA Irow Row Input Current l Row 1 thru Row 6 500 800 J Row7 See Note 3 600
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PDF
BF1009SW_2001_INF.pdf
biasing) +V 3 V G1SE Total power dissipationS 76 °C P tot 200 mW Storage temperature Tstg -55 ... 150 °C Channel temperature T 150 ch Thermal Resistance Channel - soldering point R thchs 280 K/W 1For calculationthJAlease
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PDF
STR751FR0T6.pdf
description STR750Fxx STR751Fxx STR752Fxx STR755Fxx 4 Pin description Figure 2. LQFP100 pinout I S S K O O 1 9 0 1 Y N _ I _ _ I N N N _ M _ P C _ _ _ E P S P S D D C C G S / S / / 2 4 A A A E / L / T I C I 1 1 / / / M 0 C N U _ _ _ I I 3 3 2 2 1 3 3 2 2 1 1 _ C _ D D 2 0 0 C _ M M M M M M M M M M M M I P I
in „DAB Radio mit ARM Prozessor, HD44780 Display (BlueTinum BT-H1801)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC1489.pdf
MC1489A 1.75 1.95 2.25 Input Turn−Off Threshold Voltage VIL Vdc (TA= + 25°C, V OH q 2.5 V, L = − 0.5 mA) MC1489 0.75 − 1.25 MC1489A 0.75 0.8 1.25 Output Voltage High (VIH= 0.75 V, L = − 0.5 mA) V OH 2.5 4.0 5.0
in „USB/RS232 Konverter, einige Fragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NTE2399.pdf
10sec), T L . . . . . . . . . . . . . . . . . +300 C Mounting Torque (6−32 or M3 Screw) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10 lbf in (1.1N m) Thermal Resistance, Junction−to−Case, R thJC . . . . . . . . . . . . . . . . . . . . . . . . . . . .
in „Kühlkörper eines NTE2399 berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lmh6629.pdf
= -4V/V N (COMP Pin= LO) N (COMP Pin = LO) -4 -4 -5 -5 100k 1M 10M 100M 1G 100k 1M 10M 100M 1G f (Hz) f (Hz) Figure 4. Figure 5. Non-Inverting Frequency Response Non-Inverting Frequency Response 1 1 Vo = 2Vpp Vo = 1Vpp (COMP Pin = LO) Vs = +/-1.5V Av = 4V/V 0 0
in „Ausgangswiderstand in OPV Datenblatt“ · HF, Funk und Felder ·
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PDF
AMS1117.pdf
0.6 6 mV AMS1117-2.85 1.5V≤ (VIN V OUT) ≤ 12V 0.3 6 mV 0.6 6 mV AMS1117-3.3 1.5V≤ (VIN V OUT) ≤ 12V 0.5 10 mV 1.0 10 mV AMS1117-5.0 1.5V≤ (VIN V OUT) ≤ 12V 0.5 10 mV 1.0 10 mV Load Regulation AMS1117 (VIN V
in „Max Spannung in AMS1117 5.0V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Umruestdecoder_mLD-mSD_CV-Liste_FX__28MM_29.pdf
1-3 MA / 22.11.11 mLD, mSD - CV-Liste - fx (Motorola) CV Bedeutung Werte Werte CU Bemerkung Konfiguration: 0 - 7 Bit 0 : Richtungsverhalten der Lok umkehren 0 / 1 = 0 / 1 Das Richtungsverhalten bezieht
in „Märklin-Motorola Format“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TCA0372-D-116057.pdf
−Compatible Inputs VS R 0.1 mF x 0.1 mF R7 10 k Vin R1 + + 10 k R3 - 5.0 W - R6 R8 10 k 10 k R2 R5 10 k 10 k 2R3 @ R1 For circuit stability, ensurx that R > where, M = internal resistance of motor. RM V The voltage available at
in „Audio-Verstäker mit Motortreiber TCA0372, auch für Kopfhörer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina169.pdf
MAX 1 ✽ µV/°C vs Power Supply, V+ V– = 2.7V to 40VSENSE= 50mV 0.5 10 µV/V V– = 2.7V to 60VSENSE= 50mV 0.1 10 µV/V Input Bias Current 10 ✽ uA OUTPUT Transconductance VSENSE= 10mV – 150mV 990 1000 1010 ✽ ✽ ✽
in „Stromaufnahme von Digitaleservo mit ADC messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INFINEON-IKW50N65F5-DS-V02_01-EN.pdf
T C= 100°C Ptot 152.5 W Operating junction temperature Tvj -40...+175 °C Storage temperature Tstg -55...+150 °C Soldering temperature, wave soldering 1.6mm (0.063in.) from case for 10s 260 °C Mounting torque, M3 screw Maximum of mounting processes: 3 M 0.6 Nm Thermal Resistance Parameter Symbol Conditions
in „SGT40n60NPFD vs IKW50N65F5“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
JXD2004A__LCD_.pdf
MECHANICAL DATA (Nominal dimensions) ■ PIN CONNECTION module size-------------------98.0Wx60.0Hx10.0D mPin No. Symbol Level Function Effective display area--------------- 76.0Wx26.0H mm1 Vss 0V Character size(5X8 dots) ----------- 2.95Wx4.75H m 2 Vdd +5V Character pitch ------------------------------ 3.55
in „LCD macht nicht was es soll trotz Tutorial.“ · Mikrocontroller und Digitale Elektronik ·
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SDA5252-2_Siemens.pdf
29 P0.4 P1.0 53 28 P0.5 VSSA 54 27 P0.6 SDA5251M-2 FIL3 55 SDA5252M-2 26 P0.7 N.C. 56 25 P3.1 SDA5254M-2 N.C. 57 SDA5255M-2 24 P3.0 SDA5256M-2 VDDA 58 SDA5257M-2 23 COR I REF 59 22 BLAN CVBS 60 21 B P2.3 61 20
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·