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FL5150-D.pdf
(LE Mode Selected)P h a Table 2. Typical Values s e R1: 2 k R2: 150 k R ADJ 0 to 250 k ROFFSET 0 to 50 k RZC MonitorM R GATE 1 k C t RSENSE1 1 M RSENSE2 1 M C1: 100 nF C2: 2.5 F C3: 100 nF C GATE 22 nF D Z1: 7.5 V Q1: FDPF33N25
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2N5160.pdf
www.DataSheet4U.com www.DataSheet4U.com www.DataSheet4U.com www.DataSheet4U.com
in „Gegentakt vs. Eintaktvorverstärker“ · HF, Funk und Felder ·
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PDF
VN5160S-E.pdf
Active high CMOS compatible pin, to disable the STATUS pin. 5/31 Block diagram and pins description VN5160S-E Figure 2.Configuration diagram (top view) V 5 4 CC STAT_DIS OUTPUT 6 3 STATUS OUTPUT 7 2 INPUT V CC 8 1 GND SO-8 Table 3. Suggested connections for unused and N.C. pins Connection / PinStatus N.C. Output Input STAT_DIS Floating X X X X X Through 10KΩ Through 10KΩ To ground N.R.(1) X N.R. resistor resistor (1) Not recommended. 6/31 VN5160S-E Electrical specifications 2 Electrical specifications Figure 3. Current and voltage conventions I S VCC V V F CC ISD IOUT STAT_DIS OUTPUT
in „2 Spannungen mit Mosfets schalten“ · Mikrocontroller und Digitale Elektronik ·
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Controller.pdf
COP1C R2R PIJ101 P4Q104 E C6C C1100N 10K C010U 02 C0 PIU104BYPASS GND PIU102C010U C2 P2 3K3 6AminIN PIJ102 2 220U 52 PIR10 1 CC10N LP2985AIM5-3,3 1 PIR201 Prog. Stecker CON_2_Screw DA +5V GND GND GND GND IA +
in „RTC Kapazitäten abgleichen, Genauigkeit erhöhen (STM32)“ · Mikrocontroller und Digitale Elektronik ·
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Stepper_20251111A.pdf
N O V+ Drives+12V D G C C GndDrives B F _ _ C _ A A G N G E E D N C N C E _ E _ + 12VVM AREF EN GND MOSI/ SDI_CFG1 GND SCKD13 CLK /SCK_CFG2 A2 MISOD12 CS / CS_CFG3 A1 M1 3V3 MOSID11 MISO/ SDO_CFG0 B1 5V SSD10 B2 CLK /ENC_DCO_CFG6 GND QHV1 En D9 STEP /REFL_STEP 3,3 VVIO GND DIR GND D7 QHV5160V1.0E D6 R D5 D M D4 S D3 O U D2 o i D1 d D0 A V+ Control &Logik Gnd Control &Logik&Drives Version:2025_11_11
in „Arduino Uno mit QHV5160 über SPI keine Drehzahl“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan für DC-Motor und Stepper Motor Treiber
+24V TP3 R_Shunt 50mOhm 3W TP4 -24V C23 47uF/35V GND DC_Motor_OUT1 IN1 OUT1 J2 DC_Motor_OUT2 IN2 OUT2 12V OUT U4 DRV8871DDAR GND R6 ILIM GND Stepper Motor +5V R1 DIAG_TMC EN_TMC MOSI SCK CS_TMC MISO STEP_TMC DIR_TMC A1 TMC5160 VIO GND GND A2_TMC B2_TMC B1_TMC C22 100nF C1 47uF/35V GND C25 100uF 50V GND A1_TMC B1_TMC J1 Stepper R3 R_Shunt 50mOhm TP1 TP -24V TP2 TP +C24 100nF 50V Sheet: /Motor Control/
in „Auswahl Bulk Kondesatoren“ · Platinen · · Schaltpläne
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WK_In.pdf
Zeichengenerator 10 LED ?? ?? THT dunkelgrün, sehr hell 8 Quarze 16MHz ?? SMD lange Bauform 4 Transistor 2N5109 Motorola TO39 NPN 4 Transistor 2N5160 Motorola TO39 PNP 4 Transistor 2N3614 ASI TO3 Germanium PNP 7 RS232 Treiber MC1488D Signetics/NXP SO14 10 SpgRegler LF18CDT ST TO252/SMD bleifrei 6 Optokoppler HCPL2201 Avago/Broadcom DIP8 6 Optokoppler TLP627 Toshiba DIP4 2 Op-Verst. LM344H National/TI TO99 3 Dual-N-JFet U440 Siliconix TO71 10 P-JFet E176 Siliconix ?? Daten wie J176 2 LED-Treiber UAA170 Siemens DIP 3 OP-Amp AMP03GP Analog Devices DIP 2 OP-Amp CA3160E Vishay
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TB053_Generatirng_High_Voltage_with_PIC16C781.pdf
topology shown in Figure 1, the input VOUT = V IN L voltage (V I) is always less than the output voltage 2L1 (VOUT ). Initially, energy is stored in indu1tor L wh1n Q is turned on. From the electrical characteristics of the inductor, the current ramps up linearly according to Equation 1 (assuming inductor
in „Nixie Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MD-2_C005.pdf
PERIODE (T) TIME C DELAY R 8 7 6 5 RT 3 V 4.5 V T 10 k 5.8 s 4.8 s JUMPER R P1 20 k 8.9 s 8.0 s SETTING P2 30 k 12.1 s 11.4 s P2 51 k 19.2 s 18.0 s P1 + 5V DC 1 2 3 4 75 k 26.5 s 25.0 s = T x 1 N E U D 100 k 34.0 s 32.0 s G G P V 150 k 49.0 s 46.0 s P2 k I U 5 200 k 65.0 s 60.0 s P1 1 T O + 240 k 78.0 s 74.0
in „Transistor an c005 timer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Configuration_adv.h
_2_LABEL #define USER_GCODE_3 "M140 S" STRINGIFY(PREHEAT_2_TEMP_BED) "\nM104 S" STRINGIFY(PREHEAT_2_TEMP_HOTEND) #define USER_DESC_4 "Heat Bed/Home/Level" #define USER_GCODE_4 "M140 S" STRINGIFY(PREHEAT
in „Marlin 2.0.72 lässt sich nicht compilieren“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan TMC Treiber mit SPI Isolator und FullBridgeRectifier
mit SPI Isolator und FullBrideRectifier M1 GND +3V EN U4 0.1pF C6 0.1pF C7 INA INB GND1 ISO7720DR GND2 AGND VCC1 VCC2 VIO_M EN_ISO +3V U3 0.5pF C3 VDD1 GND1 MCLK MO MI MSS# SI SS# VOA VOB VIC VOC VIB VIA SCK MOSI MISO R12 4.7K CS_M1 STEP_M1 DIR_M1 DIAG_M1 VDD1 VDD2 GND1 GND2 ADUM3151ARSZ AGND ENCN DIAG EN_ISO EN_ISO VCC AGND VCCBP2 AC AC KBP210 AGND VCCBP1 AC AC KBP210 KF2EDGR-5.08-4P MI_A2 MI_B1 MI_B2 C22 100nF AGND VIO_M SilentStepStick Interface For TMC5160T Pro
in „Abgrenzung von Spannungsteilen / Komponenten: Schaltplan“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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PDF
Peg_v7b.pdf
1 2 U HH = U REF +2⋅ U X U HL = U REF− 2 U X H = 4 U X Liers - PEG-Vorlesung WS2000/2001 - Institut für Informatik - FU Berlin 36 5 Komparator invertierend mit Referenzspannung mit Hysterese U = U ⋅ R 2 +U ⋅ R1 HH REF R1+R2 S R1+ R2 R2 R1 U HL=U REFR + R −U S⋅R +R 1 2 1 2 R1 H =2 US⋅ R1+ R2 Liers - PEG-Vorlesung WS2000/2001 - Institut für Informatik - FU 37rlin Integrierer U EP U n+1 − ⋅t U n R3⋅C1 Liers - PEG-Vorlesung
in „Einfache Verstaerkerschaltung mit OP“ · Analoge Elektronik und Schaltungstechnik ·
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00954A.pdf
power, yet is large enough to limit inrush current. FIGURE 1: CAPACITIVE POWER SUPPLY L VOUT IIN D1 C2 IUT 5.1V 470 µF C1 N .47µ 250V R1 D2 470 1/2W IINis given by: EQUATION 3: X = 1 EQUATION 1: C1 2πfC1 VHFRMS Where f is the frequency (i.e., United States: 60 Hz, IIN= ≥ OUT XC1 + R1 some countries: 50
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PDF
00954A.pdf
power, yet is large enough to limit inrush current. FIGURE 1: CAPACITIVE POWER SUPPLY L VOUT IIN D1 C2 IUT 5.1V 470 µF C1 N .47µ 250V R1 D2 470 1/2W IINis given by: EQUATION 3: X = 1 EQUATION 1: C1 2πfC1 VHFRMS Where f is the frequency (i.e., United States: 60 Hz, IIN= ≥ OUT XC1 + R1 some countries: 50
in „Kondensatornetzteil: Frage.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
transformerless_AC_DC.pdf
power, yet is large enough to limit inrush current. FIGURE 1: CAPACITIVE POWER SUPPLY L VOUT IIN D1 C2 IUT 5.1V 470 µF C1 N .47µ 250V R1 D2 470 1/2W IINis given by: EQUATION 3: X = 1 EQUATION 1: C1 2πfC1 VHFRMS Where f is the frequency (i.e., United States: 60 Hz, IIN= ≥ OUT XC1 + R1 some countries: 50
in „230V AC auf 5V DC Bauteile“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TC4420.pdf
1000 10,000 Capcitive Load (pF) Capacitive Load (pF) FIGURE 2-2: Rise Time vs. Capacitive FIGURE 2-5: Fall Time vs. Capacitive Load. Load. 50 84 CL= 2200 pF VDD = 15V V = 18V 40 DD 70 ) c tD2 A n (56 (30 n m D1 r T u42 l20 l 500 kHz e p28 D u 10 S 200 kHz 14 20
in „Peltier-Driver Flyback-Diode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Diskreter_Leistungverst_rker_mit_OPVs__-_AN47.pdf
slew-limited output (Trace B). Amplifier’s Loop +15V 1k 1k Q5 3pF Q1 Q3 1k 1k BOOSTER INPUT – INPUT –15V 2 100 LT1220 OUTPUT + +15V 2 1k Q2 Q4 Q1,Q4= 2N3906E BEAD, FERRONICS #21-110J Q6 Q2,Q3= 2N3904 Q5 = 2N3866 1k Q6 = 2N5160 = 1N4148 –15V LTAN47 • TA101 Figure 101. A 200mA Output Wideband Booster Stage
in „Projekt: DDS basierter Funktionsgenerator mit AD5930“ · Mikrocontroller und Digitale Elektronik ·
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THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
characteristics Items Floating specification Test condition Capacitance Over 13.6F Temperature:70±2℃ DCR Under 375mΩ Measure at normal temperature and normal humidity Appearance No significant defectapply 3.8V for 1000 hours 50 40 ] [ e30 n i a20 a C10 0 0 500 1000 1500 2000 Elapsed time [hr] Fig.
in „Lithium-Ionen-Kondensator Haltbarkeit?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
characteristics Items Floating specification Test condition Capacitance Over 13.6F Temperature:70±2℃ DCR Under 375mΩ Measure at normal temperature and normal humidity Appearance No significant defectapply 3.8V for 1000 hours 50 40 ] [ e30 n i a20 a C10 0 0 500 1000 1500 2000 Elapsed time [hr] Fig.
in „ESP8266 verhalten bei Unterspannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
characteristics Items Floating specification Test condition Capacitance Over 13.6F Temperature:70±2℃ DCR Under 375mΩ Measure at normal temperature and normal humidity Appearance No significant defectapply 3.8V for 1000 hours 50 40 ] [ e30 n i a20 a C10 0 0 500 1000 1500 2000 Elapsed time [hr] Fig.
in „Eigenartiges Verhalten von Li-Batterien“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
characteristics Items Floating specification Test condition Capacitance Over 13.6F Temperature:70±2℃ DCR Under 375mΩ Measure at normal temperature and normal humidity Appearance No significant defectapply 3.8V for 1000 hours 50 40 ] [ e30 n i a20 a C10 0 0 500 1000 1500 2000 Elapsed time [hr] Fig.
in „Vergleich Alkali mit LiClO2 AA Primärzellen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
characteristics Items Floating specification Test condition Capacitance Over 13.6F Temperature:70±2℃ DCR Under 375mΩ Measure at normal temperature and normal humidity Appearance No significant defectapply 3.8V for 1000 hours 50 40 ] [ e30 n i a20 a C10 0 0 500 1000 1500 2000 Elapsed time [hr] Fig.
in „Vollständige Abschaltung ESP8266-12“ · Mikrocontroller und Digitale Elektronik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
characteristics Items Floating specification Test condition Capacitance Over 13.6F Temperature:70±2℃ DCR Under 375mΩ Measure at normal temperature and normal humidity Appearance No significant defectapply 3.8V for 1000 hours 50 40 ] [ e30 n i a20 a C10 0 0 500 1000 1500 2000 Elapsed time [hr] Fig.
in „Austausch von Lithium-Thionyl-Chlorid Batterien im Betrieb“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
characteristics Items Floating specification Test condition Capacitance Over 13.6F Temperature:70±2℃ DCR Under 375mΩ Measure at normal temperature and normal humidity Appearance No significant defectapply 3.8V for 1000 hours 50 40 ] [ e30 n i a20 a C10 0 0 500 1000 1500 2000 Elapsed time [hr] Fig.
in „Elko oder anderen Kondesnsator“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
characteristics Items Floating specification Test condition Capacitance Over 13.6F Temperature:70±2℃ DCR Under 375mΩ Measure at normal temperature and normal humidity Appearance No significant defectapply 3.8V for 1000 hours 50 40 ] [ e30 n i a20 a C10 0 0 500 1000 1500 2000 Elapsed time [hr] Fig.
in „Bauteilsuche? Stepup um 1,5V Batterien leer zu lutschen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
characteristics Items Floating specification Test condition Capacitance Over 13.6F Temperature:70±2℃ DCR Under 375mΩ Measure at normal temperature and normal humidity Appearance No significant defectapply 3.8V for 1000 hours 50 40 ] [ e30 n i a20 a C10 0 0 500 1000 1500 2000 Elapsed time [hr] Fig.
in „Eigenschaften Alkali Batterien (Innenwiderstand)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
characteristics Items Floating specification Test condition Capacitance Over 13.6F Temperature:70±2℃ DCR Under 375mΩ Measure at normal temperature and normal humidity Appearance No significant defectapply 3.8V for 1000 hours 50 40 ] [ e30 n i a20 a C10 0 0 500 1000 1500 2000 Elapsed time [hr] Fig.
in „ESP8266 verhalten bei Unterspannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
20150316_4-ds_sbg3600-n_sbg3500-n_series_5-100-01315006_150316.pdf
Base • 1 x USB port Station Station Ethernet Cable 3G LTE Wi-Fi • 1 x RJ-45 DSL port 2 SBG3600-N/SBG3500-N Series Multi-WAN Small Business Gateway Specifications Model SBG3600-N SBG3600-NB SBG3500-N SBG3500-NB Hardware Specifications DSL VDSL2/ADSL2+ 17a VDSL2/ADSL2+ 17a VDSL2/ADSL2+ 17a
in „Zyxel Router SBG3500-NB00 - 5GHz-Wlan oder nicht?“ · PC Hard- und Software ·
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PDF
Designing_a_digital_compass.pdf
C F M 0 1 E V n 0 4 1 1 O O - - 2 2 F 6 6 μ P P . C C 0 M M 1 O 4 2 4 6 1 C S M 4 n 0 0 P 1 F C R n M V 0 E 1 V n 1 1 n 1 S 8 0 O 4 I 1 8 4 0 S I 2 6 2 O 6 C 0 - P M 6 2 M C 6 M P C M μ 1 0 μ 1 F 0 μ . 0 F μ . C 0 C
in „Kompassmodul HDMM01 von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
supercap_manual.pdf
and other safety precautions listed in the printed version catalog. 2017.05.17 9565SCGVOL01E1705H1 2.4 2.4 20 20 2.2 2.2 10 10 Ω Ω ) ) ( 2.0 (2.0 % 0 % 0 c c e e n 1.8 n1.8 g –10 g –10 7 7 s 1.6 s1.6 a –20 a –20 0C ,55VC ,55V s s c c r 1.4 r1.4 f –30 f –30 s s o o r 1.2 r1.2 t –40 t –40 s 1.0 s1.0 r
in „Super cap - .1F 5.5V TOKIN“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
aktivantenne_DL8KDL.pdf
werden Tr1 BF247A N-Kanal-FET, FM/VHF, = BF246 25V, Idss>10mA, Up<8V Tr2 2N3866 Si-NPN, BFR97 VHF/UHF-Oszillatorstufen, Treiberstufen, 55V, 0,4A, PQ>1W (400MHz) Tr3 2N5160 Si-PNP, k.A. VHF/UHF-Oszillatorstufen, Endstufen
in „Diskreter Impedanzwandler bis 60MHz in der Praxis?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Aktivantenne_10KHz_50MHz.pdf
werden Tr1 BF247A N-Kanal-FET, FM/VHF, = BF246 25V, Idss>10mA, Up<8V Tr2 2N3866 Si-NPN, BFR97 VHF/UHF-Oszillatorstufen, Treiberstufen, 55V, 0,4A, PQ>1W (400MHz) Tr3 2N5160 Si-PNP, k.A. VHF/UHF-Oszillatorstufen, Endstufen
in „Alternative für J310 - Mini Whip“ · HF, Funk und Felder ·
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Datei
Configuration_adv.h
_2_LABEL #define USER_GCODE_3 "M140 S" STRINGIFY(PREHEAT_2_TEMP_BED) "\nM104 S" STRINGIFY(PREHEAT_2_TEMP_HOTEND) #define USER_DESC_4 "Heat Bed/Home/Level" #define USER_GCODE_4 "M140 S" STRINGIFY(PREHEAT
in „Ender3 Z-Achse fährt mit Marlin nur nach oben“ · Mechanik, Gehäuse, Werkzeug ·
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Datei
Configuration.h
TMC26X', 'TMC26X_STANDALONE', 'TMC2660', 'TMC2660_STANDALONE', 'TMC5130', 'TMC5130_STANDALONE', 'TMC5160', 'TMC5160_STANDALONE'] */ #define X_DRIVER_TYPE TMC2208_STANDALONE #define Y_DRIVER_TYPE TMC2208_STANDALONE #define Z_DRIVER_TYPE TMC2208_STANDALONE //#define X2_DRIVER_TYPE A4988 //#define Y2_DRIVER_TYPE
in „Ender3 Z-Achse fährt mit Marlin nur nach oben“ · Mechanik, Gehäuse, Werkzeug ·
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Datei
BASIC.BAS
, 3670 IF O%=2 AND S(1)>=S(2) THEN GOTO 2660 ' Rest der Zeile ignorieren und 3680 IF O%=3 AND S(1)<=S(2) THEN GOTO 2660 ' bei der n chsten weitermachen. 3690 IF O%=4 AND S(1)>S(2) THEN GOTO 2660 3700 IF O%=5 AND S(1)<S(2) THEN GOTO 2660 3710 IF O%=6 AND S(1)=S(2) THEN GOTO 2660 3720 GOTO 2570 ' Rest der Zeile als normale Anweisung behandeln 3730 REM *** Zuweisungsanweisung LET 3740 GOSUB 4840 ' n chstes Wort (Variablenname
in „DDS Basic Interpreter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
°F Attenuation 55.4 dB/100 m @2.5 GHz 22.2 dB/100 m @2.5 GHz 1.5 dB @0 - 6 GHz (Jumper cable) 0.8 dB @0 - 6 GHz (Surge arrestor) Ceiling Mounting Kit Model Ceiling Mounting Kit Product photo For NWA3160-N, NWA3560-N, Description NWA5160N
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Microchip_AppNote_00994a.pdf
±0.4% 0.05N < I < 0.1NI 1 ±2.5% ±1.5% — — 0.1N < I < MAX 1 — — ±0.5% ±0.2% 0.05I < I < I 1 ±2.0% ±1.0% — — N MAX 0.02N < I < 0.1NI 0.5 inductive — — ±1.0% ±0.5% 0.8 capacitive — — ±1.0% ±0.5% 0.1N < I < 0.2NI 0.5 inductive ±2.5% ±1.5% — — 0.8 capacitive — ±1.5% — — 0.1N < I <MAX 0.5 inductive — — ±0.6% ±0.4% 0.8 capacitive — — ±0.6% ±0.4% 0.2N < I < MAX 0.5 inductive ±2.0% ±1.0% — — 0.8 capacitive — ±1.0% — — Required Accuracy
in „Strom 10A bis 300A messen mit Tiny26“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP73831.pdf
g 45 n a t -40 h 30 A C 15 -50 0 -60 2 3 4 5 6 7 8 9 0 1 2 3 4 5 0.01 0.1 1 10 100 1000 1 1 1 1 1 1 Junction Temperature (°C) Frequency (kHz) FIGURE 2-9: Charge Current (I OUT ) vs. FIGURE 2-12: Power Supply
in „Akku Ladetechnik“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EEPROM.pdf
n 8 8 Pitch p .100 2.54 Top to Seating Plane A .140 .155 .170 3.56 3.94 4.32 Molded Package Thickness A2 .115 .130 .145 2.92 3.30 3.68 Base to Seating Plane A1 .015 0.38 Shoulder to Shoulder Width E .300
in „EEPROM auslesen (24xx256) mit Pic16f819, an PC über RS232“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Configuration.h
TMC26X', 'TMC26X_STANDALONE', 'TMC2660', 'TMC2660_STANDALONE', 'TMC5130', 'TMC5130_STANDALONE', 'TMC5160', 'TMC5160_STANDALONE'] */ //#define X_DRIVER_TYPE TMC2130 //#define Y_DRIVER_TYPE TMC2130 //#define Z_DRIVER_TYPE TMC2130 //#define X2_DRIVER_TYPE A4988 //#define Y2_DRIVER_TYPE A4988 //#define Z2_
in „Marlin 2.0.72 lässt sich nicht compilieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Configuration.h
Thermocouple Boards - IMPORTANT: Read the NOTE below! * ------- * -5 : MAX31865 with Pt100/Pt1000, 2, 3, or 4-wire (only for sensors 0-1) * NOTE: You must uncomment/set the MAX31865_*_OHMS_n defines below. * -3 : MAX31855 with Thermocouple, -200°C to +700°C (only for sensors 0-1) * -2 : MAX6675 with
in „Custom 3D-Drucker zu ausgebuchtete Ecken“ · Mechanik, Gehäuse, Werkzeug ·
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PIC_Memory_Programming_Specification.pdf
Configuration Word 3FFh 0x200-0x203 and 0x400-0x403 are available. Other locations are reserved. FIGURE 2-2: PIC12F509 PROGRAM 2.2 User ID Locations MEMORY MAP 000h A user may store identification information (ID) in four y On-chip User o Program user ID locations. The user ID locations are mapped in e c
in „Programm aus PIC12F508 laden und verstehen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN955.pdf
F A 1 1 1 1 2 3 1 2 3 V 3 8 3 H H H L L L 1 C C C + A 0 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 1 1 1 2 2 2 2 P 3 3 C 2 2 C 1 1 C + C C C C 1 2 3 L L L I C S 5 U V V N V V N V V N V N D D D H H H I V V 1 1 U S M A I DS00955A-page
in „Raumzeigermodulation, PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Choosing_the_Correct_Digipot-Analog.pdf
D 8 9 y u W e H D . l . 3 , 9 h e d D 2 2 2 n o i e A v 4 0 - g r a i d v 7 7 i a i a v 6 ) 6 9 M 0 l i e v 2 0 0 o p s s i e . 8 9 n B s s u e 9 0 h e s q e 3 3 7 0 6 g s e e 8 8 1 d o a a , 0 0 1 M d i K r , 3 . e n a , 1 , 0 0 W n d , 2 0 e n 4 a n a r n 5 0 - . e n 3 2 y . u n v . o g s . 7 t s . 9 t . n u 6 0 r e , 6 s
in „Alter Analogverstärker mit Digitalpotis ausstatten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mcp23008.pdf
8 11 GP1 18-pin SOIC (300 mil) 20-pin SSOP VSS 9 10 GP0 SSOP SCK 1 20 VDD SI 2 19 GP7 SO 3 18 GP6 A1 4 8 17 GP5 A0 5 S 16 GP4 2 RESET 6 P 15 GP3 CS 7 C 14 GP2 INT 8 M 13 GP1 VSS 9 12 GP0 N/C 10 11 N/C © 2005 Microchip Technology Inc. DS21919B-page 1 MCP23008/MCP23S08 Block Diagram
in „MCP23008 Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP4821-MCP4822.pdf
to 1000...0000 ) Digital Feedthrough — <10 — nV-s Note 2 Analog Crosstalk — <10 — nV-s Note 2 Note 1: By design, not production tested. 2: Too small to quantify. © 2005 Microchip Technology Inc. DS21953A-page 5 MCP4821/MCP4822 AC CHARACTERISTICS
in „Digital-Analog-Umsetzer (10V -> 1mV Auflösung)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCN_DN43A_20000630.pdf
1N5062 AMO MEDIUM POWER RECTIFIER 933076450163 N M 3 31-12-00 30-6-01 Ph:1N5062 133 NC Same Product Available in single ammopack - 2.5K MOQ. Consult Marketing. 2N5064 2N5064 AMO THYRISTOR 934002930126 N M 3 31-12-00 30-6-01 Ph:2N5064 112 NC Same Product Avail. in bulk pack - 5K MOQ. Conslt Mktg. 2N5550 2N5550 NPN high-voltage transistor 933144610412 N M 3 31-12-00 30-6-01 2N5550 126 See replacement. Consult Marketing. 74ABT16245DL
in „Mosfet Identifikation“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
examplePeeneRuden.txt
$GPGGA,100052.939,5408.0683,N,01346.0447,E,1,07,1.2,36.8,M,,M,,*7D $GPRMC,100052.939,A,5408.0683,N,01346.0447,E,2.794507,126.959198,200804,,*01 $GPGGA,100144.936,5408.0548,N,01346.0042,E,1,08,1.0,36.3,M,,M,,*77 $GPRMC,100144.936,
in „GPX-/GPS-Logger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bs1Appnotes.pdf
Ð) connected together, anodes (+) to Stamp pins as shown. (C) 1992 Parallax, I+5V Vin 1k (all) 1 C 2 0 1 0 1 PC 6 3 5 6 2 5 6 2 E 5 4 P 6 5 4 3 4 3 M 6 7 Roll1k +5 BASIC STAMP GND 47k 1k 1k 2N2222 2N2222 Schematic to accompany program DICE .BAS . Parallax,Inc.•BASICStampProgrammingManual1.9•Page 113
in „Smartcard-Kode-Schloss mit PIC16F84“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Kontur_1.txt
N120T1M06 N130 (End Mill {0.25 inch}) N140G00G43Z10.000H1 N150S12000M03 N160(Toolpath:- Kontur 1) N170() N180G94 N190X0.000Y0.000F254.0 N200G00X10.297Y16.489Z2.000 N210G1Z-5.000 N220G1X10.311Y16.766F254.0
in „mit Mach3 kann ich nur ein Teil fräsen rest fehlt“ · Mechanik, Gehäuse, Werkzeug ·