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PDF
L7200.PDF
36 35 34 33 VCM_A+ 49 32 DAC_OUT VCM_A+ 50 31 PORB VCM_GND 51 30 VREG3.3_IN VCM_GND 52 29 VREG3.3_DRV VCM_A- 53 28 VREG2.5_IN VCM_A- 54 27 VREG2.5_DRV OUT_A 55 26 RBIAS OUT_A 56 L7200 25 AVCC RSENSE 57 "MOZART" 24 AGND RSENSE 58 23 TR_12V OUT_B 59 22 TR_5V OUT_B 60 21 TR_3.3V 61 RSENSE 20 TR_2.5V RSENSE
in „Externe Festplatte durch falsches Netzteil zerstört“ · PC Hard- und Software ·
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PDF
bd9615muv-lb-e.pdf
MON - OVP OVP ENUVLO CMP_GND + TSD Power Good OVP LOGIC OCP PGDB COMP 0.65V - UVP UVP UVP + SSDET DRV_CTL VREG DRV_IN - OUT FB Start + ERROR AMP + PWM SS SS_ 0.8V + CMP_ + RST GND - + SSDET OCP OCP OCP_P +SSDET 1.2V - - MAX DUTY OCP_M OSC MDT SYNC RT GND LOGIC OCP ENUVLO DRV_CTL VCCUVLO OVP TSD SS_RST
in „BD9615 (flyback) startet nicht zuverlässig“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
chargepump.pdf
at www.ti.com. (2) Voltage is marked on reel. Add on row with the following data: Product: REG71050DRV Output Voltage: 5.0V Package-Lead: TQFN Package Designator: DRV Specified Temp range: -40C to +85C Package marking: CFF Ordering Number: REG71050DRVT (Tape and Reel, 250) REG71050DRVR (Tape and Reel
in „chargepump enable eingang“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
mg.asm
TIMSK, (1<<OCIE0A) start_play: ldiw Z, score*2 cli clrw _Tmr clr _TmrS sei pl_next: lpmw B, Z+ rcall drv_decay cli cpw _Tmr, B sei brcs PC-5 pl_note: lpm CL, Z+ cpi CL, EoS breq start_play mov AL, CL rcall note_on andi CL, en breq pl_note rjmp pl_next ;--------------------------------------------------
in „Sequencer Prinzip ELM - Wavetable Melody Generator (ASM)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NCP1605-D.PDF
from (Pin6< VZCD) to (DRV high) − 120 240 ns Standby Input V STBY Standby Mode Threshold (Pin1falling) 280 310 340 mV H STBY Hysteresis for Standby Mode Detection 25 30 50 mV VSKIPOUT V/ OUTL Ratio (Pin 4 Voltage to terminate
in „Hilfe bei der Reparatur eines Schaltnetzteiles erbeten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AND8392-D.PDF
return www.onsemi.com 4 AND8392/D PH1 PFC Stage PH1 + PH1 − PH2 PFC Stage Ac Line AC Line PH2 PH2 DRV + − + + D D 1 DRV 2 b) terminal PH2 is the high one a) Terminal PH1 is the High One Figure 7. Equivalent Schematic for the Two Half−Waves It is also worth noting that the 2−phase structure does not
in „PFC - welche Art Kondensator verwenden?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DAP8A.pdf
SET DCmax = 80% CC 3 250 ns 40−60−100 kHz Q OVERLOAD 6 L.E.B. CLOCK MANAGEMENT RESET 20 k 57 k + - Drv GROUND V 4 + REF 25 k 〉 250 mA 5 1 V − Figure 2. Internal Circuit Architecture MAXIMUM RATINGS Rating Symbol Value Unit Power Supply Voltage V , Drv 16 V CC Power Supply Voltage on all other pins except Pin 5 (Drv)) and Pin 8 (HV) − −0.3 to 10 V CC Maximum Current into all pins except Pin) and Pin 8 (HV) when 5.0 mA CC − 10 V ESD diodes are activated Thermal Resistance Junction−to−Air, PDIP−8 Version R▯JA 100
in „Widerstand gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CAN_Bit_Timing.pdf
designers must take this relationship into consideration when defining the network. The following DRV = 60 ns examples demonstrate bit timings for achieving maxi- t = 2(t +t +t ) = 750 ns PROP BUS CMP DRV mum oscillator tolerance or maximum bit rate. Since the propagation segment is used to compensate
in „Infos zum CAN Bit-Timing gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lg_oem_lgit_pldc-p109b_sch.pdf
15 D GND1 GND1 GND1 1k C P P P P P P N C471 9 F 10K F D4148W G 22K F 1K 1K 1 NC PWM7 33 1 +12V 6 K DRV IS1 IS2 3 104 3 R 1 R417 100 Q402 R421B GND1 R486C R483C R484C 2 CMP7 PWM8 32 S 6 9 R472 R411B SAP15T15GH/D-PACK 11K F R486A R483A R484A R486B R483B R484B 2.2 F 47F 1.2KF R408 A GND1 GND1 R 3 4 F 3
in „Netzteil Philips LED TV reparieren??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2.transceiver_si4468.pdf
mA Level 3 IOmaxLH DRV[1:0] = LH — 4.37 — mA I DRV[1:0] = HL3 — 2.73 — mA OmaxHL IOmaxHH DRV[1:0] = HH3 — 0.96 — mA Drive Strength for Output High IOmaxLL DRV[1:0] = LL3 — 2.53 — mA Level for GPIO0 3 IOmaxLH DRV[1:0] = LH — 2.21 — mA 3 IOmaxHL DRV[1:0] = HL — 1.70 — mA I DRV[1:0] = HH3 — 0.80 — mA OmaxHH Logic High Level Output Voltage VOH DRV[1:0] = HL V DDx 0.8 — — V Logic Low Level Output Voltage VOL DRV[1:0] = HL — — V DD x 0.2 V Notes: 1
in „Transceiver Si4467 SPI Transfer PIC24“ · Mikrocontroller und Digitale Elektronik ·
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PDF
adxl380.pdf
SDAHoldTime HDDAT 0 0 ns StopSetupTime SUSTO 360 160 ns BusFreeTime BUF 500 ns SCLInputRiseTime RCL 120 80 ns SCLInputFallTime FCL 120 80 ns SDAInputRiseTime RDA 120 160 ns SDAInputFallTime FDA 120 160 ns WidthofSpiketoSuppress SP NotshowninFigure 50 10 ns ACOUTPUTLEVELS PropagationDelay Loadcapacitance
in „ADXL380 mit SPI auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A020BL01.pdf
10 n 11 D3 I Data input e r 12 D2 I Data input t D1 I Data input In 13 e 14 D0 I Data input;tLSB 15 DRV O VLED boost transistor driving signal VLED P LED power: anode 16 ro 17 FB I / P LED power: cathode 18 AVDD r C Power setting capacitor AGND o P Ground for analog circuit 19 GND F P Ground for digital
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Datei
fritzbox_7590_log.txt
cbm_xrx500_probe : 5722 }94 irq [ 1.034568][ T1] [cbm] { cbm_xrx500_probe : 5745 }2 [ 1.039714][ T1] [drv_tmu_ll] { get_cbm_clock : 7605 }CBM Clock: 0Hz=0MHZ [ 1.046820][ T1] [drv_tmu_ll] { get_cbm_clock : 7608 }Wrong cbm clock [ 1.053593][ T1] Initializing TMU with Base Address=be700000: ... [ 1.062839
in „FritzBox 7590 Boot Loop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Netzteil.pdf
FLG 12V 1u/50V 100p/50V 2R2R2 1N4148W 22R 1 R903 C901 N901 R915 2 1 5N50 27R 16 1 NC R916 3 R901 VCC DRV1 V905 2 10k R902 2R2 R841 R921 C924 V901 1 1k 15 2 68R 1 L927 MMBT2907ALT1 STATUS DRV2 1KV/56p R904 3 100k 0R R931 2 14 RT GND 3 VREF 10k R926 10R 13 4 R929 VREF ISEN1 1k 1u/16V C905 R93R0920 C902 12
in „Hisense H55N5705 geht einfach aus bei verschiedenem verhalten.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Blitz100.pdf
V3 LED Rser=2 CAP DRV 65 R1 C1 Q1 1k 1m FZT849 V1 V2 R2 .24 120 PULSE(0 5 1u 1n 1n 1u 2u 750) .tran 2m --- C:\wrk\blitz100.asc ---
in „6kW LED Leuchte 1µs pulsen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
U2270B_.pdf
and Antenna Driver DV V V V Standby S EXT S Batt Internal supply 9V 25 kΩ 12 kΩ 6V 6V 18V PS COILx DRV DGND The U2270B can be operated with one external supply voltage or with two externally-stabilized supply voltages for an extended driver output voltage or from the 12V battery voltage of a vehi- cle
in „Verzweiflung am U2270B“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Generate_Auxiliary_Voltages_at_Low_Cost.pdf
period of the not required. In circuit B, the V OUT2ground floats on top D1 D2 D3 VOUT2 VOUT2 VIN MBRM120 C1 VIN MBRM120 C3 VIN MBRM120 C5 10 MF 10 MF 10 MF 6.3 V 6.3 V 6.3 V Q1 Q3 Q5 VOUT2 2 L1 VOUT1 L2 VOUT1 L3 VOUT1 22 MH 47 MF 22 MH 47 MF 22 MH 47 MF 6.3 V 6.3 V 6.3 V Q2 Q4 Q6 (a) (b) (c) Fig.1.Coupledinductorscreatedesignflexibility
in „SMPS, multiple Outputs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Visio-09037-DDS_Gen_Blockdiagram_R0.pdf
RECONSTRUCTION U2 FILTER LF OUTPUT AMPLIFIER 10HZ-10MHz U1 AD9951/AD9954 COMP INP RF DETECTOR COMP OUT DRV COMPARATOR OUTPUT (10HZ – 5MHZ) U19 TEMPERATURE CURRENT MIRROR ALC COMPARATOR SENSOR I2C1 AND SUMMING NODE ALC OUT 0 RSET DAC I-OUT INP1 0 0 CURRENT RF LEVEL SET EXTERNAL 400MHZ REFERENCE T1 REFERENCE
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A20_user_manual_v1.3_20141010.pdf
REGISTER 1 Register Name: PA_DRV1 Offset: 0x18 Default Value: 0x0000_0005 Bit Read/Write Default Description 31:4 / / / PA_DRV [2i+1:2i] PA[n] Multi-Driving Select (n = 16~17) R/W 0x1 (i=0~1) 00: Level 0 01: Level 1 10: Level 2 11:
in „DDR3 RAM Datenleitung beliebig anschliessen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ibm_thinkpad_t42_apollo_rev0.49_sch.pdf
SENSE<7..0> IN 50.7N> 77.1L> 60.4B<> 132 CLKRUN#/P82 58 0 52.6B> 26.2M> -SUS_STAT LPCPD/P83 PG0 57 1 DRV<15..0> 50.5B< IN 128 PG1 56 2 OUT 54.6F< 52.4B< IRQSER 129 SERIRQ/P37 PG2 55 3 26.0B< 60.3B<> BI 119 PME#/P80 PG3 54 4 SCI/PB1 PG4 120 SMI#/PB0 PG5 53 5 VCC5M VCC3B VCC3M VCC3B VCC3M 25.3M< OUT KBGA20
in „Lenovo T42 Ladeelektronik spielt verrückt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AIO486.PDF
2.1/2.2 Produkt Version Auflösung Name des Treibers Lotus 1-2-3 2,2.1,2.01,2.2 640x480x16 sp1_480s.drv 800x600x16 sp1_600s.drv 1024x768x16 sib2vga.drv(8x9font) 132Columns sib3vga.drv(9x13font) s0_25s.drv(132x25) sp0_44s.drv(132x44) Tabelle 13, Treiber für Lotus 1-2-3 Gruppe: Lotus Symphony Produkt Version Auflösung Name des Treibers Lotus 1.1,1.2,2.0 640x480x16 sp1_480s.drv Symphony 800x600x16 sp1_600s.drv 1024x768x16 sib2vga.drv(8x9font) 132Columns sib3vga.drv(9x13font) sp0_25s.drv(132x25) sp0_43s.drv(132x43) Tabelle 14, Treiber für Lotus Symphony Gruppe: Lotus 1-2-3
in „AIO486 CPU-Board“ · Offtopic ·
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PDF
AIO486.PDF
2.1/2.2 Produkt Version Auflösung Name des Treibers Lotus 1-2-3 2,2.1,2.01,2.2 640x480x16 sp1_480s.drv 800x600x16 sp1_600s.drv 1024x768x16 sib2vga.drv(8x9font) 132Columns sib3vga.drv(9x13font) s0_25s.drv(132x25) sp0_44s.drv(132x44) Tabelle 13, Treiber für Lotus 1-2-3 Gruppe: Lotus Symphony Produkt Version Auflösung Name des Treibers Lotus 1.1,1.2,2.0 640x480x16 sp1_480s.drv Symphony 800x600x16 sp1_600s.drv 1024x768x16 sib2vga.drv(8x9font) 132Columns sib3vga.drv(9x13font) sp0_25s.drv(132x25) sp0_43s.drv(132x43) Tabelle 14, Treiber für Lotus Symphony Gruppe: Lotus 1-2-3
in „AIO486 CPU-Board“ · Offtopic ·
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PDF
512410-sp-01-en-PROGRAM__SCHALTNETZTEIL_PSP_12010.pdf
DATE :- 1/04/07 2 BD139 1 SCHEMATIC CIRCUIT DIAGRAM OF 680E 1206 PSP 12010-OUTPUTCONVERTER R21 CON2 DRV 5 4 3 2 1 5 4 3 2 1 +V +VDDIO R26 R17 R30 470E 2K2 6K8 R18 Q5 D 6 D R25 Q8 6 8 TX 8 5 B C1 B U5A 1K CN14 5K6 PC817 U5B 1 PC817 2 3 +V 2 4 R19 3PinSTM 4K7 R13 -V 6 5K6 8 Q3 C +VDDIO B +V 1 C D5 C R23
in „Tipps zum Reparieren eines Voltcraft PSP12010“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
marantz-sr8200-9200-service-manual.pdf
RC-5 OUT DSS IN NJM2234 CONT Ver.Up TV_IN M-RC IN AVSS Cont SW M-RC OUT VCR1_IN LD IN VCR2_IN +6dB DRV MONITOR1 Ds OPT OUT +B AUX_IN VCR1_OUT +6dB DRV NJM2234 MONITOR2 Memory Bus -B DVD IN COAX OUT 1 DRV 2 VCR2_OUT B DRV U +6dB DRV MULTI MONI - RS232C D SPI signal TV IN NJM2296 p +6dB DRV 9 MAIN TRANSF
in „MARANZ RC3200 datenkabel belegung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN50005.pdf
around 35.2 µs where the dissipated power starts to increase from 1.8 W. P E diss diss (W) (µJ) 55 1100 120 I D M1 D (A)45 900 100 35 ESW(OFF) 700 80 25 E M1 500 60 diss 15 300 40 P dissM1 5 PCOND 100 20 -5 -100 -20 34.6 35 35.4 35.8 36.2 36.6 time(µs) aaa-033731 Fig. 4. MOSFETs drain current (I ), energy
in „N-Canal MOSFET Modul“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RFM22B.pdf
100 nA IN IN DD Input Current If Pullup is ActivaINP V IL V 5 — 25 µA Maximum Output Current IOmaxLL DRV<1:0>=LL 0.1 0.5 0.8 mA IOmaxLH DRV<1:0>=LH 0.9 2.3 3.5 mA I DRV<1:0>=HL 1.5 3.1 4.8 mA OmaxHL IOmaxHH DRV<1:0>=HH 1.8 3.6 5.4 mA Logic High Level Output Voltage VOH OH< IOmaxsource, V DD– 0.6 — — V
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PDF
RFM22B.pdf
100 nA IN IN DD Input Current If Pullup is ActivaINP V IL V 5 — 25 µA Maximum Output Current IOmaxLL DRV<1:0>=LL 0.1 0.5 0.8 mA IOmaxLH DRV<1:0>=LH 0.9 2.3 3.5 mA I DRV<1:0>=HL 1.5 3.1 4.8 mA OmaxHL IOmaxHH DRV<1:0>=HH 1.8 3.6 5.4 mA Logic High Level Output Voltage VOH OH< IOmaxsource, V DD– 0.6 — — V
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PDF
igrid_ss_3kw_plus.pdf
search engine 2. Electric Specifications Item Specification Comments AC input data AC start voltage 120~140Vac Auto restart voltage 194 Vac Tolerance±3% 184~265 Vac (VDE) AC input voltage range 193.6~242Vac(Taibei) AC input voltage comeback 194/255 Vac(VDE) value 203.6/232 Vac(Taibei) 47.5 ~ 50.2 Hz (
in „PV Wechselrichter startet nicht mehr und verursacht Kurzschluss bzw. hohen Strom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MSM486SE-DIGITAL-LOGIC.pdf
names Application: Resolution: Colors: 65535/65540: Acce.: 65545/48 Windows 3.1 640 x 480 16 LINEAR4.DRV VIDGX4.DRV 800 x 600 16 LINEAR4.DRV VIDGX4.DRV 1024 x 768 16 LINEAR4.DRV VIDGX4.DRV 1280 x 1024 16 LINEAR4.DRV VIDGX4.DRV 640 x 480 256 LINEAR8:DRV VIDGX8.DRV 800 x 600 256 LINEAR8.DRV VIDGX8.DRV 1024 x 768 256 LINEAR8.DRV VIDGX8.DRV 480 x 640 Portrait 16 R12.DRV 640 x 480 64K LINEAR16.DRV VIDGX16.DRV 640 x 480 16M LINEAR24.DRV VIDGX24.DRV Windows NT 3.5x 640 x 480 16 chips.dll 800 x 600 16 1024 x 768 16 640 x 480 256
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PDF
bq24780s.pdf
1150 BATFET GATE DRIVER (BATDRV) I BATDRV charge pump current limit V – V = 5 V 40 60 µA BAT(FET) BAT(DRV) BAT(SRC) Gate drive voltage on BATFET V – V when V > V 5.5 6.1 6.8 V BAT(DRV) BAT(SRC) (SRN) BAT(UVLO) RBAT(DRV_OFF) BATDRV turn-off resistance 5 6.2 7.4 kΩ RBAT(DRV_LOAD) Minimum Load between gate
in „Widerstand Bestimmung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W25Q128JV_RevI_08232021_Plus.pdf
Volatile/Non-Volatile Writable .......................................17 7.1.6 Output Driver Strength (DRV1, DRV0) – Volatile/Non-Volatile Writable ...........................17 7.1.7 Reserved Bits – Non Functional........................................................................................17
in „Speicher handling mit W25Q128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
u2270b.pdf
Power Supply (PS) DV V V Standby S V EXT S Batt internal supply 9 V 25 kW 12 kW 6 V 6 V 18 V PS COILx DRV 11413 DGND Figure 4. Equivalent circuit of power supply and antenna driver The U2270 can be operated with one external supply VS is the internal power supply voltage except for the voltage or with two
in „Pollin RFID Entwicklungsboard“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds1820.h
/ /*** HISTORY OF CHANGE ********************************************************* * * $Log: /pic/_drv/ds1820.h $ * * 9 13.11.10 20:02 Stadler * - changed interrupt lock and delay functions to #defines to remove * function call overhead * * 8 6.11.10 10:24 Stadler * - adjusted 1-wire timing * * 7 5.11.10
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Datei
drv_glcd.c
**************** * * Used with ICCARM and AARM. * * (c) Copyright IAR Systems 2006 * * File name : drv_glcd.c * Description : Graphic LCD driver * * History : * 1. Date : December 2, 2006 * Author : Stanimir Bonev * Description : Create * * $Revision: #1 $ **************************************************************************/ #include "drv_glcd.h" #include "stdarg.h" #include <assert.h> /* delay definition */ #define GLCD_DLY_10US 800 // 10us #define GLCD_RESET_DLY 500 // 5ms #define GLCD_BOOSTER_ON_DLY 1200 // 120 ms static const GLCD_CmdCtrl_t
in „Keil "struct" Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Si4430-31-32.pdf
100 nA Input Current If Pullup is ActivaIed V =0 V 5 — 25 µA INP IL Maximum Output Current IOmaxLL DRV<1:0>=LL 0.1 0.5 0.8 mA IOmaxLH DRV<1:0>=LH 0.9 2.3 3.5 mA IOmaxHL DRV<1:0>=HL 1.5 3.1 4.8 mA I DRV<1:0>=HH 1.8 3.6 5.4 mA OmaxHH Logic High Level Output Voltage VOH OH < Omax source, VDD – 0.6 — — V
in „Leistungsanpassung bei bipolar Transistoren?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TMC5072_datasheet.pdf
R+C 0x01 4 GSTAT conditions are cleared. 2 drv_err2 1: Indicates, that driver 2 has been shut down due to overtemperature or short circuit detection since the last read access. Read DRV_STATUS2 for details. The flag can only be reset when all error
in „TMC5072 SPI Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hitachi_55hk6t64u_55293dlb_48hk6t64u_48293dlb_chassis_17mb100-r1_17ips20-r9_sm.pdf
. Using the DRV632 in audio products can reduce component count considerably compared to traditional methods of generating a 2-VRMS output. The DRV632 does not require a power supply greater than 3.3 V to generate
in „Vestel Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX846AEVKIT.pdf
FZT749 l 0.4 C6 D1 u 0.01 F EC10DS10 a R1 t J1-1 0.4 e VIN R2 680 s C1 : 235V 14 CS- M 13 CS+ 16 J1-2 DRV VL A GND 1 DCIN X 0.1 F 6 JU4 1 VSET 2 VSET 8 VL U1 R5 4 825k 3 VL 2 MAX846A 1% 6 VL A 4.7 F 16V 12 J2-1 BATT BAT+ C4 C7 0.01 F 4.7 F BATTERY 3 CCI 15 35V J2-2 PGND BAT- 5 CCV VL C5 JU1 1 0.01 F R4
in „Kompatibles Bauteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SONY-PVMxxxx-yy_SM-Ausschnitt.pdf
C406 R418 8 22 D408 MA111 68k 5.2 R491 . Q417 S-Y 16V :CHIP 5R421 C407 47k 1 DTA144EK INPUT PROT-5 .120 22 :CHIP 1 :CHIP 16V DELAY SW D409 MA111 R417 D411 3 4 INPUT PROT-6 1k MA111 C464 D412 Y/C OUT 1 2 :CHIP R419 R420 0.01 0.6 MA111 56k 3.9k F:CHIP Q418 2 C437 :CHIP :CHIP INPUT PROT-8 INPUT PROT-9 DTA144EK
in „FBAS 16:9 in 4:3 Letterbox umwandeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Si4330.pdf
100 — 100 nA Input Current If Pullup is ActivIted V =0 V 5 — 25 µA INP IL Maximum Output Current I DRV<1:0>=LL 0.1 0.5 0.8 mA OmaxLL OmaxLH DRV<1:0>=LH 0.9 2.3 3.5 mA OmaxHL DRV<1:0>=HL 1.5 3.1 4.8 mA IOmaxHH DRV<1:0>=HH 1.8 3.6 5.4 mA Logic High Level Output Voltage VOH IOH< Omax source, VDD – 0.6 —
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PDF
TMC2209_datasheet_rev1.07.pdf
been reset since the last read access to GSTAT. All registers have been cleared to reset values. 1 drv_err R+ 1: Indicates, that the driver has been shut down WC 0x01 3 GSTAT due to overtemperature or short circuit detection since the last read access. Read DRV_STATUS for details. The flag can only be
in „Industrielle [3D-Drucker] Bastelgrundlagen“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
WBND-S-A0011794841-1.pdf
Volatile/Non-Volatile Writable .......................................21 7.1.8 Output Driver Strength (DRV1, DRV0) – Volatile/Non-Volatile Writable ...........................22 7.1.9 Reserved Bits – Non Functional........................................................................................22
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PDF
W25Q256JW_SPI_RevJ_03102021_Plus.pdf
Volatile/Non-Volatile Writable .......................................19 7.1.8 Output Driver Strength (DRV1, DRV0) – Volatile/Non-Volatile Writable ...........................20 7.1.9 Reserved Bits – Non Functional........................................................................................20
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PDF
lt32a1.pdf
071G 59Q121 T CHIP BEAD 120R/500MA MMZ1608S121CT ▯ FB501 071G 59Q121 T CHIP BEAD 120R/500MA MMZ1608S121CT ▯ FB416 071G 59Q121 T CHIP BEAD 120R/500MA MMZ1608S121CT ▯ FB415 071G 59Q121 T CHIP BEAD 120R/500MA MMZ1608S121CT ▯ FB404 071G 59Q121 T CHIP BEAD 120R/500MA MMZ1608S121CT ▯ FB403 071G 59Q121 T CHIP BEAD 120R/500MA MMZ1608S121CT ▯ FB401 071G 59Q121 T CHIP BEAD 120R/500MA MMZ1608S121CT ▯ FB302 071G 59Q121 T CHIP BEAD 120R/500MA MMZ1608S121CT ▯ FB301
in „Philips LCD TV kein Bild aber Ton [46PFL7655K/02]“ · Haus & Smart Home ·
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PDF
lm3444.pdf
. Calculate C11: M 9. L 3. Calculate tOFF at VBUCK nominal line voltage: 10. Use standard value of 120 pF 11. Calculate ripple current: 400 mA X 0.30 = 120 mA 12. Calculate inductor value at t = 3 µs: OFF 4. Calculate tON(MIN)at high line to ensure that t > 200 ns: ON(MIN) 13. Choose C10: 1.0 µF 200V
in „High Brightness LEDs > 50W µC als regelbare KSQ“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HDD_Seagate_ATA_INTERFACE.pdf
drive 0 is selected. 4.8 Drive/Head register Thehostselects betweenthemasterandslavedrives basedontheDRV bit in the drive/head register. When the DRV bit is not set, the master drive is selected, and when the DRV bit is set to 1, the slave drive is selected. Seagate drives are designated as master and
in „HDD Festplatte ATA IDE an AVR µC Mikrocontroller ATmega1284p Assembler - viele Fragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A20_Bananapi_Schematic.pdf
13 5 4 3 2 1 5 4 3 2 1 Power PMU-AXP209 DRAM-VCC DRAM-VCC DC-IN CPUVDD CPUVDD VBUS_WK VBUS_WK USB0-DRV VCC-3V3 D USB0-DRV VCC-3V3 D ACIN ACIN RESET# GND GND GND DC1 NMI# RESET# INTVDD 1 NMI# VCC-3V3 INTVDD VBUS 2 PMU-SCK S AVCC D- 3 PMU-SDA PMU-SCK U AVCC D+ R37 PMU-SDA V ID 4 1R CC71 R23 C72 VCC-RTC
in „DDR3 RAM Datenleitung beliebig anschliessen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
APT_Communications_Protocol.pdf
turn 1mm 125540.35 125540.35 125540.35 ZFS Series 0.0225 mm/turn 1 mm 136533.33 136533.33 136533.33 DRV001 0.5mm/turn 1mm 51200 51200 51200 DRV013 1mm/turn 1mm 25600 25600 25600 DRV014 1mm/turn 1mm 25600 25600 25600 NRT100 1mm/turn 1mm 25600 25600 25600 NRT150 1mm/turn 1mm 25600 25600 25600 LTS150 1mm
in „Thorlabs Laser-Source mit über FTDI232BM ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
USB-CANmodul1.pdf
für den CAN-Bus Bitte beachten Sie, dass an einem CAN-Bus immer 2 Abschlusswiderstände mit jeweils 120 Ohm angeschlossen werden müssen, wenn Sie ein USB-CANmodul mit einem Highspeed CAN- Transceiver haben. Diese müssen jeweils an den beiden Enden des CAN-Buses erscheinen. CAN_H 7 7 120 Ohm CAN-Bus 120
in „CAN-Bus Sorgen“ · Mikrocontroller und Digitale Elektronik ·
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MAX100.pdf
50 62.5 FREQUENCY (MHz) FREQUENCY (MHz) f = 250MHz, f = 120.4462MHz f = 250MHz, f = 10.4462MHz CLK AIN CLK AIN SER = -42.3dB, NOISE FLOOR = -65.4dB SER = -45.87dB, NOISE FLOOR = -68.5dB EFFECTIVE BITS EFFECTIVE BITS vs. ANALOG INPUT FREQUENCY vs. CLOCK FREQUENCY
in „Oszilloskop mit AVR“ · Mikrocontroller und Digitale Elektronik ·