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behringer_nu3000.pdf
X18 7 2 D54 A IC23-A 2 R164 NC5 1 A 6 2 LM358M 1 3 3 NC2 1 3 3 C129 R188 0 C135 + 5 VOUT 4148 3 100p 470p 5 NC3 IC13-B R152 R159 4 6 2 6 7 100 10k C75 NC4 GND 5 LM358M 3 S2-B 100n 2P2T S1-B 4 G 2 R82 R75 6 4 SLIDE 2P3T D62 22k 47k - R87 R101 X17 5 MONO 8 k R70 1k5 150k A-CSD 1 1 4580 7 6 2 IC12-B STEREO 6 7 B-IN 4148 R86 C114 R 6 0 2.0 6P C72 47k 5 + 1u R88 1 1 C118 100n BRIDGE 5 T R 100n 4k7 C79 R95 S 10n +15V1 C78 IC19 1k LM431 R96 R100 R74 R81 100p 47k 100k 10k C148 +18V 100 100p 8 IC8 R189 LM358M C74
in „[S] Schematic Behringer NX3000“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ssd1803_2_0.pdf
. In case of 6-dot font width, when B1 = "1", enabled dots of P0-P5 will blink, and when B1 = "0" and B0 = "1", enabled dots of P5 will blink, when B1 = "0" and B0 = "0", blink will not happen. 2 "X": Don't care SSD1803 Rev 2.0 P 21/79 Feb
in „DIP203 LCD mit TMS320F28335 per SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schema-electrique-1395717-renkforce-rf2000-imprimante-3d-appareil-pret-a-lemploi-banc-dimpression-chauffant.pdf
PB0 19 SS 4.7uF/50V 1206 587-2994-1-ND D_RS PK1 88 PK1 (ADC9/PCINT17) (SCLK/PCINT1) PB1 20 PB1 SCK B C10 D_D5 PK2 87 PK2 (ADC10/PCINT18) (MOSI/PCINT2) PB2 21 PB2 MOSI B EEPROM 1 4.7uF/50V 1206 587-2994-1-ND D_E PK3 86 22 PB3 MISO P5V EEPROM 2 P5V TH4 PK4 85 PK3 (ADC11/PCINT19) (MISO/PCINT3) PB3 23 PB4
in „Spannungseinbruch nach Spule“ · Analoge Elektronik und Schaltungstechnik ·
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XLG-240.pdf
EN61347-2-13 independent, EN62384; GB19510.1,GB19510.14; EAC TPTC 004;IP67 approved WITHSTAND VOLTAGE I/P-O/P:3.75KVAC I/P-FG:2KVAC O/P-FG:1.5KVAC ISOLATION RESISTANCE I/P-O/P, I/P-FG, O/P-FG:100M Ohms / 500VDC / 25℃/ 70% RH Parameter Standard Test Level / Note Conducted EN55015(CISPR15) ----- EMC EMISSION
in „Meanwell XLG-240-H-AB mit ESP32 Dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Lenovo_Z50-70_NM-A273_ACLUA_MB_Rev0.3_schematic_.pdf
Pad_ct8p0b9p0d2p8 Pad_ct8p0b9p0d2p8 pad_shapet8p8x8p0cb9p0d2p8 pad_shapet8p8x8p0cb9p0d2p8 PAD_CT6P5B5P0D4P0 PAD_CT6P5B5P0D4P0 PAD_CT6P5B5P0D4P0 PAD_CT6P5B5P0D4P0 pad_ct6p0d4p3 Pad_ct6p0b8p0d4p6 l C a C HOLEA
in „Laptop defekt: Kommunikation EC - PCH - CPU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP738312.pdf
101 a 4.190 u 100 u 4.185 OUT= 100 mA C e e 99 R 4.180 a 98 r I = 450 mA h t 4.175 OUT C 97 a 4.170 B 0 0 0 0 0 0 0 0 0 0 0 0 0 96 - - - - 1 2 3 4 5 6 7 8 4.50 4.75 5.00 5.25 5.50 5.75 6.00 Ambient Temperature (°C) Supply Voltage (V) FIGURE 2-2: Battery Regulation Voltage FIGURE 2-5: Charge Current (
in „MCP73832 Beschaltung für die Auswertung mit µC“ · Mikrocontroller und Digitale Elektronik ·
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T302B_Brief_Release_v1.05.pdf
R _ K I U S P P _ C X T Y K Y ( 1 M _ _ _ _ _ _ _ _ _ P D C D B S S A A M P L _ # / F 1 2 2 B V B E _ W D F F F F F F F F _ / # / R R B D S A A D G I # / D 2 2 _ # Y C P 2 1 0 1 2 3 4 5 6 7 D L D S D 8 V V V V P P
in „Übersicht über preisgünstige elektronische Geräte für reverse-engineering“ · Mikrocontroller und Digitale Elektronik ·
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B82432C1472K000_TDK_Epcos_unpw.pdf
1) LR Tolerance fL Q min fQ IR R max fres,minOrdering code PH MHz MHz mA : MHz 1.0 r10% ^K 1 40 7.96 600 0.28 200 B82432C1102K000 1.2 1 40 7.96 560 0.32 160 B82432C1122K000 1.5 1 40 7.96 535 0.35 120 B82432C1152K000 1.8 1 40 7.96 490 0.41 100 B82432C1182K000 2.2 1 40 7.96 480 0.43 90 B82432C1222K000 2.7 1 40 7.96 450 0.49 75 B82432C1272K000 3.3 1 40 7.96 425 0.55 60 B82432C1332K000 3.9 1 40 7.96 410 0.59 50 B82432C1392K000 4.7 1 40 7.96 390 0.65 40 B82432C1472K000 5.6 1 40 7.96 375 0.71 40 B82432C1562K000 6.8
in „Pollin SMD-Induktivitäten identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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HX8352-A.pdf
TN T N NS E O O O E O L L ED 1 11 1 C I2 2 1 1 2 2M MD D D A A AU UD B S SO M X ME M S MS M S M6 M ER M S M S M O N M B B B B B B B B BEBB B B B B B B D DR WM F M N C IU E S S S S S S S S SE M E M E M S 2W W P P P P P P P E EO E OS O S OS S O TO T O AO A O OG T C C C R
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Datei
bootloader_v2.asm
SP ;$0B62 $69 $82 bra L0B82 ;$0B64 $20 $1C L0B66 ldab #$13 ;$0B66 $C6 $13 stab 2,SP ;$0B68 $6B $82 bra L0B82 ;$0B6A $20 $16 L0B6C ldy 0,SP ;$0B6C $ED $80 leay 2,Y ;$0B6E $19 $42 sty 0,SP ;$0B70 $6D $80 inc 3
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
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kap0-1.pdf
Kanalrauschens.......................................................................................82 4.3.2 Betrachtungen zum Detektor Model....................................................................................................84 4.3.2.1 Berechnungen einer äquivalenten Bitfehlerrate P e,
in „Kontaktlos Akkus laden“ · Offtopic ·
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NREL_SPA.pdf
3.2.5 Calculate L in degrees, Lðin radiansÞ 180 X1 ¼ 357:52772 þ 35999:050340 JCE Lðin degreesÞ ¼ p ; ð12Þ 2 JCE 3 where p is approximately equal to 3.1415926535898. 0:0001603 JCE 300000 : ð16Þ I. Reda, A. Andreas / Solar Energy 76 (2004) 577–589 581 Table 1 Earth periodic terms Term Row number A B
in „sun-tracking mit mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NREL_SPA.pdf
3.2.5 Calculate L in degrees, Lðin radiansÞ 180 X1 ¼ 357:52772 þ 35999:050340 JCE Lðin degreesÞ ¼ p ; ð12Þ 2 JCE 3 where p is approximately equal to 3.1415926535898. 0:0001603 JCE 300000 : ð16Þ I. Reda, A. Andreas / Solar Energy 76 (2004) 577–589 581 Table 1 Earth periodic terms Term Row number A B
in „Sonnenscheindauer Sensor selber bauen Eigenbau ATmega Assembler“ · Projekte & Code ·
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Datei
Daten.txt
L3 cache 8 MBytes, 64-way set associative, 64-byte line size FID/VID Control yes Min FID 7.0x # of P-States 7 P-State FID 0x17 - VID 0x0B - IDD 18 (19.50x - 1.412 V) P-State FID 0x14 - VID 0x0B - IDD 18 (18.00x - 1.412 V) P-State FID 0x11 - VID 0x16 - IDD 11 (16.50x - 1.275 V) P-State FID 0xE - VID
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oncilla_schaltplaene.pdf
R2014 D2001 5 330K , 1N4007 g C k C R2006 R2021 4K7 1W E1T 4K7 3 C2003 C2008 82pF 68pF R2012 15K +11.9V R2007 R2022 2K7 C2005 2K7 C2010 6.8nF 680pF R2008 R2023 1K 1K Erzeugung von Hilfsspannungen B B +300V R2043 68K 1W +156V R2042 68K 1W +11.9V R2041 5K6 C2016 0.47uF V2001C V2003C
in „Unbekannter Geräteeinschub (Impulszähler)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
gps-spec-IS_GPS_200J.pdf
BF44C35E949 3DECDF76407FFF921FA4515FAF512A586C2530BA5633B04C2F8CA 075 P 1t+48) 38CFFBE7562 111 P37t+48) AB1BE13E44C590CC08255280835311B5B8623EBCDC96C46B2958D 4F10D72C01B 112 P 1t+72) DEAB62046E05324EAD7498317CA46457BE5F06BC689EA4207AD66 250BA3A9F35 148 P (t+72) 0CA62C7F9AF1EB1B2AC2FE5D487E1D23555D6A5C21B1670B4AB20 37 5B7C8276C06 149 P 1t+96) 555CE90F7396574DF1632E26F61B55C70612A415035DE606C04BE 275F5AD9320 185 P37t+96) 29C54899D24E93AB9B1BC80D7DBF66422DF699452A35BD21DC0E3 195A38EB404
in „Magisches Auge für GPS-Empfänger“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Empfangen.c
(); RFM12B_SCK_LOW(); } void RFM12B_init_soft() { /* RFM12B_spi(0x80E7);//EL,EF,433band,12.0pF RFM12B_spi(0x82D9);//!er,!ebb,ET,ES,EX,!eb,!ew,DC //Empfänger // RFM12B_spi(0xA640);//434MHz RFM12B_spi(0xA76C); RFM12B_spi
in „RFM12b an Atmega168 - Empfangsprobleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BettyHHU.pdf
Resonanzvolumen LM4876M 76 P09/RXD1/PWM6/EINT3 P123/PIPESTAT2 82 PIPESTAT2 ICT31 C SC_PWR_EN 78 70 TRACECLK KBDI3 D2 T 6 K ICT24 P010/RTS1/CAP10 P124/TRACECLK SLE66C24PE_SO8 7 R 3 1 EN_SND 83 P011/CTS1/CAP11 P125/EXTIN0 60 EXTIN0
in „Innenleben von Betty TV“ · Mikrocontroller und Digitale Elektronik ·
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Datei
schedule.lst
80 93 d2 01 sts 0x01D2, r24 p->next = T_FREE; // mark as free 26a: 18 83 st Y, r17 if (p->period) 26c: 4b 81 ldd r20, Y+3 ; 0x03 26e: 5c 81 ldd r21, Y+4 ; 0x04 270: 41 15 cp r20, r1 272: 51 05 cpc r21, r1 274: 21 f0 breq .+8 ; 0x27e
in „Umgang mit globalen Datenstrukturen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
convert_macro.asm
.if _p<=@1 b _p,_c .set _p=_p+1 .set _c=_c+1 .endif .if _p<=@1 b _p,_c .set _p=_p+1 .set _c=_c+1 .endif .if _p<=@1 b _p,_c .set _p=_p+1 .set _c=_c+1 .endif .if _p<=@1 b _p,_c .set _p=_p+1 .set _c=_c+1 .endif .if _p<=@1 b _p,_c .set _p=_p+1 .set _c=_c+1 .endif .if _p<=@1 b _p,_c .set _p=_p+1 .set _c=_c+1 .endif .if _p<=@1 b _p,_c .set _p=_p+1 .set _c=_c+1 .endif .if _p<=@1 b _p,_c .set _p=_p+1 .set _c=_c+1 .endif
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Schematics.pdf
C 2 R94 4 n 8 n 3 n 7 n 1 n 5 n B 1 p C 4 C 3 C 2 C 1 C 1 C 6 24k 6 C 5 R64 R70 R75 R79 R83 R87 9 n 0 n 2 R96 R97 7 SSB-AUDIO 9 k 3 IC13A C 3 C 3 1 5 R 2 10k 10k 10k 10k 10k 10k 1 3 43k 43k IC14B R61 2 IC14A TLC272 AD706 TLC272 C94 22k
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Acrich2-Applicationnote.pdf
7 Acrich Acrich Acrich Acrich (-) 3 NN.C ) e NN.C 7 D11 D12 ( l . Acrich Acrich Stage2 Stage3 1 3 P l . 4V 5B 6N D13 D14 D15 D16 4 5 6 Acrich Acrich Acrich Acrich Stage4 1 2 D13 D14 Acrich Acrich No. of LED 21ea D17 D18 D19 Acrich Acrich Acrich Stage3 VP 1 VP D15 D16 (+) 1 Acrich Acrich D20 D21 (+)
in „Surge Schutzbeschaltung am Netz“ · Analoge Elektronik und Schaltungstechnik ·
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Nwavguy_O2_V11_Docs_30_Nov_2011.pdf
critical part as long as it will fit in the space) 4 470 uF 35v 10mm dia 16mm high 5mm LS REA471M1VBK-1016P Lelon C2, C3, C4, C5 0.28 1.12 140-REA471M1VBK1016P 4 Nichicon UVR1V471MPD1, Epcos B41827A7477M000, Panasonic, EEU-FR1V471B, ECA-1VM471B 2 220 uF 25v Low ESR 8mm dia x 15 mm high 3.5 mm LS UPW1E221MPD
in „Kopfhörer-Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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OV528_DS_1.3.pdf
Inc., 2002, version 1.0 Page 13 D ATASHEET Pin # Name I/O Function 92 Y[5] I Camera Y/C /b irput bit 5 93 DVDD Digital 3.3V power 94 Y[6] I Camera Y/C /b irput bit 6 95 GPIO1[6] I/O General purpose I/O port 0 bit 6 96 Y[7] I Camera Y/C /b irput bit 7 97 DVSS Digital ground 98 P0[0] I/O Internal
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Datenblatt_Baseband_Processeor_for_Multiband_GSM-GPRS_Application_Skyworks_CX805-30.pdf
output (600Ω load, 3dB in SCF and CTF) SNR/SDR at: dB 88/85 4Vp-p differential 2Vp-p differential 82/95 -10dBm differential 72/100 DAC to Speaker Driver output (150Ω load, 3dB in SCF and CTF, -6dB in dB speaker driver) SNR/SDR at: 2Vp-p 88/75 1Vp-p 82/80 -10dBm 72/83 Line Input to ADC (6dB in AAF) SNR/SDR at –10 dBm 80/95 dB Input Leakage Current (analog inputs) -10 10 µA Output Leakage Current (analog outputs) -10 10 µA 3-34 Conexant
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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PDF
DT-Tensio.pdf
2,0/1,5 mm measured value [mm] 2.30 2.20 300 0.20 2.10 400 0.46 2.00 500 0.66 550 0.74 1.90 ] 600 0.82 m 1.80 ] 650 0.89 [ 1.70 [ e n 700 0.96 l 1.60 s 750 1.02 v 1.50 e d t 800 1.07 r 1.40 k 850 1.13 u p a 1.30 s 900 1.18 e 1.20 / 950 1.23 m n / 1.10 n 1000 1.27 r n 1050 1.32 e 1.00 p 1100 1.36 s 0.90
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TL783.pdf
O J TL783Y PARAMETER TEST CONDITIONS † UNIT MIN TYP MAX Input voltage regulation VI–V O20Vto125V, P rated dissipation 0.001 %/V Ripple rejection V = 10 V, V = 10 V, f = 120 Hz 76 dB I(PP) O VO 5 V 7.5 mV IO = 15 mA to 700 mA Output voltage regulation VO ↓ 5 V 0.15% V 5 V 20 mV IO = 15 mA to 700
in „LM337 mit Zenerdiode hochlegen ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCF1252_X_FAM_3.pdf
-X family PACKAGE OUTLINES DIP8: plastic dual in-line package; 8 leads (300 mil) SOT97-1 D M E n l p i a A s 2 A A 1 L c Z w M b 1 e (1 ) MH b b 8 5 2 pin 1 index E 1 4 0 5 10 mm scale DIMENSIONS (inch dimensions are derived from the original mm dimensions) UNIT A A1 A2 b b b c D (1) E(1) e e L M M
in „Tipsend2 Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Datei
register.txt
Read register 9: 0x24 -> Factory 0x24 Read register 10: 0x35 -> Factory 0x35 Read register 11: 0x88 0b 1000 1000 -> SPI clock speed up to 31.25MHz Read register 12: 0x50 0b 0101 0000 -> IEE802.1p mapping Read register 13: 0xFA -> IEE802.1p mapping Read register 14: 0x47 0b 0100 0111 -> Do not send packages
in „ESP32 IDFv3 Ethernet-Phy KSZ8863 funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Petra-M10_Einblick_offen.html
p=!0;d.addEventListener(b,g,p)}else d.attachEvent&&("focus"==b?b="focusin":"blur"==b&&(b="focusout"),g=ba(d,g),d.attachEvent("on"+b,g));return{m:b,l:g,capture:p}}},N=function(a,c){if(!a.j.hasOwnProperty
in „Lampentaster gesucht“ · Markt ·
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Datei
glcd.h
8, 62, 8, 8}, /*+*/ {0, 0, 0, 0, 80, 48, 0, 0}, /*,*/ {0, 0, 0, 8, 8, 8, 8, 8}, /*-*/ {0, 0, 0, 0, 96, 96, 0, 0}, /*.*/ {0, 0, 0, 32, 16, 8, 4, 2}, /*//*/ {0, 0, 0, 62, 81, 73, 69, 62}, /*0*/ {0, 0, 0, 0, 66,127, 64, 0}, /*1*/ {0, 0, 0, 66, 97, 81, 73, 70}, /*2*/ {0, 0, 0, 33, 65, 69, 75, 49}, /*3*/
in „C18 Bibliothek erstellen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm12.c
= 0; RFM12_status.Tx = 0; RFM12_status.New = 0; RFM12_config(); /* RFM12_trans(0x80D7);//EL,EF,11.5pF RFM12_trans(0x82D9);//!er,!ebb,ET,ES,EX,!eb,!ew,DC RFM12_trans(0xA640);//434MHz RFM12_trans(0xC647);//4.8kbps RFM12_trans(0x94A0);//VDI,FAST,134kHz,0dBm,-103dBm RFM12_trans(0xC2AC);//AL,!ml,DIG,DQD4
in „RFM12 zuckt nicht ein bisschen.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
715G7312_PSU.pdf
25V HEAT SINK D Z U 3 9 1 C . R 3 R9156 5 H 470UF 25V FB Z B S R K 0 3 1.8K 1/4W 1 O 1 A . 4 % 8 K R 5 1 1 1 1 0 FB R W 2 Q 7 C9309 R9301 R9303 V / N C9304 C9311 1.96KOHM +-1% 1/8W 6 5 1 ZD9109 2 V 0 8 1uF 1 F + 0 7 0 1 1 5.1KR 1% 100NF 50V 220PF 9 U 2 BZT52-B16
in „Phillips 55PUS6561/12 keine Hintergrundbeleuchtung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
atxmega128_board-sch1.pdf
3V3 3V3 1N4004 D2 SW_1 SW_2 SW_3 SW_4 D 3301 3301 3301 3301 G R 2 3 1 3 1 3 1 3 1 B1 W 1 4 2 4 2 4 2 4 2 XIN-1 P 2 0 0 0 0 0 0 0 0 1 0 E P 2 2 I5 2 I 2 I 2 I 2I9 2 I1 2 I 2 I GND RECTIFIER-DIL C31 + C17 C15 L K R 1 1 1 1 1 1 1 1 11R 1 1 1 1 1 1 GND GND XIN-2 82 7 2 6 2 5 2 42 32 2 2
in „ATxmega-Experimentierplatine in Gold/Schwarz ab 12.04.10 eventuell Bausatz“ · Markt ·
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Datei
block-cordic.asm
.map cnt/A3 .map m1/A18 .map m1'/B4 .map xyPtrB/B8 .map blocks/A1 .map blocks'/B6 .map shftA/A16 .map shftB/B27 .map pA/A5 .map pB/B7 .map rA/A5 .map rA'/A4 .map rB/B6 .map rB'/B7 .map maPtrB/B5 .map coefPtr/A2 .map coefPtr'/A4 .map maPtr
in „TMS320 - welche Bedeutung hat der DSP heute noch“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
rf__0_4_schem.pdf
2B4 P I U 2 0 1 3 P I U 1 0 5 P I U 1 0 1 2 81CO8 L101 0 C161 P I U 2 0 5 P I U 2 0 1 2 1B2 2B3 L2L 820 1uH 820 1B2 2B3 P I U 1 0 6 P I U 1 0 1 1 1uH 82 2 P I U 2 0 6 P I U 2 0 1 1 1B1 2B2 GND 1B1 2B2 B
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scc1300_d02_datasheet-extensive-v1.0.4.pdf
(°/s)/g Shock sensitivity 50g, 6ms 2.0 °/s Shock recovery time 50.0 ms Amplitude response -3dB frequency 50 Hz Quantization 0.05 °/s Power on setup time 0.8 s Output data rate 2 kHz Output load 200 pF SPI clock rate 0.1 8 MHz A) MIN/MAX values are ±3 sigma variation limits from validation test
in „SCC1300 Gyrosensor auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S1D15605.pdf
D ( P E 7 ( D D D D D D R R R D 6 W D Rev. 2.4a EPSON 8–3 S1D15605 Series 4. PAD Pad Layout 99 1 100 309 D S1D15605 Series 5 Die No. D B (0, 0) 134 275 135 274 Chip Size 10.82 mm × 2.81 mm Chip Thickness 0.625
in „Pollin Grafik LCD-Modul OPTREX F-51320AE“ · Mikrocontroller und Digitale Elektronik ·
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PDF
littelfuse-PTC-Rline-Catalog.pdf
= RHEF300 O = RHEF1000 B F = RHEF400 P = RHEF1100 A ) G = RHEF450 Q = RHEF1300 ( 10 r H = RHEF550 R = RHEF1400 o S - R I = RHEF600 S = RHEF1500 m 1 P Q J = RHEF650 T O N ML K 0.1 J I H G 0.01 10 A B C D E 100 Fault Current (
in „Batteriehalter mit unbekannten Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
emul.c
; case 0x4c: if(!(K )) { P=P+b+1; zeit++; } continue; case 0x4d: if( K ) { P=P+b+1; zeit++; } continue; case 0x4e: if(!(K )) { P=P-b-3; zeit++; } continue; case 0x4f: if( K ) { P=P-b-3; zeit++; } continue; case 0x50: P=P+b+1; zeit++; continue; case 0x51: R=P; P=P+b+1; zeit++; continue; case 0x52: P=P-b-3; zeit++; continue; case 0x53: if(S[0]) { S[0]--; P=P-b-3; zeit++; } continue; }} if(b==255) { P++; Q=P; R=K; K=Q; P=R; M[0]=N[0]; N[0]=i; continue; } b=
in „Befehlssatz der bo8-CPU - was ist gut, was ist schlecht“ · Offtopic ·
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Datei
DC_3840EEprom_cut.lst
A3 inc dptr 0B81 F0 movx @dptr, a 0B82 15 82 dec DPL 0B84 F0 movx @dptr, a 0B85 A3 inc dptr 0B86 74 2C mov a, #2Ch ; 44d = ',' 0B88 F0 movx @dptr, a 0B89 15 82 dec DPL 0B8B 74 01 mov a, #01h ; 1d 0B8D F0 movx @dptr, a 0B8E A3 inc dptr 0B8F 74 2C mov a, #2Ch ; 44d = ',' 0B91 F0 movx @dptr, a 0B92 15 82 dec DPL 0B94 E4 clr a 0B95 F0 movx @dptr, a 0B96 A3 inc dptr 0B97 F0 movx @dptr, a 0B98 22 ret 0B99 C2 05 clr 20h.5 0B9B
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Datei
AT89C51RE2.h
ACC ; __sfr __at (0xF0) B ; __sfr __at (0xF8) P6 ; // TxD_1 (P6.1), RxD_1 (P6.0) /* BIT Register */ /* P0 */ __sbit __at (0x80) P0_0 ; __sbit __at (0x81) P0_1 ; __sbit __at (0x82) P0_2 ; __sbit __at (0x83) P0_3 ; __sbit __at
in „Include-File für AT89c51RE2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tas5504.pdf
− o SDIN3 r Det BiquadsTone Vol Comp DRC r Block Emph late SRC NS PWM t PWM_P_2 SDIN4 b b o PWM_M_2 s s C Serial o r r r u SDA n n C 0 7 Soft Soft Loud C DC De− Interpo− t PWM_P_3 SCL Control o C 4 Det BiquadsTone Vol Comp DRC 2 Block Emph late SRC NS PWM O PWM_M_3 I/F C P X X
in „[V] diverse Bauteile (Fets, BMS-ICs, Motor-Treiber“ · Markt ·
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VARO_VSK231.pdf
232 UNITS Maximum Instantaneous Forward VoltageDrop per 25°C 175°C diode 0.74 0.6 lF=30 Amps 0.92 0.82 Volts lF=60 Amps Maximum Instantaneous Reverse Currentperdiode 10 lF=25°C 25 mA lF= 125°C I =150°C 50 JunctionCapacitance V =5V R 2000 pF TypicalReverse Recovery Time :1A.T„ .125°C,75% 50 n-sec Recovery Rate ofChange (PIVvsTime) = dv/dt 2000 V/(xs VD max Maximum RepetitivePeak Reverse Current 20 p.secpulse f=2KHz Amps LTR. INCHES MILLIMETERS HH A .7Dia 18.29 B .323— .342 8.20— 8.69 C .4Mm 10.16 D .038— .043Dia .97— 1.09 E 1.180—1.194 29.97— 30.33 F .665— .675 16.89—17.15 G .426— .440 10.82— 11.18
in „Ersatz für obsolete Schottky Gleichrichterdiode VARO VSK231 verifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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CS4272.pdf
Parameter Symbol Min Typ Max Unit Single Speed Mode Fs = 48kHz Dynamic Range A-weighted 108 114 - dB unweighted 105 111 - dB Total Harmonic Distortion + Noise (Note 13) THD+N -1 dB - -100 -94 dB -20 dB - -91 - dB -60 dB - -51 - dB Double Speed Mode Fs = 96kHz Dynamic Range A-weighted 108 114 - dB unweighted
in „was ist "ATAPI channel mixing" Warum kein Ausgangssignal?“ · Mikrocontroller und Digitale Elektronik ·
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tmp95fy64f.pdf
D3 BOOT/P30/A8 79 79 47 47 P02/D2 P47/A7 80 80 46 46 P01/D1 P46/A6 81 81 45 45 P00/D0 P45/A5 82 82 44 44 VCC P44/A4 83 83 43 43 P96/TOA/TOB P43/A3 84 84 42 42 P95/TIB/INT8 P42/A2 85 85 41 41 P94/TIA/INT7 P41/A1
in „[S] Tools für TMP95FY64F von Toshiba“ · Mikrocontroller und Digitale Elektronik ·
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CS4272_F1.pdf
(Note 11) Fs = 32 kHz - - ±0.23 dB (Relative to 1kHz) Fs = 44.1 kHz - - ±0.14 dB Fs = 48 kHz - - ±0.09 dB Double Speed Mode - 96 kHz Passband (Note 9) to -0.01 dB corner 0 - .430 Fs to -3 dB corner 0 - .499 Fs Frequency Response 10 Hz
in „darf der Chip so warm werden?“ · Mikrocontroller und Digitale Elektronik ·
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Sp3A-DSP-1800A-Starter-Schematic-Rev1.pdf
_DIFF_n5 EXP1_DIFF_n20 IO_L37n_0 A8 EXP1_DIFF_p6 EXP1_DIFF_n21 IO_L38p_0 EXP1_DIFF_n6 IO_L38n_0 B8 IO_L39p_0 J12 EXP1_DIFF_p9 IO_L39n_0 K12 EXP1_DIFF_n9 C8 EXP1_DIFF_p3 IO_L40p_0 D8 EXP1_DIFF_n3 B IO_L40n_0 B6 EXP1_DIFF_p2 B IO_L41p_0 C6 EXP1_DIFF_n2
in „Schematics von Spartan 3A-DSP 1800 Board“ · FPGA, VHDL & Co. ·
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pse.txt
1 2 Li 6.941 2.93 60 5.392 Lithium Lithium 4 2 2 Be 9.0122 4.98 0 9.322 Beryllium Beryllium 5 13 2 B 10.81 4.45 27 8.298 Bor Boron 6 14 2 C 12.011 5.00 154 11.260 Kohlenstoff Carbon 7 15 2 N 14.007 7 14.534 Stickstoff Nitrogen 8 16 2 O 15.999 141 13.618 Sauerstoff Oxygen 9 17 2 F 18.988 328 17.422 Fluor
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R-78xx-0.5.pdf
55022 Certified R-781.5-0.5 4.75 – 30 1.5 0.5 73 63 EN-55024 Certified R-781.8-0.5 4.75 – 34 1.8 0.5 82 71 EN-60601-1-2 Certified R-782.5-0.5 4.75 – 34 2.5 0.5 87 77 R-783.3-0.5 4.75 – 34 3.3 0.5 91 81 R-785.0-0.5 6.5 – 34 5.0 0.5 94 86 R-786.5-0.5 8.0 – 34 6.5 0.5 95 88 R-789.0-0.5 11 – 34 9.0 0.5 96
in „Konzept-Entscheidungshilfe“ · Mikrocontroller und Digitale Elektronik ·