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Datei
stm32f10x_rcc.lst
loc 1 197 0 106 004c BD46 mov sp, r7 107 004e 80BC pop {r7} 108 0050 7047 bx lr 109 .L3: 110 0052 00BF .align 2 111 .L2: 112 0054 00100240 .word 1073876992 113 0058 0000FFF8 .word -117506048 114 .cfi_endproc 115 .LFE24: 116 .size RCC_DeInit, .-RCC_DeInit 117 .section .text.RCC_HSEConfig,"ax",%progbits
in „Seltsame Initialisierungen und Abstürze.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D15G14E_14_030526.pdf
HEX 0 0 0 1 1 0 0 1 1 33 1 TF7 TF6 TF5 TF4 TF3 TF2 TF1 TF0 XX 1 SA7 SA6 SA5 SA4 SA3 SA2 SA1 SA0 XX 1 BF7 BF6 BF5 BF4 BF3 BF2 BF1 BF0 XX Center Bottom Top Whole Fixed area Scrolling area Fig. 1 Display Scroll Mode Note: The top fixed area changes according to B4 bit of the memory access control command. * Default values after reset are as follows. TF7 to TF0: 0 SA7 to SA0: 0 BF7 to BF0: 53H 48 EPSON Rev.1.4 S1D15G14 Series (25) TEST mode This___mmand is for testing IC chips. D/C D7 D6 D5 D4 D3 D2 D1 D0 HEX 0 0 0 1 1 0 1 0 0 34 (26) TEST mode This command is for testing IC chips
in „Nokia LCD 3510“ · Mikrocontroller und Digitale Elektronik ·
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Thread
Stadtfahrrad in E-Bike
ZW5jcnlwdGVkUXVhbGlmaWVyPUEzR1JHQVFZU1JEVUJGJmVuY3J5cHRlZElkPUEwMjgwMjIzMUE1N0RQMkVLWlZORCZlbmNyeXB0ZWRBZElkPUExMDI3MjkySUUwNFdWTTgwUjlaJndpZGdldE5hbWU9c3BfZGV0YWlsX3RoZW1hdGljJmFjdGlvbj1jbGlja1JlZGlyZWN0JmRvTm90TG9nQ2xpY2s9dHJ1ZQ&th=1
Sache kaum beschleunigt. Im geschlossenen Peleton der TdF tritt der Fahrer an der Front mit 245 W, einer _im_ Peleton kommt mit 140 W aus. Typische Leistungen, die dauerhaft erbracht werden, liegen um die 300 W, Spitzenleistungen, bei denen sich aber abgewechselt wird, weil keiner das beliebig
Fahrzeugelektronik ·Tomme · ·358 Antworten
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Datei
st-link_gdbserver_log.txt
handlePacket(): Reading 0x40 bytes of memory from addr 0x80006c0 [19.291] write(): <676> Tx: $1a6000bf0837bd4680bd00bf000002403c0000200400024071b67749eff308800860eff3098080f30888bff36f8f10b420b440b480b44df8048d4df8049d4df8#50 [19.291] read(): <676> Rx: $m80006d8,2#65 [19.291] handlePacket(): Reading 0x2
in „STM32 Cube IDE Inline Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
vhfcindex.pdf
Circuits for Automatic Band Scanning, Part 1: A Simple Band Scanner E G Hoffschildt, DL9FX 1970/4 245 - 248 Miscellaneous Two Circuits for Automatic Band Scanning, Part 1 : A Simple Band Scanner E G Hoffschildt, DL9FX 1970/4 245 - 248 Audio Frequency Speech Processing - Practical Circuit of an Efficient
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Sonnenaufgang/Sonnenuntergang in Tabelle (Astro-Uhr/Dämmerungsschalter)?
30.08.24 242 5:29:12 101 31.08.24 243 5:30:53 101 01.09.24 244 5:32:34 101 02.09.24 245 5:34:16 101 03.09.24 246 5:35:57 101 04.09.24 247 5:37:38 101 05.09.24 248 5:39:19 101 06.09.24 249 5:41:01 101 07.09.24 250 5:42:42 101 08.09.24 251 5:44:23 101 09.09.24
: https://www.cambridge.org/core/books/practical-astronomy-with-your-calculator-or-spreadsheet/AE9BF845B4C2DDFDA0BDCFF3F51EB10E https://www.phy.cam.ac.uk/directory/duffettsmithp https://en.wikipedia.org/wiki/Jean_Meeus Astronomical Formulae for Calculators (1979), 1st ed, ISBN 0-943396-22-0
Mikrocontroller und Digitale Elektronik ·Idefix · ·70 Antworten
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Datei
out.txt
ZN16mb_callback_hold10call_writeEtt + 360 0x08003bec: 682b +h LDR r3,[r5,#0] 0x08003bee: 429c .B CMP r4,r3 0x08003bf0: d00c .. BEQ 0x8003c0c ; _ZN16mb_callback_hold10call_writeEtt + 400 0x08003bf2: 2003 . MOVS r0,#3 0x08003bf4: e752 R. B 0x8003a9c ; _ZN16mb_callback_hold10call_writeEtt + 32 0x08003bf6: 2002 . MOVS
in „ARM Bootloader mit ELF, Einstieg nicht bei 0x08000000“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fcntl.lst
open 108 .LM5: 109 /* prologue: frame size=0 */ 110 0014 9F92 push r9 111 0016 AF92 push r10 112 0018 BF92 push r11 113 001a CF92 push r12 114 001c DF92 push r13 115 001e EF92 push r14 116 0020 FF92 push r15 117 0022 0F93 push r16 118 0024 1F93 push r17 GAS LISTING c:\windows\TEMP\ccTDIigb.s page 4 119
in „Compiler-Fehler?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TCM8240MD_E150405_REV13.pdf
00 IDRE_SW IDRE_CR[1:0] IDRE_CL[1:0] 101 65 80 102 66 APBC_SW PBC_SW[3:0] D8 103 67 PBC_MODE[7:0] BF 104 68 PBC1LV[7:0] 10 105 69 PBC2LV[7:0] 10 106 6A PBC3LV[7:0] 60 107 6B PBC4LV[7:0] 18 108 6C VDS_HLPFSW[1:0] HDS_VLPFSW[1:0] 02 109 6D AWB_SW AWB_MODE[1:0] AWB_LOCK 21 AWB_WAIT[1:0] YLCUT_SW RGBCUT_SW
in „Cam-Modul TCM8240MD und ARM-Board per I²C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
version_1p3_assembler.lst
Source 3146: 0BF4 71 D6 SRD2: ACALL X_TR ;RESTORE POINTERS 3147: 0BF6 F1 01 ACALL VAR_ER ;GET VARIABLE ADDRESS 3148: 0BF8 F1 D1 ACALL XPOP ;FLIP THE REGISTERS FOR POPAS 3149: 0BFA D1 C6 ACALL C_TST ;SEE IF A COMMA 3150
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
set-and-map.c
0xBA, _BitInt(0xBB): 0xBB, _BitInt(0xBC): 0xBC, \ _BitInt(0xBD): 0xBD, _BitInt(0xBE): 0xBE, _BitInt(0xBF): 0xBF, _BitInt(0xC0): 0xC0, \ \ _BitInt(0xC1): 0xC1, _BitInt(0xC2): 0xC2, _BitInt(0xC3): 0xC3, _BitInt(0xC4): 0xC4, \ _BitInt(0xC5): 0xC5, _BitInt(0xC6): 0xC6, _BitInt(0xC7): 0xC7, _BitInt(0xC8): 0xC8
in „Diverse fragen zu Hash Maps in C“ · Softwareentwicklung ·
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Datei
set-and-map.c
0xBA, _BitInt(0xBB): 0xBB, _BitInt(0xBC): 0xBC, \ _BitInt(0xBD): 0xBD, _BitInt(0xBE): 0xBE, _BitInt(0xBF): 0xBF, _BitInt(0xC0): 0xC0, \ \ _BitInt(0xC1): 0xC1, _BitInt(0xC2): 0xC2, _BitInt(0xC3): 0xC3, _BitInt(0xC4): 0xC4, \ _BitInt(0xC5): 0xC5, _BitInt(0xC6): 0xC6, _BitInt(0xC7): 0xC7, _BitInt(0xC8): 0xC8
in „Diverse fragen zu Hash Maps in C“ · Softwareentwicklung ·
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PDF
HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
33133 1c32272 _ c w 1 3 2 4 3›42 N = 2IQI 5 R225 h 5 5R2 2 4m 222 4 D3 BR Ü3Bfi523 a 012V m P 3814 BF824 W P3138 R3152 13224 n R322EI' 5 2 R314oKo Ü 122R N FNÜIGI WR BF†°2 52m\//2 I V e 2 O 3 C3M25C 2513225 °{11:F3 “ ^ ^ ^ m ICI ibl 0 Ii- . [§1 5 2 O 2 1 1 H HM2 sv 13 N > 23125 w III III .. A ızv à]C3882Hm
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Datei
lab9a_c180.txt
lds LFFFF ;$C1B6 $FF $FF $FF lds LFFFF ;$C1B9 $FF $FF $FF lds LFFFF ;$C1BC $FF $FF $FF lds LFFFF ;$C1BF $FF $FF $FF lds LFFFF ;$C1C2 $FF $FF $FF lds LFFFF ;$C1C5 $FF $FF $FF lds LFFFF ;$C1C8 $FF $FF $FF lds LFFFF ;$C1CB $FF $FF $FF lds LFFFF ;$C1CE $FF $FF $FF lds LFFFF ;$C1D1 $FF $FF $FF lds LFFFF ;$C1D4
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nkat20-21.pdf
V D 1.3 0.16 115 7239/47 -.650 -.307 -.171 -.137 47 µF 35 V D8 0.8 0.12 150 7239/44 -.850 -.433 -.245 196 47 µF 50 V F 0.6 0.12 300 7239/46 1.600 -.866 -.490 -.392 100 µF 25 V D8 0.8 0.14 150 7239/102 -.900 -.433 -.245 -.196 100 µF 50 V F 0.6 0.12 300 7239/105 1.200 -.557 -.315 -.252 220 µF 16 V D8
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PDF
Roland_G-70_Service_Notes_.pdf
18 9 8 9 8 19 G D 5 5 1 DIR G 19 OE D EXB2HVJV@ EXB2HVJV@ TOKAIDO_TXD 53014-0510 1 DIR N 0 TC74VHCT245AFT D G 1 9 0 HD74LV245ATELL XCS0 10 1 D 8 XCS2 12 D XCS4 13 D +3.3 IC19B D +3.3 HD74LV21ATELL GRM39@ + + C72 0.1 D 3.3 D 3.3 D 0 IC21 RA52 RA53 D +3.3 5 6 7 8 RA54 4 4 2 22 10k 1 XWAIT0 10k 1 IC19C
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Roland-G-70-Service-Manual.pdf
IC9 D D D RXD2 7 10 174 RXD2/SCPT4 VCCQ 47 D +3.3 1 1 1 8 9 176 CTS2/IRQ5/SCPT7 VCCQ 35 19 19 HD74LV245ATELL EXB2HVJV@ RA36 33 VCCQ 21 2 2 AUDATA0 R29 2.2k RPC05T@J TPGND0 1 16 PTC7 177 MCS7/PTC7/PINT7 20 20 D 2 15 PTC6 178 181 3 AUDATA1 R30 2.2k RPC05T@J TPGND1 3 14 PTC5 179 MCS6/PTC6/PINT6 VSSQ 161
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ttester.pdf
Vgs=2.2V 2N5459 N-JFET N-JFET N-JFET Idss=4-16mA I=2.1mA Vgs=1.5V I=2.1mA Vgs=1.5V I=2.1mA Vgs=1.5V BF256C N-JFET N-JFET N-JFET Idss=11-18mA I=3.4mA Vgs=2.4V I=3.4mA Vgs=2.4V I=3.4mA Vgs=2.4V BF245A N-JFET N-JFET N-JFET Idss=2-6mA I=1.1mA Vgs=.75V I=1.1mA Vgs=0.75V I=1.1mA Vgs=0.75V BF245B N-JFET N-JFET N-JFET Idss=6-15mA I=2.5mA Vgs=1.7V I=2.5mA Vgs=1.7V I=2.5mA Vgs=1.7V BF245C N-JFET N-JFET N-JFET Idss=12-25mA I=3.9mA Vgs=2.7V I=3.9mA Vgs=2.7V I=3.9mA Vgs=2.7V J175 P-JFET P-JFET P-JFET Idss=7-60mA I=3.2mA Vgs=2.2V I=3.2mA Vgs=2.2V I=3.2mA Vgs=2.2V 2N5460 P-JFET P-JFET
in „Sammelbestellung Transistortester III - schnelle Runde“ · Markt ·
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PDF
ttester_ger109k.pdf
Vgs=2.2V 2N5459 N-JFET N-JFET N-JFET Idss=4-16mA I=2.1mA Vgs=1.5V I=2.1mA Vgs=1.5V I=2.1mA Vgs=1.5V BF256C N-JFET N-JFET N-JFET Idss=11-18mA I=3.4mA Vgs=2.4V I=3.4mA Vgs=2.4V I=3.4mA Vgs=2.4V BF245A N-JFET N-JFET N-JFET Idss=2-6mA I=1.1mA Vgs=.75V I=1.1mA Vgs=0.75V I=1.1mA Vgs=0.75V BF245B N-JFET N-JFET N-JFET Idss=6-15mA I=2.5mA Vgs=1.7V I=2.5mA Vgs=1.7V I=2.5mA Vgs=1.7V BF245C N-JFET N-JFET N-JFET Idss=12-25mA I=3.9mA Vgs=2.7V I=3.9mA Vgs=2.7V I=3.9mA Vgs=2.7V J175 P-JFET P-JFET P-JFET Idss=7-60mA I=3.2mA Vgs=2.2V I=3.2mA Vgs=2.2V I=3.2mA Vgs=2.2V 2N5460 P-JFET P-JFET
in „Sammelbestellung Transistortester III - schnelle Runde“ · Markt ·
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Datei
tasse_tee_48.c
0x086B, // 9 R: 95 G: 13 B: 15 0xA574, // 10 R: 166 G: 173 B: 160 0x38B9, // 11 R: 204 G: 23 B: 61 0xBF7E, // 12 R: 245 G: 236 B: 189 0xCE59, // 13 R: 205 G: 202 B: 206 0x8C98, // 14 R: 199 G: 145 B: 140 0xDEBD, // 15 R: 233 G: 215 B: 218 0xB5B8, // 16 R: 192 G: 182 B: 176 0x5B2B, // 17 R: 94 G: 103 B:
in „RGB Bitmap im MCU in C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MPASM__MPLINK__MPLIB_User_s_Guide.pdf
for d. TABLE A-2: 12-BIT BIT-ORIENTED FILE REGISTER OPERATIONS Hex Mnemonic Description Function 4bf BCF f,b Bit clear f 0 → f(b) 5bf BSF f,b Bit set f 1 → f(b) 6bf BTFSC f,b Bit test, skip if clear skip if f(b) = 0 7bf BTFSS f,b Bit test, skip if set skip if f(b) = 1 © 2009 Microchip Technology Inc
in „Anfängerfrage zu Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LCD_Ausgabe.LST
,0xEF,0xDF,0xDF,0xCF,0xF0,0x00}, 67 {0x3F,0xFF,0xFF,0xFF,0xC0,0x3F,0xCF,0x7B,0x8E,0xEF,0xE7,0x9F,0xBF,0xEF,0xF0,0x00}, 68 {0x3F,0xFF,0xFF,0xFF,0x80,0x1F,0xCF,0xF3,0x9F,0xEF,0x07,0x1F,0x79,0xEF,0xF0,0x00}, 69 {0x3F,0xFF,0xFF,0xFF,0x00,0x07,0xCF,0xE3,0x9F,0xEE,0x07,0x1E,0x79,0xEE,0x70,0x00}, 70 {0x00,0x00,0x00,0x00,0x00,0xE3,0xCE
in „LC-Display Sharp M078CKA ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.lst
C046 NOP \ ??SetColorAndBitmaps_0: \ 00000068 BF020000 DC32 0x2bf \ 0000006C ........ DC32 messen_txt_43x8 415 /************************************************************************* 416 * Function Name: main 417 * Parameters: none 418 * 419 * Return
in „LPC2103 Speicherproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ttester_eng104k.pdf
954pF 951pF J310 N-JFET N-JFET N-JFET Idss=24-60mA I=3.1mA Vgs=2.2V I=3.1mA Vgs=2.2V I=3.1mA Vgs=2.2V BF256C N-JFET N-JFET N-JFET Idss=11-18mA I=3.3mA Vgs=2.3V I=3.4mA Vgs=2.3V I=3.3mA Vgs=2.3V BF245A N-JFET N-JFET N-JFET Idss=2-6mA I=1.1mA Vgs=.75V I=1.1mA Vgs=0.74V I=1.1mA Vgs=0.75V BF245B N-JFET N-JFET N-JFET Idss=6-15mA I=2.4mA Vgs=1.7V I=2.5mA Vgs=1.7V I=2.4mA Vgs=1.7V BF245C N-JFET N-JFET N-JFET Idss=12-25mA I=3.8mA Vgs=2.7V I=3.9mA Vgs=2.7V I=3.8mA Vgs=2.7V Table 5.4: measurement results of MOS transistor testing 27 5.2 Resistor Measurement Each resistor is measured
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PDF
PIC16F1939.pdf
float. CON2 register. Interrupt is generated once the Stop/Restart condition is complete. 24.6.6.1 BF Status Flag In Transmit mode, the BF bit of the SSPSTAT register is set when the CPU writes to SSPBUF and is cleared when all eight bits are shifted out. 24.6.6.2 WCOL Status Flag If the user writes
in „MPLAB delay und xtalfreq richtig benutzen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
16f628a-HLM8070.asm
CALL LADR_0x0146 DECFSZ LRAM_0x4B,F GOTO LADR_0x013F RETURN LADR_0x0146 MOVLW 0xF5 ; b'11110101' d'245' MOVWF LRAM_0x4A LADR_0x0148 NOP NOP NOP NOP NOP DECFSZ LRAM_0x4A,F GOTO LADR_0x0148 NOP NOP RETURN MOVLW 0x62 ; b'01100010' d'098' "b" MOVWF LRAM_0x4B LADR_0x0154 BSF PORTB,7 ; !!Bank!! PORTB - TRISB
in „PIC programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
chac.zel.htm
a,g, df,a,g#,g^,f#,f^, ec,g,f#,f^,e,e&, db@,e^,f^,f#,g^,g#, aa@,ab@,ac,ac#,b^d,C#e, | Df,Cd,bg,bf,be,bd, | be,bc,af,ae,ad,ac, |239 ad,ab^@,ge,gd,gc#,gb@, |240 gc#,ec,ac,ga@,fb^@,ec#} track [TG11_123 [TR1 TR1 TG123]] TG11_123++ [TR2++ ocarina volume=55 **2.5 @@+1] '[TR3++ ] |241 fd a break on duration
in „zel, der Midi-Compiler, ist nach 10 Jahren wieder auferstanden“ · Offtopic ·
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Datei
qaxe_flash_stm32L.txt
0x800bd00 erased (size: 0x100) -> Flash page at 0x800be00 erased (size: 0x100) -> Flash page at 0x800bf00 erased (size: 0x100) -> Flash page at 0x800c000 erased (size: 0x100) -> Flash page at 0x800c100 erased (size: 0x100) -> Flash page at 0x800c200 erased (size: 0x100) -> Flash page at 0x800c300 erased
in „10W Bitcoin miner mit 450GH/s für Raspberry Pi“ · Projekte & Code ·
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PDF
4_5_stelliges_LED_ELV_DMM7001.pdf
79 L 05 . . . . . . . . . . . . . . . . . . . . . . IC 13 form in eine äquivalente Ausgangsgleich BF 245 B . . . . . . . . . . . . . . . . . . . . . . T 1 spannung um, die dem echten Effektiv 4,Sstelliges Digital BC 337 . . . . . . . . . . . . . . . . . O .J. T 4-T 8 wert der Eingangsspannung entspricht
in „Projekt DVM 4,5 Digit aus Standardbauteilen mit automatischer Bereichsumschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
JU1-V2-5-mod.asm
IE,#0x94 A027a: mov R2,#0x00 acall D0303 lcall A1186 lcall B298a acall B0668 acall L03ee lcall B29bf mov R2,#0x03 acall D0303 acall B02df setb ACC.7 movx @DPTR,A lcall C0892 mov R2,#0x02 acall D0303 acall B02df movx @DPTR,A lcall A1800 lcall B298a acall B0668 acall L03ee lcall B29bf mov A,79h jb ACC
in „8051 Disassembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
font.h
0x09, 0x00, 0x13, 0x00, 0x27, 0x80, 0x21, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* character 0x00BF ('¿'): (width=6, offset=1904) */ 0x00, 0x00, 0x00, 0x00, 0x00, 0x20, 0x00, 0x20, 0x20, 0x40, 0x80, 0x88, 0x70, 0x00, /* character 0x00C0 ('À'): (width=8, offset=1918) */ 0x20, 0x10, 0x00, 0x10, 0x28,
in „Frage zur Optimierung Display Text mit Font“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nightsky_arx15.pdf
AT32 VDD VDD AV36 R17 VDD VDD W40 BD48 VDD VDD BE52 AT33 VDD VDD AV37 R18 VDD VDD Y13 BD49 VDD VDD BF42 AT34 VDD VDD AV38 R19 VDD VDD Y40 BD50 VDD VDD BF44 AT35 VDD VDD AV39 R20 VDD BD51 VDD VDD BF45 AT36 VDD VDD AV40 R21 VDD BE41 VDD VDD BF47 AT37 VDD VDD AV42 R22 VDD BE42 VDD VDD BF49 AT38 VDD VDD
in „SMD TGAJ TVS Diode USB“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Steuern_1.html
600: #f4511e; --md-deep-orange-700: #e64a19; --md-deep-orange-800: #d84315; --md-deep-orange-900: #bf360c; --md-deep-orange-A100: #ff9e80; --md-deep-orange-A200: #ff6e40; --md-deep-orange-A400: #ff3d00; --md-deep-orange-A700: #dd2c00; --md-brown-50: #efebe9; --md-brown-100: #d7ccc8; --md-brown-200: #
in „Strompreis an der Ladesäule beim Arbeitgeber“ · Offtopic ·
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Datei
G32trust.asm
, 4 jnz short loc_1000BF66 mov word ptr [esi+6], 0B39h mov ax, 39h pop edi pop esi pop ebx retn 18h ; ÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄ loc_1000BF66: ; CODE XREF: sub_1000BF20+34 j mov eax, [esp+arg_8] or eax, eax jnz short loc_1000BF80 mov word ptr [esi+6], 410h mov ax, 10h pop edi pop esi pop ebx retn 18h ; ÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄ align 4 loc_1000BF80: ; CODE XREF: sub_1000BF20
in „Wer kann mir eine ASM File compelieren“ · Softwareentwicklung ·
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PDF
Mikrocontroller-PIC18F2420.pdf
. set before the transfer was received. 8. Receive first (high) byte of address (bits, SSPIF and BF, are set). In this case, the SSPSR register value is not loaded into the SSPBUF, but bit, SSPIF (PIR1<3>), is set. The 9. Read the SSPBUF register (clears BF bit) and BF bit is cleared by reading the
in „Spannungseinbruch beim Sampeln des Signals“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Dialog_Plain_12_font.h
0x0E, 0x08, // 48:151 0x00, 0xA5, 0x0C, 0x08, // 49:165 0x00, 0xB1, 0x0E, 0x08, // 50:177 0x00, 0xBF, 0x0E, 0x08, // 51:191 0x00, 0xCD, 0x0E, 0x08, // 52:205 0x00, 0xDB, 0x0E, 0x08, // 53:219 0x00, 0xE9, 0x0E, 0x08, // 54:233 0x00, 0xF7, 0x0D, 0x08, // 55:247 0x01, 0x04, 0x0E, 0x08, // 56:260 0x01,
in „ESPEasy Sketch Kompilierungsfehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
40001722A.pdf
Sequence Enable, ACKEN bit of the SSPCON2 register. 9. After the eighth falling edge of SCL, SSPIF and BF are set. 23.6.7.1 BF Status Flag 10. Master clears SSPIF and reads the received byte from SSPUF, clears BF. In receive operation, the BF bit is set when an address or data byte is loaded into SSPBUF
in „PIC16(L)F1703 low voltage Programmierung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC18Fxx2.pdf
(high) byte of Address (bits SSPIF before the transfer was received. and BF are set). In this case, the SSPSR register value is not loaded into the SSPBUF, but bit SSPIF (PIR1<3>) is set. The 9. Read the SSPBUF register (clears bit BF) and clear flag bit SSPIF. BF bit is cleared
in „AD1 und AD2 Multiplexen (PIC18F452)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC16F1503.pdf
SSPxIF and UA are still set so that the slave soft- ware can set SSPxADD back to the high address. BF is not set because there is no match. CKP is unaffected. 10. Slave clears SSPxIF. 11. Slave reads the received matching address from SSPxBUF clearing BF. 12. Slave loads high address into SSPxADD. 13
in „Versorgungsspannung vom PIC mit PIC messen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
src.txt
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in „Verweis/Referenzierung zu anderen Beiträgen“ · www.mikrocontroller.net ·
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PDF
PCN_DN43A_20000630.pdf
933480360215 T M 3 31-12-00 30-6-01 BCX71H Standard Discontinuation. Consult Marketing. See Replacement. BF240 BF240 T/R NPN medium frequency transistor 933164250116 N M 3 31-12-00 30-6-01 BF240 112 Standard Discontinuation. Consult Marketing. See Replacement. BF324 PNP medium frequency transistor 933167730112 N M 3 31-12-00 30-6-01 BF324 126 Standard Discontinuation. Consult Marketing. See Replacement. BF324 PNP medium frequency transistor 933167730116 N M 3 31-12-00 30-6-01 BF324 126 Standard Discontinuation. Consult Marketing. See
in „Mosfet Identifikation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt_PIC12F1822.pdf
SSP1IF and UA are still set so that the slave soft- ware can set SSP1ADD back to the high address. BF is not set because there is no match. CKP is unaffected. 10. Slave clears SSP1IF. 11. Slave reads the received matching address from SSP1BUF clearing BF. 12. Slave loads high address into SSP1ADD. 13
in „PIC12F1822-PWM Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_PIC12F1822.pdf
SSP1IF and UA are still set so that the slave soft- ware can set SSP1ADD back to the high address. BF is not set because there is no match. CKP is unaffected. 10. Slave clears SSP1IF. 11. Slave reads the received matching address from SSP1BUF clearing BF. 12. Slave loads high address into SSP1ADD. 13
in „Interrupt-PIC12F1822“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
SSP1IF and UA are still set so that the slave soft- ware can set SSP1ADD back to the high address. BF is not set because there is no match. CKP is unaffected. 10. Slave clears SSP1IF. 11. Slave reads the received matching address from SSP1BUF clearing BF. 12. Slave loads high address into SSP1ADD. 13
in „Auflösung PWM-Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
SSP1IF and UA are still set so that the slave soft- ware can set SSP1ADD back to the high address. BF is not set because there is no match. CKP is unaffected. 10. Slave clears SSP1IF. 11. Slave reads the received matching address from SSP1BUF clearing BF. 12. Slave loads high address into SSP1ADD. 13
in „8Bits und 2Bits in eine Integer-Variable“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
SSP1IF and UA are still set so that the slave soft- ware can set SSP1ADD back to the high address. BF is not set because there is no match. CKP is unaffected. 10. Slave clears SSP1IF. 11. Slave reads the received matching address from SSP1BUF clearing BF. 12. Slave loads high address into SSP1ADD. 13
in „Timer2 auf 10bit einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC12FLF1822PIC16FLF1823.pdf
SSP1IF and UA are still set so that the slave soft- ware can set SSP1ADD back to the high address. BF is not set because there is no match. CKP is unaffected. 10. Slave clears SSP1IF. 11. Slave reads the received matching address from SSP1BUF clearing BF. 12. Slave loads high address into SSP1ADD. 13
in „PIC16lf1823 General purpose I/Os mit Schmitt Trigger ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pic18f2320.pdf
. set before the transfer was received. 8. Receive first (high) byte of address (bits SSPIF and BF are set). In this case, the SSPSR register value is not loaded into the SSPBUF but bit SSPIF (PIR1<3>) is set. The 9. Read the SSPBUF register (clears bit BF) and BF bit is cleared by reading the SSPBUF
in „I2C-Bus Collision“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC18f6622.pdf
. set before the transfer was received. 8. Receive first (high) byte of address (bits SSPxIF and BF are set). In this case, the SSPxSR register value is not loaded into the SSPxBUF, but bit SSPxIF is set. The BF bit is 9. Read the SSPxBUF register (clears bit BF) and cleared by reading the SSPxBUF
in „PIC 18F6622 Zeit um EEPROM zu schreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC_18F8722_Data_Sheet.pdf
pulse: line, this will clear bit UA. • The Buffer Full bit, BF (SSPxSTAT<0>), was set 6. Read the SSPxBUF register (clears bit BF) and before the transfer was received. clear flag bit SSPxIF. • The overflow bit, SSPOV (SSPxCON1<6>), was set before the transfer was
in „PIC 18F6527 mit 32MHz Takten“ · Mikrocontroller und Digitale Elektronik ·