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uart_t1.c
#include "at89c51cc03.h" volatile char uart_data = 0x00; void main (void) { P2 = 0xFF; SCON = 0x50; // UART mode 1, 8 BIT, Reception ENable REN=1 TMOD |= 0x20; // Timer 1 in mode 2 TH1 = 0xFD; // 19200 Baud @ 22,118
in „8051*AT89C51CC03“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FLASH_IS25LP128.pdf
DC CHARACTERISTICS (Under operating range) Symbo (2) l Parameter Condition Min Typ Max Units NORD at 50MHz, 5 9 (3) FRD Single at 133MHz 7 11 ICC1 V CCActive Read current FRD Quad at 133MHz 10 14 FRD Quad DTR at 66MHz 10 14 85°C 20 (4) ICC2 V CCProgram Current CE# = VCC 105°C 17 22 (4) 125°C 25 (4)
in „STM32L4 memory-mapped QSPI Lesegeschwindigkeit maximieren“ · Mikrocontroller und Digitale Elektronik ·
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philips_chassis_qfu2.1e_la.pdf
USB-MAIN-DP 3 7EH1 3 ARX2- 96 18 +5VCA 4 CY7C65634 1 2 4 ARX1+ 95 cEC1 51 B03A FLASH +5V 6 ARX1- 94 CI_GPIO 1C30 7 ARX0+ 93 R0X 52 1 7EA0 +5V-PORTA 1 9 ARX0- 92 PCMCIA P CA-D(0-7) FRDx_PODDx CY7C65632 1E03 3 USB-CAM-DM 2 1 10 ARXC+ 91 6 1 4 USB-CAM-DP
in „Netzteil Philips LED TV reparieren??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ATMEGA8_DATENBLATT.pdf
vs. V CC 30 25 -40°C 20 25°C ) 85°C ( C 15 I 10 5 0 2.5 3 3.5 4 4.5 5 5.5 V CC(V) 281 2486X–AVR–06/10 Figure 183. ADC Current vs. V CC (AREF = AV CC ) ADC CURRENT vs. V CC AREF = AVCC 450 400 -40°C 25°C 350 85
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
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ATmega8_L__Summary.pdf
Table 15 on page 38. Shorter pulses are not guaranteed to generate a reset. 5 2486QS–AVR–10/06 AV CC AV CCis the supply voltage pin for the A/D Converter, Port C (3..0), and ADC (7..6). It should be externally connected to V, even if the ADC is not used. If the ADC is used, CC it should be connected
in „Daten im EEProm aufzeichnen und später über RS232 senden“ · Mikrocontroller und Digitale Elektronik ·
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asmjbt3.a51
Bit_79 bit 0x79 Bit_7A bit 0x7A Bit_7B bit 0x7B Bit_7C bit 0x7C Bit_7D bit 0x7D Bit_7E bit 0x7E Bit_7F bit 0x7F P00 bit 0x80 P01 bit 0x81 P02 bit 0x82 P03 bit 0x83 P04 bit 0x84 P05 bit 0x85 P06 bit 0x86 P07 bit 0x87 IT0 bit 0x88 IE0 bit 0x89 IT1 bit 0x8A
in „Eprom von Denon DJ Laufwerk defekt Winbond 78e52“ · Mikrocontroller und Digitale Elektronik ·
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Datei
UART.c
#include "at89c51cc03.h" #include "stdio.h" #include "MyVariable.h" extern void LCD(void); //-------------------------------------------------------------------------------------------------------- void UART_Init
in „8051*AT89C51CC03“ · Mikrocontroller und Digitale Elektronik ·
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an920-d.pdf
3 AN920/D 30 Q1 L ) TA= 25°C +Vin +V out A 10 V CC= 40 V ( n VCC = 5 V MC34063 D1 + C R r 3.0 μA78S40 o L C g 1.0 g a a. Step−Down V out V in C 0.3 ,g L Ic 0.1 Ichg= dischg +V +V in out D1 0.03 MC34063 + 0 0.2 0.4 0.6 0.8 1.0 μA78S40
in „MC34063 als Step Up arbeitet nicht“ · Analoge Elektronik und Schaltungstechnik ·
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AN920-D.pdf
3 AN920/D 30 Q1 L ) TA= 25°C +Vin +V out A 10 V CC= 40 V ( n VCC = 5 V MC34063 D1 + C R r 3.0 μA78S40 o L C g 1.0 g a a. Step−Down V out V in C 0.3 ,g L Ic 0.1 Ichg= dischg +V +V in out D1 0.03 MC34063 + 0 0.2 0.4 0.6 0.8 1.0 μA78S40
in „Spannungsregelung mit Step-Up/Down Regler“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
UART.c
#include "at89c51cc03.h" #include "stdio.h" #include "MyVariable.h" extern void LCD(void); //-------------------------------------------------------------------------------------------------------- void UART_Init
in „8051*AT89C51CC03“ · Mikrocontroller und Digitale Elektronik ·
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rdr-840q_30w_INN3977CQ.pdf
-21 130 VDC 400 VDC 500 VDC Component Temperature Temperature Temperature (°C) (°C) (°C) U1 (Primary Controller ) – Bx1 73.6 69.7 79.4 Q1, Q2 (SR FET) – Bx2 74.3 71.9 75.7 Ambient 28.5 26.8 28.2 IC temperature rise vs. 45.1 42.9 51.2 ambient (delta) Power Integrations, Inc. Tel
in „Frage zu PowerInc INN3977CQ“ · Analoge Elektronik und Schaltungstechnik ·
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40171a.pdf
0020h 0024 0208 MOVF 08,W TMR0 = PercentOn; //Get Delay time 0025 0021 MOVWF 01 0026 0C03 MOVLW 03h while(TMR0 >= 3 && LineInput == 0) //Delay to enter main at proper point 0027 0081 SUBWF 01,W 0028 0703 BTFSS 03,0 0029 0A2E GOTO 002Eh 002A 0686 BTFSC 06,4 002B 0A2E GOTO 002Eh 002C CLRWDT
in „Dimm-IC (230V) für Arduino gesucht“ · Haus & Smart Home ·
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TCM8240MD_E150405_REV13.pdf
24 5E 37 25 10 38 26 01 39 27 32 40 28 40 41 29 58 42 2A 20 43 2B 10 44 2C FRAME_LV[7:0] 00 45 2D CB_MODE[2:0] FRAME_LV[9:8] 0E 46 2E DINSW 44 47 2F 00 48 30 00 APCSW 49 31 03 50 32 FF 51 33 IDRS[1:0] AGMAX_PPED[0]AGMIN_PPED[0] PPEDB[0] PPEDGB[0] PPEDGR[0] PPEDR[0] 00 52 34
in „Cam-Modul TCM8240MD und ARM-Board per I²C“ · Mikrocontroller und Digitale Elektronik ·
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uc3842.pdf
; 0°C ≤ T ≤A70°C for the 384X; V CC= 15 V; R T 10 k ; C =T3.3 nF, T = A . J UC1842/3/4/5 PARAMETER TEST CONDITIONS UC2842/3/4/5 UC3842/3/4/5 UNIT MIN TYP MAX MIN TYP MAX ERROR AMP SECTION Input Voltage VPIN
in „Reparatur Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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R-IN32M-CL_CC-Link_IE_Field_Intelligent_device_station.pdf
functions. See Section 4.5.7 "LED control." R18UZ0015EJ0100 Page 4 of 149 Issue date : R-IN32M3 Series CC-Link IE Field 2. 1BSTATUS DISPLAY FUNCTIONS Table 2.2 LED Control List Output at Reset/Errorote3 R-IN32M3-C Internal WDT / LED Name Function L Output Control Source Power System External WDT / Signal
in „Wie funktioniert der Interrupt- bzw. Eventaufruf?“ · Mikrocontroller und Digitale Elektronik ·
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ds1308.pdf
CONDITIONS MIN TYP MAX UNITS Power-Supply Active Current I f = 400kHz 325 FA (Note 3) CCA SCL -33: CC = 3.63V 125 -3: V = 3.3V 125 Power-Supply Standby Current I CC FA (Note 4) CCS -18: CC = 1.89V 100 VCC = VCCMAX 200 Battery Leakage Current IBATLKG VCC R VPF -100 25 +100 nA Input Leakage (SCL) I VIN
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
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AN920-D.PDF
3 AN920/D 30 Q1 L TA= 25°C +Vin +V out A 10 V CC= 40 V ( n VCC = 5 V MC34063 D1 + C R r 3.0 μA78S40 o L u g 1.0 g a a. Step−Down Vout Vin C 0.3 ,g L Ic 0.1 Ichg= dischg +V +V in out D1 0.03 MC34063 + 0 0.2 0.4 0.6 0.8 1.0 μA78S40
in „Suche Buck-Boost für LiIon-Spannung auf 3,3V“ · Analoge Elektronik und Schaltungstechnik ·
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LYT4321E.pdf
BYPASS Pin VBP(H) 0 °C < TJ< 100 °C 0.85 V Voltage Hysteresis BYPASS Pin I = 4 mA V BP 6.1 6.4 6.7 V Shunt Voltage BP(SHUNT) 0 °C < TJ< 100 °C Soft-Start Time t TJ= 65 °C 51 72 ms SOFT V = 5.9 V BP 0 °C < TJ< 100 °C CD2 FET
in „PI LYTSwitch, wofuer diese Diode“ · Analoge Elektronik und Schaltungstechnik ·
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21709c_EEPROM.pdf
available Logic Logic Page Available for extended temperature ranges: Latches - Industrial (I): -40°C to +85°C I/O - Automotive (E): -40°C to +125°C SCL YDEC SDA V CC V SS Sense Amp. R/W Control 2003 Microchip Technology Inc. DS21709C-page 1 24AA02/24LC02B 1.0 ELECTRICAL CHARACTERISTICS (†) Absolute
in „EEPROM mit Infineon XC2200 ueber IIC benutzten“ · Mikrocontroller und Digitale Elektronik ·
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21709c.pdf
available Logic Logic Page Available for extended temperature ranges: Latches - Industrial (I): -40°C to +85°C I/O - Automotive (E): -40°C to +125°C SCL YDEC SDA V CC V SS Sense Amp. R/W Control 2003 Microchip Technology Inc. DS21709C-page 1 24AA02/24LC02B 1.0 ELECTRICAL CHARACTERISTICS (†) Absolute
in „24LC02B mit (scheinbar) seltsamer Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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atmel_32uc.pdf
AT32UC3A0512 AT32UC3A0512-ALUT 144 LQFP Tray Industrial (-40⋅C to 85⋅C) AT32UC3A0512-ALUR 144 LQFP Reel Industrial (-40⋅C to 85⋅C) AT32UC3A0512-ALTR 144 LQFP Reel Automotive (-40⋅C to 85⋅C) AT32UC3A0512
in „V: ATMEL 32UC3A0512-U“ · Markt ·
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Atiny2313.pdf
vs. V cc INTERNAL RC OSCILLATOR, 1 MHz 1.8 85 °C 25 °C 1.6 -40 °C 1.4 1.2 ) 1 m ( I0.8 0.6 0.4 0.2 0 1.5 2 2.5 3 3.5 4 4.5 5 5.5 Vcc(V) 187 2543I–AVR–04/06 Figure 89. Active Supply Current vs. V CC (Internal
in „Suche tutorial“ · Mikrocontroller und Digitale Elektronik ·
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Hantek_Tekway_Voltcraft_DSO_hw1007.pdf
100R 24R9 56pF -5A PIL030401 PIL030402 Rigol E hw58 C03_4404 PMBFJ308 - 6U marked 10uF PIC030402PIC03GND PIR0302PIR030202 PIR0305PIR030502 GND Rigol CA C03_353 +3.3DF1 10uF 806k 255k 2SK508 - K51 marked GND PIC0303502 PIC0303501 L03_630 C03_45045 ATTEN
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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A25L080_Flash.pdf
Current ± 2 µA ICC1 Standby Current S = VCC V INV SS or VCC 25 µA I Deep Power-down Current 25 µA CC2 S = VCC V INV SS or VCC C= 0.1V / 0.9.V at 100MHz, DO = open 25 mA CC CC I Operating Current (READ) CC3 C= 0.1V CC / 0.9.CC at 50MHz, DO = open 20 mA C= 0.1V / 0.9.V at 33MHz, DO = open 15 mA CC CC
in „MSP430 SPI A25L080 Flash“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Laptop.txt
Mouse ACPI0003 Microsoft-Netzteil PNP0C02 Motherboard Resources PNP0C04 Numeric Data Processor PNP0400 Parallel Port PNP0800 PC Speaker PNP030B PC/AT Enhanced Keyboard (101/102-Key) PNP0A03 PCI Bus PNP0C0C Power Button PNP0000 Programmable
in „Woher Treiber und Manual für Comtrade PC?“ · Softwareentwicklung ·
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objdump.txt
.word 0x3f90ad3a 80085f0: 24760deb .word 0x24760deb 80085f4: 3fa97b4b .word 0x3fa97b4b 80085f8: a0d03d51 .word 0xa0d03d51 80085fc: 3fb10d66 .word 0x3fb10d66 8008600: c54c206e .word 0xc54c206e 8008604: 3fb745cd .word 0x3fb745cd 8008608: 920083ff .word 0x920083ff 800860c: 3fc24924 .word 0x3fc24924 8008610
in „STM32F4 HardFault Interrupt bei stdlib Funktionen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
D_Listing.txt
PORTDbits RES 1 ; 0xF83 79: PORTE 80: PORTEbits RES 1 ; 0xF84 81: RES 4 82: LATA 83: LATAbits RES 1 ; 0xF89 84: LATB 85: LATBbits RES 1 ; 0xF8A 86: LATC 87: LATCbits RES 1 ; 0xF8B 88: LATD 89: LATDbits RES 1 ; 0xF8C 90: LATE 91: LATEbits RES 1 ; 0xF8D 92: RES 4 93: DDRA 94: DDRAbits 95: TRISA 96: TRISAbits
in „PIC18F4550 - PIC macht "nix"“ · Mikrocontroller und Digitale Elektronik ·
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DS_BT81X.pdf
No.: BRT_0002Clearance No.: BRT#126 43 G2 98.0 87 D#6 1244.5 44 G#2 103.8 88 E6 1318.5 45 A2 110.0 89 F6 1396.9 46 A#2 116.5 90 F#6 1480.0 47 B2 123.5 91 G6 1568.0 48 C3 130.8 92 G#6 1661.2 49 C#3 138.6 93 A6 1760.0 50 D3 146.8 94 A#6 1864.7 51 D#3 155.6 95 B6 1975.5 52 E3 164.8 96 C7 2093.0 53 F3 174.6
in „STM32F407 DISCOVERY mit EVE3 50GTPC von MatrixOrbital“ · Mikrocontroller und Digitale Elektronik ·
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trm-868-eur-463941_4_.pdf
−40 to +85 ºC DTS Mode 2 Storage Temperature −40 to +85 ºC LP Mode 6 Exceeding any of the limits of this section may lead to permanent damage to the device. Channel Spacing Furthermore, extended operation at these
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PDF
trm-868-eur-463941.pdf
−40 to +85 ºC DTS Mode 2 Storage Temperature −40 to +85 ºC LP Mode 6 Exceeding any of the limits of this section may lead to permanent damage to the device. Channel Spacing Furthermore, extended operation at these
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ATtiny26.pdf
Enabled) POWER-DOWN SUPPLY CURRENT vs. V CC WATCHDOG TIMER ENABLED 20 85 °C 18 25 °C -40 °C 16 14 12 ) ( C10 I 8 6 4 2 0 2 2.5 3 3.5 4 4.5 5 5.5 VCC (V) Standby Supply Figure 89. Standby Supply Current vs. V (455 kHz Resonator, Watchdog Timer
in „ATtiny26(L) Analog-Digital-Wandler ( ADC ) Datenblattübersetzung“ · Mikrocontroller und Digitale Elektronik ·
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Hut1_11.pdf
112 √ √ √ 4/101/104 Version 1.11 June 27, 2001 Universal Serial Bus HID Usage Tables 55 Ref: Typical AT-101 Usage ID Usage ID Usage Name Position PC- Ma UNI Boot (Dec) (Hex) AT c X 59 3B Keyboard F2 113 √ √ √ 4/101/104 60 3C Keyboard F3 114 √ √ √ 4/101/104 61 3D Keyboard F4 115 √ √ √ 4/101/104 62 3E Keyboard
in „USB HID Descriptor (V-USB)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
151904-da-01-en-HCNR200_Optokoppler.pdf
T T -55°C = NL 90TH PERCENTILE P 0 V < PD < 15 V C 1.1 – 0.03 BF % 0.015 5 nA < I< 50 µA E -40°C Y L PD O 1.0 25°C I N D R0.025 I 0.01 O E - T 0.9 85°C I S 0.005 H 100°C - 0.02 E P 0.8 N B U N O 0.0 P 0.7 I0.015
in „analoges Signal galvanische Trennung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCNR200_Optokoppler.pdf
T T -55°C = NL 90TH PERCENTILE P 0 V < PD < 15 V C 1.1 – 0.03 BF % 0.015 5 nA < I< 50 µA E -40°C Y L PD O 1.0 25°C I N D R0.025 I 0.01 O E - T 0.9 85°C I S 0.005 H 100°C - 0.02 E P 0.8 N B U N O 0.0 P 0.7 I0.015
in „ADC mit galv. Trennung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCNR200.pdf
T T -55°C = NL 90TH PERCENTILE P 0 V < PD < 15 V C 1.1 – 0.03 BF % 0.015 5 nA < I< 50 µA E -40°C Y L PD O 1.0 25°C I N D R0.025 I 0.01 O E - T 0.9 85°C I S 0.005 H 100°C - 0.02 E P 0.8 N B U N O 0.0 P 0.7 I0.015
in „Energy Meter mit ADE7769 - AVR“ · Mikrocontroller und Digitale Elektronik ·
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doc5131.pdf
cycles after the rising edge. At that time CLKM is turned off. If the CLKM output is turned off (bits CLKM_CTRL = 0 in register 0x03), the SLEEP state is entered immediately. 22 AT86RF230 5131E-MCU Wireless-02/09 AT86RF230 Setting SLP_TR
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mc35i_hd_v0103.pdf
. /EMERGOFF pin >3.2s at low level ALARM mode AT^SMSO /IGT > 100 ms at low --- or level exceptionally /EMERGOFF pin >3.2s at low level *Normal mode covers TALK, IDLE and SLEEP modes MC35i_HD_V01.03 Page 32 of 77 07.05.2004 MC35i
in „Taste im Hörer an GSM-Modul“ · Mikrocontroller und Digitale Elektronik ·
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xmega_a1.pdf
0.93 0.92 0.91 z H t t 0.9 o k 3.0 V f 0.89 1.8 V 0.88 0.87 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 T [°C] 81 8067I–AVR–04/09 XMEGA A1 Figure 34-23. Internal 2 MHz Oscillator CalA Calibration Step Size T = -40 to 85°C, CC = 3V 0.006 0.005
in „Welchen Wert hat der Pull-up-Widerstand dieses XMega?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P82B715.pdf
of V CC n ×10 impedance transformation, but does not change logic voltage levels NXP Semiconductors P82B715 2 I C-bus extender n Supply voltage range 3 V to 12 V n Clock speeds to at least 100 kHz and 400 kHz
in „Arduino I2C Probleme Sonsoren werden manchmal nicht gefunden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega128CAN11_short.pdf
-lead TQFP, 64-lead QFN, 64-lead CA-BGA Op– 2.7 - 5.5Vages Operating temperature – Industrial (-40°C +85°C) and Automotive (-40°C +125°C) Maximum Frequency – 8 MHz at 2.7V - Industrial range Rev. 4251A–AVR–May 2003 16 MHz at 4.5V - Industrial range Advance Information 1 Advance Information Disclaimer
in „ATmega128CAN11“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega128CAN11_short.pdf
-lead TQFP, 64-lead QFN, 64-lead CA-BGA Op– 2.7 - 5.5Vages Operating temperature – Industrial (-40°C +85°C) and Automotive (-40°C +125°C) Maximum Frequency – 8 MHz at 2.7V - Industrial range Rev. 4251A–AVR–May 2003 16 MHz at 4.5V - Industrial range Advance Information 1 Advance Information Disclaimer
in „ATmega128CAN11“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCNR200.pdf
SEC. Tp 260 +0/-5 °C 217 °C TL RAMP-UP R 3 °C/SEC. MAX. RAMP-DOWN U 150 - 200 °C 6 °C/SEC. MAX. AT smax R Tsmin P M s tL T PREHEAT 60 to 150 SEC. 60to180SEC. 25 t 25 °C to PEAK TIME NOTES: THE TIME FROM 25 °C to PEAK TEMPERATURE
in „Spannung messen mit Arduino von zwei nicht verbundenen Batteriebänken (Segelboot)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IS25LP128.pdf
DC CHARACTERISTICS (Under operating range) Symbo (2) l Parameter Condition Min Typ Max Units NORD at 50MHz, 5 9 (3) FRD Single at 133MHz 7 11 ICC1 V CCActive Read current FRD Quad at 133MHz 10 14 FRD Quad DTR at 66MHz 10 14 85°C 20 (4) ICC2 V CCProgram Current CE# = VCC 105°C 17 22 (4) 125°C 25 (4)
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PDF
MS-17631_2.0.pdf
2013 Sheet 35 of 49 2.0 A B C D ▯ A B C D E E BTB Conn From Port 1 SATA Conn 22 M M 1 R_SATA1TXN_C CC90 C0.01u25X0402 SATA1TXN_CCJNC 19 3 3 M 3 R_SATA1RXP_C CC7 C0.01u25X0402 SATA1RXP_CCJNC 16 +5VRUN_C 30 15 15 4 27 12 +5VRUN_C 12 4 C0.1u16Y0402 24 90 SATA1TXP_C 19 21 6 SATA1RXN_C CC12 CC13 6 PCBC1 18 3 SATA1RXP_C ▯ C10u10Y0805 C10u10Y0805 3 16 1 +3VRUN_C X_0R0402 1 3 3 E 3 ▯ M Q Q 1 SATA22PSF_BLACK-P E E M ▯ A A T N5N-22F0210-A81
in „In Circuit Programmierer für 8-pin 150mil SOIC PM25LD512“ · Mikrocontroller und Digitale Elektronik ·
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6neds.pdf
/AN06/D6 82 49 P45/CS1 P05/AN05/D5 83 48 P4 6/CS2 P04/AN04/D4 84 47 P4 7/CS3 P03/AN03/D3 P50/WRL/WR 85 46 P02/AN02/D2 86 45 P51/WRH/BHE P01/AN01/D1 87 44 P52/RD P00/AN00/D0 88 43 P53/BCLK P10 /AN /KI3 89 42 P54/HLDA P10 /AN 6/K2 90 41 P55/HOLD P105/AN /KI1 91 M16C/6N1 Group 40 P56
in „M16C- Key Input Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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MN-RBXEB-01.pdf
copied from the BIOS ROM to system RAM for faster execution. The setting is either Enabled or Disabled. C000,16K Shadow C400,16K Shadow These options specify how the 32 KB of video ROM at C0000h is treated. The settings are: Enabled (default), Disabled and Cached. C800,16K Shadow CC00,16K Shadow D000,16K
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Datei
usbdrv.c
..\inc\tpi_defs.h" #endif //************************************************************* #ifdef __C51__ // keil c51 //************************************************************* uint8_t xdata EP0_Buffer[EP0_SIZE + 2] _at_ 0x0000; uint8_t xdata serno[30] _at_ 0x0042; uint8_t xdata EP2_OutBuffer[BULK_SIZE
in „Raisonance vergibt nun RIDE + RKIT-51 Lizenzen kostenlos“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ads8684.pdf
B At A = 25°C, ±0.5 ±0.75 mV A input range = ±2.5 × REF At A = 25°C, ±0.5 ±1 mV A input range = ±1.25 × REF EO Offset error At A = 25°C, ±0.5 ±1.5 mV A input range = ±0.625 × REF At A = 25°C, ±0.5 ±2 mV A
in „Problem mit der SPI Datenübertragung zwischen einem Arduino Portenta H7 und einem ADS8684 (ADC)“ · Mikrocontroller und Digitale Elektronik ·
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FMMT618.pdf
Capacitance C obo - 23 30 pF V CB= 10V, f=1MHz Turn-On Time - 170 - ns t(on) V CC= 10V, C = 1A, Turn-Off Time t(off) - 400 - ns IB1= -B2 = 10mA Notes: 9. Measured under pulsed conditions. Pulse width ≤ 300µs. Duty
in „Maximal Strom von Atmel-MCU erhöhen“ · Mikrocontroller und Digitale Elektronik ·
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AN920-D_MC34063_Theory_and_Applications_.pdf
3 AN920/D 30 Q1 L ) TA= 25⋅C +V in +Vout A 10 VCC = 40 V ( + n V CC = 5 V MC34063 D1 Co RL r 3.0 A78S40 C g 1.0 g a a. Step–Down V out▯ Vin C 0.3 g L I 0.1 Ichg= Idischg +V in +Vout D1 + 0.030 0.2 0.4 0.6 0.8 1.0 MC34063 Q1 C R
in „Schaltregler MC34063 - Wie berechnet man CT?!“ · Analoge Elektronik und Schaltungstechnik ·