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Datei
sine_values.txt
955 => x"7f4d8b36", 956 => x"7f52bfd3", 957 => x"7f57e0c4", 958 => x"7f5cee08", 959 => x"7f61e79d", 960 => x"7f66cd84", 961 => x"7f6b9fbc", 962 => x"7f705e43", 963 => x"7f75091a", 964 => x"7f79a03e", 965 => x"7f7e23b1", 966 => x"7f829370", 967 => x"7f86ef7c", 968 => x"7f8b37d3", 969 => x"7f8f6c75", 970
in „DDFS von Lothar Miller ich steh aufm Schlauch“ · FPGA, VHDL & Co. ·
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PDF
es51966.pdf
At 40KHz ~ 400MHz ranges, OL and UL are always ‘L’, but it’s overflow when the output counts is 40,960. 19 06/04/25 ES51966 4 3/4 and 5 3/4 A/D (Peak &Cap) At different range, the conversion time is different. At 40/400/4000Hz, the conversion time is according to the input frequency. At other ranges,
in „Multimeter UT71A - defekte Kapazitätsmessung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A020BL01.pdf
Function O 0XX Controlled by driver IC input pins : PSL0, PSe1 (Default) 101 640 * 240 (dots) U s 111 960 * 240 (dots) a l Note : “X“ is “0” or “1” rn te In te m a ro P o r F TRANSFORMED TO ANY OTHER FORMS WITHOUT PERMISSION FROM AU OPTRONICS CORP.ODUCED, COPIED, OR Version : 0.7 Page : 18/ 32 4 % S 5 S
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PDF
151130_atmel-9625-at42-qtouch-bsw-at42qt1085_datasheet.pdf
Cycle 5 V 3.3 V 2 V Current measurements µA 1a Free run (Actual: 9.1ms) 5380 1890 1025 1b 50 ms 3930 960 585 1c 100 ms 3735 840 500 1d 150 ms 3660 810 473 1e 200 ms 3615 790 455 1f 250 ms 3535 778 448 Config Cycle 5 V 3.3 V 2 V Current measurements µA 2a Free run (Actual: 20.3 ms5405 1896 1050 2b 50 ms
in „Atmel AT42QT1085“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcm1803.pdf
Oversampling Ratio = ×128. (2fS= 96 kHz, System Clock = 25S f , 0 Oversampling Ratio = ×64. (1) (2) 0 44.1 48 960 40 SAMPLE Condition − kHz G016 Figure 16. 10 Submit Documentation Feedback PCM1803 www.ti.com SLES125A–NOVEMBER 2004–REVISED AUGUST 2006 DEVICE INFORMATION SYSTEM CLOCK The PCM1803 supports 256 f ,
in „PCM1803 Audio ADC ewige Einschwingzeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcm1803.pdf
Oversampling Ratio = ×128. (2fS= 96 kHz, System Clock = 25S f , 0 Oversampling Ratio = ×64. (1) (2) 0 44.1 48 960 40 SAMPLE Condition − kHz G016 Figure 16. 10 Submit Documentation Feedback PCM1803 www.ti.com SLES125A–NOVEMBER 2004–REVISED AUGUST 2006 DEVICE INFORMATION SYSTEM CLOCK The PCM1803 supports 256 f ,
in „ADC (PCM1803) rauscht bei hoher Abtastrate“ · Mikrocontroller und Digitale Elektronik ·
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PDF
zukunft67.pdf
icklungen in der D D R In d er D D R w u rd e im V E B K eram isch e W erk e H erm sd o rf im J a h re I960 ein P ro g ram m K om plexm ikroelektronik in A n g riff genom m en. Im R ah m en dieses P ro g ram m s w erden sch rittw eise v erb esserte B au stein e geschaffen, die d ie E in fü h ru n g d er M
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max774-max776.pdf
_____+ _________________ 7 Kemet (803) 963-6300 (803) 963-6322 VIN C 7 Matsuo (714) 969-2491 (714) 960-6492 When evaluating this equation, be sure to use the capacitance value at the switching frequency. At X Nichicon (708) 843-7500 (708) 843-2798 A Sanyo Japan 81-7-2070-6306 81-7-2070-1174 200kHz, the
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
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Datei
tasse_tee_48.c
0x4000, 0x28A8, 0xA550, 0x3100, 0xFFF6, 0xEFFF, 0xB65F, 0x5BD1, 0x4586, 0x961B, 0x0A5C, 0x55B1, 0x960A, 0x586C, 0x5186, 0x1759, 0xE176, 0x7E06, 0x98CD, 0x6171, 0x0021, 0xD884, 0x617C, 0x85F7, 0x97CD, 0x2812, 0x4541, 0x173C, 0x8716, 0xA000, 0xDF9E, 0xA030, 0x42CB, 0x242E, 0x2689, 0x6394, 0x8822, 0x200B
in „RGB Bitmap im MCU in C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
10MHz_ocxo_8k_fft.txt
1314.15151234+953.158172722j) (-1303.45651433+957.508458568j) (-1373.75351594+869.217140487j) (-1324.41144639+960.070778264j) (-1293.79017223+986.059912999j) (-1304.87310412+973.943391404j) (-1326.64653561+889.979643681j) (-1276.11827321+991.823523977j) (-1253.91458324+833.556343049j) (-1275.34562237+1034.68936625j
in „ADC Board für Trenz Electronic FPGA Modul“ · Projekte & Code ·
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Datei
10MHz_siggen_8k_fft.txt
4288.18729266-671.983166712j) (-4280.41794786-1076.41778986j) (-4043.85472979-734.620576107j) (-4142.8928294-960.161400064j) (-4398.57645614-897.453010964j) (-4116.28164182-801.564779643j) (-4187.59213706-1037.89744502j) (-4294.88162537-1134.97058317j) (-4165.90788909-833.794910284j) (-4043.76657884-825.511228483j
in „ADC Board für Trenz Electronic FPGA Modul“ · Projekte & Code ·
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Datei
5MHz.txt
1888 2779 3518 3934 3928 3493 2725 1811 958 377 189 427 1039 1885 2776 3515 3932 3926 3492 2726 1812 960 380 190 428 1039 1884 2774 3513 3930 3925 3492 2727 1813 961 381 192 430 1040 1884 2773 3512 3930 3923 3493 2726 1814 960 379 190 428 1039 1886 2776 3514 3932 3928 3494 2723 1805 954 376 188 428 1041
in „ADC Board für Trenz Electronic FPGA Modul“ · Projekte & Code ·
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PDF
MAX1700-MAX1701.pdf
of 1.6A. However, it is generally acceptable to bias the inductor Matsuo USA: (714) 969-2491 (714) 960-6492 current into saturation by as much as 20%, although Motorola USA: (602) 303-5454 (602) 994-6430 this will slightly reduce efficiency. For high efficiency, USA: (619) 661-6835 (619) 661-1055 choose
in „5V Spannung aus Lipo?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACS758-Datasheet.pdf
Time Power-on Delay V CC I (20 A/div.) P VIOUT (0.5 V/div.) 9.034 μs V IOUT(1 V/div.) (P = 60 A DC) 3.960 μs t (2 μs/div.) t (2 μs/div.) Allegro MicroSystems, Inc. 14 Worcester, Massachusetts 01615-0036 U.S.A. 1.508.853.5000; www.allegromicro.com Thermally Enhanced, Fully Integrated, Hall Effect-Based ACS758xCB
in „Passender ADC für Dtrommessung mit ACS758“ · Mikrocontroller und Digitale Elektronik ·
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Datei
8Bit_ADC_94961s.txt
949 988 978 1029 1030 1006 1002 990 977 949 1038 1015 1020 981 986 1035 1017 1052 994 928 922 873 960 909 886 968 1013 1146 1099 1247 1245 1281 1364 1302 1271 1279 1304 1251 1194 1211 1182 1171 1158 1140 1092 1084 1023 952 906 879 794 784 730 722 733 692 648 676 652 699 731 658 673 705 735 690 726 704
in „Peakfläche über leicht verrauschter Nullinie bestimmen.“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
12Bit_ADC_17353s.txt
543 562 562 570 530 569 576 580 587 558 531 513 539 550 623 560 570 587 589 629 677 758 859 910 957 960 1035 1022 1039 987 855 821 762 757 772 684 634 665 555 578 545 577 538 556 604 579 546 541 574 604 549 567 571 570 537 580 530 558 539 582 511 556 537 562 519 552 517 532 582 572 568 567 534 513 533
in „Peakfläche über leicht verrauschter Nullinie bestimmen.“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
Disassember.txt
0 RAM:F95C .byte 0C0h ; + RAM:F95D .byte 0FEh ; ¦ RAM:F95E .byte 0FFh RAM:F95F .byte 82h ; é RAM:F960 .byte 0 RAM:F961 .byte 0 RAM:F962 .byte 0C0h ; + RAM:F963 .byte 0FEh ; ¦ RAM:F964 .byte 7Fh ; RAM:F965 .byte 83h ; â RAM:F966 .byte 0 RAM:F967 .byte 0 RAM:F968 .byte 0C0h ; + RAM:F969 .byte 0FEh ; ¦
in „Rund um den Abbott Freestyle Libre Blutzuckersensor als NFC-NFP-Logger“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dstat_cp_400GB_2_SSD_crlf.txt
| | 244M 1446M| | 242M 0 | | 242M 0 | | 250M 1197M| | 240M 16k| | 245M 2086M| | 249M 6363M| | 243M 960M| | 244M 0 | | 242M 20k| | 240M 224k| | 244M 0 | | 241M 0 | | 243M 0 | | 243M 1728k| | 243M 24k| | 243M 0 | | 237M 0 | | 242M 0 | | 241M 0 | | 241M 27M| | 250M 2996M| | 241M 0 | | 244M 0 | | 243M 0
in „USB3-to-SATA Adapter - Fake oder Treiber Problem?“ · PC Hard- und Software ·
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Datei
10MHz_siggen_8k.txt
3356 1789 364 316 1676 3268 3731 2653 961 131 875 2540 3697 3358 1789 363 316 1676 3269 3732 2652 960 128 872 2537 3696 3355 1785 361 314 1674 3270 3734 2655 961 129 874 2544 3700 3356 1790 364 313 1670 3266 3737 2664 972 130 866 2528 3692 3363 1799 372 316 1671 3264 3733 2659 970 133 873 2534 3693
in „ADC Board für Trenz Electronic FPGA Modul“ · Projekte & Code ·
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Datei
memory.vhd
955 => x"d813d1b8", 956 => x"97dd4960", 957 => x"a9d2b228", 958 => x"1f4d409a", 959 => x"21cf8e8c", 960 => x"95418441", 961 => x"e6f14fc2", 962 => x"eeb63d93", 963 => x"9186f475", 964 => x"e2c02f26", 965 => x"489cbb7c", 966 => x"edf1e26d", 967 => x"dfd709b3", 968 => x"13bd5d12", 969 => x"77dd048b", 970
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Datei
10MHz_siggen_8k.txt
3356 1789 364 316 1676 3268 3731 2653 961 131 875 2540 3697 3358 1789 363 316 1676 3269 3732 2652 960 128 872 2537 3696 3355 1785 361 314 1674 3270 3734 2655 961 129 874 2544 3700 3356 1790 364 313 1670 3266 3737 2664 972 130 866 2528 3692 3363 1799 372 316 1671 3264 3733 2659 970 133 873 2534 3693
in „ADC Board für Trenz Electronic FPGA Modul“ · Projekte & Code ·
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Datei
DDS.vhd
955 => x"715EE047", 956 => x"71638ABB", 957 => x"716823AE", 958 => x"716CAB20", 959 => x"7171210F", 960 => x"7175857C", 961 => x"7179D865", 962 => x"717E19CA", 963 => x"718249AA", 964 => x"71866804", 965 => x"718A74D8", 966 => x"718E7026", 967 => x"719259EC", 968 => x"7196322A", 969 => x"7199F8DF", 970
in „DDFS von Lothar Miller ich steh aufm Schlauch“ · FPGA, VHDL & Co. ·
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PDF
RFM12_Packet_asm.pdf
init 16 Bit Timer 1 for 4800 Hz output at OC1A pin 15 for tx-test or oscilloscope sync with baudrate 960 0Bd ;********************************************************************************************************* *** ldi TmpL,$C2 ; (1) fast PWM, Top=ICR, OC1A _/~ compare sts TCCR1A,TmpL ; (1) ldi TmpL
in „RFM12 - Empfangsstärke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACS758-Datasheet.pdf
Time Power-on Delay V CC I (20 A/div.) P VIOUT (0.5 V/div.) 9.034 µs V IOUT(1 V/div.) (P = 60 A DC) 3.960 µs t (2 µs/div.) t (2 µs/div.) Allegro MicroSystems, LLC 15 Worcester, Massachusetts 01615-0036 U.S.A. 1.508.853.5000; www.allegromicro.com Thermally Enhanced, Fully Integrated, Hall Effect-Based ACS758xCB
in „Stromsensor ACS758ECB-200U-PFF-T“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACS758-Datasheet.pdf
Time Power-on Delay V CC I (20 A/div.) P VIOUT (0.5 V/div.) 9.034 µs V IOUT(1 V/div.) (P = 60 A DC) 3.960 µs t (2 µs/div.) t (2 µs/div.) Allegro MicroSystems, LLC 15 Worcester, Massachusetts 01615-0036 U.S.A. 1.508.853.5000; www.allegromicro.com Thermally Enhanced, Fully Integrated, Hall Effect-Based ACS758xCB
in „Auslegen Tiefpassfilter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACS758-Datasheet.pdf
Time Power-on Delay V CC I (20 A/div.) P VIOUT (0.5 V/div.) 9.034 µs V IOUT(1 V/div.) (P = 60 A DC) 3.960 µs t (2 µs/div.) t (2 µs/div.) Allegro MicroSystems, LLC 15 Worcester, Massachusetts 01615-0036 U.S.A. 1.508.853.5000; www.allegromicro.com Thermally Enhanced, Fully Integrated, Hall Effect-Based ACS758xCB
in „Beispiel Anwendungen/Application zu ADCs - Abtastrate & Auflösung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
5521f.pdf
Return Loss vs Frequency The LO input pin is internally matched to 50 . It has an internal DC bias of 960mV. External AC coupling is re- For applications with LO and output frequencies below 1GHz, the M/A-COM MABAES0054 is recommended for quired.Figure12showsasimplifiedschematicoftheLO input. Overdriving
in „Anpassung Differenztialeingang LT5521“ · HF, Funk und Felder ·
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PDF
ACS758-Datasheet.pdf
Time Power-on Delay V CC I (20 A/div.) P VIOUT (0.5 V/div.) 9.034 μs V IOUT(1 V/div.) (P = 60 A DC) 3.960 μs t (2 μs/div.) t (2 μs/div.) Allegro MicroSystems, LLC 15 Worcester, Massachusetts 01615-0036 U.S.A. 1.508.853.5000; www.allegromicro.com Thermally Enhanced, Fully Integrated, Hall Effect-Based ACS758xCB
in „ACS 758 Strommessgenauigkeit“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD694AR.pdf
V 4 mA Off: Min Pin 9 Voltage 3.0 2.5 3.0 2.5 V VOLTAGE REFERENCE Output Voltage: 10 V Reference 9.960 10.000 10.040 9.980 10.000 10.020 V Output Voltage: 2 V Reference 1.992 2.000 2.008 1.996 2.000 2.004 V TMIN to TMAX4 30 50 20 30 ppm/°C vs. Load, REF= 2 V, 10 V 0.15 0.50 0.15 0.50 mV/mA vs. Supply
in „4-20mA für Durchlussregler erzeugen - AD694“ · Mikrocontroller und Digitale Elektronik ·
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PDF
503991-da-01-en-RELAIS_24V_5A_G2R_2.pdf
70% max. 70% max. 140% Approx. Approx. 12 VDC 70.6 170 50 240 (at 23°C) 850 600 24 VDC 34.6 694 25 960 Note 1. The rated current and coil resistance are measured at a coil temperature of 23°C with a tolerance of ±10%. 2.The operating characteristics are measured at a coil temperature of 23°C. 3.The “
in „Relais an Atmega, Kontrolle Bauteile“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DM6852HR_BDM610010026C.pdf
1 0 3A0 / (928) 0 1 0 1 1 2B0 / (688) 1 1 0 1 0 3B0 / (944) 1 1 0 1 1 2C0 / (704) 0 0 1 1 0 3C0 / (960) 0 0 1 1 1 1 0 1 1 0 1 0 1 1 1 2D0 / (720) 3D0 / (976) 2E0 / (736) 0 1 1 1 0 3E0 / (992) 0 1 1 1 1 1 1 1 1 0 1 1 1 1 1 2F0 / (752) 3F0 / (1008) 0 = NOT JUMPERED, 1 = JUMPER INSTALLED DM5852HR/DM6852HR
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PDF
zxld1366.pdf
05 LEDs 07 LEDs 09 LEDs 1.060 11 LEDs ) ( 13 LEDs t 15 LEDs e1.040 r C t1.020 t u O 1.000 0.980 0.960 0 10 20 30 40 50 60 Supply Voltage (V) ZXLD1366 Output Current Deviation 10% L=100μH 8% 6% ) ( n 4% i i 2% v D t 0% e r 01 LEDs C -2% t 03 LEDs p -4% 05 LEDs u 07 LEDs O -6% 09 LEDs 11 LEDs 13 LEDs
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PDF
Bedienungsanleitung_Alinco_DJ-X7E.pdf
469.995MHz) FM e e 475.750 (470.000~769.995MHz) WFM i 806.000 (770.000~959.995MHz) WFM n n 1295.000 (960.000~1299.995MHz) FM g ● Festlegen der Abstimmschrittweite (STEP) Die Abstimmschrittweite kann verändert werden. Sie können zwischen folgenden Schrittweiten wählen: Auto, 5, 6.25, 8.33, 10, 12.5, 15,
in „Empfehlung für Radio Scanner mit AM/FM Demodulation“ · HF, Funk und Felder ·
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PDF
DCC_Laborbooster.pdf
) = zwischenergebnis 957 Case 3, 6 'Schaltdekoder 958 If dcc_modus = 3 Then 959 hilfsvariable = 11 960 Else 'bei 6 961 hilfsvariable = 11 + 16 962 Endif 963 dcc_adresse.7 = 1 'zur Sicherheit Bit setzen 964 dcc_adresse.6 = 0 'zur Sicherheit Bit löschen 965 zwischenergebnis.0 = 1 '10. 1 966 zwischenergebnis
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PDF
bd7690fj-e.pdf
Protection 0.030× 0.040× 0.050× V HYS V Detection Voltage Hys VAMP VAMP VAMP VS Low Voltage 0.840× 0.900× 0.960× Gain Increase Voltage V GUP VAMP VAMP VAMP V [ CS Block ] CS Threshold Voltage Vcs 0.63 0.65 0.67 V Minimum Pulse H min - 400 700 ns CS> V cs Output Delay Tdelay - 150 300 ns [ OUT Block ] OUT H Voltage
in „Modulierung eines Hochsetzstellers mit PFC-Steuerung in PLECS – Hilfe bei Grundlagen der Steuerung g“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Strategies_for_bass_enhancement_in_Multiactuator_P.pdf
space-time wavenumber domain. J Audio Eng Soc 2007;55(12):1092–106. harmonic generator. US Patent No. 6,111,960; 2000. [18] de Vries D. Sound reinforcement by wave field synthesis: adaptation of the [31] Shashoua M. Method and system for enhancing quality of sound signals, US synthesis operator to the loudspeaker
in „WT2003H4 mit akzeptabler Soundqualität“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lg_lh-cx245_cx246_cx247_cx640__1_.pdf
-8505 957 4766RM0005A FELT Audio WF,FE-3500SW,470X7X1T BL 959 353M050C SCREW,DRAWING BH 3.5X16 FBK 960 3610RM0046A FOOT SPK LHS-D6245W OTHER FOOT RUBB 961 6871RU9271F LHS-D6230W SUB WOOFER 2.5M, OR PWB(PCB) ASSEMBLY,SUBSET(AUDIO 2-3 3. Woofer Section Speaker (LHS-CX246W) 956 959 955 959 953 961 952 960
in „Netzteil von LG LH-C360 defekt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
output.txt
Invalid opcode at 0x03be (958). Disassembler skipped two bytes. .word 0x0026 ; Invalid opcode at 0x03c0 (960). Disassembler skipped two bytes. 3c2: nop 3c4: nop 3c6: nop .word 0x0044 ; Invalid opcode at 0x03c8 (968). Disassembler skipped two bytes. .word 0x0069 ; Invalid opcode at 0x03ca (970). Disassembler
in „Atmega8 löst Timerinterrupt nicht aus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCA9626.pdf
= 25 mA 1. Find P totdevice total power dissipation): — output total power = 30 mA × 24 × 0.5 V = 960 mW — chip core power consumption = 18 mA × 5.5 V = 99 mW — SCL power dissipation = 25 mA 0.4 V = 10 mW — SDA power dissipation = 25 mA 0.4 V = 10 mW P tot (960 + 99 + 10 + 10) mW = 1079 mW 2. Find T
in „Probleme mit PCA9626 und I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
/GSM 1800 and GSM 850/GSM 1900 recommendation. The frequencies are : Q2406 • Rx (EGSM 900): 925 to 960 MHz Rx (GSM 1800): 1805 to 1880 MHz • Tx (EGSM 900): 880 to 915 MHz Tx (GSM 1800): 1710 to 1785 MHz Q2426 • Rx (EGSM 850) : 869 to 894 MHzRx (GSM 1900) : 1930 to 1990 MHz • Tx (EGSM 850) : 824 to 849
in „[Hinweis] Kostenlose Datenverbindung fürs Handy“ · Markt ·
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Datei
ArmRegisterBitAdder_tb.vhd
output_vec(958) := "01000"; input_vec(959) := "0001000110010100"; output_vec(959) := "00101"; input_vec(960) := "0100100000011000"; output_vec(960) := "00100"; input_vec(961) := "0011111001011100"; output_vec(961) := "01001"; input_vec(962) := "1000101101010101"; output_vec(962) := "01000"; input_vec(963)
in „Ausversehen Bit-Counter optimiert - Kann nicht erklären warum es funktioniert“ · FPGA, VHDL & Co. ·
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PDF
IL3829.pdf
VCOM -5820 -680 87 VSSGS -1020 -680 167 VGH 3780 -680 247 G66 5351 681.5 8 VCOM -5760 -680 88 VSSGS -960 -680 168 VGH 3840 -680 248 G68 5330 561.5 9 VCOM -5700 -680 89 VSSGS -900 -680 169 VGH 3900 -680 249 G70 5309 681.5 10 VSS -5640 -680 90 VSSGS -840 -680 170 VGH 3960 -680 250 G72 5288 561.5 11 PREVGL
in „IL3829 - E-Paper Display Treiber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XC4000.pdf
374 428 438 502 572 644 716 788 932 1,076 1,220 Program Data 31,628 45,636 53,936 62,204 81,332 94,960 119,792 147,504 178,096 247,920 329,264 422,128 PROM size (bits) 31,668 45,676 53,976 62,244 81,372 95,000 119,832 147,544 178,136 247,960 329,304 422,168 XC4000, 4000H: Bits per Frame = (10 x number
in „Xilinx XC4006“ · FPGA, VHDL & Co. ·
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PDF
MX25L6405D__3V__64Mb__v1.5.pdf
719 2CF000h 2CFFFFh 976 3D0000h 3D0FFFh . . . 975 3CF000h 3CFFFFh 44 . . . 704 2C0000h 2C0FFFh 60 960 3C0000h 3C0FFFh 703 2BF000h 2BFFFFh 959 3BF000h 3BFFFFh 43 . . . . . . 59 688 2B0000h 2B0FFFh 944 3B0000h 3B0FFFh 687 2AF000h 2AFFFFh . . . 943 3AF000h 3AFFFFh 42 58 . . . 672 2A0000h 2A0FFFh 928 3A0000h
in „FLASH Memory Chip im Lenovo X200 von 8 MB auf 16 MB vergroessern“ · PC Hard- und Software ·
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PDF
ks0066u.pdf
785 39 DB0 894 -1754 59 C13 1864 835 79 S24 -864 1754 20 S3 -1864 -910 40 DB1 1018 -1754 60 C14 1864 960 80 S23 -989 1754 KS0066U 16COM / 40SEG DRIVER & CONTROLLER FOR DOT MATRIX LCD PIN DESCRIPTION Table 2. Pin Description Pin Pin I/O Name Description Interface No. VDD 33 - Supply Voltage Supply Voltage
in „4x40 LCD Display ohne HD Controller ansteuern.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Compiler_out.txt
Number of MULT18X18s 4 out of 12 33% Number of Slices 1687 out of 1920 87% Number of SLICEMs 33 out of 960 3% Overall effort level (-ol): Standard Placer effort level (-pl): High Placer cost table entry (-t): 1 Router effort level (-rl): Standard Starting Placer Phase 1.1 Phase 1.1 (Checksum:98dad4) REAL
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PDF
KS0066_Samsung_553815_1.pdf
785 39 DB0 894 -1754 59 C13 1864 835 79 S24 -864 1754 20 S3 -1864 -910 40 DB1 1018 -1754 60 C14 1864 960 80 S23 -989 1754 KS0066U 16COM / 40SEG DRIVER & CONTROLLER FOR DOT MATRIX LCD PIN DESCRIPTION Table 2. Pin Description Pin Pin I/O Name Description Interface No. VDD 33 - Supply Voltage Supply Voltage
in „LCD unter Bascom, welches?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0066.pdf
785 39 DB0 894 -1754 59 C13 1864 835 79 S24 -864 1754 20 S3 -1864 -910 40 DB1 1018 -1754 60 C14 1864 960 80 S23 -989 1754 KS0066U 16COM / 40SEG DRIVER & CONTROLLER FOR DOT MATRIX LCD PIN DESCRIPTION Table 2. Pin Description Pin Pin I/O Name Description Interface No. VDD 33 - Supply Voltage Supply Voltage
in „[ AVR ] Probleme mit LCD-Display (KS0066)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0066u.pdf
785 39 DB0 894 -1754 59 C13 1864 835 79 S24 -864 1754 20 S3 -1864 -910 40 DB1 1018 -1754 60 C14 1864 960 80 S23 -989 1754 KS0066U 16COM / 40SEG DRIVER & CONTROLLER FOR DOT MATRIX LCD PIN DESCRIPTION Table 2. Pin Description Pin Pin I/O Name Description Interface No. VDD 33 - Supply Voltage Supply Voltage
in „LCD zeigt was falsches nach Reset; ATmega8 avrgcc“ · Mikrocontroller und Digitale Elektronik ·
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DS18B20.pdf
Capacitance CIN/OUT 25 pF NOTES: 1) Refer to timing diagrams in Figure 18. 2) Under parasite power, ifRSTL> 960μs, a power on reset may occur. TYPICAL PERFORMANCE CURVE Figure 17 DS18B20 Typical Error Curve 0.5 ) 0.4 ( 0.3 +3s Error o 0.2 E 0.1 t m 0 0 10 20 30 40 50 60 70 m-0.1 e-0.2 T-0.3 -0.4 Mean Error -0.5
in „Suche nach einem Temperatursensor“ · Mikrocontroller und Digitale Elektronik ·