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PDF
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PDF
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Datei
LatFET2019_09_27_THD20kHz.asc.txt
848 416 848 WIRE 576 848 512 848 WIRE 672 848 672 320 WIRE 672 848 656 848 WIRE 816 848 816 624 WIRE 960 848 816 848 WIRE 1376 848 960 848 WIRE 1920 896 1920 832 WIRE 2432 896 2432 800 WIRE 2432 896 1920 896 WIRE 2544 896 2544 752 WIRE 2544 896 2432 896 WIRE 1440 928 1440 896 WIRE 416 976 416 848 WIRE
in „Class AB Audioverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TB12To5.pdf
erhöhen Zunächst den Wirkungsgrad der geänderten Schaltung ermitteln. Die neue Ausgangsleistung ist 960,97mW, die neue Eingangsleistung ist 1285,1mW daraus ergibt sich ein Wirkungsgrad von (960,97 / 1285,1) X 100 = 74,76%. Seite 18 Nach ein wenig herumprobieren konnte ich den Wirkungsgrad der Simulation
in „Diskreter DC/DC-Wandler in LtSpice“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TB12To5.pdf
erhöhen Zunächst den Wirkungsgrad der geänderten Schaltung ermitteln. Die neue Ausgangsleistung ist 960,97mW, die neue Eingangsleistung ist 1285,1mW daraus ergibt sich ein Wirkungsgrad von (960,97 / 1285,1) X 100 = 74,76%. Seite 20 Nach ein wenig herumprobieren konnte ich den Wirkungsgrad der Simulation
in „Diskreter DC/DC-Wandler in LtSpice“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TB12To5.pdf
erhöhen Zunächst den Wirkungsgrad der geänderten Schaltung ermitteln. Die neue Ausgangsleistung ist 960,97mW, die neue Eingangsleistung ist 1285,1mW daraus ergibt sich ein Wirkungsgrad von (960,97 / 1285,1) X 100 = 74,76%. Seite 20 Nach ein wenig herumprobieren konnte ich den Wirkungsgrad der Simulation
in „suche Inspiration zu LTSpice“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TB12To5.pdf
erhöhen Zunächst den Wirkungsgrad der geänderten Schaltung ermitteln. Die neue Ausgangsleistung ist 960,97mW, die neue Eingangsleistung ist 1285,1mW daraus ergibt sich ein Wirkungsgrad von (960,97 / 1285,1) X 100 = 74,76%. Seite 20 Nach ein wenig herumprobieren konnte ich den Wirkungsgrad der Simulation
in „diode UF4007“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TB12To5.pdf
VJS=0.75 MJS=0.333 FC=0.9579 Vceo=45 Icrating=100m + mfg=Philips) .model BC327 PNP( + IS=2.69972e-13 BF=255 NF=1.02306 VAF=10 IKF=1.61069 + ISE=1.54904e-10 NE=2.52512 BR=2.08944 NR=1.06916 VAR=100 + IKR=10 ISC=8.82272e-11 NC=3.4075 RB=5.73192 IRB=0.1 + RBM=0.1 RE=0.0874431 RC=0.437216 XTB=0.614751 XTI=
in „Diskreter DC/DC-Wandler in LtSpice“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
static_inline_vs_normal.asm
lastKeepAwake_ms = counter_milliseconds; 8008a08: 4b66 ldr r3, [pc, #408] ; (8008ba4 <TIM7_IRQHandler+0x960>) 8008a0a: 681a ldr r2, [r3, #0] 8008a0c: 4b66 ldr r3, [pc, #408] ; (8008ba8 <TIM7_IRQHandler+0x964>) 8008a0e: 601a str r2, [r3, #0] 8008a10: e000 b.n 8008a14 <TIM7_IRQHandler+0x7d0> 8008a12: 2500 movs
in „ARM Assembly: Warum nop?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
timer.ihex.txt
100320008100DF91CF9108951F920F920FB60F9227 :1003300011242F933F934F935F936F937F938F93EA :100340009F93AF93BF93EF93FF93CF93DF93CDB77B :10035000DEB7809187008F5F809387008091870050 :100360008F3130F110928700809188009091890040 :100370000197909389008093880067DE80918800C0 :10038000909189000097A1F410927F0081E0809302
in „Platinen selber ätzen“ · Platinen ·
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PDF
report01.pdf
47 69 6C 65 72 66 F5 68 ilerfõh 6 │ 0.01331 800 7 4E 6C 65 72 20 20 32 ler 2 7 │ 0.014821 800 2 83 BF 8 │ 0.481816 800 2 83 BF 9 │ 0.998521 800 8 00 42 6F 69 6C 65 72 20 Boiler 10 │ 1.00226 800 8 07 31 20 54 65 6D 70 2E 1 Temp. 11 │ 1.00538 800 7 0E 20 20 20 35 32 DF 52ß 12 │ 1.00751 800 8 40 4B 65 69
in „Sommerauer-Lindner canbus Steuerung Hackgut“ · Haus & Smart Home ·
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Datei
E_capture.txt
FF0600080100000000160016001B001E003800B303660F0000F8770000000000000000000000000000000000000000000000000000A4273433 09:17:53.913 COM7 : » 591908220500FAFF000701010201000000B9770708 09:17:53.960 COM7 : « 591908223000CF 09:17:53.960 COM7 : « FF070008010000000020001E0027003E003A00B803660F0000F87700000000000000000000000000000000000000000000000000000E1E189A 09:17:54.054 COM7 : » 591908220500FAFF000801010201000000156527D1
in „Protokoll entschlüsseln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s_p305_intel_mm_pro_p300.pdf
............................................................I-1 Satellite P300 Maintenance Manual (960-Q08) 11 Satellite P300 Maintenance Manual (960-Q08) 12 Chapter 1 Hardware Overview Satellite P300 and Satellite Pro P300I-1intenance Manual(960-Q08) Chapter 1 Hardware Overview Chapter 1 Contents (Intel
in „LCD-Inverter kaputt - wer kann helfen?“ · PC Hard- und Software ·
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Bild
Docker Container Station Images Übersicht
Importieren Aktionen Typ Name Version ID Erstellt am Größe Aktionen DOCKER linuxserver/mariadb latest 6bf470d8e1b5 2025/02/04 08:48:35 337.29 MB DOCKER linuxserver/nextcloud latest aaa23da34e96 2025/07/22 13:57:39 1.05 GB DOCKER linuxserver/nextcloud <none> fcfe4fab8e96 2025/02/04 12:55:41 960.33 MB
in „Docker Container Nextcloud update“ · PC Hard- und Software · · Screenshots
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Datei
crc32.c
0x23431b1c, 0x2e003dc5, 0x2ac12072, 0x128e9dcf, 0x164f8078, 0x1b0ca6a1, 0x1fcdbb16, 0x018aeb13, 0x054bf6a4, 0x0808d07d, 0x0cc9cdca, 0x7897ab07, 0x7c56b6b0, 0x71159069, 0x75d48dde, 0x6b93dddb, 0x6f52c06c, 0x6211e6b5, 0x66d0fb02, 0x5e9f46bf, 0x5a5e5b08, 0x571d7dd1, 0x53dc6066, 0x4d9b3063, 0x495a2dd4, 0x44190b0d
in „CRC32 aus 16bit HEX-Daten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
standard.bjt.txt
2.500 XTF=0.800 EG=1.120 MFG=SIEMENS) .MODEL BCV62 PNP(IS=28.000f ISE=24.903f ISC=0.125p XTI=3.300 BF=284.436 BR=4.800 IKF=0.380 IKR=0.932 XTB=1.600 VAF=43.0 VAR=6.960 VJE=1.0 VJC=0.900 RE=0.300 RC=2.251 RB=2.200 RBM=1.500 IRB=0.100m CJE=11.800p CJC=8.700p XCJC=0.650 FC=0.750 NF=1.0 NR=1.005 NE=2.234
in „Hilfe bei LTSpice nötig!“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
nano_os_OPTs.txt
subi r18, 0xFF ; 255 982: 3f 4f sbci r19, 0xFF ; 255 984: 96 17 cp r25, r22 986: 60 f3 brcs .-40 ; 0x960 <queue_write_item+0x40> { qp->message[mlen+i]=*((unsigned char*)startpointer++); qp->number++; } SREG = sregsys; 988: 80 91 0a 01 lds r24, 0x010A 98c: 8f bf out 0x3f, r24 ; 63 98e: 81 e0 ldi r24, 0x01
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Datei
serial_logamatic_monitoring.txt
RX> 02 <20101106193259.238 TX> 10 <20101106193259.340 RX> 041010A3000A0001000000000000000000001003BF <20101106193259.340 TX> 10 <20101106193259.387 RX> 02 <20101106193259.387 TX> 10 <20101106193259.517 RX> 0410105100000000000000000000000000000000000000000000000000000000000000000000000000000000100346
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PDF
66712.pdf
scroll cannot be performed. Read Busy Flag and Address Read busy flag and address reads the busy flag (BF) indicating that the system is now internally operating on a previously received instruction. If BF is 1, the internal operation is in progress. The next instruction will not be accepted until BF is
in „ds89c420 @ 32mhz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ee24xx.lst
**** switch ((TW_STATUS)) 59:ee24xx.c **** { 138 .LM10: 139 0050 94EA ldi r25,lo8(-92) 140 0052 96BF out 86-0x20,r25 141 .L8: 60:ee24xx.c **** case TW_REP_START: /* OK, but should not happen */ 143 .LM11: 144 0054 06B6 in __tmp_reg__,86-0x20 145 0056 07FE sbrs __tmp_reg__,7 146 0058 FDCF rjmp .L8 61
in „I2C EEPROM Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
memory.vhd
2ed80a59", 366 => x"0cd80311", 367 => x"8652d156", 368 => x"8ed4af57", 369 => x"6b3f3227", 370 => x"bf4d7f00", 371 => x"c6bc01b2", 372 => x"47417b87", 373 => x"e69cd6bf", 374 => x"93fb82c1", 375 => x"911cba83", 376 => x"f872efda", 377 => x"b378fe7c", 378 => x"25670ec1", 379 => x"568cb2bb", 380 => x"5ca35d7d
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PDF
Supply.pdf
8W Q905 BAV21 1 12 C934 O 1 BC857C 1K OHM +-5% 1/8W R961 5 1 IC902 FMV11N60ES 2 270PF C916 R917 0 R960 V 7 9 100 OHM 1/4W 9 100 OHM 1/4W 2 FB901 10N 50V 1 INV VCC 8 47OHM +-5% 1/8W R916 Q902 5 ZD905 9 4 5 9 V 9 N 10 100 OHM 1/4W2 BEAD 2 COMP GATE 7 C 2 8 0 BZX79-B18 R912 9 1 N C 0 C+ 7 F 6 3 ZD906 1
in „Philips geht nach 1 Minute aus“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
DDS.vhd
", 307 => x"33BF4368", 308 => x"33E72834", 309 => x"340F04FD", 310 => x"3436D9BD", 311 => x"345EA66D", 312 => x"34866B08", 313 => x"34AE2788", 314 => x"34D5DBE5", 315 => x"34FD881B", 316 => x"35252C22", 317 => x"354CC7F6
in „DDFS von Lothar Miller ich steh aufm Schlauch“ · FPGA, VHDL & Co. ·
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Datei
nano_os_2_OPTs.txt
; 0x04 15c: 86 bd out 0x26, r24 ; 38 SREG = current->sreg; 15e: 81 81 ldd r24, Z+1 ; 0x01 160: 8f bf out 0x3f, r24 ; 63 SP = (unsigned int)(current->sp - 32); 162: 82 81 ldd r24, Z+2 ; 0x02 164: 93 81 ldd r25, Z+3 ; 0x03 166: 80 97 sbiw r24, 0x20 ; 32 168: 9e bf out 0x3e, r25 ; 62 16a: 8d bf out 0x3d
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PDF
ks0066u.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „4x40 LCD Display ohne HD Controller ansteuern.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066_Samsung_553815_1.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „LCD unter Bascom, welches?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „[ AVR ] Probleme mit LCD-Display (KS0066)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0066u.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „LCD zeigt was falsches nach Reset; ATmega8 avrgcc“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0066.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „LCD nur 8 von 16 zeichen lassen sich beschreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD-20x2-ganz.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „Init Problem mit KS0066 (Conrad)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0066.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „Reloadwertberechnung C167“ · Mikrocontroller und Digitale Elektronik ·
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PDF
553815_1.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „Probleme mit 2ter Zeile bei KS0066 LCD: Lösung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0066u.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „LCD einfach nur ansteuern.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066U.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
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PDF
datasheet.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „KS0066: datasheet“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0066.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „LCD KS0066 an 16F871“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0066.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „LCD Displaytech 204B (von Reichelt)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066U.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „LC Display (KS0066) programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „LCD "AV1624" (2x16 Zeichen, KS0066 komp.) zeigt nur die ersten 8 Zeichen an“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „Unbekanntes lcd Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „AV4040 LCD mit einem MCB2300 Evaluation Board Initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066U.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „20x4 Text-Display YM2004A mit KS0066“ · Mikrocontroller und Digitale Elektronik ·
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PDF
553815_1.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „LCD Routine Funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066_Datenblatt.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „HD44780 kompatibles Display - Initialisierung klappt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0066.pdf
Write operation (MPU writes data into DR) H H Data Read operation (MPU reads data from DR) Busy Flag (BF) BF = “High”, indicates that the internal operation is being processed. So during this time the next instruction cannot be accepted. BF can be read through DB7 port when RS = “Low”and R/W = “High”(Read
in „LCD-Modul Controller KS0066“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8833_1.pdf
TF 0 00H − top fixed area 6.2.24 r 1 SA 7 SA 6 SA5 SA4 SA3 SA2 SA1 SA 0 82H − scroll area 6.2.24 1 BF 7 BF6 BF5 BF4 BF3 BF2 BF1 BF 0 00H − bottom fixed area 6.2.24 9 0 0 0 1 1 0 1 0 0 34H tearing line off (TEOFF) 6.2.25 0 0 0 1 1 0 1 0 1 35H tearing line on (TEON) 6.2.26 1 X X X X X X X X 00H − 6.2.26
in „Versorgung einer LCD Anzeige und MC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sine_values.txt
x"0096f17d", 4 => x"00c941d8", 5 => x"00fb9214", 6 => x"012de229", 7 => x"0160320f", 8 => x"019281bf", 9 => x"01c4d131", 10 => x"01f7205c", 11 => x"02296f3a", 12 => x"025bbdc3", 13 => x"028e0bee", 14 => x"02c059b4", 15 => x"02f2a70d", 16 => x"0324f3f2", 17 => x"0357405a", 18 => x"03898c3e", 19 => x"
in „DDFS von Lothar Miller ich steh aufm Schlauch“ · FPGA, VHDL & Co. ·
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Datei
down.txt
S11301409091C2009093BF008093BE002093BB00A7 S11301501092B5001092B6001092B7001092B80039 S11301608091600090916100009719F480E991E01A S113017001C001979093610080936000BF91AF919B S11301809F918F913F912F910F900FBE0F901F90D1 S113019018959C011ABA90EF9BBB80E886B997BB6F
in „Calibration Byte 8MHz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Disassembler8048_mc1981.pdf
580 DATA B9/MOV R1,#",BA,"MOV R2,#",BB,"MOV R3,#",BC,"MOV R4,#" 590 DATA BD,"MOV R5,#",BE,"MOV Rö^'^BF/MOV R7,#",C6,JZ $,D3 595 DATA "XRL A,#" E6,JNC $,E8,"DJNZ RO,$"/E9,"DJNZ R1,$" 600 DATA EA,"DJNZ R2,$fl,EB,"DJNZ R3,$",EC,"DJNZ R4,$" 610 DATA ED,"DJNZ R5,$",EE,"DJNZ R6,$",EF,"DJNZ R7,$",F6,JC $ 620
in „80C48 MCS48 Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
robot-mit-cplusplus-anteilen-noheap-trotzdem-grosz.objdump.txt
bxne lr 800a94e: f092 0f00 teq r2, #0 800a952: bf14 ite ne 800a954: f093 4f7f teqne r3, #4278190080 ; 0xff000000 800a958: 4770 bxeq lr 800a95a: b530 push {r4, r5, lr} 800a95c: f44f 7460 mov.w r4, #896 ; 0x380 800a960: f001 4500 and.w r5, r1, #2147483648
in „ROM-Auslastung von C++-Programm reduzieren“ · Mikrocontroller und Digitale Elektronik ·