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cfspc3_0.pdf
WAIT signal at the start of the cycle. Table 36: Common Memory Function Function Code -REG -CE2 -CE1 A0 -OE -WE D15-D8 D7-D0 Standby Mode X H H X X X High Z High Z Byte Read Access H H L L L H High Z Even-Byte (8 bits) H H L H L H High Z Odd-Byte Byte Write Access H H L L H L Don’t Care Even-Byte (8
in „Lucky-page@gmx.de“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC28G03G.pdf
Voltage Note (1) V3 - - 3.13 - V Power supply for LCD driver Voltage Note (1) V4 - - 1.56 - V Input Signal Voltage VIH “H” Level 0.8VDD - - V Note (2) VIL “L” Level - - 0.2VDD Power supply current IDD VDD=3.3V - 1.0
in „Farbdisplay von Pollin MC28G03A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LED_Display_driver_chip_SSD1306_DataSheet.pdf
edge of E signal. Table 8-2 : Control pins of 6800 interface Function E R/W# CS# D/C# Write command ↓ L L L Read status ↓ H L L Write data ↓ L L H Read data ↓ H L H Note (1↓ stands for falling edge of signal H stands for HIGH in signal L stands for LOW in signal In order to match the operating frequency
in „Spannungsversorgung Arduino läuft nicht über Vin oder 5V-Pin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LED_Display_driver_chip_SSD1306_DataSheet.pdf
edge of E signal. Table 8-2 : Control pins of 6800 interface Function E R/W# CS# D/C# Write command ↓ L L L Read status ↓ H L L Write data ↓ L L H Read data ↓ H L H Note (1↓ stands for falling edge of signal H stands for HIGH in signal L stands for LOW in signal In order to match the operating frequency
in „SSD1306/1309 Library zum Darstellen von Text auf OLED Displays“ · Projekte & Code ·
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PDF
SSD1306.pdf
edge of E signal. Table 8-2 : Control pins of 6800 interface Function E R/W# CS# D/C# Write command ↓ L L L Read status ↓ H L L Write data ↓ L L H Read data ↓ H L H Note (1↓ stands for falling edge of signal H stands for HIGH in signal L stands for LOW in signal In order to match the operating frequency
in „SH1106 Init-Sequenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Solomon_Systech_LED_Display_driver_chip_SSD1306.pdf
edge of E signal. Table 8-2 : Control pins of 6800 interface Function E R/W# CS# D/C# Write command ↓ L L L Read status ↓ H L L Write data ↓ L L H Read data ↓ H L H Note (1↓ stands for falling edge of signal H stands for HIGH in signal L stands for LOW in signal In order to match the operating frequency
in „Mit Wire.h über I2C auf LCD-Display 1602 zugreifen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Solomon_Systech_LED_Display_driver_chip_SSD1306.pdf
edge of E signal. Table 8-2 : Control pins of 6800 interface Function E R/W# CS# D/C# Write command ↓ L L L Read status ↓ H L L Write data ↓ L L H Read data ↓ H L H Note (1↓ stands for falling edge of signal H stands for HIGH in signal L stands for LOW in signal In order to match the operating frequency
in „SSD1306/1309 Library zum Darstellen von Text auf OLED Displays“ · Projekte & Code ·
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PDF
AT90CAN128.pdf
Compare match (CTC) mode using OCRnA as TOP. The FOCnA/FOCnB/FOCnC bits are always read as zero. 13.11.7 Timer/Counter1 – TCNT1H and TCNT1L Bit 7 6 5 4 3 2 1 0 TCNT1[15:8] TCNT1H TCNT1[7:0] TCNT1L Read/Write R/W R/W R/W R/W R/W R/W R/W R/W Initial Value 0 0 0 0 0 0 0 0 13.11.8 Timer/Counter3 – TCNT3H
in „Umrechnen von analog to digital“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Advanced_Topics_in_EMC_Design.pdf
= better decoupling 21 Multiple capacitors with P/G planes L1 L2 L3 L4 Z PLANE C1 C2 C3 C4 C BULK CPLANE RIC R1 R2 R3 R4 CPLANEonly resonance of C PLANE- parallel L effect of BULK Modelled with: Z PLANE C1 - 4 = 22nF dBΩ L1 = 1nH, L2 = 2nH, L3 = 3nH, L4 = 4nH CBULK = 1µF, L = 15nH, R = 0.1Ω R = 50Ω IC effect of C1 - 4 CPLANE = 3nF 22 11 Parallel capacitors dBΩ • 2 capacitors of different values at 47nF // 1µF one point are dangerous • Multiple capacitors of the same
in „Kondensatoren für Betriebsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
LCDSendTxt(char* a) { for(int i=0; i<strlen(a); i++) { LCDSendChar(a[i]); } } void LCDSendInt(int a) { int h = 0; int l = 0; int r = 0; l = a%10; h = a/10; h = h%10; r = a/100; r = r%10; LCDSendChar(r+48); LCDSendChar(h+48); LCDSendChar(l+48); } void LCDSendtesla(float a) { int h = 0; int l = 0; int r = 0; int o = 0; o = a*1000; l = o%10; h = o/10; h = h%10; r = o/100; r = r%10; LCDSendTxt("0."); LCDSendChar(r+48); LCDSendChar(h+48); LCDSendChar(l+48); LCDSendTxt(" Tesla"); } void E_Pulse() { l_pPio->PIO_SODR = BIT21; //set E
in „Problem whit At91sam7s64 and lcd“ · µC & Digital Electronics ·
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L4971.pdf
efficency and high switching speed. for SMD assembly. TYPICAL APPLICATION CIRCUIT Vi=8V to 55V 5 8 R1 20K L4971 3 C C C 4 220 F 220nF 2.7nF 2 7 1 6 L1 VO=3.3V/1.5A 63V 126 H (77120) C R2 100nF D1 9.1K GI C8 C5 SB360 330 F 100nF C 4 22nF D97IN748A August 2001 1/12 L4971 BLOCK DIAGRAM VCC 5 THERMAL VOLTAGES
in „L4791 Step-down stirbt - wieso?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LCD-Controller_ST7036.pdf
address counter are not changed. S/C R/L Description AC Value L L Shift cursor to the left AC=AC-1 L H Shift cursor to the right AC=AC+1 H L Shift display to the left. Cursor follows thAC=ACplay shift H H Shift display to the right. Cursor
in „DOG-M mit ATmega8 in Assembler ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
address counter are not changed. S/C R/L Description AC Value L L Shift cursor to the left AC=AC-1 L H Shift cursor to the right AC=AC+1 H L Shift display to the left. Cursor follows thAC=ACplay shift H H Shift display to the right. Cursor
in „DOG-M Display über SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
address counter are not changed. S/C R/L Description AC Value L L Shift cursor to the left AC=AC-1 L H Shift cursor to the right AC=AC+1 H L Shift display to the left. Cursor follows thAC=ACplay shift H H Shift display to the right. Cursor
in „LCD " ° " Zeichen aus Zeichensatz anzeigen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
address counter are not changed. S/C R/L Description AC Value L L Shift cursor to the left AC=AC-1 L H Shift cursor to the right AC=AC+1 H L Shift display to the left. Cursor follows thAC=ACplay shift H H Shift display to the right. Cursor
in „Controller ST7036“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
address counter are not changed. S/C R/L Description AC Value L L Shift cursor to the left AC=AC-1 L H Shift cursor to the right AC=AC+1 H L Shift display to the left. Cursor follows thAC=ACplay shift H H Shift display to the right. Cursor
in „STK500 und LCD (ST7036) Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036.pdf
address counter are not changed. S/C R/L Description AC Value L L Shift cursor to the left AC=AC-1 L H Shift cursor to the right AC=AC+1 H L Shift display to the left. Cursor follows thAC=ACplay shift H H Shift display to the right. Cursor
in „i2C TWI Modus - ST7036 - DOGM DOGM162 DOGM081 EA DOGM163, ist das Möglich ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
29F400.pdf
each of these operations in further detail. tion needed to execute the command. The contents of Table 1. Am29F400B Device Bus Operations DQ8–DQ15 BYTE# BYTE# Operation CE# OE# WE# RESET# A0–A17 DQ0–DQ7 = VIH = VIL Read L L H H AIN DOUT DOUT High-Z Write L H L H AIN D IN D IN High-Z CMOS Standby V CC± X
in „AT91 & OpenOCD Externes Flash Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RDR-158.pdf
0805 Kemet C0805C102KDRACTU 4 1 C4 1 µF, 25 V, Ceramic, X7R, 0805 Panasonic ECJ-2FB1E105K 5 1 C5 10 µF, 16 V, Ceramic, X5R, 0805 Murata GRM21BR61C106KE15L 6 1 C6 2.2 nF, 50 V, Ceramic, X7R, 0805 Panasonic ECJ-2VB1H222K 7 2 C7 C8 470
in „Trafo oder schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Dokumentation.PDF
PIC150L11IC1502 5V V D1 D0 PIIC7VREG5 SW PIIC706 PIL101 PIL102 INPUT 1 12 7 25VI0C16 PIIC7SS GND PIIC705 4.7uH 01 02 10 0 I2470uF 12 I2 PGND PIIC709 R26 0 CI8 O21 N 10 I0F TPS54228 0120kC11p CC35 C1 2 I 8 3
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PDF
dip162-d.pdf
www.lcd-module.de EA DIP162-D PINBELEGUNG Pin Symbol Level Funktion Pin Symbol Level Funktion 5V Betrieb 1 VSS L Stromversorgung 0V (GND) 10 D3 H / L Display Data 2 VDD H Stromversorgung +5V 11 D4 (D0) H / L Display Data 3 VEE - Kontrastspg. (ca. 0V) 12 D5 (D1) H / L Display Data 4 RS H / LUmschaltung Befehl
in „LCD mit C8051F330“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dip162-d.pdf
www.lcd-module.de EA DIP162-D PINBELEGUNG Pin Symbol Level Funktion Pin Symbol Level Funktion 5V Betrieb 1 VSS L Stromversorgung 0V (GND) 10 D3 H / L Display Data 2 VDD H Stromversorgung +5V 11 D4 (D0) H / L Display Data 3 VEE - Kontrastspg. (ca. 0V) 12 D5 (D1) H / L Display Data 4 RS H / LUmschaltung Befehl
in „2. Zeile vom LCD beschreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STR751FR0T6.pdf
500 kHz XRTC1 frequency XRTC1 input pin high VXRTC1H 0.7xV DD_IO VDD_IO level voltage V V XRTC1 input pin low see Figure 20 V 0.3xV XRTC1L level voltage SS DD_IO tw(XRTC1H) XRTC1 high or low (2) 900 tw(XRTC1L) time
in „DAB Radio mit ARM Prozessor, HD44780 Display (BlueTinum BT-H1801)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR200_Multiply_and_Divide_Routines.pdf
10. “mpy16u” Register Usage (Straight-line Implementation) Register Input Internal Output R16 “mc16uL” - multiplicand low byte R17 “mc16uH” - multiplicand high byte R18 “mp16uL” - multiplier low byte “m16u0” - result byte 0 R19 “mp16uH” - multiplier high byte “m16u1” - result byte 1 R20 “m16u2” - result
in „Division großer Integerzahlen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR200_Multiply_and_Divide_Routines.pdf
10. “mpy16u” Register Usage (Straight-line Implementation) Register Input Internal Output R16 “mc16uL” - multiplicand low byte R17 “mc16uH” - multiplicand high byte R18 “mp16uL” - multiplier low byte “m16u0” - result byte 0 R19 “mp16uH” - multiplier high byte “m16u1” - result byte 1 R20 “m16u2” - result
in „Division 16bit / 8bit Zahl 8051 Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR200_Multiply_and_Divide_Routines.pdf
10. “mpy16u” Register Usage (Straight-line Implementation) Register Input Internal Output R16 “mc16uL” - multiplicand low byte R17 “mc16uH” - multiplicand high byte R18 “mp16uL” - multiplier low byte “m16u0” - result byte 0 R19 “mp16uH” - multiplier high byte “m16u1” - result byte 1 R20 “m16u2” - result
in „Division mit Rest“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Multi-Divi.pdf
10. “mpy16u” Register Usage (Straight-line Implementation) Register Input Internal Output R16 “mc16uL” - multiplicand low byte R17 “mc16uH” - multiplicand high byte R18 “mp16uL” - multiplier low byte “m16u0” - result byte 0 R19 “mp16uH” - multiplier high byte “m16u1” - result byte 1 R20 “m16u2” - result
in „AVR Reziprok-Wert (Umkehr-Wert) berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at90can-v1.1.pdf
5 6 USBD+ 3 TMS 7 8 RESET 4 A 9 10 C10 5 A TDI 10nF JTAG GND GND GND CAN0 JTAG (Atmel Standard) P$1 6 1 PWR0 CAN0H 7 2 CAN0L 8 3 B VCAN0 9 4 B 5 P$2 GND GND 2 2 5 11 2 1 + J J UART1 CAN1 P$1 KEY 1 6 1 2 CAN1H 7 2 CAN1L 3 8 3 C TXD1 4 VCAN1 9 4 C RXD1 5 5 UART1 STATUS 6 P$2 PINHD-1X6 GND GND GND D D
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Datei
iotn841.h
WDIE 6 #define WDIF 7 #define TCCR1C _SFR_IO8(0x22) #define FOC1B 6 #define FOC1A 7 #define GTCCR _SFR_IO8(0x23) #define PSR 0 #define TSM 7 /* Combine ICR1L and ICR1H */ #define ICR1 _SFR_IO16(0x24) #define ICR1L _SFR_IO8(0x24) #define
in „Neue ATtinies 441 und 841“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7376.pdf
––24 H 0 – MODE TEST I AMP = 50mV 04H f = 1 MHz D CKT FIG 36 A–30 VDD = +15V T G VSS = –15V 02H 0.010 –36 R = 1MV 5 L 01H –42 0 A 5V 5V L HO2ms NON-INVERTING –48 B OP275 MODE TEST –54 2mS/DIV 0.001 CKT FIG
in „1-10 V digitales Potentiometer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
341001.pdf
1 0 1 1 1 1 POR 0 0 0 0 1 0 x x 1 1 1 0 1 1 1 1 ˻Vertical and Horizontal inversion function(TBɼRL)˼ ▯ ▯ ▯ Note 2) mode Control (R11h)(POR=0x0x h) R/W DC IB15 IB14 IB13 IB12 IB11 IB10 IB9 IB8 IB7 IB6 IB5
in „TFT Display Ansteuern, Tipps und Tricks“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
1 0 1 1 1 1 POR 0 0 0 0 1 0 x x 1 1 1 0 1 1 1 1 ˻Vertical and Horizontal inversion function(TBɼRL)˼ ▯ ▯ ▯ Note 2) mode Control (R11h)(POR=0x0x h) R/W DC IB15 IB14 IB13 IB12 IB11 IB10 IB9 IB8 IB7 IB6 IB5
in „Outdoor Displayauswahl“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4017.pdf
diagram. FUNCTION TABLE MR CP 0 CP 1 OPERATION H X X Q0 = Q5-9 H; Q1to Q9= L L H ↓ counter advances L ↑ L counter advances L L X no change L X H no change L H ↑ no change L ↓ L no change Notes 1. H = HIGH voltage level L = LOW voltage level
in „Dekaden Zähler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC4017N.pdf
diagram. FUNCTION TABLE MR CP 0 CP 1 OPERATION H X X Q0 = Q5-9 H; Q1to Q9= L L H ↓ counter advances L ↑ L counter advances L L X no change L X H no change L H ↑ no change L ↓ L no change Notes 1. H = HIGH voltage level L = LOW voltage level
in „Lauflicht mit NE555 und Dezimalzähler - Ersatztyp für 74HC4017 N“ · Analoge Elektronik und Schaltungstechnik ·
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LCD_SCH.pdf
L2 25 VD20 R23 R31 G VGA_G 24 VD19 RES4 V 10K 1uH 23 VD18 . R32 C57 C32 22 VD17 22 + R34 0603 0603 21 VD16 D 3 3 D 2 D R35 20 GND N 3 3 N K 1 N K R36 RN2 G + + G L + G C 10K 19 VD15 C T 10K 18 VD14 L1
in „[V]erkaufe diverse sachen“ · Markt ·
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PDF
l9805e.pdf
47 PA0/OCMP2_1 7 46 NRESET 45 CAN_H VPP/TM 8 VDD 9 44 CAN_L OSCIN 10 43 GND VDD OSCOUT 11 42 GND 12 41 VB2 13 40 VB1 NU VBL 14 39 VBR VBL 15 38 VBR VBR VBL 16 37 NU 17 36 NU 18 35 NU NU NU 19 34 NU NU 20 33 NU 21 22
in „ST L9805-E Motortreiber mit H Brücke und ST7UD05 Kern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
eao_Serie_31.pdf
next page s i n i i e w g c i rd w t l g l r p n t i t n m n h u r e a 18 x 24 mm o e i F Front cap T Typ-Nr. M T C e Buzzer IP 40 Plastic black S1 31-801.002 1 3 1 0.015 Operation voltage : 10 ... 26 VDC Operation voltage : 10 ... 55 VAC
in „[S] Custom Tastaturkappen mit individueller Beschriftung“ · Markt ·
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PDF
eao_Serie_31.pdf
next page s i n i i e w g c i rd w t l g l r p n t i t n m n h u r e a 18 x 24 mm o e i F Front cap T Typ-Nr. M T C e Buzzer IP 40 Plastic black S1 31-801.002 1 3 1 0.015 Operation voltage : 10 ... 26 VDC Operation voltage : 10 ... 55 VAC
in „Taster für Kanalumschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM78xx_LM340.pdf
Applications Fixed Output Regulator Adjustable Output Regulator 00778102 00778101 V OUT= 5V + (5V/R1Q+ I ) R2 53 Q , *Required if the regulator is located far from the power load regulatirn (L ) ≈ [(R1 r R2)/R1] (L of LM340-5). *Although no output capacitor is needed for stability, it does help transient
in „LM340T5 defekt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RCN-600.pdf
Binärzustand L ausgeschalteD,= 1 "eingeschaltet" L = niederwertige Bits der Binärzustandsnummer 1 ... 32767 Binärzustände lange Form high Byte (2-Byte): 0110-1111 (0x6F = 111) H7 H6 H5 H4 - H3 H2 H1 H0 Anmerkung: Befehl
in „Arduino an SUSE Schnittstelle?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX4249-MAX4257.pdf
C U Y V L S L 400 100 R L= 1kΩ P N U S360 0.2 O S V = 3V 80 T DD H 340 0.1 S 60 R = 100kΩ L 320 0 100 40 1.8 2.3 2.8 3.3 3.8 4.3 4.8 5.3 5.5 0.001 0.01 0.1 1 5 1.8 2.3 2.8 3.3 3.8 4.3 4.8 5.3 SUPPLY VOLTAGE (V
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PDF
7447709220_Data-DE.pdf
DATE : 2004-10-11 H Induktivitätskurve / Inductance curve : Induktivität vs Strom (typ.) / Inductance vs Current (typ.) 25,00 20,00 15,00 ) H ( L 10,00 5,00 0,00 0,0 2,0 4,0 6,0 8,0 10,0 12,0 Current (A) Kunde / customer
in „Schaltregler - starke Lastschwankungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mOHm-Meter.pdf
M 3 D2 S1 9 8 I8 O8 11 L X X 21 D3 S2 10 9 GND CD+ 10 B 22 D4 S3 8 B 1 1 +5V S4 7 D 1 ST S5 6 N 23 INH S6 5 R33 G +5V S7 4 ULN2803A_2 D 0 S8 18 E D S9 17 1 I1 O1 18 L L D 2 S10 20 2 I2 O2 17 L D 3 S11 14 4 I3
in „Elektronischer Schalter gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Philips_TPM7_1E_LA_Plan.pdf
8 + C933 0.8uH W + C920 470UF 35V 0 / C938 C961 1U 25V 9 1 47UF 50V 100N 50V C913 R918 D923 11 R H 470P 50V 47K +-5% 1/8W Q905 BAV21 1 12 C934 O 1 BC857C 1K OHM +-5% 1/8W R961 5 1 C916 IC902 FMV11N60ES 2 270PF FB901
in „Philips TV Netzteil resettet selbständig“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Philips_TPM7_1E_LA_Plan.pdf
8 + C933 0.8uH W + C920 470UF 35V 0 / C938 C961 1U 25V 9 1 47UF 50V 100N 50V C913 R918 D923 11 R H 470P 50V 47K +-5% 1/8W Q905 BAV21 1 12 C934 O 1 BC857C 1K OHM +-5% 1/8W R961 5 1 C916 IC902 FMV11N60ES 2 270PF FB901
in „Philips TV Netzteil defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
T100_Scaler.pdf
00h Window_1 Start Character Row Number / BMP Start Address LSB 11h 00h Window_1 End Character Row Number / BMP Start Address MSB 资料收藏: 12h 00h Window_1 Start Character Column Number 13h 00h Window_1 End
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PDF
DM0465RE.pdf
0 6 5 2 R Figure 4. Operating Current vs. Temp. Figure 5. Start Threshold Voltage vs. Temp. E — G 1.2 1.2 e e g 1.0 y 1.0 n l n M V 0.8 u 0.8 l ) e ) o h s0.6 F o0.6 d r ( i ( e T 0.4 a 0.4 F p e a t O r S 0.2 0.2 h i 0.0 0.0 d -25 0 25 50 75 100 125 150 -25 0 25 50 75 100 125 150 P Junction Temperature
in „Wie von 400 V Gleichspannung auf 5 V für den AVR kommen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
QN8027.pdf
without notice.ion. QN8027 001 6 0 -6 -12 010 9 3 -3 -9 011 12 6 0 -6 100 15 9 3 -3 101 18 12 6 0 11X Reserved 3:2 GDB[1:0] 00 TX digital gain GDB[1:0] Digital gain 00 0 dB 01 1 dB 10 2 dB 11 reserved 1:0 RIN[1:0] 10 TX mode input impedance for both L/R channels. RIN[1:0] Input impedance (KΩ) 00 5 01 10 10 20 11 40 Word: CID1 Address: 05h (RO) Bit 7 Bit 0 (MSB) Bit 6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 (LSB) cid0[2] cid0[1] cid0[0] cid1[2] cid1[1] cid1[0] cid2[1] cid2[0] ro ro ro ro ro ro ro ro Bit Symbol Default
in „FM Transmitter - Antenne verstehen und messen“ · HF, Funk und Felder ·
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PDF
TLV5610IDW_12-Bit__seriell__SPI__TMS320.pdf
OUTPUT LOAD REGULATION 2.06 4.12 V = 5 V, VDD = 3 V, DD Vref= 2 V, 4.11 Vref= 4 V, 2.055 Full Scale Fast Full Scale Slow V V 4.1 − 2.05 Fast e g a Slow l l 4.09 V 2.045 V t u p t 4.08 u u O 2.04 − − 4.07 O VO V 2.035 4.06 2.03 4.05 4.04 2.025 −0.05 −0.5 −1 −1.5 −2 −2.5 −
in „Hilfe zu DAC über SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nexperia-74AHCT123APW_118-datasheet.pdf
retriggerable monostable multivibrator with reset 6. Functional description Table 3. Function table[1] Input Output nRD nA nB nQ nQ L X X L H X H X L[2] H [2] X X L L[2] H [2] H L H H L H [1] H = HIGH voltage level; L = LOW voltage level; X = don’t care; = LOW-to-HIGH transition; = HIGH-to-LOW
in „Einfache digitale Wiedereinschaltverzögerung im µs Bereich“ · Mikrocontroller und Digitale Elektronik ·