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PicoMite_User_Manual.pdf
for the pio specified PIO (FSTAT pio) returns the value of the FSTAT register for the pio specified PIO (FLEVEL pio) returns the value of the FLEVEL register for the pio specified PIO(FLEVEL pio) PORT(start, nbr
in „allgemeine PicoMite Anfängerfragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PicoMite_User_Manual_4_.pdf
PIO (FSTAT pio) returns the value of the FSTAT register for the pio specified PIO (FLEVEL pio returns the value of the FLEVEL register for the pio specified PIO(FLEVEL pio) PORT(start, nbr [,start, nbr]
in „Qual der Wahl - Sensoren Auswertung auf Display ("Analog")“ · Mikrocontroller und Digitale Elektronik ·
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doc6241-1369051.pdf
! One joystick and two user input pushbuttons ! One Reset pushbutton ! Three expansion connectors (PIO A, PIO B, PIO C) ! One EBI expansion BGA-like footprint connector 1-2 AT91SAM7SE-EK Evaluation Board User Guide 6241B–ATARM–22-Mar-07 Section 2 Setting Up the AT91SAM7SE-EK Board 2.1 Electrostatic The
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NovaComm_Control_Interface_User_Guide_Ver.2.3.pdf
of PIO assignment: ➔ BC:PM<CR><LF> query current configuration of PIO assignment. PM=08,09,0A,0B<CR><LF> report the current PIO assignment: DSR=PIO8, DTR=PIO9, RI=PIO10, DCD=PIO11. Ex. 5.41. To configure
in „Mini Bluetooth Module mit SPP und AT Command set“ · Mikrocontroller und Digitale Elektronik ·
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RCDN9.pdf
power: 80W+80W(4Ω, 1kHz, THD+N 10%) No. of channels: 1 – 13 ch z1 The Wi-Fi® CERTIFIED Logo and the Wi-Fi CERTIFIED On-Product Output terminals: Speaker:4-16 Ω (impedance)n Logo are registered trademarks of the
in „Hifi Kompaktanlage mit Bluetooth Sender ausstatten“ · Analoge Elektronik und Schaltungstechnik ·
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Manual_netX_Program_Reference_Guide_Rev02_GB.pdf
are 31 WRITE_PROTECT impossible. The bit will be only cleared by a netX system reset. 0 30 IRQ_POL_PIO72 External interrupt polarity for PIO[72] R/W 0 29 IRQ_POL_PIO47 External interrupt polarity for PIO[47] R/W 0 28 IRQ_POL_PIO40 External interrupt polarity for PIO[40] R/W 0 27 IRQ_POL_PIO36 External
in „netX500 mit ARM-Kern“ · Mikrocontroller und Digitale Elektronik ·
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Elektor83.PDF
4510 1,95 z80ADART....17,45,85uPD765......49,-- w LS160 1,70 s32... 1,50 4511 1,95 z80ADMA.....18.80 FD17911...... 49,-- LS161 1,65 s86... 1,90 4513 3,40 2804Pto.......7,85 FD1793. .49,-- LSl63 1,70 s124. 6,70 4514 3,40 z80Asro-o....18,80 FD 1797......59.-- 1S164 1,7O sl RT a ? n 4515 3,50 z80Asto-l....18,80 LSt65 2,10 s174.........3.60 4516 1,35 z80Asto-2...22,45 LS166 2,55 s175.........3.60 4517 8,3s Hilfs- LS168 2,60
in „Das Ende des Z80“ · Mikrocontroller und Digitale Elektronik ·
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HDD_Seagate_ATA_INTERFACE.pdf
the currently selected drive. The bits in this register are as follows: Bit 7 6 5 4 3 2 1 0 Name HiZ nWTG nHS3 nHS2 nHS1 nHS0 nDS1 nDS0 HiZ is reserved and is not driven by the drive. When the host reads the Drive Address register, the HiZ bit must be in a high-imped- ance state. nWTG is the write gate
in „HDD Festplatte ATA IDE an AVR µC Mikrocontroller ATmega1284p Assembler - viele Fragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAM3X.pdf
further details. 11.3 Peripheral Signal Multiplexing on I/O Lines The SAM3X/A series product features 3 PIO (SAM3A and 100-pin SAM3X) or 4 PIO (144-pin (1) SAM3X) or 6 PIO (217-pin SAM3X8H ) controllers, PIOA, PIOB, PIOC, PIOD, PIOE and PIOF, which multiplexes the I/O lines of the peripheral set. Each PIO
in „ARM SAM3x Zähleingang“ · Mikrocontroller und Digitale Elektronik ·
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SAM3X.pdf
further details. 11.3 Peripheral Signal Multiplexing on I/O Lines The SAM3X/A series product features 3 PIO (SAM3A and 100-pin SAM3X) or 4 PIO (144-pin (1) SAM3X) or 6 PIO (217-pin SAM3X8H ) controllers, PIOA, PIOB, PIOC, PIOD, PIOE and PIOF, which multiplexes the I/O lines of the peripheral set. Each PIO
in „Arduino Due: Programmierung ohne 16U2“ · Mikrocontroller und Digitale Elektronik ·
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z80_minimal.sch.pdf
7432N 7432N A A C CE_RAM_ROM C PA[0..7],PB[0..7],PC[0..7] V 1 1 1 A A A O A[0..15],CE_RAM,CE_ROM,CE_PIO,RD,WR,INT,M1,MREQ,IOREQ C S V 1 Re 0 Sc 4 Z80CPU EPROM IC4 U$2 27 M1 A0 30 A0 IC5 D0 34 D0 PA0 4 PA0 A0 35 A0 19 MREQ A1 31 A1 A0 12 A0 I/O0 13 D0 28 VCC D1 33 D1 PA1 3 PA1 A1 34 A1 STI C TA0 1 1 20
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCMXO640C-3TN144C.pdf
PADB "C" PIO C PADC "T" Six PIOs PIO D PADD "C" PIO E PADE "T" PIO F PADF "C" PIO The PIO blocks provide the interface between the sysIO buffers and the internal PFU array blocks. These blocks receive output data
in „Erfahrung mit Siglent SDG 10xx Arbitrary Generatoren?“ · Markt ·
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AT91SAM7A3-EK.pdf
CONTROLLER B 1 PIO A PIO B I 8 XOUT - 3 AT91SAM7A3-LQFP100 A 2 I H P z P XIN - J26 K A 1 P 3 2 W U AF N D D EXT CLK INPUT U E E AR A ADC _ _ PWM0..PWM7 PIO B D D R K JTAG/ICE DV D C C H D O W V AG D D S V F A A 3V3 3
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pITX-SP_M02.pdf
...........................................................................7 Processor: Intel ATOM Z510 (1.1 GHz) or Z530 (1.6 GHz)................................................................................7 Chipset: Intel US15W (Poulsbo).........................................................
in „PAL / LVDS Konverter“ · Mikrocontroller und Digitale Elektronik ·
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z80_minimal.sch.pdf
PA[0..7],PB[0..7],PC[0..7] C 1 1 1 V 0 D in 1 A A A s R 1 ae 7432N C pp A[0..15],CE_RAM,CE_ROM,CE_PIO,RD,WR,INT,M1,MREQ,IOREQ C S V 0u 1 ps R r 0 ic 4 aS Z80CPU IC4 U$2 p out 0 30out 0 IC5 EPROM io 04 4 io 0 in 0 a M1 A0 A0 D0 D0 PA0 PA0 A0 A0 C p out 0 MREQ A1 31out A1 A0 in 02 A0 I/O0 13ioD0 pwr 0
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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A20_user_manual_v1.3_20141010.pdf
) × [(Z2/Z1) − 1] (1) MEASURE MEASURE X-POSITION Z1-POSITION X+ Y+ X+ Y+ X+ Y+ TOUCH TOUCH X-POSITION Z1-POSITION Z2-POSITION X- Y- X- Y- X- Y- MEASURE Z2-POSITION Pressure Measurement Block Diagram Second Method
in „DDR3 RAM Datenleitung beliebig anschliessen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
z80_minimal.sch.pdf
>1 3 3 4 5 MEM_RD 1 1 1 PA[0..7],PB[0..7],PC[0..7] D 2 A A A R C 74HCT32 A[0..15],CE_RAM,CE_ROM,CE_PIO,RD,WR,INT,M1,MREQ,IOREQ C C C V V Oe Sp 0 R1 4 ci Z80CPU EEPROM2764 8255 U$2 S 27 30 A0 ASC6-1008 A0 10 11 D0 D0 34 4 PA0 A0 35 19 M1 A0 31 12 13 9 A0 O0 12 33 D0 PA0 3 34 A0 C 1 MREQ A1 A1 A0 A0 I/
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
robot-mit-cplusplus-anteilen-noheap-trotzdem-grosz.objdump.txt
80095da: 2701 movs r7, #1 80095dc: 6068 str r0, [r5, #4] 80095de: e05f b.n 80096a0 <__ieee754_rem_pio2f+0x134> 80095e0: f44f 6378 mov.w r3, #3968 ; 0xf80 80095e4: f2c4 3349 movt r3, #17225 ; 0x4349 80095e8: 429c cmp r4, r3 80095ea: dd7f ble.n 80096ec <__ieee754_rem_pio2f+0x180> 80095ec: f1b4 4fff cmp.w
in „ROM-Auslastung von C++-Programm reduzieren“ · Mikrocontroller und Digitale Elektronik ·
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z80_minimal.sch.pdf
MEM_RD 3 4 5 PA[0..7],PB[0..7],PC[0..7] 1 1 1 D in 1 A A A R C 7432N C C A[0..15],CE_RAM,CE_ROM,CE_PIO,RD,WR,INT,M1,MREQ,IOREQ C V V p p s2 s pOe Sp w p 1 4 R e Z80CPU EEPROM2764 8255 U$2 1pi aS out 0 30out A0 ASC6-1008 A0 in 0 11 hiD00 D0 io 04 4 ioPA0 A0 in 0 p out 0 M1 A0 31out 0 in 02 13io 0 in 09
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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z80_minimal.sch.pdf
4 5 PA[0..7],PB[0..7],PC[0..7] in 1 1 1 1 D A A A GND R p C 7432N C s C A[0..15],CE_RAM,CE_ROM,CE_PIO,RD,WR,INT,M1,MREQ,IOREQ C V V 1u p ar s pip S 0 w p 1 4 R dr Z80CPU EEPROM2764 8255 U$2 1Si p out 0 M1 A0 30out A0 ASC6-1008 A0 in 0 A0 O0 11 hiD00 D0 io 04 D0 PA0 4 ioPA0 A0 in 0 A0 0 out 0 31out A1
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
z80_minimal.sch.pdf
MEM_RD 3 4 5 PA[0..7],PB[0..7],PC[0..7] in 1 1 1 1 D A A A R C 7432N C C A[0..15],CE_RAM,CE_ROM,CE_PIO,RD,WR,INT,M1,MREQ,IOREQ C V V 1u p ar s pip S 0 w p 1 4 R dr Z80CPU EEPROM2764 8255 U$2 1Si p out 0 M1 A0 30out A0 ASC6-1008 A0 in 0 A0 O0 11 hiD00 D0 io 04 D0 PA0 4 ioPA0 A0 in 0 A0 0 out 0 31out A1
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
z80_minimal.sch.pdf
0 3 4 5 MEM_RD 1 1 1 PA[0..7],PB[0..7],PC[0..7] D in 1 A A A R 74HCT32 C A[0..15],CE_RAM,CE_ROM,CE_PIO,RD,WR,INT,M1,MREQ,IOREQ C C C V 0 V 0 su s pdr Sp r p 1 0 R 1 4 ci Z80CPU EEPROM2764 8255 Z80_STI sS M1 out 0 30 out A0 SRAM A0 in 0 11 hD0 0 D0 io 0 4 ioPA0 A0 in 05 p M1 A0 A0 O0 D0 PA0 A0 C s MREQout
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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at91rm9200.pdf
asserted. As a result, the bit correspond- ing to the PIO line in the register PIO_PSR (Peripheral Status Register) resets low. If a signal name is in the “Reset State” column, the PIO line is assigned to this function and the corresponding bit in PIO_PSR
in „S1D113513 + AT91RM9200“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT91SAM9261-EK_Evaluation_Board.pdf
LINEAR REGULATOR EMAC + PHY STEREO VDD3V3 TRACE PORT AUDIO DAC 3V3 ETM YELLOW POWER LED N 5V O T U S O PIO T TOUCHSCREEN N CONTROLLER C S X P P S D NRST T H H I L R - - - 1 D M M C O R D D D D S T D D D H H 1V2 3 2 C REG 1V2 VDDCORE S 1 E T S C 1V2 R A I U I S P P E N . E G E H C _ I _ LCD CONTROLLER 1 D
in „ARM91SAM9261 Entwickler gesucht -Dringend“ · Mikrocontroller und Digitale Elektronik ·
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ecp_ec.pdf
-0.98 — ns LFEC6 -0.63 — -0.76 — -0.89 — ns t 7 Clock to Data Setup - PIO Input LFEC10 -0.43 — -0.52 — -0.61 — ns SU Register LFEC15 -0.70 — -0.84 — -0.98 — ns LFEC20 -0.88 — -1.06 — -1.24 — ns LFEC33 -1.12 — -1.34 — -1.56 — ns LFEC1 2.19 — 2.62 — 3.06 — ns LFEC3 2.80 — 3.36
in „Verwendung der Pins eines Lattice LFECP6 mit Config-Dual-Funktion als I/Os“ · FPGA, VHDL & Co. ·
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PDF
ecp_ec.pdf
-0.98 — ns LFEC6 -0.63 — -0.76 — -0.89 — ns t 7 Clock to Data Setup - PIO Input LFEC10 -0.43 — -0.52 — -0.61 — ns SU Register LFEC15 -0.70 — -0.84 — -0.98 — ns LFEC20 -0.88 — -1.06 — -1.24 — ns LFEC33 -1.12 — -1.34 — -1.56 — ns LFEC1 2.19 — 2.62 — 3.06 — ns LFEC3 2.80 — 3.36
in „SPI-Slave im FPGA, Signal-Delay an MISO minimieren“ · FPGA, VHDL & Co. ·
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PDF
IOWA-LX-600_UMN_v1.00.pdf
Previous Values F6:Fail-Safe Defaults F7 Optimized Defaults BIOS Menu 7: Integrated Peripherals Drive PIO Mode [Auto] Use the Drive PIO Mode options below to select the Programmed Input/Output (PIO) mode for the following HDDs: Master Drive PIO Mode Slave Drive PIO Mode Auto (Default) The computer selects the correct mode. Mode 0 PIO mode 0 selected with a maximum transfer rate of 3.3MBps. Mode 1 PIO mode 1 selected with a maximum transfer rate of 5.2MBps. Mode 2 PIO mode 2 selected with a maximum transfer rate of 8.3MBps. Mode
in „DOS mit aktueller Technik / RAM“ · PC Hard- und Software ·
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PDF
doc6462.pdf
/clear registers of the PMC has no effect. 25 6462B–ATARM–6-Sep-11 10.3 Peripheral Multiplexing on PIO Lines The SAM9G10 features three PIO controllers, PIOA, PIOB and PIOC, that multiplex the I/O lines of the peripheral set. Each PIO Controller controls up to thirty-two lines. Each line can be assigned
in „Externes SRAM + Atmel AT91SAM7SE“ · Mikrocontroller und Digitale Elektronik ·
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sony_ht-ct260h.pdf
0 G R G P P P P P P P P P 1 48 2 AIO1 GND 47 BT_RST R447 1K 3 AIO0 MIC_A_N 46 4 GNDET MIC_B_N 45 5 PIO9 MIC_B_P 44 C57 7 PIO1 0 MIC_BIAS 42 NC 0.1uF/25V/Y5V 8 PIO11 GND_S 41 FB605 500/800mA B BT_3V3 9 PIO12 SPK_R_P 40 10 PIO13 SPK_R_N 39 11 PIO15 SPK_L_N 38 12 GND GND 37 max 100ma 14 VDD LED0 35 15 VDD_USB
in „(V) 2 Platinen aus einer Sony Soundbar und Nixie Röhren“ · Markt ·
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PDF
F1E200_Datsheet_V1.pdf
PIOA6 I/O High-Z GPIO Port A Bit 6 1 PIOA7 I/O High-Z GPIO Port A Bit 7 120 PIOA8 I/O High-Z GPIO Port A Bit 8 42 PIOA9 I/O High-Z GPIO Port A Bit 9 41 PIOA10 I/O High-Z GPIO Port A Bit 10 5.10 Miscellaneous Signal Pin
in „Allwinner F1E200 Alternative“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HDD_Quantum.pdf
Fireball Plus AS 10.2/20.5/30.0/40.0/60.0 GB AT ATA Bus Interface and ATA Commands 6.4.1.3 Ultra ATA/100 80 Conductor Cable The use of a 80 conductor cable is suggested in order to successfully meet the new Ultra ATA/100 mode 3 and 4 faster timing requirements. The 80 conductor cable is used with the same
in „HDD Festplatte ATA IDE an AVR µC Mikrocontroller ATmega1284p Assembler - viele Fragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Zilog_Z8000_1979-DM.pdf
processor,16Kwordsof dynamicRAM, 2Kwordmonitor PROM,dualserialinterfaces,fourcounter/timers and 32 Z8000 Microprocessor programmableparallelI/O lines. Thememoryresourcesof w 16KwordsRandomAccessMemory(expandableto32K) theboardmay be easilyexpandedwiththeadditionof w Dualserialinterfaces(110-19.2K Baud
in „Zilog Z8000 Development Module“ · Mikrocontroller und Digitale Elektronik ·
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XM64_schematic.pdf
Stabilizator i filtracja zasilania IC2 1117 8 1 2 VCC 5V 3 VI VO 2*2 J z ADJ LED1 LEDz D +C6 1 C4 C5 C7 C8 N R8 G 10uF 100nF100n1F00n1F00nF GND 10k 100R P$1 P$2 D VCC R2 C1C2 R3 N SV1 SWITCH1 IC1 G 5V D 6 5 AVR_XMEGA_A3_ JP1 JP7 N 4 3 57 62 1 1 G 2 1 56 /Reset_PDI_CLK ADC0
in „XMega DFU programmierung am Mac“ · Mikrocontroller und Digitale Elektronik ·
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Datei
4tb_smart.html
1F2168</span><br><br> <b>Drive Infos:</b><br><br> Manufactor: Seagate<br> Firmware: CC52<br> Serial: Z300WJ6Z<br> BUS Type: S-ATA/600<br> ATA Standard: ATA8-ACS revision 4<br> Transfer Mode and Version: S-ATA 600 (S-ATA Rev 3.1)<br> Size: 4,0 TB (3,6 TiB) (48bit-LBA)<br> Buffer: <br> NV Cache: no NV Cache
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SerProg.pdf
with pull-up) Input (with pull-up) 5 9 TVcc 0V / 3V or 5V (*) 3V or 5V (*) 3V or 5V (*) 6 11 MD1 Hi-Z (with pull-up)OC (level 1 via pull-upOC (level 1 via pull-up) 7 13 PIO2 Input (with pull-up) Input / Output OC (level 0) 8 Vcc +5V +5V +5V 9 2 P01 Input (with pull-up) Input / Output Input (with pull-up) 10 4 MD2 Hi-Z (with pull up)OC (level 1 via pull-up) OC (level 0) 11 6 SIN Output (level 0) Output Output (level 0) 12 8 SCLK Output (level 0) Output Output (level 1) 13 10 GND GND GND GND 14 12 PIO1 Input (with pull-up
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SerProg.pdf
with pull-up) Input (with pull-up) 5 9 TVcc 0V / 3V or 5V (*) 3V or 5V (*) 3V or 5V (*) 6 11 MD1 Hi-Z (with pull-up)OC (level 1 via pull-upOC (level 1 via pull-up) 7 13 PIO2 Input (with pull-up) Input / Output OC (level 0) 8 Vcc +5V +5V +5V 9 2 P01 Input (with pull-up) Input / Output Input (with pull-up) 10 4 MD2 Hi-Z (with pull up)OC (level 1 via pull-up) OC (level 0) 11 6 SIN Output (level 0) Output Output (level 0) 12 8 SCLK Output (level 0) Output Output (level 1) 13 10 GND GND GND GND 14 12 PIO1 Input (with pull-up
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MONIT.ASM
de ld a,e and h'0f jr nz,nxtzei ld d,h ld e,l call space nxtasc: ld a,(de) cp h'20 jr c,noasc cp h'80 jr nc,noasc jr dloop noasc: ld a,'.' dloop: call conout inc de ld a,e and h'0f jr nz,nxtasc call crlf ld a,d or e ret z call costat or a jr z,nxtadr call conin cp cr ret z jr nxtadr conout: push af con00
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
robot-mit-cplusplus-anteilen-noheap-trotzdem-grosz.map.txt
em_armgcc/bin/../lib/gcc/arm-none-eabi/4.7.3/../../../../arm-none-eabi/lib/armv7-m\libm.a(lib_a-kf_rem_pio2.o) c:/program files (x86)/emblocks/2.30/share/em_armgcc/bin/../lib/gcc/arm-none-eabi/4.7.3/../../../../arm-none-eabi/lib/armv7-m\libm.a(lib_a-ef_rem_pio2.o) (__kernel_rem_pio2f) c:/program files (x86
in „ROM-Auslastung von C++-Programm reduzieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ublox_-_Protocol_Specifications.pdf
see graphic below) 12 I4 - ecefX cm ECEF X coordinate 16 I4 - ecefY cm ECEF Y coordinate 20 I4 - ecefZ cm ECEF Z coordinate 24 U4 - pAcc cm 3D Position Accuracy Estimate 28 I4 - ecefVX cm/s ECEF X velocity 32 I4 - ecefVY cm/s ECEF Y velocity 36 I4 - ecefVZ cm/s ECEF Z velocity 40 U4 - sAcc cm/s Speed
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Datei
stm32f4xx.h
*/ #define FSMC_PIO4_IOWAIT4_0 ((uint32_t)0x00000100) /*!<Bit 0 */ #define FSMC_PIO4_IOWAIT4_1 ((uint32_t)0x00000200) /*!<Bit 1 */ #define FSMC_PIO4_IOWAIT4_2 ((uint32_t)0x00000400) /*!<Bit 2 */ #define FSMC_PIO4_IOWAIT4
in „STM32F0 Discovery und UART1“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f4xx.h
*/ #define FSMC_PIO4_IOWAIT4_0 ((uint32_t)0x00000100) /*!<Bit 0 */ #define FSMC_PIO4_IOWAIT4_1 ((uint32_t)0x00000200) /*!<Bit 1 */ #define FSMC_PIO4_IOWAIT4_2 ((uint32_t)0x00000400) /*!<Bit 2 */ #define FSMC_PIO4_IOWAIT4
in „STM32F4 SPI Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ISP1160_PHI.pdf
automatically increments by 2 3FFH 3FFH 7FFH IT(8-bit width) IT(8-bit width) A(8-bit width) MGT951 Fig 20. PIO access to internal FIFO buffer RAM. Following is an example of a C program that shows how to write data into the ATL buffer RAM. The total number of data bytes to be transferred is 80 (decimal) that
in „USB Host Controller (ISP1160) an StrongARM 1110 anbinden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
logFile.txt
,12f6 rev 05 class 02,80,00 hdr 00 (II) PCI: 02:06:0: chip 104c,8031 card 4000,0000 rev 00 class 06,07,00 hdr 82 (II) PCI: 02:06:2: chip 104c,8032 card 103c,0934 rev 00 class 0c,00,10 hdr 80 (II) PCI: 02:06:3: chip 104c,8033 card 103c,0934 rev 00 class 01,80,00 hdr 80 (II) PCI: 02:06:4: chip 104c,8034 card 103c,0934 rev 00 class 08,05,00 hdr 80 (II) PCI: 02:06:5: chip 104c,8035 card 103c,0934 rev 00 class 07,80,00 hdr 80 (II) PCI: 10:00:0: chip 14e4,167d
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PDF
lmh6629.pdf
Package 4 4 Av = 4V/V Av =4V/V 2 COMP Pin = LO 2 Vs = +/-1.5V COMP Pin = LO B 0 B 0 ( ( i -2 i -2 a Vo = 80 mVpp a d -4 d -4 Vo = 80 mVpp z z a a r -6 r -6 o Vo = 0.8Vpp o Vo=0.8Vpp N -8 N -8 -10 -10 -12 -12 0.1 1 10 100 1,000 0.1 1 10 100 1,000 f (MHz) f (MHz) Figure 14. Figure 15. Copyright © 2010–2013,
in „Ausgangswiderstand in OPV Datenblatt“ · HF, Funk und Felder ·
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e2928_a8v-vm_se.pdf
Device : Hard Disk to the system. Sizeor : 40.0GB14A LBA Mode : Supported Block Mode : 16 Sectors PIO Mode : 4 Ultra DMA : Ultra DMA-5 A-2 SMART Monitoring: Supported Type [Auto] ←→ Select Screen LBA/Large Mode [Auto] ↑↓ Select Item Block (Multi-Sector Transfer) M [Auto] +- Change Option PIO Mode [Auto
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DL_Anleitung_XO2_140416.pdf
Extended Function Block (EFB) vorhanden, in dem verschiedene spezifische Funktionen zusammengefasst sind, z. B. die Ansteuerung der seriellen Schnittstellen. 10 4 JTAG PIO Top CFG OSC EFB 14 PIO PIO 14 Left 32 PFU's Right PIO Bottom 14 Abb. 2.3 Aufbau des XO2-256 14.4.2016 13/160 Anleitung zum „Digitallabor
in „Bildung des Zweierkomplements einer 4 Bit-Zahl“ · FPGA, VHDL & Co. ·
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PDF
XMEGA-A3BU_XPLAINED_Design_Documentation_rev2.PDF
VCC_P3V3 S S S S G I D D V GPIO 1 2 GPIO A RXD PIJ30203 PIJ30204 PIJ30105 PIJ30106 GPIO PIJ30303 PIJ30304PIO SS PIJ30205 PIJ30206 VCC_P3V3 PIJ30107 PIJ30108 9 8 7 6 5 4 3 2 1 GPIO PIJ30305 PIJ30306PIO MISO PIJ90207 PI100208 PIJ30109 PIJ301010 GND R306 098 7 6 5 42 1 GPIO PIJ30307 PIJ30308PIO GND PIJ30209 PIJ30201VCC_P3V3
in „LED toggeln mit ATxmega256A3BU“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f10x.h
*/ #define FSMC_PIO4_IOWAIT4_0 ((uint32_t)0x00000100) /*!<Bit 0 */ #define FSMC_PIO4_IOWAIT4_1 ((uint32_t)0x00000200) /*!<Bit 1 */ #define FSMC_PIO4_IOWAIT4_2 ((uint32_t)0x00000400) /*!<Bit 2 */ #define FSMC_PIO4_IOWAIT4
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Datei
Devices.txt
BAS70-04 6 AT89C2051P 6 74HC245DW 6 74HC14N 6 4053N 6 4029N 6 320-916 6 2N2369 6 1XRJ45_MM_JACK 5 Z80PIO 5 Z80CTC 5 XO-14 5 UDN2981AN 5 TRIM_EU-LI10 5 TPPAD1-20 5 TLC5921DAP 5 S1D13506_128 5 R-TRIMM64P 5 R-SMD1206 5 R-EU_M5923 5 RESEU-10@2 5 POT-TRIM 5 PN61729-S 5 PINHD-2X2 5 PINHD-1X9 5 NPN-TRANSISTOR_SOT89
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PDF
Z80-Zilog.pdf
Z80 Microprocessors Z80 CPU User Manual UM008011-0816 Copyright ©2016 Zilog, Inc. All rights reserved. www.zilog.com Z80 CPU User Manual ii Warning: DO NOT USE THIS PRODUCT IN LIFE SUPPORT SYSTEMS. LIFE
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