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PDF
hd61830.pdf
input set-up time t — — 180 ns 2 SSY Notes: 1. Applied to external clock input terminal. T T h l 0.7 CC 0.5 CC 0.3 CC Oscillator CR Duty cycle =Th × 100% trcp tfcp Th+ Tl 2. Applied to $< terminal. 0.7 VCC CR 0.3CC DSY DSY tHSYO HSYO SYNC 0.7 V (Output: CC at master 0.3 CC mode) t HSYI SSY HSYI SSY SYNC
in „ATMega als LCD-Controller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd61830.pdf
input set-up time t — — 180 ns 2 SSY Notes: 1. Applied to external clock input terminal. T T h l 0.7 CC 0.5 CC 0.3 CC Oscillator CR Duty cycle =Th × 100% trcp tfcp Th+ Tl 2. Applied to $< terminal. 0.7 VCC CR 0.3CC DSY DSY tHSYO HSYO SYNC 0.7 V (Output: CC at master 0.3 CC mode) t HSYI SSY HSYI SSY SYNC
in „HD61830A durch HD61830B ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd61830.pdf
input set-up time t — — 180 ns 2 SSY Notes: 1. Applied to external clock input terminal. T T h l 0.7 CC 0.5 CC 0.3 CC Oscillator CR Duty cycle =Th × 100% trcp tfcp Th+ Tl 2. Applied to $< terminal. 0.7 VCC CR 0.3CC DSY DSY tHSYO HSYO SYNC 0.7 V (Output: CC at master 0.3 CC mode) t HSYI SSY HSYI SSY SYNC
in „HD61830 Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd61830--kompatibel_zu_LC7981.pdf
input set-up time t — — 180 ns 2 SSY Notes: 1. Applied to external clock input terminal. T T h l 0.7 CC 0.5 CC 0.3 CC Oscillator CR Duty cycle =Th × 100% trcp tfcp Th+ Tl 2. Applied to $< terminal. 0.7 VCC CR 0.3CC DSY DSY tHSYO HSYO SYNC 0.7 V (Output: CC at master 0.3 CC mode) t HSYI SSY HSYI SSY SYNC
in „GLCD hängt sich nach einer Weile auf“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SFH3010Z_.pdf
Speziell geeignet für Anwendungen im Bereich Especially suitable for applications from von 420 nm bis 1100 nm 420 nm to 1100 nm großer Empfangswinkel ±80° large viewing angle ±80° geeignet für IR-Reflow-Löten (JEDEC level 4) suitable for IR reflow soldering (JEDEC level 4) Nur gegurtet lieferbar Available
in „Problem ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430F233TPM.pdf
Flash 0xFFFF to 0x8000 0xFFFF to 0x4000 0xFFFF to 0x2100 RAM (total) Size 4KB 4KB 4KB 0x20FF to 0x1100 0x20FF to 0x1100 0x20FF to 0x1100 Extended Size 2KB 2KB 2KB 0x20FF to 0x1900 0x20FF to 0x1900 0x20FF to 0x1900 Mirrored Size 2KB 2KB 2KB 0x18FF to 0x1100 0x18FF to 0x1100 0x18FF to 0x1100 Information
in „MSP430 SPI A25L080 Flash“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slaa044.pdf
IN 1 C15 Power C14 10 IDI IN 2 10 SLI Figure 7. Schematic IrDA Module The power supply for the TSLM1100 must be filtered to minimize noise from external sources. Capacitors C6 and C7 must be placed as close as possible to the TSLM1100 to achieve optimum noise immunity. For detailed application information, see the TSLM1100 data sheet. Since the TSLM1100 is encapsulated in a light permeable plastic package, it is recommended to shield the device from sources of optical interference, especially fluorescent lamps and IR
in „MSP430 - IrDA Empfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1638.pdf
Input Voltage ® Over-The-Top Comparator with 100mV Hysteresis Centered at 0mV 5V 10k 1M VCC V1 VCC CC 1M + + 1/2 LT1638 1/2 LT1638 V0 1M – – 0V 10k 1M 1638/39 TA01 V2 CC= 5V,CM= 0V TO 4PD 27µs 20mV/DIV 1638/39 TA02 16389fc 1 LT1638/LT1639 W W W U ABSOLUTE MAXIMUM RATINGS (Note 1) Total Supply Voltage
in „OPAMP Differenzverstärker - max. Einganggsspannung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
hd66701.pdf
30 k Id = 0.05 mA (SEG) 13 SEG (SEG) Input leakage current LI –1 — 1 A VIN = 0 to CC 9 Pull-up MOS current –I 10 50 120 A V = 3V p CC (RS, R/W, D0–D7) Power supply current CC — 150 300 A R fscillation, 10, 14 external clock V CC= 3V, OSC= 320 kHz LCD voltage VLCD1 3.0 — 8.3 V V CC5,
in „Tipsend2 Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Build_options.txt
Created dir: F:\SVN\[...]\muedm_f103\Debug\bin [mkdir] Created dir: F:\SVN\[...]\muedm_f103\Debug\obj [cc] 18 total files to be compiled. [cc] arm-none-eabi-gcc -mcpu=cortex-m3 -mthumb -Wall -ffunction-sections -g -O3 -std=gnu99 -pedantic -gdwarf-2 -Wextra -c -DSTM32F103V8 -DSTM32F10X_MD -DUSE_STDPERIPH_DRIVER
in „ARM-GCC: makefile“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Ausschnitte_RFM12BP.c
es=1=synthesizer EIN // dc=1= Taktausgang AUS= '0' ausgeben; warten100ms(); SPI_Config_CMD_16Bit(0xCC77);//PLL konfigurieren, nur RFM12B, siehe Artikel µC SPI_Config_CMD_16Bit(0xC040);//Batterieüberwachung:2,2V, Ausgangsfrequenz für µC=1,66MHz SPI_Config_CMD_16Bit(0xA76C);//Frequenz festlegen, 76C =
in „RFM12BP Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Ausschnitte_RFM12BP.c
es=1=synthesizer EIN // dc=1= Taktausgang AUS= '0' ausgeben; warten100ms(); SPI_Config_CMD_16Bit(0xCC77);//PLL konfigurieren, nur RFM12B, siehe Artikel µC SPI_Config_CMD_16Bit(0xC040);//Batterieüberwachung:2,2V, Ausgangsfrequenz für µC=1,66MHz SPI_Config_CMD_16Bit(0xA76C);//Frequenz festlegen, 76C =
in „RFM12BP Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Ausschnitte_RFM12BP.c
es=1=synthesizer EIN // dc=1= Taktausgang AUS= '0' ausgeben; warten100ms(); SPI_Config_CMD_16Bit(0xCC77);//PLL konfigurieren, nur RFM12B, siehe Artikel µC SPI_Config_CMD_16Bit(0xC040);//Batterieüberwachung:2,2V, Ausgangsfrequenz für µC=1,66MHz SPI_Config_CMD_16Bit(0xA76C);//Frequenz festlegen, 76C =
in „Einfaches Testprogramm für RFM12BP-868MHz“ · HF, Funk und Felder ·
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PDF
66712.pdf
OSC2 The recommended oscillator resistor is as follows. HD66712 HD66712 i) HD66712S • Rf = 91 k 2% (V CC = 5V) • Rf = 75 k 2% (V = 3V) CC ii) HD66712U • Rf = 130 k 2% (V CC = 5V) • Rf = 110 k 2% (V = 3V) CC Figure 22 Oscillator Circuit (1) 1 /17 duty cycle 1-line selection period 1 2 3 4 16 17 1 2 3 16
in „ds89c420 @ 32mhz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ender3_schematic.PDF
datasheet the VREG capacitor P100 MS1 P1049 MS1 P1110MS2 GND GND GND P1100 MS2 GND GND GND should be much larger: 2µ2 to 4µ7 PU311MS3 24 NetX-MOT_3 PIU01 MS3 24 NetY-MOT_3 XYEENABL E 2 OUT1A PI214 NetX-MOT_4 XYEENABLE 2 OUT1A P212 NetY-MOT_4 PU30 /ENABLE OUT1B PI231 PIU42
in „Problem mit SD Card Melzi Creality3D V1.1.3 Sanguino Atmega 1284“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INFINEON-IKW50N65F5-DS-V02_01-EN.pdf
IGBT Characteristic, at T = 25°C vj Turn-on delay time d(on) T = 25°C, - 21 - ns vj Rise time r V CC 400V, I C= 25.0A, - 15 - ns V GE 0.0/15.0V, Turn-off delay time d(off) R G(on) 12.0 , R G(off) 12.0 , - 175 - ns Fall time f Lσ = 30nH, Cσ = 30pF - 18 - ns Lσ, Cσ from Fig. E Turn-on energy Eon Energy
in „SGT40n60NPFD vs IKW50N65F5“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
CC CC VIH Input high voltage (ports 0, 1, 2, 3, EA) – 0.2 VCC+0.9 V CC+0.5 V 11 VIH1 Input high voltage, XTAL1, RST – 0.7 VCC V CC+0.5 V V Output low voltage, ports 1, 2, V = 2.7 V; I = 1.6 mA2 – 0.4 V
in „Info zum SAB80C382 gesucht!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TM56E6422-tenxtechnology.pdf
Sheet 1001: Open drain or digital input and pin-changed wakeup 1010: CMOS Push-pull 1011:Reserved 1100: Open drain or digital input with pull-down and pin-changed wakeup(PA7 has no pull-down) 1101: Open drain or digital input and pin-changed wakeup 1110: CMOS Push-pull 1111: 1/2 CC(1/2 bias) (except
in „MCU identifikation/Datenblatt - MC9989A0ZQ“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TM56M152A-tenxtechnology.pdf
VIH All Input VCC = 3.0~5.0V 0.6VCC – VCC V Input Low Voltage V All Input V = 3.0~5.0V V – 0.2V V IL CC SS CC VCC= 5.0V, 6 12.7 – I/O port VOH = 4.5V Source Current IOH All I/O pin V = 3.0V, mA CC 2.5 5.3 – VOH = 2.7V VCC= 5.0V, 32 63 – All I/O pin except VOL 0.5V PA7 V = 3.0V, mA (HSINK=1) CC 15 29 –
in „MCU identifikation/Datenblatt - MC9989A0ZQ“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bluetooth-Modul_PAN1x55__BlueMod_P2xG2__Test-Report-1097464.pdf.pdf
1-1100-01-04/09 Photo 7: 2009-03-11 Page 99 of 104 CETECOM ICT Services GmbH Test report no.: 1-1100-01-04/09 Photo documentation: external antenna Photo 1: Photo 2: 2009-03-11 Page 100 of 104 CETECOM ICT
in „Bluetooth-Modul "BlueMod+P25" von Stollmann - Ersatztyp“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780u_lcd2.pdf
= 0.05 mA, 13 (SEG) VLCD = 4 V Input leakage current LI –1 — 1 A VIN = 0 to CC 9 Pull-up MOS current –p 50 125 250 A V CC= 5 V (DB0–DB7, RS, R/W) Power supply current CC — 350 600 A R fscillation, 10, 14 external clock V = 5 V, CC fOSC= 270 kHz LCD voltage VLCD1 3.0 — 11.0 V V CC5, 1/5 bias 16 VLCD2 3.0 — 11.0 V V –V5, 1/4 bias 16 CC Note: * Refer to the Electrical Characteristics Notes section following these tables. 51 HD44780U 3 AC Characteristics (V CC = 4.5 to 5.5 V, T a
in „LCD - Displaycode 4 Bitmodus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.pdf
= 0.05 mA, 13 (SEG) VLCD = 4 V Input leakage current LI –1 — 1 A VIN = 0 to CC 9 Pull-up MOS current –p 50 125 250 A V CC= 5 V (DB0–DB7, RS, R/W) Power supply current CC — 350 600 A R fscillation, 10, 14 external clock V = 5 V, CC fOSC= 270 kHz LCD voltage VLCD1 3.0 — 11.0 V V CC5, 1/5 bias 16 VLCD2 3.0 — 11.0 V V –V5, 1/4 bias 16 CC Note: * Refer to the Electrical Characteristics Notes section following these tables. 51 HD44780U 3 AC Characteristics (V CC = 4.5 to 5.5 V, T a
in „LCD-Anzeige-Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780.pdf
= 0.05 mA, 13 (SEG) VLCD = 4 V Input leakage current LI –1 — 1 A VIN = 0 to CC 9 Pull-up MOS current –p 50 125 250 A V CC= 5 V (DB0–DB7, RS, R/W) Power supply current CC — 350 600 A R fscillation, 10, 14 external clock V = 5 V, CC fOSC= 270 kHz LCD voltage VLCD1 3.0 — 11.0 V V CC5, 1/5 bias 16 VLCD2 3.0 — 11.0 V V –V5, 1/4 bias 16 CC Note: * Refer to the Electrical Characteristics Notes section following these tables. 51 HD44780U 3 AC Characteristics (V CC = 4.5 to 5.5 V, T a
in „Reziproker Frequenzzähler+ Optimierte 64bit uint Routinen“ · Projekte & Code ·
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PDF
www.eio.com-hd44780_18-48-46.pdf
cycles; 43 to Hz for 1/11 duty cycle) 80 Hz for 1/11 duty cycle) Rfresistance 91 k ±2% 91 k ±2% (when V CC= 5V) 75 k ±2% (when V CC= 3V) Instructions Fully compatible within the HD44780S CPU bus timing 1 MHz 1 MHz (when V = 3V) CC 2 MHz (when V CC= 5V) Package FP-80 FP-80B FP-80A TFP-80F 170 HD44780U HD44780U
in „Fehler bei 4Bit LCD Init?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780__Dot_Matrix_LCD_Controller_Driver_.pdf
cycles; 43 to Hz for 1/11 duty cycle) 80 Hz for 1/11 duty cycle) Rfresistance 91 k ±2% 91 k ±2% (when V CC= 5V) 75 k ±2% (when V CC= 3V) Instructions Fully compatible within the HD44780S CPU bus timing 1 MHz 1 MHz (when V = 3V) CC 2 MHz (when V CC= 5V) Package FP-80 FP-80B FP-80A TFP-80F 170 HD44780U HD44780U
in „Falsche Zeichen bei LCD-Ausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.PDF
cycles; 43 to Hz for 1/11 duty cycle) 80 Hz for 1/11 duty cycle) Rfresistance 91 k ±2% 91 k ±2% (when V CC= 5V) 75 k ±2% (when V CC= 3V) Instructions Fully compatible within the HD44780S CPU bus timing 1 MHz 1 MHz (when V = 3V) CC 2 MHz (when V CC= 5V) Package FP-80 FP-80B FP-80A TFP-80F 170 HD44780U HD44780U
in „Busy-Flag bei LCDs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780.pdf
cycles; 43 to Hz for 1/11 duty cycle) 80 Hz for 1/11 duty cycle) Rfresistance 91 k ±2% 91 k ±2% (when V CC= 5V) 75 k ±2% (when V CC= 3V) Instructions Fully compatible within the HD44780S CPU bus timing 1 MHz 1 MHz (when V = 3V) CC 2 MHz (when V CC= 5V) Package FP-80 FP-80B FP-80A TFP-80F 170 HD44780U HD44780U
in „LCD ohne Umlaute?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780U.pdf
cycles; 43 to Hz for 1/11 duty cycle) 80 Hz for 1/11 duty cycle) Rfresistance 91 k ±2% 91 k ±2% (when V CC= 5V) 75 k ±2% (when V CC= 3V) Instructions Fully compatible within the HD44780S CPU bus timing 1 MHz 1 MHz (when V = 3V) CC 2 MHz (when V CC= 5V) Package FP-80 FP-80B FP-80A TFP-80F 170 HD44780U HD44780U
in „LCD ohne Datenblatt oder Hinweise zur Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780.pdf
cycles; 43 to Hz for 1/11 duty cycle) 80 Hz for 1/11 duty cycle) Rfresistance 91 k ±2% 91 k ±2% (when V CC= 5V) 75 k ±2% (when V CC= 3V) Instructions Fully compatible within the HD44780S CPU bus timing 1 MHz 1 MHz (when V = 3V) CC 2 MHz (when V CC= 5V) Package FP-80 FP-80B FP-80A TFP-80F 170 HD44780U HD44780U
in „LCD (von Tel) -Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780.pdf
43 to Hz for 1/11 duty cycle) 80 Hz for 1/11 duty cycle) Rfresistance 91 kΩ ±2% 91 kΩ ±2% (when V CC= 5V) 75 kΩ ±2% (when V = 3V) CC Instructions Fully compatible within the HD44780S CPU bus timing 1 MHz 1 MHz (when V CC= 3V) 2 MHz (when V CC= 5V) Package FP-80 FP-80B FP-80A TFP-80F 170 HD44780U HD44780U
in „HD44780 Zeichen im ROM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780.pdf
cycles; 43 to Hz for 1/11 duty cycle) 80 Hz for 1/11 duty cycle) Rfresistance 91 k ±2% 91 k ±2% (when V CC= 5V) 75 k ±2% (when V CC= 3V) Instructions Fully compatible within the HD44780S CPU bus timing 1 MHz 1 MHz (when V = 3V) CC 2 MHz (when V CC= 5V) Package FP-80 FP-80B FP-80A TFP-80F 170 HD44780U HD44780U
in „Sinnlose Probleme mit LCD...“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780.pdf
cycles; 43 to Hz for 1/11 duty cycle) 80 Hz for 1/11 duty cycle) Rfresistance 91 k ±2% 91 k ±2% (when V CC= 5V) 75 k ±2% (when V CC= 3V) Instructions Fully compatible within the HD44780S CPU bus timing 1 MHz 1 MHz (when V = 3V) CC 2 MHz (when V CC= 5V) Package FP-80 FP-80B FP-80A TFP-80F 170 HD44780U HD44780U
in „System(Mikrocontroller usw) mit Batterie betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780.pdf
cycles; 43 to Hz for 1/11 duty cycle) 80 Hz for 1/11 duty cycle) Rfresistance 91 k ±2% 91 k ±2% (when V CC= 5V) 75 k ±2% (when V CC= 3V) Instructions Fully compatible within the HD44780S CPU bus timing 1 MHz 1 MHz (when V = 3V) CC 2 MHz (when V CC= 5V) Package FP-80 FP-80B FP-80A TFP-80F 170 HD44780U HD44780U
in „ATMEL_2x16LCD_Zeile 2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.pdf
cycles; 43 to Hz for 1/11 duty cycle) 80 Hz for 1/11 duty cycle) Rfresistance 91 k ±2% 91 k ±2% (when V CC= 5V) 75 k ±2% (when V CC= 3V) Instructions Fully compatible within the HD44780S CPU bus timing 1 MHz 1 MHz (when V = 3V) CC 2 MHz (when V CC= 5V) Package FP-80 FP-80B FP-80A TFP-80F 170 HD44780U HD44780U
in „LCD Ansteuerung (PIC 18F1220)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.PDF
cycles; 43 to Hz for 1/11 duty cycle) 80 Hz for 1/11 duty cycle) Rfresistance 91 k ±2% 91 k ±2% (when V CC= 5V) 75 k ±2% (when V CC= 3V) Instructions Fully compatible within the HD44780S CPU bus timing 1 MHz 1 MHz (when V = 3V) CC 2 MHz (when V CC= 5V) Package FP-80 FP-80B FP-80A TFP-80F 170 HD44780U HD44780U
in „LCD Display in 4 Bit Modus bringen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.PDF
cycles; 43 to Hz for 1/11 duty cycle) 80 Hz for 1/11 duty cycle) Rfresistance 91 k ±2% 91 k ±2% (when V CC= 5V) 75 k ±2% (when V CC= 3V) Instructions Fully compatible within the HD44780S CPU bus timing 1 MHz 1 MHz (when V = 3V) CC 2 MHz (when V CC= 5V) Package FP-80 FP-80B FP-80A TFP-80F 170 HD44780U HD44780U
in „Datenblatt zu HD44780 1602 LCD Modul Display Anzeigen 2X16 Zeichen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.pdf
cycles; 43 to Hz for 1/11 duty cycle) 80 Hz for 1/11 duty cycle) Rfresistance 91 k ±2% 91 k ±2% (when V CC= 5V) 75 k ±2% (when V CC= 3V) Instructions Fully compatible within the HD44780S CPU bus timing 1 MHz 1 MHz (when V = 3V) CC 2 MHz (when V CC= 5V) Package FP-80 FP-80B FP-80A TFP-80F 170 HD44780U HD44780U
in „Standart LCD per i2c expander betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780u_Datenblatt.pdf
cycles; 43 to Hz for 1/11 duty cycle) 80 Hz for 1/11 duty cycle) Rfresistance 91 k ±2% 91 k ±2% (when V CC= 5V) 75 k ±2% (when V CC= 3V) Instructions Fully compatible within the HD44780S CPU bus timing 1 MHz 1 MHz (when V = 3V) CC 2 MHz (when V CC= 5V) Package FP-80 FP-80B FP-80A TFP-80F 170 HD44780U HD44780U
in „hd44780 / LCD SC1602D / ATmega16 (STK500)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780U.pdf
cycles; 43 to Hz for 1/11 duty cycle) 80 Hz for 1/11 duty cycle) Rfresistance 91 k ±2% 91 k ±2% (when V CC= 5V) 75 k ±2% (when V CC= 3V) Instructions Fully compatible within the HD44780S CPU bus timing 1 MHz 1 MHz (when V = 3V) CC 2 MHz (when V CC= 5V) Package FP-80 FP-80B FP-80A TFP-80F 170 HD44780U HD44780U
in „LCD Initialisierung Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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Datei
daten_display3.txt
1100 0101 1100 0100 (0xC5C4) Word 0x1C 0000 0000 0011 1111 (0x003F) 1100 0110 0000 0110 (0xC606) Word 0x1D 0000 0000 0011 1111 (0x003F) 1100 1000 0000 1011 (0xC80B) Word 0x1E 0000 0000 0011 1111 (0x003F) 1100 1001 1100 1001 (0xC9C9) Word 0x1F 0000 0000 0011 1111 (0x003F) 1100 1011 1100 1010 (0xCBCA) Word 0x20 0000 0000 0011 1111 (0x003F) 1100 1100 0000 1100 (0xCC0C) Word 0x21 0000 0000 0011 1111 (0x003F)
in „Informationen gesucht: 3,3V Display HB24208 für AVR32 / NGW100“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CC5X_Erkenntnisse.pdf
****************************************************/ void ADC(char kanal) { ADCON0 = ADCON0 & 0b.1100.0111; kanal = kanal << 3; ADCON0 = ADCON0 | kanal; delay_us(50); Seite 5 Erkenntnisse zum CC5X-Compiler (beim Umgehen der 1k-Grenze) GO = 1; while(GO); tmp_uebergabe_uns16.low8 = ADRESL; // externes
in „PIC 16F877 EEPROM / CC5X“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S5094873B_PA035-017BM001.pdf
Specifications 6.3.1 Frame Configuration (1) Command Data Frame (CDF) 18bits/frame 0 0 1 0 0 0 EA0 EA1 EA2 CC0 CC1 CC2 CC3 CC4 1/0 1/0 1/0 1 Sync code Frame Encoder address Command code CRC code (EA) (CC) code Start bit Stop bit (2) Memory Data frame (MDF) 18bits/frame 0 0 1 0 FC0 FC1 DA0 DA1 DA2 DA3 DA4 DA5
in „Sanyo Denki Servo Motor Encoder / Kompatibilität Yaskawa, Omron, Panasonic“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX2622-MAX2624.pdf
...........................Operating Temperature Range ...........................-40°C to +85°C 2 CC 6 TUNE, SHDN to GND............................CC...-0.3V to (Vnction Temperature......................................................+150°C OUT to GND...................................CC..........
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PDF
datasheetMax3392.pdf
1, 2)X 9 PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS 3 MAX3372E/MAX3377E (C LOAD = 50pF) 3 X I/O CC _ Rise Time (Note 4) tRVCC 1100 ns I/O CC _ Fall Time (Note 5) tFVCC 1000 ns A I/O L _ Rise Time (Note 4) tRVL 600 ns M I/O V _ Fall Time (Note 5) t 1100 ns – L FVL Propagation Delay I/VL-VCC Driving
in „Max3392 Pegelwandler, BlueNiceCom 4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Soil_Moisture_Sensor_Schematic.pdf
COC3 CU1 C24 7 C26 PI1 GND C 1µ PI531 ISET PIC30 1µ X22 C27 PIU102 PIU101 C28 C P GND PC CX1 1µ 3 1µ CC4 PAD GND CC6 P P PIC30 R26 CX CO2 C2 P PI235 15k GND GND GNP PI20A PPR PI PI P1 P1 3 CHG CR6 4 EN FAST 6 PI232 GND PI23MC34673 PI PI234 PIC30 GND D D Rev Title 221 USB Interface & Power Project Author
in „Pflanzensensor Akkulaufzeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16389fg.pdf
Input Offset Voltage LT1638 N, S Packages 250 800 μV 0°C ≤ A ≤ 70°C l 1000 μV –40°C ≤ TA≤ 85°C l 1100 μV LT1639 N, S Packages 350 900 μV 0°C ≤ A ≤ 70°C l 1100 μV –40°C ≤ TA≤ 85°C l 1200 μV LT1638 MS8 Package 400 1050 μV 0°C ≤ A ≤ 70°C l 1250 μV –40°C ≤ TA≤ 85°C l 1550 μV LT1638 DDPackage 450 1250 μV
in „Alternative gesucht zu OpAmp“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
watchdog.c
#include <C:\Programme\cc5xfree\12f675.h> #include <C:\Programme\cc5xfree\int16Cxx.h> //#include "D:\PTrack\Prog\rfPIC II\interrupt.h" #include "D:\PTrack\Prog\rfPIC II\init.h" //#pragma config |= 0b.0001.1000.0100 // config-bit für Brenner #pragma config |= 0b.0001.1000.1100 // config-bit für Brenner BIT 3: WDT ein int i; void main (void) { init_comp_adc(); init_GPIO2(); init_IR_T0(); PS0=1; //max. Vorteiler PS1=1; PS2=1; while (1) { GPIO.2=1; pausems(1); GPIO.2=0; pausems
in „PIC: Watchdog-Frage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KA2284.pdf
Operating Temperature Topr -20 to +80 °C Storage Temperature Tstg -40 to 125 °C Power dissipation P D 1100 W B B B B B B B 1 KA2284 LINEAR INTEGRATED CIRCUIT SKSROIPRUKBRYUIUROSIPCOPRC (Ta=25 C,Ta=25 C,V CC =6V,f=1kHZ, unless otherwise specified) harcrteics est ymbolVS di eShlTMseslT psTS dm.xS pr▯S nTseS Supply Voltage V CC 3.5 6.0 16.0 V Supply Current CC VIN0 5 8 mA Sensitivity Vin In C3 Level 46 56 66 mV Comparator ON Level 1 V C1 -11.5 -10.0 -8.5 dB Comparator ON Level 2 V -6 -5 -4 dB C2 Comparator ON Level 3 V C3 0
in „Schaltzeichen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
watchdog_int.c
#include <C:\Programme\cc5xfree\12f675.h> #include <C:\Programme\cc5xfree\int16Cxx.h> #pragma config |= 0b.0001.1000.1100 #pragma origin 4 // Der folgende Code steht ab Adresse 4 interrupt InterruptRutine(void) // Interruptroutine
in „PIC: Watchdog (Sleep) in der Interrupt-Routine?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.pdf
VLCD VCC1/5 VLCD V2 VCC1/2 VLCD VCC2/5 VLCD V3 VCC1/2 VLCD VCC3/5 VLCD V4 V –3/4 VLCD V –4/5 VLCD CC CC V5 V –VLCD V –VLCD CC CC V CC(+5 V) VCC (+5 V) VCC VCC R R V1 V1 R V2 R V2 VLCD R VLCD V3 R V3 V4 R V4 R R V5 V5 VR VR –5 V –5 V 1/4 bias 1/5 bias (1/8, 1/11 duty cycle) (1/16, duty cycle) Figure
in „LCD Dotmatrix kaputt“ · Mikrocontroller und Digitale Elektronik ·