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Peavey_Semiconductors_Cross_Ref_2009.pdf
70406533 2N6534 2N3644 2N3638, 2N6533, 2N3638 70406533 2N6534 2N4401 2N3642, 2N5630, 2N3642 70406531 2N6531 786 2SD-78 2SD-786E 70400786 A13 MPS-A13 MPS-A13 70400013 NPN DARLINGTON A63 MPS-A63 MPS-A63 70400063
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
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Peavey_Semiconductors_CrossRef_2010.pdf
70406533 2N6534 2N3644 2N3638, 2N6533, 2N3638 70406533 2N6534 2N4401 2N3642, 2N5630, 2N3642 70406531 2N6531 786 2SD-78 2SD-786E 70400786 A13 MPS-A13 MPS-A13 70400013 NPN DARLINGTON A63 MPS-A63 MPS-A63 70400063
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
cps_hv_supply.pdf
6.8uF 35V 750 8 R43 R54 R8 8 3.9K 9K .1% 1/8W R55 - E26 R40 200 5% 5W E4 A E27 STD A D21 B + AMR B TP2 1 Coil 1N4006 R50 R51 7 2K7 91K C14 D20 1 E7 A 2 R53 33nF Q4 R23 C7 E30 B -A2 TP11 MPSW06 6.2nF 6 7K .1% 1K5 3 + -25V -25V R36 MPSA56 Q2 E14 7 D9 LM307 220 R35 R24 2K2 1N4006 1K5 1 Q10 1N5059 D22 22K
in „Rasterelektronenmikroskop Zeiss DSM 960“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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ppm_v1_3_v1.pdf
ports.sch REVISION:1.3 PAGE 4 OF 14 DRAWN BY:Bradley Worley +12V D03 Vbus T01 BAS40−04 CTX02−13665 LDO_EN 2 12 C10 C11 13 U03 RP1 D03 4.7u 4.7u 47k VIN 3 10 11 /SHDN COLA 3 4 9 LT3439 D04 5 SYNC COLB 14 5 7 6 CT BAS40−04 7 4 RT RSL D04 −12V C12 R07 GND PGND R08 10 17 16 1 820p 16.9k 16.9k C13 2.2n / 1kV TITLEPPM
in „Nuclear magnetic resonance (NMR) im Erdmagnetfeld“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
High_Voltage_Low_Noise_DC_DC_Converters_an118fa.pdf
DANGER! Lethal Potentials Present — See Text 1μF 1M* A1 100k100k 5V + 4 7 (TIE 5-6) D44 LTC6240 T1 Q2 0.001μF – 1 2 3 10k + 3.32k* 100μF 2N3906 510k Q1 2.2μF 680pF 100Ω 5V C COLA COLB T 510k 16.9k* LT3439 27k RT RSL * = 1% METAL FILM RESISTOR VCONTROL T1 = PICO 32195 5V +V GND PGND 0 TO 1V D1-D4 = 1N6529
in „Morpheus + Rudi“ · Mikrocontroller und Digitale Elektronik ·
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Service_5962-8119.pdf
19.980V __________ 20.020V Front Panel Display Readback Vout − 9mV __________ Vout +9mV LoadEffect − 2mV __________ +2mV Source Effect − 0.5mV __________ + 0.5mV PARD (Ripple and Noise) Peak-to-Peak N/A __________ +3mV RMS N/A __________ +0.3mV Transient Response Voltage in 100 μs Vout − 20mV ________
in „Wachsende Unterstützung der Selbstreparatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Marantz_PM7000PM8000_Service.pdf
E3 BC547B 100K 3408 10K 0 u 7 6 K 6 K 2 2 3444 B7 7427 F3 10K 3 1 3 4 3445 B7 7428 F3 8 3486 3485 3446 B8 7429 G2 K 3439 3447 B8 7430 G2 9 10K 10K 7427 1 2410 7414 3448 B9 7431 H2 7428 BC557B 7 100K 10n BC547B 3449 B9 7432 B5 10 BC547B 4 2411
in „Marantz Verstärker defekt“ · Analoge Elektronik und Schaltungstechnik ·
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3999fa-1.pdf
LT3999 Low Noise, 1A, 1MHz Push-Pull DC/DC Driver with Duty Cycle Control FEATURES DESCRIPTION n Wide Input Operating Range: 2.7V to 36V TheLT 3999isamonolithic,highvoltage,highfrequency n Dual 1A Switches with Programmable Current Limit DC/DC transformer driver providing isolated power in a n Programmable
in „Halbbruecke Fragen“ · Analoge Elektronik und Schaltungstechnik ·
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Vergleichsliste.pdf
ECG21 2SB793 2SB819 ECG22 2SD1293 ECG23 2SC2498 2SC2471 2SC2671 ECG24 2SC2655 ECG25 2SA1020 ECG26 2SC1787 2SC2784 ECG27 2N4277 2N4278 2N4280 2N4281 ECG28 2N1520 2N1522 ECG29 2N5686 ECG30 2N5684 ECG31 2SD1211
in „ECG45 was ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AV-H500_EFGIS_.pdf
. 6 (2) While it is blinking, press "5". cover. S 2. Insert two “AAA” (R03, UM-4) dry L 7 batteries. N 6Input selector buttons Make sure that the batteries are E inserted with their positive ± and 7tuner operation
in „Verstärkerleisung - kann ich nicht mehr rechnen?“ · Analoge Elektronik und Schaltungstechnik ·
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hitag2_hacken.pdf
in car immobilizer sys- authenticate 11000 halted tems and will be the focus of this paper. read 11n n n 00n n n ... active 0 1 2 0 1 2 read 01n 0 1 20n n 0 1 2 active 3.2 Memory write 10n 0 1 21n n 0 1 2 active Hitag2 transponders have a total of 256 bits of non- halt 00n 0 1 21 n 0 1 2.. active volatile
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sec15_supplement.pdf
output filter function fined as f : F 20 → F has been deliberately omitted in this pa- p := n ...n +k ...k mod 2 56 o 2 2 C0 C55 40 95 per. q := (p 2..p )45p ...p 8⊕(p ..51 ) 12 55 t := init(q 20...q 42 ..0q ) 19 Definition 3.9 (Output). Define the function output: F 57 × F →2F which2takes as input
in „Infos zum Volkswagen-Hack endlich veröffentlicht“ · Offtopic ·
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panasonic_tx-w32d5dpf.pdf
ECWH20102JVY FILM 200V 1µF C816 ECQB1H122J FILM 50V 1.2nF 22nF 4.7nF C553 ECQP1223JZW FILM 100V C817 ECKC2H472J CERAMIC 500V C554 ECQB1H152K FILM 50V 1.5nF C818 ECKC2H472J CERAMIC 500V 4.7nF 6.2nF 220µF C555 ECWH20622JVB FILM 200V C819 ECOS2WB221DB ELECT 16V C556 ECEA2CNR47SB ELECT 160V 6.2nF C820 ECOS2WB221DB ELECT 16V 220µF 330pF 2.2nF C557 ECKC2H331J CERAMIC 500V C821 ECQB1H222J FILM 50V C558 ECA2EM330B ELECT 250V 33µF C822 ECKC3D471JB CERAMIC 2KV 470pF 560nF 220µF
in „Panasonic TX-W32D5DPF“ · Analoge Elektronik und Schaltungstechnik ·
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ti_aktiv_filter_sloa088.pdf
. Second-Order Unity-Gain Sallen-Key Low-Pass Filter With C1= 820 pF, 4b2 *12 4·1 C 2 C 1 2 + 820·10 F· 2+ 1.26 nF a2 1.618 The closest 5% value is 1.5 nF. With C = 820 pF and C = 1.5 nF, calculate the values for R1 and R2 through: 1 2 2 2 a2C 2 Ǹ a 22C 2 * 4b C2C 1 2 a2C
in „OP-Schaltung: Rechteck zu Sinus“ · Analoge Elektronik und Schaltungstechnik ·
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SSD2119.pdf
136 VCI -2670 -286 37 C2N -8610 -286 87 AVSS -5610 -286 137 VCI -2610 -286 38 C2N -8550 -286 88 AVSS -5550 -286 138 VCI -2550 -286 39 C2N -8490 -286 89 VCIM -5490 -286 139 VCI -2490 -286 40 90 140 C2N -8430 -286 VCIM -5430 -
in „Display Module CFAF320240F-TS Ansteuerung --- ATMEGA 128 ---- STK600“ · Mikrocontroller und Digitale Elektronik ·
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SSD2119_Specification.pdf
136 VCI -2670 -286 37 C2N -8610 -286 87 AVSS -5610 -286 137 VCI -2610 -286 38 C2N -8550 -286 88 AVSS -5550 -286 138 VCI -2550 -286 39 C2N -8490 -286 89 VCIM -5490 -286 139 VCI -2490 -286 40 90 140 C2N -8430 -286 VCIM -5430 -
in „Display Module CFAF320240F-TS Ansteuerung --- ATMEGA 128 ---- STK600“ · Mikrocontroller und Digitale Elektronik ·
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LGDP4524.pdf
[2:0] Variable resistor VR2P(N) PFP3[2:0] PFN3[2:0] Variable resistor VR3P(N) PMP[2:0] PMN[2:0] Variable resistor VRMP(N) Amplitude VRP0[3:0] VRN0[3:0] Variable resistor VRP(N)0 adjustment VRP1[4:0] VRN1
in „LCD farben invertiert normal ?“ · Mikrocontroller und Digitale Elektronik ·
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OTM3225A.pdf
Transfer 2nTransfer 3rd Transfer DB DB DB DB DB DB DB DB DB DB DB DB DB DB DB DB DB DB 17 16 15 14 13 12 17 16 15 14 13 12 17 16 15 14 13 12 R R R R R R G G G G G G B B B B B B 5 4 3 2 1 0 5 4 3 2 1 0 5 4 3 2 1
in „[V]erkaufe TFT 2.8" und TFT 2.4" mit adapter PCB“ · Markt ·
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PSpice_LibraryguideOrCAD.pdf
2N2510 Q2N2510 BIPOLAR.OLB Bipolar Transistor 2N2511 Q2N2511 BIPOLAR.OLB Bipolar Transistor 2N2586 Q2N2586 BIPOLAR.OLB Bipolar Transistor 2N2604 Q2N2604 BIPOLAR.OLB Bipolar Transistor 2N2605 Q2N2605 BIPOLAR.OLB
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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ILI9325DS_V0.35.pdf
(N+2)th pixel (b) Read from GRAM nCS RS nRD nWR Dummy Dummy 1st read 1st read 2nd read 2nd read DB[17:9] “00h” “22h” Read 1 Read 2 high byte low byte high byte low byte Nth pixel (N+1)th pixel Figure33
in „[V]erkaufe TFT 2.8" und TFT 2.4" mit adapter PCB“ · Markt ·
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ILI9325.pdf
(N+2)th pixel (b) Read from GRAM nCS RS nRD nWR Dummy Dummy 1st read 1st read 2nd read 2nd read DB[17:9] “00h” “22h” Read 1 Read 2 high byte low byte high byte low byte Nth pixel (N+1)th pixel Figure31
in „Programmierung von ILI9325 TFT Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILI9325DS_V0.28.pdf
(N+2)th pixel (b) Read from GRAM nCS RS nRD nWR Dummy Dummy 1st read 1st read 2nd read 2nd read DB[17:9] “00h” “22h” Read 1 Read 2 high byte low byte high byte low byte Nth pixel (N+1)th pixel Figure31
in „Chinesisches TFT LCD zum Schnäppchenpreis“ · Mikrocontroller und Digitale Elektronik ·
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ili9328.pdf
(N+2)th pixel (b) Read from GRAM nCS RS nRD nWR Dummy Dummy 1st read 1st read 2nd read 2nd read DB[17:9] “00h” “22h” Read 1 Read 2 high byte low byte high byte low byte Nth pixel (N+1)th pixel Figure31
in „VW-Werbebeilage mit Display (vidipri)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILI9328DS_V0.1.pdf
(N+2)th pixel (b) Read from GRAM nCS RS nRD nWR Dummy Dummy 1st read 1st read 2nd read 2nd read DB[17:9] “00h” “22h” Read 1 Read 2 high byte low byte high byte low byte Nth pixel (N+1)th pixel Figure31
in „[V]erkaufe TFT 2.8" und TFT 2.4" mit adapter PCB“ · Markt ·
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HX8352-A.pdf
16.8)+ V28 VgN4+(VgN3-VgN4)*(8/23) V60 (VgN1-VgN2)*(1-CGMN2)*(14.4/25.6) V59 VgN2+(VgN1-VgN2)*(CGMN2*9.6/16.8)+ V27 VgN4+(VgN3-VgN4)*(7/23) (VgN1-VgN2)*(1-CGMN2)*(9.6/25.6) V58 VgN2+(VgN1-VgN2)*(CGMN2*7.2/16.8)+ V26 VgN4+(VgN3-VgN4)*(6/23) (VgN1-VgN2)*(1-CGMN2)*(7.2/25.6) VgN2+(VgN1-VgN2)*(CGMN2*4.8/16.8)+ V25 VgN4+(VgN3-VgN4)*(5/23) V57 (VgN1-VgN2)*(1-CGMN2)*(4.8/25.6) V56 VgN2+(VgN1-VgN2)*(CGMN2*2.4/16.8)+ V24 VgN4
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Datei
standard.bjt.txt
1.35725 VTF=0.99604 ITF=0.999923 CJC=4.44225e-10 VJC=0.400202 MJC=0.41017 XCJC=0.803125 FC=0.59817 TR=100n PTF=0 .MODEL 2N3439 NPN (Is=2.644p Xti=3 Eg=1.11 Vaf=100 Bf=1.557K Ne=1.305 Ise=5.292p Ikf=38.4m Xtb=1.5 Br=10.22 Nc=2 Isc=0 Ikr=0 Rc=6 Cjc=24.28p Mjc=.4169 Vjc=.75 Fc=.5 Cje=105.8p Mje=.3681 Vje=.75 Tr=303.6n Tf=2.033n Itf=5 Vtf=10 Xtf=20 Rb=10 Vceo=350 Icrating=1 mfg=Motorola) .MODEL 2n3439_ npn IS=4.95669e-14 BF=217.608 NF=0.989177 VAF=144.204 IKF=1.16129 ISE=7.22363e-12 NE=2.22456 BR=1.16323 NR=0.965806
in „Hilfe bei LTSpice nötig!“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
irmp.diff
; } } #endif // IRMP_SUPPORT_TECHNICS_PROTOCOL == 1 else { #ifdef ANALYZE - ANALYZE_PRINTF ("error 2: pause %d after data bit %d too long\n", irmp_pause_time, irmp_bit); + ANALYZE_PRINTF ("error 2: pause %d after data bit %d too long\n", ir->isr.pause_time, ir->bit); ANALYZE_ONLY_NORMAL_PUTCHAR ('\n
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Transistor_Database.pdf
2N109 GE-P 35V 0.15A 0.165W 2N1304 GE-N 25V 0.3A 0.15W 10MHz 2N1305 GE-P 30V 0.3A 0.15W 5MHz 2N1307 GE-P 30V 0.3A 0.15W B>60 2N1613 SI-N 75V 1A 0.8W 60MHz 2N1711 SI-N 75V 1A 0.8W 70MHz 2N1893 SI-N 120V
in „Bauteilebeschaffung !!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Transistor_Database.pdf
2N109 GE-P 35V 0.15A 0.165W 2N1304 GE-N 25V 0.3A 0.15W 10MHz 2N1305 GE-P 30V 0.3A 0.15W 5MHz 2N1307 GE-P 30V 0.3A 0.15W B>60 2N1613 SI-N 75V 1A 0.8W 60MHz 2N1711 SI-N 75V 1A 0.8W 70MHz 2N1893 SI-N 120V
in „Transistor-Datenbank“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
OptionInst_Trace.txt
=FFFF OffsetLo=F00004B4 NumOfBytesToRead=4 nBlockSize 2048 3589 k1394dbg 464 896 2 3589 09\12\2018-18:46:59:24 REQUEST_ASYNC_READ: OffsetHi=FFFF OffsetLo=F00004B8 NumOfBytesToRead=4 nBlockSize 2048 3590 k1394dbg 464 896 2 3590 09\12\2018-18:46:
in „R&S TSMU Radio Network Analyzer“ · HF, Funk und Felder ·
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Datei
version_1p3_assembler.lst
438: N 2D XBIT BIT 45 ;37.5-EXTERNAL PROGRAM PRESENT 439: N 2E C_BIT BIT 46 ;37.6-SET WHEN CLOCK RUNNING 440: N 2F DIRF BIT 47 ;37.7-DIRECT INPUT MODE 441: N 30 NO_C BIT 48 ;38.0-NO CONTROL C 442: N 31 DRQ
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AoE3_chapter9.pdf
Module Qualtek 880–06/006 diode bridge Signal Transf #80–4 6A, 400V 115V: 80VCT, 4A Vxfmr GBU604 +50V 2A L F1 F2 R 6A SB CY C S + 2 C 2.2nF cutout 0.1–1μF C 1 680 G R1 X 5W 1M 100nF MOV R S L CY 130Vac 10Ω– COM N IEC320 500μH 2.2nF 100Ω inlet S20K130 + R3 Ixfmr C 2 680 5W –50V 2A C 1 C2: Panasonic TS–UP
in „Labornetzgerät - Fragen zum Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
kicad_8450_dcm_liste_neu_v3.pdf
Double PNP Transistors, Current mirror configuration Q_DUAL_PNP_PNP_E1B1C2E2B2C1 Dual PNP/PNP Transistor, 6-pin package Q_NIGBT_CEG Transistor N-IGBT (general) Q_NIGBT_CGE Transistor N-IGBT (general) Q_NIGBT_ECG Transistor N-IGBT (general) Q_NIGBT_ECGC Transistor N-IGBT, collector
in „KiCAD Eeschema, Bibliotheksdokumentation *.dcm als PDF-Datei“ · Platinen ·
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Datei
openocd_log.txt
Info : 74 47 cmsis_dap.c:1145 cmsis_dap_get_status(): SWCLK/TCK = 1 SWDIO/TMS = 1 TDI = 1 TDO = 1 nTRST = 0 nRESET = 1 Info : 75 63 cmsis_dap.c:1383 cmsis_dap_init(): CMSIS-DAP: Interface ready Debug: 76 63 adapter.c:213 adapter_khz_to_speed(): convert khz to adapter specific speed value Debug: 77
in „OpenOCD sehr langsam beim flashen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BASIC.LST
" 0207 0271 D2 45 4D .BYTE 'R'+80H,"EM" 0208 0274 D3 54 4F 50 .BYTE 'S'+80H,"TOP" 0209 0278 CF 55 54 .BYTE 'O'+80H,"UT" 0210 027B CF 4E .BYTE 'O'+80H,"N" 0211 027D CE 55 4C 4C .BYTE 'N'+80H,"ULL" 0212 0281 D7 41 49
in „Suche verschiedene BASIC Eprom's für Z80 Rechner.“ · Markt ·