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schiebereg.pdf
specification 8-bit serial-in/serial or parallel-out shift 74HC/HCT595 register with output latches; 3-state handbook, full pagewidth SH INPUT VM (1) CP tsu su t t h h D INPUT V (1) S M Q7' OUTPUT VM(1) MLB196 (1) HC: M = 50%; I = GND toCC HCT: VM= 1.3 V;IV = GND to 3 V. Fig.9 Waveforms showing the data
in „wie steuer ich nen sn7447 mit avr an??“ · Mikrocontroller und Digitale Elektronik ·
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74HC_HCT595_CNV_3.pdf
specification 8-bit serial-in/serial or parallel-out shift 74HC/HCT595 register with output latches; 3-state handbook, full pagewidth SH INPUT VM (1) CP tsu su t t h h D INPUT V (1) S M Q7' OUTPUT VM(1) MLB196 (1) HC: M = 50%; I = GND toCC HCT: VM= 1.3 V;IV = GND to 3 V. Fig.9 Waveforms showing the data
in „LCD DEM20485 in gerade Zeile springen (c't-Bot)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Low_Level_Measurements_Handbook__Keithley.pdf
Voltage measurement with c. Voltage measurement with source current on source current off V V EMF EMF VM1 I VM2 R R VM1 = VEMF + IR VM2 = VEMF VM= (V M1 – VM2) = IR FIGURE 3-18: Offset-Compensated Ohms Measurement 3.3.3 Non-Ohmic Contacts Non-ohmic contacts are evident when the potential difference across
in „Low Level Measurements Handbook“ · Mikrocontroller und Digitale Elektronik ·
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ON_LV8772.PDF
A ( s T V A m T u S 1 e o C r a u h i i 2 C r s c P C a O H u C e R S V - T L + M D I 5 F D V N O G E N P M R V S V +- No.A1975-4/17 LV8772 Pin Assignment VM 1 28 CP2 VG 2 27 CP1 OUT1A 3 26 VREG5 PGND 4 25 ATT2 VM1 5 24 ATT1 RF1 6 23 EMO OUT1B 7 22 CHOP LV8772 OUT2A 8 21 MONI RF2 9 20 RST VM2 10 19
in „Welcher Schrittmotor?“ · Mikrocontroller und Digitale Elektronik ·
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CJ125.pdf
Output voltage adjustment IRF=0µA; LA = 1 V F/ VVCC 0.285 0.315 ∆V UA=VUA(LA = 1) - VU(LA = 0) •V UA -3 3 mV Output error offset adjust V I=VIA=VVM | UA | < 10µA Virtual ground voltage source Output current operating range IVM -IA-2 -IA+2 mA Output voltage ratio -II-1mA < IVM < -IA+1mA V VM/ VCC 0.48 0.52
in „Bosch CJ125 Lamda Sonden IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CJ125_Product_Info.pdf
Output voltage adjustment IRF=0µA; LA = 1 V F/ VVCC 0.285 0.315 ∆V UA=VUA(LA = 1) - VU(LA = 0) •V UA -3 3 mV Output error offset adjust V I=VIA=VVM | UA | < 10µA Virtual ground voltage source Output current operating range IVM -IA-2 -IA+2 mA Output voltage ratio -II-1mA < IVM < -IA+1mA V VM/ VCC 0.48 0.52
in „Heizelement an UC mit Diagnose. Verständis Frage“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tft-lcd-controller-Overview-OpenCores.html
38,400 <br> - Maximum RAM Bits 327,680 = 40KB <br> - Phase-Locked Loops (PLLs) 4 <br> - Speed Grades -3, -2, -1 (-1 is the fastest speed grade.) <br> - Maximum User I/O Pins 708 <br> <br> \ <br> - Product name TX18D16VM1CAA <br> - Effective Display Area (H)152.4 x (V)91.44 [mm] <br> - Display Dots (H)(800x3) x (V)480 [dots] <br> - (Display Pixels) (H 800 x V 480) [pixels] <br> - Pixel Pitch (H)0.1905 x (V)0.1905 [mm] <br> - Color Pixel Arrangement R+G+B Vertical Stripe <br> - Display Mode Transmissive Mode
in „Universal LCD+Input Modul mit MachXO2“ · FPGA, VHDL & Co. ·
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TB6560AHQ_AFG_E_2003_20080407-1.pdf
2W1-2 and 4W1-2) • High output withstand voltage: VDSS = 40 V • High output current: I OUT = AHQ: 3.5 A (peak) AFG: 2.5 A (peak) Weight: • Packages: HZIP25-P-1.27/HQFP64-P-1010-0.50 HZIP25-P-1.27: 9.86 g (typ.) • Internal pull-down resistors on inputs: 100 kΩ (typ.) HQFP64-P-1010-0.50: 0.26 g (typ.
in „TOSHIBA TB6560AHQ Stepper Controller Fragen“ · Mikrocontroller und Digitale Elektronik ·
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DS011252.PDF
Parameter Conditions Typical Units (Note 2) Tracking and Isolation Tracking IOUT s 500 mA Ibufe 5 mA g 30 g 100 g 100 mV VOUT–V stby Istby 7 5 mA max Tracking IOUT e 5 mA Ibufs 100 mA V –V I s 7 5 mA g 30 g 100 g 100 mV max buf stby stby Tracking I s 500 mA I s 100 mA OUT buf g 30 g 100 g 100 mV max VOUT–V
in „[V] 20 Stück LM2984CT“ · Markt ·
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SN74LVC125A.pdf
6 Pin Configuration and Functions D, DB, NS, OR PW PACKAGE (TOP VIEW) 1OE 1 14 VCC 1A 2 13 4OE 1Y 3 12 4A 4 11 2OE 4Y 2A 5 10 3OE 6 9 2Y 3A GND 7 8 3Y RGY PACKAGE (TOP VIEW) E C O C 1 V 1 14 1A 2 13 4OE 1Y 3 12 4A 2OE 4 11 4Y 2A 5 10 3OE 2Y 6 9 3A 7 8 D Y N 3 G Pin Functions PIN D, DB, NS, PW TYPE
in „Joy-IT 1,8" TFT Display: SD-Karten-Slot am Arduino“ · Mikrocontroller und Digitale Elektronik ·
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74HC_HCT594_CNV_2.pdf
Product specification 8-bit shift register with output register 74HC/HCT594 AC WAVEFORMS SHCP INPUT VM(1) t su 1/max ST INPUT (1) CP VM tW tPLH tPHL Q nOUTPUTS (1) V M MLA512 (1) HC: VM= 50%; I = GND toCC HCT: V = 1.3 V; V = GND to 3 V (1) HC: M = 50%; I = GND toCC M I HCT: V = 1.3 V; V = GND to 3 V M
in „AVR - Multiplexing (Helligkeit)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT594_CNV_2.pdf
Product specification 8-bit shift register with output register 74HC/HCT594 AC WAVEFORMS SHCP INPUT VM(1) t su 1/max ST INPUT (1) CP VM tW tPLH tPHL Q nOUTPUTS (1) V M MLA512 (1) HC: VM= 50%; I = GND toCC HCT: V = 1.3 V; V = GND to 3 V (1) HC: M = 50%; I = GND toCC M I HCT: V = 1.3 V; V = GND to 3 V M
in „7-Segm. Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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slas242e.pdf
REFTF VREF 10 µF 0.1 µF 0.1 µF REFBF Figure 16. Differential Input Mode, 1-V Reference Span AVDD +FS 2 VM AIN MODE –FS REFTS DC SOURCE = VM VM _ REFBS 0.1 µF REFTF 10 µF 0.1 µF 0.1 µF REFBF REFSENSE Figure 17. Center Span Mode, 2-V Reference Span 18 POST OFFICE BOX 6•DALLAS, TEXAS 75265 THS1031 3-V TO 5.5
in „Signal für ADC anpassen“ · Analoge Elektronik und Schaltungstechnik ·
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0242.pdf
33pF P1 V C C C 4 5 12 G G G G G G 1 3 1 2 4-28V IN RC2 2OUT 3 R R 9 ENABLE 5 G R17 0 R C3 R13 1M D R 4 0.01 1M 6 RR2 VDD 11 3.3V 2 N C 1 C G R Q1 R8 C9 T C7 R15 C 7 10 C15 B E GND IB 3 U U1 G R14 G O 1M R15 8 VIN ENABLE 9 1M
in „Relais gegen Transistor tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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Fragen_und_Antworten_zur_fachlichen_Pruefung_fuer_Funkamateure_BAPT_1988.pdf
- 2. r) . 9 W elche elektrische Länge iTUß eine Dipolantenne haben, dam it sie in Resmanz ist? L. 3:etr:;emkt?i:c!eL;ä?g: r3,eiTe3gaT:::T;:ge vielfache vm 1/2 - 5 - 2 .6 .1 0 Warum iiuß eine Antenne mechanisch immer etwas kürzer als der thecretisch errechnete W ert sein? L.ii!i#f::i:i:!:!#i:g#:!:!!
in „Neuer Fragenkatalog für die Amateurfunkprüfung“ · HF, Funk und Felder ·
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Datei
ls020.c
/ break; default: return -EINVAL; } return 0; } static int ls020_mmap(struct fb_info *info, struct vm_area_struct *vma) { unsigned long size, offset; size = vma->vm_end - vma->vm_start; offset = vma->vm_pgoff << PAGE_SHIFT; offset += info->fix.smem_start; if (remap_pfn_range(vma, vma->vm_start, offset >> PAGE_SHIFT, size, vma->vm_page_prot)) return -EAGAIN; printk(KERN_INFO "ls020: mmap framebuffer P(%lx)->V(%lx), size %lx\n", offset, vma->vm_start, size); return 0; } static int ls020_fb_setcolreg(u_int regno, u_int red, u_int
in „Siemens S65 Ls020 Linux Framebuffer“ · Mikrocontroller und Digitale Elektronik ·
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74HC4060.pdf
delays and the master reset to clock (RS) recovery time Table 7. Measurement points Type Input Output VM VM 74HC4060 0.5 × CC 0.5 × VCC 74HCT4060 1.3 V 1.3 V 74HC_HCT4060_3 © NXP B.V. 2008. All rights reserved. Product data sheet Rev. 03 Ñ 14 July 2008 13 of 25 74HC4060; 74HCT4060 NXP Semiconductors 14-stage binary ripple counter with oscillator tW VI 90 % negative pulse VM VM 10 % GND f tr r tf VI 90 % positive pulse VM VM 10 % GND t W V CC VI VO G DUT R T CL 001aah768 Test data is given in Table 8. Definitions test circuit: RT= Termination resistance should be equal to
in „Randsportart“ · Offtopic ·
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PDF
Schaltplan.pdf
1 +3V3 5 VDD N 2 SMDAT CS2 7 2 IO G ATMEGA328PB-AU 3 SMCLK CS3 6 3 JP3 D C17 1 SDA I 4 5 1 2 N +3V3 VDD GND 3 4 G 100n 6 GND CAP1203 SCL 2 ISP1 D VSS N +5V 2 VCC MISO 1 n 5 G SHT21 4 MOSI SCK 3 0 C GND D
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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can_g1251_v02.eagle7_Falk.sch.pdf
VDD TXCAN 1 S 26 A3_VSENS 19 2 1 C13 (ADC3)PC3 27 A4_SDA 18 RST RXCAN 3 +3IO D C14 D D18p (SDA0/ADC4)PC4 A5_SCL CS CLKOUT/SOF N 18p N N (SCL0/ADC5)PC5 28 17 SO TX0RTS 4 JP3 G Q1G G 16 SI TX1RTS 5 2 1 4MHz 30 RXD 15 6 D
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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257____SN74lvc257a-q1.pdf
3015; Exceeds 200 V Using Machine Model (C = 200 pF, R = 0) A/B 1 16 V CC • Operates From 2 V to 3.6 V 1A 2 15 OE 1B 3 14 4A • Inputs Accept Voltages to 5.5 V • Max t of 4.6 ns at 3.3 V 1Y 4 13 4B pd 2A 5 12 4Y • Typical V OLP(Output Ground Bounce) < 0.8 V 6 11 at V = 3.3 V, T = 25°C 2B 3A CC A 2Y
in „Max Übertragungsfrequenz mit SN74LVC257“ · Mikrocontroller und Digitale Elektronik ·
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74HCT221__Nexperia.pdf
(nQ, nQ), nA, nB pulse widths and output transition times Table 8. Measurement points Input Output VM V M VX VY 1.3 V 1.3 V 0.1 × VCC 0.9 × CC V I nRDinput VM GND tPHL V OH nQ output VM VOL tPLH VOH nQ output VM VOL aaa-024832 Measurement points are given in Table 8. VOL and V OHare typical voltage output
in „Frequenz- bzw. Ton- Toff- Limiter bauen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
U2100B_Data_sheet.pdf
-2------------------------------------------------------- – 176 1.8× 10 5 4769C–INDCO–07/05 Figure 3-3. Zero Voltage Switch Operation D1 R1 2 -S L + C 1 R 4 sync Sync Z VM 3 R G Output IG 1 GND N 3.3 DC Operation Selection condition (Figure 3-4): +V = 6.1V, –V = internal limitation where: 4 4 R 0 1/
in „Fehlersuche Steinel Bewegungsmelder“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
74hct595.pdf
8-bit serial-in, serial or parallel-out shift 74HC595; 74HCT595 register with output latches; 3-state AC WAVEFORMS handbook, full pagewidth 1/max V SH_CP input M t W tPLH tPHL 90% Q7' output VM 10% t t TLH THL MSA699 74HC595: VM= 50%; VI= GND to CC. 74HCT595: VM= 1.3 V;IV = GND to 3 V. Fig.7 Waveforms
in „74HC595 wie steuert man das latch an?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC595_Philips.pdf
8-bit serial-in, serial or parallel-out shift 74HC595; 74HCT595 register with output latches; 3-state AC WAVEFORMS handbook, full pagewidth 1/max V SH_CP input M t W tPLH tPHL 90% Q7' output VM 10% t t TLH THL MSA699 74HC595: VM= 50%; VI= GND to CC. 74HCT595: VM= 1.3 V;IV = GND to 3 V. Fig.7 Waveforms
in „Definierter Einschaltzustand beim 74HC595“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC595_Shiftregister.pdf
8-bit serial-in, serial or parallel-out shift 74HC595; 74HCT595 register with output latches; 3-state AC WAVEFORMS handbook, full pagewidth 1/max V SH_CP input M t W tPLH tPHL 90% Q7' output VM 10% t t TLH THL MSA699 74HC595: VM= 50%; VI= GND to CC. 74HCT595: VM= 1.3 V;IV = GND to 3 V. Fig.7 Waveforms
in „Unterschied 74HCT595, 74HC595“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT595.pdf
8-bit serial-in, serial or parallel-out shift 74HC595; 74HCT595 register with output latches; 3-state AC WAVEFORMS handbook, full pagewidth 1/max V SH_CP input M t W tPLH tPHL 90% Q7' output VM 10% t t TLH THL MSA699 74HC595: VM= 50%; VI= GND to CC. 74HCT595: VM= 1.3 V;IV = GND to 3 V. Fig.7 Waveforms
in „74HC595 und ATtiny13 Lauflicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nidec_22H.pdf
Electrical andMechanical Characteristics Parameter Symbol Conditions Min. Nom. Max. Units Operating Voltage VM Model 22H-12 8.0 12 15 V Model 22H-24 15 24 26.4 V Operating Current IRun Continuous operation at nomM,TA= +20°C Model 22H-12, Type 1 — — 1.38 A Model 22H-12, Type 2 — — 1.64 A Model 22H-12, Type 3 —
in „Nidec 22H205G010 - Drehrichtung ändern“ · Analoge Elektronik und Schaltungstechnik ·
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WT11_Data_Sheet.pdf
............................................................................................. 32 6.3 RFCOMM Stack........................................................................................... 35 6.4 VM Stack................................................................................
in „WT11 von Bluegiga, Registrierung?“ · Mikrocontroller und Digitale Elektronik ·
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JTAGkey2_clone_clone_rev1.pdf
A B C D E F G H U4 U5 U2 U3 U6 1 1 R1 VCC(+5V) R3 R4 R5 R6 R7 R8 R9 R10 R11 R12 C1 C2 C3 C4 Q1 C5 C6 C7 1k 22k 22k 22k 22k 22k 22k 22k 1k 1k 22k 0.1u 0.1u 0.1u 0.1u 0.1u 0.1u 0.1u FB1A4M Blue D2 D3 U2 AMBER GREEN SN74LVC1G125DBV 1 OE# Vcc 5 8 4 Vref_in 2 9 EXTVCC ADBUS5 JTAGkey SW1 3 A 4 PORTVCC 17 JTAG_OE# GND Y PW1 Vtgt ADBUS4 ispVM R16 100 MICROSMD010-2 18 TCK R2 ADBUS0 5 TMS 22k ADBUS3 16 TDI C8 7 ADBUS1 2 TDO R17
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Schematic_Schrittmotorsteuerung_Tischkreissaege_V1_Flottjett_Saegeblattsteuerung_Schaltplan_V1_20200213100817.pdf
1 2 3 4 5 V_IN + - VCC 1 2 VCC L R S e E _ +5V_IO u W D +5V_IO a P S A h Y Y A fG A L l_ P P N cN I I 3 4 5 G SG 2 2 _ _ GND _ _ C 2 GND + N U U I I PSU_ARDUINO I I 2 1 2 1 _ _ 6 6 + - 5 5 2 1 2 1 U U MINI
in „Arduino Schaltplan mit 2 Schritmotortreibern“ · Mikrocontroller und Digitale Elektronik ·
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rxv396.pdf
range 1 : 1 probe DC range 1 : 1 probe Ref. No. Location Ref. No. Location Ref. No. Location 0V D1 C3 IC1 B3 Q1 F3 0V D2 C3 IC2 B3 Q2 F4 D3 B3 IC3 B4 D4 B3 IC4 A3 D5 G4 IC5 A3 D6 G4 IC6 C4 D7 G4 IC8 C3 D8 G3 IC9 C3 D9 C4 IC10 D3 D10 G3 IC11 D3 D11 G3 IC12 C3 2V SAMPLE 50ns 2V SAMPLE 50ns D12 C4 IC15
in „Yamaha RX-V396 RDS Fehlersuche“ · Mikrocontroller und Digitale Elektronik ·
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PDF
T2117_zero_switch.pdf
18 kΩ/ Load 1 2 W 1000 W (250 V~) (sync -VS C R 2 4 2 8 5 C1 100 kΩ 100 µF/ 2.2 µF/ 1 Ramp 7 16 V VM= 230 V~ 10 V Synchronization Supply generator GND R5 MT2 12 kΩ 3 + 6 100 Ω MT1 max 4 + Full-wave logic - Comparator Pulse R3 100 kΩ amplifier min Reference voltage R 1.4 V T2117 6 18 kΩ N 2. Pin Configuration
in „Suche Steuerung für 2kW Heizwendel (230V)“ · Analoge Elektronik und Schaltungstechnik ·
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Screenshots von TrueNAS und Proxmox Speicherverwaltung
Name Type Used Available Compression Compression Ratio Readonly datapoolBigDisk FILESYSTEM 704.55 GiB 3.08 TiB lz4 1.08 false DocumentRoot FILESYSTEM 704.55 GiB 3.08 TiB Inherits (lz4) 1.08 false Pools Name Serial Disk Size Pool da1 3.91 TiB datapoolBigDisk Disks Rechenzentrum proxmox Laufwerk (scsi1) zfs-bigdisks.vm-100-disk-0.qcow2 size=4000G 100 (srv-TrueNAS) VM Disks Name Format Größe vm-100-disk-0 raw 4.29 TB zfs-bigdisks (proxmox) ID zfs-bigdisks Typ ZFS Inhalt Disk-Image, Container ZFS Pool RAIDBigdisks Rechenzentrum
in „Preiswertes NAS + (esxi) VM Host“ · Haus & Smart Home · · Screenshots
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Schaltplan_2.pdf
D 12 n 3 4 2 VM 11 1 C 3 u 5 6 +5IOO VCP 14 C 2 GND 7 8 VINT GND +3V3 G D2 AI1 16 AIN1 AOUT1 2 +3V3 I 9 10 I k 2 5 AI2 15 AIN2 AOUT2 4 11 12 4 R 0 MBRS130LT3 BI1 9 BIN1 BOUT1 7 13 14 2 220k BI2 10 BIN2 BOUT2 5 GND 15 16 G D CS1 1 NSLEEP AISEN 3 17 18 +5VIO E +5V +IOIO 6 +5VIO I 19 20 O P R16 Q3 BISEN 8 21 22 I 1 5 NFAULT 13*2 23 24 k G IN OUT GND 25 26 9 0 E C20 3 C19 IRLML6244 27 28 R 2 7 0 0 EN DRV8833 GND R 5 2 29
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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AN50005.pdf
L16 V=(V(Vd2)-V(Vs2))*I(VM2) V=∫Pdiss2*dt 3.9 Ω L17 L18 L19 Pdiss3 Ediss3 VM1 VM2 VM3 B3 R3 B6 R6 1 kΩ 1 kΩ 0 V 0 V 0 V V=(V(Vd3)-V(Vs3))*I(VM3) V=∫Pdiss3*dt aaa-033634 Fig. 1. SPICE simulation circuit: half-bridge AN50005 All
in „N-Canal MOSFET Modul“ · Analoge Elektronik und Schaltungstechnik ·
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NXP__74LVC1G17.pdf
Measurement points Supply voltage Input Output V CC VM VM 1.65 V to 1.95 V 0.5 × VCC 0.5 × VCC 2.3 V to 2.7 V 0.5 × VCC 0.5 × VCC 2.7 V 1.5 V 1.5 V 3.0 V to 3.6 V 1.5 V 1.5 V 4.5 V to 5.5 V 0.5 × VCC 0.5 × VCC VEXT VCC RL VI VO G DUT R C R T L L mna616 Test
in „Pegelwandlung 5V => 3,3V: Überschwinger mit 74LVC1G17“ · Mikrocontroller und Digitale Elektronik ·
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sn74lvc245a.pdf
2.5 V ± 0.2 VV CC ≤2 ns VCC/2 2 × CC 30 pF 500 Ω 0.15 V 2.7 V 2.7 V ≤2.5 ns 1.5 V 6 V 50 pF 500 Ω 0.3 V 3.3 V ± 0.3 V2.7 V ≤2.5 ns 1.5 V 6 V 50 pF 500 Ω 0.3 V VI Timing Input VM 0 V tw V I su h VI Input V M VM Data Input V V 0 V M M 0 V VOLTAGE WAVEFORMS VOLTAGE WAVEFORMS PULSE DURATION SETUP AND HOLD
in „Suche 74LCX04“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt-Ausschnitt eines OMRON MOS FET Relais
G3VM-AR/DR Appearance / Terminal Arrangement / Internal Connections Appearance DIP (Dual Inline Package) DIP 4-pin OMRON logo Pin 1 mark Mold pin mark (See note 3.) Model name (See note 2.) LOT.NO. Terminal
in „Sicheres Schalten von MOSFET-Relais“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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SilentFan_Schematic.pdf
1 2 3 4 5 6 J3 VM 1 A VM A D3 F1 LED Polyfuse_Small J4 VFAN+ 1 F1+ R5 D1 C2 VCC 22k PMEG3020EGWX 10u L1 1m J5 U1B 1 F1- 74LVC2G34 J1 R7 R2 L3 220 3 10 STEP Q1 VCC 1 3 4 1 1m AOSS32338C J10 2 1 R1 VIO J2 100k
in „PWM -> DAC: Frage zu einfacher Lösung“ · Mikrocontroller und Digitale Elektronik ·
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qt102_2r3.04.pdf
wired (Vm = Vss (delay multiplier = 1), VDD = 3.5V) to Vss, Vdd or OUT as shown in Tables 3.2 and 3.3. This Output Type Auto Off Delay (seconds) provides nominal values of 15 minutes, 60 minutes or infinity Active
in „Stromversorgung Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
et028002fb.c
value_xfer_screen2.rx_buf = lcd->rxbuff; spi_message_add_tail(&value_xfer_screen2, &msg); value_xfer_screen3.tx_buf = lcd->buffer + 4 + 131070; value_xfer_screen3.rx_buf = lcd->rxbuff; spi_message_add_tail(&value_xfer_screen3, &msg); spi_sync(lcd->spi, &msg); } return (0); } static int et028002_power_on(struct
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Datei
panel-simple.c
num_timings = 1, .bpc = 6, .size = { .width = 203, .height = 152, }, .bus_format = MEDIA_BUS_FMT_RGB666_1X7X3_SPWG, }; static const struct drm_display_mode hitachi_tx23d38vm0caa_mode = { .clock = 33333, .hdisplay = 800, .hsync_start = 800 + 85, .hsync_end = 800 + 85 + 86, .htotal = 800 + 85 + 86 + 85, .vdisplay
in „Linux RPI VC4 Driver - DRM NullPointer Exception“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT74.pdf
Pinning information 5.1. Pinning 74HC74 74HCT74 D C terminal 1 R C index area 1 V 1 1 1D 2 13 2RD 1CP 3 12 2D 74HC74 74HCT74 1SD 4 11 2CP 1RD 1 14 V 1Q 5 GND (1) 10 2SD CC 1D 2 13 2RD 1Q 6 9 2Q 3 12 7 8 1CP 2D D Q 1SD 4 11 2CP N 2 aaa-003909 G 1Q 5 10 2SD Transparent top view 1Q 6 9 2Q (1) This is not
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74HC423__Nexperia.pdf
DHVQFN16) terminal 1 A C 1A 1 16 VCC 1 V index area 6 1 1 1B 2 15 1REXT/CEXT 1B 2 15 1REXT/CEXT 1RD 3 14 1CEXT 1RD 3 14 1CEXT 4 13 1Q 4 13 1Q 1Q 1Q 2Q 5 12 2Q 2Q 5 12 2Q 2CEXT 6 VCC(1) 11 2RD 2CEXT 6 11 2RD 2REXT/CEXT 7 10 2B 8 9 2REXT/CEXT 7 10 2B N 2 GND 8 9 2A G aaa-037760 aaa-036976 Transparent top
in „Frequenz- bzw. Ton- Toff- Limiter bauen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4N27-M.pdf
( 1.6 1.2 E G R G L 1.5 T 1.0 e O C n V E e R 1.4 T = -55°C I 0.8 r A A A a R 1.3 M 0.6 l O O P - TA= 25°C N u F 1.2 0.4 r V p TA= 100°C o 1.1 0.2 s e 1.01 10 100 0.0 0 2 4 6 8 10 12 14 16 18 20 6 P IF- LED FORWARD
in „Wechselspannungs Fragen :(“ · Analoge Elektronik und Schaltungstechnik ·
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can_g1251_v02_12f.eagle7.sch.pdf
11 D6_AI1 100n CAP1203 GND L1 G (AIN1)PD7 D7_AI2 18 AVCC 10uH (SDA1/ICP4/ACO)PE0 3 D22_ECHO SN1 +3V3 4 VCC (SCL1/T4)PE1 6 D23_TRIG IO GND IO (SS1/ICP3/ADC6)PE2 19 A6_G1188 +3V3 5 VDD C16 C18 5*2 22 A7_HGND GND (MOSI1/T3/ADC7)PE3 C17 1 3 1 100n 100n ATMEGA328PB-AU SDA 3 100n 6 J SCL GND 2 VSS 4 2 GND SHT21 GND RXD TXD A3_VSENS DRV D3_RG+ A6_G1188 +5VIO D23_TRIG IO D9-EXTOFF D22_ECHO IO +9V +3V3 +9V +9VBUF 6 k IO IO A1_H1_CS DRV8833 D2
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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xone92.pdf
1 2 -15VP R106 82K 1W 3 1 2 4 PSU1 PSU2 PSU3 D11 D15 10 BYG80G L4 +10VM_PSU 5 3 4 6 150K 1% 7 5 6 8 C46 P6KE200A 7 D14 4.7uH 9 7 8 10 JP1 7 R107 C60 BYG80G 1 9 10 20K 1% 120/63 LESR D16 BYG80G C64 470/25 LESR C66 U19 C49 FIT U17 100N BYV26E 11 TO PSU C PRIMARY L5 470/25 LESR D 1 COMP V ISEN 3 L_GND 2 D13 2 Vin N-15V 3 100N -15VP Q7 3 9 4.7uH G 8 VREF VFB 2 BYG80G L6 +10VM_PSU C47 7915 R105 6 OUT D RT/CT 4 R108 R110 5BIAS 8 C61 4.7uH C62 b 10/50 6K8 1% 0805 N 3K3 1% 68R 120/63 LESR G R104
in „Fehlersuche in DJ-Mixer (Allen & Heath Xone:92)“ · Analoge Elektronik und Schaltungstechnik ·
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samsung_bn44-00262a.pdf
CM802 CM801 CM803 ZM802 CM808 ZD804 RB803 47pF 0.3 10nF ZM801 47nF 100nF Z02W30V 22uF 1N4742A CM804 220nF 20KF4 3216F 1KV 2W 50V 1N4740A 50V 50V 50V 47uF P-GND 25V 1608 1608 1608 1608 50V 1608 G RB804 QB801 CM856 G 1.2MF KTD1347 2 NC 3216 1 3 RB805 RB801
in „Reparatur TV-Netzteil“ · Mikrocontroller und Digitale Elektronik ·
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THB6064AH.PDF
, VNF 0 V, s characteristics t CL 15 pF 0.5 f Upper side ILH ― 5 Output leakage current VM 50 V A Lower side I ― 5 LL 5 2011-05-11 HHBY THB6064AH Description of Functions Excitation Settings The excitation mode can be selected from the following eight modes using the M1, M2 and M3 inputs
in „CNC Fräse - komplette Steuerung kaufen“ · Mikrocontroller und Digitale Elektronik ·
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datasheet.pdf
2011-2012 www.csr.com 1 Package Information 1.1 Pinout Diagram Orientation from Top of Device 1 2 3 4 5 6 7 8 9 10 A A1 A2 A3 A4 A5 A6 A7 A8 A9 A10 B1 B2 B3 B4 B5 B6 B7 B8 B9 B10 B C C1 C2 C9 C10 C S R D D1 D2 D9 D10 8 6 4 5 E E1 E2 E5 E6 E9 E10 B G A F F1 F2 F5 F6 F9 F10 D a G G1 G2 G9 G10 a S e H
in „A2DP Bluetooth Modul China eBay“ · HF, Funk und Felder ·