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Datei
lab9.sx.txt
$32B7 $FF $FF $FF lds LFFFF ;$32BA $FF $FF $FF lds LFFFF ;$32BD $FF $FF $FF lds LFFFF ;$32C0 $FF $FF $FF lds LFFFF ;$32C3 $FF $FF $FF lds LFFFF ;$32C6 $FF $FF $FF lds LFFFF ;$32C9 $FF $FF $FF lds LFFFF ;$32CC $FF $FF $FF lds LFFFF ;$32CF $FF $FF $FF lds LFFFF ;$32D2 $FF $FF $FF lds LFFFF ;$32D5 $FF $FF $FF lds LFFFF ;$32D8 $FF $FF $FF lds LFFFF ;$32DB $FF $FF $FF lds LFFFF ;$32DE $FF $FF $FF lds LFFFF ;
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Weidezaun_S04_ELV50.pdf
Puls ~2min 4 100u63V D8x14mm RM3,5 105GC 0 R1 22k a d S 5 D8 EGND 6,7-7,4uA , u H1 R11 R12 1 2-3kV 0,32J2EDG 5.08 300V 15/10A AWG28-12 RM5,08 besser RM7,62 0 KF2510-2P 3A 10mR AWG28~22 250Vac 0,08€/10 r 22k w WPri ~32kHz 32,2us 1 ZY200 6 R7 UF4007 u C 1 2 1M 0,5W 3500V Glas D4x10mm VR37 3357799 Farnell Vishay 9 w C2 0 2 D9 P 20MA9903 32V-10V 2ADO35 Bü10SPri0C Sek155/94Vac 0,5mA0k 470k m nc0,22u 63V 10n 2 4 5 e 800Wdg 32mH ZY200 JP1 Diac ER900 32V-10V 2ADO35 Bü24S2960 ST.com 2x 470k 350V RI40 high voltage resistor Glas 2W 2000V 3000Vmax
in „Weidezaun gegen Schnecken mit Netztrafo und Rohr DN160 für Hobbygärtner“ · Projekte & Code ·
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PDF
PDC_10-1_Datasheet.pdf
35 25 20 20 15 1.5 0.5 0.5 B02 cw 25.95 PDC-10-1 0.5-500 11.5±0.5 ±0.6 0.85 1.3 0.65 1.0 0.85 1.3 32 25 32 25 22 15 1.2 1.5 3.0 A01 cu 13.45 < PDC-10-2 250-1000 10.5±0.5 ±0.6 1.4 1.6 — — 1.6 2.0 30 23 — — 25 15 1.5 — 5.0 A01 cu 34.45 PDC-10-5 1-2000 10.5±0.5 ±1.0 1.2 1.9 1.3 1.9 2.0 2.5 38 25 30 18
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Datei
main.lst
: 0002b8 e0e0 LDI R30,LOW(0) 0002b9 93e0 0163 STS _Parity,R30 0002bb c01d RJMP _0x3B _0x3C: 0002bc 32e3 CPI R30,LOW(0x23) 0002bd f469 BRNE _0x3E 0002be 91e0 0163 LDS R30,_Parity 0002c0 70e1 ANDI R30,LOW(0x1) 0002c1 f029 BREQ _0x3F 0002c2 94e8 CLT 0002c3 f822 BLD R2,2 0002c4 e0e0 LDI R30,LOW(0) 0002c5
in „Timer initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
heizung_21_01_2011_12_25.txt
17 00 10 00 90 00 88 13 05 22 00 80 00 1A 00 88 00 18 00 40 02 80 4C 35 09 03 25 C0 80 00 80 00 01 BD FF FF FF 00 00 00 00 00 02 18 43 00 88 00 34 00 38 01 AE 02 23 81 00 00 03 00 00 9C 9A 00 43 B9 00 2E 00 22 00 10 00 90 00 2A 00 10 00 90 00 32 00 3A 00 10 00 90 00 42 00 4A 00 10 00 90 00 52 00 5A 00
in „Junkers HT-Bus Heatronic 3 Schnittstelle“ · Haus & Smart Home ·
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Datei
file2.TXT
:1022F000646A656A6134633601E364806350676EC3 :102300006850D8B40BD06750685CD8B00ED0685015 :1023100000086724636E180E636407D060C05DF028 :1023200061C05EF062C05FF0B8D06750D8B40BD027 :102330006850675CD8B00ED0675000086824636EA0 :10234000180E636407D05DC05DF05EC05EF05FC0D4
in „Trying to understand .hex files obtained after compiling a XC8 MPLAB X project.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bd9615muv-lb-e.pdf
Datasheet 3.5V to 60V Input 1ch Boost DC/DC Controller BD9615MUV-LB General Description Key Specifications This is the product guarantees long time support in Input Voltage Range: 3.5V to 60V Industrial market. Reference Voltage Precision: (Ta=25°C) 0.8V
in „BD9615 (flyback) startet nicht zuverlässig“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Dump3.txt
FF BF 00 41 FF BE 00 42 FF BD 00 43 FF BC 0x0110: 00 44 FF BB 00 45 FF BA 00 46 FF B9 00 47 FF B8 0x0120: 00 48 FF B7 00 49 FF B6 00 4A FF B5 00 4B FF B4 0x0130: 00 4C FF B3 00 4D FF B2 00 4E FF B1 00 4F FF B0 0x0140: 00 50 FF AF
in „I²C/TWI Speicherzugriff prüfen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
diff.txt
03B67B41: 64 E4 03B67B4C: 3E 1E 03B67B55: 21 01 03B67BA1: 7F 5F 03B67BBF: E7 E3 03B67BCF: B0 B4 03B67BD6: CB CF 03B67BE1: 66 6E 03B67BF1: EB FB 03B67C0B: E9 EB 03B67C0F: 93 91 03B67C17: E5 ED 03B67C1A: 21 23 03B67C2B: E9 F9 03B67C32: AA A2 03B67C74: B3 F3 03B67C7E: A4 AC 03B67CA4: 33 23 03B67CA7: CA 8A
in „Kopierte Dateien nicht binär identisch?“ · PC Hard- und Software ·
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PDF
datenblatt_0000012_1.pdf
Connect to a Bluetooth neighborhood device 1~8 (ATF? Result) This command display the local device BD address B Modifiers Description (Display local BD address) B? Inquire the Local BD address For security purpose, We can specifies the unique remote device can be connected. In D master role, it automatically
in „BTM222 USB-Anschlüsse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTM222_DataSheet.pdf
Connect to a Bluetooth neighborhood device 1~8 (ATF? Result) This command display the local device BD address B Modifiers Description (Display local BD address) B? Inquire the Local BD address For security purpose, We can specifies the unique remote device can be connected. In D master role, it automatically
in „AVR & Bluetooth Wie schwer Wie teuer?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
btm222_datasheet.pdf
Connect to a Bluetooth neighborhood device 1~8 (ATF? Result) This command display the local device BD address B Modifiers Description (Display local BD address) B? Inquire the Local BD address For security purpose, We can specifies the unique remote device can be connected. In D master role, it automatically
in „Bluetoothmodul BTM-222“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTM-222.pdf
Connect to a Bluetooth neighborhood device 1~8 (ATF? Result) This command display the local device BD address B Modifiers Description (Display local BD address) B? Inquire the Local BD address For security purpose, We can specifies the unique remote device can be connected. In D master role, it automatically
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PDF
VirusTotal_-_ZiGuangWC_Setup.pdf
14:49:11 TrID: Win32 Executable Generic (38.4%) Win32 Dynamic Link Library (generic) (34.1%) Win16/32 Executable Delphi generic (9.3%) Generic Win/DOS Executable (9.0%) DOS Executable Generic (9.0%) sigcheck: publisher..
in „Virus oder Fehlalarm?“ · Offtopic ·
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PDF
85272_lc444_schaltplan.pdf
2 0 3 0 4 0 LL4148 5 R R 1 R 1 R 1 R 1 D2 R LL4148 D3 R7 2K7 T1 R8 C1 LL4148 6 R PWM1 2K7 T2 D4 R BD136 100p D5 BC848C R10 SMD LL4148 R11 2K7 T3 LL4148 9 x C2 D6 R R PWM2 2K7 T4 BD136 100p BC848C SMD LL4148 D7 R13 2K7 T5 2 R14 C3 LL4148 1 R PWM3 2K7 T6 BD136 D8 R BC848C 100p LL4148 R15 SMD R16 2K7 T7 2K7 C4 PWM4 T8 BD136 100p BC848C SMD EK1 EK2 EK3 EK4 IC6 IC8 14 15 8 11 Data In Q0 I7 O7 MK1 Q1 1 7 I6 O6 12 MK2 11 2 6 13 MK3 SCK Q2 3 5 I5 O5 14 MK4 Q3 I4 O4 12 RCK Q4 4 4 I3 O3 15 MK5 Q5 5 3 I2 O2 16 MK6 13 6 2 17
in „LED CUBE selberbauen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3990fa.pdf
VIEW TOP VIEW FB/VOUT 1 16 RT FB 1 10 RT FB/VOUT 2 15 NC NC 3 14 PG EN/UVLO 2 11 9 PG EN/UVLO 4 17 13 BD VIN 3 GND 8 BD NC 5 GND 12 NC GND 4 7 BOOST NCN 7 10 NCOST GND 5 6 SW GND 8 9 SW MSE PACKAGE DD PACKAGE 16-LEAD PLASTIC MSOP 10-LEAD (3mm × 3mm) PLASTIC DFN θJA= 40°C/W,JC = 10°C/W θJA= 45°C/W,JC = 10
in „LT3990 Layout“ · Platinen ·
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Datei
TIR-B.asm
087fh 0050 07 rlca 0051 07 rlca 0052 07 rlca 0053 09 add hl,bc 0054 77 ld (hl),a 0055 af xor a 0056 32b520 ld (20b5h),a 0059 c9 ret 005a e5 push hl 005b 1e00 ld e,00h 005d b7 or a 005e ed52 sbc hl,de 0060 e1 pop hl 0061 380e jr c,0071h 0063 2817 jr z,007ch 0065 ed42 sbc hl,bc 0067 3813 jr c,007ch 0069
in „Z80/UA880D mit 28C64 startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
st-link_gdbserver_log.txt
SYSTEM "gdb-target.dtd"><target><feature name="org.gnu.gdb.arm.m-profile"> <reg name="r0" bitsize="32"/> <reg name="r1" bitsize="32"/> <reg name="r2" bitsize="32"/> <reg name="r3" bitsize="32"/> <reg name="r4" bitsize="32"/> <reg name="r5" bitsize="32"/> <reg name="r6" bitsize="32"/> <reg name="r7" bitsize="32"/> <reg name="r8" bitsize="32"/> <reg name="r9" bitsize="32"/> <reg name="r10" bitsize="32"/> <reg name="r11" bitsize="32"/> <reg name="r12" bitsize="32"/> <reg name="sp" bitsize="32" type="data_ptr"
in „STM32 Cube IDE Inline Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HWSC_S_A0014431442_1-3073393.pdf
±600 Pa 004ND ±4 i2H 2.5BD -2.5 2.5 bar — 8 16 10 ±0.75 ±0.25 ±0.25 16 barbless port barbless port 010MD ±10 mbar 001KD ±1 kPa 005ND ±5 i2H O 004BD -4.0 4.0 bar — 16 17 10 ±0.75 ±0.25 ±0.25 16 006BD -6 6 bar — 17 17 17 ±0.75 ±
in „ESP32 Wroom mit Honeywell Drucksensor verbinden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Kanal_0_Pin1.txt
6.0940265800,0x4C,, 6.0941125300,0x58,, 6.0941984700,0x44,, 6.0942844000,0x53,, 6.0943703400,0x4D,, 6.0944562600,0x32,, 6.0945421900,0x32,, 6.0946281200,0x30,, 6.0947140400,0x33,, 6.0947999600,0x30,, 6.0948859000,0x35,, 6.0949718400,0x32,, 6.0950577800,0x33,, 6.0951437200,0x30,, 6.0952296600,0x39,, 6.0953156300,0x30
in „UART analysieren welcher Logic Analyzer?“ · Mikrocontroller und Digitale Elektronik ·
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Bild
AVR ISP STK Programmer Software mit FlashROM Inhalt
¦ 0020 95 18 E5 8F BF 8D E4 C0 E3 E8 2E 4E E0 82 BF 8E 0030 D0 E2 D0 F2 2E 5F EF EE E0 F1 E6 A0 E0 BD 27 88 0040 93 87 D0 31 F7 E9 E1 B9 B9 89 E0 BD 80 E1 88 0050 89 8A 24 66 E2 A0 E0 BE EA E8 E0 F0 D0 1C D0 03 0060 D0 9A F8 CF FF E2 A0 E0 B2 91 8D 23 88 F0 11 0070 D0 05 CF FB 95 08 97 31 F7 F1 95 08
in „LCD mit BASCOM an Port C“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
app_bootloader.lst
3bc8: 80 ec ldi r24, 0xC0 ; 192 3bca: 89 83 std Y+1, r24 ; 0x01 3bcc: 10 92 c2 01 sts 0x01C2, r1 3bd0: 86 e3 ldi r24, 0x36 ; 54 3bd2: 60 e0 ldi r22, 0x00 ; 0 3bd4: 70 e0 ldi r23, 0x00 ; 0 3bd6: 40 e0 ldi r20, 0x00 ; 0 3bd8: 0e 94 68 1c call 0x38d0 ; 0x38d0 <spi_write> 3bdc: 8e e7 ldi r24, 0x7E ; 126
in „2 byte >> 1 word“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hex.pdf
Section 2.2), which contain parameters mandatory for bluetooth operation (e.g. Bluetooth Device Address (BD_Addr)) as well as configuration values for the LMX9838. See Section 2.2 for a complete list of parameters. To avoid reconfiguration of the LMX9838 on each power-up, all System Parameters (Section 2.2
in „EEPROM Memory Map“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LGP42-10LF_EAY60869402_PLHF-L923A.pdf
KMF 3 3 A1 Y 7 4 1 I C611,C612 VR 0 2 2 u V C 4 A C E30 0 P 6 K 32":68uF*2 I 1 M / 1 7 5 0 BD101 32161 S O 1 0 % 37":82uF*2 R 1 1 X . 2 1 F 2 32",37":RS405M R608 2 0 R 7 1 42":82uF*2 C 0 C 0 R 1 R617 2 F 7 AC1 42":RS1005M 20K B 1 0 4 Q603 Y 7 2 E HS1 C 240K C 4 0 Y
in „LG Inverter Kapazitator abgebrannt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
disasm.asm
movs r5, #1 l0000229e: 0029 lsls r1, r5, #0 l000022a0: 4301 orrs r1, r0 l000022a2: 2020 movs r0, #32 l000022a4: F7FF FFA8 bl l000021f8 l000022a8: 6025 str r5, [r4, #0] l000022aa: BD31 pop {r0, r4, r5, pc} l000022ac: B510 push {r4, lr} l000022ae: 2100 movs r1, #0 l000022b0: 20E1 movs r0, #225 l000022b2
in „Flash im Cortex-M0 durch Codeinjektion ins SRAM auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fatfsctrl.c
**************************************************************** */ #include "main.h" #include "stm32f4xx_hal.h" #include "fatfs.h" #include "usb_host.h" #include "usbh_diskio.h" #include "fatfsctrl.h" #include "usartctrl.h" static uint8_t writeCntr = 0; extern ApplicationTypeDef Appli_state; // global
in „STM32F411 USB HOST f_write Phänpmen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
crc32.c
0x2D02EF8D }; #define STEPCRC(crc,byte) crc = crc_table[((int)crc ^ (byte)) & 0xff] ^ (crc >> 8) uint32 CRC32_Start(void) { return (~((uint32)0)); } uint32 CRC32_Finish(uint32 crc) { return (~crc); } uint32 CRC32_AddByte(uint32 crc,uint8 b) { STEPCRC(crc,b); return(crc); } uint32 CRC32_AddWord(uint32 crc
in „Ideen um CRC-Routine zu beschleunigen? (AVR, gcc)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_C-Versuchsboard_Schaltplan.pdf
ADC7)PA7 33 100K 4K7 X C (ADC6)PA6 34 +5V 4 X5-4 (ADC5)PA5 35 R23 GND R4 Q4 D 2 12 XTAL2 (ADC4)PA4 36 BD139 N 0 (ADC3)PA3 37 100K 4K7 G 11 13 XTAL1 (ADC2)PA2 38 GND GND GND GND GND CQ 1 39 GND 3 32 (ADC1)PA1 40 R22 Q3 X5-3 30 AREF (ADC0)PA0 K 100n K 000n K 700n 100n K 9 K00n8 R3 BD139 31 AVCC 8 100K 0 2
in „Problem mit ATmega32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ff.c
FSINFO sector (2) */ #define BPB_BkBootSec 50 /* Offset of backup boot sector (2) */ #define BS_DrvNum32 64 /* Physical drive number (1) */ #define BS_NTres32 65 /* Error flag (1) */ #define BS_BootSig32 66 /* Extended boot signature (1) */ #define BS_VolID32 67 /* Volume serial number (4) */ #define BS_VolLab32
in „Problem mit VS1053“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TAS5611.pdf
M1 CONFIGURATION 0 0 0 Differential 2 × BTL AD mode 0 0 1 — — Reserved 0 1 0 Differential 2 × BTL BD mode 0 1 1 Differential Single 1 × BTL +2 ×SE BD mode, BTL Differential Ended 1 0 0 Single Ended 4 × SE AD mode INPUT_C (1) INPUT_D (1) 1 0 1 Differential 1 × PBTL 0 0 AD mode 1 0 BD mode 1 1 0 Reserved 1 1 1 (1) INPUT_C and D are used to select between a subset of AD and BD mode operations in PBTL mode (1=VREG and 0=GND). PACKAGE HEAT DISSIPATION RATINGS (1) PARAMETER TAS5611PHD TAS5611DKD RqJC(°C/W) – 2 BTL or 4 SE channels 3.2 2.1 R (°C/W) – 1 BTL or 2 SE channel(s) 5.4
in „TAS5611 Layout erfahrung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
trace.txt
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 2B 03 02 16 01 03 BD 03 02 17 32 00 0E 64 1F 01 02 00 42 4F 4F 54 20 53 57 20 20 20 20 20 20 20 20 20 30 37 3A 34 31 3A 30 32 32 30 31 31 2D 30 39 2D 30 39 64 1F 01 02 00 00 00 00 00 C1 03 02 02 01 02 37 03 02 7F 01 02 C8
in „Checksumme bestimmen (wahrscheinlich CRC8)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DDS.vhd
> x"25FA5A0D", 15 => x"2892F84F", 16 => x"2B2579BB", 17 => x"2DB17B1E", 18 => x"30369A3D", 19 => x"32B475E8", 20 => x"352AAE06", 21 => x"3798E3A5", 22 => x"39FEB908", 23 => x"3C5BD1B6", 24 => x"3EAFD286", 25 => x"40FA61AD", 26 => x"433B26CD", 27 => x"4571CB02", 28 => x"479DF8EF", 29 => x"49BF5CC8", 30 => x"4BD5A464", 31 => x"4DE07F45", 32 => x"4FDF9EA5", 33 => x"51D2B585", 34 => x"53B978B4", 35 => x"55939EDC", 36 => x"5760E090", 37 => x"5920F850", 38 => x"5AD3A29D", 39 => x"5C789DFA", 40 => x"5E0FAAFB", 41
in „DDS mit DE0-Nano Board nur niedrige Frequenzen?“ · FPGA, VHDL & Co. ·
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Datei
forum.c
0x1231, 0x0210, 0x3273, 0x2252, 0x52B5, 0x4294, 0x72F7, 0x62D6, 0x9339, 0x8318, 0xB37B, 0xA35A, 0xD3BD, 0xC39C, 0xF3FF, 0xE3DE, 0x2462, 0x3443, 0x0420, 0x1401, 0x64E6, 0x74C7, 0x44A4, 0x5485, 0xA56A, 0xB54B, 0x8528, 0x9509, 0xE5EE, 0xF5CF, 0xC5AC, 0xD58D, 0x3653, 0x2672, 0x1611, 0x0630, 0x76D7, 0x66F6
in „CRC 16 nach CCiTT mit ARM und Linux“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Q_mul_dissasembly.txt
103: 104: /*simple Q31 multiplication 105: * no saturation 106: * no rounding 107: */ 108: inline int32_t q_mul_q31_nosat(int32_t a, int32_t b){ 109: int64_t result = (int64_t)a * b; 9D009B6C 8C820000 LW V0, 0(A0) 9D009B70 00021FC3 SRA V1, V0, 31 9D009B74 000537C3 SRA A2, A1, 31 9D009B78 00C20018 MULT
in „PIC32MX370 - Multiplikation“ · Mikrocontroller und Digitale Elektronik ·
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Datei
protokoll.txt
80 5D 44 55 92 C8 13 0C 8B 55 33 3D E4 39 E4 3F D2 0F D2 0F D2 0F D2 0F 68 55 41 4F 9C 24 AF 8D 50 32 55 FC F2 2B F6 2B F5 23 40 9D A7 75 0E D3 0E EF 55 F8 F6 25 9D 13 CE 13 CA 55 B0 BE 67 BA 67 BC 51 8C 51 8C 51 8C 51 8C 67 55 27 29 FA 42 C9 EB 36 72 55 BC B2 6B B6 6B BD 60 BD 60 BD 60 BD 5B BF 6D 55
in „Stihl Akku Reverse Engineering“ · Mikrocontroller und Digitale Elektronik ·
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Datei
file1.TXT
1014E00046C04AF04B6A4C6A45344A3601E34B80A9 :1014F0004A504F6E49C04AF04B6A4C6A48344A36EB :1015000001E34B804A504E6E4F50D8B40BD04E5032 :101510004F5CD8B00ED04F5000084E244A6E180EC3 :101520004A6407D047C044F048C045F049C046F07F :10153000B8D04E50D8B40BD04F504E5CD8B00ED06F :101540004E5000084F244A6E180E4A6407D044C01B :1015500044F045C045F046C046F0A3D0060E4D6E9F
in „Trying to understand .hex files obtained after compiling a XC8 MPLAB X project.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
crc32.c
#include "crc32.h" /* Table of CRCs of all 8-bit messages. Generated by running code from RFC 1952 modified to print out the table. */ static unsigned long crc32_table[256] = { 0x00000000, 0x77073096, 0xee0e612c, 0x990951ba
in „STM32 - Crc Berechnung in C# nachbilden“ · Softwareentwicklung ·
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Datei
crc32.c
#include "crc32.h" /* Table of CRCs of all 8-bit messages. Generated by running code from RFC 1952 modified to print out the table. */ static unsigned long crc32_table[256] = { 0x00000000, 0x77073096, 0xee0e612c, 0x990951ba
in „STM32 - Crc Berechnung in C# nachbilden“ · Softwareentwicklung ·
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Datei
nano_os_OPT3.txt
SREG, SP and R0...31) if (current) { TCNT0 = current->prio; 15a: 84 81 ldd r24, Z+4 ; 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
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PDF
pa3000.pdf
R1 R2 4N25 U1 R3 +B R K R K 0 R 1 5 100\63 R 6 3 3 1 5 Q1 3K3 6 560R D2 D22 Q2 1N4007 D21 4148 4148 BD140 2K2 Q3 2 4 1 A42 C2 Q4 4 6 1 Q24 R9R8 A42 7 9 7 9 D23 4148 47pF 4 RQ5 4 RQ6 CN17 R93 150R 1 2 TIP41C Q8 Q7 A92 1 1 C3 R120 CLIP R+ 100K R10 R11 R 3K3 D4 C5200 C5200 A42 A42 1 CN? 1N4004 C4 1K2 1 4
in „McCrypt PA 3000 modifizieren (Lüfter, Leistung,.)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RS232emp3.asm
"Messwert" OPTREG equ 01 ; Bank1 ; Konstanten tau equ 1F ; Konstante für Dauer eines Bit bei 9600 bd ; und 4 Mhz (104us) tau2 equ 0F ; Konstante fuer Dauer 1/2 Bit bei 9600 bd und ; 4 Mhz (52us) ; Ziele der Registeroperationen w equ 0 f equ 1 ; Makros bank0 macro bcf STAT,RP0 endm bank1 macro bsf STAT
in „PIC 10f322- Software soll Folge aus Nullen und Einsen erzeugen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nano_os_OPTs.txt
SREG, SP and R0...31) if (current) { TCNT0 = current->prio; 15a: 84 81 ldd r24, Z+4 ; 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
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Datei
bootloader_log.htm
ó 0E 94 70 00 83 95 F5 CF E8 E8 F1 E0 00 E0 01 8B . p. õÏèèñà.à. 00 8B 03 A3 02 A3 0A B9 0B B9 00 BD 03 E3 09 B9 . .£.£.¹.¹.½.ã.¹ 0E E8 00 BD 0B B1 03 7E 0B B9 08 E9 0A B9 78 94 .è.½.±.~.¹.é.¹x 08 95 AD 01 E8 E8 F1 E0 20 89 23 95 2F 70 11 89 . .èèñà # /p. 21 17 E9 F3 30 E0 DF 01 A2 0F B3 1F 0C 93 20
in „UART Bootloader ATtiny13 - ATmega644“ · Projekte & Code ·
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Datei
CrystalDiskinfo.txt
S1DBNSBF372314R Disk Size : 250,0 GB (8,4/137,4/250,0/250,0) Buffer Size : Unbekannt Queue Depth : 32 # of Sectors : 488397168 Rotation Rate : ---- (SSD) Interface : Serial ATA Major Version : ACS-2 Minor Version : ATA8-ACS version 4c Transfer Mode : SATA/600 | SATA/600 Power On Hours : 5356 Std. Power
in „Sicherungsfestplatten überprüfen“ · PC Hard- und Software ·
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Datei
crc32.c
#include "crc32.h" /**********************************************************************\ |* *| |* Demonstration program to compute the 32-bit CRC used as the frame *| |* check sequence in ADCCP (ANSI X3.66, also
in „CRC oder einfach die Daten doppelt schicken?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SMY202.HEX.txt
2026C000E024EA24FC241A2526252C25322538253A253C25422548254E2554256A2576258F :2026E000B225BC25E4256222162BD622EC22F2220C236D2B26232C23802B9C2BB82BE62B75 :20270000162C202C6E237823A423B423542CFA235024842C6A24702476248C249424A22CAE :20272000A62CAA2CA024B32CB72CBB2CBF2CC32CC72CCB2CCD2CCF2CD92CBE24C424E62CEB :20274000F624002522252A253025242D2C2D302D40253F2D4B2D592D712D762D7A25792DF3
in „[V] Rohde und Schwarz SMY02 9kHz-2.080Gh Signal Generator“ · Markt ·
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Datei
crc_m16.c
0xA5,0x2C,0xB7,0x3E,0xC9,0x40,0xDB,0x52,0xED,0x64, 0xFF,0x76,0x02,0x8B,0x10,0x99,0x26,0xAF,0x34,0xBD, 0x4A,0xC3,0x58,0xD1,0x6E,0xE7,0x7C,0xF5,0x83,0x0A, 0x91,0x18,0xA7,0x2E,0xB5,0x3C,0xCB,0x42,0xD9,0x50, 0xEF,0x66,0xFD,0x74,0x04,0x8D,0x16,0x9F,0x20,0xA9, 0x32,0xBB,0x4C,0xC5,0x5E,0xD7,0x68,0xE1,0x7A,
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PDF
VotraxEmuf.pdf
$3C,$12,$03 ;X-Z,[ 0E2B 3C 0E2C 12 0E2D 03 0E2E 3E .BYT $3E,$3E,$3E,$3E ;] 0E2F 3E 0E30 3E 0E31 3E 0E32 ; 0E32 ;============================ 0E32 ;TABELLE DER SONDERREGELN 0E32 ;BEI PHONEMEN 8.BIT GESETZT 0E32 TAB2 0E32 4549 .BYT 'EI',$88,$A9,'AI',$88,$A9 0E34 88 0E35 A9 0E36 4149 0E38 88 0E39 A9 0E3A
in „UAA1003 Geheimnis lüften“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0s922lq6p7gwsc2hhzx6z4e3pl3y.pdf
R▯JC − 5.0 − ⋅C/W 1. T to T = 0⋅ to +125⋅C, for LM317T, D2T. T to T = −40⋅ to +125⋅C, for LM317BT, BD2T, T to T = −55⋅ to +150⋅C, for low high low high low high NCV317BT, BD2T. 2. Imax= 1.5 A, max = 20 W 3. Load and line regulation are specified at constant junction temperature. ChaOges in V due to heating
in „LM317 Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
18F4550.h
GET_RTCC() // Constants used for SETUP_TIMER_0() are: #define T0_INTERNAL 0 #define T0_EXT_L_TO_H 32 #define T0_EXT_H_TO_L 48 #define T0_DIV_1 8 #define T0_DIV_2 0 #define T0_DIV_4 1 #define T0_DIV_8 2 #define T0_DIV_16 3 #define T0_DIV_32 4 #define T0_DIV_64 5 #define T0_DIV_128 6 #define T0_DIV_256
in „Unknown keyword in #FUSES "INTRC"“ · Mikrocontroller und Digitale Elektronik ·