-
PDF
ISP_DOC0943.pdf
408) 441-0311 TEL (719) 576-3300 FAX (408) 487-2600 FAX (719) 540-1759 Europe Atmel Rousset Atmel SarL Zone Industrielle Route des Arsenaux 41 13106 Rousset Cedex Casa Postale 80 France CH-1705 Fribourg TEL (33) 4-4253-6000 Switzerland FAX (33) 4-4253-6001 TEL (41) 26-426-5555 FAX (41) 26-426-5500 Atmel
in „ISP Adapter für Atmel über RS232“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AT91SAM9261-EK_Evaluation_Board.pdf
3V3 ETM YELLOW POWER LED N 5V O T U S O PIO T TOUCHSCREEN N CONTROLLER C S X P P S D NRST T H H I L R - - - 1 D M M C O R D D D D S T D D D H H 1V2 3 2 C REG 1V2 VDDCORE S 1 E T S C 1V2 R A I U I S P P E N . E G E H C _ I _ LCD CONTROLLER 1 D B B S I S P N N VDDPLL VDDOSC P S U S S O U 9 N T A U P
in „ARM91SAM9261 Entwickler gesucht -Dringend“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AVR_ISP.pdf
408) 441-0311 TEL (719) 576-3300 FAX (408) 487-2600 FAX (719) 540-1759 Europe Atmel Rousset Atmel SarL Zone Industrielle Route des Arsenaux 41 13106 Rousset Cedex Casa Postale 80 France CH-1705 Fribourg TEL (33) 4-4253-6000 Switzerland FAX (33) 4-4253-6001 TEL (41) 26-426-5555 FAX (41) 26-426-5500 Atmel
in „ATMEGA 2560“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ISP_Programmerdoc0943.pdf
408) 441-0311 TEL (719) 576-3300 FAX (408) 487-2600 FAX (719) 540-1759 Europe Atmel Rousset Atmel SarL Zone Industrielle Route des Arsenaux 41 13106 Rousset Cedex Casa Postale 80 France CH-1705 Fribourg TEL (33) 4-4253-6000 Switzerland FAX (33) 4-4253-6001 TEL (41) 26-426-5555 FAX (41) 26-426-5500 Atmel
in „RS232 <--> RS485“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ISP-adapter.pdf
408) 441-0311 TEL (719) 576-3300 FAX (408) 487-2600 FAX (719) 540-1759 Europe Atmel Rousset Atmel SarL Zone Industrielle Route des Arsenaux 41 13106 Rousset Cedex Casa Postale 80 France CH-1705 Fribourg TEL (33) 4-4253-6000 Switzerland FAX (33) 4-4253-6001 TEL (41) 26-426-5555 FAX (41) 26-426-5500 Atmel
in „ISP Programmer mit max232“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Powermeter.pdf
swapped, the current in the live wire is less than that in the neutral. Figure 9. Partial Earth Fault. L N METER ITOT I1 R L1 I2 R L1 LOAD The firmware constantly monitors current flow in both wires and signals an earth fault if the magnitude difference between the two exceeds a given a threshold. The threshold
in „230V Leistung erfassen mit ATmega128“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
volt230.pdf
swapped, the current in the live wire is less than that in the neutral. Figure 9. Partial Earth Fault. L N METER ITOT I1 R L1 I2 R L1 LOAD The firmware constantly monitors current flow in both wires and signals an earth fault if the magnitude difference between the two exceeds a given a threshold. The threshold
in „Netzteil ohne Trafo“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
energymeter.pdf
swapped, the current in the live wire is less than that in the neutral. Figure 9. Partial Earth Fault. L N METER ITOT I1 R L1 I2 R L1 LOAD The firmware constantly monitors current flow in both wires and signals an earth fault if the magnitude difference between the two exceeds a given a threshold. The threshold
in „Leistungsmessung über Shunt?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
doc2566.pdf
swapped, the current in the live wire is less than that in the neutral. Figure 9. Partial Earth Fault. L N METER ITOT I1 R L1 I2 R L1 LOAD The firmware constantly monitors current flow in both wires and signals an earth fault if the magnitude difference between the two exceeds a given a threshold. The threshold
in „Cadsoft Eagle“ · Platinen ·
-
PDF
AVR911.pdf
for EEPROM or b for both. Can be used with –p<t> or alone. Corresponding input files are required. -l<value> Set lock byte. value is an 8-bit hex value. -L<value> Verify lock byte. value is an 8-bit hex value to verify against. -y Read back lock byte. -f<value> Set fuse bytes. value is a 16-bit hex value
in „AVR911: Das Ende aller Leiden?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DSAIH000309343.pdf
the 4-gray scale display and the binary display. (i) When the display mode is a 4 gray-scale mode: L7 L6 L5 L4 L3 L2 L1 L0 Line address 0 0 0 0 0 0 0 0 00H 0 0 0 0 0 0 0 1 01H ↓ ↓ 0 1 0 0 1 1 1 0 4EH 0 1 0 0 1 1 1 1 4FH Register setting at 50H or higher is not allowed. (ii) When the display mode is binary: L7 L6 L5 L4 L3 L2 L1 L0 Line address 0 0 0 0 0 0 0 0 00H 0 0 0 0 0 0 0 1 01H ↓ ↓ 1 0 0 1 1 1 1 0 9EH 1 0 0 1 1 1 1 1 9FH Register setting atA0H or higher is not allowed. 36 EPSON S1D15721 Series Technical
in „Pollin Display VL-FS-COG-VLGEM1277-01“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AT89S8253-24PU.pdf
H L H 12V L L L H H DO ADDR Bit - 1 D0 = 0 X (2)(4) Write Lock Bits Bit - 2 H L 1.0 µs 12V H L H H L D1 = 0 X Bit - 3 D2 = 0 X Bit - 1 D0 X Read Lock Bits Bit - 2 H L H 12V H H H L L D1 X Bit - 3 D2 X Page Write(3)(4)(5) User Row H L 1.0 µs 12V H L H H H DI 0 - 3FH Read User Row H L H 12V L L H L H DO 0 - 3FH Read Sig. Row H L H 12V L L H L L DO 0 - 3FH SerialPrgEn D0 = 0 X Fuse1 } SerialPrgDis D0 = 1 X x2 ClockEn D1 = 0 X Fuse2
in „AT89S8253-24PU ersetzen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
atmega_328.pdf
M NOTE: Bottom pad should be soldered to ground. 0 1 1 A B S O A 2 O 1 S A 4 / I NI C C C O IS C T L T / 2 N 0 / A3 / / / / M/ / IN / I 2 O C C 0 2 K 1 S 2 T 2 P 0T P I 3 ( 1 C N L N / C I T ( I ( C N 2 2 IC 0 C T / C I C ( C N 2 ( T ( I T ( P ( ( C N I P I ( ( C P ( C ( ( ( 2 8271BS–AVR–04/10 ATmega48A
in „1 Wire mit Atmega328“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATS2503.pdf
BI / PD50k bus Bit3 of ext. memory D3 BI L Hold data bus 56 7mA Bit3 of General GPIO_D3 BI / purpose I/O port D Bit3 of General GPIO_A4 BI / purpose I/O port B 57 15mA DSU enable (active ICEEN- I H PU100k low) Bit2 of ext. memory D2 BI L Hold
in „Hilfe gesucht zum IC "ATS2503"“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATTiny15L.pdf
identifies the device. The three bytes reside in a separate address space, and for the ATtiny15L they are: 1. $000 : $1E (indicates manufactured by Atmel). 2. $001 : $90 (indicates 1 Kb Flash memory). 3. $002 : $06 (indicates ATtiny15L device when $001 is $90). 54 ATtiny15L 1187G–AVR–06/07 ATtiny15L
in „ATtiny 15 Datenblatt nicht auffindbar??“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
doc6241-1369051.pdf
R F DTXD E A DTXD S T DBGU DRXD DRXD NRST NRST D 3 2 TXD TXD0 L M S RXD RXD0 TWCK SCL NOT I O R COM0 RTS RTS0 TWD SDA POPULATED R P CTS CTS0 S E E USBCNX PC19 03 - MEMORY S DEVICE DDM DDM U DDP DDP EXPANSION CONNECTORS D[0..31] 05 - COMMUNICATION A[0..22] RMII_MII
-
PDF
ATMEGA88-DB.pdf
Register A Low Byte 133 (0x87) ICR1H Timer/Counter1 - Input Capture Register High Byte 134 (0x86) ICR1L Timer/Counter1 - Input Capture Register Low Byte 134 (0x85) TCNT1H Timer/Counter1 - Counter Register High Byte 133 (0x84) TCNT1L Timer/Counter1 - Counter Register Low Byte 133 (0x83) Reserved – – – –
in „Schieberegister SN54HC595 mit Atmel atmega 88 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
CMD_bm002_bm201.lst
01 CP 01H 2716 1323 C0 RET NZ 2717 1324 79 LD A,C 2718 1325 CB 7E BIT 7,(HL) 2719 1327 20 05 JR NZ,L0394 2720 1329 FE 51 CP 51H 2721 132B 30 04 JR NC,L0395 2722 132D C9 RET 2723 132E FE 27 L0394: CP 27H 2724 1330 D0 RET NC 2725 1331 78 L0395: LD A,B 2726 1332 91 SUB C 2727 1333 CB FF SET 7,A 2728 1335
in „DDR Schach-Computer Chess Master Diamond reparieren (Dauerton)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AVR309_doc2556.pdf
VSE(max) VSE (min) VOL(max) V SS Figure 3. Low Speed Device Cable and Resistor Connections R 2 D+ D+ L.S. USB F.S./L.S. USB Transceiver R1 Untwisted, Unshielded Transceiver D- D- Slow Slew Rate 3 Meters max. Buffers R 1 R1=15kΩ Host or R2=1.5kΩ Hub Port Low Speed Function The USB device connection and
in „Programmer incl. neuem Code für Atmel AN910“ · Projekte & Code ·
-
PDF
Tiny12.pdf
Packages – 8-pin PDIP and SOIC Operating Voltages – 1.8 - 5.5V for ATtiny12V-1 – 2.7 - 5.5V for ATtiny11L-2 and ATtiny12L-4 – 4.0 - 5.5V for ATtiny11-6 and ATtiny12-8 Speed Grades – 0 - 1.2 MHz (ATtiny12V-1) – 0 - 2 MHz (ATtiny11L-2) – 0 - 4 MHz (ATtiny12L-4) – 0 - 6 MHz (ATtiny11-6) – 0 - 8 MHz (ATtiny12
in „ATTiny12 uns SPI?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATTINY11_ATTINY12_ATM.pdf
Packages – 8-pin PDIP and SOIC Operating Voltages – 1.8 - 5.5V for ATtiny12V-1 – 2.7 - 5.5V for ATtiny11L-2 and ATtiny12L-4 – 4.0 - 5.5V for ATtiny11-6 and ATtiny12-8 Speed Grades – 0 - 1.2 MHz (ATtiny12V-1) – 0 - 2 MHz (ATtiny11L-2) – 0 - 4 MHz (ATtiny12L-4) – 0 - 6 MHz (ATtiny11-6) – 0 - 8 MHz (ATtiny12
in „Attiny12 Datenblatt?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DOC1619.PDF
decoupling capacitor. Figure 6. Decoupling with Series Inductor Vcc Power Plane Microcontroller I= L I= Vcc V= C Loop Current Out GND Ground Plane 10 AVR040 1619B–AVR–05/02 AVR040 PCB Layout and Grounding Current Loops and Signal Current can only flow in loops. This is true for signals as well as for
in „Spannungsstabilisierung/Entstörung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
DOC1619_EMC_Design_Considerations.PDF
decoupling capacitor. Figure 6. Decoupling with Series Inductor Vcc Power Plane Microcontroller I= L I= Vcc V= C Loop Current Out GND Ground Plane 10 AVR040 1619B–AVR–05/02 AVR040 PCB Layout and Grounding Current Loops and Signal Current can only flow in loops. This is true for signals as well as for
in „[Atmega8] Überempfindliche störanfälle Schaltung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DOC1619.PDF
decoupling capacitor. Figure 6. Decoupling with Series Inductor Vcc Power Plane Microcontroller I= L I= Vcc V= C Loop Current Out GND Ground Plane 10 AVR040 1619B–AVR–05/02 AVR040 PCB Layout and Grounding Current Loops and Signal Current can only flow in loops. This is true for signals as well as for
in „Attiny im Dauerbetrieb“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DOC1619.PDF
decoupling capacitor. Figure 6. Decoupling with Series Inductor Vcc Power Plane Microcontroller I= L I= Vcc V= C Loop Current Out GND Ground Plane 10 AVR040 1619B–AVR–05/02 AVR040 PCB Layout and Grounding Current Loops and Signal Current can only flow in loops. This is true for signals as well as for
in „ATtiny 13 und 45 habens Programm vergessen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AT89C51ED2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0LCCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1LCCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2LCCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3LCCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „Einstieg in die C-Programmerung für µC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „Kleine 8051 Fragen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „8051: Oszillatorfrequenz und Maschinenzyklus“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „EEPROM schreiben/lesen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „Temperatur ohne AD-Eingang messen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „Displaybeleuchtung faden ohne Analog I/O“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „Displaybeleuchtung mit PWM dimmen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „8051: An Port 0 kann nichts ausgegeben werden“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „8051: An Port 1 nur 3.5V anstatt 5V ?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51rd2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „Alternative Funktion von Pins“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „Frequenz für µC AT89C51ED2“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATtiny.pdf
QuickFlash OTP Version of ATtiny11 Operating Voltages – 1.8 - 5.5V (ATtiny12V-1) – 2.7 - 5.5V (ATtiny11L-2 and ATtiny12L-4) – 4.0 - 5.5V (ATtiny11-6 and ATtiny12-8) Speed Grades – 0 - 1 MHz (ATtiny12V-1) – 0 - 2 MHz (ATtiny11L-2) – 0 - 4 MHz (ATtiny12L-4) – 0 - 6 MHz (ATtiny11-6) – 0 - 8 MHz (ATtiny12-8
in „Tiny 11 ,was ist davon zu halten?“ · PC Hard- und Software ·
-
PDF
at89c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAPCCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAPCCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAPCCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAPCCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0 CCAP4L EEh PCA Compare Capture Module
in „SCL Takt generieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at89c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAPCCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAPCCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAPCCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAPCCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0 CCAP4L EEh PCA Compare Capture Module
in „SCL Takt generieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
doc1925.pdf
[-of outfile] [-oe outfile] [-s] [-O] [-Sf addr] [-Seaddr] [-e] [-p f|e|b] [-r f|e|b] [-v f|e|b] [-l value] [-L value] [-y] [-f value] [-E value] [-F value] [-G value] [-q] [-x value] [-af start,stop] [-ae start,stop] [-c port] [-ut value] [-ua value] [-wt] [-wa] [-b h|s] [-! freq] [-t] [-g] [-z] [-
in „STK500 als ISP“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
stk500.pdf
[-of outfile] [-oe outfile] [-s] [-O] [-Sf addr] [-Seaddr] [-e] [-p f|e|b] [-r f|e|b] [-v f|e|b] [-l value] [-L value] [-y] [-f value] [-E value] [-F value] [-G value] [-q] [-x value] [-af start,stop] [-ae start,stop] [-c port] [-ut value] [-ua value] [-wt] [-wa] [-b h|s] [-! freq] [-t] [-g] [-z] [-
in „STK500 mit Breadboard“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Atmel_8051__Cs.pdf
i i i P A + R 0 C 1 R 1 A 1 A . A 1 A , r 2 , 2 , 2 + 2 @ 2 A 2 P 2 C , C = B = , 2 R 2 x R 1 R - L 1 L - d 3 d 3 d 3 A 1 A 1 , 1 D 1 P - L 1 T 1 X 1 X 1 R R 1 R R 1 L L L @ C A C C 1 C 1 S 1 V V R A X P V V I O O O J M O M M M 0 e d i i C i t R 0 o c I i i i , , i , b b b , R 2 c - L - E - E - d -
in „serielle Ausgaben auf AT89S52 Baud-Raten-Generator startet nicht“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
vle-gcc-0905c.diff
match_operand:TF 0 "register_operand" "+r,&r") 8) @@ -2402,7 +2402,7 @@ "TARGET_E500_DOUBLE" "@ evmergelo %L0,%1,%L0 - evmergelohi %L0,%L0,%L0\;lwz%U1%X1 %L0,%1\;evmergelohi %L0,%L0,%L0" + evmergelohi %L0,%L0,%L0\;%e0lwz%U1%X1 %L0,%1\;evmergelohi %L0,%L0,%L0" [(set_attr "length" "4,12")]) (define_insn "*mov_sitf_e500_subreg8_2" @@ -2411,7 +2411,7 @@ "TARGET_E500_DOUBLE" "@ evmergehi %0,%0,%L1 - evmergelohi %L1,%L1,%L1\;stw%U0%X0 %L1,%0" + evmergelohi %L1,%L1,%L1\;%e0stw%U0%X0 %L1,%0" [(set_attr "length" "4,8")]) (define_insn "*mov_sitf_e500_subreg12" @@ -2420,7 +2420,7 @@ "TARGET_E500_DOUBLE
in „Toolchain für PowerPC mit VLE“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATtiny26.pdf
Figure 64. Parallel Programming Timing, Including some General Timing Requirements Characteristics X LW L X H X L XTAL1 D V X H tX LD X Data & Contol (DATA, XA0, XA1/BS2 PAGEL/BS1) tB V W L W LW H W LB X WR W LR L RDY/BSY tW LR H 118 ATtiny26(L) 1477K–AVR–08/10 ATtiny26(L) (1) Figure 65. Parallel Programming
in „ATtiny26(L) Analog-Digital-Wandler ( ADC ) Datenblattübersetzung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AVR040_EMC_Design_Considerations.pdf
decoupling capacitor. Figure 6. Decoupling with Series Inductor Vcc Power Plane Microcontroller I= L I= Vcc V= C High Current Out Loop GND Ground Plane 10 AVR040 1619C–AVR–01/04 AVR040 PCB Layout and Grounding Current Loops and Signal Current can only flow in loops. This is true for signals as well
in „Anfängerfrage: Wofür Kondensatoren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
EMC_Design_Consideration_AVR_doc1619.pdf
decoupling capacitor. Figure 6. Decoupling with Series Inductor Vcc Power Plane Microcontroller I= L I= Vcc V= C High Current Out Loop GND Ground Plane 10 AVR040 1619C–AVR–01/04 AVR040 PCB Layout and Grounding Current Loops and Signal Current can only flow in loops. This is true for signals as well
in „Servo Ansteuerung mit ATMega128“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
EPROM_0000_7FFF.lst
1444 20 20 JR NZ,L0343 2718 1446 2D DEC L 2719 1447 04 INC B 2720 1448 3A CF D3 L0062: LD A,(0D3CFH) 2721 144B E6 01 AND 01H 2722 144D C0 RET NZ 2723 144E DB 01 IN A,(01H) 2724 1450 CB EF SET 5,A 2725 1452 D3 01 OUT (01H
in „Hilfe bei Z80 Opcodes“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Eeprom_2.txt
1444 20 20 JR NZ,L0343 2718 1446 2D DEC L 2719 1447 04 INC B 2720 1448 3A CF D3 L0062: LD A,(0D3CFH) 2721 144B E6 01 AND 01H 2722 144D C0 RET NZ 2723 144E DB 01 IN A,(01H) 2724 1450 CB EF SET 5,A 2725 1452 D3 01 OUT (01H
in „Hilfe bei Z80 Opcodes“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
stm32f10x_rcc.lst
002c 042B cmp r3, #4 1129 002e 07D0 beq .L77 1130 0030 082B cmp r3, #8 1131 0032 09D0 beq .L78 ARM GAS C:\Users\bartzick\AppData\Local\Temp\ccBSPTDa.s page 32 1132 0034 002B cmp r3, #0 1133 0036 35D1 bne .L83 1134 .L76: 637:lib/stm32f10x_rcc.c
in „Seltsame Initialisierungen und Abstürze.“ · Mikrocontroller und Digitale Elektronik ·