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PDF
SAK-C167CR-LM_HA.pdf
Microcontroller C167CR/C167SR C166 Family C167CR/C167SR • High Performance 16-bit CPU with 4-Stage Pipeline – 80/60 ns Instruction Cycle Time at 25/33 MHz CPU Clock – 400/303 ns Multiplication (16× 16 bit), 800/606 ns
in „Problem mit Infinion C167CR mit AM29F200B-70SE“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I-BOTT.PDF
(DS1991 to DS1996) should not be stored or operated below –40⋅C or above +70⋅C (–40⋅F or The through–mount system can also be used to mount 158⋅F). At –55⋅C the electrolyte of the lithium cell iButtons on large containers. An iButton retainer as shown in Figure 3
in „Design eines hotplugfähigen I2C-Bussystems und Auswahl des Steckverbinders“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HF_Mifare_Easy_V1_0_User_Manual_03.pdf
sector 00h 00h 03h 00h 01h 04h 07h 01h 1Fh 7Ch 7Fh 1Fh 20h 80h 8Fh 20h 21h 90h 9Fh 24h 22h A0h AFh 28h 23h B0h BFh 2Ch 24h C0h CFh 30h 25h D0h DFh 34h 26h E0h EFh 38h 27h F0h FFh 3Ch Figure 5-5: Mifare 4k sector index table 5.5 Mifare ProX Mifare ProX tags have an operating system onboard. Data organization
in „[V] gebrauchtes ACG/HID RFID Mifare Modul (30x30mm) zum einlöten + 2-3Karten (10€)“ · Markt ·
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PDF
HF_Mifare_Easy_V1_0_User_Manual_03.pdf
sector 00h 00h 03h 00h 01h 04h 07h 01h 1Fh 7Ch 7Fh 1Fh 20h 80h 8Fh 20h 21h 90h 9Fh 24h 22h A0h AFh 28h 23h B0h BFh 2Ch 24h C0h CFh 30h 25h D0h DFh 34h 26h E0h EFh 38h 27h F0h FFh 3Ch Figure 5-5: Mifare 4k sector index table 5.5 Mifare ProX Mifare ProX tags have an operating system onboard. Data organization
in „[V] RFID ISO 14443 Modul ACG/HID Omnikey 25x30mm (17€)“ · Markt ·
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PDF
HF_Mifare_Easy_V1_0_User_Manual_03.pdf
sector 00h 00h 03h 00h 01h 04h 07h 01h 1Fh 7Ch 7Fh 1Fh 20h 80h 8Fh 20h 21h 90h 9Fh 24h 22h A0h AFh 28h 23h B0h BFh 2Ch 24h C0h CFh 30h 25h D0h DFh 34h 26h E0h EFh 38h 27h F0h FFh 3Ch Figure 5-5: Mifare 4k sector index table 5.5 Mifare ProX Mifare ProX tags have an operating system onboard. Data organization
in „[V] RFID ISO 14443 Modul ACG/HID Omnikey 25x30mm (13€)“ · Markt ·
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PDF
x86_calling_conventions_-_Wikipedia.pdf
) Pascal Windows thiscall (Microsoft ECX RTL (C) Callee Default for member Visual functions. C++) Windows Extended from fastcall. (Microsoft ECX, EDX, vectorcall Visual [XY]MM0–5 RTL (C) Callee Also supported by ICC and C++) Clang.[11] Watcom EAX,
in „C und C++ kompatibilität“ · Mikrocontroller und Digitale Elektronik ·
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MCP79521.pdf
1.3V to 3.6V X1 1 10 VCC • Low Typical Timekeeping Current: X X2 2 5 9 MFP - Operating from V: 1.2 µA at 3.0V 9 - Operating from VT: 1.0 µA at 3.0V VBAT 3 P 8 SCK • Automatic Switchover to Battery Backup CS 4 C 7 SO M VSS 5 6 SI User Memory • 64-Byte Battery-Backed SRAM • 1 Kbit or 2 Kbit EEPROM: Note:
in „RTC -> MCP79521“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2117592.pdf
1.2V or 1.9V DM875 Reset In RST RJ-45 + Ethernet RMII Flash NAND-Flash Transformer Transceiver Mem. 256 Mbit USB SDRAM Type-A USB Bus 3x6bit RGB Display LCD NOR-Flash 4/8bit MMC SD-Card SSM Apple Co- I2C processor I2C 2.4 GHz RF 802.11 transceiver PWM DAC DAC CCIR-656 Video Out A/D, D/A Audio I/O AV RF
in „CX870-31B Jukeblox SMCS Microchip Firmware Update“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmel_AVR_Lernunterlage_v5.pdf
ermöglicht werden. 2 Abb. 2: Architektur des AVR-µC AT90S8515 Eigenschaften des verwendeten AVR-µC AT90S8515: Ø 118 Befehle (benötigen zumeist nur einen Taktzyklus zur Abarbeitung) Ø Taktfrequenz 4 MHz bzw. 8 MHz (extern eingespeist) Ø 8-Bit breiter Datenbus
in „kommentierter Befehlssatz in deutsch ATmega16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmel_AVR_Lernunterlage_v5.pdf
ermöglicht werden. 2 Abb. 2: Architektur des AVR-µC AT90S8515 Eigenschaften des verwendeten AVR-µC AT90S8515: Ø 118 Befehle (benötigen zumeist nur einen Taktzyklus zur Abarbeitung) Ø Taktfrequenz 4 MHz bzw. 8 MHz (extern eingespeist) Ø 8-Bit breiter Datenbus
in „Lernunterlage AVR-Assembler (inkl. Befehle in DEUTSCH)“ · Projekte & Code ·
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PDF
Atmel_AVR_Lernunterlage_v5.pdf
ermöglicht werden. 2 Abb. 2: Architektur des AVR-µC AT90S8515 Eigenschaften des verwendeten AVR-µC AT90S8515: Ø 118 Befehle (benötigen zumeist nur einen Taktzyklus zur Abarbeitung) Ø Taktfrequenz 4 MHz bzw. 8 MHz (extern eingespeist) Ø 8-Bit breiter Datenbus
in „Assembler Tutorial als PDF ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MTE011N10RFP-CystechElectonics.pdf
=0.5mH, I D=34Amps, EAS 289 VDD =50V (Note 4) mJ RepetitiveAvalanche Energy (Note 3) EAR 4.2 TC=25C (Note 1) P D 36 TC=100C (Note 1) 18 Power Dissipation W TA=25C (Note 2) P DSM 2.1 TA=70C (Note 2) 1.3 Maximum Temperature for Soldering @ Lead at 0.063 in(1.6mm) T L 300 from case for 10 seconds Maximum
in „IC identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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RF12B_programming_guide.PDF
B000h This command is used to read FIFO data when FFIT interrupt generated. FIFO data th output starts at 8 SCK period. 11. AFC Command bit 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 POR 1 1 0 0 0 1 0 0 a1 a0 rl1 rl0 st fi oe en C4F7h a1..a0: selectAFC auto-mode: a1 a0 0 0 Controlled by MCU 0 1 Run once at power
in „RFM12b ideale Konfiguration“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmega128_doc2467.pdf
Timer Prescale Select Number of WDT 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
in „ATMEGA128 Timer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
glcd.inc
define LCD_RESET 3 // MISO #define LCD_SCL 1 // SCK #define SPI_IN_LOWER_IO_REGS #elif defined (__AVR_AT90CAN128__) || defined (__AVR_AT90CAN64__) || defined (__AVR_AT90CAN32__) #define LCD_PORT _SFR_IO_ADDR(PORTB) #define LCD_PIN _SFR_IO_ADDR(PINB) #define LCD_DDR _SFR_IO_ADDR(DDRB) #define LCD_CS 0 //
in „Nokia 6100 Grafiklibrary die Zweite“ · Projekte & Code ·
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Datei
glcd.inc
define LCD_RESET 3 // MISO #define LCD_SCL 1 // SCK #define SPI_IN_LOWER_IO_REGS #elif defined (__AVR_AT90CAN128__) || defined (__AVR_AT90CAN64__) || defined (__AVR_AT90CAN32__) #define LCD_PORT _SFR_IO_ADDR(PORTB) #define LCD_PIN _SFR_IO_ADDR(PINB) #define LCD_DDR _SFR_IO_ADDR(DDRB) #define LCD_CS 0 //
in „Nokia 6100 Grafiklibrary die Zweite“ · Projekte & Code ·
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PDF
Dazzle_HW_mb_hsw_ult-3a-reve-0408.pdf
0.01u/16V_4 22u/6.3V_8 R269 *TPL@SHORT_6 TP_PWR 32 2 PCH_VDDEN ON/OFF GND +5V 31 G_4 30 R241 G5243AT11U R723 *0_4 29 33 COLOR_ENG 28 100K_4 2 PCH_BRIGHT R712 *SHORT_4 LVDS_BRIGHT 27 C626 0.1u/10V_4 BL_ON 26 R713 *100K_4 2 EDP_HPD EDP_HPD 25 24 2 EDP_TXP3 C627 0.1u/10V_4 EDP_TXP3_C 23 MP confirm 2 or
in „Notebook Mainboard reparieren Aspire V5-573G, IC iTE IT8587E“ · PC Hard- und Software ·
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PDF
UC1701.pdf
C13 C54 C38 D4 24H C37 C21 C28 C12 C53 C37 D5 25H C38 C22 C27 C11 C52 C36 D6 26H C39 C23 C26 C10 C51 C35 D7 27H C40 C24 C25 C9 C50 C34 D0 28H C41 C25 C24 C8 C49 C33 D1 29H C42 C26 C23 C7 C48 C32 D2 2AH C43 C27 C22 C6 C47 C31 D3 2BH C44 C28 C21 C5 C46 C30 0101 Page 5 D4 2CH C45 C29 C20 C4 C45 C29 D5 2DH C46 C30 C19 C3 C44 C28 D6 2EH C47 C31 C18 C2 C43 C27 D7 2FH C48 C32 C17 C1 C42 C26 D0 30H C49 C33 C16
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Datei
crc16.c
,0xe92f,0x99c8,0x89e9,0xb98a,0xa9ab, 0x5844,0x4865,0x7806,0x6827,0x18c0,0x08e1,0x3882,0x28a3, 0xcb7d,0xdb5c,0xeb3f,0xfb1e,0x8bf9,0x9bd8,0xabbb,0xbb9a, 0x4a75,0x5a54,0x6a37,0x7a16,0x0af1,0x1ad0,0x2ab3,0x3a92, 0xfd2e
in „Checksumme "reversen"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DEM480272D_TMH-PW-N.pdf
exceeds the following absolute maximum ratings, the TFT LCD module may be damaged permanently. (Ta=25±2°C, V SS=GND=0) Item Symbol Min. Max. Unit Note Storage temperature TSTG -30 80 °C (1) Operating temperature TOPR -20 70 °C (1,2,3) Note (1) 95 % RH Max. ( 40 °C ≥ Ta ). Maximum wet-bulb temperature at
in „40 Pin (24 Bit) rgb Interface an RaspberryPi“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLV5610IDW_12-Bit__seriell__SPI__TMS320.pdf
2 V, 4V Code 20 to 1023 ±0.1 ±1 LSB TLV5629 Code 6 to 255 ±0.1 ±1 E Zero-scale error (offset error at zero scale) ±30 mV ZS EZS TC Zero-scale-error temperature coefficient 30 µV/°C E Gain error ±0.6 % of FS G voltage EGTC Gain error temperature coefficient 10 ppm/°C OUTPUT SPECIFICATIONS AV DD - VO Voltage
in „Hilfe zu DAC über SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SimpleNIOSLab.pdf
previous step, make the following connections for the clock signal: Component A Component B pll | c0 ↔ nios | clk pll | c0 ↔ onchip | clk1 pll | c0 ↔ jtag_uart | clk pll | c0 ↔ sysid | clk pll | c0 ↔ leds | clk MAX1000 P a g e | 17 www.arrow.com Nios II Soft Core Lab January 2019 The connections should
in „MAX10 Webinar von Arrow mit MAX1000 Board“ · FPGA, VHDL & Co. ·
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PDF
picdream.asm.pdf
scrollingtotheleft ; * grey bars * ; * 12:00 * (This is theclock) ; ************* ; ; TITLE "PICDREAM" LIST P=16C84 #Define W 0 #Define F 1 cblock 0x00 INDF,RTCC,PCL,Status,FSR,PortA,PortB endc cblock 0x08 EEData,EEAdr,PClath,IntCon endc cblock 0x00 C,DC,Z,PD,TO,RP0,RP1,IRP endc ; Page1registers Roption EQU 01H
in „PIC-Prozessor programmieren“ · Mikrocontroller und Digitale Elektronik ·
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activity_recognition_from_accelerometer_data.pdf
Seewald 2002). Cascading is an iterative process available in the Weka toolkit: of combining classifiers: at each iteration, the training data ≥ Decision Tables set is extended with the predictions obtained in the previ- ous iteration. Cascading in general gives sub-optimal results ≥ Decision Trees (C4.5) ≥
in „Menschliche Bewegung detektieren (laufen von gehen unterscheiden)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmel_AVR_Lernunterlage_v3.pdf
ermöglicht werden. 2 Abb. 2: Architektur des AVR-µC AT90S8515 Eigenschaften des verwendeten AVR-µC AT90S8515: Ø 118 Befehle (benötigen zumeist nur einen Taktzyklus zur Abarbeitung) Ø Taktfrequenz 4 MHz bzw. 8 MHz (extern eingespeist) Ø 8-Bit breiter Datenbus
in „Lernunterlage AVR-Assembler (inkl. Befehle in DEUTSCH)“ · Projekte & Code ·
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PDF
Atmel_AVR_Lernunterlage_v4.pdf
ermöglicht werden. 2 Abb. 2: Architektur des AVR-µC AT90S8515 Eigenschaften des verwendeten AVR-µC AT90S8515: Ø 118 Befehle (benötigen zumeist nur einen Taktzyklus zur Abarbeitung) Ø Taktfrequenz 4 MHz bzw. 8 MHz (extern eingespeist) Ø 8-Bit breiter Datenbus
in „Lernunterlage AVR-Assembler (inkl. Befehle in DEUTSCH)“ · Projekte & Code ·
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PDF
LGT8FX8P_databook_v1.0.4.pdf
控制器数据线 PC5/ADC5/SCL PC5: 可编程端口 C5 40 28 20 ADC5: ADC 模拟输入通道 5 SCL: I2C 控制器时钟线 PC6/RESETN 41 29 1 PC6: 可编程端口 C6 RESETN: 外部复位输入 PC7/ADC8/APN2 42 - - PC7: 可编程端口 C7 ADC8: ADC 模拟输入通道 8 APN2: 差分放大器反向输入通道 2 PF0/ADC9/APN3 PF0: 可编程端口 F0 43 -
in „Spot Welder Firmware Update fehlerhaft“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LGT8FX8P_databook_v1.0.4.pdf
控制器数据线 PC5/ADC5/SCL PC5: 可编程端口 C5 40 28 20 ADC5: ADC 模拟输入通道 5 SCL: I2C 控制器时钟线 PC6/RESETN 41 29 1 PC6: 可编程端口 C6 RESETN: 外部复位输入 PC7/ADC8/APN2 42 - - PC7: 可编程端口 C7 ADC8: ADC 模拟输入通道 8 APN2: 差分放大器反向输入通道 2 PF0/ADC9/APN3 PF0: 可编程端口 F0 43 -
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ENG_SS_114-2025_G3.pdf
information. Such information can be obtained through a local Representative, by visiting our website at www.te.com, or by calling PRODUCT INFORMATION or the TOOLING ASSISTANCE CENTER at the numbers at the bottom of page 1. 2.3. Drawings Customer Drawings for product part numbers are available from the
in „Welcher Stecker ist das (Schaltbildinterpretation)“ · Fahrzeugelektronik ·
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PDF
DMX_512.PDF
characteristics of active electronics compliant with this edition of 21 the Standard, which are not known at the passive wall plate. 22 23 24 Table 12.5.3 - 5 pin XLR data outlet / wall plate marking 25 5 Pin XLR - Cable Scheme Permitted Marking at Comments 26 Pins Wired XLR 27 1, 2, 3 C1 DMX512 Scheme C1 28 1, 2, 3 C2 DMX512 Scheme C1 Can be upgraded to full wiring of XLR and remarked for Scheme C2 at later date if required 29 1, 2, 3, 4, 5 C1 not permitted -Note 1- 30 1, 2, 3, 4, 5 C2 DMX512 Scheme C2 necessary
in „DMX Kabel anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DMX_512.PDF
characteristics of active electronics compliant with this edition of 21 the Standard, which are not known at the passive wall plate. 22 23 24 Table 12.5.3 - 5 pin XLR data outlet / wall plate marking 25 5 Pin XLR - Cable Scheme Permitted Marking at Comments 26 Pins Wired XLR 27 1, 2, 3 C1 DMX512 Scheme C1 28 1, 2, 3 C2 DMX512 Scheme C1 Can be upgraded to full wiring of XLR and remarked for Scheme C2 at later date if required 29 1, 2, 3, 4, 5 C1 not permitted -Note 1- 30 1, 2, 3, 4, 5 C2 DMX512 Scheme C2 necessary
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PDF
DMX_512.PDF
characteristics of active electronics compliant with this edition of 21 the Standard, which are not known at the passive wall plate. 22 23 24 Table 12.5.3 - 5 pin XLR data outlet / wall plate marking 25 5 Pin XLR - Cable Scheme Permitted Marking at Comments 26 Pins Wired XLR 27 1, 2, 3 C1 DMX512 Scheme C1 28 1, 2, 3 C2 DMX512 Scheme C1 Can be upgraded to full wiring of XLR and remarked for Scheme C2 at later date if required 29 1, 2, 3, 4, 5 C1 not permitted -Note 1- 30 1, 2, 3, 4, 5 C2 DMX512 Scheme C2 necessary
in „DMX 512 Lichtsteuerpult bauen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mv_gcctest9.lst
me, mail to 11:mv_gcctest9.c **** volkeroth@gmx.de 12:mv_gcctest9.c **** You might find more AVR related stuff at my homepage: 13:mv_gcctest9.c **** http://members.xoom.com/volkeroth 14:mv_gcctest9.c **** */ 15:mv_gcctest9.c ***
in „Multiplikation ist zu schnell...“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RK032ML05.pdf
determined after the unit has been ‘ON’ and stable for approximately 30 minutes in a dark environment at 25 ℃. The values specified are at an approximate distance 500mm from the LCD surface at a viewing angle of Ф and θ equal to 0°. Values Item Sym. Unit Note Min. Typ. Max. 1)Contrast Ratio C/R 300 400
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PDF
DE200610__1_.pdf
RC3 RA5/AN4 7 2 7 2 C10 23 2 4 2 220Ω RC4 IC1 R15 24 RC5 RD7 30 100n 25 29 220Ω TX/RC6 RD6 26 RX/RC7 RD5 28 27 +VCC RD4 +VCC 33 INT/RB0 RD3 22 34 21 C3 1µ 35 RB1 PIC16F877 RD2 20 RB2 RD1 R5 C13 25V 36 RB3/PGM RD0 19 2 37
in „ekg schaltung aus heft 10/2006“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
KSZ8851SNL.pdf
to 0x27 0x26 Global Reset Register [7:0] 0x26 - 0x27 0x27 GRR 0x0000 Global Reset Register [15:8] 0x28 0x28 - 0x29 0x28 Reserved Don’t Care None 0x29 to 0x2A Wakeup Frame Control Register [7:0] 0x2B 0x2A - 0x2B WFCR 0x0000 0x2B Wakeup Frame Control Register [15:8] 0x2C 0x2C 0x2C - 0x2D 0x2D to Reserved
in „KSZ8851 Ethernet komplizierte Frage.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lite05.asm
data_led_7_8 .equ dled79 = 0b11010000 ;data_led_7_9 .equ dled7a = 0b11000000 ;data_led_7_a .equ dled7c = 0b10101100 ;data_led_7_c .equ dled7e = 0b10100100 ;data_led_7_e .equ dled7f = 0b11100100 ;data_led_7_f .equ dled7h = 0b11000001 ;data_led_7_h .equ dled7l = 0b10101101 ;data_led_7_l .equ dled7p = 0b11100000
in „titelnamen aus winamp für avr8515“ · Mikrocontroller und Digitale Elektronik ·
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PDF
armStoneA8_Hardware_V110_eng.pdf
Memory: 256 MByte DDR2 DRAM (optional 512MB) 128 MByte NAND Flash (optional 1 GByte) CPU: Samsung S5PV210 800MHz CPU (optional 1GHz) Operating temperature: 0°C...+70°C (optional -20…+85°C) 3 Block diagram Digital
in „Handydummy (Attrappe)mit richtigem Display 10Zoll - u.a.Motorola Xoom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATtiny26.pdf
for ATtiny26 • Speed Grades – 0 - 8 MHz for ATtiny26L – 0 - 16 MHz for ATtiny26 • Power Consumption at 1 MHz, 3V and 25°C for ATtiny26L – Active 16 MHz, 5V and 25°C: Typ 15 mA – Active 1 MHz, 3V and 25°C: 0.70 mA – Idle Mode 1 MHz, 3V and 25°C: 0.18 mA – Power-down Mode: < 1 µA 1477K–AVR–08/10 Pin Configuration
in „ATtiny26(L) Analog-Digital-Wandler ( ADC ) Datenblattübersetzung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmel_AVR_Lernunterlage_v2.pdf
ermöglicht werden.2 Abb. 2: Architektur des AVR-µC AT90S8515 Eigenschaften des verwendeten AVR-µC AT90S8515: Ø 118 Befehle (benötigen zumeist nur einen Taktzyklus zur Abarbeitung) Ø Taktfrequenz 4 MHz bzw. 8 MHz (extern eingespeist) Ø 8-Bit breiter Datenbus
in „Programmer incl. neuem Code für Atmel AN910“ · Projekte & Code ·
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Datei
StartXC167.A66.txt
--------------------------- * ; This section describes the initialization data generated by: * ; - C166 for explicit variable initializations (in ?C_INITSEC) * ; - L166 to clear memory regions (in ?C_CLRMEMSEC) * ; * ; Explicit variable initilizations at C source level are stored by C166 in * ; the section ?C_INITSEC. All partial sections are combined at linker level * ; to one section. The section end value DW 0 taken from the library module * ; ?C_ENDINIT. This module is included with the ?C_ENDINIT symbol
in „CAPCOM6 an Port1“ · Mikrocontroller und Digitale Elektronik ·
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Datei
debug_okay.asm
r25, 0x0F ; 15 196: 01 97 sbiw r24, 0x01 ; 1 198: f1 f7 brne .-4 ; 0x196 <acquire_DHT+0x22> 19a: 00 c0 rjmp .+0 ; 0x19c <acquire_DHT+0x28> 19c: 00 00 nop _delay_ms( 1); // § how long do we have to wait at least? // send start condition (18ms low) SENSOR_PORT &= ~(1<<SENSOR_PIN ); 19e: 28 98 cbi 0x05,
in „Fehler bei einfacher Integer-Division?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
********************************************************** * * Atmel Corporation * * - File : main.c * - Compiler : IAR EWAAVR 2.28a/3.10c * * - Support mail : avr@atmel.com * * - Supported devices : ATmega48/88/168 * * - AppNote : AVR444 - Sensorless control of three-phase brushless * DC motors with
in „Funktionen vs Interrupts“ · Mikrocontroller und Digitale Elektronik ·
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PDF
wt8871.pdf
0” toggle follow active “1” toggle follow vcnt bit0 0 R/W 6 tconC_ ctl[6] “0” Reset toggle at Vsync falling edge “1” Reset toggle at Vsync rising edge 0 R/W 5 tconC_ ctl[5] 0: Enable vertical component 1: Disable vertical component 0 R/W 4 tconC_ ctl[4] 0: Enable horizontal
in „LCD Display HT070I36-E00“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slaa123.pdf
filter at the output does the bandwidth limiting with a cutoff frequency approximately 2.7 KHz. The capacitor C4 across the feedback path also provides some high frequency roll-off. Technically this filter is
in „Nur ein einfacher Gong“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
specified range. First, this range is defined in BIOS by a temperature and the interval (e.g., 55 °C ± 3 °C). As long as the current temperature remains below the low end of this range (i.e., 52 °C), the fan is off. Once the temperature exceeds the low end, the fan turns on at a speed defined in BIOS
in „(Windows/Winbond) CPU Temperatur auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schematics.pdf
R33 CAPLN CASC 3 LOOPBACK_RIGHT 6 237 12CAPLP 0603 XCTRL 8 2 RIGHT_IN AMP_RIGHT_IN 7 11VINLP CCLK/{256~/512} CON001 5 10VINLN STEREO_JACK LMV722M COUT/{DF0}3 2 SOIC8 4 2 18 CIN/{DF1} VINRP 5 AGND 19 CLATCH/{M~/S} ADC_M~/S VINRN 16 28 CAPRN LRCLK PJ7_RFS0_S FER4 C215 R34 R22 17 27 600 10UF 5.76K 5.76K
in „Versorgung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
Low_Drop_Spannungsregler_MCP_1702-5002.pdf
output voltage tolerance • Output voltage range 1.2V to 5.5V in 0.1V of the MCP1702 is typically ±0.4% at +25°C and ±3% Increments (50 mV increments available upon maximum over the operating junction temperature range of -40°C to +125°C. Line regulation is ±0.1% request) typical at +25°C. • Stable with 1.0
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PDF
atmega2560_2561.pdf
settings, normal port operation, OC1A/OC1B/OC1C disconnected. 1 0 Clear OCnA/OCnB/OCnC on compare match, set OCnA/OCnB/OCnC at BOTTOM (non-inverting mode). 1 1 Set OCnA/OCnB/OCnC on compare match, clear OCnA/OCnB/OCnC at BOTTOM (inverting mode). Note: A special case occurs when OCRnA/OCRnB/OCRnC equals TOP and COMnA1/COMnB1/COMnC1 is set. In this case the compare match is ignored, but the set or clear is done at BOTTOM. See “Fast PWM Mode” on page 150. for more details. Table 85 shows the COMnx1
in „Ethernet Buchse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RM-MPU-3300.pdf
I2C_SLV0 27 39 I2C_SLV0_CTRL R/W I2C_SLV0_LEN[3:0] _EN _BYTE_SW _REG_DIS _GRP I2C_SLV1 28 40 I2C_SLV1_ADDR R/W I2C_SLV1_ADDR[6:0] _RW 29 41 I2C_SLV1_REG R/W I2C_SLV1_REG[7:0] 2A 42 I2C_SLV1_CTRL R/W I2C_SLV1
in „SPI Kommunikation mit MPU3300“ · Mikrocontroller und Digitale Elektronik ·