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PDF
panasonic-HA.pdf
(B) 28 0.30 EEEHAA220WAR (5) 2000 4 5.4 (B) 29 0.30 EEEHAA330WAR (5) 2000 33 5 5.4 C 43 0.22 EEEHA1A330AR (5) 1000 47 5 5.4 (C) 43 0.30 EEEHAA470WAR (5) 1000 100 6.3 5.4 (D) 71 0.30 EEEHAA101WAP (5) 1000 10 8 6.2 E 110 0.26 EEEHA1A101AP (7) 1000 6.3 7.7 D8 105 0.22 EEEHAA221XAP (5) 900 220 8 10.2 F
in „Kondensatortausch auf gebrauchter Platine“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
gh_usb_rev_a1.pdf
1 2 3 4 5 6 7 8 *****CPLD**** ****ISP1160**** A A CP11 VCC GND 6 PIP105 U1E 4 PIP104 P I U 1 TDI 3 PIP103 PIU1024 TDO 2 P I P 1 0 2 P I U 1 TCK 1 COP3 VCC 1 PIP101 PIU1010 TMS P3 Header 6 XC9572XL-10VQ44C 1 PIP301 F1F1 2 PIP303 10C1C1 C2 PIF101 PIF102
in „Grasshopper und USB-Host“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan einer Logikschaltung mit Transistoren
VCC R101 10k R109 47k U101A 74HC14 B0 A0 C101 1µ GND U105A 74HC86 U107A 74HC86 U101C 74HC14 R125 100k U101D 74HC14 C109 2µ U1DBA 74LS08 Q1D1 BSS138 R0 VDC R+ 1N4148 GND 100k R133 U105B 74HC86 mD01 R102 10k R110 47k U101B 74HC14 B1 A1 C102 1µ GND R118 100k U108B 74LS08 U101E 74HC14 U101F 74HC14 R126 100k C110 2µ U11A 74LS32 Q105 BSS138 R1 VDC R+ 1N4148 100k R137 GND
in „Ausschaltverzögerung für ein Relais“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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PDF
Samsung_SGH-P510_service_manual.pdf
2203-005482 C306 GH71-02208A ANT1 2203-005482 C202 2203-005482 C307 2203-005482 C100 2203-005482 C203 2203-005061 C308 2203-005482 C101 2203-005061 C204 2203-005061 C309 2404-001225 C102 2203-001383 C205 2203-000679 C310 2203-000812
in „OLED Disp aus SGH-P510 Telefon“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XCore407I.pdf
1 2 3 4 5 6 A A ETH C P O 11 3.3V 4 OSC1 3 ETH.R1 PIOSC10VCC OutputIOSC1030REPIETH0R101 B B B PIOSC10NC GND PIOSC102 3.3V P P P 50MHz 3.3V K 21_C5 U1_C6 U1_C721_C8OU10C I21_C1C121_C2C 31_C3C314 I L U1_C4C GND S C
in „STM32 Board von Waveshare“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Elektronische_Last_5.pdf
1 2 3 4 5 6 7 8 +5V +10V Temp LM35 X101-1 +10V X101-2 R101 7 1 IC102 0 3 D102 X101-3 3 8 1 k BAT42 1k 6 R 3 TEMP A 2 A GND C102 OP07CN 5 C104 4 4 C109 C111 C113 C115 C117 C119 C121 4 5 2 1 100n k R 100p 100n 100n 100n 100n 100n 100n 100n
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ELKO_100UF_50V_ELECT_HA_SMD_-_EEEHA1H101P.pdf
400 0.35 EEEHA0J102P (2) 500 1500 10 10.2 G 480 0.35 EEEHA0J152P (2) 500 22 4 5.4 (B) 28 0.30 EEEHA1A220WR (1) 2000 4 5.4 (B) 29 0.30 EEEHA1A330WR (1) 2000 33 5 5.4 C 43 0.22 EEEHA1A330R (1) 1000 47 5 5.4 (C) 43 0.30 EEEHA1A470WR (1) 1000 6.3 5.4 (D) 71 0.30 EEEHA1A101WP (1) 1000 10 100 8 6.2 E 110 0.26 EEEHA1A101P (2) 1000 220 6.3 7.7 D8 105 0.22 EEEHA1A221XP (1) 900 8 10.2 F 160 0.26 EEEHA1A221P (2) 500 8 10.2 (F) 200 0.26 EEEHA1A471UP (2) 500 470 10 10.2 G 270 0.26 EEEHA1A471P (2) 500 1000 10 10.2 G 400
in „SMD Sammelbestellung, SMD Starterpack, SMD Grundausstattung, SMD Bauteile, Baugröße 0805“ · Markt ·
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PDF
DS18S20_RS232.pdf
1 2 3 4 5 6 6 +5V 0 GND 1 0 2 A C104 C102 G +5V A 0 R DCD X7R-G1206 10/16 IC101 1 7 PL101-1 1 C X RXD 2 C1+ k PL101-2 V+ 3 0 , 1 +5V DTR 6 C1- 1 4 R +5V PL101-4 V- 4 C 4 GND D C2+ 1 IC111 PL101-5 G 5 D 1 C2- M VDD C111 PL101-6 DSR 14 11 S 2 Ausgang7 T1OUT T1IN 10 Eingang 1 DQ X7R-G1206 22/10 PL101-8 CTS Ausgan13 T2OUT T2IN 12 1 D111 3 Eingang R1IN R1OUT Ausgang 1 GND PL101-3 TXD Eingang8 R2IN R2OUT 9 9 1N4148 DS18S20 GND PL101-7 RTS MAX232 B GND B PL101-9 RI PL101-10 +5V X101 1 B 2 S 3 U 4 GND
in „Temperaturmessung DS18S20 mit MAX232 über Serielle Schnittstelle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
K2000-schematics.pdf
SHEET: OF 9 6 5 4 3 2 1 REVISION RECORD LTR ECO NO: APPROVED: DATE: D D RINPUT_LO WHT_BLK 24 22 20 S101-E AGND BLK INPUT_LO 2 R158 0.1R1% PE056 1 + - 4 R205 3 10R0.5% K103 2 AMP_HI WHT 3 4 19 S101-D +5V 2 8 9 21 R142 10R AMPS S101-H 7 C 4 1 23 C 10 6 EA2 1 UNAMED1 S101-A K103: 10mA ON 3 5 SENSE_LO GRY
in „Kalibrierung Keithley 2000 Multimeter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HF_Attenuator_Package_v1.pdf
901-9895-RFX Mouser 523-901-9895-RFX P130* 6 Pos. Pol. Recept. 0.1" SIP Amp/Tyco 3-641213-6 Digi-Key A30774-ND R100,R102 95.3/0.1w/1% 0805 Panasonic ERJ-6ENF95R3V Digi-Key P95.3CCT-ND R101 71.5/0.1w/1% 0805 Panasonic ERJ-6ENF71R5V Digi-Key P71.5CCT-ND R110,R112,R120,R122a,R122b,R124 60.4/0.1w/1% 0805
in „Bistabiles Relais ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HF_Attenuator_Package_v1.pdf
901-9895-RFX Mouser 523-901-9895-RFX P130* 6 Pos. Pol. Recept. 0.1" SIP Amp/Tyco 3-641213-6 Digi-Key A30774-ND R100,R102 95.3/0.1w/1% 0805 Panasonic ERJ-6ENF95R3V Digi-Key P95.3CCT-ND R101 71.5/0.1w/1% 0805 Panasonic ERJ-6ENF71R5V Digi-Key P71.5CCT-ND R110,R112,R120,R122a,R122b,R124 60.4/0.1w/1% 0805
in „bistabiles Relais für AVR/Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pana_HA.pdf
Distributor Click to View Pricing, Inventory, Delivery & Lifecycle Information: Panasonic: EEE-HA0J101PEEE-HA0J101WREEE-HA0J102PEEE-HA0J102UPEEE-HA0J152PEEE-HA0J220REEE- HA0J221WP EEE-HA0J330WR EEE-HA0J331P EEE-HA0J331XP EEE-HA0J470R EEE-HA0J470WR EEE- HA0J471UP EEE-HA1A101P EEE-HA1A101WP EEE-HA1A102P EEE-HA1A220WR EEE-HA1A221P EEE- HA1A221XP EEE-HA1A330R EEE-HA1A330WR EEE-HA1A470WR EEE-HA1A471P EEE-HA1A471UP EEE- HA1C100R EEE-HA1C101WP EEE-HA1C220R EEE-HA1C220WR EEE-HA1C221P EEE-HA1C221UP EEE- HA1C221XP EEE-HA1C330WR
in „Display vom Kühlschrank reparieren“ · Haus & Smart Home ·
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PDF
harman_kardon_avr145_sm.pdf
CJP03GA90ZY WAFER WAFER 1 CN20 CJP04GA90ZM WAFER WAFER 1 CN81 CJP08GA01ZY WAFER, STRAIGHT, 8PIN WAFER 1 CMY1A219 HEAT SINK (BRIDGE DIODE) HEAT SINK 1 CTB3+12JR SCREW SCREW 1 CMY1A219 HEAT SINK (BRIDGE DIODE) HEAT SINK 1 CTB3+12JR SCREW SCREW 1 PCB , DIGITAL IN/OUT CUP11916-1 Capacitors C750 CCEA1CH101T CAP ,
in „Relais beim AVR 145 von harman/kardon durch SSR ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
tft_data.c
0x23, 0x7f, 0x50, 0x49, 0x2f, 0xad, 0x14, 0x6e, 0x23, 0xb7, 0x3d, 0x16, 0x37, 0xc9, 0x6b, 0x84, 0x7a, 0xec, 0xd3, 0xa9, 0x38, 0x55, 0x5d, 0xdf, 0xbe, 0x5c, 0xdc, 0x3a, 0x6a, 0x6c, 0xd3, 0x68, 0xab, 0x54, 0xf9, 0x81, 0x6b, 0x29, 0x78, 0xa8, 0x2c, 0x0, 0x70, 0x44, 0xc, 0x49, 0x7, 0xea, 0x5, 0x4a, 0x5a
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Datei
main.c
<< 9) | (0b001001001); write_reg(reg); reg = (0b101 << 9) | (0b010010010); write_reg(reg); reg = (0b011 << 9) | (0b100100100); write_reg(reg); } reg = (0b000 << 9) | (0b010010010);; write_reg(reg); delay(40); } int a=0; int inca = 1; int b=4; int incb
in „LED-Cube 3x3x3 - mal ohne Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
handy_lcd_schaltplan.pdf
C199 S A BOSS101 1 N C128 0 0 T C119 1 0 C187 ANT100 2 Main Intenna pad ANT100 RFS100 1 2 VBAT G G AC 4 3 2 1 C101 C102 C103 C104 L100 C105 C106 C107 C108 C112 1 1 N T GSM_ANT_SEL0 20GPCTRL0 A B C116 5 2 GSM_ANT_SEL1
in „Altes Handy Display zum Basteln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
00311151.pdf
from these samples by the algorithm D. This feedforward neural network with sigmoidal activation aE shown in Fig. 5 is used as a target value for the function, the evaluation of aw has been determined 171. Q ,P I 0 0 Ji network training. Instead of using the 101 pairs of vP C C In order to speed up
in „blindleistungs berechnung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
Report.pdf
RF Conducted Emissions Ambient condition Temperature Relative humidity Pressure 23°C ~25°C 45%~50% 101.5kPa Method of Measurement The EUT was connected to the spectrum analyzer and WIFI test set via a power splitter with a known loss. The spectrum analyzer scans from 30MHz to the 10th harmonic of the
in „Wlan2Serial Modul für 5 euro“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Opcode_memory.vhd
- Ocode: "10111 101" Parameter:e41 | Dataselect: 101 (LT4_out) -- Integrator LT2 "00110000", -- Ocode: "00110 000" Parameter: b2 | Dataselect: 000 (data_in) "00001001", -- Ocode: "00001 001" Parameter: a2 | Dataselect:
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PDF
kuelkrper.pdf
2500 400 600 800 10008 23 TO-252 (D) g 0.56" 7 t ) 0.54" 21 u t (14.2mm) (13.7mm) v o w b 19 6 M/C aC r t i( 17 5 e e .e n b pb 15 t A 0.06" 0.03" Tm 4 s t (1.40mm) (0.80mm) eA 13 R e a a f C 11 3 rur T a p e a n d r e e l 9 h S T Pocket depth: 0.41" (10.50mm) Removable Kapton tape on 7 2 each part
in „SMD Kühlkörper“ · Platinen ·
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PDF
UCC25600_AppNote.pdf
dissipation at the maximum rated load For the assembly that was tested, heat sinks were used for D101, Q101, Q102, Q301, Q302, D301, & D302. Standard (off-the-shelf) heat sinks were used wherever possible. The exception was the input bridge rectifier, D101. To spread the heat and maintain a low profile
in „Resonanzkoverter: Tank dimensionieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FS-1050.pdf
0005 0024 0026 0023 2 FS-1050 2 - Frame 1017 1A01 1023 1061 1020 1070 1073 G101 1052 G112 1071 G203 1063 G11G112 1072 1008 G202 1060 1059 1077 G101 2017 G105 1078 2019 1046 G111 1120 1079 1062 1080 1050 G101 1118 1025 G201 1119 G105 1065 1048 2018
in „Kyocera mita FS-1050: Lautes Geräusch ca. 13s nach Einschalten“ · PC Hard- und Software ·
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PDF
AS-I_DMX.pdf
-3 LTC485 C4C 4Mhz ASI_CLPIV101PD3 (INT1) PC3 PIV1022 RTN RTN C PIC401 PIC402AL2 ASI_CSPIV101PD4 (OC1B) PC4 PIV1023 GND C ASI_RWPIV101PD5 (OC1A) PC5 PIV1024 GND 33p ASI_RxP16101PD6 (ICP) PC6 (TOSC1) PI26025 VDD FID PIV101PD7 (OC2)
in „AS-i AktorSensor - Interface IC's“ · Haus & Smart Home ·
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PDF
trc101.pdf
the chip, thus minimizing external component count and simplifying and speeding design-ins. Use of a low cost, generic 10MHz crystal and a low-cost microcontroller is all that is needed to create a complete link. The TRC101 also incorporates different sleep modes to reduce overall current consumption
in „bidirektionale RS232 Funkbrücke mit RFM12“ · Projekte & Code ·
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PDF
Panasonic_S_series.pdf
Dimensions in mm (not to scale) (Unit : mm) Example:6.3 V 22 µF (Polarized) Marking color: BLACK 0.3 max. A±0.2 K ( – 5 0 0 ) D H B ( φ Negative polarity marking (–) + L W ( Capacitance (µF) PressureRelief (φ10andlarger) ( ) Reference size Series indentification 22 (S) or (A) Size D L A, B H. I W P K 6S code
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PDF
datasheet.pdf
GAIN VS. CHARACTERISTICS (TYPICAL) COLLECTOR CURRENT (TYPICAL) 300 103 T=25°C 7 V C=5.0V ) 5 ( IB=3.0A E 3 I 240 h 2 IB=2.0A VCE=2.0V N N 102 E 180 IB=1.0A A 7 R G 5 U T C IB=0.5A E 3 T=25°C R 120 R 2 T=125°C T U 101 C C 7 L C 5 L 60 IB=0.1A D C 3 2 0 100 0 1 2 3 4 5 100 2 345 710 12 3 47 1022 3 47 103 COLLECTOR-EMITTER VOLTAGE V CE (V) COLLECTOR CURRENT I C (A) COMMON EMITTER INPUT SATURATION VOLTAGE CHARACTERISTIC (TYPICAL) CHARACTERISTICS (TYPICAL) V 101 ) 101 s 7 E 7 5 B 5 ) 4 ) 4 ( 3 a 3 I ( 2 C 2 VBE(sat) N VCE=2.0V V E 0 T=25°C E 0 R 10 G 10 VCE(sat)
in „Was ist das für eine Art Transistormodul?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
wound01_e.pdf
catalogs. wound01_e-02 ▯▯ 83 ■ELECTRICAL CHARACTERISTICS ■ DC Bias characteristics(Measured by HP4285A+42841A) LB1608 LBMF1608 LB2012 LBC2012 100 10 1000 100 100˘ 470˘ 4R7M 101˘ 100 ʥ 100M ʥ ʥ ʥ 100˘ H 10 H H H 10 ʤ ʤ ʤ ʤ e e 1R0M e 100˘ e n n 1 n 10 n c c c c 1R0M u 1R0M u u u I 1 I I 1R0M I 1 1 0.1
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PDF
ht1632c.pdf
1.20 20 June 28, 2011 HT1632C Command Summary Name ID Command Code D/C Function Default READ 1 1 0 A6A5A4A3A2A1A0D0D1D2D3 D Read data from the RAM WRITE 1 0 1 A6A5A4A3A2A1A0D0D1D2D3 D Write data to the RAM READ-MODIFY- WRITE 1 0 1 A6A5A4A3A2A1A0D0D1D2D3 D Read and Write data to the RAM SYS DIS 1 0 0
in „HT1632C mit welchen Bus ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LED_treiber_ht1632cv120.pdf
1.20 20 June 28, 2011 HT1632C Command Summary Name ID Command Code D/C Function Default READ 1 1 0 A6A5A4A3A2A1A0D0D1D2D3 D Read data from the RAM WRITE 1 0 1 A6A5A4A3A2A1A0D0D1D2D3 D Write data to the RAM READ-MODIFY- WRITE 1 0 1 A6A5A4A3A2A1A0D0D1D2D3 D Read and Write data to the RAM SYS DIS 1 0 0
in „HT1632C mit welchen Bus ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ht1632cv120.pdf
1.20 20 June 28, 2011 HT1632C Command Summary Name ID Command Code D/C Function Default READ 1 1 0 A6A5A4A3A2A1A0D0D1D2D3 D Read data from the RAM WRITE 1 0 1 A6A5A4A3A2A1A0D0D1D2D3 D Write data to the RAM READ-MODIFY- WRITE 1 0 1 A6A5A4A3A2A1A0D0D1D2D3 D Read and Write data to the RAM SYS DIS 1 0 0
in „HT1632C mit SPI steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ht1632cv120.pdf
1.20 20 June 28, 2011 HT1632C Command Summary Name ID Command Code D/C Function Default READ 1 1 0 A6A5A4A3A2A1A0D0D1D2D3 D Read data from the RAM WRITE 1 0 1 A6A5A4A3A2A1A0D0D1D2D3 D Write data to the RAM READ-MODIFY- WRITE 1 0 1 A6A5A4A3A2A1A0D0D1D2D3 D Read and Write data to the RAM SYS DIS 1 0 0
in „LED Matrix Schaltung gesucht sowie Bsp Programm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ht1632cv120.pdf
1.20 20 June 28, 2011 HT1632C Command Summary Name ID Command Code D/C Function Default READ 1 1 0 A6A5A4A3A2A1A0D0D1D2D3 D Read data from the RAM WRITE 1 0 1 A6A5A4A3A2A1A0D0D1D2D3 D Write data to the RAM READ-MODIFY- WRITE 1 0 1 A6A5A4A3A2A1A0D0D1D2D3 D Read and Write data to the RAM SYS DIS 1 0 0
in „C-Code -> Verständnis problem..“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ht1632cv130.pdf
HT1632C Cascade Control Flow Command Summary Name ID Command Code D/C Function Default READ 1 1 0 A6A5A4A3A2A1A0D0D1D2D3 D Read data from the RAM WRITE 1 0 1 A6A5A4A3A2A1A0D0D1D2D3 D Write data to the RAM READ-MODIFY- WRITE 1 0 1 A6A5A4A3A2A1A0D0D1D2D3 D Read and Write data to the RAM SYS DIS 1 0 0
in „8x8 RGB Matrix Ansteuerungsproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LGTP101.pdf
Temperature : -20 ~ 80 C - Storage Temperature : -40 ~ 100 oC LGCIT ITEM REVISION PAGE L G C I T LGTP-101 07 2 / 5 2. Typical Characteristic Data of LGTP-101 (1) Sensitivity 5 4 V 3 0 x t t O 2 1 0 0 20 40 60 80 100 o Object Temperature[ C] (2) Directivity 1.0 0.9 0.8 0.7 u 0.6 t O 0.5 e l a 0.4 o N 0.3
in „Thermopile mit LM358 verwenden?“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan Eingangsverstärker Stromquelle
Eingangsverstärker, Stromquelle, Amplificateur d'entrée, 200, R117, 10k, +5VA, 10, 11, 12, R15, 10k, 2000, T101, 2N2995A, T102, BC557B, 10, 20, +7.5V, C101, 10n, D101, D102, -5V, T103, 2N271A, R119, 27k, 10k, 10k, C102, 0.1u, C103, 0.1u, K101a, K101b, K102a, K102b, R121, 215k, R123, 170R, R124, 10k, D105, D104
in „empfindliches Ohmmeter gesucht“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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PDF
OM6206U_Z.pdf
bit V = 0) the X-address increments after each byte (see Fig.5). After the last The display RAM has a matrix of 65 × 102 bits. The X-address (X = 101) X wraps around to 0 and columns are addressed by the address pointer. The address ranges are: X from 0 to 101 (1100101) Y increments to address the next
in „Display VG-G090651 von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LGP42-10LF_EAY60869402_PLHF-L923A.pdf
I J101 2 4 6 32’,37’ 30 0 P C608 0 K E 3216 S O 220pF 6 5 % J102 LLP-100 2 K 1KV R 7 1 0 0 6 1 5 5 42’ B R 1 K 2 2 LF102 LF103 LLP-101 Q604 6 5 % H H LF101 OPTION1 OPTION1 MMBT2907A C R 7 1 0 A A OPTION1 1
in „LG Inverter Kapazitator abgebrannt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AL-KY-E-2020.pdf
101MK16S 2,700 18×40 0.014 0.038 3,800 EKY-500E□□ 272MM40S 120 10× 25 0.069 0.28 900 EKY-101E□□ 121MJ25S 15 5×11 0.88 3.5 165 EKY-630E□□ 150ME11D 150 12.5×20 0.062 0.18 1,100 EKY-101E□□ 151MK20S 33 6.3 11 0.35 1.4 265 EKY-630E 330MF11D 220 12.5 25 0.047 0.14 1,250 EKY-101E 221MK25S × □□ × □□ 56 8×11.5 0.22 0.88 500 EKY-630E□□ 560MHB5D 100 220 16× 20 0.048 0.15 1,350 EKY-101E□□ 221ML20S 82 8×15 0.16 0.64 665 EKY-630E□□ 820MH15D 270 12.5×30 0.042 0.13 1,500 EKY-101E□□
in „TL494 Step Up Wandler Regelkreis schwingt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
errorlog.txt
satisfied. !SUBENTRY 1 org.eclipse.equinox.p2.director 4 0 2008-11-06 11:22:08.845 !MESSAGE Cannot find a solution where both Match[requiredCapability: org.eclipse.equinox.p2.iu/org.eclipse.help/[3.3.101.v20080702_34x,3.3.101.v20080702_34x]] and Match[requiredCapability: org.eclipse.equinox.p2.iu/org.eclipse.help
in „AVR Eclipse Plugin 2.3“ · Mikrocontroller und Digitale Elektronik ·
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Datei
panel-simple.c
4, .vtotal = 768 + 4 + 4 + 4, .vrefresh = 60, }; static const struct panel_desc chunghwa_claa101wa01a = { .modes = &chunghwa_claa101wa01a_mode, .num_modes = 1, .bpc = 6, .size = { .width = 220, .height = 120, }, }; static const struct drm_display_mode chunghwa_claa101wb01_mode = { .clock = 69300
in „Linux RPI VC4 Driver - DRM NullPointer Exception“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tFXKSKyORc24h2V2.pdf
0 R R R R R R WL1BN0WL1B 1 0 R 1 DGND D101A D102A D103A D104A P0D101A0R P0D102A0R P0D103A0R P0D104A0R A A A A K P0D101A0G K P0D102A0G K P0D103A0G K P0D104A0G KR4N0KR4 1 1 1 P0D101A0K+ B P0D102A0+ B P0D103A0+ B P0D104A0+ B 5 0 5 1 1 1 S S S SW105
in „Risiko | Nicht?“ · Offtopic ·
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PDF
4b-esp8266_at_command_examples_en.pdf
+CIFSR:STAIP,"192.168.101.133" +CIFSR:STAMAC,"18:fe:34:a5:8d:c6" OK 4. Connect PC to the same router as ESP8266 is connected to. Using a network tool on the PC to create a UDP port. - For example, the PC's IP address is 192.168.101.116
in „ESP8266 USB Adapter an zwei Pc benutzen.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
device_list_hilo_all03_v9-12.pdf
> *82S100 *82S101 ABT(PLQ)22V10 LVT(P3Q)22V10 P3C18V8Z PHD16N8-5 *PHD48N22-7 PL22V10 PLC16V8 PLC18V8Z PLC20V8 PLC22V8Z *PLC415-16 PLC42VA12 PLHS16L8A/B PLHS18P8A/B *PLHS473 *PLS100 *PLS101 *PLS104 *PLS104A *PLS105 *PLS105A
in „PROM programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.c
, 79,80,81,82,83,84,85,86,87,88,89,90,91,92,93,94,95,96,97,98,99,100,101,102,103,104,105, 80,81,82,83,84,85,86,87,88,89,90,91,92,93,94,95,96,97,98,99,100,101,102,103,104,105,106, 81,82,83,84,85,86,87,88,89,90,91,92,93,94,95,96,97,98,99,100,101,102,103,104,105,106,107, 82,83,84,85,86,87,88,89,90,91,92,93,94,95,96,97,98,99,100,101,102,103,104,105,106,107,108
in „Programm startet neu bei Zugriff auf array“ · Mikrocontroller und Digitale Elektronik ·
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Datei
App_Gauges.c
App_WrCoCmd_Buffer(phost,LINE_WIDTH(10)); for (bi = 0; bi < 81; bi += 10) { cs(bi); for ( i = 2; i < 10; i += 2) { a = da(bi + i, 45); polar(phost, 220, a,px,300); polar(phost, 240, a,px,300); } } App_WrCoCmd_Buffer(phost,LINE_WIDTH(16)); for (i = 0; i < 91; i += 10) { cs(i); a = da(i, 45); polar(phost, 220, a,px,300); polar(phost, 250, a,px,300); } App_WrCoCmd_Buffer(phost,COLOR_RGB(255,255,255)); for (i = 0; i < 91; i += 10) { a = da(i, 45); polarxy(260, a, &tx, &ty,px, 300); Gpu_CoCmd_Number(phost,tx >> 4, ty >> 4,26,OPT_CENTER, i)
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PDF
ELKOS_FritzBox_Fon_WLAN_7270_V1.pdf
electrolytic capacitor 100 10 6,3 7,0 2,5 2,5 CapXon SK (Standard type, Low profile) 105 1000 90 mA (rms) @ 105 °C, 120 Hz SK101K010E070… SK101M010E070… 4 Radial lead electrolytic capacitor 1000 16 10,0 12,5 5,0 5,0 CapXon KM (Standard type) 105 2000 540 mA (rms) @ 105 °C, 120 Hz KM102K016G125… KM102M016G125
in „Defekte (Standard-)Elkos in Fritz!Box Fon WLAN 7270 durch Standard- oder Low-ESR Elkos ersetzen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Pana_FK.pdf
EEEFK1A471V (2) 500 680 8.0 10.2 10.5 F 600 0.16 0.19 EEEFK1A681P EEEFK1A681V (2) 500 1000 10.0 10.2 10.5 G 850 0.08 0.19 EEEFK1A102P EEEFK1A102V (2) 500 2200 12.5 13.5 13.8 H13 1100 0.06 0.21 EEVFK1A222Q EEVFK1A222V
in „Display vom Kühlschrank reparieren“ · Haus & Smart Home ·
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PDF
TEC.pdf
1 2 3 4 VCC C1C1 PIC101 PIC102 A VCC A 100nF CR44 V1V1 2 2V3V3 PIR402 PIR401 PIV102 PIV302 VCC 21 10k PIV101PIV103 PIV303PIV301 R2R2 IRLL2703PBF IRLL2703PBF 03 10k VCC R1R1 10k 20 U4 U1A1 0P12 PIU103+ 1 TL084CN 2 out1PIU101
in „Peltier-Regelung mit Strombegrenzung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
008-0335-0.pdf
470 471 3.6K 362 27.0K 273 200K 204 TAPE & REEL INFORMATION Reel 741X043 742C043 743C043 743C083 745C101 745X101 Diameter 740X043 741C083 742C083 741X163 742C163 746X101 744C043 744C083 745C102 745X102 7" 741X083 742X083 Parts Per 10,000 10,000 5,000 5,000 4,000 4,000 4,000 4,000 4,000 5,000 Reel Pitch
in „Widerstandsarray Pitch 0,65mm“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LG_L1733TR_L1933TR_Monitor_Service_manual.pdf
16V D714 0DSON00138A MMBD301LT1G600MV30V--1. C701 0CC101CK41A C1608C0G1H101JT100pF5%50V D715 0DD184009AA KDS184KDS184TPKEC-85V- C702 0CC101CK41A C1608C0G1H101JT100pF5%50V ZD701 0DZ560009GB BZT52C5V6S-(F)5.6V5.2TO6V C703
in „Monitor TFT und Röhre Computer“ · Analoge Elektronik und Schaltungstechnik ·