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S1D13504_MF1072-04.pdf
CAS# Before RAS# Refresh Timing....................................................................1-38 FPM-DRAM Self-Refresh Timing.............................................................................................1-38 7.4 Display Interface ...................................................
in „[V] Displaycontroller Epson SED1354 (800*600)“ · Markt ·
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PDF
AoE3_chapter9.pdf
LTC3780 - - 24 - 32 I • • • • • • M • 4 36 30V 2.4 0.80 200-400 0.6 6 4 N Y 13 6 Boost, Flyback, etc. UC384x 8 8 - - - I e - - - - - P - 9, 18ex 30 50,100% 11 2.5 500 m 0.5 V 1 N Y 20-30 7 ex c MIC38HC4x 8 8 - - - I e - - - - - P - 9, 16 20 50,100% 4 2.5 500 m 1 Vc 1 N Y 20-30 8 ISL684x 8 8 8 - 8 I e -
in „Labornetzgerät - Fragen zum Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Attiny24a-44a-84a.pdf
= ucAddress; EEDR = ucData; /* Write logical one to EEMPE */ EECR |= (1<<EEMPE); /* Start eeprom write by setting EEPE */ EECR |= (1<<EEPE); } Note: See “Code Examples” on page 6. 18 ATtiny24A/44A/84A 8183F–AVR
in „Kann jemand über meine Inialisierung drüberfliegen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
53131a_53132a_bedienungsanleitung_deutsch_komprimiert.pdf
Datenfilterung für as ingangs ignalal 1-35 Deakttivierungvon Stats und Math 1-37 Steuerungg der Messung 1-38 2 Bedienlng ung des Un iversalzälzählers Eii leitung 2-2 Zusammenfassungmg für dieses Kapitel 2-2 Einige relevante Arbeitsbeispiele 2-2 Was siesererählhler für Sie tun kann 2-4 Die MeB ßsteuertasten
in „[V] HP/Agilent 53131a/53132a Bedienungsanleitung deutsch“ · Markt ·
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PDF
ATM16_doc2466.pdf
setting EEWE sbi EECR,EEWE ret C Code Example void EEPROM_write(unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEWE)) ; /* Set up address and data registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMWE */ EECR |= (1<<EEMWE
in „ISP - Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ateme16.pdf
setting EEWE sbi EECR,EEWE ret C Code Example void EEPROM_write(unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEWE)) ; /* Set up address and data registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMWE */ EECR |= (1<<EEMWE
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ateme16.pdf
setting EEWE sbi EECR,EEWE ret C Code Example void EEPROM_write(unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEWE)) ; /* Set up address and data registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMWE */ EECR |= (1<<EEMWE
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slau144j.pdf
Flag Register 2 ...............................................................433........... 15.4.14 UC1IE, USCI_A1 Interrupt Enable Register ...................................................434........ 15.4.15 UC1IFG, USCI_A1 Interrupt Flag Register ..................................................
in „MSP430 Gleitkommazahl in Flash speichern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
family_guide.pdf
Flag Register 2 ...............................................................433........... 15.4.14 UC1IE, USCI_A1 Interrupt Enable Register ...................................................434........ 15.4.15 UC1IFG, USCI_A1 Interrupt Flag Register ..................................................
in „MSP430 Output nur auf zwei von vier Pinnen möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_ATmega32.pdf
setting EEWE sbi EECR,EEWE ret C Code Example void EEPROM_write(unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEWE)) ; /* Set up address and data registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMWE */ EECR |= (1<<EEMWE
in „Anschwingvorgang µC & Quarz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega16.pdf
setting EEWE sbi EECR,EEWE ret C Code Example void EEPROM_write(unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEWE)) ; /* Set up address and data registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMWE */ EECR |= (1<<EEMWE
in „DCF auf INT0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Rohm_BD6211.pdf
(1ch) 100 10 -40°C 25°C 85°C ] _] 80 µA 85°C AA 25°C [[ 5 [[ -40°C EE HI RV :t 60 I: ne nn ru er 0 uC uu ss 40 CC iB ai tu BB up uu-5 II 20 nI I 0 -10 0 1 2 3 4 5 6 0 1 2 3 4 5 Input Voltage IN[V] IInput Voltag : REF []] Figure 9. Input Bias Current vs Input Voltage Figure 10. VREF Input Bias Current
in „Frage zu Entladung von Elko“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Atiny2313.pdf
setting EEPE sbi EECR,EEPE ret C Code Example void EEPROM_write(unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEPE)) ; /* Set up address and data registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMPE */ EECR |= (1<<EEMPE
in „Suche tutorial“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Mega32.pdf
setting EEWE sbi EECR,EEWE ret C Code Example void EEPROM_write(unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEWE)) ; /* Set up address and data registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMWE */ EECR |= (1<<EEMWE
in „AVR Timer/Counter Zeit berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
eGC.pdf
L12 IO_L52N_M1DQ15_1 G11C20IO_L53P_1 PIIC20IO_L30N_A20_M1A11_1 PIIC20IO_38N_A4_M1CLKN_1 PIIC20IO_L44P_A3_M1DQ6_1 D Title D XC6SLX25 Size Number Revision A4 Date: 16.05.2012 Sheet of File: C:\Users\..\ARM_MEM.SchDoc Drawn By: 1 2 3 4 1 2 3 4 5 6 7 8 VTT COR4COR5COR6COR7CORCOR91O16
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GL9540_ServiceManual.pdf
fTI-WTl1 8-02 .01 CanbLon S I 200-25678 IC Dlgftal T05-8L Jernyn F 1 049-10010 Capacl_tor u25 74HCI38 F 3 707-00810 c57 DDlO2 S I 200-25108 Resfstor R3g,40,43 RLo75104J Centralab s I IC Dfgfral u15 q 782-0L462 Resfstor R4 cD40118CN Natfonal s I 150-01045 P111ar 8E16D 10 k0 G.R. I 043-00850 Capacftor
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ATmega32.pdf
setting EEWE sbi EECR,EEWE ret C Code Example void EEPROM_write(unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEWE)) ; /* Set up address and data registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMWE */ EECR |= (1<<EEMWE
in „STK500 als ISP“ · Mikrocontroller und Digitale Elektronik ·
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AVR_ATmega_328PB.pdf
Summary....................................................................................... 417 38. Packaging Information...........................................................................................421 38.1. 32A.........................................................................
in „ATmega328PB: UART(MC) empfängt falsche Daten“ · Mikrocontroller und Digitale Elektronik ·
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Alto_D1__D2__D3__D4_Power_Amp_Service_Manual.pdf
11 F 1 2 A 2 W 1 F9 4 P A 1 10 9 1 2 1 2 F2 / B F 0 F 5 3 P 402C 302C 12 11 5 R V05/ Fu22 V05/ Fu22 uC K 0 14 13 F0 4 1 R 16 15 G 5 C K 0 D 4 R 5 6 F 2 7 S W K 1 G + G 4 W 1 5 N N 2 1 N 5 6 - 2 M D V V D 7 2 K R 1 U 4 1 3 2 1 1 K 8 5 P 1 8 N B 0 . C M 4 2 2 5 1 7 P 3 B 0 . C J F 0 7 4 7 4 5 7 . 8 5 K
in „Endstufe reparieren, Bauteil identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-AN76496_PSoC_5LP_Solar_Microinverter_Control_Design-ApplicationNotes-v03_00-EN.pdf
algorithm is quick to find the UV Detect approximate peak, it is gross in its targeting. It will only put UC Detect the control in the approximate range of the peak. The method in Figure 13 is as time-based as it is level-based Slow Ramp because of the filter. It will improve in accuracy if the ramp is slower
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RCDN9.pdf
....................37 2. No Sound, Noise generated................................................38 2 ABOUT THIS MANUAL Read the following information before using the service manual. What you can do with this manual Search for a Ref. No. (phrase) Jump to the target of a schematic (Ctrl+Shift+F) diagram
in „Hifi Kompaktanlage mit Bluetooth Sender ausstatten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
VHF-COMM.1984.3.pdf
when Installed In a 50 () system " o 1SmA noise diode bios z ' 0 1;\ I system Impedance l or 50 n 2 38 • 2 36 • ....- r -......1 - • 'g 34 III32" 0---" 2,0-~~~", 5.0~~., ;- u Freouenc y (GHz) < W known from the varactor and Gunndiode tech a very low value with respect to the large fre nology quency range
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VHF-COMM.1984.3.pdf
when Installed In a 50 () system " o 1SmA noise diode bios z ' 0 1;\ I system Impedance l or 50 n 2 38 • 2 36 • ....- r -......1 - • 'g 34 III32" 0---" 2,0-~~~", 5.0~~., ;- u Freouenc y (GHz) < W known from the varactor and Gunndiode tech a very low value with respect to the large fre nology quency range
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TTester_096k.pdf
resistor is taken as Base resistor instead of the 680 . The current ampli▯cation factor is build by hFE = UC▯470000 UB▯(680+19) . The higher current ampli▯cation factor is assumed to be the right one, this one or the one found with the common collector circuit. The values found for the PNP are only valid, if
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Arcam-FMJ-P7.pdf
FLT_TEMP* TP155 12 MAINS_SW 2 MCLR RB7 39 FAULT6* IC 74HC259 RELAY1* 11 RA0 RB6 TX_OVTEMP 3 RA1 RB5 38 FAULT5* RELAY2* 10 4 RA2 RB4 37 FAULT4* RELAY3* 9 PWROK* 5 RA3 RB3 36 FAULT3* RELAY4* 8 WATCHDOG 6 RA4/T0CKI RB2 35 FAULT2* RELAY5* 7 7 34 FAULT1* C105 RELAY6* 6 FLT_VI* 8 RA5/SS RB1 33 TRIG/RC5 100N PE RELAY7* 5 X100 FLT_DC* 9 RE0/RD RB0/INT 32 UC5V TR102 TR104 TR105 TR106 TR107 TR109 TR110 4 CST4.00 FLT_TEMP* 10 RE1/WR VDD 31 GND1 BC547B BC547B BC547B BC547B BC547B BC547B BC547B 3 UC5V 11 RE2/CS VSS 30 GND1 SSPROT* +22VD_SW 2 VDD RD7/PSP7 GND1
in „Bandbreite von analogen Audioschaltungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Arcam-FMJ-P7.pdf
FLT_TEMP* TP155 12 MAINS_SW 2 MCLR RB7 39 FAULT6* IC 74HC259 RELAY1* 11 RA0 RB6 TX_OVTEMP 3 RA1 RB5 38 FAULT5* RELAY2* 10 4 RA2 RB4 37 FAULT4* RELAY3* 9 PWROK* 5 RA3 RB3 36 FAULT3* RELAY4* 8 WATCHDOG 6 RA4/T0CKI RB2 35 FAULT2* RELAY5* 7 7 34 FAULT1* C105 RELAY6* 6 FLT_VI* 8 RA5/SS RB1 33 TRIG/RC5 100N PE RELAY7* 5 X100 FLT_DC* 9 RE0/RD RB0/INT 32 UC5V TR102 TR104 TR105 TR106 TR107 TR109 TR110 4 CST4.00 FLT_TEMP* 10 RE1/WR VDD 31 GND1 BC547B BC547B BC547B BC547B BC547B BC547B BC547B 3 UC5V 11 RE2/CS VSS 30 GND1 SSPROT* +22VD_SW 2 VDD RD7/PSP7 GND1
in „Bester Audio OPV“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DD19FCD3d01.pdf
= ucAddress; EEDR = ucData; /* Write logical one to EEMPE */ EECR |= (1<<EEMPE); /* Start eeprom write by setting EEPE */ EECR |= (1<<EEPE); } 18 ATtiny13 2535I–AVR–05/08 ATtiny13 The next code examples show
in „HV-Prog für ATtiny13“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc2535.pdf
= ucAddress; EEDR = ucData; /* Write logical one to EEMPE */ EECR |= (1<<EEMPE); /* Start eeprom write by setting EEPE */ EECR |= (1<<EEPE); } 18 ATtiny13 2535J–AVR–08/10 ATtiny13 The next code examples show
in „RGB PWM mit Attiny13“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc2535.pdf
= ucAddress; EEDR = ucData; /* Write logical one to EEMPE */ EECR |= (1<<EEMPE); /* Start eeprom write by setting EEPE */ EECR |= (1<<EEPE); } 18 ATtiny13 2535J–AVR–08/10 ATtiny13 The next code examples show
in „ATtiny13 mit 20MHz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmega2560_2561.pdf
EEPE sbi EECR,EEPE ret (1) C Code Example void EEPROM_write(unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEPE)) ; /* Set up address and Data Registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMPE */ EECR |= (1<<EEMPE
in „Ethernet Buchse“ · Mikrocontroller und Digitale Elektronik ·
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Datei
samsung_galaxy_s32.asm
!±&B×Ð B £ Ž LÃ!þî A0Ä`Ì-ð0\:ì ÈÛEºV6Ó0¢ èÝÒ> wFüçÓ®]H)WË UÕÐr5kþ@ÑÕ¬U Ù6µ ^ïŽÊïÞÔÖ ðû 'O â À <Í÷ 38®òMÌ ² áS÷ ÌêÚ[ Üx ·è p"Û Ý.Ç èáîEÊwá[ 6ñ,ù3!íð +Eã ÍK ó ÀõFá¶5 4ì òî {ä Ïÿ æº ÐUãôýt EøÐ DÆÞ| ÿ ¥WŸ ·Ù2 gÿ £ŸÉTÉq k úÒÜèó Õ÷)å ãH ÍL ÛËáq Ìö`ÕÕÓ 26óíÝùë7 Îþ Ôq íÁL¹ä*qPç> ÁŒëôÆU sõÿò F MóõËËå_± š Ÿ)
in „Wie aus einer 3D Zeichung ein Negativ erstellen ?“ · PC Hard- und Software ·
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PDF
iC-JX.pdf
200uA D4 CONTROL L Filter 0 Monitor 600uA N C + 2mA IO1 D5 LOGIC Input S 0uA D6 IN1 K - VB-5.8V 200uA uC B Filter 74% VCC 62mAA D7 V 150mA - A0 INTERFACE O 1 I/O LOGIC VB-6V N 0 F + A1 6V ( T - A2 I 2 + SELAD(2:0) F A3-SCLK ADC MUX T A4 I/O LOGIC I/O STAGE 2 IO2 NCS NIOL IL0 NWR IL1 I/O LOGIC I/O STAGE
in „iC-JX: fertige GPIO / bidirektionale Pegelwandler für 12/24V und High-Side Treiber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmel-8393-mcu_wireless-atmega256rfr2-atmega128rfr2-atmega64rfr2_datasheet.pdf
64RFR2 C Code Example (Atomic Operation) void EEPROM_atomic_write(unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEPE)) ; /* Set up address and Data Registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMPE */ EECR |= (1<<EEMPE
in „AVR-Verlustleistung maximieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
onkyo_tx_nr_616_service_manual.pdf.pdf
P8004 FFC NCFC5-071012 1 2045071012 <B / S> P8651 CORD AS HDMI0.25M 1 2010494 <B / S> P901 AC CORD AS-UC-2 1 253368AYUN ! <B MDC> P901 or AC CORD AS-UC-2 ( 1) 253368BLTK ! <B MDC> P901 AC CORD AS-CNS 1 253431VOL ! <B MDF> P901 AC CORD AS-SAA 1 253388LTK ! <B MMA> P901 AC CORD AS-BS 1 253198LTK ! <B MMB,
in „Onkyo verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ATmega48PA-ATmega88PA-ATmega168PA_Datasheet.pdf
setting EEPE sbi EECR,EEPE ret C Code Example void EEPROM_write(unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEPE)) ; /* Set up address and Data Registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMPE */ EECR |= (1<<EEMPE
in „Probleme mit Int Capt ISR ATmega48PA“ · Mikrocontroller und Digitale Elektronik ·
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PDF
attiny84.pdf
= ucAddress; EEDR = ucData; /* Write logical one to EEMPE */ EECR |= (1<<EEMPE); /* Start eeprom write by setting EEPE */ EECR |= (1<<EEPE); } Note: See “Code Examples” on page 6. 18 ATtiny24/44/84 8006H–AVR
in „Attiny 84 ISP?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_ATtiny_24_44_84.pdf
= ucAddress; EEDR = ucData; /* Write logical one to EEMPE */ EECR |= (1<<EEMPE); /* Start eeprom write by setting EEPE */ EECR |= (1<<EEPE); } Note: See “Code Examples” on page 6. 18 ATtiny24/44/84 8006K–AVR
in „AVR Programm brennen ohne Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schwingkond-53278649.pdf
PARAMETRIC AMPLIFIER (B) ......... 19 FIGURE 1.2: LEAKAGE CURRENT VERSUS TEMPERATURE FOR AD549 OP-AMP [38] ........24. FIGURE 1.3: SIMPLEDIFFERENTIALAMPLIFIER.................................................26.......... FIGURE 1.4: TYPICAL MOSFET DIFFERENTIAL PAIRINPUTSTAGE...........................27..
in „DC-Messverstärker (Chopper) mit Kapazitätsdioden (diskret)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ATMega_48_88_168.pdf
setting EEPE sbi EECR,EEPE ret C Code Example void EEPROM_write(unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEPE)) ; /* Set up address and Data Registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMPE */ EECR |= (1<<EEMPE
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmega128_doc2467.pdf
setting EEWE sbi EECR,EEWE ret C Code Example void EEPROM_write(unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEWE)) ; /* Set up address and data registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMWE */ EECR |= (1<<EEMWE
in „ATMEGA128 Timer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT90CAN128.pdf
setting EEWE sbi EECR,EEWE ret C Code Example void EEPROM_write (unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEWE)); /* Set up address and data registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMWE */ EECR |= (1<<EEMWE
in „uC + 3 Schieberegister + 7-Segmentanzeige“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dmesg.txt
disabled [ 0.000136] TOM2: 0000001030000000 aka 66304M [ 0.001262] x86/PAT: Configuration [0-7]: WB WC UC- UC WB WP UC- WT [ 0.001600] total RAM covered: 3327M [ 0.001703] Found optimal setting for mtrr clean up [ 0.001704] gran_size: 64K chunk_size: 128M num_reg: 4 lose cover RAM: 0G [ 0.001818] e820: update
in „Rechner stürzt gelegentlich ab--> dmesg info“ · PC Hard- und Software ·
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PDF
ATmega1284P_128KByte.pdf
and clock options ................................................................................ 38 9.1 Clock systems and their distribution.........................................38..................... 9.2 Clock Sources ...............................................................39...........
in „ATmega1284P versus ohne P“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mega644.pdf
EEPE sbi EECR,EEPE ret C Code Example (1) void EEPROM_write(unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEPE)) ; /* Set up address and Data Registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMPE */ EECR |= (1<<EEMPE
in „AVR Controller braucht zu viel Strom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmegaXX4.pdf
setting EEPE sbi EECR,EEPE ret C Code Example(1) void EEPROM_write(unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEPE)) ; /* Set up address and Data Registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMPE */ EECR |= (1<<EEMPE
in „Atmega644PA Timer3“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_ATmega1281_doc2549.pdf
EEPE sbi EECR,EEPE ret (1) C Code Example void EEPROM_write(unsigned int uiAddress, unsigned char ucData) { /* Wait for completion of previous write */ while(EECR & (1<<EEPE)) ; /* Set up address and Data Registers */ EEAR = uiAddress; EEDR = ucData; /* Write logical one to EEMPE */ EECR |= (1<<EEMPE
in „LM73 über TWI/I2C mit Atmega1281 auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DE200610__1_.pdf
Gehäuse (Monacor Totzeiten und Impulsantwor- defekt werden sollte, ist es unverzichtbar, da anderen- UC-202H/SW) untergebracht ten sind ebenfalls Gegen- leicht austauschbar. Sogar falls die Bedienung des ent- werden kann. stand der Messungen. Zur ein DVD-Laufwerk ist brauch- fernt aufgestellten Signalgene
in „ekg schaltung aus heft 10/2006“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Aluminum_Electrolytic_Capacitors_EPCOS.pdf
the correspondingly higher rated current I~R(B) for base cooling has to be used instead of the rated 38 10/02 Aluminum Electrolytic Capacitors General Technical Information current I~Rfor natural cooling. To determine useful life, enter capacitor base temperature T iB the diagrams of the data sheets instead
in „Wie lange halten sich verpackte Elkos?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Transistortester.h
include "part_defs.h" #if defined (MAIN_C) #define COMMON /* The voltage at a capacitor grows with Uc = VCC * (1 - e**(-t/T)) The voltage 1.3V is reached at t = -ln(3.7/5)*T = 0.3011*T . Time constant is T = R * C ; also C = T / R for the resistor 470 kOhm is C = t / (0.3011 * 470000) H_Fakt = 707/100
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PDF
Bidirektionale_RS232_Funkbr_cke_mit_RFM12_2.pdf
" sagen, das kiingt besser. Es dürfte sich um eine undokumentierte Funktion handeln, wenn wenn der uC keinen INMT hat, dann ist es schwierig einen Peak von 1,6us Länge abzutasten. Gruss, Christian Autor: Benedikt K. (benedikt) (Moderator) Datum: 18.07.2007 16:20 Ist ein Schreibfehler von mir. A und 4
in „bidirektionale RS232 Funkbrücke mit RFM12“ · Projekte & Code ·