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Snubber_Circuits_Theoryslup100__TI.pdf
lW US0945 = o-'V\f'v- ! I ~!- - +5V VM 68 R12 C9 ::LJ 250"VF 2WK 600VpF .Cll 4700"F 10V R2 Np COM 04 lN3613 +12V 2 R4 R3 IN3612 IN3612 VO"F 47K 20K '\IVv-t -'\IV\r--- ---0 tl2VCOM r&p-;-.1 13 I 2211F 3W 25V , VO"F R5 150K I -12V I~ ~~i UC3844 lcB -6BO600V R6:~ OI"F IOKr- D5 . ~Rll C6 IN3613.] ~ ~iZK
in „Flyback-Wandler Störungen auf Versorgung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MB1137.pdf
PC5 N0PC5 45P0U8A045 P0U8707 PC130PC13 SB173 Closed Usr_ButSR0BUT R59 P0B104 3 P0B103 PE50PE5 4P0U8B04 P0U89090 PG5N0PG5 RMII_RXD1P0RMII0RXD1 P0SB18101 P0SB18102 PC5 PC13 P0SB17301 P0SB17302 P0R5902 P0R5901 PE5 PG5 PC60PC6 96P0U8A096 P0U8A08 8 PC140PC14 330 USER (Blue) PE60PE6 5P0U8B05 P0U89191 PG6N0PG6
in „Suche Mikrocontroller mit 16Bit ADCs und DACs“ · Mikrocontroller und Digitale Elektronik ·
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Datei
irmp.c
KEY_MOUSE_2 : p = "KEY_MOUSE_2"; break; default : p = "<UNKNWON>"; break; } printf ("p=%2d (%s), a=0x%04x, c=0x%04x, f=0x%02x, asc=0x%02x, key=%s", irmp_data.protocol, irmp_protocol_names[irmp_data.protocol], irmp_data.address, irmp_data.command, irmp_data.flags, key, p); } else { printf ("p=%2d (%s), a=0x%04x, c=0x%04x, f=0x%02x, asc=0x%02x", irmp_data.protocol, irmp_protocol_names[irmp_data.protocol], irmp_data.address, irmp_data.command, irmp_data.flags, key); } } else { printf ("p=%2d (%s), a=0x%04x,
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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PDF
s3esk_authentication.pdf
it Computed CRC = 4F90 writes 256 bytes of data into the FLASH memory . Of these 2048 060000 1B 7B BC 1C 13 EC 0F 6A D3 26 F0 62 83 19 55 B1 bits only 16 are the real authentication CRC value. 060010 95 62 8B 8A 1E 9A 7A E8 52 11 BF 55 CD 57 39 1A 060020 D5 E9 E5 E2 28 4C 02 17 94 FF 9F 4F AC 47 B6 DF
in „Reverse Engineering verhindern/erschweren“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
LG4573A_DS_V1.1.5__1_.pdf
2 0 1 LR SELP HRS[1:0] REV 11h 1 VRS[7:0] D8h PANELDRV B3h 1 0 1 DINV 02h DISPMODE B4h 1 0 1 DITH 04h DISPCTL1 B5h 5 0 1 SDT[7:0] 10h 1 SHPN[6:0] 10h 1 ENGND[6:0] 10h 1 SHIZ[7:0] 00h 1 SLT 00h DISPCTL2 B6h 6 0 1 ASG SDM FHN 01h 1 CLW[7:0] 18h 1 GTO[5:0] 02h 1 GNO[7:0] 40h 1 FTI[7:0] 10h 1 GPM[7:0] 00h
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_Elmos__981_03.pdf
a time gap 0xB4 1011 0100 above t UART,IBG,RX5ms.) The 0xB8 1011 1000 frame length is between 2 0xBC 1011 1100 and 64 byte. the preceding data tel- acknowledge egram is busy acknowl- (BUSY) 0xC0 1100 0000 edged by any of the receiv- ing nodes.1) the preceding data tel- acknowledge egram is positive
in „Exposed Pad anschließen? (ATSAMD20E18A-MU und ELMOS E981.03)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1010.pdf
A0 D0 11 a 7 D1 01 5 A1 9 A1 D1 12 C 8 D2 02 6 A2 8 A2 D2 13 o 13 D3 03 9 A3 7 A3 D3 16 V m 14 D4 04 15 A5 5 A4 D4 17 DD p 17 D5 05 16 A6 4 A5 D5 18 R1 10k u 18 D6 06 19 A7 3 A6 D6 19 R2 10k e D7 107 25 A7 D7 r 24 A8 R3 10k 21 A10 R4 10k 23 A11 R5 10k E 2 A12 R6 10k m 26 A13 VSS R7 10k a 14 R8 10k o
in „Programm zum MC68HC11 auslesen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
reference_manual.pdf
(16-bit) or words (32-bit). 6.4.1 Backup data register x (BKP_DRx) (x = 1 ..42) Address offset: 0x04 to 0x28, 0x40 to 0xBC Reset value: 0x0000 0000 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 D[15:0] rw rw rw rw rw rw rw rw rw rw rw rw rw rw rw rw Bits 15:0 D[15:0] Backup data These bits can be written with
in „I2S zwischen STM32F103RET6 und PCM3168A möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
Frequency Configuration Register - Index 00h (Bank 0) Register Location: 00h Power on Default Value: 04h Attribute: Read/Write Size: 8 bits 7 6 5 4 3 2 1 0 PWM_SCALE1 PWM_CLK_SEL1 The register is meaningful only when SYSFANOUT is programmed for PWM output ( i.e., Bank0 Index 04h, bit 0 is 0). Bit 7: SYSFANOUT
in „(Windows/Winbond) CPU Temperatur auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAM-V71Q-SAM-V71N-SAM-V71J_Datasheet.pdf
FF FF 0xX10 CA FE CA FE 0xX0C 0xX0C FF FF FF FF CA FE CA FE 0xX08 FF FF FF FF 0xX08 CA FE CA FE 0xX04 FF FF FF FF 0xX04 CA FE CA FE 0xX00 FF FF FF FF 0xX00 Before programming: Unerased page in Flash arrayp 1: Flash array after page erase DE CA DE CA DE CA DE CA DE CA DE CA 0xX1C DE CA DE CA 0xX1C DE
in „Atmel SAMV71 CAN FD“ · Mikrocontroller und Digitale Elektronik ·
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kdnx901.pdf
data display DVD Error Error log of DVD. E-1 :****** E02 :****** E-2 :****** E03 :****** E-3 :****** E04 :****** E01 :****** E05 :****** DVD Error CDCH Error Error log of CDCH. E-1 :****** E02 :****** E-2 :****** E03 :****** E-3 :****** E04 :****** E01 :****** E05 :****** CDCH Error P-Mecha Error Error
in „Autoradio Reparieren JVC NX901“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet_SC_rev_C_full.pdf
assigned to individual controller models as follows: { SC-felix model 1 { SC-felix 24dxa0840-C00 JEF01-A10BC { SC-felix model 2 { SC-felix 24dxa1040-C00 JEF01-A10BC { SC-raptor model 1 { SC-raptor 24dxa0840-C00 JEF01-A10BC { SC-raptor model 2 { SC-raptor 24dxa1040-C00 JEF01-A10BC { SC-serpent model 1 { SC-serpent 24dxa0840-C00 JEF01-A10BC { SC-serpent model 2 { SC-serpent 24dxa1040-C00 JEF01-A10BC ▯ Other con▯guration { any non-standard con▯guration of the controller described in this datasheet. ▯ OEM solution { controller could be customized
in „UART mit Optokopplern galvanisch trennen bei unterschiedlichen Spannungen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pictures.c
0x4F, 0x4B, 0x8C, 0x3A, 0x6E, 0x5B, 0x7F, 0xBF, 0x5F, 0xBF, 0x9F, 0xBF, 0x7F, 0xBF, 0x1E, 0xB7, 0xBC, 0xAE, 0xBC, 0xAE, 0x3E, 0xB7, 0x9F, 0xBF, 0x5F, 0xBF, 0x3E, 0xB7, 0x3E, 0xB7, 0x3E, 0xB7, 0x3E, 0xB7, 0x3E, 0xB7, 0x3E, 0xB7, 0x1E, 0xB7, 0x9F, 0xDF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xDF, 0xF7,
in „stm32F103 bmp aus Flasch lesen“ · Mikrocontroller und Digitale Elektronik ·
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M12021PB_SM_PANASONIC_EN.pdf
40.8 9. 3 237.0 0 5 6.89 175.0 3.55 90.1 1.46 37.2 9.19 233.4 7.5° 6.87 174.5 3.58 90.9 1.32 33.5 9.04 229.7 ° 10 6.84 173.7 3.61 91.6 1.17 19.8 8.90 226.0 Sym Part Name t. Note g G) CRT 1 CRT FIXING METAL 1 LEFT @ @ CRT FIXING METAL 1 RIGHT @ CHASSIS FIXING METAL 1 ® PRINTED CIRCUIT BOARD STAY 1 SH0RT
in „CRT Monitor gegen VGA Monitor tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
M12021PB_SM_PANASONIC_EN.pdf
40.8 9. 3 237.0 0 5 6.89 175.0 3.55 90.1 1.46 37.2 9.19 233.4 7.5° 6.87 174.5 3.58 90.9 1.32 33.5 9.04 229.7 ° 10 6.84 173.7 3.61 91.6 1.17 19.8 8.90 226.0 Sym Part Name t. Note g G) CRT 1 CRT FIXING METAL 1 LEFT @ @ CRT FIXING METAL 1 RIGHT @ CHASSIS FIXING METAL 1 ® PRINTED CIRCUIT BOARD STAY 1 SH0RT
in „Heidenhain Monitor BE 212 für TNC 351“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IDE11.PDF
------- CPX Compare X to Memory 16-Bit IMM 8C jjkk 3 4 - - - - | | | | X - M:M+1 DIR 9C dd 2 5 EXT BC hhll 3 6 IX AC ff 2 6 IY CDAC ff 3 7 ------------------------------------------------------------------------------ CPY Compare Y to Memory 16-Bit IMM 188C jjkk 4 5 - - - - | | | | Y - M:M+1 DIR 189C dd 3 6 EXT 18BC hhll 4 7 IX 1AAC ff 3 7 IY 18AC ff 3 7 ------------------------------------------------------------------------------ DAA Decimal Adjust A -- 19 -- 1 2 - - - - | | | | Adjust Sum to BCD -------------
in „Programm zum MC68HC11 auslesen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
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SAM7-EX256.pdf
1 D 1 ( 5 N 8 % 7 J A E C C J 7 . / 7 9 8 2 7 9 C n N 1 1 V G 1 / 1 % R 4 3 2 2 1 2 2 24 0 1 V R R 04 T 1 9/ 8 1 2 3 P P P P P P P A 1 3 2 U N M R9 3 3 1 V O / L 3 R 3 B 1 0 5 R D 5 3 2 + + V V I A 3 3 R 3 B 1 V R 3 B 6 u . 3 2 0 2 6/ 0 K 1 I C 4 C 7 4 3 G - V 4 R 3 B + + N C _ A R V W / P D V 9 Section
in „SPI-Initialisierung von zwei Geräte über den gleichen Bus“ · Mikrocontroller und Digitale Elektronik ·
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Datei
irmp.c
KEY_MOUSE_2 : p = "KEY_MOUSE_2"; break; default : p = "<UNKNWON>"; break; } printf ("p=%2d (%s), a=0x%04x, c=0x%04x, f=0x%02x, asc=0x%02x, key=%s", irmp_data.protocol, irmp_protocol_names[irmp_data.protocol], irmp_data.address, irmp_data.command, irmp_data.flags, key, p); } else { printf ("p=%2d (%s), a=0x%04x, c=0x%04x, f=0x%02x, asc=0x%02x", irmp_data.protocol, irmp_protocol_names[irmp_data.protocol], irmp_data.address, irmp_data.command, irmp_data.flags, key); } } else { printf ("p=%2d (%s), a=0x%04x,
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
irmp.c
KEY_MOUSE_2 : p = "KEY_MOUSE_2"; break; default : p = "<UNKNWON>"; break; } printf ("p=%2d (%s), a=0x%04x, c=0x%04x, f=0x%02x, asc=0x%02x, key=%s", irmp_data.protocol, irmp_protocol_names[irmp_data.protocol], irmp_data.address, irmp_data.command, irmp_data.flags, key, p); } else { printf ("p=%2d (%s), a=0x%04x, c=0x%04x, f=0x%02x, asc=0x%02x", irmp_data.protocol, irmp_protocol_names[irmp_data.protocol], irmp_data.address, irmp_data.command, irmp_data.flags, key); } } else { printf ("p=%2d (%s), a=0x%04x,
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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PDF
en.CD00254735.pdf
Control voltage gain4) VVFF = 1 V, COMP = 4 V 0.4 V/V K FF Feedforward gain (3) VVFF = 1 V, COMP = 4 V 0.04 V/V Current sense comparator CS Input bias current VCS = 0 -1 µA tLEB Leading edge blanking 150 250 300 ns td Delay to output 100 ns (H-L) V = V , V = 0 V 0.92 1 1.08 COMP COMPHI VFF V Overcurrent setpoint
in „Flybackcontroller“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Atmel-8209-8-bit_AVR_ATmega16M1-32M1-64M1_Datasheet_1_.pdf
(2) x - - - n o d a t a - - - 500 75% 0.166666 12 5 3 3 1 0x02 0x08 0x25 0.250 8 3 2 2 1 0x04 0x04 0x13 250 75% 0.250 16 7 4 4 1 0x04 0x0C 0x37 0.500 8 3 2 2 1 0x0A 0x04 0x13 200 75% 0.250 20 8 6 5 1 0x04 0x0E 0x4B 0.416666 12 5 3 3 1 0x08 0x08 0x25 125 75% 0.500 16 7 4 4 1 0x0A 0x0C 0x37 1.000
in „Externer Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr-libc-user-manual.pdf
a8: 81 e0 ldi r24, 0x01 ; 1 aa: 8e bd out 0x2e, r24 ; 46 /* set PWM value to 0 */ OCR = 0; ac: 1b bc out 0x2b, r1 ; 43 ae: 1a bc out 0x2a, r1 ; 42 /* enable OC1 and PB2 as output */ DDROC = _BV (OC1); b0: 88 e0 ldi r24, 0x08 ; 8 b2: 87 bb out 0x17, r24 ; 23 extern inline void timer_enable_int (unsigned
in „C Tutorial gesucht“ · Mikrocontroller und Digitale Elektronik ·
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70622B.pdf
GCONREG FILCREG 0x10 0x01 DMODREG 0x11 PFCREG FDEVREG 0x12 0x02 SYNCREG 0x13 0x03 BRSREG RSTSREG 0x04 FLTHREG 0x14 RSVREG 0x05 FIFOCREG 0x15 OOKCREG 0x06 R1CREG 0x16 SYNCV31REG 0x07 P1CREG 0x17 SYNCV23REG 0x08 S1CREG 0x18 SYNCV15REG 0x09 R2CREG 0x19 SYNCV07REG 0x0A P2CREG 0x1A TXCONREG 0x0B S2CREG 0x1B
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PDF
70622B.pdf
GCONREG FILCREG 0x10 0x01 DMODREG 0x11 PFCREG FDEVREG 0x12 0x02 SYNCREG 0x13 0x03 BRSREG RSTSREG 0x04 FLTHREG 0x14 RSVREG 0x05 FIFOCREG 0x15 OOKCREG 0x06 R1CREG 0x16 SYNCV31REG 0x07 P1CREG 0x17 SYNCV23REG 0x08 S1CREG 0x18 SYNCV15REG 0x09 R2CREG 0x19 SYNCV07REG 0x0A P2CREG 0x1A TXCONREG 0x0B S2CREG 0x1B
in „Wie genau funktioniert die drahtlose Kommunikation?“ · HF, Funk und Felder ·
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Datei
irmp.c
KEY_MOUSE_2 : p = "KEY_MOUSE_2"; break; default : p = "<UNKNWON>"; break; } printf ("p = %2d, a = 0x%04x, c = 0x%04x, f = 0x%02x, asc = 0x%02x, key = %s\n", irmp_data.protocol, irmp_data.address, irmp_data.command, irmp_data.flags, key, p); } else { printf ("p = %2d, a = 0x%04x, c = 0x%04x, f = 0x%02x,
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
irmp.c
KEY_MOUSE_2 : p = "KEY_MOUSE_2"; break; default : p = "<UNKNWON>"; break; } printf ("p = %2d, a = 0x%04x, c = 0x%04x, f = 0x%02x, asc = 0x%02x, key = %s\n", irmp_data.protocol, irmp_data.address, irmp_data.command, irmp_data.flags, key, p); } else { printf ("p = %2d, a = 0x%04x, c = 0x%04x, f = 0x%02x,
in „ATmega resettet dauernd“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MT6252.pdf
1850 1 2.51,2 degrees PErms RMS phase error DCn1800i d 1 2.53,4 degrees k C o GSM8500 -70 -641,2 dBc d i a T e DCS1800 (RBW = 30 kHz bandwidth) -67 -643,4 dBc ORMS e Output modulation spectrum GSM8500 -755 dBc DCS1800 (RBW = 30 kHz _aWdwidth) X -755 dBc GSM8500 20 nHz Offset -165 -1645 dBc/Hz TX Tx noise in Rx band GSM900C e20 MHz Offset -165 -1645 dBc/Hz NOISE DCS1800 20 MHz Offset -160 -1565 dBc/Hz GSM8500 20 MHz Offset 1,2 -160 -11,2 dBc/Hz Pout Output power level DCS1800 RAload50 Ωamplifier. 1 3,4 3 63,4 dBm TXHARM Output 3 harmonics PCSALL0 PA
in „Amparos GPS Tacker - Pollin Schnäppchen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430g2553_controller.pdf
VREF = 1.5 VADC10CLK= 5 MHz CAL_ADC_GAIN_FACTOR 0x0002 word External VREF = 1.5 VADC10CLK= 5 MHz CAL_BC1_1MHZ 0x0009 byte - CAL_DCO_1MHZ 0x0008 byte - CAL_BC1_8MHZ 0x0007 byte - CAL_DCO_8MHZ 0x0006 byte - CAL_BC1_12MHZ 0x0005 byte - CAL_DCO_12MHZ 0x0004 byte - CAL_BC1_16MHZ 0x0003 byte - CAL_DCO_16MHZ
in „MSP430g2553 externe Taktquelle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430g2553_MIXED_SIGNAL_MICROCONTROLLER.pdf
VREF = 1.5 VADC10CLK= 5 MHz CAL_ADC_GAIN_FACTOR 0x0002 word External VREF = 1.5 VADC10CLK= 5 MHz CAL_BC1_1MHZ 0x0009 byte - CAL_DCO_1MHZ 0x0008 byte - CAL_BC1_8MHZ 0x0007 byte - CAL_DCO_8MHZ 0x0006 byte - CAL_BC1_12MHZ 0x0005 byte - CAL_DCO_12MHZ 0x0004 byte - CAL_BC1_16MHZ 0x0003 byte - CAL_DCO_16MHZ
in „LiPo-Akku+LowPower: 5V Controller oder Spannungswandler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
robot_asschlieszlich_c.map.txt
0x27c obj\release\src\arm\arm.o 0x08000540 find_intersections .text.pythagoras_adjacent_side 0x080007bc 0x58 obj\release\src\arm\arm.o 0x080007bc pythagoras_adjacent_side .text.interpoliere 0x08000814 0x2c obj\release\src\gamepad\gamepad.o 0x08000814 interpoliere .text.restrict_to_workspace 0x08000840
in „ROM-Auslastung von C++-Programm reduzieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BK2433Datasheetv1.0.pdf
132 BK2433 22.7.2 Analog Register The analog registers can be written through writing 0X8B8 to 0X8BC. Analog register data [31:0] = {0X8BB, 0X8Ba, 0X8B9, 0X8B8} Analog register address [7:0] = {0X8BC} Writing corresponding data and address into these serial registers can update the analog register value
in „Chinesische USB/nRF24L01 Adpapter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Modulkarte__2_11_07__Netzeinschub_regelbar.pdf
ückblech S c h u tz le ite rb u c h s e 03 b r K a ltg e r ä te b u c h s e S i 0,8A K altgerätebuchse1 04 b r S i 0,8A K a ltg e rä te b u c h sEIN/AUS - S c h a lte r K l. 1 05 b r EIN/AUS - S c h a lte r K l. 2 L e itu n g s v e rb in d e r 2 -p o l. 06 b l K a ltg e r ä te b u c h s e E in/A us - S c
in „suche Infos zu Trafo aus der KE-Ausbildung (Bundespost)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TDA8375.pdf
PAL/NTSC TDA837x family and NTSC TV-processors TDA8373 Valid subaddresses: 00 to 16 (subaddresses 04 to 07 are not used), subaddress FE is reserved for test purposes. Auto-increment mode available for subaddresses. Table 4Inputs SUB DATA BYTE FUNCTION ADDRESS D7 D6 D5 D4 D3 D2 D1 D0 Control 0 00 INA
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
foo.dwarf-3.txt
.LASF644 .byte 0 .section .debug_macro,"G",@progbits,wm4.stdfix.h.90.382e324486f4df61e2e9f00ebd4d7d04,comdat .Ldebug_macro3: .word 0x4 .byte 0 .byte 0x5 .uleb128 0x5a .long .LASF645 .byte 0x5 .uleb128 0x5b .long .LASF646 .byte 0x5 .uleb128 0x5c .long .LASF647 .byte 0x5 .uleb128 0x5e .long .LASF648 .byte
in „Simple C Frage zum Typ enum“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430F233TPM.pdf
1.5ADC12CLK = 5 MHz word 0x0002 CAL_ADC_GAIN_FACTOR External Vref = 1.5ADC12CLK = 5 MHz word 0x0000 CAL_BC1_1MHZ - byte 0x0007 CAL_DCO_1MHZ - byte 0x0006 CAL_BC1_8MHZ - byte 0x0005 CAL_DCO_8MHZ - byte 0x0004 CAL_BC1_12MHZ - byte 0x0003 CAL_DCO_12MHZ - byte 0x0002 CAL_BC1_16MHZ - byte 0x0001 CAL_DCO_16MHZ
in „MSP430 SPI A25L080 Flash“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tas5558-eight_channel_audio_processor_with_PWM_Output.pdf
CONTENTS DEFAULT STATE (hex) SUBADDRESS BYTES 0x01 1 General status register ID code for the TAS5558 04 0x02 1 Error status register CLIP and frame slip errors 00 PWM high pass, clock set, unmute 0x03 1 System control register 1 select, PSVC select B0 Automute, Shutdown, Line out, 03 0x04 1 System control
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M30201F6SP.pdf
1” BCLK : f(IN)/8 CM07 = “0” CM06 = “1” CM07 = “0” (Note 1) CM06 = “1” Main clock is oscillating CM04 = “0” CM04 = “1” CM04 = “0” Sub clock is oscillating (Notes 1, 3) Medium-speed mode High-speed mode (divided-by-2 mode) Main clock is oscillating BCLK : f(IN) BCLK : f(IN)/2 Sub clock is oscillating
in „Biete Mitsubishi / Renesas M30201F6SP aus der M16C60 Serie“ · Mikrocontroller und Digitale Elektronik ·
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Datei
8x8_horizontal_LSB_1.h
{0x36,0x7F,0x7F,0x7F,0x3E,0x1C,0x08,0x00}, // 0x03 {0x08,0x1C,0x3E,0x7F,0x3E,0x1C,0x08,0x00}, // 0x04 {0x1C,0x3E,0x1C,0x7F,0x7F,0x6B,0x08,0x1C}, // 0x05 {0x08,0x08,0x1C,0x3E,0x7F,0x3E,0x08,0x1C}, // 0x06 {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00}, // 0x07 {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00}, //
in „OLED Display mit SSD1327 Controller ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
8x8_horizontal_LSB_1.h
0x02 0x36,0x7F,0x7F,0x7F,0x3E,0x1C,0x08,0x00, // 0x03 0x08,0x1C,0x3E,0x7F,0x3E,0x1C,0x08,0x00, // 0x04 0x1C,0x3E,0x1C,0x7F,0x7F,0x6B,0x08,0x1C, // 0x05 0x08,0x08,0x1C,0x3E,0x7F,0x3E,0x08,0x1C, // 0x06 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, // 0x07 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, // 0x08 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00
in „LC 7981 Grafikdysplay Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ccpneu.c
ccpSend return value removed | - Transmission error handling should be done by the user | 2002-08-04 1.35.00 Za - #define CCP_CPUTYPE_32BIT | - Max checksum block size is DWORD on 32 bit CPUs | 2002-02-06 1.36.00 Za - #undef CCP_DAQ for drivers without DAQ fixed | - double - float conversion for SHORT_UPLOAD
in „XC16 Compiler Error“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Disketten_Info.pdf
Cylinder. Spuradresse im Controller und gelesene Spuradreßangabe (im ID-Feld) stimmen nicht überein. • BC = Bad Cylinder. Gelesene Spuradreßangabe (im ID-Feld) = FFH (kennzeichnet eine fehlerhafte Spur). • MD = Missing DataAddressMark.Eskonntekeine Adreßmarke (Data Address Mark oder Deleted Data Address
in „Floppy FDD Diskette an AVR Mikrocontroller ATmega Beispiele Assembler“ · Projekte & Code ·
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Diff_Ampl_AD8476-877860.pdf
V p-p −126 −126 dB HD3 f = 10 kHz, V = 2 V p-p −128 −128 dB OUT IMD3 f1=95kHz,f2=105kHz, −82 −82 dBc VOUT=2Vp-p Output Voltage Noise f = 0.1 Hz to 10 Hz 6 6 µV p-p Spectral Noise Density f = 10 kHz 39 39 nV/√Hz GAIN 1 1 V/V Gain Error RL= ∞ 0.02 0.04 % Gain Drift −40°C ≤ T ≤ +125°C 1 1 ppm/°C A Gain
in „5V Differentielles Signal erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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EKG_usw_Informationformedicalapplications_von_TI.pdf
dynamic-range sensor measurement REF3040 R9 • High-resolution data acquisition system 0.1 µF 150kΩ R1 R5 6.04kΩ 31.6kΩ V+ V– +5 V D1 V R2 R7 0.1 µF IN– 2.94kΩ 549Ω + + R1 INA326 VO R6 OPA335* V K-Type 200Ω O G = 2(R2/R1) Thermocouple VIN+ 40.7 µV˚ Zero Adj. R4 R3 0 V to 5.00 V R2 C2 6.04kΩ 60.4Ω (0˚C to 50˚
in „EKG Schaltung Neuling“ · Analoge Elektronik und Schaltungstechnik ·
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UserGuide_MSP430x2xx_slau144e.pdf
Address Register Space Space 0xxxxh 0xxxxh PC 0FF16h 0000h R10 0FA33h 0FF16h 0000h R10 0FA33h 0FF14h 04AEBh PC R11 002A7h 0FF14h 04AEBh R11 002A7h 0FF12h 0xxxxh 0FF12h 0xxxxh 0FA34h 0xxxxh 0FA34h 0xxxxh 0FA32h 05BC1h 0FA32h 05BC1h 0FA30h 0xxxxh 0FA30h 0xxxxh 002A8h 0xxh 002A8h 0xxh 002A7h 012h 002A7h 05Bh
in „Grundlagen UART: TX & RX Fehler“ · Mikrocontroller und Digitale Elektronik ·
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slau144i.pdf
Address Register Space Space 0xxxxh 0xxxxh PC 0FF16 0000h R10 0FA33h 0FF16h 0000h R10 0FA33h 0FF14h 04AEBh PC R11 002A7h 0FF14h 04AEBh R11 002A7h 0FF12h 0xxxxh 0FF12h 0xxxxh 0FA34h 0xxxxh 0FA34h 0xxxxh 0FA32h 05BC1h 0FA32h 05BC1h 0FA30h 0xxxxh 0FA30h 0xxxxh 002A8h 0xxh 002A8h 0xxh 002A7h 012h 002A7h 05Bh
in „Anfängerprogramm TimerA MSP430“ · Mikrocontroller und Digitale Elektronik ·
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I-BOTT.PDF
Table Index) Input Data) 0000 0000 = 00 Hex 0000 0010 = 02 Hex (00 H xor 02 H) = Table[2]= 1011 1100 = BC Hex = 188 Dec 02 Hex = 2 Dec 1011 1100 = BC Hex 0001 1100 = 1C Hex (BC H xor 1C H) = Table[160]= 1010 1111 = AF Hex = 175 Dec A0 Hex = 160 Dec 1010 1111 = AF Hex 1011 1000 = B8 Hex (AF H xor B8 H) =
in „Design eines hotplugfähigen I2C-Bussystems und Auswahl des Steckverbinders“ · Mikrocontroller und Digitale Elektronik ·
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6neds.pdf
"0" CM05="0" CM05="0" Mainclock is oscillating Mainclock is oscillating Mainclock is oscillating CM04="1" CM04="1" CM04="1" Subclock is oscillating Subclock is oscillating Subclock is oscillating CM20="0" CM20="0" CM21="0" Oscillationstopdetetion Oscillationstopdetetion Ringoscillator is stopped functionis
in „M16C- Key Input Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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sed1335.pdf
CSRW C = 46H P1 = 00H Set cursor to start of first screen block P2 = 00H 11 CSR FORM C = 5DH P1 = 04H CRX: Horizontal cursor size = 5 pixels P2 = 86H CRY: Vertical cursor size = 7 pixels CM: Block cursor 12 DISP ON/OFF C = 59H Display ON Display 13 CSR DIR C = 4CH Set cursor shift direction to right
in „Extrem schwere Frage“ · Mikrocontroller und Digitale Elektronik ·
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Wie_archiviert_ihr_Websites__-_Mikrocontroller.net.html
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TopAS21.vhd
-- 02 02 LIMITX Limit XHB,LB =FF,+/-20Grd X"35",-- 03 03 LIMITY Limit YHB,LB= FF,+/-20Grd X"11",-- 04 04 POSXY Y:bit 7..4 & "11"=7,X:bit3..0 & "11"=7 X"05",-- 05 05 VORINX VORSCH.INDX ANFAHREN = frq/(vorinX *2)+1 X"05",-- 06 06 VORINY X"00",-- 07 07 KACCX Beschleunigung Schleppfehlerkorrektur X"00",-