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AT89S8252.pdf
N V P P P P 0 0 P1.3 4 37 P0.2 (AD2) (SS) P1.4 5 36 P0.3 (AD3) 4 4 4 4 4 3 3 3 3 3 3 (MOSI) P1.5 6 35 P0.4 (AD4) (MOSI) P1.5 1 33 P0.4 (AD4) (MISO) P1.6 7 34 P0.5 (AD5) (SCK) P1.7 8 33 P0.6 (AD6) (MISO) P1.6 2 32 P0.5 (AD5) (SCK) P1.7 3 31 P0.6 (AD6) RST 9 32 P0.7 (AD7) RST 4 30 P0.7 (AD7) (RXD) P3.0
in „UART_ Werte empfangen???“ · Mikrocontroller und Digitale Elektronik ·
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AT89S8252.pdf
N V P P P P 0 0 P1.3 4 37 P0.2 (AD2) (SS) P1.4 5 36 P0.3 (AD3) 4 4 4 4 4 3 3 3 3 3 3 (MOSI) P1.5 6 35 P0.4 (AD4) (MOSI) P1.5 1 33 P0.4 (AD4) (MISO) P1.6 7 34 P0.5 (AD5) (SCK) P1.7 8 33 P0.6 (AD6) (MISO) P1.6 2 32 P0.5 (AD5) (SCK) P1.7 3 31 P0.6 (AD6) RST 9 32 P0.7 (AD7) RST 4 30 P0.7 (AD7) (RXD) P3.0
in „I2C Anschluß AT89S8252“ · Mikrocontroller und Digitale Elektronik ·
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doc0401.pdf
N V P P P P 0 0 P1.3 4 37 P0.2 (AD2) (SS) P1.4 5 36 P0.3 (AD3) 4 4 4 4 4 3 3 3 3 3 3 (MOSI) P1.5 6 35 P0.4 (AD4) (MOSI) P1.5 1 33 P0.4 (AD4) (MISO) P1.6 7 34 P0.5 (AD5) (SCK) P1.7 8 33 P0.6 (AD6) (MISO) P1.6 2 32 P0.5 (AD5) (SCK) P1.7 3 31 P0.6 (AD6) RST 9 32 P0.7 (AD7) RST 4 30 P0.7 (AD7) (RXD) P3.0
in „IDE für 8051“ · Mikrocontroller und Digitale Elektronik ·
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AT89S8253-24PU.pdf
2 39 P0.0 (AD0) P1.2 3 38 P0.1 (AD1) P1.3 4 37 P0.2 (AD2) (SS) P1.4 5 36 P0.3 (AD3) (MOSI) P1.5 6 35 P0.4 (AD4) (MISO) P1.6 7 34 P0.5 (AD5) (SCK) P1.7 8 33 P0.6 (AD6) RST 9 32 P0.7 (AD7) (RXD) P3.0 10 31 EA/VPP (TXD) P3.1 11 30 ALE/PROG (INT0) P3.2 12 29 PSEN (INT1) P3.3 13 28 P2.7 (A15) (T0) P3.4 14
in „AT89S8253-24PU ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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debug_error.asm
7c f4 brge .+30 ; 0x340 <acquire_DHT+0x1cc> 322: 00 97 sbiw r24, 0x00 ; 0 324: e1 f0 breq .+56 ; 0x35e <acquire_DHT+0x1ea> 326: 81 30 cpi r24, 0x01 ; 1 328: 91 05 cpc r25, r1 32a: 09 f0 breq .+2 ; 0x32e <acquire_DHT+0x1ba> 32c: 41 c0 rjmp .+130 ; 0x3b0 <acquire_DHT+0x23c> 32e: 0a 2e mov r0, r26 330:
in „Fehler bei einfacher Integer-Division?“ · Mikrocontroller und Digitale Elektronik ·
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R2_MMC1.pdf
Size (C_SIZE) VDD_R_CURR_ 3 R [61:59] 25ma 4 Max. Read MIN Current @V DD Min. VDD_R_CURR_ 3 R [58:56] 35ma 4 Max. Read MAX Current @V D D Max. VDD_W_CURR_ 3 R [55:53] 35ma 5 Max. Write MIN Current @V DD Min. VDD_W_CURR_ 3 R [52:50] 45ma 5 Max. Write MAX Current @V D D Max. C_SIZE_MULT 3 R [49:47] √ Device
in „Multi Media Card (MMC)“ · Mikrocontroller und Digitale Elektronik ·
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R2_MMC1.pdf
Size (C_SIZE) VDD_R_CURR_ 3 R [61:59] 25ma 4 Max. Read MIN Current @V DD Min. VDD_R_CURR_ 3 R [58:56] 35ma 4 Max. Read MAX Current @V D D Max. VDD_W_CURR_ 3 R [55:53] 35ma 5 Max. Write MIN Current @V DD Min. VDD_W_CURR_ 3 R [52:50] 45ma 5 Max. Write MAX Current @V D D Max. C_SIZE_MULT 3 R [49:47] √ Device
in „(ANSI-)C-Code für MMC-Kommunikation?“ · Mikrocontroller und Digitale Elektronik ·
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r2_mmc1.pdf
Size (C_SIZE) VDD_R_CURR_ 3 R [61:59] 25ma 4 Max. Read MIN Current @V DD Min. VDD_R_CURR_ 3 R [58:56] 35ma 4 Max. Read MAX Current @V D D Max. VDD_W_CURR_ 3 R [55:53] 35ma 5 Max. Write MIN Current @V DD Min. VDD_W_CURR_ 3 R [52:50] 45ma 5 Max. Write MAX Current @V D D Max. C_SIZE_MULT 3 R [49:47] √ Device
in „suche infos über Multimediacard“ · Mikrocontroller und Digitale Elektronik ·
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SD_Physical_specs.pdf
.................................................................................................. 35 4.3.10.4.1 Busy Status Indication for Functions ............................................................................ 36 4.3.10.4.2 Data Structure Version .....................................
in „SD-MMC-Card im SPI oder MMC Mode“ · Mikrocontroller und Digitale Elektronik ·
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Simplified_Physical_Layer_Spec.pdf
.................................................................................................. 35 4.3.10.4.1 Busy Status Indication for Functions ............................................................................ 36 4.3.10.4.2 Data Structure Version .....................................
in „SD Karte im Spi Modus“ · Mikrocontroller und Digitale Elektronik ·
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SD_CARD_Simplified_Physical_Layer_Spec.pdf
.................................................................................................. 35 4.3.10.4.1 Busy Status Indication for Functions ............................................................................ 36 4.3.10.4.2 Data Structure Version .....................................
in „SD Karte und SPI“ · Mikrocontroller und Digitale Elektronik ·
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Simplified_Physical_Layer_Spec.pdf
.................................................................................................. 35 4.3.10.4.1 Busy Status Indication for Functions ............................................................................ 36 4.3.10.4.2 Data Structure Version .....................................
in „Lahme 2GB SD Karte“ · Mikrocontroller und Digitale Elektronik ·
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hardinfo_report.html
class="field">SAMSUNG CD-ROM SCR-3232</td><td class="value"></td></tr> <tr><td class="field">ATA IC35L040AVER07-0</td><td class="value"></td></tr> </table><table><tr><td colspan="2" class="stitle">Operating System</td></tr> <tr><td colspan="2" class="sstitle">Version</td></tr> <tr><td class="field">Kernel
in „Welches Linux für einen über 10 Jahre alten PC?“ · PC Hard- und Software ·
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SDHC_SDM04G7B7_08G7B7.pdf
$$$▯ ▯▯▯ 3▯ <▯▯▯▯▯>▯ ▯@▯@▯@▯@▯@▯@▯@▯@▯@▯@▯@▯▯ 3&"%@#-@-&/▯ ▯▯ 3▯ <▯▯▯▯▯>▯ ▯▯▯▯▯ ▯▯▯▯▯ ▯ 3&"%@#-@1"35*"-▯ ▯▯ 3▯ <▯▯▯▯▯>▯ ▯▯ 83*5&@#-,@.*4"-*(/▯ ▯▯ 3▯ <▯▯▯▯▯>▯ ▯▯ 3&"%@#-,@.*4"-*(/▯ ▯▯ 3▯ <▯▯▯▯▯>▯ ▯▯ %43@*.1▯ ▯▯ 3▯ <▯▯▯▯▯>▯ ▯▯ ▯▯ ▯▯ 3▯ <▯▯▯▯▯>▯ "MM▯‘▯’▯ $@4*;&▯ ▯▯▯ 3▯ <▯▯▯▯▯>▯ ▯Y▯%''▯ ▯Y▯#''▯ ▯ ▯▯ ▯▯
in „SD-Karte - SDHC Karte“ · Mikrocontroller und Digitale Elektronik ·
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csvview.pdf
Datum;Zeit;Spalte1;Spalte2;Spalte3;Spalte4;Spalte5;Spalte6;Spalte7;Spalte8 01.01.2010;00:00;1;6;0,35;98,2;0;1;0;1 01.01.2010;00:15;1,1;6,05;0,44;98,1;0;1;0;1,08 01.01.2010;00:30;1,2;6,1;0,53;98;0;1;0;1,24 Falls es der Datenquelle nicht möglich sein sollte, dieses Format zu erzeugen, kann es auch mit
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TMS320F2812_Datasheet.pdf
Memory Bus (Harvard Bus Architecture) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 35 3.2.3 Peripheral Bus . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 35 3.2.4 Real-Time JTAG and Analysis . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 35 3.2.5 External Interface (XINTF) (2812 Only) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 35 3.2.6 Flash (F281x Only) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
in „Wieder eine Elektronik-Anfängerfrage“ · Mikrocontroller und Digitale Elektronik ·
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techb_myethernet_de_en.pdf
....34 5.3.5 SharedRAM (pin 1000…3999)................34 5.3.6 SharedEEPROM (Pin 5000…7999)........35 5.3.6 SharedEEPROM (pin 5000...7999).........35 5.4 Externe Schnittstelle - TWI.............................35.4 External interfaces - TWI ...............................36 5.5 Statusinformationen ..
in „Ulrich Radigs TCP/IP Stack auf MyAvr, ENC startet immer neu, Soft Spi Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
cmu_bat.txt
d10/1 27 Aug 2007 14:33:43 schroe_r REM REM /main/4.40/wp_ak_tools_environment_1/1 13 Aug 2007 11:34:35 kirchhof REM change used environment variable REM REM /main/4.50/1 4 Jul 2007 12:32:21 schroe_r REM REM /main/4.40/1 17 Jan 2007 12:56:10 schroe_r REM REM /main/4.20/11 20 Sep 2006 10:36:49 schroe_r
in „Option B41 bei einer CMU200 nachrüsten.“ · HF, Funk und Felder ·
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P89C51RC_IN.pdf
DRIVERS DRIVERS VCC VSS RREGISTER RAM LATCH0 LATCH2 FLASH 8 B ACC STACK REGISTER POINTER PROGRAM ADDRESS TMP2 TMP1 REGISTER BUFFER ALU SFRs TIMERS PC PSW P.C.A. INCRE- MENTER 8 16 PROGRAM COUNTER PSEN N T E ALE TIMING C T DPTR’S EAV AND R G MULTIPLE PP CONTROL S E RST I R PD PORT 1 PORT 3 LATCH LATCH OSCILLATOR
in „[V] 8St. 8051er Philips P89C51RC+IA PLCC44 (6€)“ · Markt ·
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Datei
BASIC.LST
1449 0B03 D1 CRESTR: POP DE ; Restore address of string 1450 0B04 CD A7 13 CALL BAKTMP ; Back to last tmp-str entry 1451 0B07 EB EX DE,HL ; Address of string entry 1452 0B08 CD E0 11 CALL SAVSTR ; Save string in string area 1453 0B0B CD A7 13 MVSTPT: CALL BAKTMP ; Back to last tmp-str entry 1454 0B0E E1
in „Suche verschiedene BASIC Eprom's für Z80 Rechner.“ · Markt ·
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PDF
JESD84-B42.pdf
as an argument to CMD35 or CMD36, the card will reject the command, respond with the ADDRESS_OUT_OF_RANGE bit set and reset the whole erase sequence. If an ‘non erase’ command (neither of CMD35, CMD36, CMD38 or CMD13) is received
in „MMC SD library FAT16 FAT32 read write“ · Projekte & Code ·
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PDF
hitachi_hb28b128mm2.pdf
write Permanent write protection PERM_WRITE_PROTE 1 [13:13] read/write CT Temporary write protection TMP_WRITE_PROTEC 1 [12:12] read/write/ T erase File format FILE_FORMAT 2 [11:10] read/write ECC code ECC 2 [9:8] read/write/ erase 7-bit CRC CRC7 7 [7:1] read/write/ erase Not used, always 1 — 1 [0:0] 1
in „0x40 und 0x95 in SD/MMC-Karte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hitachi_hb28b128mm2.pdf
write Permanent write protection PERM_WRITE_PROTE 1 [13:13] read/write CT Temporary write protection TMP_WRITE_PROTEC 1 [12:12] read/write/ T erase File format FILE_FORMAT 2 [11:10] read/write ECC code ECC 2 [9:8] read/write/ erase 7-bit CRC CRC7 7 [7:1] read/write/ erase Not used, always 1 — 1 [0:0] 1
in „MMC oder SD card connector zum 8515“ · Projekte & Code ·
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PDF
hitachi_hb28b128mm2.pdf
write Permanent write protection PERM_WRITE_PROTE 1 [13:13] read/write CT Temporary write protection TMP_WRITE_PROTEC 1 [12:12] read/write/ T erase File format FILE_FORMAT 2 [11:10] read/write ECC code ECC 2 [9:8] read/write/ erase 7-bit CRC CRC7 7 [7:1] read/write/ erase Not used, always 1 — 1 [0:0] 1
in „MMC/SD SPI Mode Multi Block Write“ · Mikrocontroller und Digitale Elektronik ·
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PDF
abel-HDL_Reference.pdf
function to be implemented. For example, for the following Declarations and Equations Declarations TMP1 = [A3..A0] == [B3..B0]; TMP2 = [A7..A4] == [B7..B4]; Equations F = TMP1 & TMP2; the compiler substitutes the declarations into the equations, creating F = (A7 !$ B7) & (A6 !$ B6) & (A5 !$ B5) & (A4
in „Pal Assembler Abel 3 (Data IO)“ · PC Hard- und Software ·
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Datei
Eeprom_2.asm
; Disassembly of the file "Z:\tmp\Eeprom_2.bin" ; ; CPU Type: Z80 ; ; Using the opcode map file "Z:\tmp\mapfile.map" ; ; Created with dZ80 2.0 ; ; on Friday, 05 of March 2021 at 10:41 PM ; ld sp,0d7ffh xor a ld i,a im 2 di jr l001a
in „Hilfe bei Z80 Opcodes“ · Mikrocontroller und Digitale Elektronik ·
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PDF
T6963C.pdf
signal. I / O Address DATA XXH Command / Status XX + 1H 2001-02-28 34/46 T6963C ● When using PPI LSI (TMP82C55) The T6963C can be connected to a PPI LSI. The port A connects to the data bus. The port C connects to the control busWR(C,RDD) CE, 2001-02-28 35/46 T6963C Application Circuit(1) 2001-02-28 36/
in „[V] Grafikdisplay 240x128“ · Markt ·
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T6963C.pdf
transferred to the T6963C using an I / O request signal. I / O Address DATA XXH Command / Status XX + 1H 35 2002-01-07 T6963C ● When using PPI LSI (TMP82C55) The T6963C can be connected to a PPI LSI. The port A connects to the data bus. The port C connects to the control busWR(C,RDD) CE, 36 2002-01-07 T6963C
in „altes Phytec MCB-51 Monitor/Basic Befehle?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr.h
, \ 22,23, \ 30,31, \ 26,27, \ 28,29, \ 17,16,15,14,13,12,11,10,9,8,7,6,5,4,3,2, \ 0,1, \ 32,33,34,35 \ } #define ORDER_REGS_FOR_LOCAL_ALLOC order_regs_for_local_alloc () #define HARD_REGNO_NREGS(REGNO, MODE) ((GET_MODE_SIZE (MODE) + UNITS_PER_WORD - 1) / UNITS_PER_WORD) #define HARD_REGNO_MODE_OK(REGNO
in „ATtiny24 - ISR wird nie gerufen __vectors> fehlt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
vle-gcc-0905c.diff
&& !vle_add3_operand (opr, <MODE>mode) + && !(vle_add_operand (opr, <MODE>mode) + && rtx_equal_p (tmp, operands[1]))) + { + gcc_assert (!rtx_equal_p (tmp, operands[1])); + emit_move_insn (tmp, operands[2]); + emit_insn (gen_add<mode>3 (operands[0], tmp, operands[1])); + DONE; + } + /* The ordering here
in „Toolchain für PowerPC mit VLE“ · Mikrocontroller und Digitale Elektronik ·
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technical.pdf
step 46 p1 = mat + i ∗Size ; 47 tmp = p1 [ i ] ; 48 for ( j=i +1; j<Size ; j++) { 49 p2 = mat + j∗Size ; 50 d = p2 [ i ] / tmp; 51 for (k=i +1; k<Size ; k++) 52 p2 [ k] −= d ∗ p1 [ k ] ; 53 iVec [ j ] −= d ∗ iVec [ i ] ; 54 } 55 } 56
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huuang.pdf
PD010PD008PD015PD041 Model Model A00D423B 15.0 7.5 5 5 9 A003043B 17 8.5 30 30 4 A0D7523B 14.0 7 8 8 9 A003743B 16 8 35 35 4 A01D523B 14.0 7 10 10 8 A004543B 16 8 40 40 4 A02D223B 13.0 6.5 10 10 8 A005543B 15 7.5 45 45 3 A03D723B 13.0 6.5 15 15 7 A007543B 15 7.5 50 50 3 A05D523B 12.0 6.0 15 15 6 A009043B 14 7 75 75 2
in „87Hz-Schaltung Dreieck Vorteile?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
huuang.pdf
PD010PD008PD015PD041 Model Model A00D423B 15.0 7.5 5 5 9 A003043B 17 8.5 30 30 4 A0D7523B 14.0 7 8 8 9 A003743B 16 8 35 35 4 A01D523B 14.0 7 10 10 8 A004543B 16 8 40 40 4 A02D223B 13.0 6.5 10 10 8 A005543B 15 7.5 45 45 3 A03D723B 13.0 6.5 15 15 7 A007543B 15 7.5 50 50 3 A05D523B 12.0 6.0 15 15 6 A009043B 14 7 75 75 2
in „Frequenzumrichter und Motor für meine Drehbank“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PIC32MX3XX_Data_Sheet.pdf
define LOCKED_LINE_NUM 3 /* lock first line of func1() in cache */ CHEACC = (1<<31) | LOCKED_LINE_NUM; tmp = (unsigned long)func1; ltagboot = (tmp & 0x00c00000) ? 0 : 1; CHETAG = (ltagboot<<31) | (tmp & 0x0007fff0) | 6; // locked and invalid © 2008 Microchip Technology Inc. Preliminary DS61143E-page 193
in „PIC32 und Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Lattice_Timing_Closure.pdf
default, 1ns is also the timing requirement for these cross-domain paths, as illustrated in Figure 35. Figure 35: Timing Requirement for Cross-Domain Paths For cross-domain paths, using the default calculated minimum delay between two active clock edges as the timing requirement might not reflect the
in „IO constraints für asynchrone Inputs in Lattice Diamond“ · FPGA, VHDL & Co. ·
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PDF
panasonic_tx-p50u20b_e_tx-pr50u20_chassis_gpf13de_sm.pdf
TOUGH CURRENT) expressed as voltage U and U , 1oes not2exceed the following values: For a. c.: U = 35 V (peak) and U = 0.35 V (peak); 1 2 For d. c.: U1= 1.0 V, Note: The limit value of U = 0.35 V (peak) for a. c. and U = 1.0 V for d. c. correspond to the values 0.7 mA (peak) a. c. and 2.0 2 1 mA d. c
in „Panasonic TX-P50U20E“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Book_of_Knowledge_german.pdf
LED-Treiber unabhängig zu steuern. 3-WireInterfacegitaleVersorgung LED-Versorgung 0.1µ 0.1µ Vdd RCD-24-0.35 Vdd Vdd 10k LED K#1te TS1 TS1 r D Vd00 PWM TS0 TS0 GND s I/O EN 202 I/OND I/O z C03 oI/OO B 405 I/O iI/O C 707 M R GND RCD-24-0.35 Kette GND PWM LED #8 Abb. 8.28: Mikroprozessorgesteuerter PWM-Regler
in „Eingangsfilter DC-DC-Wandler - mal wieder“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RECOM_de_Buch.pdf
LED-Treiber unabhängig zu steuern. 3-WireInterfacegitaleVersorgung LED-Versorgung 0.1µ 0.1µ Vdd RCD-24-0.35 Vdd Vdd 10k LED K#1te TS1 TS1 r D Vd00 PWM TS0 TS0 GND s I/O EN 202 I/OND I/O z C03 oI/OO B 405 I/O iI/O C 707 M R GND RCD-24-0.35 Kette GND PWM LED #8 Abb. 8.28: Mikroprozessorgesteuerter PWM-Regler
in „Schaltnetzteil Grundlage“ · Analoge Elektronik und Schaltungstechnik ·
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emmc.pdf
Bits CSD Value Permanent write protection PERM_WRITE_PROTECT 1 R/W [13] 0h Temporary write protection TMP_WRITE_PROTECT 1 R/W/E [12] 0h File format FILE_FORMAT 2 R/W [11:10] 0h ECC ECC 2 R/W/E [9:8] 0h CRC CRC 7 R/W/E [7:1] - Reserved – 1 – [0] – Notes: 1. R = Read-only; R/W = One-time programmable and
in „Pin-Swap/Cross IC?“ · Mikrocontroller und Digitale Elektronik ·
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SanDisk_MMC_2BRS-MMC_PM_1.0.pdf
[14:14] Copy 1 Copy flag (OTP) PERM_ WRITE_ 1 R/W [13:13] No 0 Permanent write protection PROTECT TMP_WRITE_ 1 R/W/ [12:12] No 0 Temporary write protection PROTECT E FILE_ FORMAT 2 R/W [11:10] 0 0 File format of card ECC 2 R/W/ [9:8] None 0 ECC code E CRC 7 R/W/ [7:1] --- --- X CRC E --- 1 - [0:0] 1
in „HDD und MMC Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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assembler_beginner.pdf
Programmablauf......................................................................................35 7.4 Makros im Programmablauf................................................................................................................36 7.5 Unterprogramme......................................
in „Assembler Tutorial als PDF ?“ · Mikrocontroller und Digitale Elektronik ·
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STC89C51RC-en.pdf
P P E P A P P P P 3 3 3 3 2 2 2 2 2 2 2 T2/P1.0 1 40 Vcc P0.3 34 22 P2.4 T2EX/P1.1 2 39 P0.0 P0.2 35 21 P2.3 P1.2 3 P 38 P0.1 P0.1 36 20 P2.2 P1.3 4 D 37 P0.2 P0.0 37 3QFP-44 19 P2.1 P1.4 5 P 36 P0.3 Vcc 38 18 P2.0 P1.5 6 - 35 P0.4 INT3/P4.2 39 LQFP-44 17 P4.0 P1.6 7 0 34 P0.5 T2/P1.0 40 39 I/O Ports
in „stc89c52rc programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CY7C63813-SXC-Cypress-Semiconductor-datasheet-11779157.pdf
voltage regulator. The voltage regulator only functions within specifications when V CC is above 4.35 V. This block must not be enabled when V CC is below 4.35V—although no damage or irregularities occur if it is enabled below 4.35 V. 0 = Disable the 3.3 V voltage regulator output on the VREG/P1.2 pin
in „Welche Relais und Controller zum Schalten von USB?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
make_log.txt
Umgebung SystemRoot = C:\Windows # Makefile (from `makefile', line 110) DEBUG = dwarf-2 # Umgebung TMP = C:\Users\Gebauer\AppData\Local\Temp # Standard LINK.p = $(PC) $(PFLAGS) $(CPPFLAGS) $(LDFLAGS) $(TARGET_ARCH) # Makefile (from `makefile', line 350) COPY = cp # Makefile (from `makefile', line 341
in „Problem mit make unter win7“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EMMC-32GB-2.pdf
COPY 1 R/W 14 0h Permanent write protection PERM_WRITE_PROTECT 1 R/W 13 0h Temporary write protection TMP_WRITE_PROTECT 1 R/W/E 12 0h File format FILE_FORMAT 2 R/W [11:10] 0h ECC ECC 2 R/W/E [9:8] 0h CRC CRC 7 R/W/E [7:1] – Not used; always 1 – 1 – 0 1h 1. R = Read-only Notes: R/W = One-time programmable
in „Pinout Flexansvhlusskabel 8-Pin an eMMC Flash-Card 32GB gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
u-blox-ATCommands_Manual__UBX-13002752_.pdf
cbq: 00 c2_valid: <c2_valid>, cr_offset: <cr_ , cba: 00, c2_valid: True, cr_offset: 000, offset>, tmp_offset: <tmp_offset>, tmp_offset: 000, penalty_t: 1f, c1: 19, penalty_t: <penalty_t>, c1: <c1>, c2: <c2>, ch_type: <ch_type>, ch_mode: c2: 19, ch_type: ff, ch_mode: ff, <ch_mode>, txpwr: <txpwr>, dtx
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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PDF
STC89C51RC-english.pdf
programs AUX-RAM RAMADDR 256 Byte 1024 Byte Register RAM B Register ACC DPonitera Poniter F64KH d . TMP2 TMP1 Timit e/1 ISP/IAP L im Timer 2 Address ALU UART Generator EEPROM C U PSW WDT Program M Counter C SSEN Control Port 0,1,2,3,4 RESET Unit Latch Port 0,1,2,3,4 XTAL1 XTAL2 Driver P0, P1,P2,P3,P4
in „Einstieg in 8051 - Atmels AT89S52 oder?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2205.06114.pdf
Bluetooth power off device -D framework does not allow sending HCI commands to the chip [5]. bcm -w /tmp/path/to/firmware.bin On a jailbroken iPhone, we use InternalBlue to send such HCI commands [40]. It attaches itself to the Bluetooth subsystem to Using this method, we can apply firmware patches of
in „Windows 10, Windows 11 für "Normalnutzer" ein Witz kennt wer?“ · PC Hard- und Software ·
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PDF
I-BOTT.PDF
rivet to reduce mounting time. 081297 24/151 24 MICROCAN DIMENSIONS Figure 3–1 R 0.25 R 0.66 14.55 0.35 0.50 16.25 〉 0.15 0.40 +0 5.89 〉 0.15 17.35 –0.15 a) F5 MicroCan R 0.25 R 0.66 14.55 0.35 0.50 16.25 〉 0.15 0.40 +0 3.10 〉 0.15 17.35 –0.15 b) F3 MicroCan All dimensions are in millimeters. 081297 25
in „Design eines hotplugfähigen I2C-Bussystems und Auswahl des Steckverbinders“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SD-Card-FAT32_SDHC.diff
if FAT16_WRITE_SUPPORT /* check arguments */ if(!fd || !buffer || buffer_len < 1) @@ -1155,20 +1711,35 @@ return -1; uint16_t cluster_size = fd->fs->header.cluster_size; - uint16_t cluster_num = fd->pos_cluster; +#if FAT32_SUPPORT + uint32_t cluster_num = fd->pos_cluster; +#else + uint16_t cluster_num