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PDF
s8241.PDF
specified) Item Symbol Applicable pin Rating Unit Input voltage between VDD and VSSV DS VDD VSS−0.3 to SS+12 V VM input pin voltage V VM V −26 to V +0.3 V VM DD DD CO output pin voltage V CO CO VVM −0.3 toDD +0.3 V DO output pin voltage V DO V −0.3 to V +0.3 V DO SS DD SOT-23-5 250 (When not mounted
in „Li-Ion Akku mit oder ohne eingebaute Schutzschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
s8241.PDF
specified) Item Symbol Applicable pin Rating Unit Input voltage between VDD and VSSV DS VDD VSS−0.3 to SS+12 V VM input pin voltage V VM V −26 to V +0.3 V VM DD DD CO output pin voltage V CO CO VVM −0.3 toDD +0.3 V DO output pin voltage V DO V −0.3 to V +0.3 V DO SS DD SOT-23-5 250 (When not mounted
in „Li-Ion Protection in besser?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
s8241.PDF
specified) Item Symbol Applicable pin Rating Unit Input voltage between VDD and VSSV DS VDD VSS−0.3 to SS+12 V VM input pin voltage V VM V −26 to V +0.3 V VM DD DD CO output pin voltage V CO CO VVM −0.3 toDD +0.3 V DO output pin voltage V DO V −0.3 to V +0.3 V DO SS DD SOT-23-5 250 (When not mounted
in „Lademodul TP4056“ · Analoge Elektronik und Schaltungstechnik ·
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TX09D70VM1CDA.pdf
X=120 X=190 Y=70 Dots area 7 8 9 Y=160 4 5 6 Y=250 1 2 3 KAOHSIUNG HITACHI Jan.18,’11 Sh. 7B64PS 2706-TX09D70VM1CDA-7 PAGE 6-1/2 ELECTRONICS CO.,LTD. DATE No. 7.BLOCK DIAGRAM I/F(CN1) Data / Clock Timing G1 Timing Signals e G2 Power Supply Controller r D TFT-LCD
in „TFT Anschluss mit FPGA / CPLD / AVR“ · FPGA, VHDL & Co. ·
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PDF
TX17D01VM2EAB.pdf
REVISION DATE SHEET No. SUMMARY KAOHSIUNG HITACHI SHEET ELECTRONICS CO., LTD. NO. 7B64PS 2702- TX17D01VM2EAB-1 PAGE 2-1/1 3. GENERAL DATA 3.1 DISPLAY FEATURES This module is a 6.5” VGA of 4:3 format amorphous silicon TFT. The pixel format is vertical stripe and sub pixels are arranged as R (red), G (green
in „[V] TFT 6,5 Zoll 1000 cd/m² Hitachi TX17D01VM2EAB“ · Markt ·
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PDF
en-g3vm_41hr.pdf
Numberpertapeandreel SOP6 1a Surface-mounting Terminals 40 V G3VM-41HR 75 - (SPST-NO) G3VM-41HR (TR) - 2,500 * The AC peak and DC value are given for the load voltage. ■Absolute Maximum Ratings (Ta = 25°C) Item Symbol Rating Unit Measurement conditions Note: 1.Thedielectricstrengthbetweentheinputandoutputwas
in „Übergangswiderstand von einem Halbleiterrelais“ · Mikrocontroller und Digitale Elektronik ·
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sn74lvc1g14.pdf
) (mm) (mm) (mm) (mm) Quadrant (mm) W1 (mm) SN74LVC1G14DBVR SOT-23 DBV 5 3000 180.0 9.2 3.17 3.23 1.37 4.0 8.0 Q3 SN74LVC1G14DBVRG4 SOT-23 DBV 5 3000 178.0 9.0 3.23 3.17 1.37 4.0 8.0 Q3 SN74LVC1G14DBVTG4 SOT-23 DBV 5 250 178.0 9.0 3.23 3.17 1.37 4.0 8.0 Q3 SN74LVC1G14DCKR SC70 DCK 5 3000 180.0 9.2 2.3 2.55 1.2 4.0 8.0 Q3 SN74LVC1G14DCKT SC70 DCK 5 250 178.0 9.2 2.4 2.4 1.22 4.0 8.0 Q3 SN74LVC1G14DCKT SC70 DCK 5 250 180.0 9.2 2.3 2.55 1.2 4.0 8.0 Q3 SN74LVC1G14DRLR
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PDF
TX06D57VM0AAA-01A1.pdf
3284PS2608-TX06D57VM0AAA-1A 8-1/11-11/11 9 DIMENSIONAL OUTLINE 3284PS2609-TX06D57VM0AAA-1A 9-1/1 10 VISUAL INSPECTION 3284PS2610-TX06D57VM0AAA-1A 10-1/3-3/3 11 PRECAUTIONS IN DESIGN 3284PS2611-TX06D57VM0AAA-1A 11-1/3-3/3
in „Hitachi Display TX06“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TX06D57VM0AAA-01A1.pdf
3284PS2608-TX06D57VM0AAA-1A 8-1/11-11/11 9 DIMENSIONAL OUTLINE 3284PS2609-TX06D57VM0AAA-1A 9-1/1 10 VISUAL INSPECTION 3284PS2610-TX06D57VM0AAA-1A 10-1/3-3/3 11 PRECAUTIONS IN DESIGN 3284PS2611-TX06D57VM0AAA-1A 11-1/3-3/3
in „SPI Interface dirket an TFT Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv8350f_7_.pdf
between the VM and GND pins. (1) PWR = power, I = input, O = output, NC = no connection, OD = open-drain E E S D B S D B L D D L H L H L H A L D D L H L H L H A V G D I I I I I I E V G D I I I I I I E 4 3 3 3 3 3 3
in „BLDC-Motor: Überspannung beim Bremsen trotz Durchschaltung aller Low-Side-MOSFETs?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
e2928_a8v-vm_se.pdf
• • 256MB Kingston KVR400X64C3A/256 Kingston SS D3208DL3T-5A • • 256MB Kingston KVR400X64C3A/256 PSC SS A2S56D30BTP • • 1G Kingston KVR400X64C3A/1G Infineon DS HYB25D512800BE-5B • 256MB Infineon HYS64D32300HU-5-C Infineon SS HYB25D256800CE
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TMC5240-EVAL_V10_-_Schematic_Drawing.pdf
HISTORY 1 / 3 A B C D E F G A B C D E F G Interface Connector Supply Connector VCC IO +5V_USB +VCC_IO +3.3V_USB J201 +5V_VM J202 5 43 44 +VM R201 R202 5 1 41 42 NC 2 0R 0R 39 40 0603 0603 NC NC 37 38 PT115-T330-02
in „TMC5240 antwortet nicht im Single Wire Uart“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schema-electrique-1395717-renkforce-rf2000-imprimante-3d-appareil-pret-a-lemploi-banc-dimpression-chauffant.pdf
3.3k C31 1 100n N N N N N (ADC7/TDI) PF7 DIR_DRV2 30 RESET G G G G G 18p 1 2 1 2 9 AT MEGA2560 TQFP 1 3 8 6 9 VSS VSS VSS VSS VSS VSS nRES VSS USB Interface LDO 3.3 V 150 mA Reserve Pin PIEPSER Status
in „Spannungseinbruch nach Spule“ · Analoge Elektronik und Schaltungstechnik ·
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LeanXcam_UserDoc.pdf
.....9 3. Installation der VM mit dem SDK.......................................................................11 3.1. Eine allgemeine Bemerkungen zur Verwendung der Ubuntu VM..............................12
in „Lean Xcam Farbenauslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematic_for_IP5568_POWERBANK_V1.0.pdf
RGB RGB PD P0 PE PD PD PROTECTION P0 P0 P2 P3 P2 R2 R2 R2 R2 R24 P5 P0 1K 1K 1K 1K 1K CR2 R2 P0 P0 P2 P3 P2 BAT+ 2R 2R IC2 P5 P0 BAT+ R27 1 2 PIIC01 VM VDD PIC06 PR0 P20 E E PIIC02 VM GND PIC08 1K A A PIIC03 PIC07 P G G PIIC04 VM GND PIC05 C21 P1
in „Kann mir jemand bei der Fehlersuche von meiner Platine helfen?“ · Platinen ·
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kdnx901.pdf
V V V 1 4 2SD2114K/VW/-X N P V T R V V R N G O N G V G G V S R G F I E V S R G F I E I A G 1 M 4 5 6 1 1 . . . . R 0V 4 4 0 V V 47k 1 1 4 4 4 9 0V R1113 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 1 2 3 4 5 6 7 1 2 3 4 5 6 7 7 1 2 3 R 1 3. 0 0 Q906 2 A A
in „Autoradio Reparieren JVC NX901“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AtR_Trennverstaerker_vm130_.pdf
1.5 VM 130 ... VM 138 1.5 www.msr-elektronik.com 6.1.2010 Potenzial-Trennverstärker Isolating Amplifier • 3-Wege-Trennung • three-way separation • bipolar • bipolar • abgleichbar • adjustable • Linearitätsfehler
in „Suche: 0-10V Impedanzwandler für Hutschiene“ · Analoge Elektronik und Schaltungstechnik ·
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AP9101C.pdf
Maximum Ratings (Note 5) Symbol Parameter Rating Unit VDS Supply Voltage (Between VDD and VSS) -0.3 to 12 V V DM Charger Input Voltage (Between VDD and VM) -0.3 to 30 V V CO Pin Output Voltage V -0.3 to V +0.3 V CO M DD VDO DO Pin Output Voltage VSS0.3 to DD+0.3 V TOPR Operating Temperature Range -
in „LiPo Tiefentladeschutz 1S/Einzel-Zellen "Mini/Nano"“ · Platinen ·
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Datei
tsv99x_series.txt
VPROT_IN_M_VCCP NET0190 NET0135 DC {V_DPROT} V_OUTVLIM_HIGH NET0397 NET0375 DC -770m DILIM_ICCN NET0402 VB_3 DIODE_ILIM DVLIM_HIGH_VB VB NET0180 DIODE_VLIM DPROT_IN_M_VCCP VM NET0135 DIODE_VLIM DILIM_SOURCE VB_3 VB_3_SOURCE DIODE_ILIM D_OUTVLIM_LOW NET0373 VB_3 DIODE_VLIM DVLIM_LOW_VB NET0110 VB DIODE_VLIM DILIM_SINK VB_3_SINK VB_3 DIODE_ILIM D_OUTVLIM_HIGH VB_3 NET0397 DIODE_VLIM DILIM_ICCP VB_3 NET0395 DIODE_ILIM DPROT_IN_M_VCCN NET0116 VM DIODE_VLIM DPROT_IN_P_VCCP NET0158 NET0134 DIODE_VLIM DPROT_IN_P_VCCN NET0115
in „Simulation LTSpice läuft extrem langsam (Filtersimulation OP Amp)“ · Analoge Elektronik und Schaltungstechnik ·
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SH367107X_BMS_IC.pdf
7 / SH367106 K 0 0 C5 0 0 1 4 1 1 8 8 CON8 1 1 R 1 ( ( 5 V V 0 0 5 5 5 5 D 6 7 2 2 T / / / / / / S G C C 3 3 3 D 8 8 5 4 5 4 4 4 4 K 0 K 0 0 T C 1 1 2 2 2 1 1 1 1 1 ( 1 1 1 R R D Q1 C VDD 9 6 1 1 1 1 1 2N7002 GND N 5 1 C D C C C C C 6 1 1 C 0 1 J4 2 C 2 R R DS R R GND M M M GND GND 1 Q2 1 Q3 0 1 G G
in „WER KENNT DIESES 10S BMS von 36V Lion Akku vom Hersteller GW.“ · Mikrocontroller und Digitale Elektronik ·
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Latch32bit-74LVCH32373A_2.pdf
F2 2Q2 data output N1 4Q1 data output F3 VCC supply voltage N2 4Q0 data output F4 VCC supply voltage N3 GND ground (0 V) F5 2D2 data input N4 GND ground (0 V) F6 2D3 data input N5 4D0 data input G1 2Q5 data output N6 4D1 data input G2 2Q4 data output P1 4Q3 data output G3 GND ground (0 V) P2 4Q2 data output G4 GND ground (0 V) P3 VCC supply voltage G5 2D4 data input P4 VCC supply voltage G6 2D5 data input P5 4D2 data input H1 2Q6 data output P6 4D3 data
in „BGA Footprint“ · Platinen ·
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cd0603-b.pdf
-B0340R Forward Current Derating Curve Maximum Non-Repetitive Peak Forward Surge Current 0.4 2.5 8.3msSingleHalfSine-Wave ) (JEDECMethod) ) ( 2.0 t 0.3 n e r r u C e 1.5 r r a 0.2 S r d F a 1.0 g r r F v 0.1 a 0.5 A P 0 0 0 25 50 75 100 125 150 1 100 Number of Cycles at 60 Hz Lead Temperature (°C) Typical
in „Fein MultiTalent AFMT 12 QSL - Bauteil identifizieren“ · Mechanik, Gehäuse, Werkzeug ·
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ISP1301.pdf
RESET_N 4 15 INT_N 5 14 DAT/VP SPEED 6 13 SE0/VM 7 8 9 10 11 12 004aaa542 3 D N M P V 3 E T V V R ( P / E U N R S E V O Fig 2. Pin configuration HVQFN24 (top view). ) N V D T ( E I G P N E U E M P C VR S O V V R 7 8 9 10 11 12 SPEED 6 13 SE0/VM INT_N
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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drv8811.pdf
REVISED JANUARY 2015 www.ti.com 7.8 Typical Characteristics 4.6 6 4.4 5 4.2 4 4 ) A 8 V A ( 24 V ( M3.8 35 V Q3 8 V I IV 24 V 3.6 35 V 2 3.4 1 3.2 3 0 -40 -20 0 20 40 60 80 100 -40 -20 0 20 40 60 80 100 VM (V) D001 VM (V) D002 Figure 2. I vs VM Figure 3. I vs VM VM VMQ 1400 1600 40 GC 1350 1500 1300
in „UV-Laserdrucker II“ · Platinen ·
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sn74lvc1gx04.pdf
(SN74LVC1GU04) JESD 78, Class II and One Buffered Inverter (SN74LVC1G04) • ESD Protection Exceeds JESD 22 • Suitable for Commonly Used Clock – 2000-V Human-Body Model (A114-A) Frequencies: – 200-V Machine Model (A115-A) – 15 kHz, 3.58 MHz, 4.43 MHz, 13 MHz, – 1000-V Charged-Device
in „Was ist das für ein Chip?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schaltplan.pdf
HALL_B 3 P 1u I 47n PIC12VGLS G TR B V V D D I I I INLAPIC03 HALL_A GHAPIT01 1 25V M GNDA P0 PIC13CPL R INHAPIC03 PWM_MOTOR PT S GND S PIC14CPH ENABLEPIC03 NLDV0ES C S PI615VM nSCSPI313 ADC_SCK PCR2 SHA 3mm PI716VDRAIN
in „MOSFET für BLDC 18V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HD66766-10.pdf
2.25 x VM Vci2 x 4 x 2 - - - - N/A - - 1/9 x 3 1 0 1 0 1.675 3.35 x VM Vci2 x 3 x 4 0 1 0 0 1.25 2.50 x VM Vci2 x 4 x 2 - - - - N/A - - 1/10 x 3 1 1 0 0 1.825 3.65 x VM Vci2 x 3 x 4 0 1 1 0 1.375 2.75 x VM Vci2
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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PDF
TMC4671-EVAL_Schematic.pdf
+5V O O O S C O I R I C I C _ CGND P P P _ _ _ _ I X E N E Y E C G G G P P P P S _ A _ A _ A C ] ] P] _ _ _ _ _ C C C 2 2 2 B B B B B E E E PO2 G2 2 D D D D D OCA VA WA B ] ] ] ] ] ] ] ] ] [ [ PO3 3 3 3 4 1 1 1 1 1 2 2 2 2 2 4 4 4 C C C C C [ [ [ [ [ 2 2 2 2 2 SILK
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PDF
SN74LVC3G17_datasheet.pdf
B0 K0 P1 W Pin1 Type Drawing Diameter Width (mm) (mm) (mm) (mm) (mm) Quadrant (mm) W1 (mm) SN74LVC3G17DCTR SM8 DCT 8 3000 180.0 13.0 3.35 4.5 1.55 4.0 12.0 Q3 SN74LVC3G17DCUR VSSOP DCU 8 3000 180.0 8.4 2.25 3.35 1.05 4.0 8.0 Q3 SN74LVC3G17DCUR VSSOP DCU 8 3000 180.0 9.0 2.05 3.3 1.0 4.0 8.0 Q3 SN74LVC3G17DCUR
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PDF
TB67S109AFTG_datasheet_en_20190228-1272643.pdf
Operation Ranges (Ta=-20 to 85°C) Characteristics Symbol Min Typ. Max Unit Remarks Motor power supply VM 10 24 47 V ― Motor output current Iout ― 1.5 3.0 A (Note 1) Logic input voltage VIN(H) 2.0 ― 5.5 V Logic input High Level VIN(L) 0 ― 0.8 V Logic input Low Level MO output pin voltage VMO ― 3.3 5.0 V
in „Fragen zu schrittmotor Treiber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TB67S109AFTG_datasheet_en_20190228-1.pdf
Operation Ranges (Ta=-20 to 85°C) Characteristics Symbol Min Typ. Max Unit Remarks Motor power supply VM 10 24 47 V ― Motor output current Iout ― 1.5 3.0 A (Note 1) Logic input voltage VIN(H) 2.0 ― 5.5 V Logic input High Level VIN(L) 0 ― 0.8 V Logic input Low Level MO output pin voltage VMO ― 3.3 5.0 V
in „TB6600 - Halb- und Vollschritt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
axpert_vm_iii5000__c.pdf
专案名称: Axpert VM III-5000/VM III-3000 专案编号: S1711171 修订版次: 00 PAGE 1 / 3 旭隼 日月元 维修手册 Prepared by: Clay Lin Date: Checked by: Date: Approved by: Date: V-RDP-004-73 A 维修手册 专案名称: Axpert VM III-5000/VM III-3000 S1711171
in „PV Wechselrichter startet nicht mehr und verursacht Kurzschluss bzw. hohen Strom“ · Analoge Elektronik und Schaltungstechnik ·
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Bours_0603.pdf
Current 0.8 Current Marking Current Marking 050 ~ 800 = 0.5 A ~ 8 A (.031) Structure Type 0.5 A C 3 A K M = Ceramic Multilayer 0.75 A D 3.5 A L 1.0 Packaging Type (.039) 1 A E 4 A M - 2 = Tape & Reel 1.25 A F 5 A N 0.7 1.5 A G 6 A O (.027) 2 A I 7 A P DIMENSIONS: MM 2.5 A J 8 A R (INCHES) Product Dimensions
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Datei
readme_eclipse.html
; <a href="#I-General-GCJ">3.1.2 GCJ</a><br/> <a href="#I-General-64bitJava">3.1.3 64-bit Java HotSpot(TM) VM</a><br/> <a href="#I-Platform">3.2 Platform</a><br/> <a href="#I-Platform-Core
in „HILFE BEI INSTALLIERN EINES PROGRAMMS“ · PC Hard- und Software ·
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PDF
drv8833.pdf
specific JEDEC standard test exists, but a close description can be found in the ANSI SEMI standard G30-88. Spacer RECOMMENDED OPERATING CONDITIONS TA= 25°C (unless otherwise noted) MIN NOM MAX UNIT VM Motor power supply voltage range (1) 2.7 10.8 V VDIGIN Digital input pin voltage range -0.3 5.75 V
in „TI DRV8833 Muss man den PWM Pin wechseln?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD66766R.PDF
1 0 1 2.00 4.00 x VM Vci2 x 3 x 4 1 0 0 0 1.50 3.00 x VM Vci2 x 4 x 3 - - - - N/A - - 1/12 x 4 1 0 0 1 1.625 3.25 x VM Vci2 x 4 x 5 0 1 0 1 1.3 2.60 x VM Vci2 x 5 x 3 - - - - N/A - - 1/13 x 4 1 0 1 1 1.75 3.45 x VM Vci2
in „LCD-Modul F51661GNCJU-MLW-AA * Info *“ · Mikrocontroller und Digitale Elektronik ·
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Datei
FT800_config.h
setup as copy of FT_VM800B43A since FTDI uses the same setup for both 2.3 - moved pin definitions for FT_CS and FR_PDN to here from FT800_config.c - added a set of definitions for Arduino */ #ifndef FT800_CONFIG_H_ #define
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PDF
stepping_motor_Mdrive__OM-MD_V06.28.2002__e.pdf
B Table1.3.1:SingleEndEncoderPinConfiguration 19 SINGLE END ENCODER CH B + VDC CH A INDEX G ND PIN 1 Figure1.3.1:EncoderConnections D i f f e r e n t i a l E n c o d e r MDrive Differential Encoder Configuration
in „Alter Stepper-Treiber über ISP an USB parametrieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PowerBank.pdf
C4 5 l D- 2 2R 10u 4 LED3 e KEY 5 +BATT C5 10u 10u D- 2 D- l J3 Batt + 2A 100n 2 D 3 i D 4 o 10u D i JP1 VM V CO S G ID D1 D4 p G S Batt Enab_VM 25% 100% 9 2 4 S 1 6 5 C6 4 5 BT1 1 2 VM_(SOT-S5) DO 10u R4 D5 1 Li-Ion V R3 6 6 4 D2 D3 GND 20R LED TP4 2k7 50% 75% Batt- G G R5 1 S D 2 5 D S 3 TP5 10K GND GND A B G 3 3 G +5V SW1 2 U U 2 GND J4 SW_Push 2 2 Power Input 2 2 2 2 GND S S +5V_out J5 D D 1 1 Power Output 1 1 _ _ S S M M GND
in „LiPo Tiefentladeschutz 1S/Einzel-Zellen "Mini/Nano"“ · Platinen ·
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Datei
FT800_config.h
hardware abstraction funtions - added hardware-selection defines, first implemented for AVR8 - added FT_VM800B50A TFT setup as copy of FT_VM800B43A since FTDI uses the same setup for both 2.3 - moved pin definitions for FT_CS and FR_PDN to here from FT800_config.c - added a set of definitions for Arduino
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PDF
S8200A_E.pdf
V VM pin input voltage VVM VM VDD− 28 to DD+ 0.3 V DO pin output voltage VDO DO VSS− 0.3 toDD + 0.3 V CO pin output voltage VCO CO VVM− 0.3 toDD + 0.3 V SOT-23-6 − 650*1 mW Power dissipation PD *1 SNT-6A
in „Li-Ion Ladeschutzschaltung mit S-8200“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DRV8711.pdf
OUTPUTS (OPEN-DRAIN OUTPUTS) V Output low voltage I = 5 mA 0.5 V OL O OH Output high leakage current VO= 3.3 V 1 µA MOSFET DRIVERS VOUTH High-side gate drive output voltageVM = 24 V, O = 100 μA VM+10 V VOUTL Low-side gate drive output voltage VM = 24 V, O = 100 μA 10 V DTIME = 00 400 Output dead time digital
in „DRV8711 Schrittmotortreiber Fehler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datasheet_DRV8711.pdf
OUTPUTS (OPEN-DRAIN OUTPUTS) V Output low voltage I = 5 mA 0.5 V OL O OH Output high leakage current VO= 3.3 V 1 µA MOSFET DRIVERS VOUTH High-side gate drive output voltageVM = 24 V, O = 100 μA VM+10 V VOUTL Low-side gate drive output voltage VM = 24 V, O = 100 μA 10 V DTIME = 00 400 Output dead time digital
in „DRV8711 Steppermotortreiber - Hohe Geschwindigkeiten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schematics_v2.pdf
3 3 IN_U_H G Q3 4 IN_V_L S 4 5 U5 1Ω 5 6 IN_V_H VDD HO 6 IN_W_L IN_V_H 0Ω R30 C9 100nF 7 7 IN_W_H C1 HI HB 8 8 4.7uF HS MOTOR_V 9 9 10 IN_V_L LI LO C15 10 4.7nF GND R26 D G Q4 GND UCC27201DRMT 1Ω S GND
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PDF
AN443.pdf
when D1 switches off. Diodes D2, D3, ....Dn are equivalent to a capacitor CD = Q RR(n-1) / (VM-V1) D1 D2 D3 Dn CD C D CD + VM C C(1+a) C(1+a) C(1+a) V1 V2 V3 Vn In these conditions the voltage across D1 is : QRR (n−1) + C M (1+a) V1= C
in „Dioden in Reihe, Ausgleichswiderstände“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
drv8825.pdf
of –40°C to 85°C (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT POWER SUPPLIES VM VM operating supply current V (VMx) 24 V 5 8 mA VMQ VM sleep mode supply current V (VMx) 24 V 10 20 μA V3P3OUT REGULATOR V3P3 V3P3OUT voltage IOUT = 0 to 1 mA 3.2 3.3 3.4 V LOGIC-LEVEL INPUTS VIL Input
in „Suche passenden Treiber für Stepper.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DRV8825-Datasheet.pdf
of –40°C to 85°C (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT POWER SUPPLIES VM VM operating supply current V (VMx) 24 V 5 8 mA VMQ VM sleep mode supply current V (VMx) 24 V 10 20 μA V3P3OUT REGULATOR V3P3 V3P3OUT voltage IOUT = 0 to 1 mA 3.2 3.3 3.4 V LOGIC-LEVEL INPUTS VIL Input
in „Nano Shield zerstört Nano“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Switch.pdf
653-G3VM-61VY G3VM-61VY E - SOP4 SMT 70mA 3750 25Ω 30pF 1nA 653-G3VM-61G1 G3VM-61G1 C 3.90 SOP4 SMT 400mA 1500 1Ω 130pF 1nA † 653-G3VM-61G2 G3VM-61G2 C 3.90 SOP4 SMT 400mA 1500 1Ω 130pF 1nA 653-G3VM61GR1 G3VM
in „Ausfallursache Printtaster DeLonghi Kaffeeautomat?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematics.pdf
Supply Oscillator Power Stage EP 1GPIO5/AENC_UX_MCD/DBGSPI_MOSI GPIO4/AGPI_B_MCD/DBGSPI_SCK 76 U8 +12V +3V3 2VCCIO1 GPIO3/AGPI_A_MCD/DBGSPI_nSCS 75 External 12V Regulator K7805-1000R3 +3V3 GND 3GNDIO1 GPIO2/ADC_VM_MCD 74 VCC +12V NN O +5V +3V3 U3 4GPIO6/AENC_VN_MCD/DBGSPI_MISO GNDIO6 73 GND H3 +12V V G +
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lg_flatron_l1800p_lb886f_ch_cl-29.pdf
FRAME P902 METAL FRAME J705 J801 J702 J710 CN4 CN6 CN5 CN1 CN7 CN9 CN8 CN_C02 CN_C01 CN301 MODULE J5 J3 Speaker PCB Connector Ass’6631T11012P 5V T L T LCD Module r C C t e u v w o R,G,B I P M differential LVDS:Low Voltage Differential Signaling Micom Memory 3.3VM 68HC08-BD48 LVDS (KM416S102BT) Inverter (THC63LVD823) M-CLK Address Data 48 Bit Out - CLK 12V H/V-Sync DE ,H/V Sync out 5V 5V 5V R,G,B Even/Odd P 2.5V 3.3V 3.3V o 12V Gm5020 w including Reg. Reg. Reg. e B (ADC / TMDS Rx ) o H-Sync a 5V DVDD2.5V PVDD 3.3V DVDD 3.3V d AVDD2.5V 3.3VM AVDD 3.3V H-Sync A Hsync Switch V-Sync R,G,B 12V (
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