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Class-D_PWM_Amplifier_V2_0.pdf
GND 6 22k 100nF 1nF 1nF 0,233 5 + 1 1N4148WS 3 7 D Q11 1 W 6 - BC848 GND GNDGND L2 GND 8 2 þÿWE-PD_220µH L3 1 n.p. þÿWE-PD_220µH N R72 3 2 +12V 1 2 +12V_1 1 C38 VI VO 1 2 +5V_1 þÿ1µF E D 5 8 5 8 8 R73 E A 10k + + + + + D17 310R U17 1 R74 VU1B VU2C U6B VU12C VU10C 5 LM1117-ADJ -OPA1655 -OPA1656 -OPA1655
in „Class D Amp. Schaltplan überprüfen“ · Analoge Elektronik und Schaltungstechnik ·
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10134fd.pdf
C to 85°C Pin Configuration LT1013 LT1013 LT1013 TOP VIEW TOP VIEW TOP VIEW + – OUTPUT A 1 8 V+ V +INA 1 8 –INA 8 – + –IN A 2 – 7 OUTPUT B OUTPUT A 1 7 OUTPUT B V 2 7 OUTA +A A B + +IN A 3 – 6 –IN B +INB 3 + 6 V – B + –IN A 2 – + + – 6 –IN B –INB 4 – 5 OUTB V 4 5 +IN B +IN A 3 5 +IN B N8 PACKAGE 4 S8
in „LT1013 Unterschied D und P Package“ · Analoge Elektronik und Schaltungstechnik ·
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Schem3.pdf
4.7uF 3 8 V5GND V5GND 1 3 8V Versorgung V5VCC IC?B R? 7 IC? Reset SW V5V6C 330E IC?A 8 R? 6 20k 0.1% INA148 V5GND 1 R? R? 7 x 240E 2 10k 7 2 1M + 50k 50k V5GND IC? 74HC4511 DISP? KPSC03 2 330E 20k 0.1% 1 5 V BCD4.17 D1 C QA 13 R? 7 a C? C? C? 3 R? 10k R? R? BCD4.21 D2 V QB 12 R? 6 b 100nF 100nF 22uF R?
in „2 versch. Spannungen messen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
armbian_modules.txt
nct7802 ltc4245 max16065 ad7418 smm665 lm73 w83792d sch56xx-common pc87360 max1619 dme1737 ltc2990 ina2xx ftsteutates sht3x smsc47m1 powr1220 ds1621 stts751 tmp401 adt7410 lm80 sch5636 g762 adcxx adt7470 w83627hf nct6683 gl518sm max6650 emc2103 tmp103 lm78 w83781d max197 ads7871 adt7310 atxp1 w83773g adm1031 gl520sm adm1026 ad7314 adm1021 tmp421 max1111 f71882fg ina209 sht21 jc42 pcf8591 vt1211 sht15 hwmon-vid ds620 ntc_thermistor adt7462 lm92 ads1015 lm77 ltc2945 lm70 max6639 max31722 w83793 lm75 tc74 pc87427 ina3221 w83795 lm90 lm95241 nct7904 hih6130 lineage-pem
in „Samba auf Banana Pi Pro installieren“ · PC Hard- und Software ·
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PDF
LiveDesign_Schematics.pdf
220nF 10nF 10nF 220nF 10nF 220nF 10nF 10nF 220nF A FCLK FCLK GREEN[2..0] GREEN[2..0] 10K BLUE[2..0] BLUE[2..0] LED[7..0] LED[7..0] C2C C38C VSYNC 10uF DIG0_SEG[7..0] HSYNC VSYNC 220nF DIG0_SEG[7..0] DIG1
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Schaltplan.pdf
GNDGNDGND 0 C C L2_6/2.4C 3 LIN R 3 TE G 1 TP15M 4 COM E _M L _ GND IRS21867 GND I U6 S V G IC14 1 1 S INA282AIDR cr + 1 VCC LO 5 M_L3_6 _ S 7 M_H3_6 V T 1 8 Or 6 HO n + V_SUPPL> 2 -IN +IN 7 NV_SUPPLY_VOR_SHUNT 1S2 H3_VS 8 VS 4 0 3 GND REF1 6 G H3_VS H D 2 VB C 1 REF2 V+ D 0 1 R H3_6/2.2D HIN IC12 C 4 NC
in „SD Karte/SPI Problem ab 200A -> Störungen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L4940TS.pdf
, R2L 4Ω stereo operation the total power dissipation is 3.65W. θ JA= 20°C/W for both DDPAK and TO–220 packages mounted to 16in heatsink surface area. (5) Human body model, 100pF discharged through a 1.5kΩ resistor. (6) Machine Model, 220pF–240pF discharged through all pins. OPERATING RATINGS Temperature
in „Kondensator Audio Amp“ · Analoge Elektronik und Schaltungstechnik ·
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schema-electrique-1395717-renkforce-rf2000-imprimante-3d-appareil-pret-a-lemploi-banc-dimpression-chauffant.pdf
GND 3 10u 0805 587-2396-1-ND 1 1 1 1 L5 REF2940 C45 1 2 R30 33k 2 4 R31 33k 2 4 # # 0805 Wü326 185 220 TH1 C TH2 C U6 X30 X7 SERVO_1 3 x 2.54 2 OUT IN 1 1 2 3 C42 100n C43 100n 1 L6 3 C44 C46 C47 2 2 0805 Wü326 185 220 GND 100n 100n 10u 0805 587-2396-1-ND VSS VSS VSS VSS 1 3 X31 7 4 REF2920 3 x 2.54
in „Spannungseinbruch nach Spule“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Seite141.pdf
(O/Y) 5 U 1 2 5.6K 981-2A-5DS-SP7 R1254 R1268 1 SBL BI-AMP L/R s42 9 0 0 K 1 1 1 BLCAK | | C1010 | 220P/100 | 220P/100 | 220P/100 | 220P/630 | 220P/630 | C1038 C4115S 1 7 1 5 7 R 1 R1157 1 5.1K 5.1K C | | C1008 | | | | | | P R 4 R 1 4 5 IN16072AC1-T112 3 0 4 0 +--------+---------------+--------------
in „Welcher Kondensator ist das? Womit kann ich ihn ersetzten?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP6562.pdf
Window Comparators SOT-23-5, SC70-5 SOIC, MSOP OUT 1 5 V 1 8 V • Multi-vibrators DD OUTA DD VSS 2 + - -INA 2 -+ 7 OUTB +IN 3 4 -IN + - Design Aids +INA 3 6 -INB V SS 4 5 +INB • Microchip Advanced Part Selector (MAPS) • Analog Demonstration and Evaluation Boards MCP6561R MCP6564 • Application Notes SOT-23-5 SOIC, TSSOP OUT 1 5 V OUTA 1 14 OUTD Related Devices SS V DD 2 + - -INA 2 - + + - 13 -IND • Open-Drain Output: MCP6566/6R/6U/7/9 +IN 3 4 -IN +INA 3 +IND 12 VDD 4 11 VSS Typical Application +INC +INB 5 10 V V DD MCP6561U -INB 6 - + + - 9 -INC IN SOT-23-5 OUTB 7 8 OUTC V
in „Schmitttrigger mit MCP6562 unklare Abweichung“ · Analoge Elektronik und Schaltungstechnik ·
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LiveDesign_EB_Schematics-xilinx_spartan.pdf
C16S C17S C18S C19S C20S C21S C22S C23S HARD_TDO HARD_TDO MOUSECLOCK MOUSECLOCK VCC 470uF 16V10uF 220nF 220nF 220nF 220nF 10nF 10nF 10nF 10nF 10nF 10nF 10nF 10nF 10nF 10nF 10nF IO[35..0] RED[2..0] IO[35..0] GREEN[2..0] RED[2..0] FCLK BLUE[2..0] GREEN[2..0] C54S FCLK BLUE[2..0] 10uF A LED[7..0] VSYNC
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155762-da-01-en-LOGIK_IC_M74HC595B1R_STM.pdf
155 190 Time 4.5 50 15 25 31 38 ns (SCK - QH’) 6.0 13 21 26 32 PLH PHL Propagation Delay 2.0 60 175 220 265 Time 4.5 50 18 35 44 53 ns (SCLR - QH’) 6.0 15 30 37 45 PLH PHL Propagation Delay 2.0 60 150 190 225 Time 4.5 50 20 30 38 45 ns (RCK - Qn) 6.0 17 26 32 38 2.0 75 190 240 285 4.5 150 25 38 48 57
in „uC + 3 Schieberegister + 7-Segmentanzeige“ · Mikrocontroller und Digitale Elektronik ·
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Last_board_mixed.pdf
3 = g N P 2 IN- IN+ 7 3 * u G 5 O 3 GND REF1 6 + 2 1 R r A - 4 REF2 VS 5 = t NC OUT 1 2 1 h U e N INA240A2DR 4 O o V G B 4 3 0 v n A , a e 4 3 0 n r t w 3 3 r V V V > i , + p + p - W x n n 0 m a C 0 h 0 h 1 a n C 4 O 4 O b n v R 0 R 0 n e +8V r n ö S p g 3 0 h 0 h r S o V 4 O 4 O a i S +8V + R 0 R 0
in „Schaltplankontrolle Last- + HMI-Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD8610_8620.pdf
Unitygainstable Figure1.8-LeadMSOPand8-LeadSOIC_N Nophasereversal Dual-supplyoperation:±5V to ±13V OUTA 1 8 V+ –INA 2 AD8620 7 OUTB APPLICATIONS +INA 3 TOP VIEW 6 –INB (Not to Scale) Photodiodeamplifiers V– 4 5 +INB - ATE 7 0 Instrumentation Figure2.8-LeadSOIC_N Sensorsandcontrols Highperformancefilters Fast precision
in „Regelbare Stromqulle verstehen“ · Analoge Elektronik und Schaltungstechnik ·
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LT1170.pdf
functionsallowstheLT1170/LT1171/LT1172tobebuiltin Shutdown Mode Draws Only 50 A Supply Current astandard5-pinTO-3orTO-220powerpackageaswellas Flyback-Regulated Mode Has Fully Floating Outputs the8-pinpackages(LT1172).Thismakesthemextremely Comes in Standard 5-Pin Packages easytouseandprovides“bustproof”operationsimilarto
in „Bei Schaltregler nur Minimum- und Maximum-PowerSwitchStrom angegeben“ · Analoge Elektronik und Schaltungstechnik ·
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MG_Model_B__C___D_3_phase_kw.pdf
Voltage range 3 4.00 MG112MB2-C2 2 MG112MB4-C2 2 Frequency Voltage 3 5.50 MG132SB2-C2 2 MG132SC4-C2 2 50 220-240∆/380-415Y1 3 7.50 MG132SC2-C2 2 - - 60 220-255∆/380-440Y 3 11.0 MG160MB2-C2 2 - - 220-277∆/380-480Y 2 50 380-415∆ 380-440∆ 1 M h o 2-pole 4-pole 60 380-480∆ 2 d s w l s r 1MG 71/80 2MG 90 - 160
in „3Phasen Motoer an FU - Lagergeräusche?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Siemens_B4110.pdf
(8/76) .& . Bei allen Prüfungen muß die Schutzleiterverbindung sichergestellt sein. Hilfsonergie: 220 V AC (110 V AC) ± 10%, 45 - 65 Hz Schutzleiterwiderstandsm essung (R pE)(DIN VDE 0701/Teil 1) Alternativ für MM-Betrieb: 6 Stk 1,5V Alkali-Mangan-Batterien (IEC LR6) M e me th de: Konstantstromquelle
in „Reparaturversuch: Norma Unilap 701 X“ · Analoge Elektronik und Schaltungstechnik ·
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Siemens_B4110_TOC.pdf
(8/76) .& . Bei allen Prüfungen muß die Schutzleiterverbindung sichergestellt sein. Hilfsonergie: 220 V AC (110 V AC) ± 10%, 45 - 65 Hz Schutzleiterwiderstandsm essung (R pE)(DIN VDE 0701/Teil 1) Alternativ für MM-Betrieb: 6 Stk 1,5V Alkali-Mangan-Batterien (IEC LR6) M e me th de: Konstantstromquelle
in „Reparaturversuch: Norma Unilap 701 X“ · Analoge Elektronik und Schaltungstechnik ·
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01_Sicherungsautomaten.pdf
weicht aber in Modulbreite und Einbautiefe geringfügig ab. 1/42 Sicherungsautomaten Baureihe S 220 U 690 V AC S 220-K n 1 Auswahltabelle Pol- Bemes- Bestellangaben bbn Preis Rabatt-Gew. Verp. K zahl sungs- 40 12233 1 Stück grup- 1 St. einh. strom InA Kurzbezeichnung Erzeugnis-Nr. EAN A pe kg St.
in „Kurzschlussstrom“ · Offtopic ·
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Datei
Devices.txt
MPT3 4 MOUNT-PAD-ROUND3.0 4 MOUNT-PAD-ROUND2.8 4 MOC3052 4 ML16E 4 ML14 4 MCP23008SO 4 MAX481CSA 4 MAX220CPE 4 M12 4 M09VP 4 M09HP 4 LM3914N 4 L-EU0207/7 4 LED_3MM_PRINT 4 L297 4 L10P 4 KS16 4 IRF530 4 HF44HS 4 HD-N101 4 HC49/S 4 G09R 4 FT2232C 4 FRM12 4 F09VP 4 F09D 4 ELKO_10µF_35V 4 EGL-1D 4 D_MELF 4
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
Nexys4_DDR_schematic.pdf
J5 PGEC3/AN5/C1INA/VBUSON/RP18/CN7/R1720PIC_PGC2 I2 R1 C2IND/RP19/PMA3 /CN10/RG88C206R15872 49.9 SD_DAT3 1uF PGEC2/AN6/RP6/CN24/RB61820PIC_PGD2 100 RP27/PMA2/C2INC/CN11/RG9IC208 82 01 10V PGED2/AN7/RP7/RCV/CN25/PIIC2021
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PIC_32_MX_110_F_016_-_I-SO__11-2-3___SO_28_.pdf
TDI/RPB7/CTED3/PMD5/INT0/RB7 PGED3/RPB5/PMD7/RB5 14 15 PGEC3/RPB6/PMD6/RB6 PIC32MX210F016B PIC32MX220F032B PIC32MX230F064B PIC32MX250F128B PIC32MX270F256B MCLR 1 28 AV DD PGED3/VREF+/CVREF+/AN0/C3INC/RPA0/CTED1/PMD7/RA0 2 27 AV SS PGEC3/VREF-/CVREF-/AN1/RPA1/CTED2/PMD6/RA1 3 26 AN9/C3INA/RPB15/SCK2/
in „pic32 flash und i/o speed“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC_32M_X_220_F_032_B-50I-SP_____DIP_28_.pdf
TDI/RPB7/CTED3/PMD5/INT0/RB7 PGED3/RPB5/PMD7/RB5 14 15 PGEC3/RPB6/PMD6/RB6 PIC32MX210F016B PIC32MX220F032B PIC32MX230F064B PIC32MX250F128B PIC32MX270F256B MCLR 1 28 AV DD PGED3/VREF+/CVREF+/AN0/C3INC/RPA0/CTED1/PMD7/RA0 2 27 AV SS PGEC3/VREF-/CVREF-/AN1/RPA1/CTED2/PMD6/RA1 3 26 AN9/C3INA/RPB15/SCK2/
in „PIC32MX flash access time“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2019-02-22_SCH_ATMega_Eval_DEVEL_v0_2_.PDF
ANA_CUR 5 VIN SW 6 27k 3 IN+ BOOST 1 15 uH Strom : 500 mA max. C3 GND Rsense = 25 mR 4 EN VFB 3 100n R3 INA180A42DBVR Gain: 200V/V V3 52k3 CN1 CN2 X29 R5 Vmess = Imess*0.025Ohm*200 C16 C17 GND 2 PMLL4448 10 µF 10 µF 1 1 3k0_micro -> 5mV / mA 10 uF 10 uF 2 2 ->Output: 0-2.5V MCP16301T-I/CHY R4 GND 10k AKZ350
in „AD.wandler und FFT auf Atmega 128A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Unknown.pdf
SI-3000C Series SI-3000C Series 5-T e rm ina l,M u ltiF u n c tion ,F ull-M old ,L ow D ro po u tV olta g eD r op p e rT y p e Features • Compact full-mold package (equivalent to TO220) • Output current: 1.5A • Low dropout voltDI≤1V (aO=1.5A)
in „Totalausfall Panasonic AG-7350 (nur noch Hintergrundbeleuchtung der Zeigerinstrumente)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
All.txt
1 R2 220 R-EU_0207/7 0207/7 RESISTOR, European symbol 1 R2 220 R-EU_0207/10 0207/10 RESISTOR, European symbol 1 R2 220 OHMSCHER_WIDERSTANDSMD WIDERSTAND_SMD_0,25W_3,2X2,6 Standard Ohmscher Widerstand 1 R2 220k
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
CP_Robot_12b_sch.pdf
address 11 / 21 M3MOTOR_0 74HC14D R15 R10 1k X13 X14 1k IC2E 1 1 PaSsu1p 0 PaSsu01 0 21OuInt 4 3 aIna0 Pas 02 Pas 0 2 REFSW_L P P PaSsu3p 0 Pas 0 3 +5V REFSW_R 19OuInt 6 5 In 0 Pas 0 4 *PSK03 Pas 0 5 IC2F X7 PaSsu06 0 s PaSsu1p 0 +5V x a MOTOR_A0 20 Out 0 Pas 02 PSK06 Pas 03 22 Out 0 Pas 04 MOTOR_A1
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PDF
DometicColdMachine50-54-55-84-85-86-94-95-96-CS-NC15_IOM_4445100001_EMEA16_20xx-xx-xx.book.pdf
(GWP): Dimensions 386x155x130 220x155x220 220x230x177 (Wx H xD) in mm: Weight: 6.0kg 6.0kg 6.5kg 31 EN Technical data Coldmachine 94 95 96 Max.cooling area 400litres contents: Connectionvoltage: 12Vg or 24 Vg Coolant quantity: 60 g
in „Schaltsymbol“ · Fahrzeugelektronik ·
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PDF
AN_Hybrid_Kit_for_HP2_module_V1.1.pdf
499RPosZ PosZ 2 n R186 3 / Z R166 499R 9 3B 7 0 5 10K 7 6 C69 14 4A 4Y 13 C 1 8 C n 220pF/50V/COG 15 6 7 7 R 2 Zn R168 499R 4 4B D R R R R187 tbd 2 12 G N R188 90K9 G G AM26LS32ACD p p p 8 _ _ _ LPF 1 1 1 GND_ANA -3dB @ 1 MHz GND_DIG U R158 536R PosU C66 220pF/50V/COG GND_DIG C64 100p/50V/X7R Resolver V R160 536R PosV VANA50 C68 R216 220pF/50V/COG 33K VDIG50 GND_DIG U11A 4 GND_DIG +5V W R165 536R U11B V GND_ANA DGND C70 PosW + 3 +VO1 R220 0R_opt An AGND 220pF/50V/COG 3 4 5 6 R215 1 +INA 12V 12V GND_DIG 1 1 1 ANA_2 7 -INB 1K OUTA 2 R
in „Linksammlung für Leistungselektronik“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tas5729md.pdf
nF 330 pF LFILT 1.5 ▯F 10 N 10 N BSTRPA BSTRPC 18 C 4 PVDD SPK_OUTC 45 FILT 5 TEST1 PGND 44 CFILT 220 ▯F 0.1 ▯F 6 TEST2 SPK_OUTD 43 330 pF 18 LFILT 7 DR_INA BSTRPD 42 33 nF PVDD 8 DR_OUTA PVDD 41 9 DR_OUTB GVDD_REG 40 1.0 ▯F 10 DR_INB DR_SDI 39 0.1 ▯F220 ▯F System Processor 11 38 2.2 nF 1.0 ▯F DRVSS
in „Leistung und Bitanzahl für Musik via BT“ · Mikrocontroller und Digitale Elektronik ·
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Datei
modules_install_file_list_LK5.2-RC2.txt
hih6130.ko INSTALL drivers/hwmon/i5k_amb.ko INSTALL drivers/hwmon/hwmon-vid.ko INSTALL drivers/hwmon/ina2xx.ko INSTALL drivers/hwmon/ina209.ko INSTALL drivers/hwmon/ina3221.ko INSTALL drivers/hwmon/it87.ko INSTALL drivers/hwmon/jc42.ko INSTALL drivers/hwmon/lineage-pem.ko INSTALL drivers/hwmon/lm70.ko
in „Linux Kernel 5.1.1. auf dem BPi-R2“ · PC Hard- und Software ·
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PDF
Hantek_Tekway_Voltcraft_DSO_hw1007.pdf
PIRPIR10P0I1C1202C2IC1201/ C0470uF/ 35V 0100nF 0 CR 1 R10 5112 220pF 1kV PSUGND n 2O0 1 10 PIT1011 P13_10 PIL1PIL104 2 1 C 01CC3 PIL4PIL402 PSU+9 PIP130101 C2C 12 0COVD L4L4 PIP120102 220nF/275V 100R HER107 PIT10PIVD701 PIVD702 C0C171 C0C11 0C2121 PSU3.3 PIP130103
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sony_str-ks360_ks360s_ver-1.0_sm.pdf
27 C720 220p R702 -24.4 18 SEG5 IC700 GRID5 38 -27 C721 220p 470 17 SEG4 FLUORESCENT GRID4 39 6 7 -28.9 INDICATOR TUBE DRIVER -27 C722 220p E 16 SEG3 IC700 GRID3 40 C723 220p -26.7 15 SEG2 PT6315 GRID2 41 -27 -
in „Sony STR KS360S Verstärker geht auf Standby, LED blinkt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hantek_Tekway_DSO_v1.03.pdf
PIKF102X3 A C B RUN STOP GREEN LED CDF22 R07_505 SW-PB SW-PB SW-PB SW-PB SW-PB 1 2 3 PIDF2202 PIDF220RIR0705012 F0P 12P F3 DF2F D0 P D2 DF1F1 Pos V ch1 Pos V ch2 Pos H X X X X X X 1PS76SB21 1PS76SB21 AUTOLED CDF177 R07_60 F F F F F F 21 P3 20 PIDF17PIDF170PI1PIR070601 F2 U U U U U U U U U 220R KF2F3
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT3757_Boost-Sepic-Flyback-Invert.pdf
= 1.6V 100 kHz RT= 10.5k to GND, VFBX= 1.6V 1000 kHz RT Voltage V = 1.6V 1.2 V FBX MinimumOff-Time 220 ns MinimumOn-Time 220 ns SYNC Input Low 0.4 V SYNC Input High 1.5 V SS Pull-Up Current SS = 0V, Current Out of Pin –10 μA Low Dropout Regulator INTV CCRegulation Voltage l 7 7.2 7.4 V INTV Undervoltage
in „Datenblätter von Linear Technologies“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1510fc.pdf
HEIGHT (<0.5A CHARGING CURRENT100k *TOKIN OR MARCON CERAMIC SURFACE MOUNT 0.25% *** PANASONIC EEFCD1B220 0.25% **COILTRONICS CTX33-2 1510 F02 † OPTIONAL, SEE APPLICATIONS INFORMATION 1510 F01 †OPTIONAL, SEE APPLICATIONS INFORMATION Figure 1. 500kHz Smallest Li-Ion Cell Phone Charger (0.8A) Figure 2. Charging
in „Problem mit LT1510“ · Mikrocontroller und Digitale Elektronik ·
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PDF
onkyo_tx_nr_616_service_manual.pdf.pdf
1A-SEUL-TL250V 252397T ! <Notes> <MDC> : 120V,Canadian model <MDF> : 120V,Taiwanese model <MMP> : 220-240V,CE(European) country model <MMA> : 220-240V,Australian model <MMB> : 220-240V,UK model <MMQ> : 220-240V,Hong kong model <MMR> : 220-240V,Chinese model 2. Safety check out (U.S.A. model only) After
in „Onkyo verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ZN427.pdf
aresetto0,whichproducesanoutputvoltageofV REF/2romthe DAC. This is compared to the input voltage V INa decision is During a conversion the RD input will normally be held high to made on the next negative clock edge to reset the keep the three-state buffers in their high impedance state. Data can be read
in „A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
zn427E.pdf
aresetto0,whichproducesanoutputvoltageofV REF/2romthe DAC. This is compared to the input voltage V INa decision is During a conversion the RD input will normally be held high to made on the next negative clock edge to reset the keep the three-state buffers in their high impedance state. Data can be read
in „Austauschtyp gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Data_Sheet_LM561B_High_CRI_Rev.001.pdf
IIIIII IIIIIII IIII III III III IIIIII Material : Paper(SW3B(B)) SIZE(mm) TYPE L W H 7 inch 245±5 220±5 182±5 ① ① SIDE H A1 1 SY ★ CHIP LED SPMWHT541MD7WA ★ 0S0 A1★ 1SY 01 W II IIIIIII IIIIIII III IIIIII IIIIIII IIIIIIII GLAW 94001 / 1001 / 25,000s IIIIII IIIIIII IIII III III III IIIIII L http://www.samsungled.com
in „Ersatz LEDs für Smart TV“ · Mikrocontroller und Digitale Elektronik ·
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PDF
JESD84-B42.pdf
on page 73. JEDEC Standard No. JESD84-B42 Page 25 Power on Idle State CMD0 from all states except (ina) (idle) card is busy or Inactive host omitted voltage range CMD1 State (ina) CMD15 non-compatible voltage range cards, or if host cannot use Sector Access Mode Ready State in cards > 2GB card looses
in „MMC SD library FAT16 FAT32 read write“ · Projekte & Code ·
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PDF
LM393.pdf
View Pin Functions PIN NO. I/O DESCRIPTION NAME PDIP/SOIC/ TO-99 DSBGA OUTA 1 A1 O Output, Channel A -INA 2 B1 I Inverting Input, Channel A +INA 3 C1 I Noninverting Input, Channel A GND 4 C2 P Ground +INB 5 C3 I Noninverting Input, Channel B -INB 6 B3 I Inverting Input, Channel B OUTB 7 A3 O Output, Channel
in „Schaltung angucka“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM393.pdf
View Pin Functions PIN NO. I/O DESCRIPTION NAME PDIP/SOIC/ TO-99 DSBGA OUTA 1 A1 O Output, Channel A -INA 2 B1 I Inverting Input, Channel A +INA 3 C1 I Noninverting Input, Channel A GND 4 C2 P Ground +INB 5 C3 I Noninverting Input, Channel B -INB 6 B3 I Inverting Input, Channel B OUTB 7 A3 O Output, Channel
in „Acc-Sensor -> Filter/OPV -> ADC(µC) -> PC -> Filter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM393-N.pdf
View Pin Functions PIN NO. I/O DESCRIPTION NAME PDIP/SOIC/ TO-99 DSBGA OUTA 1 A1 O Output, Channel A -INA 2 B1 I Inverting Input, Channel A +INA 3 C1 I Noninverting Input, Channel A GND 4 C2 P Ground +INB 5 C3 I Noninverting Input, Channel B -INB 6 B3 I Inverting Input, Channel B OUTB 7 A3 O Output, Channel
in „LM393 Komparatorschaltung gescheitert“ · Analoge Elektronik und Schaltungstechnik ·
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lm393-n.pdf
View Pin Functions PIN NO. I/O DESCRIPTION NAME PDIP/SOIC/ TO-99 DSBGA OUTA 1 A1 O Output, Channel A -INA 2 B1 I Inverting Input, Channel A +INA 3 C1 I Noninverting Input, Channel A GND 4 C2 P Ground +INB 5 C3 I Noninverting Input, Channel B -INB 6 B3 I Inverting Input, Channel B OUTB 7 A3 O Output, Channel
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handy_lcd_schaltplan.pdf
C C225 0 3 5 L402 L400 1 0 0 R U R U 6 C 7 4 3 3 3 3 L601 5 1 4 C605 N 4 9 5 R311 0 7 8 C606 R300 C220 _V C R R 2 C C PT 3 3 2 R R604 2 0 C216 0 0 2 1 P R306 0 4 C521 R514 R515 2 4 9 2 7 7 5 4 4 4 L401 C418 1 0 9 R605 L204 TP_WLAN_RST_N 8 2 7 A TP_BT_RST_N C431 M 3 3 3 3 3 3 3 3 3 5 3 3 3 U R328 2 06
in „Altes Handy Display zum Basteln“ · Mikrocontroller und Digitale Elektronik ·
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Sager_D87P_Service_Manual_Part4.pdf
R_HP IN R289 14 GND s o C873 C836 20 GND a t n i APGND APGND 23 GND y h 2 2 [24] L_OUT+ APGND 15K 220P GND B S R R 220P 15K APA4835 JSPK3 R_OUT+ [24] JSPK4 2 2 2 2 L79 FCM1608K-121 L_OUT+ 3 22 R_OUT+ L74 FCM1608K-121 1 L78 FCM1608K-121 L_OUT+ R_OUT+ L75 FCM1608K-121 1 2 L_OUT- 10 15 R_OUT- CON2 2 T
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Datasheet_ADC_LTC2287.pdf
specifications are aA T 25°C. (Note 4) SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS + – V IN Analog Input RangeINA–AIN 2.7V < DD< 3.4V (Note 7) ● –0.5 to –1 V V IN,CM Analog Input Common Mode IN++AIN/2 Differential Input (Note 7) ● 1 1.5 1.9 V Single Ended Input (Note 7) ● 0.5 1.5 2 V I Analog Input Leakage Current
in „Programmieren des LTC2287 Dual 10-Bit ADCs“ · FPGA, VHDL & Co. ·
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Datasheet_LT3433.pdf
0.1V/DIV During the initiation of cold crank, the battery rail can be pulleddownto4Vinaslittleas1ms. Ina4V-60Vto5VDC/ DCconverter application(shownonthe first page of this 1ms/DIV 3433 AI04 data sheet) a cold crank transient condition, simulated witha1ms13.8Vto4Vinputtransition,yieldsregulation maintained
in „Burst Mode Lt3433“ · Analoge Elektronik und Schaltungstechnik ·
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515502_1__2_.pdf
OUTD 5 iSD-O 1 [5] SPI-SIMO 13 OUTC INC 4 iCLK-O 2 1 [5] SPI-CLK OUTB INB iGPIO 2 [5] SPI-STE 14 OUTA INA 3 3 3 4 4 15 GND2.15 GND1.2 2 5 5 16 VCC2 VCC1 1 J8 VCC_3.3V ISO7241A VCCI_3.3V GND IGND IGND C26 C27 0.1uF 0.1uF D3 Engineering 50V 50V 1057 E Henrietta Rd Rochester, NY 14623 10% 10% p. (585) 429-
in „Allgemeine Frage bezüglich Motor Treiber/Inverter“ · Analoge Elektronik und Schaltungstechnik ·