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DSPIC33EP512GM710_datasheet.pdf
5> IEC3<5> IPC13<6:4> INT4 – External Interrupt 4 62 54 0x000080 IFS3<6> IEC3<6> IPC13<10:8> (1) C2RX – CAN2 RX Data Ready 63 55 0x000082 IFS3<7> IEC3<7> IPC13<14:12> C2 – CAN2 Event(1) 64 56 0x000084 IFS3<8> IEC3<8> IPC14<2:0> PSEM – PCPWM Primary Event 65 57 0x000086 IFS3<9> IEC3<9> IPC14<6:4> QEI1
in „Probleme mit SRAM 23LCV1024“ · Mikrocontroller und Digitale Elektronik ·
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Datei
st-link_gdbserver_log.txt
features:read+;QStartNoAckMode+;QNonStop+;qXfer:threads:read+;hwbreak+;swbreak+#f2 [1.998] read(): <676> Rx: + [1.998] read(): <676> Rx: $vMustReplyEmpty#3a [1.998] write(): <676> Tx: + [1.998] write(): <676> Tx: $#00 [1.998] read(): <676> Rx: + [1.998] read(): <676> Rx: $QStartNoAckMode#b0 [1.998] write()
in „STM32 Cube IDE Inline Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
StateMaschineTest.c
***************************************** #define br 0x6272 // #define gp 0x6770 // #define le 0x6C65 #define ph 0x7068 #define ad 0x6164 #define re 0x7265 #define sc 0x7363 #define oc 0x6F63 #define ld 0x6C64 #define ls 0x6C73 #define pu 0x7075 #define ar 0x6172 #define du 0x6475 #define s2 0x7332 #
in „undefined referenz to main“ · Mikrocontroller und Digitale Elektronik ·
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basic_interpreter.pdf
Argument Systemfunktion 1 : gebe Asciizeichen aus Argument: auszugebendes Ascii-Zeichen 10 for a= 65 to 90 20 func 1,a 30 next a GOSUB / RETURN Ein Unterprogramm aufrufen 10 out(0)= 0 20 gosub 200 30 out(0)= 1 40 gosub 200 50 goto 10 200 rem ########### 210 rem delay 220 rem ########### 230 delay(500
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70599B.pdf
Microchip MCP1700T-3302E/TT IC7 Buffer-SC70 Package Fairchild NC7SZ125P5X L1 Chip Inductor 0402 8.2N Panasonic ELJ-RF8N2JFB L2 Chip Inductor 0402 2.7N Panasonic ELJ-RF2N7DFB L3 Chip Inductor 0402 4.7N Panasonic ELJ-RF4N7DFB L4 Chip Resistor 0402 0Ohms Dale CRCW04020000Z0ED L5 Chip Inductor 0402 3.3N Panasonic ELJ-RF3N3DFB L6 Chip Inductor 0402 3.9N Panasonic ELJ-RF3N9DFB L7 Chip Inductor 0402 1.5N Panasonic ELJ-RF1N5DFB L8 Chip Inductor 0402 18N Panasonic ELJ-RF18NJFB L9 Chip Inductor 0402 1.5N Panasonic ELJ-RF1N5DFB
in „AVR32UC3B mit Funkmodul MRF24J40MB“ · Mikrocontroller und Digitale Elektronik ·
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Class_2_Bluetooth_Module_with_EDR_Support_DS500023-2256355.pdf
5.2 PCM_IN 9 16 UART_CTS 4.0 2.8 PCM_OUT 10 15 UART_RTS 0.7 VDD 11 14 UART_TX 0.0 0.0 GND 12 13 UART_RX 35 29 34 33 32 31 28 30 0 1 2 3 4 6 7 80 2 3 2 0 0 1 1 1 1 D 0 9 8 D 0 I N 1 1 I OI N I Dimensions are in millimeters A G P P P P G A Tolerances: G G G G PCB Outline: +/- 0.13 mm PCBThickness: +/- 0.1
in „[V] Microchip Bluetooth Module RN41-I/RM und RN42-I/RM“ · Markt ·
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SAF_C515C-LM.pdf
F7n4H 5) UU H3) LAR1 Lower Arbitration Register High F7n5 5) UUUUU000 3) H 5) B 3) MCFG Message Configuration Register F7n6H UUUUUU00 B DB0 Message Data Byte 0 F7n7H 5) XX H3) DB1 Message Data Byte 1 F7n8 5) XX 3) H H DB2 Message Data Byte 2 F7n9H 5) XX H3) DB3 Message Data Byte 3 F7nA 5) XX 3) H5) H3) DB4 Message Data Byte 4 F7nB H XX H DB5 Message Data Byte 5 F7nC H5) XX H3) DB6 Message Data Byte 6 F7nD 5) XX 3) H5) H3) DB7 Message Data Byte
in „SAF C515C LM auslesen verzweiflung :(“ · Mikrocontroller und Digitale Elektronik ·
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AT90CAN128.pdf
clock edges and data sampling or data change is the same. The basic principle is that data input (on RxDn) is sampled at the opposite XCKn clock edge of the edge the data output (TxDn) is changed. Figure 17-3. Synchronous Mode XCKn Timing. 7+P2Ln = 1 :+Kn 4N,n 6N,n 5=mFlA 7+P2Ln = :+Kn 4N,n 6N,n 5=mFlA
in „Umrechnen von analog to digital“ · Mikrocontroller und Digitale Elektronik ·
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BGS12PL6_V2_0.pdf
Insertion Loss 0.33 0.36 0.40 dB 824-915MHz IL 0.40 0.46 0.50 dB 1710-1910MHz All RF Ports 0.52 0.56 0.65 dB 2170-2690MHz 0.65 0.77 0.90 dB 3800MHz Return Loss 20 25 35 dB 824-915MHz All RF Ports RL 16 20 28 dB 1710-1910MHz 14 18 27 dB 2170-2690MHz 12 15 20 dB 3800MHz Isolation 34 37 – dB 824-915MHz ISORFin
in „RF Switch : Ein-/Ausgang und Impedanz“ · HF, Funk und Felder ·
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MC9S08MM128RM.pdf
T T P S S S 2 2 2 2 P S I O X X R T C 0 7 6 1 1 2 R1 6 5 3 3 4/ G F F D S F F E E D S E P P P V V N N N N P P P P V VT D S P 4 3 2 1 0 9 8 7 6 5 4 3 2 1 0 9 PTA0/SS1 1 6 6 6 6 6 5 5 5 5 5 5 5 5 5 5 4 48 PTD7/RX1 IRO 2 47 PTD6/TX1 PTA4/INP1+ 3 46 PTD5/SCL/TPM1CH3 PTA5 4 45 PTD4/SDA/TPM1CH2 PTA6 5 44
in „Freescale s08mm128 und USB“ · Mikrocontroller und Digitale Elektronik ·
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EPJ_03_mod.pdf
SXUSRVH▯▯:KHQ▯WKH▯ V\VWHP▯ZLWK▯0\&38▯ORRNV▯OLNH▯▯$W▯WKH▯OHIW▯ 6\VWHP▯LV▯SRZHUHG▯RQ▯LW▯VHDUFKHV▯ VLGH▯\RX▯VHH▯WKH▯0\&38▯FXEH▯▯7KH▯WZR▯ IRU▯ERRW▯ILOHV▯RQ▯WKH▯3&▯▯7KH▯XVHU▯ RWKHU▯ERDUGV▯DUH▯WKH▯PHPRU\▯EDVHERDUG▯ FDQ▯FKRRVH▯RQH▯RI▯IRXU▯VRIWZDUH▯ ZLWK▯▯▯▯▯N%▯5$0▯DQG▯WKH▯56▯▯▯▯LQWHUIDFH▯ SDFNDJHV▯WKDW▯LV▯WKHQ
in „Embedded Projects Journal: 3. Ausgabe erschienen“ · Mikrocontroller und Digitale Elektronik ·
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en.DM00091010.pdf
R A R R R A R R R R S B T T T U T U S D Reset value 0 0 0 0 0 0 0 0 0 0 N N N N N . . . N N . . . N N N 5 E 4 3 2 . . N . . E . . E . . N N . . N . RCC_APB1ENR e e e R SE e e e B 2 E1 T T T T e e 2 e e G e e 1 e e 7 6 e e 3 e 0x1C R R R W R R R R S C C A A A R A R R P R R
in „EFM32F030 und Standby“ · Mikrocontroller und Digitale Elektronik ·
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P51XAG30KFA.pdf
P1.1/A1 SS DD SU00525 20 P2.2/A14D10 42 P1.2/A2 21 P2.3/A15D11 43 P1.3/A3 22 P2.4/A16/D12 44 P1.4/RxD1 SU00580 LOGIC SYMBOL VDD VSS XTAL1 T2EX* T2* 1 TXD1 T R D1 O A3X S XTAL2 P S A2 R U A1 D B A0/WRH D A RST EA/WAIT PSEN ALE T R U P B A A D D N RxD0 A I S T TxD0 E C INT0 R U INT1 3 D F R 0 A T T0 O
in „P51XAG30, Flash schreiben 80C51 Struktur“ · Mikrocontroller und Digitale Elektronik ·
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RTX1040ProductSpecification_v2.5.pdf
supply, typical 2,5VDC 12,76, Voltage supply (max 3,45V) 85 input 6 GND5 GND Ground 7 LRSN Speaker n signal 18 Output 8 LRSP speaker p signal 23 Output 9 MICH RX audio for the PSTN line 21 Input interface 10 GND4 GND Ground 11 CIDINN / MICP CID negative input 19 Input 12 CIDOUT / MICN Ring out 20 Output
in „Falls jemand eine Fernsteuer-App fürs Handy sucht.“ · Haus & Smart Home ·
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jupiter-gps_TU30-D160-0x1_.pdf
minutes) (minutes) (km) (m/sec) (minutes) Warm 0.30 0.4 100 75 5 1 4 Initialized 0.8 1.0 100 75 5 1 N/A Cold 2.0 2.5 N/A N/A N/A 1 N/A Frozen Note 1 Note 1 N/A N/A N/A N/A N/A N/A = Not available in real-time to the receiver. Note that times are valid at 25 degrees Celsius with no satellite signal blockage
in „[V] GPS-Module - Conexant Jupiter TU30-D160 mit 10kHz-Ausgang“ · Markt ·
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PDF
A500_EA0FP481-43SW-DB.pdf
Stand 5.2010 embedded 4,3"TFT -DISPLA Y 480x272MITINTELLIGENZ ! I HE U N E LT W E Abmessung: 107x71x12mm TECHNISCHEDATEN * TFT-GRAFIKDISPLAY MIT GRAFIKFUNKTIONEN * 480x272 PIXEL, 16-BIT COLOR (65.536 FARBEN) MIT LED-BELEUCHTUNG * GEDREHTER EINBAU 272x480 PIXEL (ORIENTIERUNG
in „eDIPTFT43 Ansteuerungsarten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
synthesis.txt
. n = 8 slicenr = 6 Analyzing hierarchy for entity <vector_register> in library <work> (architecture <rtl>) with generics. n = 8 slicenr = 5 Analyzing hierarchy for entity <vector_register> in library <work
in „zu viele unconnected warnungen bei synthese“ · FPGA, VHDL & Co. ·
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irmck203.pdf
Host Parallel Write Cycle HPCSN HP_nCS HPWENS tHPWEN HP_nWE HPAS HP_A HPA HP_D [7:0] tHPD[7:0] tHPD[7:0]S HP_nOE HPOEN HPOENS Figure 10: Host Parallel Write Cycle SYMBOL DESCRIPTION MIN MAX UNITS NOTE t HP_nCS Period 70 ns HPCSN HPWENS HP_nWE Setup 40 ns HPWEN HP_nWE Period 70 ns HPAS HP_A Setup -10 ns HPA HP_A Period 70 ns t HP_D [7:0] Setup -10 ns HPD[7:0] HPOENS HP_nOE Setup 40 ns HPOEN HP_nOE Period 70 ns Note 4 Table 17: Host Parallel
in „BLDC, Synchronmaschine, Drehfeld Experimentierschaltung“ · Mikrocontroller und Digitale Elektronik ·
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MCP2551.pdf
bus inactive — 125 ns -40°C ≤ AMB ≤ +85°C, VRS = 0V — 170 ns -40°C ≤ TMB ≤ +125°C, VRS = 0V 5 TtxL2rx(d) Delay TXD to receive active — 130 ns -40°C ≤ AMB ≤ +125°C, VRS = 0V — 250 ns -40°C ≤ AMB ≤ +125°C, RS = 47 kΩ 6 TtxH2rx(r) Delay TXD to receiver — 175 ns -40°C ≤ TMB ≤ +85°C, inactive VRS = 0V — 225
in „CAN-BUS - Nur empfangen - Was mache ich mit dem TXD Pin am Tranceiver??“ · Mikrocontroller und Digitale Elektronik ·
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Telit_UC864-E_Hardware_User_Guide_r1.pdf
Configurable GPIO / PCM Data Output CMOS 2.6V PCM_TX 64 TGPIO_22 I/O Telit GPIO22 Configurable GPIO CMOS 1.8V 65 TGPIO_18/ I/O Telit GPIO18 Configurable GPIO / PCM Data input CMOS 2.6V PCM_RX 66 TGPIO_03 I/O Telit GPIO3 Configurable GPIO CMOS 2.6V 67 TGPIO_08 I/O Telit GPIO8 Configurable GPIO CMOS 2.6V 68 TGPIO
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ATMEGA8_DATENBLATT.pdf
1 0 PIND7 PIND6 PIND5 PIND4 PIND3 PIND2 PIND1 PIND0 PIND Read/Write R R R R R R R R Initial Value N/A N/A N/A N/A N/A N/A N/A N/A 65 2486X–AVR–06/10 External The external interrupts are triggered by the INT0, and INT1 pins. Observe that, if enabled, the Interrupts interrupts will trigger even if the
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
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Ultrasonic_Anemometer_2D_Ultrasonic.pdf
bit <ID> BR 00003 2400 Baud N 8 1 <ID> BR 00011 2400 Baud E 7 1 Data rate 2400 Baud, 7 Data bits, Parity Equal, 1 Stop bit <ID> BR 00004 4800 Baud N 8 1 Data rate 4800 Baud, 8 Data bits, No Parity, 1 Stop bit <ID> BR 00012 4800 Baud
in „Hitzdrahtanemometer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ultrasonic_Anemometer_2D_Ultrasonic.pdf
bit <ID> BR 00003 2400 Baud N 8 1 <ID> BR 00011 2400 Baud E 7 1 Data rate 2400 Baud, 7 Data bits, Parity Equal, 1 Stop bit <ID> BR 00004 4800 Baud N 8 1 Data rate 4800 Baud, 8 Data bits, No Parity, 1 Stop bit <ID> BR 00012 4800 Baud
in „Modellbau Anemometer und Windrichtung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
asynch.c
Quelle //Einschalten der Phase-Locked Loop (PLL) und erhöhung der Systemtaktrate mit dem Faktor M/N = 2 SFRPAGE = CONFIG_PAGE; PLL0CN = 0x00; // setze den internen osc. als PLL Quelle SFRPAGE = LEGACY_PAGE; FLSCL = 0x10; // Setze FLASH-Speicher zum speichern einer Taktfrequenz von 50MHz clk // oder
in „Programmierung Lcd Display mit einem C8051F124 von Silabs“ · Mikrocontroller und Digitale Elektronik ·
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Bestandsliste.pdf
Wima 2.2nF RM=10mm 400V 42 Stk 0,05 € 1,89 € 1377 FKC33300PF40 Kondensator Wima 3.3nF RM=10mm 400V 2Stk 0,08 € 0,16 € 1378 FKC33300PF15 Kondensator Wima 3.3nF RM=15mm 1000V 65Stk 0,07 € 4,23 € 1379 FKS33900PF
in „Auflösung Elektronik Shop“ · Markt ·
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DM00043574.pdf
I R R R R R R R R R R S s T T T e US T T S R R Reset value 0 0 0 0 0 0 0 0 0 0 ) ) 3 ( 2 2 ( ( N N ) 2 N 2 2 . (. E E . N N . N N N N N 3 2 . ( (N . . E . . . . N N . (N (N N RCC_APB1ENR e E 1 R e 2 N e E E 1 5 4 T T e E E e e D e e e e 7 6 e E E 2 0x1C R 3 A W R C A R S C 2 R RT A RA R P I R R
in „STM32F3 Discovery als USB Keyboard“ · Mikrocontroller und Digitale Elektronik ·
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Diplomarbeit_PID.pdf
für berechnete und gemessene Spannung bei gleicher Ob- jektdistanz. 15 3. Der Regelkreis 3 2,5 ) 2 ( n Rechnung n 1,5 n Messung p S 1 0,5 0 0,04 0,05 0,06 0,07 0,08 0,09 0,1 0,11 0,12 0,13 Distanz(m) Abbildung 3.9: Spannung in Abhängigkeit der Entfernung 3.2.3 PWM-Verstärker Die Ansteuerung des Hubmagneten
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doc4298.pdf
TIMER1 COMP1 TIMER1 COMPA 6 0x0005 TIMER1 OVF1 TIMER1 OVF 7 0x0006 TIMER0 OVF0 TIMER0 OVF 8 0x0007 UART RX USART0 RX 9 0x0008 UART UDRE USART0 UDRE 10 0x0009 UART TX USART0 TX 11 0x000A ANA_COMP ANALOG COMP 12 0x000B PCINT 13 0x000C TIMER1 COMPB 14 0x000D TIMER0 COMPA 15 0x000E TIMER0 COMPB 16 0x000F USI
in „tiny2313-90S2313“ · Mikrocontroller und Digitale Elektronik ·
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CY8C38xxx.pdf
CY8C38 Family Data Sheet Figure 7-18. CAN Bus System Implementation CAN Node 1 CAN Node 2 CAN Node n PSoC CAN Drivers CAN Controller En Tx Rx CAN Transceiver CAN_H CAN_L CAN_H CAN_L CAN_H CAN_L CAN Bus 7.5.1 CAN Features Receive path 16 receive buffers each with its own message filter CAN2.0A/B protocol
in „Cypress ICE Cube“ · Mikrocontroller und Digitale Elektronik ·
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Datei
flash_console_out.txt
lock/hotplug/mount_tmp/.sda1 ret: 0 Hotplug: Mount "sda1" successfully. build_imgfile_list: namelist[n]->d_name: . build_imgfile_list: namelist[n]->d_name: .. build_imgfile_list: namelist[n]->d_name: 3DFHDL_3DS4600_Forced_Update_Manual.pdf build_imgfile_list: namelist[n]->d_name: System Volume Information
in „Fantec Mediaplayer 3DS4600 zeigt nur noch Startbildschirm“ · Mikrocontroller und Digitale Elektronik ·
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atmega2560_2561.pdf
Multi-processor Communication Mode” on page 225. UCSRnB – USART Control Bit 7 6 5 4 3 2 1 0 and Status Register n B RXCIEn TXCIEn UDRIEn RXENn TXENn UCSZn2 RXB8n TXB8n UCSRnB Read/Write R/W R/W R/W R/W R/W R/W R R/W Initial Value 0 0 0 0 0 0 0 0 Bit 7 – RXCIEn: RX Complete Interrupt Enable n Writing this bit to
in „Ethernet Buchse“ · Mikrocontroller und Digitale Elektronik ·
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pic18f2320.pdf
I P P P P K P S X D D S S S S C C 1 / / / / / / / / / / C C C D D D D C C C C R R R R R R R R R R N 4 4 4 4 4 3 3 3 3 3 3 RC7/RX/DT 1 33 NC 32 RC0/T1OSO/T1CKI RD4/PSP4 2 RD5/PSP5/P1B 3 31 OSC2/CLKO/RA6 RD6/PSP6/P1C 4 30 OSC1/CLKI/RA7 RD7/PSP7/P1D 5 PIC18F4220 29 VSS V SS 6 28 VDD VDD 7 PIC18F4320 27
in „I2C-Bus Collision“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f10x.h
< Ethernet Wakeup through EXTI line Interrupt */ CAN2_TX_IRQn = 63, /*!< CAN2 TX Interrupt */ CAN2_RX0_IRQn = 64, /*!< CAN2 RX0 Interrupt */ CAN2_RX1_IRQn = 65, /*!< CAN2 RX1 Interrupt */ CAN2_SCE_IRQn = 66, /*!< CAN2 SCE Interrupt */ OTG_FS_IRQn = 67 /*!< USB OTG FS global Interrupt */ #endif /* STM32F10X_CL
in „STM32 - Eclipse, ARM GCC - Funktionsaufruf geht nicht :-(“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f10x.h
< Ethernet Wakeup through EXTI line Interrupt */ CAN2_TX_IRQn = 63, /*!< CAN2 TX Interrupt */ CAN2_RX0_IRQn = 64, /*!< CAN2 RX0 Interrupt */ CAN2_RX1_IRQn = 65, /*!< CAN2 RX1 Interrupt */ CAN2_SCE_IRQn = 66, /*!< CAN2 SCE Interrupt */ OTG_FS_IRQn = 67 /*!< USB OTG FS global Interrupt */ #endif /* STM32F10X_CL
in „C-Libs for USB and OLED-Display“ · Mikrocontroller und Digitale Elektronik ·
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MFprot_LP.PDF
follows (least significant byte first). B7 B0 Command: 0 1 0 0 1 0 0 1 (Ascii “I”, 0x49) Argument1: N N N N N N N N (N = MF source block address 0 – 255) Argument2: T x x K K K K K (T = Key Type, 0 = KeyA, 1= KeyB) (K = Key code number, 0 – 31) Argument3: N N N N N N N N (N = MF destination block address
in „Spannung/Strom glätten für RFID-Leser“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Webster-Tiefton-Revisited.pdf
) Φ (x) = F ψ (r,θ) e−λnx, 0 n n n=0 where 2 2 (37) ∇⊥ ψn+ λ n =n0, ∇⊥ψ n·∇ ⊥ =00, with λ = 0, ψ a constant (normalized to 1), the other eigenvalues λ real positive, 0 0 n and the eigenfunctions n real, orthogonal, and assumed normalized
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PDF
P87LPC767BN.pdf
DETECTOR SMOD1 = 0 SMOD1 = 1 START SHIFT TX CONTROL DATA ∉16 TX CLOCK TI SEND ∉16 SERIAL PORT INTERRUPT RX RI CLOCK LOAD SBUF 1-TO-0 TRANSITION START RX CONTROL SHIFT DETECTOR 1FFH BIT INPUT SHIFT REGISTER DETECTOR RxD LOAD P1.1 ALT SBUF INPUT FUNCTION SBUF READ SBUF 80C51 INTERNAL BUS TX CLOCK WRITE TO SBUF
in „uC P87LPC767 ,ports als schmitt-trigger eingänge“ · Mikrocontroller und Digitale Elektronik ·
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811EVBK.pdf
F R V N N N V B B N C R D R E D D D D D D D D I V V N O O O OS e h e P 8 P m e i o G 3 U t 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 1 1 1 2 2 2 2 2 2 2 2 2 2 3 3 1 m r m e M C e i e e r L M u 6 n P R f o 0 F t n t D / F n C 1 o o T t 9 C 1 E D l u ni T B : . E G e B r a i a D + R F h h E D P S D G 6 U w u L V D C 1 D b P s 3 G 0 N u e t + R 6 G h s t T U S n P e WW- D G D 3 7 8 0 9 K S S V N V R 4 R 5 D V R 1 3 G 3 N
in „Luminary Evalution Board als ARM JTAG“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC4060.pdf
input switching levels and can be driven by a TTL output by using a pull-up resistor tCCV. 2. Features n All active components on chip n RC or crystal oscillator configuration n Complies with JEDEC standard no. 7 A n ESD protection: u HBM JESD22-A114E exceeds 2000 V u MM JESD22-A115-A exceeds 200 V n Multiple package options n Specified from −40 °C to +85 °C and from −40 °C to +125 °C 3. Applications n Control counters n Timers n Frequency dividers n Time-delay circuits NXP Semiconductors 74HC4060; 74HCT4060 14-stage binary
in „Randsportart“ · Offtopic ·
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PDF
Star10_Part2.pdf
previously shown in Table 1 of Part 1. Up/Down arrow commands are used on the keypad to enter RIT and RX and TX - PBT offsets. The PBT function allows selected TX or RX offsets to vary ± 1.5 kHz moving theIFBWandothersourcesineithersideof tuning knob through the push-push switch ters. Commands are received
in „Projekt Kurzwellenempfänger Doppelsuper welcher VCO?“ · HF, Funk und Felder ·
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Datei
souce_code_esrM.txt
------- Reservation memory EEPROM . Eseg . Org 0x08; installation of the current segment addresses n1_1b: . Byte 1; EEPROM cell for the 1st byte of the amendment for n1 n1_2b: . Byte 2; EEPROM cell for the 2nd Amendment to byte n1 n2_1b: . Byte 3; EEPROM cell for the 1st byte of the amendments to n2 n2_2b: . Byte 4; EEPROM cell for the 2nd Amendment to n2 bytes n2_n1_1b: . Byte 5; EEPROM cell for the 1st byte of the amendment to (n2-n1) n2_n1_2b: . Byte 6; EEPROM cell for the 2nd Amendment to byte
in „Lcd zweite zeile wird nicht angesprochen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
esr_messgeraet.asm
------- Reservation memory EEPROM . Eseg . Org 0x08; installation of the current segment addresses n1_1b: . Byte 1; EEPROM cell for the 1st byte of the amendment for n1 n1_2b: . Byte 2; EEPROM cell for the 2nd Amendment to byte n1 n2_1b: . Byte 3; EEPROM cell for the 1st byte of the amendments to n2 n2_2b: . Byte 4; EEPROM cell for the 2nd Amendment to n2 bytes n2_n1_1b: . Byte 5; EEPROM cell for the 1st byte of the amendment to (n2-n1) n2_n1_2b: . Byte 6; EEPROM cell for the 2nd Amendment to byte
in „Lcd zweite zeile wird nicht angesprochen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
191095-an-01-de-ROBONOVA-I_BAUSATZ.pdf
nicht möglich. Beide Kontrolleinheiten haben eine maximale Verbindungsgeschwindigkeit von 115.200bps. RX RX-Port empfängt RS232-Signal Befehlsstruktur: RX [Portgeschwindigkeit], [Empfangsvariablen], [Fehlererkennungslabel] Erklärung des Befehls: Durch die Nutzung von Port 9 einer MR-C2000-Kontrolleinheit
in „Tubularer Linearmotor“ · Offtopic ·
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PDF
combined_comparison.pdf
_3 T2CH2_3 URTS_2/URTS_3 MISO/MISO_1 PD0 T1CH1N/T1CH1N_2 UTX_1 SDA_1 OPN1 T1CH3N/T1CH3N_1 PD1 AETR2 /T1CH3N_2 URX_1 SCL_1 SWIO PD2 A3 T1CH1/T1CH2N_3 T2CH3_1 /T1CH1_2 PD3 A4/AETR T1CH4_1 T2CH2/T2CH2_2 UCTS PD4 A7 T1ETR_2/T1CH4_3 T2CH1ETR (1) UCK OPO
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138720_DS.pdf
D 0 T R D K device at these or any other conditions above those listed in the operational D S R T N I VD N 4 V / / C / E 0 . 2 / D D 3 N . . L sectionsofthisspecificationisnotimplied.Exposuretoabsolutemaximumrating . R 3 3 3 T P C P P C conditions for extended periods may affect device reliability.
in „aduc812bs Wie programmieren?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
910.asm
Data rate, bauds ****GEAENDERT**** ;******** .equ XTAL = 8000 ;XTAL frequency, Khz (7.3728 Mhz) .equ N = 12 ;for 7.3728 Mhz/19.200Baud ;******** ;.equ XTAL = 8000 ;XTAL frequency, Khz (7.3728 Mhz) ;.equ N = 3 ;for 7.3728 Mhz/115.200Baud ;**** definitions for different chrystals and 115.200 baud **** ;
in „avr910 programmer“ · Mikrocontroller und Digitale Elektronik ·
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schaltplan.pdf
REV: 1.0 DC1 ADJ(GND) GND DC-005-5A-2.5 VDD5V 1 1 VDDLED 2 Company: - Sheet: 1/1 3 VDD5V 2 C11 100nF Date: 2021-02-24 Drawn By: deelan 1 2 3 VDD5V C12 10uF 1 2 3 GND GND VDD3V3 C13 1 2 3 4 5 N 10uF _ P C10 100nF N E VDD5V _ GND U2 VDD3V3 P S R CH340G E R D TITLE: 0 2 3 4 5 1 16 C C C C C C C C C C
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5 10 Ms Response Time R (3) TF - 11 16 Ms White Variation δW - 1.25 1.4 - (5), (6) Horizontal θx+ 65 70 - θx- 65 70 - Viewing Angle CR ¡Ù 10 Deg. (1), (6) Vertical θY+ 55 60 - θY- 55 60 - 18 / 27 Version 2.3 Issued Date: Apr. 20, 2010 Model No.: G070Y3-T01 Approval Note (1) Definition of Viewing Angle
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12 EasyLink/Default (IN) 46 nUART_RTS(OUT) 21 IO1 45 nUART_CTS(IN) 24 LoPow(IN) * 47 UART_TXD(OUT) 28 NFC_SCL 48 UART_RXD(IN) 29 NFC_SDA 41,44,49 GND 36 LED (OUT) 42,43 VDD BOOT(IN) 38 nWAKE_UP(IN) Other NC Function Description of
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062-9499 Rev. A 5 ELECTRICAL REQUIREMENTS 5.1 Block Diagram 5.1.1 TFT LCD Module 2 User I C BUS EDID RxTiming SOURCE Connector Controller DRIVE IC (EEPROM) FI-XB30SR- THine HF11 KZ4E064H21 NEC CFP uPD16772N 17” Wide XGA+ (1440*3x900) DC/DC Converter ???? Gamma VCOM Generator EDID BUS ??? LVDS Input DVDD