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ME6206.pdf
ME6206 Low power consumption,Low ESR Cap.Compatible ME6206 Series General Description Features ME6206 series are highly precise, low power l HighlyAccurateÿ▯▯ 2%– consumption, high voltage, positive voltage
in „Spannungsregler 5 V auf 3,3 V bei < 1 mA“ · Analoge Elektronik und Schaltungstechnik ·
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TX6206.pdf
TX6206 Features l Low power consumption l Low Quiescent Current: 5uA at 6V l Low voltage drop l Output voltage accuracy: tolerance ±2% l Low temperature coefficient Applications l Battery-powered equipment l Portable AV systems l Reference voltage sources l Mobile phones l Cameras,video cameras l Portable games General Description TX6206 series are a highly precise, lower current limiter’s foldback circuit
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TX6206.pdf
TX6206 Features l Low power consumption l Low Quiescent Current: 5uA at 6V l Low voltage drop l Output voltage accuracy: tolerance ±2% l Low temperature coefficient Applications l Battery-powered equipment l Portable AV systems l Reference voltage sources l Mobile phones l Cameras,video cameras l Portable games General Description TX6206 series are a highly precise, lower current limiter’s foldback circuit
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L6207_AN.pdf
AN1762 APPLICATION NOTE L6205, L6206, L6207 DUAL FULL BRIDGE DRIVERS by Vincenzo Marano Modern motion control applications need more flexibility that can be addressed only with specialized IC products. The L6205, L6206, L6207
in „Schrittmotor mit L6207“ · Mikrocontroller und Digitale Elektronik ·
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en.CD00004482.pdf
AN1762 APPLICATION NOTE L6205, L6206, L6207 DUAL FULL BRIDGE DRIVERS by Vincenzo Marano Modern motion control applications need more flexibility that can be addressed only with specialized IC products. The L6205, L6206, L6207
in „Treiberstufe fuer Faulhaber Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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L6206.pdf
10% t D01IN1316 t t FALL RISE tD(OFF)EN tD(ON)EN DocID7617 Rev 2 9/31 31 Electrical characteristics L6206 Figure 4. Overcurrent detection timing definition OUT OCD Threshold t V OCD 90% 10% D01IN1222 t t t OCD(ON) OCD(OFF) 10/31 DocID7617 Rev 2 L6206 Circuit description 5 Circuit description 5.1 Power
in „l6206 Datenblatt Fehler?“ · Mikrocontroller und Digitale Elektronik ·
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CM6206_Datasheet_v2.1_en.pdf
PHONES 29 VBIAS 45 SPDIFI 14 CS 30 AVSS1 46 MUTER 15 SK 31 HPOL 47 MUTEP 16 DR 32 HPOR 48 SPDIFO 1 R L R L R L S A F D R L R R S S P P V B R V I I F F R R H H A V V A L L 36 35 34 33 32 31 30 29 28 27 26 25 AVDD2 37 24 MICR SSOL 38 23 MICL SSOR 39 22 AVSS3 CENO 40 21 DVDD1 LFEO 41 CM6206 20 REGV VOLUP2
in „soundchip mit mehr als stereo“ · Mikrocontroller und Digitale Elektronik ·
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cm6206_2_3.pdf
PHONES 29 VBIAS 45 SPDIFI 14 CS 30 AVSS1 46 MUTER 15 SK 31 HPOL 47 MUTEP 16 DR 32 HPOR 48 SPDIFO 1 R L R L R L S A FD RL R R S S P P V B R V II F F R R H H A V V A LL 36 35 34 33 32 31 30 29 28 27 26 25 AVDD2 37 24 MICR SSOL 38 23 MICL SSOR 39 22 AVSS3 CENO 40 21 DVDD1 LFEO 41 CM6206 20 REGV VOLUP2 43
in „USB Stereo Eingang Mikro oder line-in“ · Mikrocontroller und Digitale Elektronik ·
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cm6206_2_3.pdf
PHONES 29 VBIAS 45 SPDIFI 14 CS 30 AVSS1 46 MUTER 15 SK 31 HPOL 47 MUTEP 16 DR 32 HPOR 48 SPDIFO 1 R L R L R L S A FD RL R R S S P P V B R V II F F R R H H A V V A LL 36 35 34 33 32 31 30 29 28 27 26 25 AVDD2 37 24 MICR SSOL 38 23 MICL SSOR 39 22 AVSS3 CENO 40 21 DVDD1 LFEO 41 CM6206 20 REGV VOLUP2 43
in „PC Sound-Hardware: CD-Laufwerk“ · PC Hard- und Software ·
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CM6206_Datasheet__v2.3_1_.pdf
PHONES 29 VBIAS 45 SPDIFI 14 CS 30 AVSS1 46 MUTER 15 SK 31 HPOL 47 MUTEP 16 DR 32 HPOR 48 SPDIFO 1 R L R L R L S A FD RL R R S S P P V B R V II F F R R H H A V V A LL 36 35 34 33 32 31 30 29 28 27 26 25 AVDD2 37 24 MICR SSOL 38 23 MICL SSOR 39 22 AVSS3 CENO 40 21 DVDD1 LFEO 41 CM6206 20 REGV VOLUP2 43
in „USB-Soundkarte zu einem Spannungslogger umbauen, wie die Eingänge schützen?“ · Mikrocontroller und Digitale Elektronik ·
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OM6206U_Z.pdf
Nov 14 23 Philips Semiconductors Product specification 65 × 102 pixels matrix LCD driver OM6206 handbook, full pagewidth LCD (65 102 pixels) 33 row drivers 102 column drivers 32 row drivers E N T OM6206 S O IN 3 2 1 1 2 D D D D D D S S L L L V V V V V V V V 5(1) C VDD1 VDD1 CVLCD I/O CVDD2 VDD2
in „Display VG-G090651 von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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LM6206N3.pdf
2008.03.25 CYStech Electronics Corp. Revised Date : Page No. : 1/10 Low Dropout CMOS Voltage Regulators LM6206N3 SOT-23 Product Description The LM6206N3 series is a set of three-terminal high current low voltageregulator implemented in CMOS technology. They can deliver 250mAoutput current and allow an input
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
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kb6206.pdf
89 (TOP VIEW) (TOP VIEW) Block Diagram VIN V OUT Current Limit Voltage Reference VSS Marking Rule 6206A xxxx xxxx/ MN SOT-23 (TOP VIEW) SOT-89 (TOP VIEW) xxxx: Date Code MN : Output Voltage(e.g. 33=3.3V) March 2007 2 KB6206 Kingbor Technology Co.,Ltd TEL:(86)0755-83095458 FAX:(86)0755-88364052 KB6206
in „[S] Bezugsquelle KB6206“ · Markt ·
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Torex_XC6206.pdf
XC6206 Series ETR0305_006 ■GENERAL DESCRIPTION The XC6206 series are highly precise, low power consumption, 3 terminal, positive voltage regulators manufactured using CMOS and laser trimming technologies.
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XC6206.pdf
XC6206 Series ETR0305_008 ■GENERAL DESCRIPTION The XC6206 series are highly precise, low power consumption, 3 terminal, positive voltage regulators manufactured using CMOS and laser trimming technologies.
in „Welches IC ist das ?“ · Analoge Elektronik und Schaltungstechnik ·
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XC6206.pdf
XC6206 Series ETR0305_007 ■GENERAL DESCRIPTION The XC6206 series are highly precise, low power consumption, 3 terminal, positive voltage regulators manufactured using CMOS and laser trimming technologies.
in „IoT mit ATMEGA und SIM800L, Bienen Beute,“ · Mikrocontroller und Digitale Elektronik ·
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FT6206_Touchcontroller.pdf
.............. ..........................................11 5.1 PACKAGE NFO RMATION OF QF N-5 X5-40L PACKAG E................................................11................................. 5.2 PACKAGE NFO RMATION OF QF N-6 X6-48L PACKAG E.................................................. .......
in „Touchcontroller FT6206 Gestensteuerung“ · Mikrocontroller und Digitale Elektronik ·
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SONY_KDL-32_40_46EX600_Chassis_AZ1-K.pdf
JLJ104 R PH6300 O A R6308R6308 D6203 JL6200 R 6 S a S 6 JW6014 D6203 JL6204 JL6200 R 5 0 3 K F JL6301L6301 4 JL6204 C6205 T6201 D6204 6 3 4 C6110 C6106 EY6102 5 D4204 T6201 C6205 4 A H R6116 C 5 C6212 0 6 R6111 G L S 6 0 C6206 5 5 4 G B 2 R6879R6879 R6116 C6109 D6206 6 D6205 4 L R 2 0 R6315R6315 C6109
in „Sony LCD KDL46-EX500 --- Kurzschluss/defektes Bauteil“ · Mikrocontroller und Digitale Elektronik ·
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Typenschild eines Elektromotors
M/C No. XADD10023TOP Wt 28.0kg FRAME PA100L S/N ITA11053 AMB 50 °C Th. Cl. F DUTY S1 EFF(IE3) 87.72 COS Ø 0.72 POLE 4 PTC kW(HP) 3.00(4.00) 3.45(4.58) V 230Δ/400Δ 265Δ/460Δ A 11.9Δ/6.9Δ 11.9Δ/6.9Δ Hz 50 60 RPM 1465 1758 BRG. DE/NDE 6206ZZ/6206ZZ
in „Asynchronmaschine macht Geräusche: Klicken?“ · Analoge Elektronik und Schaltungstechnik · · Fotos
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FT6236.pdf
Systems Co.,Ltd . All rights reserved Version 0.3 ︱Page 13 of 18 5.3 Package Information of QFN-6x6-48L Package Millimeter Item Symbol Min Type Max Total Thickness A 0.5 0.55 0.6 Stand Off A1 0 0.035 0.05 Mold Thickness A2 ---- 0.4 0.425 L/F Thickness A3 0.152 REF Lead Width b 0.15 0.20 0.25 Body Size
in „LilyGo T-Watch 2020 v1 Micropython“ · Mikrocontroller und Digitale Elektronik ·
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Bestueckungsliste.txt
150nF 50V 10% X7R 0805FCF 150N 0,03 € D1 SS14 SD-SMA SMA Schottky Diode 40 V, 1 A SS 14 VIS 0,14 € L1 DJNR6045-150 15uH CD54 CD54 SMD-Power-Induktivität DJNR6045-150 0,75 € OK1 PC814S SFH6206 DIL4-SMD Optokoppler-AC 5kV 35V 50mA >20% SMD4, AC Input LTV 814S 0,27 € OK2 PC814S SFH6206 DIL4-SMD Optokoppler-AC
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2706_SCH.pdf
此电阻不贴 ZPLL_VDDA X2 32.768K R34 R35 LCD_D3 17 DB3 LCD_D9 17 DB10 2 7 10K 10K LCD_D4 18 DB4 LCD_D10 18 L17 600R/100MPHY_VDDA C55 C56 OSCO CLKOUT LCD_D5 19 DB5 LCD_D17 19 DB11 U10 INT 3 6 SCL/FLASH_CS2 LCD_D6 DB6 LCD_D11 20 DB12 BATT U9 XC6206P302MR L18 600R/100M INT SCL LCD_D7 20 DB7 LCD_D12 21 DB13 3 1
in „Handydummy (Attrappe)mit richtigem Display - Sony Ericsson Vivaz“ · Mikrocontroller und Digitale Elektronik ·
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FT6x06_AN_public_ver0.1.3.pdf
..........................................................................................6 2.1 FT6206GMAtypical application schematic for voltage of 2.8~3.6V.....................................7 2.2 FT6306DMB typical application schematic for voltage of 2.8~3.6V.....................................7
in „Suche Datenblatt: TF6206 (capacitive touch controller)“ · Mikrocontroller und Digitale Elektronik ·
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Nahaufnahme einer grünen Leiterplatte mit Bauteilen
C20 C34 C36 C39 GND TP12 +AVDD C45 C22 TP14 Q2 AGND TP13 C29 L10 X2-1 X12-2 X17-2 X17-1 IC5 C18 TP19 TP21 C27 R43 TP37 L9 C42 TP23 TP20 R44 C19 R22 TP25 TP34 Q4 TP24 TP35 R37 D3 Fump TP24 C14 3.3V IC3 X15-2 X15-1 Valve L2 D2 C6 IC2 GND X18-2 Back light Q5 X19-1 Buzzer X18-1 3R30 R45 R48 6206A 2037/33 TP5 X19-2 X18-2 +
in „Reparatur Sanitas SBM36 Blutdruck Messgerät“ · Analoge Elektronik und Schaltungstechnik · · Platinenfotos
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Schaltplan eines Mikrowellen-Steuerungsmoduls
6204 5101/3+8 no pin 7133/3 no pin maybe LNK6xx K1 5101a 5101b 5101c 5101d 1 6206 12V? 7137 50Hz? 7134 5101d D 2202 J8 3203 100k? 3100 NTC 2140 3140 C 6105 R 5101a 7133/4_D L 2299 3199 C 620x R L1 +5V? 6203 D 6105 1 7133/4_D 3135 7 3144 2k2 817C 9 620x D 3146 R 3143 R 2xxx C 6201
in „Bauknecht Mikrowelle MW59MB Überspannung Spannungswandler“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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Frequenznormal_SCH.pdf
9 2 1 2 3 4 RESET! SDI 7 K8 3 8 1 R 72 4 LDAC! SYNC! 7 C GND SCLK 5 6 16LED- 4 15LED+ 2 D2 D 14D7 L 1 13D6 K 12D5 Y 11D4 A D3 L D4 10 P 1 9D2 I k k D1 - 21 1 5 3 S1a 1 K7 IC4 32 31 30 29 28 27 26 25 8 D µ2 2 1 0 6 5 4 3 2 7D0 C 2 PD3/OC2B P P P P P P P P PC1 E L 1 Encoder 1 T D D e L A/ 24 6 02 2 C
in „Ein minimalistisches GPS-Frquenznormal“ · Projekte & Code ·
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FA_SIM800L_3.pdf
BATT_HOLDER V 12 PD0 31 PIN_0 3 2 TEMP_DATA PB0 PD1 PIN_1 Reed GND P1 150 13 PB1 PD2 32 REED TEMP 865-XC6206P362MR-G 14 PB2 PD3 1 LED1 R2 15 PB3 PD4 2 UC_RXD GND Red 16 PB4 PD5 9 UC_TXD GND 120 17 PB5 PD6 10 SIM_SWITCH GND 7 11 LED2 R3 8 PB6 PD7 Green PB7 3 GND 5 GND_2 21 GND_3 GND GND Type FTDI Sim800L mit
in „IoT mit ATMEGA und SIM800L, Bienen Beute,“ · Mikrocontroller und Digitale Elektronik ·
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Component_tester_T7-dreieck.pdf
C C K A E D D D D V S C N { O C C D 0 { N E E N C VCC_{d} MOSI I SCK B B B B B N G ~ I V S S A ~ G L L G N } } 1 } } GND J SS P P P P P 1 1 1 1 1 9 8 7 6 5 4 3 2 1 +3V3 { { { { VCC 4 U3_{d} N 2 1 J1_{d} J3 TP1 d C C G C C C23 TP2 _ 3 2 VO VI 3 GND 4 3 2 1 0 9 8 7 6 5TP3 4 5 XC6206 +5V C 4 4 4 4 4 3
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T7-mod-obelix2007.pdf
D S C E D + - D C P TL431 C N { V C C D 0 { N E E N C V MOSI I SCK 4 3 2 1 0 N G ~ I O V S S A ~ G L L G N VCC_{d} } } 1 } } GND 4 ~{SS} P P P P P 4 3 2 1 0 9 8 7 6 5 4 3 2 1 +3V3 { { { { J VCC 1 1 1 1 1 _ U1_{d} D _ _ J1_{d} J3 } C C G C C C23 TP1 TP2 { 3 2 VO VI 3 GND TP3 5 XC6206 +5V C 4 4 4 4 4
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T7-mod-obelix2007.pdf
2 U2 S C E + - C P TL431 C N C V C C D 0 R N D D N C V MOSI I SCK 4 3 2 1 0 N G ~ I O V S S A ~ G L L G NE VCC_{d} GND 4 SS B B B B B 4 3 2 1 0 +3V3 d d 1 d d J P P P P P VCC 1 1 1 1 1 9 8 7 6 5 4 3 2 1 _ U1_{d} D _ _ } 4 3 N 2 1 J1_{d} J3 C23 TP1 TP2 { 9 C 2C G 3 C C GND TP3 5 3 VO XC6206I C 4 3 2
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T7-mod-obelix2007.pdf
D S C E D + - D C P TL431 C N { V C C D 0 { N E E N C V MOSI I SCK 4 3 2 1 0 N G ~ I O V S S A ~ G L L G N VCC_{d} } } 1 } } GND 4 ~{SS} P P P P P 4 3 2 1 0 9 8 7 6 5 4 3 2 1 +3V3 { { { { J VCC 1 1 1 1 1 _ U1_{d} D _ _ J1_{d} J3 } C C G C C C23 TP1 TP2 { 3 2 VO VI 3 GND TP3 5 XC6206 +5V C 4 4 4 4 4
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Component_tester_T7-dreieck.pdf
D D D V MOSI I SCK 4 3 2 1 0 C N { O C C D 0 { N E E N C VCC_{d} OVP B B B B B N G ~ I V S S A ~ G L L G N +3V3 } } 1 } } GND J ~{SS} P P P P P VCC 1 1 1 1 1 9 8 7 6 5 4 3 2 1 { { D { { 4 U3_{d} N 2 1 J1_{d} J3 C23 d C 2C G 3 C C GND TP2 _ 3 VO VI 4 3 2 1 0 9 8 6 5TP3 4 5 XC6206 +5V C 4 4 4 4 4 3 3
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Component_tester_T7-dreieck.pdf
D D D V MOSI I SCK 4 3 2 1 0 C N { O C C D 0 { N E E N C VCC_{d} OVP B B B B B N G ~ I V S S A ~ G L L G N +3V3 } } 1 } } GND J ~{SS} P P P P P VCC 1 1 1 1 1 9 8 7 6 5 4 3 2 1 { { D { { 4 U3_{d} N 2 1 J1_{d} J3 C23 d C 2C G 3 C C GND TP2 _ 3 VO VI 4 3 2 1 0 9 8 6 5TP3 4 5 XC6206 +5V C 4 4 4 4 4 3 3
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copter1-2.pdf
MOTOR1 MOTOR2 MOTOR3 3 MOTOR4 V + 1 2 V D D 3 L L 4 5 6 7 8 + 8 3 1 1 1 1 1 2 3 + 2 3 4 5 6 JP2 2 2 2 2 2 D 2 1 1 29 AIN1/P1.0 / / / / / V TX/CTSN/P0.0 26 R R T 2 30 M M M M M 25 A 3 31 RX/AIN2/P1.2 W W W W W SPISS/RX/RTSN/P0.1 24 BK_CSN U 4 32 TX
in „ATTiny85 Drohne“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan einer Elektronikschaltung
D14 D15 D16 D17 D18 D19 VCOM IREF GND VOP GND C6 4.7uF D1 IN5819(S4) R2 100KΩ R3 4.7KΩ R4 4.7KΩ VDD L1 10uH U1 ZC33 DIP5 HM1308 4 3 5 2 1 VCOM C5 4.7uF IREF R1 910KΩ GND SDA R7 4.7KΩ SCK R6 4.7KΩ RES R5 4.7KΩ C8 100nF J2 CON7 1 2 3 4 5 6 7 VCC GND VCC VDD Q1 XC6206("662K") 3 1 VDD 2 VOP VCOM C3 4.7uF
in „OLED Display 2.42'' SSD1309 SPI mit oder ohne Level Shifter“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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miniboard32.pdf
AA5(ADC5) D5 R1 PB7 3 PB7(SCK) ( ( B P P P PA6(ADC6) 31 PA6 9 VCC RST 4 RESET B B P PA7(ADC7) 30 PA7 L1 0VCC PB3 10K VCC 5 VCC P P Aref 29 D6 2K 6 GND GND 28 VCC Y1 12M 7 XTAL2 ATMEGA16/32 AVCC 27 PB2 8 XTAL1 PC7(TOSC2) 26 PC7 D7 C2 PD0 9 ) ) 25 PC6 D9 C1 PD1 10 PD0(RXD) 1 B A 1 ) ) ) )P)6(TOSC1) 24 TDI C5 C6 PB1 22P 22P PD2 11 PD1(TXD) T C C P C L A C M PC5(TDI) 23 TDO 104 104 D8 PD2(INT0) ( ( ( ( ( ( ( ( (PC4(TDO) 3 4 5 6 7 C N 0 1 2 3 Y2 32.768 PB0 P P P P P V G P P P P PC6 PC7 R4 2k TCK 1 2 GND TDO 3 4 VCC 1 1 1 1 1 1 1 1 2 2 2 C3 C4 TMS 5
in „ATMEGA32 Minimum System Board“ · Mikrocontroller und Digitale Elektronik ·
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Copter00.pdf
MOTOR1 MOTOR2 MOTOR3 3 MOTOR4 V + 1 2 V D D 3 L L 4 5 6 7 8 + 8 3 1 1 1 1 1 2 3 + 2 3 4 5 6 JP2 2 2 2 2 2 D 2 1 1 29 AIN1/P1.0 / / / / / V TX/CTSN/P0.0 26 R R T 2 30 M M M M M 25 A 3 31 RX/AIN2/P1.2 W W W W W SPISS/RX/RTSN/P0.1 24 BK_CSN U 4 32 TX
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
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Copter00.pdf
MOTOR1 MOTOR2 MOTOR3 3 MOTOR4 V + 1 2 V D D 3 L L 4 5 6 7 8 + 8 3 1 1 1 1 1 2 3 + 2 3 4 5 6 JP2 2 2 2 2 2 D 2 1 1 29 AIN1/P1.0 / / / / / V TX/CTSN/P0.0 26 R R T 2 30 M M M M M 25 A 3 31 RX/AIN2/P1.2 W W W W W SPISS/RX/RTSN/P0.1 24 BK_CSN U 4 32 TX
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
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Marantz_PM7000PM8000_Service.pdf
GREEN 3 To A 6212 J 7 110V 13 MAIN 6206 PM8000ONLY p 3 6213 K 6 6214 K 7 (K) 1210 (K) 2 1N4003G 3217 -B 4 6216 L 7 BROWN BLACK 0V 14 1215 22R +VB 6302 K10 6207 1W 5 7302 J10 (K) 150C 5 T500mA 250V 0 0 V +56V -VB 9201 D13 H FUSEHOLDER (K)
in „Marantz Verstärker defekt“ · Analoge Elektronik und Schaltungstechnik ·
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HANDBOOK_Primary_Lithium_Cells_en.pdf
PRIMARY LITHIUM CYLINDRICAL CELLS page 18 | 19 Primary Lithium Cells 3.1 TYPES – TECHNICAL DATA e . l ) l t n , ) . s e t ) ) p N n ( n a w V h a u r e A ( T r i e i i d . m M u a r ( t d o a o c , 2 ( i c c i r N l N p ° t a n i e O v c 0 l c d W 2 CR 1/2 AA 6127 101 301 3 950 mAh–5.6 kΩ 10 11.5 CR
in „Knopfbatterie - Maximaler Entladestrom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Varta_HANDBOOK_Primary_Lithium_Cells_en.pdf
PRIMARY LITHIUM CYLINDRICAL CELLS page 18 | 19 Primary Lithium Cells 3.1 TYPES – TECHNICAL DATA e . l ) l t n , ) . s e t ) ) p N n ( n a w V h a u r e A ( T r i e i i d . m M u a r ( t d o a o c , 2 ( i c c i r N l N p ° t a n i e O v c 0 l c d W 2 CR 1/2 AA 6127 101 301 3 950 mAh–5.6 kΩ 10 11.5 CR
in „Wie kann man zwischen Spannungsquellen wechseln?“ · Mikrocontroller und Digitale Elektronik ·
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HausAutoTest.pdf
7 8 9 10 11 1 3 E 2 P 1 D C13 4 M G 100nF J J 2 3 4 3 Ub+ J 4 R MAX5035 LED JUMPER A 5 CAN_GND 1 8 L2 2 1 R 2 1 5V A 6 2 BST LX 7 5V R23 3 VD V_IN 150uH 1.4A D10 JP8 J E 7 CAN_H 3 SGND GND 6 2 1 XC6206P332MR LED S 8 CAN_L 4 5 CAP1 CAP2 8 R 3 VIN VOUT 2 3V3 2 1 GNDA FB ON/OFF 1 R 6 S 9 C9 U2 100uF D
in „Layout prüfen“ · Platinen ·
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HausAutoTest.pdf
1 2 3 4 5 6 7 8 9 10 11 1 3 E 9 2 P 8 C15 4 M E Ub+ 100nF J J S 7 3 J 6 5 MAX5035 LED A 4 GND 1 8 L2 2 1 2 JUMPER 1 A 4 3 2 BST LX 7 5V R 5V J CAN_GND VD V_IN 150uH 1.4A D10 R23 R 2 CAN_L 3 SGND GND 6 2 1 XC6206P332MR JP8 1 CAN_H 4 5 CAP1 0 CAP2 8 R 3 VIN VOUT 2 3V3 2 LED 1 FB ON/OFF 1 R 0 S R GNDA
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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HausAutoTest.pdf
5 6 7 8 9 10 11 1 3 E 9 2 P 8 C13 4 M E Ub+ 100nF J J S 7 3 J 6 D 5 G MAX5035 LED A 4 CAN_GND 1 8 L2 2 1 2 JUMPER 1 A 4 3 2 BST LX 7 5V R 5V J VD V_IN 150uH 1.4A D10 R23 R 2 CAN_L 3 SGND GND 6 2 1 XC6206P332MR JP8 1 CAN_H 4 5 CAP1 CAP2 8 R 3 VIN VOUT 2 3V3 2 LED 1 GNDA FB ON/OFF 1 R 6 S R C9 U2 100uF
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
5 6 7 8 9 10 11 1 3 E 9 2 P 8 C13 4 M E Ub+ 100nF J J S 7 3 J 6 D 5 G MAX5035 LED A 4 CAN_GND 1 8 L2 2 1 2 JUMPER 1 A 4 3 2 BST LX 7 5V R 5V J VD V_IN 150uH 1.4A D10 R23 R 2 CAN_L 3 SGND GND 6 2 1 XC6206P332MR JP8 1 CAN_H 4 5 CAP1 CAP2 8 R 3 VIN VOUT 2 3V3 2 LED 1 GNDA FB ON/OFF 1 R 6 S R C9 U2 100uF
in „Layout prüfen“ · Platinen ·
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m32_v14.pdf
C C2 XTAL1 PC7(TOSC2) PC7 2K D7 C PD0 PD0(RXD) ) ) ) PC6(TOSC1) PC6 R5C C1 PD1 PD1(TXD) 1 1 1 1 2 L A K SPC5(TDI) TDI C5 C6 PB1 22P 22P PD2 PD2(INT0) N C C C C C D C MPC4(TDO) TDO 104 104 2K D8 3 4 5 6 7 C D ( ( ( ( D D D D D C N C C C C PB0 R5D P P P P P V G P P P P Y2 PC6 PC7 2K TCK 1 2 GND VCC 32768
in „Was nehme ich nur?“ · Offtopic ·
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PDF
HausAutoTest.pdf
1 2 3 4 5 6 7 8 9 10 11 1 3 E 9 2 P 8 C15 4 M E Ub+ 100nF J J S 7 3 J 6 5 MAX5035 LED A 4 GND 1 8 L2 2 1 A 4 3 2 BST LX 7 5V R 5V J CAN_GND VD V_IN 150uH 1.4A D10 R17 R 2 CAN_L 3 SGND GND 6 2 1 XC6206P332MR 1 CAN_H 4 5 CAP1 0 CAP2 8 R 3 VIN VOUT 2 3V3 2 LED 1 FB ON/OFF 1 R 0 S R GNDA C11 U2 100uF D Q C31 S C33 D9 R18 0 330uF 1 V 0 5 U11 LED JP2 2 R 100nF E D,4V Kerko 1 1uF Kerko 2 1 R 1 5 R L 20mA R19 1 2 7 2 D7 LED JUMPER 2 1 R R20 GND U17 0 D8 1ULN2803 LED 14 SER QA 15 1 1B 1C 18 2 1 R 9 1 2 O 17 R15 QB 2B C 2C D6 D 8 Ub+ 11 SRCLK QC 2 3 3B 3C 16 LED I 7 5V 10 SRCLR QD 3 4 4B 4C 15 2 1
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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HausAutoTest.pdf
1 2 3 4 5 6 7 8 9 10 11 1 3 E 9 2 P 8 C15 4 M E Ub+ 100nF J J S 7 3 J 6 5 MAX5035 LED A 4 GND 1 8 L2 2 1 A 4 3 2 BST LX 7 5V R 5V J CAN_GND VD V_IN 150uH 1.4A D10 R17 R 2 CAN_L 3 SGND GND 6 2 1 XC6206P332MR 1 CAN_H 4 5 CAP1 0 CAP2 8 R 3 VIN VOUT 2 3V3 2 LED 1 FB ON/OFF 1 R 0 S R GNDA C11 U2 100uF D Q C31 S C33 D9 R18 0 330uF 1 V 0 5 U11 LED JP2 2 R 100nF E D,4V Kerko 1 1uF Kerko 2 1 R 1 5 R L 20mA R19 1 2 7 2 D7 LED JUMPER 2 1 R R20 GND U17 0 D8 1ULN2803 LED 14 SER QA 15 1 1B 1C 18 2 1 R 9 1 2 O 17 R15 QB 2B C 2C D6 D 8 Ub+ 11 SRCLK QC 2 3 3B 3C 16 LED I 7 5V 10 SRCLR QD 3 4 4B 4C 15 2 1
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest1808.pdf
www.lothar-miller.de/s9y/categories/40-Layout-Schaltregler 2 3 4 3 Ub+ J 4 R MAX5035 LED JUMPER A 5 CAN_GND 1 8 L2 2 1 R 2 1 5V A 6 2 BST LX 7 5V R23 3 VD V_IN 150uH 1.4A D10 JP8 J E 7 CAN_H 3 SGND GND 6 2 1 XC6206P332MR LED S 8 CAN_L 4 5 CAP1 CAP2 8 R 3 VIN VOUT 2 3V3 2 1 GNDA FB ON/OFF 1 R 6 S 9 C9 U2 100uF D
in „Layout prüfen“ · Platinen ·
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DS203V2.6_SCH.pdf
A A P P C C C 1A P N 2V8 1V2 I I I I I I I I B B I I I I I I I I I I 2 EN Led3 6 35 LED3- C A G G L V O D D D D D D Mode 18 PC3 O _ IS M _ 2 1 9 6 7 P P P P P P VDD 75 11 VCC _ _ I/O 64 H/L 3 5 36 L F I H/L 34 B B 4 5 1 1 A P P P 11 35 O O 15 MCO 3V6 Vdd Led4 LED4- 3.0"240*400 TFTLCD MCO 67 PC5 P BP
in „Oszilloskop aus STM32 und FPGA“ · Mikrocontroller und Digitale Elektronik ·