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Analoges Drehzahlmesser-Display
6500 7000 7500 8000 8500 9000 9500 100 150 200 250 300 350 400 450 500 550 600 650 700 750 800 850 900 950 1000 1500 2500 3500 4500 5500 6500 7500 rpm A B C D
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taster.htm
__DRAKA_CAT6.html">Crossover DRAKA UC900 CAT6</A></TD></TR> <TR valign=top><TD valign=top align=left><A class="Sitemap" href="Crossover_Ecolan_SFTP_CAT5e.html">Crossover ECOLAN</A></TD></TR> <TR valign=top><TD valign=top align=left><A class
in „Pull up Widerstand Arduino“ · Mikrocontroller und Digitale Elektronik ·
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AN4803.pdf
source. The charger automatically determines the adapter type and can distinguish between: 1. DCP: 500mA to 1.5A 2. CDP (host or hub): to 900mA (580mA during chirp) for Hi-Speed; to 1.5A for low and fast speed 3. Low-power SDP (host or hub): 100mA 4. High-power SDP (host or hub): 500mA The available current
in „Self-Powered / USB-Powered umschalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_L6205N.pdf
FR4 PCB without any heat sinking surface on the board. PIN CONNECTIONS (Top View) IN1A 1 20 EN A GND 1 20 GND IN2A 2 19 VCP VS 2 19 VS A B SENSE A 3 18 OUT2 A OUT2 A 3 18 OUT2 B OUT1 A 4 17 VSA VCP 4 17 VBOOT GND 5 16 GND EN A 5 16 ENB GND 6 15 GND IN1 6 15 IN2 A B OUT1 B 7 14 VSB IN2A
in „1. Schaltung Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FMMT620.pdf
nA V =5.5V EBO EB Collector Emitter Cut-Off Current CES 100 nA VCES=80V Collector-Emitter Saturation VCE(sat) 15 20 mV IC=0.1A, B =10mA* Voltage 45 60 mV IC=0.5A, B =50mA* 145 185 mV I =1A, I =20mA* 160
in „"intelligenter" Open-Kollektor?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FMMT620.pdf
nA V =5.5V EBO EB Collector Emitter Cut-Off Current CES 100 nA VCES=80V Collector-Emitter Saturation VCE(sat) 15 20 mV IC=0.1A, B =10mA* Voltage 45 60 mV IC=0.5A, B =50mA* 145 185 mV I =1A, I =20mA* 160
in „Suche Transistoren mit kleinerem Spannungsübergang“ · Analoge Elektronik und Schaltungstechnik ·
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Oszilloskop-Messkurve eines digitalen Signals
Stopp T:14,00ms 0:08 a b Δx: 31.20ms 1/x: 32.05Hz x1: 7,900ms x2: -23.30ms M: 5.0ms (100MS/s) Depth:10M(12-bit) CH1:DC- 202mV 1 100mV- -2.30Div 2 100mV- -3.72Div Typ Bild Speichern
in „Welcher FernbedienungsCode ?“ · Mikrocontroller und Digitale Elektronik · · Oszi-Bilder
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Samsung Smartphone Download Mode Display
BOOT RECOVERY MODE CHECK BOOT PARTITONS. sbl1 partition doesn't exist ODIN MODE PRODUCT NAME: SM-G900F CURRENT BINARY: Samsung Official SYSTEM STATUS: Custom REACTIVATION LOCK(KK): OFF KNOX WARRANTY VOID: 0x0 QUALCOMM SECUREBOOT: ENABLE (CSB) RP SWREV: S1, T1, R1, A1, P1 SECURE DOWNLOAD : ENABLE UDC
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Samsung Smartphone Download Mode Display
BOOT RECOVERY MODE CHECK BOOT PARTITONS. sbl1 partition doesn't exist ODIN MODE PRODUCT NAME: SM-G900F CURRENT BINARY: Samsung Official SYSTEM STATUS: Custom REACTIVATION LOCK(KK): OFF KNOX WARRANTY VOID: 0x0 QUALCOMM SECUREBOOT: ENABLE (CSB) RP SWREV: S1, T1, R1, A1, P1 SECURE DOWNLOAD : ENABLE UDC
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PDF
TP4056.pdf
● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC < VBAT or CC < VUV VFLOAL Regulated Output (Float) 0℃≤T ≤A5℃,I BAT40mA 4.137 4.2 4.263 V Voltage BAT Pin Current R PROG = 2.4k, Current ● 450 500 550 mA Mode Text condition:VBAT=4.0V R PROG = 1.2k, Current ● 950 1000 1050 mA BAT Mode Standby Mode, VBAT= 4.2V ● 0 -2.5 -6 μA TRIKL Trickle Charge Current VBAT<VTRIKL PROG=1.2K ● 120 130 140 mA VTRIKL Trickle
in „Li-ION Akku laden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC < VBAT or CC < VUV VFLOAL Regulated Output (Float) 0℃≤T ≤A5℃,I BAT40mA 4.137 4.2 4.263 V Voltage BAT Pin Current R PROG = 2.4k, Current ● 450 500 550 mA Mode Text condition:VBAT=4.0V R PROG = 1.2k, Current ● 950 1000 1050 mA BAT Mode Standby Mode, VBAT= 4.2V ● 0 -2.5 -6 μA TRIKL Trickle Charge Current VBAT<VTRIKL PROG=1.2K ● 120 130 140 mA VTRIKL Trickle
in „Unbekanntes IC XT2058“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC < VBAT or CC < VUV VFLOAL Regulated Output (Float) 0℃≤T ≤A5℃,I BAT40mA 4.137 4.2 4.263 V Voltage BAT Pin Current R PROG = 2.4k, Current ● 450 500 550 mA Mode Text condition:VBAT=4.0V R PROG = 1.2k, Current ● 950 1000 1050 mA BAT Mode Standby Mode, VBAT= 4.2V ● 0 -2.5 -6 μA TRIKL Trickle Charge Current VBAT<VTRIKL PROG=1.2K ● 120 130 140 mA VTRIKL Trickle
in „Lipo Ladeelektronik“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056_Kopie.pdf
● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC < VBAT or CC < VUV VFLOAL Regulated Output (Float) 0℃≤T ≤A5℃,I BAT40mA 4.137 4.2 4.263 V Voltage BAT Pin Current R PROG = 2.4k, Current ● 450 500 550 mA Mode Text condition:VBAT=4.0V R PROG = 1.2k, Current ● 950 1000 1050 mA BAT Mode Standby Mode, VBAT= 4.2V ● 0 -2.5 -6 μA TRIKL Trickle Charge Current VBAT<VTRIKL PROG=1.2K ● 120 130 140 mA VTRIKL Trickle
in „0,4 OHM SMD Widerstand woher ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056_1_LIIOn_charger.pdf
● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC < VBAT or CC < VUV V Regulated Output (Float) 0℃≤T ≤A5℃,I BAT40mA 4.137 4.2 4.263 V FLOAL Voltage BAT Pin Current RPROG = 2.4k, Current ● 450 500 550 mA Mode Text condition:VBAT=4.0V RPROG = 1.2k, Current ● 950 1000 1050 mA BAT Mode Standby Mode, VBAT= 4.2V ● 0 -2.5 -6 μA TRIKL Trickle Charge Current VBAT<VTRIKL PROG=1.2K ● 120 130 140 mA Trickle Charge
in „TC4056 LiPo-Lader-Chip mehr Versorgung real möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC < VBAT or CC < VUV VFLOAL Regulated Output (Float) 0℃≤T ≤A5℃,I BAT40mA 4.137 4.2 4.263 V Voltage BAT Pin Current R PROG = 2.4k, Current ● 450 500 550 mA Mode Text condition:VBAT=4.0V R PROG = 1.2k, Current ● 950 1000 1050 mA BAT Mode Standby Mode, VBAT= 4.2V ● 0 -2.5 -6 μA TRIKL Trickle Charge Current VBAT<VTRIKL PROG=1.2K ● 120 130 140 mA VTRIKL Trickle
in „Wer hat praktische Erfahrung mit dem Laden nackter Li-Ion Akkus?“ · Offtopic ·
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PDF
TP4056.pdf
● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC < VBAT or CC < VUV VFLOAL Regulated Output (Float) 0℃≤T ≤A5℃,I BAT40mA 4.137 4.2 4.263 V Voltage BAT Pin Current R PROG = 2.4k, Current ● 450 500 550 mA Mode Text condition:VBAT=4.0V R PROG = 1.2k, Current ● 950 1000 1050 mA BAT Mode Standby Mode, VBAT= 4.2V ● 0 -2.5 -6 μA TRIKL Trickle Charge Current VBAT<VTRIKL PROG=1.2K ● 120 130 140 mA VTRIKL Trickle
in „Stromwandler als Stromversorgung denkbar?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC < VBAT or CC < VUV VFLOAL Regulated Output (Float) 0℃≤T ≤A5℃,I BAT40mA 4.137 4.2 4.263 V Voltage BAT Pin Current R PROG = 2.4k, Current ● 450 500 550 mA Mode Text condition:VBAT=4.0V R PROG = 1.2k, Current ● 950 1000 1050 mA BAT Mode Standby Mode, VBAT= 4.2V ● 0 -2.5 -6 μA TRIKL Trickle Charge Current VBAT<VTRIKL PROG=1.2K ● 120 130 140 mA VTRIKL Trickle
in „einzelne LiIonen Zelle laden - Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC < VBAT or CC < VUV VFLOAL Regulated Output (Float) 0℃≤T ≤A5℃,I BAT40mA 4.137 4.2 4.263 V Voltage BAT Pin Current R PROG = 2.4k, Current ● 450 500 550 mA Mode Text condition:VBAT=4.0V R PROG = 1.2k, Current ● 950 1000 1050 mA BAT Mode Standby Mode, VBAT= 4.2V ● 0 -2.5 -6 μA TRIKL Trickle Charge Current VBAT<VTRIKL PROG=1.2K ● 120 130 140 mA VTRIKL Trickle
in „Laderegler Li-Ion 3s“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC < VBAT or CC < VUV VFLOAL Regulated Output (Float) 0℃≤T ≤A5℃,I BAT40mA 4.137 4.2 4.263 V Voltage BAT Pin Current R PROG = 2.4k, Current ● 450 500 550 mA Mode Text condition:VBAT=4.0V R PROG = 1.2k, Current ● 950 1000 1050 mA BAT Mode Standby Mode, VBAT= 4.2V ● 0 -2.5 -6 μA TRIKL Trickle Charge Current VBAT<VTRIKL PROG=1.2K ● 120 130 140 mA VTRIKL Trickle
in „Lithium-Polymer Zellen richtig Laden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC < VBAT or CC < VUV VFLOAL Regulated Output (Float) 0℃≤T ≤A5℃,I BAT40mA 4.137 4.2 4.263 V Voltage BAT Pin Current R PROG = 2.4k, Current ● 450 500 550 mA Mode Text condition:VBAT=4.0V R PROG = 1.2k, Current ● 950 1000 1050 mA BAT Mode Standby Mode, VBAT= 4.2V ● 0 -2.5 -6 μA TRIKL Trickle Charge Current VBAT<VTRIKL PROG=1.2K ● 120 130 140 mA VTRIKL Trickle
in „Strommessschaltung für Akkuladung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC < VBAT or CC < VUV VFLOAL Regulated Output (Float) 0℃≤T ≤A5℃,I BAT40mA 4.137 4.2 4.263 V Voltage BAT Pin Current R PROG = 2.4k, Current ● 450 500 550 mA Mode Text condition:VBAT=4.0V R PROG = 1.2k, Current ● 950 1000 1050 mA BAT Mode Standby Mode, VBAT= 4.2V ● 0 -2.5 -6 μA TRIKL Trickle Charge Current VBAT<VTRIKL PROG=1.2K ● 120 130 140 mA VTRIKL Trickle
in „Akkuschonen 80% Ladebegrenzung, wie ist das zu verstehen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC < VBAT or CC < VUV VFLOAL Regulated Output (Float) 0℃≤T ≤A5℃,I BAT40mA 4.137 4.2 4.263 V Voltage BAT Pin Current R PROG = 2.4k, Current ● 450 500 550 mA Mode Text condition:VBAT=4.0V R PROG = 1.2k, Current ● 950 1000 1050 mA BAT Mode Standby Mode, VBAT= 4.2V ● 0 -2.5 -6 μA TRIKL Trickle Charge Current VBAT<VTRIKL PROG=1.2K ● 120 130 140 mA VTRIKL Trickle
in „LiPo Ladegerät was einstellbar nur bis ca. 80 Prozent lädt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC < VBAT or CC < VUV VFLOAL Regulated Output (Float) 0℃≤T ≤A5℃,I BAT40mA 4.137 4.2 4.263 V Voltage BAT Pin Current R PROG = 2.4k, Current ● 450 500 550 mA Mode Text condition:VBAT=4.0V R PROG = 1.2k, Current ● 950 1000 1050 mA BAT Mode Standby Mode, VBAT= 4.2V ● 0 -2.5 -6 μA TRIKL Trickle Charge Current VBAT<VTRIKL PROG=1.2K ● 120 130 140 mA VTRIKL Trickle
in „Fragen zu zwei Micro-USB Ladegeräte mit TP4056 für 18650 Zellen bei 1 A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC < VBAT or CC < VUV VFLOAL Regulated Output (Float) 0℃≤T ≤A5℃,I BAT40mA 4.137 4.2 4.263 V Voltage BAT Pin Current R PROG = 2.4k, Current ● 450 500 550 mA Mode Text condition:VBAT=4.0V R PROG = 1.2k, Current ● 950 1000 1050 mA BAT Mode Standby Mode, VBAT= 4.2V ● 0 -2.5 -6 μA TRIKL Trickle Charge Current VBAT<VTRIKL PROG=1.2K ● 120 130 140 mA VTRIKL Trickle
in „PCB Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pm55l048.pdf
PHASE Drive Circuit UNIPOLAR CONST. VOLT. BIPOLAR CHOPPER Drive Voltage 24[V] 24[V] Current/Phase 800[mA] Coil Resistance/Phase 30[Ω] 5.5[Ω] Drive IC 2SC3346 UDN2916B-V PM Motor Magnet Material Ferrite plastic magnet (MSPL) Polar anisotropy ferrite sintered magnet (MS50) PM Type Nd-Fe-B bonded magnet (MS70
in „Frage zu Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pm55l-048.pdf
PHASE Drive Circuit UNIPOLAR CONST. VOLT. BIPOLAR CHOPPER Drive Voltage 24[V] 24[V] Current/Phase 800[mA] Coil Resistance/Phase 30[ ♣] 5.5[♣] Drive IC 2SC3346 UDN2916B-V Magnet Material Ferrite plastic magnet (MSPL) PM Motor Polar anisotropy ferrite sintered magnet (MS50) Nd-Fe-Bbonded magnet (MS70) PM
in „5-Pin Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Auflistung_Bauteile.pdf
Auflistung Bauteile Transistoren Typ Menge Beschreibung IPD75N04S4-06 430 N-CH MOSFET 40V/5,9mΩ/75A IPD50N04S4-08 360 N-CH MOSFET 40V/7,9mΩ/50A Batterie-Management Typ Menge Beschreibung BQ76PL102RGTR 5 Batterie-Management PowerLAN Dual-Cell BQ77910DBTR 13 Stand-Alone Multi-Cell Lithium- Ion/Polymer
in „[V] diverse Bauteile (Fets, BMS-ICs, Motor-Treiber“ · Markt ·
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PDF
Auflistung_Bauteile.pdf
Auflistung Bauteile Transistoren Typ Menge Beschreibung IPD75N04S4-06 380 N-CH MOSFET 40V/5,9mΩ/75A IPD50N04S4-08 360 N-CH MOSFET 40V/7,9mΩ/50A Batterie-Management Typ Menge Beschreibung BQ76PL102RGTR 5 Batterie-Management PowerLAN Dual-Cell BQ77910DBTR 13 Stand-Alone Multi-Cell Lithium- Ion/Polymer
in „[V] diverse Bauteile (Fets, BMS-ICs, Motor-Treiber“ · Markt ·
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PDF
Auflistung_Bauteile.pdf
Auflistung Bauteile Transistoren Typ Menge Beschreibung IPD75N04S4-06 380 N-CH MOSFET 40V/5,9mΩ/75A IPD50N04S4-08 360 N-CH MOSFET 40V/7,9mΩ/50A Batterie-Management Typ Menge Beschreibung BQ76PL102RGTR 5 Batterie-Management PowerLAN Dual-Cell BQ77910DBTR 13 Stand-Alone Multi-Cell Lithium- Ion/Polymer
in „[V] diverse Bauteile (Fets, BMS-ICs, Motor-Treiber“ · Markt ·
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CP1_20201222.pdf
PI81 1206 PRPI90 PR0 1206 PIPI102 PI111206 PI1PV10 COV0 10k 10k 10k 10k 10k 10k 10k 10k 10k 10k V10A PI3 V1A P3 CV2A PV V3AA P0 V4A4A PV V5AA P3 V6A6A P8 V7AA PI0 V8A8 P1 V9AA P0 QBASS40YGZ PI1A14 PIVA04 PI3A14 PIVA04 PV5A14 PIVA04 PV7014 PI8A04 PIV901 PV1A04 D1 CA CA CA CA CA CA CA CA CA CA MCP23017ESP A 10 A 10 A 10 A 10 A 10 A 10 A 10 A 10 A 10 A 10 CO1 NL NB PI1A10 A PIVA00 A PI3A10 A PIVA00 A PV5A10A PIVA00 A PV7010A PI8A00 A PIV901 A PV1A00 A PID015 A0 GPA0 PI102 CO21 1206 PI40NL NC PI1A11 B B PIVA01
in „Lerncomputer so wie KOSMOS CP1 nachbauen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1811070920_CET-Chino-Excel-Tech-CEG8205A_C154283.pdf
by design, not subject to production testing.▯ ▯ 2 CEG8205A 10 30 V =4.5,3.5,2.5V 25 C GS VGS=2.0V A 8 A 24 t t e e r 6 r 18 u u n n a 4 a 12 D D , , I 2 I 6 V =1.5V GS T J125 C -55 C 0 0 0 1 2 3 0 1 2 2.0 3 V DS, Drain-to-Source Voltage (V) VGS , Gate-to-Source Voltage (V) Figure 1. Output Characteristics Figure 2. Transfer Characteristics 900 ) 1.8 ID=4.5A s V =4.5V 750 C iss h 1.6 GS F d ( ( i ce e 600 a n 1.4 n r t t o s 1.2 c 450 , e p N - a 300 ( O 1.0 , D ) C C R N 150 oss S 0.8 D 0 C rss R 0.6 0 2 4 6 8 10 -100 -50 0 50 100 150 200
in „Verbraucher mit Attiny45 über Mosfet zuschalten“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Oszilloskop-Messkurve eines digitalen Signals
Stopp T:14,00ms 0:08 a b 1 Δx: 31,20ms 1/x: 32,05Hz x1: 7,900ms x2: -23,30ms M: 5,0ms (100MS/s) Depth:10M(12-bit) CH1:DC- 202mV 1 100mV- -2,30Div 2 100mV- -3,72Div Typ Bild Speichern
in „Welcher FernbedienungsCode ?“ · Mikrocontroller und Digitale Elektronik · · Oszi-Bilder
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PDF
U893.pdf
VS= 5 V Pin 5 (2) 1:128 V SF= 5 V ISF 150 mA 1:256 V SF= 0 V ISF –150 mA Test Circuits TELEFUNKEN Semiconductors 3 (7) Rev.A1, 23-Aug-96 U893BSE Output Circuit Emitter follower output 4 (7) TELEFUNKEN Rev.A1, 23-Aug-96 U893BSE Input Sensitivity Dimensions in mm TELEFUNKEN Semiconductors 5 (7) Rev.A1, 23-Aug-96 U893BSE Dimensions in mm 6 (7) TELEFUNKEN Semiconductors Rev.A1, 23-Aug-96 U893BSE Ozone Depleting Substances Policy Statement It is the policy of TEMIC TELEFUNKEN microelectronic GmbH to
in „Vorteiler U893“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bosch_Sensortec_Flyer_BME680.pdf
time, a pressure sensor with high Gases that can be detected by the BME680 include relative accuracy and a low TCO, in combination with Volatile Organic Compounds (VOC) from paints (such fast response, high
in „BME680 Bosch Sensortec 4 in 1 gass,luftdruck,feucht,temp“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Compact506.pdf
degree Celsius, maximum PD Short-term Repeatability 20 8 µRad PD Output Signal (Common Mode) 300 (@20mA) 900 (@60mA) µA (at specified LED current) PD Output Signal (Differential Mode) 20 (@20mA) 60 (@60mA) µA per degree (at spec. LED current) Mass 12.8 13.3 Grams * Specifications in parenthesis indicate
in „UV-Laserdrucker“ · Platinen ·
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PDF
Precision_Rectifiers_by_ESP.pdf
circuit is discussed in greater detail in AN002. Figure 11 - Moving Coil Meter Amplifier The circuit is a voltage to current converter, and with R2 as 1k as shown, the current is 1mA/V. If a 1V RMS sinewave is applied to the input, the meter will read the average, which is 900µA. Adjusting R2 varies the sensitivity, and changing R2 to 900 ohms means the meter will show 1mA for each volt (RMS) at the input. This assumes a meter with a reasonably low resistance coil, although in theory the circuit will compensate for any series resistance
in „Sinussignal gleichrichten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CET_CEU3252.PDF
Characteristics Figure 2. Transfer Characteristics 900 ) 2.2 ID=7A s V =10V 750 h 1.9 GS F C d ( ( iss i ce e 600 a n 1.6 n r t t 450 o s 1.3 c , e p N - a 300 ( O 1.0 , D ) C Coss R N 150 S 0.7 C D 0 rss R 0.4 0 3 6 9 12 15 -100 -50 0 50 100 150 200 V
in „Was ist das für ein Bauteil "3252 914AG" ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FS1273_NEU_R7_High_Power_DPM.pdf
703W-00/02 0R1 R42 S1 100K R1 R3 R3B 18V 2K4, 1W 100R 100R C3 C3B R44 DPM- Netzbuchse IEC320-C14 R24 900K 182L18 Frontplatten 324R C20 VOLTMETER(0-2V) 10n 10n 4.4-4.6V 0u1 (0-200V) Spannungseinstellung R43 DPM+ R2 470K C2 2K4, 1W 15000uF, 35V R38 5K 100R R5 R25 0-4.5V ZD1 R35 C17 R10 BZX79C3V3, 1N4372A
in „Labornetzteil 30V 4A (Schaltungsprinzip FS 73/12)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FS1273_NEU_R7_High_Power_DPM.pdf
703W-00/02 0R1 R42 S1 100K R1 R3 R3B 18V 2K4, 1W 100R 100R C3 C3B R44 DPM- Netzbuchse IEC320-C14 R24 900K 182L18 Frontplatten 324R C20 VOLTMETER(0-2V) 10n 10n 4.4-4.6V 0u1 (0-200V) Spannungseinstellung R43 DPM+ R2 470K C2 2K4, 1W 15000uF, 35V R38 5K 100R R5 R25 0-4.5V ZD1 R35 C17 R10 BZX79C3V3, 1N4372A
in „Labornetzgerät als Projekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADS1293_3_Kanal_24BIT_EKG_SPI_Dez_2014.pdf
175 175 pA I Input Bias Current B TA= 85°C, LOD OFF –13 13 nA TMIN≤ TA≤ T MAX RIN Differential Input Resistance 500 MΩ f = 400 MHz 92 dB f = 900 MHz 107 dB EMIRR Electromagnetic Interference Rejection Ratio, IN
in „Warum soll ADS1293 mit einem 4,096 MHz Quarz betrieben werden?“ · Mikrocontroller und Digitale Elektronik ·
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Multifunctional withstand voltage tester Gerät und Preisangabe
Multifunctional withstand voltage tester Voltage 50 100 900 1350 1900 2450 2750 3150 3600 3700 Hold down test Red work Red charge Green charged Blue undervoltage TYPE-C 5V1A OFF ON Shenzhen Baiy 2.1 2.8 3.4 3.8 4.4 1.4 1.0 0.15 0.10 50UA current 5MA 7,49€ 30,37
in „Freilaufdiode für Relais 1N4001 geeignet?“ · Analoge Elektronik und Schaltungstechnik · · Fotos
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PDF
SKHI_20_opA__SKBR_.pdf
SKHI 20 opA Absolute Maximum Ratings Symbol Term Value Types VS Supply voltage primary 18 V VSS Supply voltage secondary 30 V IouPEAK Output peak current 2,5 A fmax max. switching frequency 100 kHz VCE Collector-Emitter
in „3,3V PWM -> 15V IGBT Treiber“ · Mikrocontroller und Digitale Elektronik ·
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68641_1_.pdf
The following graph represents typical performance of each LED die in the XLamp XM-L Color LED. 1000 900 800 A 700 ( t 600 n Red e 500 u Green C Blue, White d 400 r a 300 r o 200 F 100 0 2.0 2.5 3.0 3.5 4.0 Forward Voltage (V) Copyright © 2010 Cree, Inc. All rights reserved. The information in this document
in „Wieviel LEDs brauche ich?“ · Analoge Elektronik und Schaltungstechnik ·
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ADS1293_3_Kanal_24BIT_EKG_SPI_.pdf
1.29 64 0xC35000 160 32 1.14 0.95 128 0xC35000 80 15 0.88 0.72 4 0xF30000 2133 430 3.91 3.38 6 0xE6A900 1422 290 3.12 2.68 8 0xF30000 1067 215 2.68 2.30 12 0xE6A900 711 140 2.21 1.88 6 0xF300 8533 1740 0.256 16 0xF30000 533 110 1.93 1.64 32 0xF30000 267 55 1.41 1.18 64 0xF30000 133 27 1.06 0.88 128
in „EKG-IS ADS1293 rückt keine Messwerte raus“ · Mikrocontroller und Digitale Elektronik ·
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Typenschild eines Emerson Netzteils
P/N: 94Y8117 IBM FRU P/N: 94Y8118 EC NO.: N3202F INPUT 100-240 V~ 50/60 Hz OUTPUT +12.0Vaux === 2.5A TOTAL OUTPUT POWER NOT TO EXCEED 900W Manufactured Date 2015-04-14 Manufacturer: Astec International Limited CE TUV SUD 80 PLUS PLATINUM 11S94Y8117YK138154E0VD
in „Pin Belegung“ · Analoge Elektronik und Schaltungstechnik · · Fotos
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ashx_prod_file.pdf
- 900 - nA IIL Low Input Current - 900 - nA V OS Output Differential Voltage - 5 - mV Operating Characteristics, BTL mode V = 5V, T = 25°C, R = 4Ω, Gain = 2V/V (unless otherwise noted) DD A L APA2068 Symbol
in „Ic Apa 2068 Vorverstärkerausgang“ · Mikrocontroller und Digitale Elektronik ·
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smi2c_10.pdf
Min. Max. V -0.5V 0.6V -0.5V 0.3*V il cc V ih 1.4V 5.5V 0.7*Vcc V ol 0.4V @Ipullupn. 0 0.4V @ 3.0mA (0.6V @ 6.0mA fast) Iil +/- 10µA +/- 10µA Ipullup 100µA* 350µA* 3.0mA (6.0mA fast) Note: * The value includes both the current through the pullup resistor and current from all bus agents. In this context
in „Mehrfache Pullup's am I2C Bus ?“ · Mikrocontroller und Digitale Elektronik ·
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TI-AN032_Regulations2_4GHz_SRD.pdf
EIRP within 2454 to 2483.5 MHz. 11a: Max EIRP 500mW. Iceland: 4a: Not applicable. Italy: 3a: If used outside of own premises general authorization is required. 4a: Not implemented. 11a: Not implemented. Luxembourg: 3a: General authorization
in „2.4GHz: Was gilt bei FCC Spurious > 1GHz“ · HF, Funk und Felder ·
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WinAVR Files Download-Seite
Mailing Lists Download Latest Version avrtest_2025-04-16_mingw32.zip (1.5 MB) Get an email when there's a new version of WinAVR Next Home Name Modified Size Downloads / Week avr-gcc 2025-07-14 118 AVRtest 2025-07-12 455 WinAVR 2010-01-20 323 Release Candidate 2009-03-07 2 OldFiles 2008-11-15 2 Totals: 5 Items 900
in „WinAVR für ATmega328PB“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Ferroxcube_Data_Handbook.pdf
; 900 ±20% 103 0.25 mT µs' µ 100 °C; 25 kHz; ≈ 1700 a 200 mT B 25 °C; 10 kHz; ≈ 410 mT 102 1200 A/m 100 °C; 10 kHz; ≈ 350 1200 A/m P V 100 °C; 1 MHz; ≈ 130 kW/m 3 110 1 1 10 102 30 mT f (MHz) 100 °C; 3 MHz
in „Maximale Magnetflussdichte im Ferritkern Temperaturangabe“ · Analoge Elektronik und Schaltungstechnik ·