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LTC660.pdf
6.5 10 fOSC Oscillator Frequency Boost = Open 10 kHz Boost = V (Note 4) 80 kHz + Power Efficiency R L 1k Connected BetweenV and V OUT 96 98 % R L 500 Connected Between V OUTand GND 92 96 % IL= 100mA to GND 88 % Voltage Conversion Efficiency No Load 99 99.96 % Oscillator Sink or Source Current Boost =
in „Schaltplankontrolle EVG-Dimmer -PWM, OpAmp und Ladungspumpe“ · Analoge Elektronik und Schaltungstechnik ·
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MGA31189.pdf
ApplicationCircuitDescriptionandLayout Vdd G T G N V G V V C3 F5 20 C12 C11 5 C10 2 C2 20C3 C2 IN CTxx C1 OUT C7 L1 C8 11X L3 C9 L2 L4 L1 RFout AVAGO 5C4 RFin TECHNOLOGIES 8C5 20C6 L3 C7 C8 SOT-89 C9 S REV3.2 N S D N Jul2009 G V V G Figure34.Circuitdiagram Figure35.Demoboard BillofMaterials Description Circuit For0.45GHz
in „RF-Amplifier ausserhalb von Spezifikation benutzen“ · HF, Funk und Felder ·
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Universeller_RC5-Fernbedienungsempf__nger_.pdf
1W C3 1W3 16V 16V JP1 4 TIC206D ΩR4 1A T 250V 41W X2 LEARN R2 D1 150Ω R5 R6 1W 470k 470k 1N4007 79L05 TSOP1836 K2 IC1 1 2 3 000189 - 11 OU H R2 R5 R6 H4 ~~ K2 C3 2 / D 1 1 TRI1 IC1 1 F C D 1 R R-981000 C C4 000189-1 ROTKE5E )C( I (C) ELEKTOR C IC3 H2~~ K1 JP1 H R3 C2 000189-1 42 Elektor 7-8/2001 H A L B LE IT E R H E F T2 0 0 1 Stückliste C2 = 10 µ/16 V stehend IC1 = 79L05 Pfostenverbinder und Jumper C3 = 470 n/250 VAC, Klasse IC2 = Atmel ATtiny22L-8PC K1,K2 = 2-polige Widerstände: X2 (EPS 000189-
in „Universeller RC5-Fernbedienungsempfänger“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr_test3.c
stdint.h> #include <avr/io.h> #include <util/delay.h> #define LCD_SCL_H PORTB |= (1<<PB0) #define LCD_SCL_L PORTB &= ~(1<<PB0) #define LCD_SDA_H PORTB |= (1<<PB1) #define LCD_SDA_L PORTB &= ~(1<<PB1) #define LCD_DORC_H PORTB |= (1<<PB2) #define LCD_DORC_L PORTB &= ~(1<<PB2) #define LCD_RESET_H PORTB |= (1<<PB4) #define LCD_RESET_L PORTB &= ~(1<<PB4) #define LCD_SCE_H PORTB |= (1<<PB3) #define LCD_SCE_L PORTB &= ~(1<<PB3) //------------------------------------------------------------------- //-----Funktionsprototypen-----------
in „Problem mit Nokia 3310 Display an ATtiny2313“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA5144.pdf
values of the following STATE MOT1 (1) MOT2 (1) MOT3 (1) components must still be determined: 1 Z L H • The start capacitor; this determines the frequency of the 2 H L Z start oscillator. 3 H Z L • The two capacitors in the adaptive commutation delay circuit; these are important in determining the optimum 4 Z H L 5 L H Z moment for commutation, depending on the type and loading of the motor. 6 L Z H • The timing capacitor; this provides the system with its Note timing signals. 1. H = HIGH state; T HE START CAPACITOR
in „BLDC Motor Treiber Geschwindihkeitsregelung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CEPT-Laenderliste_2014.pdf
kHz; 472 kHz, 10, 70– dem Heimatrufzeichen vorangestellter Landeskenner: EI/; Rufzeichenzusatz: 70,05MHz:max.Bandbreite1kHz;50,70,05–70,175,70,225–70,3,144MHz:18kHz) /M Mobilbetrieb dem Heimatrufzeichen vorangestellter Landeskenner: OH/; zusätzliche Kenn- Hinweis: CEPT-Empfehlung ECC/REC/(05)06 nicht
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ZDS1009TA-datasheet.pdf
CHARACTERISTICS 1.20 +25°C Vin = 0.1V 1.3 +25°C Vcc=5V 1.2 1.15 r r f f 1.1 s 1.10 s a a 1.0 T T e 1.05 R = 10⍀ e R = 10⍀ a R = 100⍀ a 0.9 R = 100⍀ l R = 1 k⍀ l R = 1 k⍀ o 1.00 V 0.8 V 0.95 0.7 0 5 10 15 20 25 30 35 10m 100m 1 10 Vcc - Supply Voltage(V) Vin - Input Voltage (V) Voltage Transfer v Supply
in „Stromspiegel als Levelshifter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ZDS1009TA-datasheet.pdf
CHARACTERISTICS 1.20 +25°C Vin = 0.1V 1.3 +25°C Vcc=5V 1.2 1.15 r r f f 1.1 s 1.10 s a a 1.0 T T e 1.05 R = 10⍀ e R = 10⍀ a R = 100⍀ a 0.9 R = 100⍀ l R = 1 k⍀ l R = 1 k⍀ o 1.00 V 0.8 V 0.95 0.7 0 5 10 15 20 25 30 35 10m 100m 1 10 Vcc - Supply Voltage(V) Vin - Input Voltage (V) Voltage Transfer v Supply
in „High-Side-Strom auf Low-Side spiegeln (Stromspiegel?!)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
display_lib.c
0x38, 0x44, 0x44, 0x44, 0x7F, // d 100 0x38, 0x54, 0x54, 0x54, 0x18, // e 101 0x04, 0x04, 0x7E, 0x05, 0x05, // f 102 0x08, 0x54, 0x54, 0x54, 0x3C, // g 103 0x7F, 0x08, 0x04, 0x04, 0x78, // h 104 0x00, 0x44, 0x7D, 0x40, 0x00, // i 105 0x20, 0x40, 0x44, 0x3D, 0x00, // j 106 0x7F, 0x10, 0x28, 0x44, 0x00
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FCPF11N60B.pdf
300nF 10V 1 N V DS 6 VGS Q gs Qgd 0 DUT 3mA Charge Resistive Switching Test Circuit & Waveforms R V L V DS 90% DS V V GS DD R G 10% V GS 10V DUT t t t d(on) r d(offf ton toff Unclamped Inductive Switching Test Circuit & Waveforms L BV DSS E AS= ----LIAS2 -------------------- V DS 2 BV DSS - DD BV DSS
in „Kühlkörper Dimensionieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
asmjbt3.a51
DB 0xD2 ;D2 -- '' DB 0x37 ;37 -- '7' DB 0x20 ;20 -- ' ' DB 0xB3 ;B3 -- '' DB 0x2A ;2A -- '*' DB 0x05 ;05 -- '' DB 0x4C ;4C -- 'L' DB 0xE5 ;E5 -- '' DB 0x4C ;4C -- 'L' DB 0xB4 ;B4 -- '' DB 0x0A ;0A -- '' DB 0x00 ;00 -- '' DB 0x40 ;40 -- '@' DB 0x21 ;21 -- '!' DB 0x75 ;75 -- 'u' DB 0x4C ;4C -- 'L' DB
in „Eprom von Denon DJ Laufwerk defekt Winbond 78e52“ · Mikrocontroller und Digitale Elektronik ·
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NT7533Lcd.pdf
interface 30 C86 I C86 = ”L”: 8080 series MPU interface When P/S = “L”(serial or IIC mode) : C86 should be connected to VDD1 or VSS1. This is the chip select signal. When /CS = “L”, then the chip select 40 /CS I becomes active,
in „Seriell (4-Wire)-LCD-Ansteuerung mit NT7533“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Service_5962-8119.pdf
-2553 1 Res 7.5 5% 2W PW R441 All 0698-4486 1 Res 24.9K 1% R442 66332A/6632B 0699-1513 1 Res 40K 0.05% R442 6633B 0699-3416 1 Res 100K 0.05% 0.1W R442 6634B 0699-3448 1 Res 300K 0.05% 0.1W R443 66332A/6632B 0699-1513 1 Res 40K 0.05% R443 6633B 0699-3416 1 Res 100K 0.05% 0.1W R443 6634B 0699-3448 1 Res
in „Wachsende Unterstützung der Selbstreparatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LED-Dimmer-OPV.pdf
4 0 P 10µF 0 D 2 2 Luxeon 3W 1 P0D301 MBRS1100T3G 0 P D3 1 D1 1 2 0 3 P 0 Luxeon 3W B 2 0 B IC2 78L12 C3 0,1µF L P P0IC20Vin Vout P0IC203 P0C301 P0C302 L1 0 GND 0 0 47µH C 0 C R P C1 C P C2 P P 1 2 R? 1 J1 0 0,1µF 0 0,1µF 1 1 P P ? 47k 0 0 0 C P 1 P0J101 P 08 , 0 P , T T1 2 IC1A , P 0V 1 P0IC1A02 R
in „richtige Schaltung zum PWM-Dimen von LEDs gesucht“ · Mikrocontroller und Digitale Elektronik ·
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MC9S12DG128.pdf
SC101161DJ, 28 Apr 28 Apr SC102202, SC102203, SC102204, & SC102205 V02.14 2005 2005 Added masksets 5L40K &1L59W Changed T to 85°C in table A-12 “NVM Reliability” & added Javg footnote concerning data retention 05 Oct 05 Oct Updated “NVM Reliability” table A-12 format with added data. V02.15 2005 2005
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Product_preview_LPST096096A00-T3.pdf
0.15 2 (turn on) 0.15 < D ≤ 0.20 1 0.20 < D 0 2-2) Scratch on Polarizer Zone Width (W, mm) Length (L, mm) Judgment W≤0.03 Pass Pass 0.03<W≤0.05 L≤2.0 Pass A.B L>2.0 1 (turn on) 0.05<W≤0.08 L>1.0 1 L≤1.0 Pass 0.08<W (*) (*) 2-3) Polarizer Bubble Zone D size (diameter, mm) Judgment D ≤ 0.20 PASS A.B 0.20
in „O-LED Display von SMI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Product_preview_LPST096096A00-T3__Rev_0.0_.pdf
0.15 2 (turn on) 0.15 < D ≤ 0.20 1 0.20 < D 0 2-2) Scratch on Polarizer Zone Width (W, mm) Length (L, mm) Judgment W≤0.03 Pass Pass 0.03<W≤0.05 L≤2.0 Pass A.B L>2.0 1 (turn on) 0.05<W≤0.08 L>1.0 1 L≤1.0 Pass 0.08<W (*) (*) 2-3) Polarizer Bubble Zone D size (diameter, mm) Judgment D ≤ 0.20 PASS A.B 0.20
in „[V] 2,4GHz Transceiver(CortexM3) Chip-Antenne, Balun.“ · Markt ·
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hirose_df9.pdf
DF9B-09S-1V (**) 540-0125-6-** 09 08.3 03 04 _ 10.1 K K DF9B-11S-1V (**) 540-0126-9-** 11 09.3 04 05 _ 11.1 K _ DF9B-13S-1V (**) 540-0127-1-** 13 10.3 05 06 _ 12.1 K _ DF9B-15S-1V (**) 540-0128-4-** 15 11.3 06 07 _ 13.1 K K DF9B-17S-1V (**) 540-0129-7-** 17 12.3 07 08 _ 14.1 _ K With metal fitting DF9B
in „Wer kennt diesen Stecker (LCD)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
edip240-7.pdf
error in protocol description New Command Terminal-Cursor Save/Restore #TS/#TR new firmware 18.01.05 V1.2 New Command Bargraph send continous #AQ 2 New addressable 2-wire RS485 Interface with SN75176 07.04.05 V1.3 New 32 additional I2C Addresses new firmware New Commands #AG, #SI, #KA 13.05.05 V1.4
in „MSP430F149 und EDIP240-7“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sharp_r733.pdf
4 4 4 4 3 3 323 315R3 01 GES 35 13 05R 11 GES 45 ZZRD220AXI 1C I 03 34R 31 GES 65 82 14R 41 GES 75 72 04R 0 0 4 DDV 85 62 DDV 1 1 L 51 GES 95 52 29R 5 5 3 61 GES 06 42 19R R R L 81 GES 26 22 38R k7. 4 05R 2 91 GES 36 12 1TNI L 02 GES6 02 18R k7. 4 15R 0 1 2 3 4 5 6 7 8 9 L 1 2 3 4 5 6 7 1 1 1 1 1 1 1 1 1 1 2 2 2M M M MS N U0 1 2 S E LT B A E E EC C C C VX XK K K T E HI e S S S R 0 1 5 d - - 5 5 W n H H C C S a W W m 8 C 2 042 5R 2 m Q B o 2 ) 8J( c ) 6J( ) 4J( e v05/ µ1
in „Fragen zu einem Trafo einer Sharp R733(W) Mikrowelle“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sharp_r733.pdf
4 4 4 4 3 3 323 315R3 01 GES 35 13 05R 11 GES 45 ZZRD220AXI 1C I 03 34R 31 GES 65 82 14R 41 GES 75 72 04R 0 0 4 DDV 85 62 DDV 1 1 L 51 GES 95 52 29R 5 5 3 61 GES 06 42 19R R R L 81 GES 26 22 38R k7. 4 05R 2 91 GES 36 12 1TNI L 02 GES6 02 18R k7. 4 15R 0 1 2 3 4 5 6 7 8 9 L 1 2 3 4 5 6 7 1 1 1 1 1 1 1 1 1 1 2 2 2M M M MS N U0 1 2 S E LT B A E E EC C C C VX XK K K T E HI e S S S R 0 1 5 d - - 5 5 W n H H C C S a W W m 8 C 2 042 5R 2 m Q B o 2 ) 8J( c ) 6J( ) 4J( e v05/ µ1
in „Fragen zu einem Trafo einer Sharp R733(W) Mikrowelle“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
drv5056.pdf
Equation 4 for the rectangular block shown in Figure 34: B = Br arctan WL – arctan WL ( ( 2D 4D + W + L2 2) ( 2(D + T) 4(D + T) + W + L 2 )) (4) Use Equation 5 for the cylinder shown in Figure 34: B = Br D + T – D 2 ( (0.5C) + (D + T)2 (0.5C) + D 2 ) where • W is width • L is length • T is thickness (the
in „Temperaturkompensation Hall-Sensor DRV5056“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
s1d13700.pdf
7-0 REG[03h] bits 7-0 TC/R REG[04h] bits 7-0 REG[04h] bits 7-0 REG[04h] bits 7-0 REG[04h] bits 7-0 L/F REG[05h] bits 7-0 REG[05h] bits 7-0 REG[05h] bits 7-0 REG[05h] bits 7-0 SL1 00h to REG[05h] bits 7-0 00h to REG[05h] bits 7-0 [REG[05h] bits 7-0 + 1] ÷ 2 - 1 [REG[05h] bits 7-0 + 1] ÷ 2 - 1 (See Note
in „LPC2140 an S1D13700 Display driver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s1d13700.pdf
7-0 REG[03h] bits 7-0 TC/R REG[04h] bits 7-0 REG[04h] bits 7-0 REG[04h] bits 7-0 REG[04h] bits 7-0 L/F REG[05h] bits 7-0 REG[05h] bits 7-0 REG[05h] bits 7-0 REG[05h] bits 7-0 SL1 00h to REG[05h] bits 7-0 00h to REG[05h] bits 7-0 [REG[05h] bits 7-0 + 1] ÷ 2 - 1 [REG[05h] bits 7-0 + 1] ÷ 2 - 1 (See Note
in „[V] 8 LCDs 320x240 s/w, 6 Zoll, Touch, inkl Controller“ · Markt ·
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PDF
s1d13700.pdf
7-0 REG[03h] bits 7-0 TC/R REG[04h] bits 7-0 REG[04h] bits 7-0 REG[04h] bits 7-0 REG[04h] bits 7-0 L/F REG[05h] bits 7-0 REG[05h] bits 7-0 REG[05h] bits 7-0 REG[05h] bits 7-0 SL1 00h to REG[05h] bits 7-0 00h to REG[05h] bits 7-0 [REG[05h] bits 7-0 + 1] ÷ 2 - 1 [REG[05h] bits 7-0 + 1] ÷ 2 - 1 (See Note
in „Erste GLCD (Touch) -Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s1d13700.pdf
7-0 REG[03h] bits 7-0 TC/R REG[04h] bits 7-0 REG[04h] bits 7-0 REG[04h] bits 7-0 REG[04h] bits 7-0 L/F REG[05h] bits 7-0 REG[05h] bits 7-0 REG[05h] bits 7-0 REG[05h] bits 7-0 SL1 00h to REG[05h] bits 7-0 00h to REG[05h] bits 7-0 [REG[05h] bits 7-0 + 1] ÷ 2 - 1 [REG[05h] bits 7-0 + 1] ÷ 2 - 1 (See Note
in „[v] LCDs 320x240 s/w, 6 Zoll, Touch, inkl Controller“ · Markt ·
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PDF
s1d13700_320-240_display.pdf
7-0 REG[03h] bits 7-0 TC/R REG[04h] bits 7-0 REG[04h] bits 7-0 REG[04h] bits 7-0 REG[04h] bits 7-0 L/F REG[05h] bits 7-0 REG[05h] bits 7-0 REG[05h] bits 7-0 REG[05h] bits 7-0 SL1 00h to REG[05h] bits 7-0 00h to REG[05h] bits 7-0 [REG[05h] bits 7-0 + 1] ÷ 2 - 1 [REG[05h] bits 7-0 + 1] ÷ 2 - 1 (See Note
in „Anstuerung eines Grafik LCDs. Fragen zu Display und Controller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm324_Original.pdf
Conditions V CC = ±15 V, T =A25°C PARAMETER TEST CONDITIONS TYP UNIT SR Slew rate at unity gain R L 1 MΩ, C = 3L pF, V = ±10IV (see Figure 7-1) 0.5 V/μs B1 Unity-gain bandwidth R L 1 MΩ, C = 2L pF (see Figure 7-1) 1.2 MHz Vn Equivalent input noise voltage R S 100 Ω, V = 0IV, f = 1 kHz (see Figure 7
in „gutes Übersetzungsprogramm für Datenblätter gesucht“ · Offtopic ·
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APM2601.pdf
www.anpec.com.tw Rev. A.1 - Jun., 2003 APM2601 Packaging Information SOT-23-6 D 6 5 4 E H 1 2 3 S1 e D A L1 A2 α A1 L2 L Millimeters Inches Dim Min. Max. Min. Max. A 1.00 1.45 0.0394 0.0571 A1 0.00 0.15 0.0000 0.0591 A2 0.70 1.25 0.0276 0.0492 b 0.35 0.55 0.0138 0.0217 D 2.70 3.10 0.1063 0.1220 E 1.40 1.80 0.50551 0.0709 e 1.90 BSC 0.07480 BSC H 2.60 3.00 0.1024 0.1181 L 0.30 - 000118 - L1 0.08 0.25 0.0031 0.0098 L2 0.60 REF 0.024 REF α 0° 10° 0 ° 10 ° S1 0.85 1.05 0.0335 0.0413 Copyright ANPEC Electronics Corp. 6 www.anpec.com.tw Rev. A.1 - Jun., 2003 APM2601 Physical
in „SMD-Bauteilbestimmung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM1086.pdf
L M August 2001 1 8 6 1 5 LM1086 A 1.5A Low Dropout Positive Regulators L o General Description Features w The LM1086 is a series of low dropout positive voltagen Available in 2.5V, 2.85V, 3.3V, 3.45V,
in „Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AP5724_Backlightdriver.pdf
) V INvs. Frequency V INvs. Max Duty 1.25 100 ) 1.2 H ) 95 M ( y 1.15 t n u 90 u x q 1.1 a r M F 1.05 85 1 80 2.5 3 3.5 4 4.5 5 5.5 2.5 3 3.5 4 4.5 5 5.5 V (V) (V) IN VIN V vs. Feedback Voltage IN OUT vs. Feedback Voltage 0.12 0.12 ) (0.11 ) 0.11 g ( l g o 0.1 l 0.1 k o c0.09 k 0.09 b c e0.08 b 0.08
in „Fehlersuche Backlightdriver startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Interrupt_Handling_R8c_25.pdf
number (decimal number) #pragma INTCALL 32 call32 ( R0, R1 ) Available register names: R0, R1, R2, R3 R0L, R0H, R1L, R1H void main ( void ) A0, A1 { Aruguments are passed to the function via these registers. int m, n; call32 ( m, n ) Function “CALL32” is called by INT instruction } _main: E p m an enter
in „R8C interruppt Handling in C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036-V1.4.pdf
64 frames Cursor " Cursor or Display Shift RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 S/C R/L X X # S/C: Screen/Cursor select bit When S/C= High , Screen is controlled by R/L bit. When S/C= Low , Cursor is controlled by R/L bit. # R/L: Right/Left When R/L= High , set direction to right. When
in „EA DOG-M Display (ST7046) und customchars. ARGH!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036-V1.7.pdf
64 frames Cursor z Cursor or Display Shift RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 S/C R/L X X ¾ S/C: Screen/Cursor select bit When S/C=”High”, Screen is controlled by R/L bit. When S/C=”Low”, Cursor is controlled by R/L bit. ¾ R/L: Right/Left When R/L=”High”, set direction to right. When
in „DOG-M-Display/ST7036 Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036-V1.7.pdf
64 frames Cursor z Cursor or Display Shift RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 S/C R/L X X ¾ S/C: Screen/Cursor select bit When S/C=”High”, Screen is controlled by R/L bit. When S/C=”Low”, Cursor is controlled by R/L bit. ¾ R/L: Right/Left When R/L=”High”, set direction to right. When
in „Newbie Probleme bei LCD DOGM Initialisierung in Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lite06.asm
clock_ne555 .def keyaux = r03 ; aux03:key_aux .def keyfbck = r04 ; aux04:key_function+bck .def swbcd01 = r05 ; aux05:switch_bcd0+1 .def swbcd23 = r06 ; aux06:switch_bcd2+3 .def aux07 = r07 ; aux07: .def aux08 = r08 ; aux08: .def aux09 = r09 ; aux09: .def aux10 = r10 ; aux10: .def aux11 = r11 : aux11: .def aux12
in „meinungen zu ass.prog.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lite06.asm
clock_ne555 .def keyaux = r03 ; aux03:key_aux .def keyfbck = r04 ; aux04:key_function+bck .def swbcd01 = r05 ; aux05:switch_bcd0+1 .def swbcd23 = r06 ; aux06:switch_bcd2+3 .def aux07 = r07 ; aux07: .def aux08 = r08 ; aux08: .def aux09 = r09 ; aux09: .def aux10 = r10 ; aux10: .def aux11 = r11 : aux11: .def aux12
in „meinungen zu ass.prog.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lite02.asm
; aux02:rne555 .def rtaaux = r03 ; aux03:rtaaux .def rtafbck = r04 ; aux04:rtafbck .def rbcd01 = r05 ; aux05:rbcd01 .def rbcd23 = r06 ; aux06:rbcd23 .def aux07 = r07 ; aux07 .def aux08 = r08 ; aux08 .def aux09 = r09 ; aux09 .def aux10 = r10 ; aux10 .def aux11 = r11 : aux11 .def aux12 = r12 ; aux12 .
in „audio-dsp mit 8515 ?“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
Lcd.asm
--------------------------------------------------------------------------- ; Ansteuerung LCD ; 18.05.2010 by PLi ;------------------------------------------------------------------------------- Model C8051F360.MCU ;------------------------------------------------------------------------------- XTAL
in „Display HD44780 mit 8051er“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILC555N_and_IZC555N.pdf
can drive TTL/CMOS GND 01 08 V CC 07 TRIGGER 02 DISCHARGE ILC555N OUTPUT 03 06 THRESHOLD RESET 04 05 CONTROL VOLTAGE INTEGRAL 1 ILC555 TRUTH TABLE THRESHOLD TRIGGER RESET OUTPUT DISCHARGE X X L L ON > 2/3 V > 1/3 V H L ON CC CC < 2/3 VCC > 1/3 VCC H STABLE STABLE X < 1/3 VCC H H OFF MAXIMUM RATINGSAND
in „Strom sparen mit Low Power NE555 als Multivibrator an 3V (Out of Spec)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
netzuhr_.asm
,temp ret L00D8: rcall L00AF ldi temp,0x05 sts DS6E,temp ldi temp,0x0E sts DS6F,temp ldi temp,0x0F sts DS70,temp ret L00E3: ldi temp,0x00 sts DS60,temp L00E6: ldi XL,0x30 ld r16,X bst r16,5 brtc L00EB rjmp L00F9
in „Reparaturtips für VFD von alter Elektronika-Leuchte“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTC6802-1.pdf
400 ns t4 SCKI High l 400 ns t5 CSBI Pulse Width l 400 ns t6 SCKI Rising to CSBI Rising l 100 ns l t7 CSBI Falling to SCKI Rising 100 ns t8 SCKI Falling to SDO Valid l 250 ns Clock Frequency l 1 MHz Watchdog Timer Time Out Period l 1 2.5 s Timing Specifications tPD1 CSBI to CSBO C CSBO= 150pF l 600 ns tPD2 SCKI to SCKO C SCKO= 150pF l 300 ns tPD3 SDI to SDOI Write Delay C SDOI= 150pF l 300 ns t SDOI to SDI Read Delay C = 150pF l
in „SPI: kein SCK bei Receive - Warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FGA25N120AND.pdf
Level 20 20 Common Emitter Common Emitter T = 25℃ T = 125 ℃ C C V 16 V 16 E [E V VC , , g 12 g 12 l l o o r r t t m 8 m 8 - - o o c c 40A l 4 40A l 4 25A o 25A o C I = 12.5A C C = 12.5A C 0 0 0 4 8 12 16 20 0 4 8 12 16 20 Gate-Emitter Voltage, V GE[V] Gate-Emitter Voltage, VGE [V] Fig 5. Saturation
in „Induktionsheizung bauen mit 1 igbt“ · Analoge Elektronik und Schaltungstechnik ·
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Nexys4_DDR_schematic.pdf
_0_14IO_L4P_T0_D04_1480L18 IO_L3N_T0_DQS_AD1N_1580B12VS IO_L3N_T0_DQS_34C80N1_A7 IO_L3N_T0_DQS_AD5N_3580A5_G1 CB RPIICIO_25_14 IO_L4N_T0_D05_14M18U IO_L4P_T0_15IC80B11HS IO_L4P_T0_34C80M3_ODT IO_L4P_T0_35C80D8
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FQ44N10F.pdf
11. Transient Thermal Response Curve 10 0 e D =0.5 s o s 0.2 N otes : e 1. Zθ JCt) = 1.0 /W M ax. l 0.1 2. D uty F actor, D1=2t /t a 10 -1 3. TJM- TC = PD M* θ JCt) r 0.05 h T 0.02 t P DM (J 0.01 t θ single pulse 1t Z -2 2 10 10-5 10 -4 10 -3 10 -2 10 -1 10 0 101 t1, S q uare W a ve P u lse D u ra
in „suche mosfet 100V so-8“ · Analoge Elektronik und Schaltungstechnik ·
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sab6456.pdf
Output voltage swing (peak-to-peak value) fi= 70 MHz Vo(p-p) 0,8 1,0 1,2 V fi= 1000 MHz; R = 820 ; L C L= 60 pF Vo(p-p) 0,17 − − V Attenuation of third harmonic at output fi= 800 MHz; R L 820 ; C = 60 pF −15 −23 − dB L Output unbalance see Fig.3 V o − − 0,1 V Output resistance Ro − 500 − June 1986 5
in „FM-Tuner mit AVR ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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AOZ8900.pdf
1.60 1.70 E1 0.059 0.063 0.067 0.95 0.63 e 0.95 BSC e 0.037 BSC UNIT: mm e1 1.90 BSC e1 0.075 BSC L 0.30 — 0.60 L 0.012 — 0.024 θ1 0° — 8° θ1 0° — 8° Notes: 1. Package body sizes exclude mold flash and gate burrs. Mold flash at the non-lead sides should be less than 5 mils each. 2. Dimension “L” is
in „Datenblatt zum Bauteil gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
nrf24l01.c
(NRF24L01_REG_TX_ADDR,TxAddr,0x05); // TX Pipe /* Adressen setzen */ RF_WriteRegSingle(NRF24L01_REG_SETUP_AW,0x03); // 11 = 5 Bytes Adresse RF_WriteRegMulti(NRF24L01_REG_RX_ADDR_P0,MyAddr,0x05); // RX Pipe 0 RF_WriteRegMulti(NRF24L01_REG_TX_ADDR,TxAddr,0x05); // TX Pipe Adresse /* Enhanced Shockburst: Auto ACK nur für Pipe 0 setzen, alle anderen aus */ RF_WriteRegSingle(NRF24L01_REG_EN_AA, ( 1 << NRF24L01_ENAA_P0)); /* Retransmission
in „[STM32F4xx] NRF24L01+ Funkmodul Source Code“ · Projekte & Code ·
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IRLU2905.pdf
PD - 95774B IRLR2905ZPbF IRLU2905ZPbF Features HEXFET Power MOSFET l Logic Level D l Advanced Process Technology V DSS = 55V l Ultra Low On-Resistance l 175°C Operating Temperature R = 13.5mΩ l Fast Switching G DS(on) l Repetitive Avalanche Allowed up to Tjmax l Lead-Free
in „Batterieschutzschaltung. Murks oder möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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Infineon-IRLML2502-DataSheet-v01_01-EN.pdf
IRLML2502PbF HEXFET Power MOSFET l Ultra Low On-Resistance l N-Channel MOSFET G 1 l SOT-23 Footprint V = 20V l Low Profile (<1.1mm) DSS l Available in Tape and Reel 3 D l Fast Switching R DS(on) = 0.045Ω l Lead-Free S 2 l RoHS Compliant
in „Hilfe bei Bauteilidentifizierung erbeten (MOSFET, SOT23)“ · Offtopic ·