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Reference_Manual.pdf
. . . . . . . . . . . . . . . . . . . . . . . . 619 Table 161. Maximum output results versus N and M (gray cells indicate truncation). . . . . . . . . . . . . 622 Table 162. Oversampler operating modes summary . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 627 Table 163. ADC
in „STM32G474RE UART“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Logfile.txt
Datum Zeit Spannung (mV) Telegramm 22.11.2019 20:16:45 2935 24 22.11.2019 21:15:29 2938 25 22.11.2019 22:14:13 2935 26 22.11.2019 23:12:59 2935 27 23.11.2019 00:11:43 2938 28 23.11.2019 01:10:29 2929 29 23.11.2019 02:09:15
in „LIC-Kondensator als "Resteverwerter"“ · Mikrocontroller und Digitale Elektronik ·
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UM10398_-_LPC11xx_UserManual.pdf
414 UM10398 NXP Semiconductors Chapter 1: LPC111x/LPC11Cxx Introductory information 1.5 ARM Cortex-M0 processor The ARM Cortex-M0 processor is described in detail in Section 22.2 “About the Cortex-M0 processor and core peripherals”. For the LPC111x/LPC11Cxx, the ARM Cortex-M0 processor core is configured
in „Cortex-M UART im Polling-Betrieb“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Eeprom_2.txt
LD C,C 2701 142D 00 NOP 2702 142E C8 RET Z 2703 142F 49 LD C,C 2704 1430 C0 RET NZ 2705 1431 F8 RET M 2706 1432 4A LD C,D 2707 1433 00 NOP 2708 1434 FA 4A 04 JP M,L0340 2709 1437 0A LD A,(BC) 2710 1438 0F RRCA 2711 1439 13 INC DE 2712 143A 16 18 LD D,18H 2713 143C 32 0C 20 LD (200CH),A 2714 143F 20 20
in „Hilfe bei Z80 Opcodes“ · Mikrocontroller und Digitale Elektronik ·
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2_gameboy.pdf
EC CALL PE,nn - ED <pref> - F0 RET P LD A,(FF00+n) F2 JP P,nn LD A,(FF00+C) F4 CALL P,nn - F8 RET M LD HL,SP+dd FA JP M,nn LD A,(nn) FC CALL M,nn - FD <IY> - CB3X SLL r/(HL) SWAP r/(HL) Note: The unused (-) opcodes will lock-up the gameboy CPU when used. The Cartridge Header An internal information
in „(Chip8 / gameboy) Emulator für AVR AVR32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PicoMite_User_Manual.pdf
1). The repeatstart defines how how long before a character repeats the first time (valid 0-3 = 250mSec, 500mSec, 750mSec, 1S: default 1=500mSec). The repeat rate defines how fast a character repeats after the first repeat (valid 0-31 = 33mSec to 500mSec: default 12=100mSec). OPTION LCDPANEL options
in „allgemeine PicoMite Anfängerfragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
H83003H.PDF
during row A to A A A A A A A A A A A 23 10 9 8 7 6 5 4 3 2 1 0 address output Address signals during M9/M8 = 0 A 23to A10 A 9 A 9 A16 A15 A 14 A 13 A 12 A11 A10 A 0 column address output M9/M8 = 1 A 23to A10 A 18 A 17 A16 A15 A 14 A 13 A 12 A11 A10 A 0 T T T 1 2 3 ø A23to A9, A 0 A 23to A9, A0 Address bus A8to A 1 A 8o A 1 A16 to 9 Row address Column address a. M9/M8 = 0 T1 T2 T3 ø A to A , A A to A , A 23 10 0 23 10 0 Address bus A9to A 1 A 9o A 1 A18 to 10 Row address Column address b. M9/M8 = 1 Figure 7-4 Multiplexed Address Output (Example without Wait States
in „H8/300 Frage (genauer H8/3003)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega16.pdf
REGISTER SELECT (ADMUX) REGISTER (ADCSRA) (ADCH/ADCL) 1 0 R 4 3 2 1 0 F F L U U U U U N C T F S S S R E D M M M M M D D D D D D D 0 R A A A A A A A A [ TRIGGER D SELECT A MUX DECODER PRESCALER I N START C T L C S L L S N I CONVERSION LOGIC AVCC A G C INTERNAL 2.56V REFERENCE SAMPLE & HOLD COMPARATOR AREF 10
in „DCF auf INT0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PicoMite_User_Manual_4_.pdf
1). The repeatstart defines how how long before a character repeats the first time (valid 0-3 = 250mSec, 500mSec, 750mSec, 1S: default 1=500mSec). The repeat rate defines how fast a character repeats after the first repeat (valid 0-31 = 33mSec to 500mSec: default 12=100mSec). OPTION LCDPANEL options
in „Qual der Wahl - Sensoren Auswertung auf Display ("Analog")“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hut1_11.pdf
14 0E Keyboard k and K 38 √ √ √ 4/101/104 15 0F Keyboard l and L 39 √ √ √ 4/101/104 16 10 Keyboard m and M4 52 √ √ √ 4/101/104 17 11 Keyboard n and N 51 √ √ √ 4/101/104 18 12 Keyboard o and O4 25 √ √ √ 4/101/104 4 19 13 Keyboard p and P 26 √ √ √ 4/101/104 20 14 Keyboard q and Q4 17 √ √ √ 4/101/104 Version
in „USB HID Descriptor (V-USB)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1803a.pdf
Operating Voltage - VDD VDD VDD V Internal oscillationDDV= 3.0V, IDD Supply Current f = 540kHz) - 0.3 0.55 mA OSC VIH Input Voltage - 0.8V DDIO - V DDIO V VIL - - - 0.2V DDIO V I = -0.1mA 0.8V - - V OH1 Output Voltage 1 (DB0-DB7) OH DDIO V OL1 IOL= 0.1mA - - 0.2V DDIO V V OH2 Output Voltage 2 IO= -40μA 0.8V
in „Probleme mit EADOGM204-4 und ATMEGA32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1803a_2_0.pdf
Operating Voltage - VDD VDD VDD V Internal oscillationDDV= 3.0V, IDD Supply Current f = 540kHz) - 0.3 0.55 mA OSC VIH Input Voltage - 0.8V DDIO - V DDIO V VIL - - - 0.2V DDIO V I = -0.1mA 0.8V - - V OH1 Output Voltage 1 (DB0-DB7) OH DDIO V OL1 IOL= 0.1mA - - 0.2V DDIO V V OH2 Output Voltage 2 IO= -40μA 0.8V
in „Display DOGM-204A/SSD1803A mit I2C - ROM Auswahl“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Mega32.pdf
REGISTER SELECT (ADMUX) REGISTER (ADCSRA) (ADCH/ADCL) 1 4 3 2 1 0 F S A X X X X X N C T F S S S E E D M M M M M D D D D D D D 0 R R A A A A A A A A [ TRIGGER D SELECT A MUX DECODER PRESCALER I N START C I L C E L L S N I CONVERSION LOGIC AVCC A G H C INTERNAL 2.56V REFERENCE SAMPLE & HOLD COMPARATOR AREF
in „AVR Timer/Counter Zeit berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MMA8452Q.pdf
ODR = 100 Hz 44 ODR = 200 Hz 85 ODR = 400 Hz 165 ODR = 800 Hz 165 Current during Boot Sequence, 0.5 mSec max VDD = 2.5V Idd Boot 1 mA duration using recommended Bypass Cap Value of Capacitor on BYP Pin -40°C 85°C Cap 75 100 470 nF VDD = 2.5V, VDDIO = 1.8V STANDBY Mode Current @25°C ddStby 1.8 5 μA STANDBY
in „Beschl-Sensor mit i2C reagiert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Accelerometer_Data_2014-06-05_14-55-52.txt
Keuwl Accelerometer Data File 2014-06-05 14-55-52 Time (s),X (m/s2),Y (m/s2),Z (m/s2),R (m/s2), Theta (deg), Phi (deg) 0.17500001,0.8717023,3.445948,5.3936577,6.4595637,33.385418,75.80401 0.18400002,-3.0645783,6.5786285,8.349273,11.062565,40.998035,114.97791 0.18400002
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Driver_Library_user_guide.pdf
level, low level, rising edge, falling edge, or both edges. In output mode, can be configured for 2 mA, 4 mA, or 8 mA drive strength. The 8 mA drive strength configuration has optional slew rate control to limit the rise and fall times of the signal. On reset, they default to 2 mA drive strength. Optional
in „I2C Display Steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EleLaDoku_V4.0.20B27.pdf
74 4A J 106 6A j 11 0B ^K VT 43 2B + 75 4B K 107 6B k 12 0C ^L FF 44 2C , 76 4C L 108 6C l 13 0D ^M CR 45 2D - 77 4D M 109 6D m 14 0E ^N SO 46 2E . 78 4E N 110 6E n 15 0F ^O SI 47 2F / 79 4F O 111 6F o DEC HEX Zeic. Name DEC HEX Zeic. DEC HEX Zeic. DEC HEX Zeic. 16 10 ^P DLE 48 30 0 80 50 P 112 70
in „EleLa - Elektronik Lagerverwaltung V4.0“ · Projekte & Code ·
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PDF
WaMa_Lavamat_L5412_ewm1000.pdf
91420520104 EWM1000 599384205 FAE1026V Zanussi-Electrolux 20061110 91420520200 EWM1000 599375755 P106M Zoppas 20060210 91420520201 EWM1000 599378008 P106M Zoppas 20060217 91420520202 EWM1000 599381693 P106M Zoppas 20060526 91420520203 EWM1000 599384207 P106M Zoppas 20061110 91420520300 EWM1000 599375756
in „Waschmaschine Privileg 2082 defekt“ · Haus & Smart Home ·
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PDF
ATtiny1614-16-17-DataSheet-DS40002204A_1_.pdf
peripherals ® aCore componentals UPDI / RESET UPDI aClocks/generators CRC CPU OCD To detectors Flash M M M S SRAM S BUS Matrix EEPROM S S NVMCTRL I N AINP[3:0] / AINN[1:0] PORTS O PA[7:0] OUT AC[2:0] U PB[7:0] T PC[5:0] OUT [2:0] GPIOR D DAC A E D T AIN[11:0] V A A X[13:0] E T CPUINT B Y[13:0] ADC0 /
in „50% PWM für H-Brücke mit Attiny1614“ · Mikrocontroller und Digitale Elektronik ·
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PDF
User_guide_-_Driver.pdf
level, low level, rising edge, falling edge, or both edges. In output mode, can be configured for 2 mA, 4 mA, or 8 mA drive strength. The 8 mA drive strength configuration has optional slew rate control to limit the rise and fall times of the signal. On reset, they default to 2 mA drive strength. Optional
in „PCF8574 mit LM3S8938 per I2C auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fonts_non_aa.cpp
// H { 10, 5684 }, // I { 13, 5782 }, // J { 24, 5880 }, // K { 18, 6027 }, // L { 35, 6174 }, // M { 28, 6419 }, // N { 32, 6615 }, // O { 21, 6811 }, // P { 33, 6958 }, // Q { 25, 7203 }, // R { 20, 7399 }, // S { 24, 7546 }, // T { 25, 7693 }, // U { 30, 7889 }, // V { 43, 8085 }, // W { 26, 8379
in „STM32F4 SSD1963 TFT FONTS“ · Mikrocontroller und Digitale Elektronik ·
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Datei
out.txt
,#0 0x080036ec: d001 .. BEQ 0x80036f2 ; _ZN16mb_uart32_de_irq4sendEPht + 34 0x080036ee: f7fffe6d ..m. BL _ZN7pio_set6enableEv ; 0x80033cc 0x080036f2: b672 r. CPSID i 0x080036f4: 2240 @" MOVS r2,#0x40 0x080036f6: 2180 .! MOVS r1,#0x80 0x080036f8: 6863 ch LDR r3,[r4,#4] 0x080036fa: 681b .h LDR r3,[r3,
in „ARM Bootloader mit ELF, Einstieg nicht bei 0x08000000“ · Mikrocontroller und Digitale Elektronik ·
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PDF
40001893B.pdf
peripherals acore compon ntsl UPDI / RESET UPDI CRC CPU aclocks/g nerators OCD To detectors Flash M M M S S SRAM BUS Matrix S EEPROM S NVMCTRL I N AINP[3:0] / AINN[1:0] AC[2:0] PORTS O PA[7:0] OUT U PB[7:0] T PC[5:0] OUT [2:0] GPIOR D DAC A E D T AIN[11:0] V A A X[13:0] E T CPUINT B Y[13:0] ADC0 /
in „ATtiny1614 CPU Takt Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATtiny212_40001911A.pdf
Diagram Figure 3-1. ATtiny212 / ATtiny412 Block Diagram UPDI / RESET UPDI CPU CRC OCD To detectors Flash M M M S SRAM S BUS Matrix EEPROM S S NVMCTRL I N / PORTS O AINP0 U PA[7:0] AINN0 AC0 T OUT GPIOR D A OUT DAC0 E D T V A A E T CPUINT B N A U AIN6, 7, 3:0] ADC0 T B S Detectors/ U references R S O System
in „Neue 8-Bit Tinys vorgestellt: 417/814/816/817“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATtiny1614_1616_1617.pdf
peripherals acore compon ntsl UPDI / RESET UPDI CRC CPU aclocks/g nerators OCD To detectors Flash M M M S S SRAM BUS Matrix S EEPROM S NVMCTRL I N AINP[3:0] / AINN[1:0] AC[2:0] PORTS O PA[7:0] OUT U PB[7:0] T PC[5:0] OUT [2:0] GPIOR D DAC A E D T AIN[11:0] V A A X[13:0] E T CPUINT B Y[13:0] ADC0 /
in „124Bus Beschreibung verfuegbar?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmega32.pdf
REGISTER SELECT (ADMUX) REGISTER (ADCSRA) (ADCH/ADCL) 1 0 R 4 3 2 1 0 F S L U U U U U N C T F S S S R E D M M M M M D D D D D D D 0 R A A A A A A A A [ TRIGGER D SELECT A MUX DECODER PRESCALER I N START C I L C S L L S N I CONVERSION LOGIC AVCC A G C INTERNAL 2.56V REFERENCE SAMPLE & HOLD COMPARATOR AREF 10
in „STK500 als ISP“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmel-42005-8-and-16-bit-AVR-Microcontrollers-XMEGA-E_Manual.pdf
releases the SCL line. Figure 18-12.TWI Master Operation APPLICATION MASTER WRITE INTERRUPT + HOLD M1 M2 M3 M4 BUSY P IDLE S ADDRESS R/W BUSY SW BUSY M1 SW Wait for R/W A SW P IDLE M2 IDLE W A SW Sr BUSY M3 M4 SW DATA A/A SW Driver software MASTER READ INTERRUPT + HOLD The master provides data on the
in „ATxmega8E5 - ADC Gain Korrektur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATtiny804-06-07-1604-06-07-DataSheet-DS40002312A.pdf
oscillator (OSC20M) and determines the respective factory calibration values to be written to CAL20M in CLKCTRL.OSC20MCALIBA and TEMPCAL20M in CLKCTRL.OSC20MCALIBB. Value Description 0x1 Run at 16 MHz with corresponding
in „ATTINY804 RTC bekomme ich nicht hin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmega48PA-ATmega88PA-ATmega168PA_Datasheet.pdf
Wake-up Sources in the Different Sleep Modes. Active Clock Domains Oscillators Wake-up Sources d r l t d M a i a e s O l c n c 0 g r R a H l E O d N a d E I r is P A D S C r r l , h A h r / y r w D C F I A A i u e a T n I t e M a C D h f D Sleep Mode c c c c c M S T En I P T M T S R A W O S B O (2) Idle X
in „Probleme mit Int Capt ISR ATmega48PA“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega_48_88_168.pdf
Wake-up Sources in the Different Sleep Modes. Active Clock Domains Oscillators Wake-up Sources e o d M k b a a g s O U S C Y l a i e 0 n r h r R y I C L kI A A C E s b T h d t e E a D D e l lF c l l i e O n , C A a i / e A W t c c c c a r e E 1 i I M T M R O M o i N P T P Sleep Mode S T I S (2) Idle X
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I-BOTT.PDF
DS1990A – DS1996 DS1982–DS1986 DS1920 Vpull–up min 2.8V V IHmin 2.2V V ILx 0.8V 1 VOL max 0.4V at 4 mA t min 60 s SLOT tSLOT max 120 s RDV 15 s Special Power Supply None VPP Programming Pulse 1 mA at 5V NOTES: 1. Also see Figure 4–5 for worst caseOL min at 50⋅C for DS1990A, DS1982, DS1991, and DS1992
in „Design eines hotplugfähigen I2C-Bussystems und Auswahl des Steckverbinders“ · Mikrocontroller und Digitale Elektronik ·
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Datei
EPROM_0000_7FFF.lst
,A 2950 1623 D3 01 OUT (01H),A 2951 1625 CD 8E 30 CALL L0375 2952 1628 3A 8B D1 LD A,(0D18BH) 2953 162B A7 AND A 2954 162C C0 RET NZ 2955 162D 3E 02 LD A,02H 2956 162F 32 77 D1 LD (0D177H),A 2957 1632 CD 46 13 CALL L0234 2958 1635 AF XOR A 2959 1636 32 88 D1 LD (0D188H),A 2960 1639 21 F1 CF LD HL,0CFF1H
in „Hilfe bei Z80 Opcodes“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Arduino_Project_Handbook_25_Practical_Projects_to_Get_You_Started.pdf
S entry Gun.....................................................................170 Project 21: M otion Sensor Alarm.................................................1 .78 Project 22: K eypad Entry System..................................................185 Project 23: Wireless ID Card Entry System
in „LED Driver mit µC“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
cpu_z_log.txt
P-State FID 0x13 - VID 0x30 - IDD 16 (17.50x - 1.250 V) P-State FID 0x10 - VID 0x3E - IDD 13 (16.00x - 1.162 V) P-State FID 0xD - VID 0x4A - IDD 11 (14.50x - 1.087 V) P-State FID 0x8 - VID 0x59 - IDD 8 (12.00x - 0.994 V) P-State FID 0x3 - VID 0x66 - IDD 6 (9.50x - 0.912 V) P-State FID 0x10C - VID 0x78 - IDD
in „Frage zu neues Mainboard anschaffen“ · PC Hard- und Software ·
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PDF
z16c30um.pdf
R x x n H D 0 H D T T T k T c 0 G l G R C R B s B 0 E - l D 1 O R e O C M H n D N M H L D a L D h C C 8 1 S X 9 X 1 U M C M R a 0 1 2 3 M 0 1 2 3 C f C C o e d o M A 1 - 4 x x r R T E - u D R i 4 X O C F X - U M H M 1 M L C 0 1 2 3 P 0 1 2 3 H D 1 L T - X 1 C A R 4 3 2 1 0 Q QQ2Q Q 0 M C E R C Q Q Q Q Q R T H D R H T C 0 1 C 1 1 6 X 3 X 5 X 7 M R M R M C 0 1 2 3 C 0 1 2 3 C 1 0 0 1 2 3 M C C R RG C B B C C D x x x R T R UM97USC0100 4-3 ® Z16C30USC ZILOG USERS MANUAL 4.3.2 The Baud
in „unbekanntes Bus (Frame) entziffern, brauche Hilfe.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PowerLog6s_V110_bearbeitet.asm
DCB 0x54 ; T DCB 0x49 ; I DCB 0x4D ; M DCB 0x45 ; E DCB 0x20 DCB 0x4F ; O DCB 0x56 ; V DCB 0x45 ; E DCB 0x52 ; R DCB 0x20 DCB 0x41 ; A DCB 0x4C ; L DCB 0x41 ; A DCB 0x52 ; R DCB 0x4D ; M DCB 0 DCB 0x4D ; M DCB 0x69 ; i DCB 0x6E ; n DCB 0x75
in „Datenlogger Jun-si PowerLog 6S verbessern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC9S12XF512.pdf
Freescale Semiconductor Chapter 1 MC9S12XF-Family Reference Manual 0 0 A N I 0 F F F F C C 0 K S O D D M M M M 1 1 X X S C O I X X / / / / D X 0 1 / / / / / / A L P P P P D S M M S S S S S S S R P P P P V V P P P P P P P P V V 4 3 2 1 0 9 8 7 6 5 4 3 2 1 0 9 6 6 6 6 6 5 5 5 5 5 5 5 5 5 5 4 PMF1/PP1 1 48
in „Wie oft kann ein µC programmiert werden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC9S12XF512.pdf
Freescale Semiconductor Chapter 1 MC9S12XF-Family Reference Manual 0 0 A N I 0 F F F F C C 0 K S O D D M M M M 1 1 X X S C O I X X / / / / D X 0 1 / / / / / / A L P P P P D S M M S S S S S S S R P P P P V V P P P P P P P P V V 4 3 2 1 0 9 8 7 6 5 4 3 2 1 0 9 6 6 6 6 6 5 5 5 5 5 5 5 5 5 5 4 PMF1/PP1 1 48
in „Probleme beim Ansteuern eines EEPROM über SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Programmer_Manual.pdf
Command Descriptions Table 2-28: Vertical position ranges using a 1X probe CH<x>:SCAle Position range 2 mV/div ±1000 divs 5 mV/div ±400 divs 10 mV/div ±200 divs 20 mV/div ±100 divs 50 mV/div ±40 divs 100 mV/div ±20 divs 200 mV/div ±10 divs 500 mV/div ±100 divs 1 V/div ±50 divs 2 V/div ±25 divs 5 V/div ±10
in „Tektronix über R232 auslesen ABER FFT und nicht Waveform“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LS4000_Routing_Report.pdf
phy/SLICE_9494 ROUTE 1 1.093 R36C60A.F0 to R34C61C.A1 pcie/u1_dut/u1_dut/u1_dut/u1_phy/frm_data_16_m_i_m2[8] ZERO_DEL --- 0.000 R34C61C.A1 to R34C61C.WDO0 pcie/u1_dut/u1_dut/u1_dut/u1_phy/u1_scram/u1_txrc/rf_1_ram/SLICE_1384 ROUTE 1 0.000 R34C61C.WDO0 to R34C61A.WD0 pcie/u1_dut/u1_dut/u1_dut/u1_phy/
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PDF
LS4000_Routing_Report.pdf
phy/SLICE_9494 ROUTE 1 1.093 R36C60A.F0 to R34C61C.A1 pcie/u1_dut/u1_dut/u1_dut/u1_phy/frm_data_16_m_i_m2[8] ZERO_DEL --- 0.000 R34C61C.A1 to R34C61C.WDO0 pcie/u1_dut/u1_dut/u1_dut/u1_phy/u1_scram/u1_txrc/rf_1_ram/SLICE_1384 ROUTE 1 0.000 R34C61C.WDO0 to R34C61A.WD0 pcie/u1_dut/u1_dut/u1_dut/u1_phy/
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doc7593.pdf
AT90USB64/128 7593J–AVR–03/09 ATmega32U6/AT90USB64/128 Figure 5-10. Address Map with 32 KB External Memory M emory ConfiguratioA AVR emoryMap Extern32KS RAM 00000 x0000 nternaM emory 020FF XMemstart 02100 07FFF External x7FFF 08000 M emory ISRAMend+0x8000 XMemstart+0x8000 (Unuse) 0FFFF 5.5.9 Using all 64KB
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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Datei
robot-mit-cplusplus-anteilen-noheap-trotzdem-grosz.objdump.txt
80030ce: 887b ldrh r3, [r7, #2] 80030d0: 2b00 cmp r3, #0 80030d2: d002 beq.n 80030da <TIM_SelectOCxM+0x56> 80030d4: 887b ldrh r3, [r7, #2] 80030d6: 2b08 cmp r3, #8 80030d8: d113 bne.n 8003102 <TIM_SelectOCxM+0x7e> 80030da: 887b ldrh r3, [r7, #2] 80030dc: ea4f 0353 mov.w r3, r3, lsr #1 80030e0: b29b
in „ROM-Auslastung von C++-Programm reduzieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
isco_3700.pdf
Interface converts data from a 3700 Series Sampler. You initiate the pulse duration input; the 4-20 mA Sampler Input reports from either the printer or the sampler. Interface converts 4-20 mA output signals. The The Isco Field Printer prints two reports that 3700 Sampler sends event marks to both Isco
in „Reparatur Motorsteuerung, Probennehmer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Teileliste-04-18-2233.html
:left;width:0.25cm; " class="ce7"> </td><td style="text-align:left;width:2.586cm; " class="ce7"><p>mF</p></td><td style="text-align:left;width:3.948cm; " class="ce7"><p>35V, 105°C</p></td><td style="text-align:left;width:3.731cm; " class="ce7"> </td><td style="text-align:left;width:2.776cm; " class=
in „Bauelemente abzugeben“ · Markt ·
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Datei
Eeprom2.txt
06 jr z,0x22fa .data:000022f4 e2 fd 62 jp po,0x62fd .data:000022f7 fa 00 63 jp m,0x6300 .data:000022fa f6 01 or 0x01 .data:000022fc c9 ret .data:000022fd fa fa 62 jp m,0x62fa .data:00002300 af xor a .data:00002301 c9 ret .data:00002302 a7 and a .data:00002303 ed 52 sbc hl,de .data
in „Hilfe bei Z80 Opcodes“ · Mikrocontroller und Digitale Elektronik ·
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GIMP_Handbuch_de.pdf
das Farbmodell des GIMP Bildes und das Vorhandensein des Alphakanals bestimmt. Folgende Typen sind m oglich: • RGB • RGBA • Graustufen • GraustufenA • Indiziert • IndiziertA Der Hauptgrund, dass diese Eigenschaft eine Rolle spielt ist, dass viele Filter in GIMP nicht auf Ebenen aller Typen angewendet
in „Wie zwei Bilder wie Folien übereinanderlegen ?“ · PC Hard- und Software ·
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Atmega128_doc2467.pdf
Speed and S = 4 F F F for Double Speed mode. S M Middle sample number used for majority voting. S = 9 fMr Normal Speed and S = 5 for Double Speed mode. M R slowis the ratio of the slowest incoming data rate that can be accepted in relation to the receiver
in „ATMEGA128 Timer“ · Mikrocontroller und Digitale Elektronik ·
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HAL_STM32F1.pdf
2 2 3 2 2 2 3 2 3 2 2 2 2 2 M M M M M M M M M M M M M M T T T T T T T T T T T T T T S S S S S S S S S S S S S S stm32f1xx_hal.c stm32f1xx_hal.h Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes stm32f1xx_hal_adc.c stm32f1xx_hal_adc.h
in „CAN auf STM32F4“ · Mikrocontroller und Digitale Elektronik ·
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BGA_Breakouts_and_Routing.pdf
The any-layer-via eliminates via stubs • Using smaller feature sizes makes a significant difference 162 Chapter Six – 0.8mm Pin-Pitch BGA Tests • If over 2000 pins and 0.8mm pitch, ALIVH is a great solution if you want absolute minimum layer count Summary Although 0.8mm pin-pitch BGAs are clearly more