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MC9S08MM128RM.pdf
Flash Clock Divider Settings Bus PRDIV8 DIV fFCLK Program/Erase Timing Pulse (Binary) (Decimal) (5 s Min, 6.7s Max) 20 MHz 1 12 192.3 kHz 5.2 s 10 MHz 0 49 200 kHz 5 s 8 MHz 0 39 200 kHz 5 s 4 MHz 0 19 200 kHz 5 s 2 MHz 0 9 200 kHz 5 s 1 MHz 0 4 200 kHz 5 s 200 kHz 0 0 200 kHz 5 s 150 kHz 0
in „Freescale s08mm128 und USB“ · Mikrocontroller und Digitale Elektronik ·
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GIMP_Handbuch_de.pdf
Ebene aufzubringen und die Ebene auf Pixelebene zu transformieren. 2.3.7.3. Pfade und SVG Dateien Das K urzel SVG steht fur S”alable Vector Graphics“ und ist ein Dateiformat zur Speicherung skalier- barer Vektorgrafiken. Ein Dateiformat ubrigens, welches zunehmend an Bedeutung gewinnt. Grafiken werden dabei
in „Wie zwei Bilder wie Folien übereinanderlegen ?“ · PC Hard- und Software ·
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Datei
devlist.txt
27S19 . . . . . .2) 4100 D1,P1 27S191 . . . . .2) 4117 D1,P3 27S20 . . . . . .2) 4101 D1,P1 27S21 . . . . . .2) 4102 D1,P1 27S23 . . . . . .2) 4119 D1,P1 27S28 . . . . . .2) 4103 D1,P1 27S281 . . . . .2)
in „PROM lesen /schreiben / Programmiergerät“ · Mikrocontroller und Digitale Elektronik ·
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GM47_Integrators_Manual_R1C.pdf
to BEARP and BEARN. Ear piece model Impedance Tolerance Dynamic ear piece [32Ω + 800µH] // 100pF ±20% Dynamic ear piece [150Ω+ 800µH] // 100pF ±20% Piezo ear piece 1kΩ + 60nF ±20% 51 LZT 123 7263 R1C GM47/GM48 INTEGRATOR’S MANUAL 2.7 PCM Digital Audio Pin Signal Dir Function 52 PCMCLK O PCM clock 51
in „GM47 GSM Spannungsversorgung aus LiIo-Akku“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmega1284P_128KByte.pdf
doesn't restart the counter, an interrupt or system reset will be issued. Figure 11-7. Watchdog Timer 128kHz OSCILLATOR / / K/K6K 2 4 K8K6K 2 4 C C C C C C/ / / / 0 O O O S S S S S S C O O O O O O S O WDP0 WDP1 WATCHDOG WDP2 RESET WDP3 WDE MCU RESET WDIF WDIE INTERRUPT In Interrupt mode, the WDT gives an
in „ATmega1284P versus ohne P“ · Mikrocontroller und Digitale Elektronik ·
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Datei
gdb_log.txt
00001551-000E: - Verified OK 03-00000000-00-00001551-002C: Downloading 15888 bytes @ address 0x0800FD20 02-00000000-00-00001551-00A2: TBA7FC700 001:552 JLINK_WriteMem(0x0800FD20, 0x3E10 Bytes, ...) - Data: 93 60 20 68 82 68 23 6C 01 3B 21 6D 0B 43 A1 6C ... returns 0x3E10 (0000ms, 0780ms total) 02-00000000-00-00001551-00D4: TBA7FC700 001:552 JLINK_ReadMem (0x0800FD20, 0x3E10 Bytes, ...) -- Read from flash cache (15888 bytes @ 0x0800FD20) - Data: 93 60 20 68 82 68 23 6C 01 3B 21 6D 0B 43 A1 6C ... returns 0x00 (0000ms, 0780ms total) 03-00000000-00-00001551-000E: -
in „Problem mit Breakpoints (Eclipse + JLink)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mega644.pdf
PD0 PC6 (TOSC1/PCINT22) (PCINT25/TXD0) PD1 PC5 (TDI/PCINT21) (PCINT26/RXD1/INT0) PD2 PC4 (TDO/PCINT20) 3 4 5 6 7 C D 0 1 2 3 P P P P P C N P P P P ) ) ) ) ) V G ) ) ) ) T 1 1 P 2 L A K S I C C / C / S T T 1 / / 2 / 6 7 8 9 D K 2 C 3 T T T T / C T / T I I I I 7 / I 3 I P C C C T 2 PC T P ( ( ( ( I N (
in „AVR Controller braucht zu viel Strom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DM00135183.pdf
S S I S S R R R R R R R [4:0] R R R [4:0] S S T I I I I S S Reset value 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 N N N N N N N E K K E E K K C C C RCC_CK s s s s s s s s s s s s s s s s s s s s s s s s s
in „STM32F446 FMP I2C kein Open Drain möglich?!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Verlauf.txt
:1952 stlink_usb_open(): 50 kHz Debug: 270 94 stlink_usb.c:1952 stlink_usb_open(): 25 kHz Debug: 271 94 stlink_usb.c:1952 stlink_usb_open(): 15 kHz Debug: 272 94 stlink_usb.c:1952 stlink_usb_open(): 5 kHz Info : 273 94 stlink_usb.c:1759 stlink_speed(): Stlink adapter speed set to 950 kHz Debug: 274 94 stlink_usb.c:1973 stlink_usb_open(): Using TAR autoincrement: 4096 Debug: 275 94 hla_interface.c:129 hl_interface_execute_queue(): hl_interface_execute_queue: ignored Debug: 276 94 core.c
in „SW4STM32 hängt bei in procedure 'ocd_bouncer'“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc7593.pdf
modes – Interrupt – System Reset – Interrupt and System Reset Selectable Time-out period from 16ms to 8s Possible Hardware fuse Watchdog always on (WDTON) for fail-safe mode Figure 8-7. Watchdog Timer 128kHz OSCILLATOR / / / 6 2 K4K8K 6 2 4 S S S C C C/ / / / 1 O O O O O O S S S C O O O O WDP0 WDP1 WATCHDOG
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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PDF
an_06-65.pdf
regulators or SCR Annealed Copper preregulatorsalso include circuitelements which control AWG (B &S) Resistance @ 20°C Nominal current the turn-on characteristics ao that the SCR's will not WIRE SIZE milliohms/ft rating (amps)* have to withstand large current surges when AC power 22 16.1 5 20 10.2
in „HP 6966A Schaltplan / Manual“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCS12COREUG.pdf
’……“ƒ•Œ…@s…•‰ƒ•Ž„•ƒ”•’L@iŽƒN Core User Guide Ñ S12CPU15UG V1.2 Table 11-3 Allocated RAM Memory Space ram_sw2:ram_sw0 Allocated RAM Space RAM mappable region INITRM bits used 101 12k Byte 16k Byte RAM15-RAM14 110
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmel-42005-8-and-16-bit-AVR-Microcontrollers-XMEGA-E_Manual.pdf
clSYS RTCSRC System Clock Multiplexer (SCLKSEL) 3 3 3 PLL I I I D D D PLLSRC 4 4 I I XOSCSEL D D 32 kHz 32.768 kHz 32.768 kHz 0.4 – 16 MHz 32 MHz 8 MHz Int. ULP Int. OSC TOSC XTAL Int. Osc Int. Osc ] C C L L [ S S T T C T T X X P 7.3 Clock Distribution Figure 7-1 presents the principal clock distribution
in „ATxmega8E5 - ADC Gain Korrektur“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Daten.txt
GP51 [ ] [ ] GP64 [ ] [ ] G31O [ ] [ ] ACIR [ ] PCMD PMIO [ ] INPM DAPM [ ] [ ] TM1E TM2E [ ] [ ] TM1S TM2S [ ] [ ] SLPS [ ] [ ] CLPS [ ] EV0S EV1S [ ] [ ] PWDE [ ] [ ] MKME PI3E PI2E PI1E PI0E [ ] MKMS PI3S PI2S PI1S PI0S [ ] P1EB [ ] [ ] GV6P GV7P EV0C EV1C [ ] GM0P GM1P GM2P GM3P GM8P [ ] GM4P GM5P
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ATMega_48_88_168.pdf
modes – Interrupt – System Reset – Interrupt and System Reset Selectable Time-out period from 16ms to 8s Possible Hardware fuse Watchdog always on (WDTON) for fail-safe mode Figure 22. Watchdog Timer 128kHz OSCILLATOR K K K K K K K K K K C C C/ / / / 1 2 5 0 O O OS S S CS C C/ C / O O O O OS O S O WDP0
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SH7709.pdf
Data bus / input/output port A 25 J3 D21/PTA[5] I/O Data bus / input/output port A 9 Table 1.3 SH7709S Pin Function (cont) Number of Pins FP-208C BP-240A Pin Name I/O Description FP-208E 26 K2 D20/PTA[4] I/O Data bus / input/output port A 27 K3 Vss — Power supply (0 V) — K4 Vss — Power supply (0 V) 28
in „HD6417709A F133B“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SD-Card-FAT32_SDHC.diff
[32]; +#ifdef DEBUG_FAT16 + debug(S_PSTR("fat16_read_header")); +#endif +#endif + if(!fs) return 0; @@ -294,9 +342,20 @@ return 0; /* read fat parameters */ +#if FAT32_SUPPORT + static uint8_t buffer[42]; + uint32_t root_cluster = 0; +
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PDF
DM00031020.pdf
S S S S S 0x20 STR e C R e 2 1 e 3 2 R15 T T T T e 3 R2 e G e 1 1 1 7 R6R5R 4 R3 2 e A W e A A e C C C R R R R e P P e W e M M M I M MIMIM I MI I R D P R C C R I I I U U U U A R S S R W R T T T T T T T
in „fsmc am stm32f4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
r_manuel.pdf
S S S S S 0x20 STR e C R e 2 1 e 3 2 R15 T T T T e 3 R2 e G e 1 1 1 7 R6R5R 4 R3 2 e A W e A A e C C C R R R R e P P e W e M M M I M MIMIM I MI I R D P R C C R I I I U U U U A R S S R W R T T T T T T T
in „Hilfe bei Programmierung STM32F407VG bei TIM1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega164_324_644_1284pa.pdf
PD0 PC6 (TOSC1/PCINT22) (PCINT25/TXD0) PD1 PC5 (TDI/PCINT21) (PCINT26/RXD1/INT0) PD2 PC4 (TDO/PCINT20) 3 4 5 6 7 C D 0 1 2 3 P P P P P C N P P P P ) ) ) ) ) V G ) ) ) ) T 1 1 P 2 L A K S I C C / C / S / T 1 / / 2 / 6 7 8 9 D K 2 C 3 T T T T / C T / T I I I I 7 / I 3 I P C C C T 2 P N P ( ( ( ( I N (
in „Hilfe bei AD-Wandler!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BeagleBoneBlack_Rev_C.pdf
BeagleBone Black Features Features SitaraAM3358BZCZ100 Processor 1GHz, 2000 MIPS Graphics Engine SGX530 3D, 20M Polygons/S SDRAM Memory 512MB DDR3L 800MHZ Onboard Flash 4GB, 8bit Embedded MMC PMIC TPS65217C PMIC regulator and one additional LDO. Debug Support Optional Onboard 20-pin CTI JTAG, Serial Header Power
in „BeagleboneBlack: Sensor über I2C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
irmp.c
', 'ß', 'Ž', 0, '\b', '\t','q', 'w', 'e', 'r', 't', 'z', 'u', 'i', 'o', 'p', 'ü', '+', 0, 0, 'a', 's', 'd', 'f', 'g', 'h', 'j', 'k', 'l', 'ö', 'ä', '#', '\r', 0, '<', 'y', 'x', 'c', 'v', 'b', 'n', 'm', ',', '.', '-', 0, 0, 0, 0, 0, ' ', 0, 0, 0, '°', '!', '"', '§', '$', '%', '&', '/', '(', ')', '=', '?', '`', 0, '\b', '\t','Q', 'W', 'E', 'R', 'T', 'Z', 'U', 'I', 'O', 'P', 'Ü', '*', 0, 0, 'A', 'S', 'D', 'F', 'G', 'H', 'J', 'K', 'L', 'Ö', 'Ä', '\'','\r', 0, '>', 'Y', 'X', 'C', 'V', 'B', 'N', 'M', ';', ':', '_', 0, 0, 0, 0, 0, ' ', 0, 0 }; static uint8_t state; uint8_t key = 0; switch (cmd) { case
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
irmp.c
', 'ß', 'Ž', 0, '\b', '\t','q', 'w', 'e', 'r', 't', 'z', 'u', 'i', 'o', 'p', 'ü', '+', 0, 0, 'a', 's', 'd', 'f', 'g', 'h', 'j', 'k', 'l', 'ö', 'ä', '#', '\r', 0, '<', 'y', 'x', 'c', 'v', 'b', 'n', 'm', ',', '.', '-', 0, 0, 0, 0, 0, ' ', 0, 0, 0, '°', '!', '"', '§', '$', '%', '&', '/', '(', ')', '=', '?', '`', 0, '\b', '\t','Q', 'W', 'E', 'R', 'T', 'Z', 'U', 'I', 'O', 'P', 'Ü', '*', 0, 0, 'A', 'S', 'D', 'F', 'G', 'H', 'J', 'K', 'L', 'Ö', 'Ä', '\'','\r', 0, '>', 'Y', 'X', 'C', 'V', 'B', 'N', 'M', ';', ':', '_', 0, 0, 0, 0, 0, ' ', 0, 0 }; static uint8_t state; uint8_t key = 0; switch (cmd) { case
in „ATmega resettet dauernd“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_ATmega32.pdf
TypicalTime-out TypicalTime-out WDP2 WDP1 WDP0 Oscillator Cycles at VCC = 3.0V at VCC = 5.0V 0 0 0 16K (16,384) 17.1 ms 16.3 ms 0 0 1 32K (32,768) 34.3 ms 32.5 ms 0 1 0 64K (65,536) 68.5 ms 65 ms 0 1 1 128K (131,072) 0.14 s 0.13 s 1 0 0 256K (262,144) 0.27 s 0.26 s 1 0 1 512K (524,288) 0.55 s 0.52 s 1
in „Anschwingvorgang µC & Quarz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
R6581.txt
HxL %Hx h/. ;@N xHxL HxL %Hx ;FN xHxL HxL %Hx \/. 4-F -n 4-F 4-F $-n 4-F 4-F ``-n 4-F N^Nu? =@X $tS 9@X rGE9@X \)@ X:S 3333A. e@# _@X Jw@ fffAc tP> ?P`4 xB0 =>z )b> j?Pb $tS 9>z r{? ?PbHt rGE9>z 5D^?PbMI X:S K?PbM e@# _NV N"y fHHn h"y OlH/ HxL Ol /< jf$"y HxX OlLN jf$"y HxX >"y b/< Ln/< p/< v/< @,P
in „Hilfe bei Disassembler 68000 Binary“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NEP_2037_2045_Bestaetigung.pdf
Regel dann als erforderlich, wenn sie zu einem Zeitpunkt des jeweils betrachteten Jahres zu mindestens 20 % ausgelastet ist. In der Regel würde eine Auslastung von 20 % bei einer typischen Netzausbaumaßnahme (380 kV-Doppelleitung mit 4000 A) einem Lastfluss von gut 1000 MW entsprechen. Ein solcher Lastfluss
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PDF
Driver_Library_user_guide.pdf
MPU_RGN_SIZE_32B MPU_RGN_SIZE_64B MPU_RGN_SIZE_128B MPU_RGN_SIZE_256B MPU_RGN_SIZE_512B MPU_RGN_SIZE_1K MPU_RGN_SIZE_2K MPU_RGN_SIZE_4K MPU_RGN_SIZE_8K MPU_RGN_SIZE_16K MPU_RGN_SIZE_32K MPU_RGN_SIZE_64K MPU_RGN_SIZE_128K MPU_RGN_SIZE_256K 144 October 30, 2008 Stellaris Peripheral Driver Library User’s
in „I2C Display Steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmega2560_2561.pdf
) cycles 1.0 s 0 1 1 1 256K (262144) cycles 2.0 s 1 0 0 0 512K (524288) cycles 4.0 s 1 0 0 1 1024K (1048576) cycles 8.0 s 1 0 1 0 1 0 1 1 1 1 0 0 Reserved 1 1 0 1 1 1 1 0 1 1 1 1 68 ATmega640/1280/1281/2560/2561 2549I–AVR
in „Ethernet Buchse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R8C22-23_Group_Hardware_Manual.pdf
oscillator, the fOCO- S can be provided. When the WAIT instruction is executed or in count source protect mode of the watchdog timer, the clock fOCO-S does not stop. Rev.2.00 Aug 20, 2008 Page 81 of 501 REJ09B0251-0200 R8C/
in „Fragen zu Renesas µC (R5F2122CKFP)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
foo.dwarf-3.txt
string "PSRSYNC 0" .LASF299: .string "__USA_IBIT__ 16" .LASF242: .string "__ACCUM_EPSILON__ 0x1P-15K" .LASF898: .string "_VA_LIST_ " .LASF1075: .string "EEDR _SFR_IO8(0X20)" .LASF663: .string "roundlk __builtin_avr_roundlk" .LASF587: .string "ACCUM_MIN" .LASF920: .string "_FDEV_SETUP_WRITE __SWR" .LASF593
in „Simple C Frage zum Typ enum“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega16.pdf
TypicalTime-out TypicalTime-out WDP2 WDP1 WDP0 Oscillator Cycles at VCC = 3.0V at VCC = 5.0V 0 0 0 16K (16,384) 17.1 ms 16.3 ms 0 0 1 32K (32,768) 34.3 ms 32.5 ms 0 1 0 64K (65,536) 68.5 ms 65 ms 0 1 1 128K (131,072) 0.14 s 0.13 s 1 0 0 256K (262,144) 0.27 s 0.26 s 1 0 1 512K (524,288) 0.55 s 0.52 s 1
in „DCF auf INT0“ · Mikrocontroller und Digitale Elektronik ·
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H8-325.pdf
P45/TMRI1 14 35 P2 /A12 P46/ø 15 34 P2 /A13 P47/E 16 33 P2 /A14 1 1 1 2 2 2 2 2 2 2 2 2 2 3 3 3 0 0 K 1 1 K / S Y S S R D I C 1 x x C x x C 0 / U / 4 / /R A V / / / / / / / P 7 / 7 7 7 7 / 2 5 5 5 35 5 5 P 7 P P P P 7 P P P P P P P P P Figure 1-3. Pin Arrangement (FP-64A, Top View) Fig. 1-3 7 • PLCC-
in „Programmer für HD6473258P10 selber bauen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
User_guide_-_Driver.pdf
clock master or slave. I2S_CONFIG_SAMPLE_SIZE_32, _24, _20, _16, or _8 to select the number of bits per sample. I2S_CONFIG_WIRE_SIZE_32, _24, _20, _16, or _8 to select the number of bits per word that are transferred on the data
in „PCF8574 mit LM3S8938 per I2C auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmel-8393-mcu_wireless-atmega256rfr2-atmega128rfr2-atmega64rfr2_datasheet.pdf
in the Different Sleep Modes Active Clock Domains Oscillators Wake-up Sources d r 2 e l a i e M p n k a i P s n O u u r H c n s n r u P e C i U S C Y l E O d a e d C E n I l e P L D S C r e b : n A h e / d I r b s Sleep k k k k k a u m a T a I a m M a C D h m a Mode c c c c c M s T E I C T M T S R A
in „AVR-Verlustleistung maximieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmega128_doc2467.pdf
TypicalTime-out TypicalTime-out WDP2 WDP1 WDP0 Oscillator Cycles at VCC= 3.0V at VCC= 5.0V 0 0 0 16K (16,384) 14.8 ms 14.0 ms 0 0 1 32K (32,768) 29.6 ms 28.1 ms 0 1 0 64K (65,536) 59.1 ms 56.2 ms 0 1 1 128K (131,072) 0.12 s 0.11 s 1 0 0 256K (262,144) 0.24 s 0.22 s 1 0 1 512K (524,288) 0.47 s 0.45 s 1 1 0 1,024K (1,048,576) 0.95 s 0.9 s 1 1 1 2,048K (2,097,152) 1.9 s 1.8 s 57 2467R–AVR–06/08 The following code example shows one assembly and one C function for turning off the WDT. The example assumes that interrupts
in „ATMEGA128 Timer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
en.DM00091010.pdf
0 0 0 0 0 0 0 0 0 0 s s s s s s s s s s s s s s s s DMA_CNDTR2 e e e e e e e e e e e e e e e e NDT[15:0] 0x20 R R R R R R R R R R R R R R R R Reset value 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 DMA_CPAR2 PA[31:0] 0x24 Reset value
in „EFM32F030 und Standby“ · Mikrocontroller und Digitale Elektronik ·
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PDF
u-blox-ATCommands_Manual__UBX-13002752_.pdf
13002 SARA-G350-01S-00 08.70 UBX-14039634 SARA-G350-01B-00 TBD TBD SARA-G350 ATEX SARA-G350-00X-00 08.49 GSM.G2-TN-13002 SARA-U260 SARA-U260-00S-00 23.20 A01.00 UBX-14015739 SARA-U270 SARA-U270-00S-00 23.20 A01.00 UBX-14015739
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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PDF
Mega32.pdf
TypicalTime-out TypicalTime-out WDP2 WDP1 WDP0 Oscillator Cycles at V = 3.0V at V = 5.0V CC CC 0 0 0 16K (16,384) 17.1 ms 16.3 ms 0 0 1 32K (32,768) 34.3 ms 32.5 ms 0 1 0 64K (65,536) 68.5 ms 65 ms 0 1 1 128K (131,072) 0.14 s 0.13 s 1 0 0 256K (262,144) 0.27 s 0.26 s 1 0 1 512K (524,288) 0.55 s 0.52 s 1
in „AVR Timer/Counter Zeit berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT90CAN128.pdf
Typical Time-out at Typical Time-out at WDP2 WDP1 WDP0 Oscillator Cycles V CC= 3.0V V CC= 5.0V 0 0 0 16K cycles 17.1 ms 16.3 ms 0 0 1 32K cycles 34.3 ms 32.5 ms 0 1 0 64K cycles 68.5 ms 65 ms 0 1 1 32/64K cycles 0.14 s 0.13 s 1 0 0 256K cycles 0.27 s 0.26 s 1 0 1 512K cycles 0.55 s 0.52 s 1 1 0 1,024K cycles
in „Umrechnen von analog to digital“ · Mikrocontroller und Digitale Elektronik ·
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PDF
802.3-2008_section2.pdf
E ( n i g P d c g e Y o o e c b u g l T D t o i k y e P k D H r n n r M s k ot s d b r o a t m l a i P r o a s 0 b a o L a a r e P a m n P s p E C r e 0 M P C a d a E - s n c t a c l Y s r d 0 0 s U d o C Y t B M R O A E M P B P A 1 1 B M M B M P A
in „Kommunikation uC mit PHY“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ATM16_doc2466.pdf
TypicalTime-out TypicalTime-out WDP2 WDP1 WDP0 Oscillator Cycles at VCC= 3.0V at VCC = 5.0V 0 0 0 16K (16,384) 17.1 ms 16.3 ms 0 0 1 32K (32,768) 34.3 ms 32.5 ms 0 1 0 64K (65,536) 68.5 ms 65 ms 0 1 1 128K (131,072) 0.14 s 0.13 s 1 0 0 256K (262,144) 0.27 s 0.26 s 1 0 1 512K (524,288) 0.55 s 0.52 s 1 1 0 1,024K (1,048,576) 1.1 s 1.0 s 1 1 1 2,048K (2,097,152) 2.2 s 2.1 s 43 2466P–AVR–08/07 The following code example shows one assembly and one C function for turning off the WDT. The example assumes that interrupts
in „ISP - Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT90CAN128.pdf
Number of WDT Typical Time-out at Typical Time-out at Oscillator Cycles V CC= 3.0V V CC= 5.0V 0 0 0 16K cycles 17.1 ms 16.3 ms 0 0 1 32K cycles 34.3 ms 32.5 ms 0 1 0 64K cycles 68.5 ms 65 ms 0 1 1 32/64K cycles 0.14 s 0.13 s 1 0 0 256K cycles 0.27 s 0.26 s 1 0 1 512K cycles 0.55 s 0.52 s 1 1 0 1,024K cycles
in „uC + 3 Schieberegister + 7-Segmentanzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S29GL512N.pdf
write protection 100,000 erase cycles per sector typical 20-year data retention typical Performance Characteristics High performance — 80 ns access time (S29GL128N, S29GL256N), 90 ns access time (S29GL512N) — 8-word/16-byte page read buffer — 25 ns page read
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ProdManualIndGradeSDv1.0.pdf
> CRC status <-N WR <- Write data -> CRC status <- Busy -> <-NWR> DAT Z Z P * P S Data+CRC E Z Z S Status E Z P * P S Data+CRC E Z Z S Status E S L*L E Z P*P Figure 4-20. Timing of the Multiple Block Write Command The stop transmission command works similar as in the read mode. Figures
in „Eigenbau Mp3 Player“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AtMega644P_Datasheet.pdf
– Interrupt – System Reset – Interrupt and System Reset Selectable Time-out period from 16 ms to 8s Possible Hardware fuse Watchdog always on (WDTON) for fail-safe mode Figure 9-7. Watchdog Timer 128 kHz OSCILLATOR / / K/K6K 2 4 K8K6K 2 4 S S S C C C/ / / / 1 O O O O O O S S S C O O O O WDP0 WDP1 WATCHDOG
in „Alkoholmessgerät programmieren“ · Mikrocontroller und Digitale Elektronik ·
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atmega644.pdf
– Interrupt – System Reset – Interrupt and System Reset Selectable Time-out period from 16 ms to 8s Possible Hardware fuse Watchdog always on (WDTON) for fail-safe mode Figure 9-7. Watchdog Timer 128 kHz OSCILLATOR / / K/K6K 2 4 K8K6K 2 4 S S S C C C/ / / / 1 O O O O O O S S S C O O O O WDP0 WDP1 WATCHDOG
in „SPI-Kommunikation Atmega644 - ADS1118“ · Mikrocontroller und Digitale Elektronik ·
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ATmega32.pdf
TypicalTime-out TypicalTime-out WDP2 WDP1 WDP0 Oscillator Cycles at VCC= 3.0V at VCC = 5.0V 0 0 0 16K (16,384) 17.1ms 16.3ms 0 0 1 32K (32,768) 34.3ms 32.5ms 0 1 0 64K (65,536) 68.5ms 65ms 0 1 1 128K (131,072) 0.14s 0.13 s 1 0 0 256K (262,144) 0.27s 0.26s 1 0 1 512K (524,288) 0.55s 0.52s 1 1 0 1,024K (1,048,576) 1.1s 1.0s 1 1 1 2,048K (2,097,152) 2.2s 2.1s 42 2503Q–AVR–02/11 ATmega32(L) The following code example shows one assembly and one C function for turning off the WDT. The example assumes that interrupts are
in „STK500 als ISP“ · Mikrocontroller und Digitale Elektronik ·
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lsm6dsl.pdf
416 Hz (high performance) 0 1 1 1 833 Hz (high performance) 833 Hz (high performance) 1 0 0 0 1.66 kHz (high performance) 1.66 kHz (high performance) 1 0 0 1 3.33 kHz (high performance) 3.33 kHz (high performance) 1 0 1 0 6.66 kHz (high performance) 6.66 kHz (high performance) 1 1 x x Not allowed Not
in „LSM6DSL Gyro+Accelerometer, Gyro gibt keine Werte aus.“ · Mikrocontroller und Digitale Elektronik ·
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Ateme16.pdf
TypicalTime-out TypicalTime-out WDP2 WDP1 WDP0 Oscillator Cycles at VCC= 3.0V at VCC = 5.0V 0 0 0 16K (16,384) 17.1 ms 16.3 ms 0 0 1 32K (32,768) 34.3 ms 32.5 ms 0 1 0 64K (65,536) 68.5 ms 65 ms 0 1 1 128K (131,072) 0.14 s 0.13 s 1 0 0 256K (262,144) 0.27 s 0.26 s 1 0 1 512K (524,288) 0.55 s 0.52 s 1 1 0 1,024K (1,048,576) 1.1 s 1.0 s 1 1 1 2,048K (2,097,152) 2.2 s 2.1 s 43 2466T–AVR–07/10 ATmega16(L) The following code example shows one assembly and one C function for turning off the WDT. The example assumes
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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Ateme16.pdf
TypicalTime-out TypicalTime-out WDP2 WDP1 WDP0 Oscillator Cycles at VCC= 3.0V at VCC = 5.0V 0 0 0 16K (16,384) 17.1 ms 16.3 ms 0 0 1 32K (32,768) 34.3 ms 32.5 ms 0 1 0 64K (65,536) 68.5 ms 65 ms 0 1 1 128K (131,072) 0.14 s 0.13 s 1 0 0 256K (262,144) 0.27 s 0.26 s 1 0 1 512K (524,288) 0.55 s 0.52 s 1 1 0 1,024K (1,048,576) 1.1 s 1.0 s 1 1 1 2,048K (2,097,152) 2.2 s 2.1 s 43 2466T–AVR–07/10 ATmega16(L) The following code example shows one assembly and one C function for turning off the WDT. The example assumes
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·