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PDF
Wuerth_WCAP_AT1H_1000_35.pdf
information: Aluminium Electrolytic Capacitors Storage Conditions: 35°C, <45% RH Operating Temperature: -40 °C bis +105 °C Load Life: 10000 h @ +105°C / 35 V (DC) Test conditions of Electrical Proper- 20°C, 33% RH; if not specified differently ties: FIT according to separate
in „Reperatur Samsung Netzteil BN44-00623B (Samsung Clicking)“ · Analoge Elektronik und Schaltungstechnik ·
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Schaltplan einer Bausteuchten-Steuerung
18k R12 33k R10 88k R9 1,2k R17 27k R15 R13 270k LED orange ultra-bright D0 R16 12k D3 1N4148 R7 33R C2 1,5uF 2SC946 Q7 R2 100k R3 33k Q2 2SC945 Q1 2SC945 C1 47uF 16V R5 2,7M R14 6,7k R8 1,8k Q4 2SC2001 000416-2 Q1, Q2 2SC2001 2SA952 2SC945 Q0 Opto Translator E C B C E Title Bausteuchten-Leuchten - Nitra
in „Baustellenleuchte Blinkschaltung“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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Schaltplan einer Bausteuchtenleuchte
Q3 orange ultra-bright R16 12k LED Q6 orange ultra-bright D2 1N4148 D3 1N4148 10 uF / 25V R18 1,5k C2 Q7 2SC946 R7 180k R5 2,7M R2 100k R3 33k Q2 2SC945 Q1 2SC945 C1 47 uF / 16V R8 1,8k Q4 2SC2001 000416-2 TC-92 Q1, Q7 2SC2001 2SA952 2SC945 Q0 Opto Translator E C B C E Title Bausteuchtenleuchte - Nitra
in „Baustellenleuchte Blinkschaltung“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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PDF
7447709101.pdf
General Information: It is recommended that the temperature of the component does not exceed +125 °C under worst case conditions Ambient Temperature (refering to -40 up to +85 °C , IR) ± , Operating Temperature -40 up to +125 °C 2 1 Storage Conditions (in original packaging) < 40 °C ; < 75 % RH Moisture
in „[V] "jede Menge" Würth SMD WE-PD Speicherdrosseln 100uH, 1210, 2,5A, 110mOhm, Nr. 7447709101 geschir“ · Markt ·
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PDF
744770147.pdf
General Information: It is recommended that the temperature of the component does not exceed +125 °C under worst case conditions Ambient Temperature (refering to -40 up to +85 °C , IR) ± 0 Operating Temperature -40 up to +125 °C 2 1 Storage Conditions (in original packaging) < 40 °C ; < 75 % RH Moisture
in „[V] Weitere WÜRTH Power WE-PD SMD Induktivitäten 22uH, 33uH, 47uH“ · Markt ·
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PDF
7447709330.pdf
General Information: It is recommended that the temperature of the component does not exceed +125 °C under worst case conditions Ambient Temperature (refering to -40 up to +85 °C , IR) ± , Operating Temperature -40 up to +125 °C 2 1 Storage Conditions (in original packaging) < 40 °C ; < 75 % RH Moisture
in „[V] Weitere WÜRTH Power WE-PD SMD Induktivitäten 22uH, 33uH, 47uH“ · Markt ·
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PDF
744770122.pdf
General Information: It is recommended that the temperature of the component does not exceed +125 °C under worst case conditions Ambient Temperature (refering to -40 up to +85 °C , R ) ± 0 Operating Temperature -40 up to +125 °C 2 1 Storage Conditions (in original packaging) < 40 °C ; < 75 % RH Moisture
in „[V] Weitere WÜRTH Power WE-PD SMD Induktivitäten 22uH, 33uH, 47uH“ · Markt ·
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PDF
7447709220.pdf
General Information: It is recommended that the temperature of the component does not exceed +125 °C under worst case conditions Ambient Temperature (refering to -40 up to +85 °C , R ) ± , Operating Temperature -40 up to +125 °C 2 1 Storage Conditions (in original packaging) < 40 °C ; < 75 % RH Moisture
in „[V] Weitere WÜRTH Power WE-PD SMD Induktivitäten 22uH, 33uH, 47uH“ · Markt ·
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Datei
bdxxx.txt
Cjc=142p Mjc=.4353 Vjc=.75 Fc=.5 Cje=188.5p Mje=.4878 Vje=.75 Tr=194.2n Tf=19.85n Itf=164.1 Xtf=5.945 Vtf=10 Rb=.1 Vceo=55 Icrating=2 mfg=OnSemi) .MODEL BD239A NPN(Is=2.447p Xti=3 Eg=1.11 Vaf=100 Bf=208.2 Ise=70.69p Ne=1.565 Ikf=.9743 Nk=.6134 Xtb=1.5 Br=12.59 Isc=11.68n Nc=1.835 Ikr=3.86 Rc=.4685 Cjc
in „FG504 Endstufe defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
70AAJ-3-M0.pdf
Packaging Specifications TAPE 0.3 No. of Dimension Dimension Dimension Dimension (.012) Contacts A B C D 5.15 16.0 7.5 5.64 16.4 (.203) 2 (.630) (.296) (.222) (.646) B 16.0 7.5 8.19 16.4 C 3 1.5 DIA. (.630) (.296) (.323) (.646) (.059) 24.0 11.5 10.4 24.4 4 (.945) (.453) (.409) (.961) 24.0 11.5 12.95 24.4 2.00 9.74 5 (.079) (.383) (.945) (.453) (.510) (.961) 24.0 11.5 15.5 24.4 6 (.945) (.453) (.610) (.961) 4.00 (.157) 12.00 MM (.472) DIMENSIONS: (INCHES) 1.75 (.069) A REEL 1.5 EQUAL SPACED 3 PLCS. (.059) 20.2DIA. 13.0 (.795) 3.00
in „Binärcode aus leitender Tinte von Papierkarte lesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Wuerth__9774060360R.pdf
Classification Reflow Soldering Profile: Profile Feature Value Preheat Temperature Min 1) Ts min 150 °C Preheat Temperature Max Ts max 200 °C T p Preheat Time t from T to T t 60 - 120 seconds T C5°C s s min s max s Max. Ramp Up Rate p Ramp-up Rate (T to T ) 3 °C/ second max. L P Max. Ramp Down Rate Liquidous
in „Gehäuse von z.B. Jung für eigene Elektronik“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Varistor_MLseries.pdf
=-1.201E-3 a5=7.945E-2 a6=-8.674E-2 .ENDS * .SUBCKT V18MLE0603 1 2 PARAMS: TOL=0 X1 1 2 MLMOV PARAMS: T={1+TOL/100} L=1nH C=125pF a1=1.566 a2= 0.0709 a3=9.496E-3 a4=-1.201E-3 a5=7.945E-2 a6=-8.674E-2 .ENDS * .SUBCKT V18MLE0603L
in „LTSpice Simulations Model selbst erstellen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
512020-sp-01-en-Switching_Power_Supply_DPS-4005PFC.pdf
1000µF FR157 R31 2SC2625 C34 220µF C57 V17 27Ω R29 1000µF V27 R86 2SC945 R28 1N4148 C37 V13 2.2Ω 100Ω 33kΩ 0.22µF 47µF FR153 R30 V7 C33 R81 V28 C17 2.7kΩ FR157 3300pF 2.2Ω 1N4148 L10 X4 1µF R117 V19 GND +5 V29 C38 V18 150pF C20 1N4148 2SC945 V14 R89 1N4148 R87 V12 R83 1µF FR153 FR157 R34 R90 +12 R82 10Ω R85 1kΩ V20 27Ω V10 100kΩ 7 2kΩ 3.3kΩ V34 1N4148 2SC2625 C16 N7 R93 D880 C56 X5 R36 R32 4700pF 20kΩ 3 LM741 1Ω 0.1µF 6 V30 C19 1kΩ V15
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PDF
Wuerth_9774020360.pdf
Classification Reflow Soldering Profile: Profile Feature Value Preheat Temperature Min 1) Ts min 150 °C Preheat Temperature Max Ts max 200 °C T p Preheat Time t from T to T t 60 - 120 seconds T C5°C s s min s max s Max. Ramp Up Rate p Ramp-up Rate (T to T ) 3 °C/ second max. L P Max. Ramp Down Rate Liquidous
in „Gehäuse von z.B. Jung für eigene Elektronik“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Signalgenerator1.23.ERR3001.txt
unbekannt C29 auf Seite 1 bei -101,600mm | 15,240mm 164: Warnung: Symbol unbekannt C30 auf Seite 2 bei -73,660mm | 16,510mm 165: Warnung: Symbol unbekannt C43 auf Seite 2 bei -101,600mm | 91,440mm 166: Warnung:
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Schaltplan mit Transistoren, Transformator und Spannungsreglern
SDA GR2 R21 10k R30 10k GR1 VT15 BC857 VT17 BC857 VT19 BC857 VT20 BC857 R33* 2.2 2.2...2.5V 7805 VR1 C11 33µ 16V (C) C13 100n T1 w1 w4 w2 w3 VD2 VD3 5.1V BAW56 C16 15µ 35V (D) C17 100n 7805 VR2 C10 100n C12 33µ 16V (C) C14 100n VD1* 3.6V C15* 15µ 16V (B) R31 1k R32 270 VT10 C945 VT13 C945 Left PCB 300k
in „LED-Uhr mit Attiny26“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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Foto einer bestückten Leiterplatte mit Bauteilbeschriftung
AC INPUT, M2, R991, R993, R994, R992, Q867, C956, R952, C959, R954, C958, C960, R983, Q94, R951, C951, C938, R946, R953, R955, R901, R902, R903, C941, C942, R904, R905, R906, C954, C955, R950, D903, D907, R949, D906, R954, D904, R978, C953, R950, R952, R957, C936, R933, R974, C947, R972, C945, R954, D904, R975, Q903, C946, R971, C904, C903, R932, C933, R942, C912, R945, C915, R918, R920, C921, R921, C911, C913, R917, C901, R916, C908, C921, C922, R919, Q910
in „Netzteilplatine: off nach 5 Minuten. Tipp?“ · Analoge Elektronik und Schaltungstechnik · · Platinenfotos
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Datei
daten.txt
0C945A000C9477000C9477000C9477000C9477000C9477000C9477000C9477000C9477000C9477000C9477000C9427030C9477000C9477000C9477000C9477000C9477000C9477000C94D9010C9477000C9477000C9477000C9477000C9477000C9477000C9477008E039203A103A503A903AD03B103B503B903BD03C103C503C903CD03DC03E003E403E803EC03F003F403FA03FE03020408040C041004140418041E0424042A04300436043C04420448045C0411241FBECFEFD8E0DEBFCDBF12E0A0E0B1E0E8ECFAE002C005900D92AA31B107D9F722E0AAE1B2E001C01D92A634B207E1F70E945C010C9462050C940000E0E0F1E01182329681E0EC3DF807D1F7089570E0680F711D91E0282F30E02617370744F4220F331FF901E050FF4F91838F5FF3CF0895CF93DF93C82FD62FE0E0F1E01182329681E0EC3DF807D1F762E080E00E94820063E083E00E948200D11104C063E08BE60E9482008FEF8D0F843018F464E081E206C08BEF8D0F853038F464E087E00E94820064E085E267C086EF8D0F853018F464E08BE0F4CF81EF8D0F853018F467E08AE1EDCF8CEE8D0F853018F467E08FE0E6CF87EE8D0F823018F464E087E006C085EE8D0F833038F464E081E20E94820063E089E215C082EE8D0F823098F080EE8D0F833018F464E081E206C08DED8D0F853058F464E087E00E94820064E085E20E94820064E08CE226C088ED8D0F853018F467E08FE01BC083ED8D0F853018F467E08AE114C08EEC8D0F853018F464E08BE00DC089EC8D0F823018F464E087E006C087EC8D0F833040F464E081E20E94820063E089E20E948200CC30E0F0CC50D93150F4C11101C0CCE0EC2FF0E0EE0FFF1FE051FE4F09C0CC3009F4C0E0EC2FF0E0EE0FFF1FEE50FE4F61818081DF91CF910C948200D93128F3F1CFE0E0F1E0AC0142595F4F2181DC01213011F42C9301C01C923296019684179507A1F70895CF93DF93CDB7DEB7CE56D1090FB6F894DEBF0FBECDBF809139028F7D80933902259A2D9852985A9A0E94790087E690E00E943C050E94180578946E018FE6C80ED11C8091390285FD08C08091390282958695869583708130A1F72D9A60912302809138020E949400CE0101960E944A018E010F5F1F4F80E0E82E81E0F82EF80181918F01813019F4F701808101C080E20E944905F2E0EF0EF11C0C151D0579F786E192E00E9450052D9810922302109238021092370210922E02109227021092320210923102809139028D7F80933902809139028B7F8093390280913902877F80933902809139028F7D80933902809139028F7380933902A4CF1F920F920FB60F9211248F938091C600809322028F910F900FBE0F901F90189580912A0290912B02019690932B0280932A0280912A0290912B02CC9709F007C110922B0210922A028091330290913402019690933402809333028091330290913402489709F0F3C0109234021092330280912F029091300201969093300280932F0280912C0290912D02019759F420912F023091300280910A0290E08217930709F4B7C080912C0290912D02029759F420912F023091300280910B0290E08217930709F4A6C080912C0290912D02039759F420912F023091300280910C0290E08217930709F495C080912C0290912D02049759F420912F023091300280910D0290E08217930709F484C080912C0290912D02059759F420912F023091300280910E0290E08217930709F473C080912C0290912D02069759F420912F023091300280910F0290E08217930709F462C080912C0290912D02079759F420912F02309130028091100290E08217930709F451C080912C0290912D02089759F420912F02309130028091110290E08217930709F440C080912C0290912D02099751F420912F02309130028091120290E08217930781F180912C0290912D020A9751F420912F02309130028091130290E08217930701F180912C0290912D020B9751F420912F02309130028091140290E08217930781F080912C0290912D020C9799F420912F02309130028091150290E08217930749F480912C0290912D02019690932D0280932C0280912C0290912D020C9779F481E090E090932D0280932C0280913502909136020196909336028093350280912A0290912B028093230280913302909134028093380280912F02909130028093370280913A0290913B0280932E0280912C0290912D02809327028091350290913602909332028093310208951F920F920FB60F9211242F933F934F935F936F937F938F939F93AF93BF93EF93FF9380911D0290911E0201968233910528F490931E0280931D0204C010921E0210921D024A9919C080911B0290911C02019690931C0280931B0244E1489F9001499F300D11242C33310508F49BC18091390280618093390295C180911A028F5F80931A029091390294FFFEC080911F028F5F80931F0220911B0230911C0244E1429FC001439F900D11248739910508F4E1C0E0911F028E2F90E0FC017697E632F10508F0D7C0EC5CFF4F0C945C05809123028F5F03C0809123028E5F80932302809124029091250201969093250280932402C0C0809123028C5FF0CF80912302885FECCF80912302865FE8CF809123028C5EE4CF80912302885DE0CF809139028260A6C0809138028F5F13C0809138028E5F0FC0809138028C5F0BC080913802885F07C080913802865F03C0809138028C5E8093380280912802909129020196909329028093280285C08091390284607FC0809137028F5F13C0809137028E5F0FC0809137028C5F0BC080913702885F07C080913702865F03C0809137028C5E8093370258C080912E028F5F07C080912E028E5F03C080912E028C5F80932E024AC0809127028F5F0FC0809127028E5F0BC0809127028C5F07C080912702885F03C080912702865F8093270234C0809131029091320201962AC08091310290913202029624C0809131029091320204961EC08091310290913202089618C080913102909132020A9612C0809131029091320244960CC08091310290913202889606C08091310290913202805B9F4F909332028093310280913C0290913D02019690933D0280933C0205C080913902886080933902809139028F7E8093390210921C0210921B028CC044E1849FC0011124843A96400CF486C080911F028B3309F059C080913902409124025091250281FB222720F930E0420F531F40FD4BC080913902209128023091290282FBEE27E0F9F0E02E0F3F1F20FD3DC02091390280913C0290913D0223FB662760F970E0860F971F80FD2FC08091230290E090932B0280932A028091380290E090933402809333028091370290E09093300280932F0280912E0290E090933B0280933A028091270290E090932D0280932C028091310290913202909336028093350280913902806206C00E94E901809139028F738064809339021092250210922402109229021092280210923D0210923C0210921F0210923E0210923F0210924002109241021092420210924302109244021092450210921A02FF91EF91BF91AF919F918F917F916F915F914F913F912F910F900FBE0F901F90189584B5826084BD85B5836085BD89EF87BDEEE6F0E08081826080830895E1E8F0E080818B60808387E893E19093890080938800EFE6F0E08081826080830895E0EBF0E0808182608083E1EBF0E080818360808389EF8093B300E0E7F0E080818260808308959093C5008093C400E1ECF0E080818869808386E08093C20008959091C00095FFFCCF8093C6000895CF93DF93EC018991882319F00E944905FACFDF91CF910895EE0FFF1F0590F491E02D0994F894FFCF450053004B004900530054004C004600DC004E0046005A00450048004E005A00570041004E005A004900470044005200450049005600490045005200540045004C004B00550052005A004E0041004300480056004F005200480041004C00420051005A005700D6004C00460050005A005700450049004E00530049004500420045004E004B004400520045004900520048004600DC004E00460045004C0046004E00450055004E005600490045005200570041004300480054005A00450048004E005200530042005300450043004800530046004D005500480052006B032C042903250421041A070F070B040704030300023904370416045404490464053C06590450045D044D0331051F1C1F1E1F1E1F1F1E1F1E1F0A0D0000
in „Unterschied HASH-Wert datei und Inhalt“ · Mikrocontroller und Digitale Elektronik ·
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Ausschnitt eines Schaltplans
REC -11.9V R322 68K R319 39 1/2W STOP -11.4V REC +12V -12V Bias Cut Jumper R320 82 2W L302 105KHZ C319 0.06uF(J) R315 2.2 R316 2.2 C315 4.7u 25V Q302 2SC945 (L) Q301 2SC945 (L) C316 4700P (G) R317 82K C317 4700P (G) C318 0.022u(J) R318 82K R326 4.7 Q306 2SB5
in „schwächelnder Tapedeck Bias-Oszillator“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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Schaltplan eines Commodore A520 PAL Modulators
Commodore A520 PAL version - unmodified IC2A 74LS74 IC2B 74LS74 R21 470 C22 16pF C23 56pF XTAL 4.433 MHz C25 820pF C26 1uF L3 15uH R20 910 C11 01uF L2 3.3K C13 47pF R27 6.8K Q2 LC945P R26 470 C19 1uF IC1 MC1377 P/N 20 T SYNC C2 001uF Q19 01uF X12 R4 56K C17 001uF C15 012V B MODULATOR 340023-01 RF OUT C15 012V CVBS OUT AUDIO IN V G Q3 LC945P R19 220 C16 01uF R24 75 C18 470pF R13 75 C4 100uF R17 1.5K R56 4.7K C8 470pF R23 1.5K R14 1.5K C24 39pF C9 0.01uF C21 0.01uF C14 1uF C12 220 R12 1.330 R10 330 R7
in „Problem beim FBAS Signal am Amiga 500“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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PDF
MRF272L.pdf
out= 100 W, f = 500 MHz,DQ = 100 mA, No Degradation in Output Power VSWR 10:1 at all Phase Angles) C12 C13 +V +28 V GG RFC2 RFC3 + C1 R1 R2 C2 C11 C14 C15 RFC1 RF C10 OUTPUT RF Z3 Z4 INPUT C3 Z1 Z2 C7 C8 C9 C4 C5 C6 DUT C1, C11, C14 0.1 F, Ceramic Capacitor RFC1 8 Turns AWG #18, 0.25″ I.D., Enameled
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Schaltplan einer Elektronikschaltung
DP R14 10k VT18 VT16 BC857 +5V D R15 10k C VT14 BC857 B R23 10k VT11 BC857 A R16 10k VT8 BC857 R35 300k R45 300k R24 10k VT4 BC857 VT16 BC857 R36 300k R46 300k R17 G R25 10k VT2 BC857 R37 300k R47 300k E R38 300k H1 IB-21 3 18 17 16 1 R39 300k
in „LED-Uhr mit Attiny26“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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Datei
PartList_EZMkit.txt
kOhm | R21 | 1 kOhm | R22 | 470 Ohm | R23 | 10 kOhm | R24 | 10 kOhm | -----+-------------+-------- C1 | 22 pF | probably 15 or 18 pF C2 | 22 pF | Trimmer 6-30pF C3 | 100 nF | C4 | 10 nF | C5 | 100 µF 25V | C6 | 100 µF 25V | C7 | 100 nF | C8 | 100 nF | -----+-------------+-------- Q1 | A673 (PNP) | Q2 | C945 (NPN) | Q3 | C945 (NPN) | -----+-------------+-------- U1 | ATmega328P | U2 | AMS1117 | U3 | TL431 | better LM4040AIZ2,5 or LT1004CZ-2,5
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PDF
GMS328.pdf
TXD PC3 26 B GND 4 PID2 INTO PC2 25 TP3 103 C4 R11 B 5 24 TP2 100K 6 PD3 INT1 PC1 23 TP1 U1-12 R10 Q2 GND 7 PD4 PC0 22 C122P 1 8 VCC GND 21 GND 27K C945 R9 z 9 GND AREF 20 3K3 X1 M 10 PB6 AVCC 19 D1 8 PB7 PB5 LED 2 11 PD5 PB4 18 GND U1-12 12 PD6 PB3 17 GND C2 U1-13 13 PD7 PB2 16 22P 14 PB0 PB1 15 C945 Q3 U1 ATMEGA328P 5 4 U1-13 K1 R R K R C 8 0 8 7 8 0 R15 C 6 4 6 4 6 4 27K 1 2 3 4 5 6 3 J1 R22 C9 R R R R R R T TL431A R17 1 3 1 5VCC 2 2 2K2 470R 104 T GND
in „neuer Transistortester GM328 aus China“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4660.pdf
TXD PC3 26 B GND 4 PID2 INTO PC2 25 TP3 103 C4 R11 B 5 24 TP2 100K 6 PD3 INT1 PC1 23 TP1 U1-12 R10 Q2 GND 7 PD4 PC0 22 C122P 1 8 VCC GND 21 GND 27K C945 R9 z 9 GND AREF 20 3K3 X1 M 10 PB6 AVCC 19 D1 8 PB7 PB5 LED 2 11 PD5 PB4 18 GND U1-12 12 PD6 PB3 17 GND C2 U1-13 13 PD7 PB2 16 22P 14 PB0 PB1 15 C945 Q3 U1 ATMEGA328P 5 4 U1-13 K1 R R K R C 8 0 8 7 8 0 R15 C 6 4 6 4 6 4 27K 1 2 3 4 5 6 3 J1 R22 C9 R R R R R R T TL431A R17 1 3 1 5VCC 2 2 2K2 470R 104 T GND
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Tasmota Logausgabe mit Hexadezimalwerten
sensor53 d1 14:43:21.878 RSL: RESULT = {"Time":"2025-12-02T14:43:21","SML":"CMD":"dump: 1"} 14:43:24.945 read meter 14:43:24.945 wakeup start 14:43:28.201 wakeup end 14:43:28.201 wait for the meter 14:43:28.554 request data 14:43:28.775 : 68 e4 68 00 72 16 33 41 51 a5 11 40 04 d2 00 00 0f 04 02 47 00 73 02 71 02 3b 17 14:43:28.922 : 36 16 01 00 00 00 97 40 00 80 0c 46 83 00 00 00 68 02 69 02 3b 17 14:43:29.068 : 37 36 18 01 00 00 00 97 40 00 80 00 0c 46 83 00 00 00 63 02 63 02 3b 17 14:43:29.215 : 38 36 18 01 00 00 00 97 40 00 80 00 0c 46 83 00 00 00 76 02 74 02
in „Wärmezähler über optische M-Bus-Schnittstelle auslesen“ · Haus & Smart Home · · Screenshots
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mn744136_Data-DE.pdf
DATUM / DATE : 2004-10-11 A Mechanische Abmessungen / dimensions : A B A 31,0 max mm B 15,0 max mm C 12,0 ± 1,0 mm D 1,5 min mm D E 13,0 ± 1,5 mm C F ø 0,7 ref mm F E @@FRM 1@@ B Elektrische Eigenschaften / electrical properties : C Lötpad / soldering spec. : Eigenschaften / Testbedingungen / properties
in „Schaltregler TO-220, LM2576T-12/NOPB Dimensonierung“ · Analoge Elektronik und Schaltungstechnik ·
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mn744136_Data-DE.pdf
DATUM / DATE : 2004-10-11 A Mechanische Abmessungen / dimensions : A B A 31,0 max mm B 15,0 max mm C 12,0 ± 1,0 mm D 1,5 min mm D E 13,0 ± 1,5 mm C F ø 0,7 ref mm F E @@FRM 1@@ B Elektrische Eigenschaften / electrical properties : C Lötpad / soldering spec. : Eigenschaften / Testbedingungen / properties
in „Schaltregler TO-220, LM2576T-12/NOPB Dimensonierung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SM08B-SRSS-TB.pdf
Specifications ––––––––––––––––––– • Current rating: 0.7A DC • Voltage rating: 50V DC • Temperature range: -25˚C to +85˚C(including temperature rise in applying electrical current) • Contact resistance: Initial value/20m Ω max. After environmental testing/40m Ω max. • Insulation resistance: 100M Ω min. • Withstanding
in „[V] EB85-A GPS-Empfaenger“ · Markt ·
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Pollin_PT1000_kein_Plagiat.PDF
beschrieben wird. Stück Bauteil Wert 1 R1 1,24 kΩ 1 R2 30 kΩ 5 R3 – R7 10 kΩ 1 R8 4,7 kΩ 1 R9 470 Ω 1 C1 220 µF 1 D1 – D3 1N 4148 4 C2, C3, C6, C8 100 nF Bestückungsplan 2 C4, C5 100 µF 2 TR1,TR2 Trimmpoti 50 kΩ Anschlussklemme 2 X1, X3 2-polig 2 X2, X4 Anschlussklemme 3-polig 1 IC1 Spannungsregler 7805
in „Ausentemperatursensor PT1000 Konstantspannungsquelle?“ · Analoge Elektronik und Schaltungstechnik ·
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744823601.pdf
/ DATE : 2006-06-16 A Mechanische Abmessungen / dimensions : M A B D A 25,0 max. mm B 17,0 max. mm C 7,5 ± 0,5 mm 1 2 E D 10,7 ± 0,5 mm C E 26,5 max. mm 4 3 F 3,0 ± 0,5 mm G 0,7 ref. mm F G @@FRM 1@@ B Elektrische Eigenschaften / electrical properties : C Schaltbild / schematic: Eigenschaften / Testbedingungen
in „Stromkompensierte Drossel mit kleiner Bauform“ · Mikrocontroller und Digitale Elektronik ·
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MotorolaDatenCD_2000.pdf
0.35 375E/2 800 – 1.0 GHz, V DD = 28 Volts, Class AB – LDMOS Die MRF181SR1 (18a,25,46b) 15 0.16 17/945 35 3.6 458/1 (18a,25,46b) MRF181ZR1 15 0.16 17/945 35 3.6 458A/1 MRF182 30 1.2 14/945 58 1.75 360B/1 MRF182S (18a) 30 1.2 14/945 58 1.75 360C/1 (25) MRF183 45 2.3 13.5/945 38 1.5 360B/1 MRF183S (18a,25) 45 2.3 13.5/945 38 1.5 360C/1 MRF184 60 1.9 13.5/945 60 1.1 360B/1 (18a) MRF184S 60 1.9 13.5/945 60 1.1 360C/1 MRF6522–60 (46a) 60 2.0 14/960 60 1.1 360B/1 MRF185 (3) 85 3.4 14/960 53 0.7 375B/2 (3,25,46a) MRF186 120
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SED1565.pdf
SED1565* ** 0 3 0 3 S G • • • • • • • • • • • • • • • • • • • • • • • • • • • • • • M S E O O O S C C C VSS VDD V1 S V2 SEG Drivers COM Drivers M V3 C V4 V5 COM output status select circuit CAP1+ Display data latch circuit CAP1– i c CAP2+ c CAP2– i i n FRS c c t FR CAP3+ c c r V OUT Power s e Display
in „Pollin 128x64 GLCD : Bild verzerrt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MH_ET_LIVE_MH3028M-24SS.txt
10:17:03.945 -> 10:17:03.945 -> 10:17:03.945 -> DFPlayer Analyzer 1.0 - Starting up... 10:17:03.945 -> 10:17:04.013 -> [60] Packet sent (->): 7E FF 6 42 0 0 0 FE B9 EF -> Cmd: 42 (GetStatus), arg: 0 10:17:04.013
in „Projekt fertiggestellt: MP3 Player für Kinder auf ATTiny-Basis“ · Projekte & Code ·
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IL300.pdf
sorted into bins that are ± 6 % , as follows: Bin A = 0.557 - 0.626 Bin B = 0.620 - 0.696 Bin C = 0.690 - 0.773 Bin D = 0.765 - 0.859 Bin E = 0.851 - 0.955 Bin F = 0.945 - 1.061 Bin G = 1.051 - 1.181 Bin H = 1.169 - 1.311 Bin I = 1.297 - 1.456 Bin J = 1.442 - 1.618 K3 = K2/K1. K3 is tested at F
in „wie linear sind optokoppler“ · Analoge Elektronik und Schaltungstechnik ·
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IL300.pdf
sorted into bins that are ± 6 % , as follows: Bin A = 0.557 - 0.626 Bin B = 0.620 - 0.696 Bin C = 0.690 - 0.773 Bin D = 0.765 - 0.859 Bin E = 0.851 - 0.955 Bin F = 0.945 - 1.061 Bin G = 1.051 - 1.181 Bin H = 1.169 - 1.311 Bin I = 1.297 - 1.456 Bin J = 1.442 - 1.618 K3 = K2/K1. K3 is tested at F
in „AC Strom mit IL300 messen“ · Analoge Elektronik und Schaltungstechnik ·
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S1D15605.pdf
• • • • • • • • • • • • • • • • • G • O • • • • • • • •O• • O S S C C C VSS VDD V1 S V2 SEG Drivers COM Drivers M V3 C V4 V5 Shift register CAP1+ Display data latch circuit CAP1– i c CAP2+ c CAP2– i i n FRS c c t FR CAP3+ c c r VOUT Power e Display data RAM n CL supply
in „Pollin Grafik LCD-Modul OPTREX F-51320AE“ · Mikrocontroller und Digitale Elektronik ·
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Datei
2021-04-12_Serial-Monitor-Auswertung.txt
: Res=11 Temp=22.38øC Min=21.38øC Max=22.38øC 06:34:15.945 -> 0) 289037E40C000086: Res=11 Temp=21.38øC 06:34:15.945 -> 1) 2846A8E50C0000A7: Res=11 Temp=21.50øC 06:34:15.992 -> 2) 28E343E40C000035: Res=11 Temp=22.38øC Min=
in „DS18B20 2 Grad zu kalt“ · Mikrocontroller und Digitale Elektronik ·
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Typ-J.pdf
Thermoelement Typ J (Thermospannung in mV, bezogen auf eine Vergleichsstellentemperatur von 0°C) 0 1 2 3 4 5 6 7 8 9 10 -210 -8,095 -8,076 -8,057 -8,037 -8,017 -7,996 -7,976 -7,955 -7,934 -7,912 -7,890 -200 -7,890 -7,868 -7,846 -7,824 -7,801 -7,778 -7,755 -7,731 -7,707 -7,683 -7,659 -190 -7,659
in „Vref bei Sensor-Schnittstelle Thermocouple 584-AD8494ARMZ“ · Analoge Elektronik und Schaltungstechnik ·
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Marantz_2245_Schematic_HiRes_ALL.pdf
HK060719A HK060719B HT309841B HT2000307 HD3002009 HL000919A R C010 220k 120k 15k 33k 16 68k 56k 100k 120k 820k 22k 1k 470k 1k8 J315 2SA640 (M)x2 2SC945R 2SC562O 2SC945Q 2SA607 (N.M.L.K) 2SA607 (M.L.K) 2SC984B SM-150-01 BZ-150 SJ2514 PHONO 10n S002-2F S002-2R J306
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f_2320312311226304479081.pdf
h h e h in y o e o p o n m c s n s g p a e d n . l e n a a si g do y s p E C M o e c r h c k e i c p © i o a d n v o d n i t i r e s f o n e l rc a h d C i k y eh p e b e r s o n r n E o F r w y a i n m n o . s I e o h m l a g k
in „Philips GLCD Modul“ · Mikrocontroller und Digitale Elektronik ·
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P1K0.520.6W.B.010.pdf
following definition of the temperature curve according to the DIN EN 60751 standard applies: -200 at 0°C R(t) = R (1+ At + Bt + C [t-100] · t ) 0 0 at 850°C R(t) = R0(1+ At + Bt )2 -3 -1 -7 -2 –12 -4 A = 3 · 9083 x 10 ·°C ; B = -5.775 · 10 °C ; C = -4 · 183 · 10 °C R 0 resistance value in ohm at 0°C t =
in „PT1000: wie mechanisch anschliessen“ · Mikrocontroller und Digitale Elektronik ·
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HP-2900.pdf
1.2 50 100,000 150 ) ) 125 ) 1.0 m 10 10,000 F ( ( ( N 5 N 100 E 0.8 E E N R R 1000 75 A U 1 +150°C U I 0.6 C C 50 A D 0.5 +100°C S P 5082-2900 A R 100 C 0.4 W +50°C V 25 - 5082-2303 R 0.1 +25°C E T F 0°C - 10 0 C 0.2 -0.05 –50°C R I I T A °C 0 0.01 1 0 4 8 12 16 20 0 0.2 0.4 0.6 0.8 1.0 1.2 0 0.2
in „Ostern- Vielleicht mal wieder Detektorempfänger ?“ · HF, Funk und Felder ·
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Supply.pdf
L902 R926 10K OHM +-5% 1/8W ! ! ! 4 1 EL817MA C901 C902 IC904 470pF/250V_NC 470pF/250V_NC C914 3 2 10N 50V ! R944 1K OHM +-5% 1/8W C909 Q909 0.68uF ! RK7002FD5T116 3 L901 4 C926 R945 10nF FB907 4K7 1/6W 5% S/B SG901 SG902 1 C949 R964 GS41-201MA_NC GS41-201MA ZD914 ! 1 2 0.001uF/500V C930 330K 1/8W 5% 2 1 C945 P6KE160A BF-L25030W-768 10N 50V 0.0022uF/500V T904 16mH PT-009601-3 2 2 D917 R901 1M3 3SRF1060 L907 ! IC906 0.8uH +5VSB ! D915 R902 1 NC NC 8 R903 FR107 10 2 + C951 C940 2 D1
in „Philips geht nach 1 Minute aus“ · Analoge Elektronik und Schaltungstechnik ·
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el4581.pdf
E L EL4581C 4 8 Sync Separator, 50% Slice, S-H, Filter 1 C Features General Description # NTSC, PAL and SECAM sync The EL4581C extracts timing information from standard nega- separation tive going video sync found
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ULTRASCHALL_SENSOR_MURATA_MA40S4R.pdf
these objects can be easily detected. 3. Effects of Temperature Velocity of sound wave propagation “c” is expressed by ential temperature, it is necessary to verify the temper- the following formula. ature at all times to measure the distance to the object c=331.5+0.607t (m/s) where t=temperature (°C
in „Ultraschallsensor Murata MA40S4R nieder- oder hochohmig“ · Analoge Elektronik und Schaltungstechnik ·
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Schaltplan eines elektronischen Schaltkreises
sek Spannung U4 / U5 Optocoupler A 1 6 B C 2 3 C 3 4 E T300 x R23 T300 x R20 R30 C22 C25 R29 C24 DUT REF 1 COMP TL284x 2 VFB TL284x 3 ISENSE 7 VCC 4 RT/CT 6 OUTPUT 5 GND C21 D9 R21 OUTPUT C19 R25 C20 R28 C23 R27 Q4 NPN (945) BC546/b E B C Q3
in „Transistor Kollektor-Kapazität (Cc) Vergleichstyp“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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Leiterplatte mit großem Kühlkörper
TOP, DC18101, 224F, 4R7, 16064, 6, EU, R239, R235, R234, C1304, C1303, C1302, C1301, C1300, C1212, C1211, C1210, C1209, C1208, C1207, C1206, C1205, C1204, C1203, C1202, C1201, C1200, C1051, C1050, C1049, C1048, C1047, C1046, C1045, C1044, C1043, C1042, C1041
in „Externe Antenne ufl sma wo anbringen?“ · HF, Funk und Felder · · Platinenfotos
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EL2099CT.pdf
Range 0§C to 75§C Voltage at Sb b 16.5V Operating Junction Temperature 150§C Voltage between IN a and VINb g 6V Storage Temperature Range b 65§C toa 150§C Current into V or V g10 mA INa INb Important Note: All
in „EL2099CT als Buffer für Frequenznormal?“ · HF, Funk und Felder ·
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Schaltplan eines Netzteils
oscilloscope_deutsch_im, T-Circuit, Unblanking Circuit, 102V, 52V, +6V, +14V, -12V, -5V, 12V, D402, R402, 945, R2564, 47k, R2514, 75k, R2515, 56k, C2509, 22uF, C2513, 22uF, C2517, 10uF, C2511, 10uF, C2507, 22uF, C2503, 7912, C2502, 22uF, C2504, 47uF, C2506, 10uF, C2508, 10uF, C2510, 100uF, C2512, 10uF, C2516, 47uF, C2518, 100uF, C2519, 10uF, C2501, 7912, C2505, 10uF, R2507, 511, R2503, 23k1, R2501, 511, R2500, 47k, R2547, 511, R2548, 511, R2549, 511, R2550, 511, R2551, 511, R2552, 511, R2553, 511, R2554, 511, R2555
in „Hameg HM605 X/Y Ablenkung defekt“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne