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Datei
main.c
); ICE_Respon_OK(); break; case PA_JTAGIDByte0: ICE_Respon_OK(); sendchar(KP_JTAG0); ICE_Respon_OK(); break; case PA_JTAGIDByte1: ICE_Respon_OK(); sendchar(KP_JTAG1); ICE_Respon_OK(); break; case PA_JTAGIDByte2
in „AVR JTAG Programmierung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
('A'); } void ICE_Read_Sync_CRC_EOP(){ crc1 = getchar(); eot = getchar(); } void ICE_Get_Sign_On(){ // 0x53 ICE_Read_Sync_CRC_EOP(); ICE_Respon_OK(); answer[0] = 'A'; answer[1] = 'V'; answer[2] = 'R'; answer[3] = 'N'
in „AVR JTAG Programmierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_Product_Update_M__03.pdf
Section 4.4 Applications Development Tools Software AVR Studio Starter Kits STK 500, AVRISP Emulation ICE200, ICE 10 ICE 10 ICE10 ICE200, ICE200, ICE200, ICE200, ICE10 ICE10 ICE 10 ICE 10 Tools Ordering Information Lead Time Please See Attached Lead Time Guide X X X X X X X Die Sales Packages 20-PDIP, 8
in „Atmel Familie“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_Product_Update_November_2002.pdf
Applications Please refer to Section 4.4 Development Tools Software AVR Studio Starter Kits STK 500, AVRISP ICE200, ICE 10 ICE 10 ICE10 ICE200, ICE200, ICE200, ICE200, Emulation ICE10 ICE10 ICE 10 ICE 10 Tools Ordering Information Lead Time Please See Attached Lead Time Guide Die Sales X X X X X 20-PDIP, 8-PDIP
in „Veraltete AVR's ?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmel-42330-atmel-ice_userguide.pdf
the latest front-end software. The Atmel-ICE must be connected to an available USB port on the host computer using the USB cable provided, or suitable USB certified micro cable. The Atmel-ICE contains a USB 2.0 compliant controller, and can operate
in „AVRISP mkII Connect Failed“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmel-ICE_UserGuide.pdf
the latest front-end software. The Atmel-ICE must be connected to an available USB port on the host computer using the USB cable provided, or suitable USB certified micro cable. The Atmel-ICE contains a USB 2.0 compliant controller, and can operate
in „Atmel ICE Programmer und UPDI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
51292S.pdf
support debug functions. (sometimes) Dedicated Debug Memory. VDD V SS J1 N S1 DAT O MCLR CLK VPP Rx1 Rx0 TP1 TP2 Debug ICE/ Memory ICD TP3 Device Debug Circuitry In general, ICE devices are designed for next-generation in-circuit emulator use and ICD devices are designed for in-circuit debugger use. However
in „PIC18F877 ICD2 bzw Brenner gesucht :-(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICE2AS01.pdf
1 Feb 2002 ICE2AS01/G ICE2BS01/G Electrical Characteristics Frequency Ratio f /f 4.5 4.65 4.9 osc1 osc2 ICE2AS01/G Frequency Ratio fosc3 osc4 3.18 3.35 3.53 ICE2BS01/G Max Duty Cycle D max 0.67 0.72 0.77 Min Duty
in „TFT LP mit IC ICE2AS01 defekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVRDUDE-doc-5.5.pdf
Pages MinW MaxW ReadBack ----------- ------ ------ ---- ------ ----- ----- --------- eeprom no 4096 8 0 9000 9000 0xff 0xff flash yes 131072 256 512 4500 9000 0xff 0x00 lfuse no 1 0 0 0 0 0x00 0x00 hfuse no 1 0 0 0 0 0x00 0x00 efuse no 1 0 0 0 0 0x00 0x00 lock no 1 0 0 0 0 0x00 0x00 calibration no 1 0 0 0 0 0x00 0x00 signature no 3 0 0 0 0 0x00 0x00 avrdude> dump eeprom 0 16 >>> dump eeprom 0 16 0000 ff ff ff ff ff ff ff ff ff ff ff ff ff ff ff ff |................| avrdude> write eeprom 0 1 2 3 4 >
in „USB-ISP PRogrammer unter Ubuntu“ · PC Hard- und Software ·
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PDF
avrdude.pdf
are prefixed by 0x). For the JTAG ICE mkII, if AVRDUDE has been built with libusb support, port may alternatively be specified as usb[:serialno]. In that case, the JTAG ICE mkII will be looked up on USB. If serialno is
in „AVRDude als Tool in AVR Studio 4 einbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PWM-Controller_ICE2QS01.pdf
no pulse will be generated. maximum on time is shown in Figure 5. 1 0.8 V 0.6 x a s V 0.4 0.2 0 0 5 10 15 20 25 30 Ton(us) Figure 5 Maximum current limit versus MOSFET maximum on time Version 2.2 9 4 Jul 2011 Quasi-Resonant PWM Controller ICE2QS01 Functional Description
in „Ausfall Netzteil HAMEG HMO3524“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LED_Matrix_Controller_V5.pdf
RESET pin of PWM block high for 1 clock Some RGB example settings: © pitschu 2019 FPGA matrix with ICE40UP5k Version 5, upd. 18.05.2021 11 LMX_CMD_PWM_LEDDCR0,0b10000111, // Enable; 125Hz; Mode=LFSR; prescaler high bits=11 LMX_CMD_PWM_LEDDBR, 0b11111111, // prescaler = 1023 (=48kHz at 48MHz sys clock
in „Universeller 64x64 LED-Matrix Controller“ · Projekte & Code ·
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PDF
ADSP-2181_Datenblatt.pdf
, FL0, FL1 and length with one end fixed to the EZ-ICE. The female plug is FL2. FL0-FL2 are dedicated output flags. FLAG_IN and plugged onto the 14-pin connector (a pin strip header) on the FLAG_OUT are available
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Physikalische Berechnung der Schmelzenthalpie von Eis
Experiment: m_ice = 145 g m_water = 467 g T_ice = -6.5 °C T_water, start = 87.1 °C T_water, end = 46.1 °C c_melt = (c_water * m_water * (T_water, start - T_water, end) - c_ice * m_ice * (-T_ice) - c_water * m_ice * T_water, end) / m_ice c_melt = (4.19 * 0.467 * (87.1 - 46.1) - 2.12 * 0.145 * 6.5 - 4.19 * 0.145 * 46.1) / 0.145 c_melt = 346.3 kJ/kg reference value: 333 kJ/kg
in „Physikprojekte“ · Offtopic · · Screenshots
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Datei
DIY_AVRICE__AVR_JTAG_ICE_.htm
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0 Transitional//EN"> <!-- saved from url=(0032)http://www.case2000.com/JtagIce/ --> <HTML><HEAD><TITLE>DIY AVRICE (AVR JTAG ICE)</TITLE> <META content="text/html; charset=iso-8859-1" http-equiv=Content-Type
in „programmer für avr studio 4.12 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
00004293.pdf
can be downloaded free of charge at www.microchip.com. Host System Requirements • Available USB 3.0/2.0 port ® ® ® • Microsoft Windows 7 or later, macOS and Linux • MPLAB X IDE version 6.00 or later Ordering Information Part Number Description Availability MPLAB ICE 4 In-Circuit Emulator, Programmer
in „AVR-Debugging: Speicherstelle überwachen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD594.pdf
) (0.889 0.254) 0.035 0.010 (17.78 0.25) (3.76 0.38) (0.89 0.25) 0.085 (2.16) 0.095 (2.41) 0.125 (4.57 0.76) 0.125 0.180 0.030 0.01 0.002 3.175) (3.18) (4.57 0.76) (0.25 0.05) MIN 0.018 SEATING (0.254 0.025) MIN 0.032 (0.457) PLANE 15° 0.047 0.000.017+0.0030.100 0.30 (7.62) REF (0.812) 0.100 0° (1.19 0.18) –0.002(2.54) 0.600 (15.24) (2.54) (0.43–0.05( BSC BSC BSC –8– REV. C
in „(V): AD594AQ“ · Markt ·
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PDF
421725987AD594_5_c.pdf
) (0.889 0.254) 0.035 0.010 (17.78 0.25) (3.76 0.38) (0.89 0.25) 0.085 (2.16) 0.095 (2.41) 0.125 (4.57 0.76) 0.125 0.180 0.030 0.01 0.002 3.175) (3.18) (4.57 0.76) (0.25 0.05) MIN 0.018 SEATING (0.254 0.025) MIN 0.032 (0.457) PLANE 15° 0.047 0.000.017+0.0030.100 0.30 (7.62) REF (0.812) 0.100 0° (1.19 0.18) –0.002(2.54) 0.600 (15.24) (2.54) (0.43–0.05( BSC BSC BSC –8– REV. C This datasheet has been download from
in „AD595 Ausgangssignal Pulsiert“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD595.pdf
) (0.889 0.254) 0.035 0.010 (17.78 0.25) (3.76 0.38) (0.89 0.25) 0.085 (2.16) 0.095 (2.41) 0.125 (4.57 0.76) 0.125 0.180 0.030 0.01 0.002 3.175) (3.18) (4.57 0.76) (0.25 0.05) MIN 0.018 SEATING (0.254 0.025) MIN 0.032 (0.457) PLANE 15° 0.047 0.000.017+0.0030.100 0.30 (7.62) REF (0.812) 0.100 0° (1.19 0.18) –0.002(2.54) 0.600 (15.24) (2.54) (0.43–0.05( BSC BSC BSC –8– REV. C
in „Thermoelent an AD595.Versorgung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
421725987AD594_5_c.pdf
) (0.889 0.254) 0.035 0.010 (17.78 0.25) (3.76 0.38) (0.89 0.25) 0.085 (2.16) 0.095 (2.41) 0.125 (4.57 0.76) 0.125 0.180 0.030 0.01 0.002 3.175) (3.18) (4.57 0.76) (0.25 0.05) MIN 0.018 SEATING (0.254 0.025) MIN 0.032 (0.457) PLANE 15° 0.047 0.000.017+0.0030.100 0.30 (7.62) REF (0.812) 0.100 0° (1.19 0.18) –0.002(2.54) 0.600 (15.24) (2.54) (0.43–0.05( BSC BSC BSC –8– REV. C This datasheet has been download from
in „Probleme mit dem AD595 (Thermoelement Typ K)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD594aq.PDF
) (0.889 0.254) 0.035 0.010 (17.78 0.25) (3.76 0.38) (0.89 0.25) 0.085 (2.16) 0.095 (2.41) 0.125 (4.57 0.76) 0.125 0.180 0.030 0.01 0.002 3.175) (3.18) (4.57 0.76) (0.25 0.05) MIN 0.018 SEATING (0.254 0.025) MIN 0.032 (0.457) PLANE 15° 0.047 0.000.017+0.0030.100 0.30 (7.62) REF (0.812) 0.100 0° (1.19 0.18) –0.002(2.54) 0.600 (15.24) (2.54) (0.43–0.05( BSC BSC BSC –8– REV. C
in „Mehrere Thermoelemente auf einen AD594AQ“ · Mikrocontroller und Digitale Elektronik ·
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Datei
accu.txt
":0.0, "HoursOfRain":0.0, "HoursOfSnow":0.0, "HoursOfIce":0.0, "CloudCover":87 }, "Night":{ "Icon":38, "IconPhrase":"Stark bewölkt", "HasPrecipitation":false, "ShortPhrase":"Erhebliche Bewölkung", "LongPhrase
in „ESP8266: JSON Daten decodieren ?“ · Mikrocontroller und Digitale Elektronik ·
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tft-lcd-controller-Overview-OpenCores.html
_r0p3_trm.pdf" target="_blank">http://www.arm.com/pdfs/DDI0236F_ssmc_pl093_r0p3_trm.pdf</a> (PrimeCell™ Synchronous Static Memory Controller [PL093] Revision: r0p3) <br> <br> - <a href="https://www.arm.com
in „Universal LCD+Input Modul mit MachXO2“ · FPGA, VHDL & Co. ·
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PDF
sam7s_user_guide.pdf
Board Description 3.2 AT91SAM7S64 Figure 3-1. AT91SAM7S64 Block Diagram Block Diagram TDI TDO JTAG ICE ARM7TDMI TMS SCAN TCK Processor JTAGSEL 1.8 V VDDIN System Controller Voltage GND TST Regulator VDDOUT FIQ AIC VDDCORE IRQ0-IRQ1 O Memory Controller VDDIO P SRAM Embedded Address PCK0-PCK2 Flash 16
in „AT91SAM7X64 SERIAL BOOTLOADER“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc6112.pdf
Board Description 3.2 AT91SAM7S64 Figure 3-1. AT91SAM7S64 Block Diagram Block Diagram TDI TDO JTAG ICE ARM7TDMI TMS SCAN TCK Processor JTAGSEL 1.8 V VDDIN System Controller Voltage GND TST Regulator VDDOUT FIQ AIC VDDCORE IRQ0-IRQ1 O Memory Controller VDDIO P SRAM Embedded Address PCK0-PCK2 Flash 16
in „AT91SAM7S-EK Nachbau“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nDDI0100E_ARM_ARM.pdf
Entwicklungssystem-Lösungen für ATMEL’s ARM7TDMI basierte SAM7S Flash Serie von MSC. SAM7S-EK SAM7S Start Up Bundle SAM-ICE EWARM-KS ecialPrice M S C Sp .l 9 € VAexc 1 9 Order code: AT91SAM7S-Startup Packet SAM7S-EK Kit SAM-ICE Kit D k Development Board mit AT91SAM7S256 JTAG ICE mit USB für ATMEL’s ARM a (ARM7TDMI, 55MHz
in „ARM was geht?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XLampXML2.pdf
Cree, Inc.nc. All rights reserved. The information in this document is subject to change without no ice. Cree, the Cr e logo and XLamp are registered tradema ks of Cree, Inc. 5 xlamp ® xm-l2 leds Relative Chromaticity Vs. Current, WW Relative Chromaticity vs. Current (Warm White) 0.012 0.008 0.004 ΔCCx
in „Li Akku effizient in WLED endladen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
68641_1_.pdf
Color LED. 1000 900 800 A 700 ( t 600 n Red e 500 u Green C Blue, White d 400 r a 300 r o 200 F 100 0 2.0 2.5 3.0 3.5 4.0 Forward Voltage (V) Copyright © 2010 Cree, Inc. All rights reserved. The information in this document is subject to change without no ice. Cree, the Cr e logo and XLamp are registered
in „Wieviel LEDs brauche ich?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AT91SAM9261-EK_Evaluation_Board.pdf
3.2 AT91SAM9261 Figure 3-1. Block Diagram Block Diagram JTAGSEL ARM926EJ-S Core TDI JTAG TSYNC TMS ICE ETM TCLK TCK Boundary Scan Instruction Cache MMU Data Cache P NTRST 16K bytes 16K bytes TPS0-TPS2 RTCK TPK0-TPK15 TCM BIU System Controller Interface BMS TST I D I D D0-D15 FIQ AIC A0/NBS0 IRQ0-IRQ2
in „ARM91SAM9261 Entwickler gesucht -Dringend“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rfax.pdf
CHILE (CBV) PUNTA ARENAS MAGALLANES, CHILE (CBM) CALL SIGNS FREQUENCIES TIMES EMISSION POWER CBV 4228.0 kHz ALL BROADCAST TIMES J3C 1 kW CBV 8677.0 kHz ALL BROADCAST TIMES J3C 1 kW CBV 17146.4 kHz ALL BROADCAST TIMES J3C 1 kW CBM 4322.0 kHz ALL BROADCAST TIMES J3C 1 kW CBM 8696.0 kHz ALL BROADCAST TIMES
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PDF
GL9540_ServiceManual.pdf
Verification Guildline Model 9975 Prìnnry Standard PRT High Tenperature Fluid Bath Tripìe Point Cell or Ice Bath (GuiìdlineEngineering Buìletin No. l4). PRT Copper Holding B'lock 4.2.2 Troubleshooting DVM 0.01Í accuracy 0sciIIoscope I mV resolution Frequency Counter L/? Hz to 10MHz range variable 0to 15 vdc
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PDF
PDF-Demo_Board.pdf
CONNECTIONS Device LEDs RS-232 S1 S2 S3 Pot LCD EEPROM Buzzer ICD Temp Y1/Y2 R16 Sensor 18-pin RB3:RB0 N/A MCLR RA4 RB0 RA0 N/A N/A N/A RB6/RB7 N/A Yes 28-pin RB3:RB0 RC6/RC7 MCLR RA4 RB0 RA0 RA3:RA1 RC3/RC4 RC2 RB6/RB7 RC3/RC4 Yes RD3:RD0 40-pin RB3:RB0 RC6/RC7 MCLR RA4 RB0 RA0 RA3:RS1 RC3/RC4 RC2 RB6
in „PIC steuert LED sehr seltsam“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FGH40N6S2D.pdf
N F R 40 f 60 T t ) F ( 30 50 t o V GE= 10V, GE = 15V, J = 25 C TJ= 25 C, VGE = 10V, GE= 15V 20 40 0 5 10 15 20 25 30 35 40 0 5 10 15 20 25 30 35 40 CE , COLLECTOR TO EMITTER CURRENT (A) ICE, COLLECTOR TO EMITTER CURRENT (A) Figure 11. Turn-Off Delay Time vs Collector to Figure 12. Fall Time vs Collector
in „Inverter Elektroden-Schweißgerät abgeraucht -> IGBT defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
doc7627.pdf
AT90USBKey Hardware User Guide 6-18 7627A–AVR–04/06 Complete Schematics Figure 6-1 . Schematics, 1 of 2 . e 0. 0 n E n R 1 0 C 02 P o 0 0 C 2 i 2 . . a [ [ v P P 0 - i o F 0 F 0 F 0 7 7 0 S t 1 0 6 6 0 6 5 0 6 C C R 4 R T c C 1 C C 1 C C 1 C C C d D A V V t 1 7DP 7CP u e C C C 5DP 5CP m B B d V V V 3DP 3CP W
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dbpxa210.pdf
Equal” 4-5 These errata apply to a previously released stepping. 6 X Fixed “50-MHz SDRAM Requires 0-ohm Resistors” 7 X X 17 Fixed “For ARM* Multi-ICE* JTAG Use” 8 X 18 Fixed “Excessive Oscillator Output Voltage to PEXTAL Pin” 9 X X 19 Fixed “Coin Cell Battery Issue” 10 X X 19 Plan Fix “Signal Integrity
in „Suche Informationen zu Intel Entwicklungs Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
thermocouplecircuit1.pdf
butabitmorechallenging)usingaVFCanda transformer(b). much messier than the method accurate method. An ice slushy can fairly inexpensive and quite accurate. shown in Figure 2. maintain a uniformity of about 0.1°C The most common difficulty encoun- Sometimes, the temperature of the without much difficulty. I’ve read that tered with this system is calibration. cold junction (terminal block) in Fig- an ice bath can maintain a uniformity Prudent positioning of the sensor near, ure 1c is allowed to float to ambient. of 0.01°C, but I’ve never been able to or on the terminal block is important. Then ambient
in „Thermocouple-Schaltung bitte um Erklaerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAM7-EX256.pdf
an A/B-type USB cable connected to an USB host or hub Or an external power adapter (6VAC/9VDC at 0.1A) Note: The board is not delivered with a JTAG/ICE interface which is required to start developing on the device. You may use one of the following devices for this purpose: Olimex’s ARM-JTAG Olimex
in „SPI-Initialisierung von zwei Geräte über den gleichen Bus“ · Mikrocontroller und Digitale Elektronik ·
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Datei
cd_avr_tech_lib_2006.txt
34M /media/cdrom0/appnotes/pdf_avr 607K /media/cdrom0/appnotes/pdf_avr32 14M /media/cdrom0/appnotes/software_avr 1.1M /media/cdrom0/appnotes/software_avr32 49M /media/cdrom0/appnotes 598K /media/cdrom0/cdstart 106M /media
in „STK500 CD ISO Image“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Dialogfenster zur Geräteauswahl in einer Microchip-Software
Device Device: PIC16C55 Device Family: ALL Microchip Tool Support Programmers PICSTART Plus MPLAB REAL ICE PICkit 1 PRO MATE II MPLAB ICD 2 PICkit 2 MPLAB PM3 MPLAB ICD 3 PICkit 3 Language and Design Tools ASSEMBLER v3.90 COMPILER v9.60 VDI Debuggers MPLAB SIM MPLAB ICD 2 PICkit 2 MPLAB REAL ICE MPLAB ICD 3 PICkit 3 MPLAB ICE 2000 PCM16XA0 MPLAB ICE 4000 No Module ICE/ICD Headers No Header OK Cancel Help
in „EPROM defekt“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
AVRStrudio4.11b401_Release_Notes.txt
rewriting the id scheme of debugging information entries. * Problems uploading elf/dwarf object files to ice50 and ice40 using USB has been fixed. MISC * Fixed problem that causes unstable operation when placing a breakpoint on line 65535 of an Assembler project SIMULATOR * ATtiny26: various fixes for Timer
in „AVRStudio4 v4.11 Build 401 Beta freigegeben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Elektronikladen07.pdf
werden kann. Darüber hinaus ist ICC08 in der Lage, Debuginformationen für den Source Level Debugger NoICE08 zu erzeugen. NoICE08 ist ein eigenständiges Softwareprodukt, welches jedoch mit ICC08 eine gemeinsame Schnittstellendefinition teilt. Mit anderen Worten: ICC08 und NoICE08 arbeiten perfekt im Team! Die Features des NoICE Remote Debuggers sind ausführlich im Abschnitt NoICE für den HC(S)12 beschrieben. NoICE08 kann zusätzlich die MON08 Debugschnittstelle der HC08 MCUs nutzen, um Programme in HC08 Controller zu laden
in „MC68000 von Motorolla“ · Mikrocontroller und Digitale Elektronik ·
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PDF
z80_basis.pdf
1 2 3 4 5 6 7 8 0 a a a a a a a a VCC T 7 6 5 4 3 2 1 0 p 2 p 7 p 3 p 4 p 5 p 6 p 8 p 0 sup 0 _ B B B B B B B B 74HCT32/2 0, wenn WR=0 + MREQ = 0 74HCT32/3 1 1 1 1 1 1 1 1 I s s s PsPsPsPsP s s s VCC in 4 D sup in 9 74HCT32
in „Z80 Einplatinencomputer für Lernzwecke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
z80_minimal.pdf
1 2 3 4 5 6 7 8 0 s s s s s s s s VCC B p p p p p p p p sup 0 T 7 6 5 4 3 2 1 0 74HCT32/2 74HCT32/3 1 1 1 1 1 1 1 1 _ 1 1 1 1 1 B1B1B1B1 1 0, wenn WR=0 + MREQ = 0 D D D D D D D D I a a a a a PaPaPaPa a VCC in 4 >1 in
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
z80_minimal.pdf
1 2 3 4 5 6 7 8 0 s s s s s s s s VCC B p p p p p p p p sup 0 T 7 6 5 4 3 2 1 0 74HCT32/2 74HCT32/3 1 1 1 1 1 1 1 1 _ 1 1 1 1 1 B1B1B1B1 1 0, wenn WR=0 + MREQ = 0 D D D D D D D D I a a a a a PaPaPaPa a VCC in 4 >1 in
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
z80_minimal.pdf
1 2 3 4 5 6 7 8 0 s s s s s s s s VCC B p p p p p p p p sup 0 T 7 6 5 4 3 2 1 0 74HCT32/2 74HCT32/3 1 1 1 1 1 1 1 1 _ 1 1 1 1 1 B1B1B1B1 1 0, wenn WR=0 + MREQ = 0 D D D D D D D D I a a a a a PaPaPaPa a VCC in 4 >1 in
in „Z80 Board ausgebuddelt - Welche Anwendung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
z80_basis.pdf
1 2 3 4 5 6 7 8 0 a a a a a a a a VCC T 7 6 5 4 3 2 1 0 p 2 p 7 p 3 p 4 p 5 p 6 p 8 p 0 sup 0 _ B B B B B B B B 74HCT32/2 0, wenn WR=0 + MREQ = 0 74HCT32/3 1 1 1 1 1 1 1 1 I s s s s s PsPsPsPs s VCC in 4 D sup 0in 9 74HCT32
in „Z80 Spezies: Retro Fieber 2 - Es geht weiter.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
z80_basis.pdf
1 2 3 4 5 6 7 8 0 a a a a a a a a VCC T 7 6 5 4 3 2 1 0 p 2 p 7 p 3 p 4 p 5 p 6 p 8 p 0 sup 0 _ B B B B B B B B 74HCT32/2 0, wenn WR=0 + MREQ = 0 74HCT32/3 1 1 1 1 1 1 1 1 I s s s s s PsPsPsPs s VCC in 4 D sup 0in 9 74HCT32
in „TIL311 Ansteuerung - mal eben drüber schauen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
z80_basis.pdf
1 2 3 4 5 6 7 8 0 a a a a a a a a VCC T 7 6 5 4 3 2 1 0 p 2 p 7 p 3 p 4 p 5 p 6 p 8 p 0 sup 0 _ B B B B B B B B 74HCT32/2 0, wenn WR=0 + MREQ = 0 74HCT32/3 1 1 1 1 1 1 1 1 I s s s s s PsPsPsPs s VCC in 4 D sup 0in 9 74HCT32
in „Basic Interpreter für uC ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Loetstation-Schaltung.pdf
HEIZER R19 470 HEIZER-AUS LCD-SCLK LCD-DATA LCD-C/D (Blatt 2) LCD-ENA DG-A DG-B DG-S . D G +3,3V 24 P4.0 . VDD 36 P4.1 D SCLK 48 P4.2 N SDIN NUR_TEST 12 P4.3 G R9 R10 R11 28 C/D 29 P4.4 SCE ICE_CLK P4.5 OSC 30 P4.6 GND 22k 22k 22k ICE_DATA 31 P4.7 VOUT C13 C14 C15 /RESET 4 RST C6 16 RESET 10uF 10nF 10nF
in „JBC T245 Verbindungstechnisches Rätsel“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
77302_DS.pdf
= 15V A L E 40 E D V = 480V, V = 15V F N 30 CE GE F - - 200 N N U U T 20 T ) ) N F ( ( t t 10 100 0 10 20 30 40 0 10 20 30 40 ICE, COLLECTOR TO EMITTER CURRENT (A) ICE, COLLECTOR TO EMITTER CURRENT (A) FIGURE 7. TURN-ON DELAY TIME vs COLLECTOR TO FIGURE 8. TURN-OFF DELAY TIME vs COLLECTOR TO EMITTER
in „Hilfe bei Bauteilsuche“ · Analoge Elektronik und Schaltungstechnik ·