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Datei
nibble_data.vhd
x"0AB" => data <=memory(10)(11 downto 8); when x"0AC" => data <=memory(10)(15 downto 12); when x"0AD" => data <=memory(10)(3 downto 0); when x"0AE" => data <=memory(10)(7 downto 4); when x"0AF" => data <=memory(14)(19 downto 16); when x"0B0" => data <=memory(14)(23 downto 20); when x"0B1" => data <=
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33120-90017.pdf
1821-0964 2 IC DRVR 8X S 20SOL 45V 250MA 01295 TPIC6595DW U303 1826-2793 1 IC DA VOUT SER 16SOL 16BIT AD1851R 24355 AD1851R U304 1821-0434 3 IC ANLG-MUXR/DEMUXR CMOS/HC 8-CHAN 18324 74HC4051D U305 1820-5790 1 ICSHF-RGTRCMOS/74HCSYNCHROSERIAL-IN 18324 74HC4094D U306-U307 1826-1622 4 IC OP AMP LOW-BIAS-H-IMPD
in „Projekt: DDS basierter Funktionsgenerator mit AD5930“ · Mikrocontroller und Digitale Elektronik ·
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825_1_.pdf
den Rationalisierungsprozess im Wähler-Parteien-Verhältnis in gewisser Weise umkehren und geradezu ad absurdum führen. 7 Die Bezeichnungen ökonomischer Ansatz, Rational-Choice-Theorie oder rationalistische 8heorie werden synonym verwandt. Brettschneider 2002a, Radunski 1980, Zaller 1992 Theorien des
in „Fachkräftemangel in Bayern“ · Ausbildung, Studium & Beruf ·
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wt8871.pdf
when conversion is done. 0 R/W 5 adc_clk ADC clock source. 0: 3MHz 50h 1: 1MHz 4 Reserved 0 R/W 3 en_ad[3] Enable channel 3 when it is set. 0 R/W 2 en_ad[2] Enable channel 2 when it is set. 0 R/W 1 en_ad[1] Enable channel 1 when it is set. 0 R/W 0 en_ad[0] Enable channel 0 when it is set. 51h 00h R 7:0 ad_chA[7:0] KPADC channel 0 data 52h 00h R 7:0 ad_chB[7:0] KPADC channel 1 data 53h 00h R 7:0 ad_chC[7:0] KPADC channel 2 data 54h 00h R 7:0 ad_chD[7:0] KPADC channel 3 data 55h 0 R/W 7 adc_big select ADC
in „LCD Display HT070I36-E00“ · Mikrocontroller und Digitale Elektronik ·
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Datei
neu-0513.asm
& manual == 0) then return movf H'014',w sublw H'23' btfss H'003',2 goto if_15706_by e_15712: ; 00AD movf H'017',f btfsc H'003',2 if_15706_th: ; 00AF ;; 267 : end if goto e_15700_readbutton_up if_15706_by: ; 00B0 ;; 268 : if pin_a0 == low then btfsc H'005',0 goto if_15722_by if_15722_th: ; 00B2 ;; 447
in „Jal compilieren“ · Mikrocontroller und Digitale Elektronik ·
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lg_flatron_l1800p_lb886f_ch_cl-29.pdf
R815 2 R516 C R718 R826 R831 0 4 2 C123 C513 C520 7 R534 8 C833 R729 R768 R761 R538 R535 R531 0 D R536 3 1 R146 C832 R539 3 R505 R154 R580 D C508 C519 1 R155 R564 4 C824 R537 C826 C830 C131 C506 D712 C827 R527 C505 R135 C504 C120 C829 C823 R526 D R513 7 R525 2 5 0 R512 C507 R713 R147 R138 R511 R137 R524
in „Überspannung in Mehrparteien-Wohunung. Baustrom, oder Kabel angebohrt?“ · Haus & Smart Home ·
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magnetic.pdf
reformulated as F{A + αδA} = 1 ν|∇ × A| dΩ + α ν(∇ × A) (∇ × δA)dΩ 2 Ω Ω 2 + α ν|∇ × δA| dΩ 2 Ω − J AdΩ − α J δAdΩ Ω 0 Ω 0 (2.205) − K AdΓ − α K δAdΓ ΓH ΓH + 1 ν(∇ A) dΩ + α ν(∇ A)(∇ δA)dΩ 2 Ω Ω 2 α 2 + 2 ν(∇ δA) dΩ. Ω This variation can be represented in Taylor series approximation as 2 2 F{A + αδA}
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M7000_US_2003.pdf
224 140 34 175 15 12 22 132S 216 58 260 140 37 180 18 14 30 132M 216 58 260 178 37 218 18 14 30 AC AD AG C H HH L LL O 63S 130 115 100 40 63 12 215 100 M20x1.5 63L 130 115 100 40 63 12 215 100 M20x1.5 71S 145 124 100 45 71 20 224 100 M20x1.5 71L 145 124 100 45 71 20 224 100 M20x1.5 80S 165 142 114 50
in „Frequenzumformer“ · Analoge Elektronik und Schaltungstechnik ·
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m48t08-150pc1.pdf
ripple-through access of The state of the eight three-state Data I/O signals data from eight of 65,536 locations in the static is controlled by E1, E2 and G. If the outputs are ac- storage array. Thus, the unique address specified tivated before AVQV , the data lines will be driven to by the 13 address
in „parallele SRAM Bausteine (nennt man das so ?) in Bascom“ · Mikrocontroller und Digitale Elektronik ·
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slau144j.pdf
ADC10 Operation ...................................................................................536.................. 22.2.1 10-Bit ADC Core ............................................................................536................ 22.2.2 ADC10 Inputs and Multiplexer .........................
in „MSP430 Gleitkommazahl in Flash speichern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
family_guide.pdf
ADC10 Operation ...................................................................................536.................. 22.2.1 10-Bit ADC Core ............................................................................536................ 22.2.2 ADC10 Inputs and Multiplexer .........................
in „MSP430 Output nur auf zwei von vier Pinnen möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
m_mops386a_p389m115.pdf
. MOPS/386A serial numbers always start with AD and are followed by 6 or 7 digits. The first digit represents the year of manufacturing, the next two digits stand for the lot of that year, and the last 3 or 4 digits are the number of the board in that lot. In the example above, the board with the serial number AD215125 was manufactured in year 2002, lot number 15 and it is the board number 125 of that lot. MOPS/386A User s Guide 45 Appendix B: BIOSOperation Kontron 21.2 Setup Guide The Phoenix BIOS Setup Utility
in „Kontron PC-104 MOPS386A board from Bender Unimet 1000 ST“ · Mikrocontroller und Digitale Elektronik ·
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PDF
64F3048F16-Hitachi.pdf
Increments or decrements the 0 to 3 memory address by 1 or 2 • Transmit-data-empty • Executes 1 to 65,536 transfers interrupt from SCI Idle mode channel 0 • Transfers one byte or one word • Receive-data-full 8 24 per request • Holds the memory address fixed interrupt from SCI • Executes 1 to 65,536 transfers
in „CPU Melkanlage auslesbar? 64F3059F16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
noisecan.pdf
as current splitters. Thus fluctuations in i comp applications, where the signal is well above the ad- split in exactly the same ratio as the dc, so the dif- ditive noise floor and must be measured precisely, ferential pair will not degrade the noise cancellation, noise intermodulation limits the measurement
in „OPA890 vs. OPA847 als Tranzimpedanzverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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foo.dwarf-3.txt
byte 0x5 .uleb128 0x1a3 .long .LASF456 .byte 0x5 .uleb128 0x1a8 .long .LASF457 .byte 0x5 .uleb128 0x1ad .long .LASF458 .byte 0x5 .uleb128 0x1b2 .long .LASF459 .byte 0x5 .uleb128 0x1bd .long .LASF460 .byte 0x5 .uleb128 0x1c2 .long .LASF461 .byte 0x5 .uleb128 0x1c7 .long .LASF462 .byte 0x5 .uleb128 0x1cc
in „Simple C Frage zum Typ enum“ · Mikrocontroller und Digitale Elektronik ·
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AT90CAN128.pdf
address and data bit 0) The alternate pin configuration is as follows: • AD7 – Port A, Bit 7 AD7, External memory interface address 7 and Data 7. • AD6 – Port A, Bit 6 AD6, External memory interface address 6 and Data 6. • AD5 – Port A, Bit 5 AD5, External memory interface address 5 and Data 5. • AD4 – Port A, Bit 4 AD4, External memory interface address 4 and Data 4. • AD3 – Port A, Bit 3 AD3, External memory interface address 3 and Data 3. • AD2 – Port A, Bit 2 AD2, External memory interface address
in „Umrechnen von analog to digital“ · Mikrocontroller und Digitale Elektronik ·
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Datei
abused_bootloder_disassembly.txt
???? aca: ff ff .word 0xffff ; ???? acc: ff ff .word 0xffff ; ???? ace: ff ff .word 0xffff ; ???? ad0: ff ff .word 0xffff ; ???? ad2: ff ff .word 0xffff ; ???? ad4: ff ff .word 0xffff ; ???? ad6: ff ff .word 0xffff ; ???? ad8: ff ff .word 0xffff ; ???? ada: ff ff .word 0xffff ; ???? adc: ff ff .word
in „ATmega-Bootloader vom Hauptprogramm aus flashen“ · Mikrocontroller und Digitale Elektronik ·
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oki-ml380_000.pdf
Zeichen laden Zeichen laden 27 61 1B 3D ESC = n n 35 n n 23 n n # 1 2 1 2 1 2 a 1 a2 3 a1a 2 3 a1a 2 3 m ad ad m ad ad m ad ad 1 2 1 2 1 2 id 1d 2 id 1d 2 id1id 2 d ... d d ... d d ... d 1 5 1 5 1 5 (Daten) (Daten) (Daten) Ladbare Zeichen in der IBM-Emulation selbst zu programmieren ist sehr aufwendig und
in „USB zu RS232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Porting_ucOSII_to_ARM.pdf
time by 402ns (for VPBDIV = 1) or 536ns (for VPBDIV = 0) to account for the LED pulsing overhead. 28 AR1803 May 10, 2006 Figure 3: LPC2138 maximum I/O toggle speed; 3.5MHz. The oscilliscope screen capture shows the waveform frequency, duty
in „uC/OS-II portieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
debug_error.asm
uint8_t iByte = (iEdge-5) / 2 / 8; // 5: first data edge, 2: edges per bit, 8: bits per byte 250: ad 2d mov r26, r13 252: b0 e0 ldi r27, 0x00 ; 0 254: fd 01 movw r30, r26 256: 35 97 sbiw r30, 0x05 ; 5 258: cf 01 movw r24, r30 25a: f7 fd sbrc r31, 7 25c: 0f 96 adiw r24, 0x0f ; 15 25e: 54 e0 ldi r21,
in „Fehler bei einfacher Integer-Division?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmega128_doc2467.pdf
F F F F F N C A A A A G A P P P P P P P P G V P P P 6 6 6 6 6 5 5 5 5 5 5 5 5 5 5 4 PEN 1 48 PA3 (AD3) RXD0/(PDI) PE0 2 47 PA4 (AD4) (TXD0/PDO) PE1 3 46 PA5 (AD5) (XCK0/AIN0) PE2 4 45 PA6 (AD6) (OC3A/AIN1) PE3 5 44 PA7 (AD7) (OC3B/INT4) PE4 6 43 PG2(ALE) (OC3C/INT5) PE5 7 42 PC7 (A15) (T3/INT6) PE6
in „ATMEGA128 Timer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
EMS_Adapter.xml
wGFJuIpHf+Hg97R7x+PLWqF4rfYuEYr3MX8XIFWeei31xBJGTFOuwhvX5acWQgiPFv4Aj38i8GU5i2cY9cZ7wOrAeWUL3mEzMyWYyt1zWeAdYJYGNLmjj8kHFE3YM+t4p/XKATL9+rjVj+nViCZsJFWC7j7oY7jgFtOgiuRX99ZBsW0VySFH7Qmbt15ppNjBljiwbhYL4agdg5UfeWW7B67U0e8ekljdWQh/BmnV7Hmr5vz5B/5k2QKHxuyquJTn3eIFtPiunvrJNxAz7w3F4Siv/Jbgy6Soy+z2XLBo4K7T1U0IQxhiZ
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Datei
EMS_Adapter.xml
wGFJuIpHf+Hg97R7x+PLWqF4rfYuEYr3MX8XIFWeei31xBJGTFOuwhvX5acWQgiPFv4Aj38i8GU5i2cY9cZ7wOrAeWUL3mEzMyWYyt1zWeAdYJYGNLmjj8kHFE3YM+t4p/XKATL9+rjVj+nViCZsJFWC7j7oY7jgFtOgiuRX99ZBsW0VySFH7Qmbt15ppNjBljiwbhYL4agdg5UfeWW7B67U0e8ekljdWQh/BmnV7Hmr5vz5B/5k2QKHxuyquJTn3eIFtPiunvrJNxAz7w3F4Siv/Jbgy6Soy+z2XLBo4K7T1U0IQxhiZ
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atmega2560_2561.pdf
P 100 99 98 97 96 95 94 93 92 91 90 89 88 87 86 85 84 83 82 81 80 79 78 77 76 (OC0B) PG5 1 75 PA3 (AD3) (RXD0/PCINT8) PE0 2 74 PA4 (AD4) (TXD0) PE1 3 INDEX CORNER 73 PA5 (AD5) (XCK0/AIN0) PE2 4 72 PA6 (AD6) (OC3A/AIN1) PE3 5 71 PA7 (AD7) (OC3B/INT4) PE4 6 70 PG2 (ALE) (OC3C/INT5) PE5 7 69 PJ6 (PCINT15
in „Ethernet Buchse“ · Mikrocontroller und Digitale Elektronik ·
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Datasheet_ATmega1281_doc2549.pdf
P 99 98 97 96 95 94 93 92 91 90 89 88 87 86 85 84 83 82 81 80 79 78 77 76 100 (OC0B) PG5 1 75 PA3 (AD3) (RXD0/PCINT8) PE0 2 74 PA4 (AD4) (TXD0) PE1 3 INDEX CORNER 73 PA5 (AD5) (XCK0/AIN0) PE2 4 72 PA6 (AD6) (OC3A/AIN1) PE3 5 71 PA7 (AD7) (OC3B/INT4) PE4 6 70 PG2 (ALE) (OC3C/INT5) PE5 7 69 PJ6 (PCINT15
in „LM73 über TWI/I2C mit Atmega1281 auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DevConfigSMLPE.txt
other.getStrNum()); } if (other.getReserve1() != 0) { setReserve1(other.getReserve1()); } if (other.getSmlpeAdVer() != 0) { setSmlpeAdVer(other.getSmlpeAdVer()); } if (other.getCmdInterval() != 0) { setCmdInterval(other.getCmdInterval()); } if (other.getHbsInterval() != 0) { setHbsInterval(other.getHbsInterval
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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lcd_manual.pdf
eratorRAMaddressoradisplaydataRAMaddress, before the execution of subsequent data read in- as determined by the most recently executed ad- structions if the same RAM is to be read. The dress set instruction. display is not shifted by the data read instruction. NOTE After the execution of the CG RAM/DD RAM data write instruction, the address
in „Fehler bei 4Bit LCD Init?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lcd-spec.pdf
eratorRAMaddressoradisplaydataRAMaddress, before the execution of subsequent data read in- as determined by the most recently executed ad- structions if the same RAM is to be read. The dress set instruction. display is not shifted by the data read instruction. NOTE After the execution of the CG RAM/DD RAM data write instruction, the address
in „LCD Tutorial“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lcd_manual.pdf
eratorRAMaddressoradisplaydataRAMaddress, before the execution of subsequent data read in- as determined by the most recently executed ad- structions if the same RAM is to be read. The dress set instruction. display is not shifted by the data read instruction. NOTE After the execution of the CG RAM/DD RAM data write instruction, the address
in „LCD will nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.txt
144: fe 84 ldd r15, Y+14 ; 0x0e 146: 0f 85 ldd r16, Y+15 ; 0x0f 148: 18 89 ldd r17, Y+16 ; 0x10 14a: ad 88 ldd r10, Y+21 ; 0x15 14c: be 88 ldd r11, Y+22 ; 0x16 14e: cf 88 ldd r12, Y+23 ; 0x17 150: d8 8c ldd r13, Y+24 ; 0x18 152: ea 14 cp r14, r10 154: fb 04 cpc r15, r11 156: 0c 05 cpc r16, r12 158: 1d
in „flash-Fehler mit ATtiny2313, compile ok“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EF28F008SA.pdf
1,048,576 bytes) of 8 bits each. Sixteen 64-Kbyte The RY/BY Ý output gives an additional indicator of (65,536 byte) blocks are included on the 28F008SA. WSM activity, providing capability for both hardware A memory map is shown in Figure 6 of this specifica- signal of status (versus software polling) and status
in „Wo ist der Pin1?“ · Mikrocontroller und Digitale Elektronik ·
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doc7593.pdf
A A A A G A P P P P P P P P G V P P P 6 6 6 6 6 5 5 5 5 5 5 5 5 5 5 4 (INT.6/AIN.0) PE6 1 48 PA3 (AD3) (INT.7/AIN.1/UVcon) PE7 2 47 PA4 (AD4) UVcc 3 INDEX CORNER 46 PA5 (AD5) D- 4 45 PA6 (AD6) D+ 5 44 PA7 (AD7) UGnd 6 43 PE2 (ALE/HWB) 7 UCap 42 PC7 (A15/IC.3/CLKO) VBus 8 ATmega32U6 41 PC6 (A14/OC.3A
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nibble_data.vhd
v1_o(55)(19 downto 16)); when x"1AC" => data <=std_Logic_vector( v1_o(55)(23 downto 20)); when x"1AD" => data <=std_Logic_vector( v1_o(55)(11 downto 8)); when x"1AE" => data <=std_Logic_vector( v1_o(55)(15 downto 12)); when x"1AF" => data <=std_Logic_vector( v1_o(55)(3 downto 0)); when x"1B0" => data
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1_AMD_BKDG_Family__15h_Mod_00h-0Fh_BKDG.pdf
53BC 53AF 5366 9153 F053 7853 5E53 2F53 BC53 AF53 6653 54 5400 0054 5454 542A 5415 54B2 54EE 5477 54AD 5483 5426 2A54 1554 B254 EE54 7754 AD54 8354 2654 55 5500 0055 5555 5592 5549 559C 5528 5514 5550 550A 55BB 9255 4955 9C55 2855 1455 5055 0A55 BB55 56 5600 0056 5656 562B 56AD 56EE 5613 56B1 5626 56E0
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ps42p3sx_ch._d58a.pdf
V P MCA8 E20 CS DQ29 1 T c A A4 ADQ(28) 9 6 1 I MCAD(0:7) MCAD(0) DQ28 B5 ADQ(27) 6 3 p 0 D 2 H19 AD0 DQ27 6 1 8 2 2 MCAD(1) AD1 DQ26 A5 ADQ(26) E 9 MCAD(2) J17 D7 ADQ(25) 6 5 4 3 2 1 G20 AD2 DQ25 O MCAD(3) AD3 DQ24 A6 ADQ(24) MCAD(4) G19 C7 ADQ(23) H18 AD4 DQ23 S MCAD(5) AD5 DQ22 A7 ADQ(22) MCAD(6) H17 D8 ADQ(21) O F20 AD6 DQ21 B6 MCAD(7) AD7 DQ20 ADQ(20) G17 C6 ADQ(19) U DQ19 C5 R DQ18 ADQ(18) N 0 C 0 / K 1 R1063 0 D6 ADQ(17) 0 1 6 6 0 R1064 0 F19 TEST DQ17 C4 A P D C X1 n 5 Q W 3 SCAN DQ16 ADQ(16) D R D D 9 - 0 F 5
in „Netzteil prüfen wie stelle ich das richtig an?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LG_L1733TR_L1933TR_Monitor_Service_manual.pdf
KDS2261.2V85V300MA2A4NS C535 0CK104CF56A 0603B104K160CT100nF10%16V D711 0DS226009AA KDS2261.2V85V300MA2A4NS C536 0CK104CF56A 0603B104K160CT100nF10%16V D712 0DSON00138A MMBD301LT1G600MV30V--1. C537 0CK104CF56A 0603B104K160CT100nF10%16V D713 0DD184009AA KDS184KDS184TPKEC-85V- C538 0CK104CF56A 0603B104K160CT100nF10%
in „Monitor TFT und Röhre Computer“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
disas.txt
add r0, r0 52e: 11 1c adc r1, r1 530: e5 fd sbrc r30, 5 532: 06 0c add r0, r6 534: 12 1c adc r1, r2 536: 00 0c add r0, r0 538: 11 1c adc r1, r1 53a: e4 fd sbrc r30, 4 53c: 06 0c add r0, r6 53e: 12 1c adc r1, r2 540: 00 0c add r0, r0 542: 11 1c adc r1, r1 544: e3 fd sbrc r30, 3 546: 06 0c add r0, r6 548
in „Audio Spektrum Analyzer mit ATtiny85“ · Projekte & Code ·
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PDF
harman_kardon_avr145_sm.pdf
J 1 R534 CRD20TJ221T RES , CARBON 220 OHM 1/5W J 1 R535 CRD20TJ221T RES , CARBON 220 OHM 1/5W J 1 R536 CRD20TJ221T RES , CARBON 220 OHM 1/5W J 1 R537 CRD20TJ221T RES , CARBON 220 OHM 1/5W J 1 R538 CRD20TJ221T RES , CARBON 220 OHM 1/5W J 1 R539 CRD20TJ221T RES , CARBON 220 OHM 1/5W J 1 R540 CRD20TJ221T
in „Relais beim AVR 145 von harman/kardon durch SSR ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SSD1351-Revision_1.5.pdf
455 SB86 -1743.00 681.25 535 SA113 -3743.00 681.25 376 SB61 243.00 681.25 456 SC86 -1768.00 681.25 536 SB113 -3768.00 681.25 377 SC61 218.00 681.25 457 SA87 -1793.00 681.25 537 SC113 -3793.00 681.25 378 SA62 193.00 681.25 458 SB87 -1818.00 681.25 538 SA114 -3818.00 681.25 379 SB62 168.00 681.25 459 SC87
in „OLED128x128 SSD1351 RGB Initialisierung Color Farbe bunt SPI 3.3V AVR ATmega8 ATmega328p Assembler“ · Projekte & Code ·
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PDF
R32C-152_Users_Manual.pdf
Register 5 AD05 00XXh 00038Bh 00038Ch A/D0 Register 6 AD06 00XXh 00038Dh 00038Eh A/D0 Register 7 AD07 00XXh 00038Fh 000390h 000391h 000392h A/D0 Control Register 4 AD0CON4 XXXX 00XXb 000393h A/D0 Control Register 5 AD0CON5 00h 000394h A/D0 Control Register 2 AD0CON2 X00X X000b 000395h A/D0 Control Register 3 AD0CON3 XXXX X000b 000396h A/D0 Control Register 0 AD0CON0 00h 000397h A/D0 Control Register 1 AD0CON1 00h
in „Keine UART Programmierung bei R32C möglich“ · Mikrocontroller und Digitale Elektronik ·
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PDF
user.manual.lpc17xx.pdf
9 P2[0]/PWM1[1]/TXD1 10 P2[1]/PWM1[2]/RXD1 11 - 12 - Row C 1 TCK/SWDCLK 2 TRST 3 TDI 4 P0[2]/TXD0/AD0[7] 5 P1[8]/ENET_CRS 6 P1[15]/ 7 P4[28]/RX_MCLK/ 8 P0[8]/I2STX_WS/ ENET_REF_CLK MAT2[0]/TXD3 MISO1/MAT2[2] 9 VSS 10 VDD(3V3) 11 - 12 - Row D 1 P0[24]/AD0[1]/ 2 P0[25]/AD0[2]/ 3 P0[26]/AD0[3]/ 4 n.c.
in „LPCxpresso 1769 I2C Takt einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LG4573A_DS_V1.1.5__1_.pdf
................................................................................19 5.1.1 Write/ Re ad Cycle Sequence...................................................................................19 5.2 MIPI DB I Type C ..............................................................................
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Datei
main.lss.txt
: 6a 81 ldd r22, Y+2 ; 0x02 532: 86 2f mov r24, r22 534: 09 95 icall clockWait(30); // wait 9,6 ms 536: 8e e1 ldi r24, 0x1E ; 30 538: bb dd rcall .-1162 ; 0xb0 <clockWait> return 0; } 53a: 80 e0 ldi r24, 0x00 ; 0 53c: 0f 90 pop r0 53e: 0f 90 pop r0 540: cf 91 pop r28 542: df 91 pop r29 544: 1f 91 pop
in „2 Programme in einem AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
24fc256.pdf
MSOP SOIC SOIJ TDFN TSSOP SOT-23 I-Temp. E-Temp. 24AA256 249 24AA256 4A256T 24AA256T 24AA256 EF6 EF5 4AD — 24LC256 — 24LC256 4L256T 24LC256T 24LC256 EF4 EF3 4LD — 24FC256 — 24FC256 4F256T 24FC256T 24FC256 EF8 — 4FD AAFKYY Legend: XX...X Part number or part number code T Temperature (I, E) Y Year code (last
in „Wodtke HP-S5 HP Er3 EEPROM Schreib-/Lesefehler“ · Haus & Smart Home ·
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PDF
pm2521ocr.pdf
. . . e e e e e e es OD bon 1.4.3.2. Time measurements 2... 0... 0. e c e e e e ee eee eee eee ee AD 1.4.3.3. Trigger measurements .. 0.0.00... c c c e e ee ee eee ee eee eee 40 : 1.4.4. Analog section (multifunction measurements) . . . . .00.600.0 e.ee0ee. ac.es Af : 1.4.4.1, R M S . convertor 2 .
in „Pjilips PM2519“ · Markt ·
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Datei
nano_os_OPT3.txt
02 lds r24, 0x0215 acc: 8f 5f subi r24, 0xFF ; 255 ace: 80 93 15 02 sts 0x0215, r24 SREG = sregsys; ad2: 80 91 0a 01 lds r24, 0x010A ad6: 8f bf out 0x3f, r24 ; 63 //* * //**************************************************** uint8_t queue_write_byte (Queue *qp, unsigned char message) { sregsys = SREG; ad8: 8f b7 in r24, 0x3f ; 63 ada: 80 93 0a 01 sts 0x010A, r24 cli(); ade: f8 94 cli uint8_t mlen = qp->number; ae0: 20 91 c9 01 lds r18, 0x01C9 if (mlen > (qp->queueDepth - 1) || qp->item_size != 1) ae4
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PDF
ST_7262.pdf
counter value stored in the CR register (bits initial value (ms) T[6:0]), is decremented every 65,536 machine cy- Max FFh 524.288 cles, and the length of the timeout period can be Min C0h 8.192 programmed by the user in 64 increments. Figure 30. Watchdog Block Diagram RESET WATCHDOG CONTROL REGISTER
in „Unteschiede I²C / SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slau144i.pdf
following fields: src The source operand defined by As and S-reg dst The destination operand defined by Ad and D-reg As The addressing bits responsible for the addressing mode used for the source (src) S-reg The working register used for the source (src) Ad The addressing bits responsible for the addressing
in „Anfängerprogramm TimerA MSP430“ · Mikrocontroller und Digitale Elektronik ·
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Datei
merged.lst
<A> --> <R0> 532: ; BIN10 BIN*10 --> BIN 533: ; LCD_SENDSTRING 534: ; OUT_CHAR_LCD 535: ; LCD_ADR8 536: ; LCD_CLEAR 537: ; LCD_ADR1 538: ; LCD_ADR8 539: ; OUT_LCD 540: ; WAIT_LCD 541: ; OUT_BYTE_LCD Ausgabe LCD 2 Byte ASCII 542: ; OUT_CHAR_LCD 543: ; OUT_WERT_LCD 544: ; OUT_CHAR_LCD 545: ; OUT_BYTE_LCD
in „8051 Assembler + Linker für WINDOWS 10/11“ · Mikrocontroller und Digitale Elektronik ·
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Datei
hrktar_main.lst
<R0> 532: 1 ; BIN10 BIN*10 --> BIN 533: 1 ; LCD_SENDSTRING 534: 1 ; OUT_CHAR_LCD 535: 1 ; LCD_ADR8 536: 1 ; LCD_CLEAR 537: 1 ; LCD_ADR1 538: 1 ; LCD_ADR8 539: 1 ; OUT_LCD 540: 1 ; WAIT_LCD 541: 1 ; OUT_BYTE_LCD Ausgabe LCD 2 Byte ASC 542: 1 ; OUT_CHAR_LCD 543: 1 ; OUT_WERT_LCD 544: 1 ; OUT_CHAR_LCD 545
in „8051 Assembler + Linker für WINDOWS 10/11“ · Mikrocontroller und Digitale Elektronik ·