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schema_stm32_primer2_1_2.PDF
_ A F T D D D D D D R B VBAT RESET 14 NRST V V V V V V V V BOOT0 94 37 1 12MHZ 12 PB2/BOOT1 R12 C8 1 13 OSC_IN OSC_OUT 2 0R 100nF 2 PA13/JTMS/SWDIO 72 SWDIO AUDIO_I2S3_WS PA14/JTCK/SWCLK 76 SWDCLK 77 OSC32
in „STM32 USB Virtual COM Port“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan einer USB-Schaltung
J1, D1, TVS1, D-, D+, GND, C4, 47p, R2, R4, C3, 47p, OTG-DM, VDD, SD1, L1, 470nH, C50, 22uF, J2, TVS2, D2, D-, D+, GND, USBLC6-2, C44, 47p, R49, 22R, R50, 0R, OTG-DM, R52, 22R, R54, 47p, OTG-DP, TVS3, FB1, GND, FB, C47, 22uF, 16V, R3, 22R, R47, 22R, C2, 0R, R5
in „Altium Lizenzänderungen (2024)“ · Platinen · · Schaltpläne
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PDF
si1402dh.pdf
Delay Time td(on) 5 8 Rise Time tr V DD = 15 V, L = 15 Ω 12 23 I ≅ 1 A, V = 10 V, R = 6 Ω Turn-Off Delay Time td(off) D GEN g 13 23 ns Fall Time t 7 12 f Source-Drain Reverse Recovery Time t 15 25 rr F = 1.05 A, dI/dt = 100 A/µs Reverse Recovery Charge Q rr 7.5 12 nC Notes
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PDF
LEA-4x_Data_Sheet_GPS.G4-MS4-06143_.pdf
V Output pin voltage range Vout All 0 VDDIO V Output pin low voltage Vout_low All 0.4 V Iout = 1.5mA Iout = Output pin high voltage Vout_high All VDDIO-0.5 V -1.5mA USB VDDUSB (Pin 24) for USB operation Vddusb1 All 3.0 3.6 V VDDUSB (Pin 24) if USB not used (low) Vddusb0 All 0 2 V USB_DM, USB_DP VinU
in „ublox CR4 - kleine Frage RX-TX“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32H7XX_M_schematics.pdf
3V3 510R 3V3 DCMI_HREF PA4A4PI28027VDD VSS PIU7374 C222 GND DCMI_CH1 PAPA5PIU2029PA4/SPI6_NSS/DCMI_HSYNC VCAP PIU2072.2uF02 PA13_SWDIO DCMI_PCLK PAP6 PIU2030PA6/SPI6_MISO/DCMI_PIXCLK PA12/OTG_FS_DPO PIU2071 PA12/USB_DP DCMI_PWDN
in „Problem mit USB auf STM32H743“ · Mikrocontroller und Digitale Elektronik ·
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PDF
20120224183241077.pdf
A14 A13 A12 A11 A10 See R505h. 6.2.50. RAM Address End – Partial Display 2 (R505h) R/W RS CB15 CB14 CB13 CB12 CB11 CB10 CB9 CB8 CB7 CB6 CB5 CB4 CB3 CB2 CB1 CB0 PTE PTE PTE PTE PTE PTE PTE PTE PTE W 1 0 0 0 0 0 0 0 A18 A17 A16 A15 A14 A13 A12 A11 A10 PTDP0[8:0]: Set the physical starting position of partial display 1 on the LCD panel PTDP1[8:0]: Set the physical starting position of partial display 2 on the LCD panel
in „Handydummy (Attrappe)mit richtigem Display - Sony Ericsson Vivaz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF7401_IR.pdf
= 12V GSS Gate-to-Source Reverse Leakage -100 V = -12V GS Qg Total Gate Charge 48 D = 4.1A Q Gate-to-Source Charge 5.1 nC V = 16V gs DS Qgd Gate-to-Drain ("Miller") Charge 20 VGS = 4.5V, See Fig. 6 and 12 t Turn-On Delay Time 13 V = 10V d(on) DD r Rise Time 72 D = 4.1A t Turn-Off Delay Time
in „IRF7401 - Rds(On)?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A100_IRF7413_IR.pdf
@ T A 70°C Continuous Drain CurrenGS V10V 9.2 A I Pulsed Drain Current 58 DM PD@T =A25°C Power Dissipation 2.5 W Linear Derating Factor 0.02 mW/°C Single Pulse Avalanche Energency EAS 260 mJ dv/dt Peak Diode
in „MOSFET - Verständnisfrage“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
mig_7series_v1_9.ucf
4lanes_0.u_ddr_phy_4lanes/ddr_byte_lane_B.ddr_byte_lane_B/phaser_in_gen.phaser_in" LOC=PHASER_IN_PHY_X1Y13; INST "*/ddr_phy_4lanes_0.u_ddr_phy_4lanes/ddr_byte_lane_A.ddr_byte_lane_A/phaser_in_gen.phaser_in" LOC=PHASER_IN_PHY_X1Y12; INST "*/ddr_phy_4lanes_1.u_ddr_phy_4lanes/ddr_byte_lane_C.ddr_byte_lane_C/
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PDF
MCS8140_DataSheet_Rev1.1.pdf
I/O 8 mA PROG General purpose I/O line 11. 171 GPIO_12 GPIO I/O 8 mA PROG General purpose I/O line 12. 172 GPIO_13 GPIO I/O 8 mA PROG General purpose I/O line 13. 173 GPIO_14 GPIO I/O 8 mA PROG General purpose
in „Moschip Programierbarer Ethernet und USB Controller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds232bv16.pdf
3.3v Power to External Logic In Out Gnd 0.1uF Ferrite Bead 470R USB "B" VCC Connector 1 27R 2 3 26 13 30 0.1uF 3 V V V A 4 27R C C C V C C C 6 I C 10nF 3v3OUT C 33nF O FT232BM 8 USB DM 7 USB DP Figure 14 shows how to configure the FT232BM to interface with a 3.3V logic device. In this example, a discrete
in „kleiner FET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datenblatt_von_FT232BL.pdf
Powered Configuration FT232BL USB UART ( USB - Serial) I.C. 470R USB "B" VCC Connector 1 27R 2 3 26 13 30 0.1uF 3 27R FT232BM V V V A 4 C C C V C C C C 6 I C 3v3OUT O 33nF 4k7 8 USB DM 7 FT232BL USB DP 10k 1k5 5 RSTOUT# 4 VCC RESET# VCC A 14 G G G POWERCTL N N N + D D D 0.1uF 0.1uF 10uF 9 17 29 Decoupling
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PDF
A200_FT232BL.pdf
Powered Configuration FT232BL USB UART ( USB - Serial) I.C. 470R USB "B" VCC Connector 1 27R 2 3 26 13 30 0.1uF 3 27R FT232BM V V V A 4 C C C V C C C C 6 I C 3v3OUT O 33nF 4k7 8 USB DM 7 FT232BL USB DP 10k 1k5 5 RSTOUT# 4 VCC RESET# VCC A 14 G G G POWERCTL N N N + D D D 0.1uF 0.1uF 10uF 9 17 29 Decoupling
in „Schaltplan für FT 232BL überprüfen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Thomson-MLCC.pdf
inareducedsize Applications Tuning, coupling... Decoupling, filtering, energy storage... D IP P E DA N DM O U L D E DP R O D U C T S-K IN K IN G /T A P IN G /P A C K A G IN GC H A R A C T E R IS T IC S Leadsshape Typesof Min(bulk) orh Leadspacing Leadspacing Products Packaging Tapingheight Ho E=2.54mm E=
in „Kann Kondensatorrolle nicht korrekt identifizieren, hat jemant einen Tipp?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Epson_LCD_Dip-VQA.pdf
A7 6 A9 52 A14 D4 27 XD0 A3 26 A8 A6 7 A10 53 A13 D5 28 SV2 A4 25 A9 A5 8 A11 54 A12 D6 29 15 16 1-5V XD2 URD/ 24 A11 A4 9 A12 55 A11 D7 13 14 2-GND SV1 A5 23 OE/ A3 10 A13 56 A10 11 12 3-19,5V 13 14 XD3
in „G-LCD bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Oszi_Preise__eBay.txt
16002090576929.08.06 15:30:20 TEK 11802 20GHzSampling 481.00 OK 6065607556 20.06.06 00:09:12 TEK 7A13 1 37.38 keine angaben, Komperator 9722895485 13.05.06 11:06:11 TEK 7A13 105 1 22.22 keine Angaben , Differenz+Komperator 9736498772 11.06.06 08:24:16 TEK 7A13 105 1 59.99 OK,garantie, Differenz+Komperator
in „Oszi Preise bei eBay“ · Offtopic ·
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Datei
Fehlerhaft1.TXT
LCD frambuffer FRAMECFG=19200 FRAMECFG+BURST=-16758016 CLKVAL=7 In: serial Out: serial Err: serial dm9000 i/o: 0x30000000, id: 0x90000a46 No ethadr! Hit any key to stop autoboot: 1 0 ## Booting image at 20000000 ... Image Name: Image Type: ARM Linux Kernel Image (uncompressed) Data Size: 3028672 Bytes
in „embedded Linux startet nicht mit bad-blocks (NAND)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
APD5_Install_en_revF.pdf
install the shared printer on the client computer. From [Start] - [Devices and Printers], select [Add a printer]. 1 The "What type of printer do you want to install?" screen appears. Select 2 [Add a network, wireless or Bluetooth printer]. The "Select a printer" screen appears. Select a printer to be shared
in „Etikettendrucker - günstige Rollen?“ · PC Hard- und Software ·
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PDF
ixys_21N100Q.pdf
J 25°C to 150°C; R GS= 1 MΩ 1000 V V GS Continuous ±20 V V GSM Transient ±30 V G ID25 T C 25°C 21 A D (TAB) I T = 25°C, pulse width limited by T 84 A S DM C JM IAR T C 25°C 21 A G = Gate D = Drain S = Source TAB = Drain E AR T C 25°C 60 mJ E AS T C 25°C 2.5 J dv/dt IS ≤ DM, di/dt ≤ 100 A/µsDDV≤ VDSS
in „SMA SB4200TL-MS Reparatur“ · Analoge Elektronik und Schaltungstechnik ·
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Users-Manual-revised-4514377.pdf
U 128 Reserved 113 W S S S X T 115 USB_BOOT 3 2 1 0 _ T T e Reserved 114 A 129 A 130 A 131 A 132 L 133 D 134 O E135 E 136 A 137 A 138 N139 r 140 116 _ _ _ _ _ C E E N _ _ T e Reserved C C C C C 1 A I L E E B R S S S S S D W W W C C S 1 2 3 4 5 6 7 141 142 8 9 10 11 12 13 14
in „USB Input/Output Error mit Kondensator beheben“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
jbl_es250pw_subwoofer_service_manual_40.pdf
stereo and outdoor O RDERING INFORMATION speakers, and microphones. Squeak 1.5 is available in either a 25meter 50meter 25 or 50 meter indoor range WHAM2 module. TX WH4924 WH4928 AnalogI/O The WHAM2 digitizes a 2-channel stereo input signal, sends it RX WH4925 WH4929 TX WH4926 WH4930 across a robust 2.4 GHz radio frequency link, and converts the Digital I/O signal back to a stereo analog signal for use at a remote RX WH4927 WH4931 location. WHAM2 is also available with a Digital Audio Serial 2-node EV4931 EV4937 Evaluation Kit Interface (DASI) port that can be configured
in „Synchronisiertes Wireless Audio (Digital)“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Grüne Leiterplatte mit Bauteilen und Beschriftung
C4, R8, C13, C14, DM19264A-02, VER: A 2004.2.21, Q.C. PASSED, DM19264A-02, D-YSNFD-02 200406, C1, R7, R6, Q1, C12, U2, C8, C7, R5, C5, C6, R10, R11, J30, CN1, 1, 20
in „[V] Diverses: Displays, AtMega, IC-Sockel, PT100, Quarze, DDR3“ · Markt · · Platinenfotos
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PDF
VFD_Clock_Assembly_Manual_rev_3.pdf
Display PCB Page 4 of 38 Backlight PCB Page 5 of 38 Assembling the Display PCB Assembly instructions for DM160 tubes or equivalent (as supplied with the kit): • Mount resistors R1 and R2, 3.3 Ω. • Mount resistors R3A and R4A, 100K (leave R3B and R4B open). Assembly instructions for Russian IV-15 tubes (not
in „ESP32 DevKit-C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1014CN_DN.pdf
2.8 2.8 nA 25°C −12 −30 −12 −30 IB Input bias current nA Full range −38 −38 −15 −15.3 −15 −15.3 25°C to to to to V Common-mode 13.5 13.8 13.5 13.8 V ICR input voltage range Full range −15 −15 to 13 to 13 Maximum
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SCH_ESP32-Ethernet-Kit_A_V1.2_20200528.pdf
GPIO32 TP7 1 1 2 2 GPIO33 TP8 FLASH BOOT: GPIO14 GPIO15 TP14 3 4 EN_KEY GPIO0->1 GPIO12 TP15 3 4 GPIO13 TP16 GPIO4 TP17 C27 0.1uF/16V(10%) B GPIO2 TP18 B TP19 GPIO16 TP20 GPIO17 TP21 D4 GND EN_KEY 1 VDD33 3 R67 0R(5%) EN EN_AUTO 2 GPIO0 R69 20K(5%) ON OFF BOOT MODE: BAT54A GPIO2 R70 10K(5%)(NC) SW2 J7
in „Arduino Library für Netzwerkchip W5500?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irlr2905_1_.pdf
CIRCUIT SEE FIGURE 13 0 A 0 A 1 10 100 0 10 20 30 40 50 60 70 V , Drain-to-Source Voltage (V) Q , Total Gate Charge (nC) DS G Fig 5. Typical Capacitance Vs. Fig 6. Typical Gate Charge Vs. Drain-to-SourceVoltage Gate-to-SourceVoltage
in „Motortreiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRLU2905.pdf
CIRCUIT SEE FIGURE 13 0 A 0 A 1 10 100 0 10 20 30 40 50 60 70 V , Drain-to-Source Voltage (V) Q , Total Gate Charge (nC) DS G Fig 5. Typical Capacitance Vs. Fig 6. Typical Gate Charge Vs. Drain-to-SourceVoltage Gate-to-SourceVoltage
in „High Power LED Driver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CIII_Schematic.pdf
PIN184 N IO, (DQ5T) 218 PIN218 PIN6 11 12 PIN9 PIN132 11 12 PIN133 PIN6 11 12 PIN9 PIN132 11 12 PIN133 A IO, DIFFIO_R31n, (DQ1R) 132 PIN132 A IO, DIFFIO_R16n, (nCEO) 164 PIN164 A IO, VREFB7N0 185 PIN185 A IO, DIFFIO_T12n, (DATA2) 219 PIN219 PIN12 13 14 PIN13 PIN134 13 14 PIN135 PIN12 13 14 PIN13 PIN134
in „fragen zu User/KOnfigurationsmodus von Cyclon“ · FPGA, VHDL & Co. ·
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PDF
Lenovo_schematic.pdf
AA21 VCCAPLL[1] OPI 2 0 C 0 0 0 W21 VCCAPLL[2] +1.05VS 0 5 1 7 1 7 1 V AG14 _ 8 K K K VCCASW[1] AG13 1 @ VCCASW[2] VCCASW[1:5] 658mA 1 V +1.05VS @ 1U_0402_10V6K 1 2 CC59 +1.05VS_DCPSUS3 J13 USB3 K VCCHDA DCPSUS3 J11 CD@ VCC1_05[3] H11 C C C VCCHDA 11mA HDA VCC1_05[4] 3 4 5 AH14 VCCHDA VCC1_05[5] H15
in „Pin Belegung bei dem Chip“ · Mikrocontroller und Digitale Elektronik ·
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IRLIZ44N_IR.pdf
using a single clip or by a single screw fixing. Absolute Maximum Ratings Parameter Max. Units I @ T = 25°C Continuous Drain Current, @ 10V 30 D C GS D @ TC= 100°C Continuous Drain CurrentGS@ 10V 22 A DM Pulsed
in „Toggle Schaltung mit NE555 schaltet ein, aber nicht aus“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRF3205.pdf
@ T C 25°C Continuous Drain CurrenGS @ 10V 110 U D @ T C 100°C Continuous Drain CurrenGS @ 10V 80 A DM Pulsed Drain CurreSt 390 PD@T =C25°C Power Dissipation 200 W Linear Derating Factor 1.3 W/°C VGS Gate-to-Source Voltage ± 20 V AR Avalanche CurreSt 62 A EAR Repetitive Avalanche EneSgy 20 mJ dv/dt
in „Hohe Ströme aus Akku Entladen ?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irf3205.pdf
@ T C 25°C Continuous Drain CurrenGS @ 10V 110 U D @ T C 100°C Continuous Drain CurrenGS @ 10V 80 A DM Pulsed Drain CurreSt 390 PD@T =C25°C Power Dissipation 200 W Linear Derating Factor 1.3 W/°C VGS Gate-to-Source Voltage ± 20 V AR Avalanche CurreSt 62 A EAR Repetitive Avalanche EneSgy 20 mJ dv/dt
in „Erzeugt ein 9V-Printtrafo mehr als 750V?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irfp260n.pdf
Units D @ TC= 25°C Continuous Drain CurrenGS @ 10V 50 D @ TC= 100°C Continuous Drain CurrenGS @ 10V 35 A DM Pulsed Drain Curre t 200 PD@T C 25°C Power Dissipation 300 W Linear Derating Factor 2.0 W/°C VGS Gate-to-Source Voltage ±20 V EAS Single Pulse Avalanche Ene gy 560 mJ AR Avalanche Curre t 50 A EAR
in „Strom bei 50 A begrenzen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRFI4212H-117.pdf
117P ) 200 175 Ω ) ( ID = 6.6A J ID c ( 150 TOP 1.2A n 175 g s e 2.1A s E 125 BOTTOM 6.6A R 150 e n c O a 100 c T J 125°C a u 125 A o e 75 - l - 100 P i l 50 r n D T = 25°C S ,) 75 J , 25 o S S E D 50 0 R 4 5 6 7 8 9 10 11 12 13 14
in „UV-Laserdrucker II“ · Platinen ·
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PDF
APT10050B2VR_B.pdf
contained herein. 0.3 ) W D=0.5 C 0.1 ( C 0.05 0.2 A D 0.1 P I 0.05 L Note: M 0.01 M R 0.02 PD 1 H 0.005 , 0.01 SINGLE PULSE 2 θ t1 v Z Duty Factor 2 = R Peak J =DM x θJC+ C 4 0.001 6 10-5 10-4 10-3 10-2 10-1 1.0 10 0 RECTANGULAR PULSE DURATION (SECONDS
in „SMA SB4200TL-MS Reparatur“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TD024THEB2.pdf
VDD VDD LGPIO13 LGPIO13 SDR_BA0 20 35 SMA11 RGB1 15 RGB1 VSS 148 GND 1 R20 10K 2 LGPIO8 SDR_BA1 21 BA0 A11 34 SMA9 22 S7 TAB/SNAP GND 16 VSS LGPIO12 147 LGPIO12 22 BA1 A9 33 BC19 HGPIO8 KEY5 RGB2 17 146 VDD 1 R21 10K
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msp430f5529.pdf
available on '5528, '5526, '5524, '5522, '5514, '5513 devices) P7.1/CB9/A13 6 N/A N/A N/A I/O Comparator_B input CB9 (not available on '5528, '5526, '5524, '5522, '5514, '5513 devices) Analog input A13 – ADC (not available on '551x devices) General-purpose digital I/O (not
in „Fragen zu ADC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ok2_hynix1.TXT
LCD frambuffer FRAMECFG=19200 FRAMECFG+BURST=-16758016 CLKVAL=7 In: serial Out: serial Err: serial dm9000 i/o: 0x30000000, id: 0x90000a46 No ethadr! Hit any key to stop autoboot: 1 0 ## Booting image at 20000000 ... Image Name: Image Type: ARM Linux Kernel Image (uncompressed) Data Size: 3028672 Bytes
in „embedded Linux startet nicht mit bad-blocks (NAND)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
C500-System.pdf
<128 Bild 1.13• I Innere Verknüpf ng I der im Digitalprpzetsor C504 D integrieruen DM Funktionsgrvppen Über den Steuereingang Iu kann die Be arbeiten in Emitterschaltung. Der Kollektor triebsart des A/D-Wandlersystems
in „IC C500 Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
si9934bdy.pdf
Forward Voltage VSD IS= −1.7 A,GS = 0 V −0.8 −1.2 V Dynamic b Total Gate Charge Q g 13 20 Gate-Source Charge Qgs VDS = 6 V, GS = −4.5 VD I = −6.4 A 2.6 nC Gate-Drain Charge Qgd 4.0 Gate Resistance R 9 W g Turn-On Delay Time td(on)
in „P-MOS Vgs positiv?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DM0465RE.pdf
Figure 7. Operating Frequency vs. Temp. w t c h F 1.2 1.2 P S e 1.0 1.0 ™ c n C 0.8 r 0.8 ) t ) u D A e )F DM0.6 r ( 0.6 u ( o x 0.4 B 0.4 a F M 0.2 0.2 0.0 0.0 -25 0 25 50 75 100 125 150 -25 0 25 50 75 100 125 150 Junction Temperature [°C] Junction Temperature [°C] Figure 8. Maximum Duty Cycle vs. Temp
in „Wie von 400 V Gleichspannung auf 5 V für den AVR kommen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BT136-600E-352978.pdf
current V = 600 V; T = 125 °C - 0.1 0.5 mA D D j Dynamic characteristics dV Ddt rate of rise of off-statV DM = 402 V; T j 125 °C; (V DM = 67% - 50 - V/µs voltage of VDRM ); exponential waveform; gate open circuit tgt gate-controlled turn-on ITM
in „Touch-Dimmer Lampe immer an“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STM32_F4VE_SCHEMATIC.PDF
_CH1/TIM8_BKIN/SPI1_MISO/(TIM1_BKIN) (USART1_TX)/I2C1_CLK/TIM4_CH1/PB6 PIU2093 PB7B NLRF_CSS FSMC_D13 FSMC_D13P I J 1 0 54 PIJ106MC_D12D12 FSMC_D12 PA8A PIU2067PA7/ADC12_IN7/TIM3_CH2/TIM8_CH1N/SPI1_MOSI(TIM1_CH1N) (USART1_RX)/FSMC_NL/I2C1_SDA/TIM4_CH2/PB7 PIU2095 PB8B NLRF_IRQ FSMC_D11 FSMC_D11P I J
in „Neues Entwicklungsboard STM32F407“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32_F4VE_SCHEMATIC.PDF
_CH1/TIM8_BKIN/SPI1_MISO/(TIM1_BKIN) (USART1_TX)/I2C1_CLK/TIM4_CH1/PB6 PIU2093 PB7B NLRF_CSS FSMC_D13 FSMC_D13P I J 1 0 54 PIJ106MC_D12D12 FSMC_D12 PA8A PIU2067PA7/ADC12_IN7/TIM3_CH2/TIM8_CH1N/SPI1_MOSI(TIM1_CH1N) (USART1_RX)/FSMC_NL/I2C1_SDA/TIM4_CH2/PB7 PIU2095 PB8B NLRF_IRQ FSMC_D11 FSMC_D11P I J
in „STM32F407 Black und Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN-9010b_MOSFET_Basics__FAI.pdf
November 1999 16 VDD VDD D F IO DF IO C RG Cgd1 d RG Cgd1 C d + + V V i GG G C gs GG G Cgs — — (b) (a) V VDD DD I IO O Cgd2 RG Cgd1 + RG + G VGG i VGG rDS(on) G — — (c) (d) Fig. 13. Equivalent circuits of the MOSFET turn – on divided into 4 periods at diode – clamped inductive load circuit. (a) equivalent
in „mit 2,7V schalten“ · Mikrocontroller und Digitale Elektronik ·
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PVLogger_v0.5_St__ckliste.pdf
Tactschalter 1 B1 100nF 10% MKS2 8 C1,C4,C6,C8,C9,C14,C16,C18 100uF 20% Elko 1 C11 330nF 10% MKS2 2 C12,C13 1nF 5% Keramik 1 C5,C15 1uF 20% Elko 4 C19,C20,C21,C22 22pF 5% Keramik 2 C2,C3 10uF 20% Elko 2 C7,C17 CD74HC4067 PDSO-‐G24 1 IC1 ATmega32A_PDIP DIP40600 1 IC2 LM258AN DIP8300 1 IC3 LM7805CT to220 1
in „Reset durch Stack overflow?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irlr3717.pdf
reverse S (Body Diode) c p-n junction diode. V SD Diode Forward Voltage ––– ––– 1.0 V TJ= 25°C, IS= 12A, VGS = 0V e trr Reverse Recovery Time ––– 22 33 ns TJ = 25°C, F = 12A, DD= 10V Q di/dt = 100A/µs rr Reverse Recovery Charge ––– 13 19 nC ton Forward Turn-On Time Intrinsic turn-on time is negligible
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PDF
irf740pbf.pdf
Gate-Source Voltage V ± 20 V GS TC= 25 °C 10 Continuous Drain Current VGS at 10 V ID TC=100°C 6.3 A Pulsed Drain Current DM 40 Linear Derating Factor 1.0 W/°C Single Pulse Avalanche Energy E 520 mJ AS Repetitive Avalanche Current AR 10 A a Repetitive Avalanche Energy E AR 13 mJ Maximum Power Dissipation
in „Bauteilbestimmung H32 U3J“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irf3708.pdf
Typ. Max. Units Conditions V(BR)DSS Drain-to-Source Breakdown Voltage 30 ––– ––– V VGS = 0V,DI = 250µA ∆V(BR)DSSTJBreakdown Voltage Temp. Coefficient ––– 0.028 ––– V/°C Reference to 25°C,DI = 1mA ––– 8 12.0 VGS = 10V,DI = 15ATR RDS(on) Static Drain-to-Source On-Resistance ––– 9.5 13.5 mΩ VGS = 4.5V,DI
in „IRF3708 als Schalter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
eGC.pdf
_D11 SDRC_D11 PIIC10sdrc_d11 sdrc_d27IIC10Y4 sdrc_a12IIC10R3_A12 SDRC_A12 PIIC3A12 DQ12 PIIC30D1_D12 SDRC_D12 PIIC10sdrc_d12 sdrc_d28IIC10AA2 sdrc_a13IIC10R4_A13 DQ13 PIIC30D9_D13 SDRC_D13 PIIC10sdrc_d13 sdrc_d29IIC10AA3 sdrc_a14IIC10T2C_A14 SDRC_BA0
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·