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Datei
btm22_q_a.txt
rather than BTM-112. BTM-112 's commands are described in datasheet, it's without OBEX feature. BTM-182 Q: Are there application notes or more detailed descriptions of the pins? A: In datasheet. Q: Is there a description of the firmware? Which pins are used by the firmware – and in which way? A: descript
in „BTM Bluetooth Module Q&A“ · Mikrocontroller und Digitale Elektronik ·
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ISO-7736-1984.pdf
NOTE - A combination of both fixintypes (3.1 and 3.2) can be used. Dimensions in millimetres 188 min. 182+iJ8 L!30 min. * I 5-lLma Area for trim-plat2 175 min?) . Figure 1 - Front fixing installation 1) This dimension represents the depth required for the appliance and its connections. 1 IS0 7736-1984 (E) Dimensions in millimetres 188min. 20min. 182+t8 . I I In -+ I -L I a5 min. Area for trim-plate 5-I+ 175 mid) d -t- Figure 2 - Lateral fixing installation iTeh STANDARD PREVIEW Dimensions in millimetres 40max. (standards.iteh.ai) Stippled area
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Carel-NTC.pdf
NTC 10K@25°C ß 3435 Temp. Valeur de résistance Temp. Valeur de résistance Temp. Valeur de résistance Max. Typique Min. Max. Typique Min. Max. Typique Min. °C KΩ KΩ KΩ °C KΩ KΩ KΩ °C KΩ KΩ KΩ -50 344,60 329,50 314,90 1 26,65 26,13 25,62 56 3,50 3,43 3,35 -49 325,00 310,90 297,30 2 25,52 25,03 24,55 57 3,39
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verfahren_zur_darstellung_von_segelflugpolaren.pdf
Stuttgart, 1989 , S.181 7 6 „Streckensegelflug“, Helmut Reichmann, Motorbuch Verlag, Stuttgart, 1989 , S.182 7 6 Vergleich Interpolierte Werte – Vorgegebene Werte Geschwindigkeit Ws Quadratfunktion [ -m/s ] ∆ Ws ( %-ual ) 70 0,8069 -0,0069 ( -8,6 % ) 75 0,7505 -0,0905 (-13,7 % ) 80 0,7075 -0,0775 (-12,3 %
in „AVR: Interpolation? Splines?“ · Mikrocontroller und Digitale Elektronik ·
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igrid_ss_3kw_plus.pdf
frequency range 59.3~ 60.5Hz(60Hz) AC input frequency comeback 47.6/50.1 Hz(50Hz) value 59.4/60.4Hz(60Hz) Max. AC Input current 20Amp PV input data Max. DC Power 3200W Nominal DC voltage 360Vdc Max. Input voltage (Maximum PV open voltage) 500Vdc System start-up voltage 116V 10V whether PV establish control
in „PV Wechselrichter startet nicht mehr und verursacht Kurzschluss bzw. hohen Strom“ · Analoge Elektronik und Schaltungstechnik ·
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STK200SCHEMATIC_SMALL.PDF
PB2 VREF T2OUT T2IN 11 12 PD2 5 6 8 R2IN R2OUT 9 6 PD6 13 14 PB3 7 8 1 PD7 15 16 PB4 9 10 PB3 C20 MAX202CPE PB5 100nF PD3 PB6 11 12 AGND RS232 HEADER 8X2 PB7 13 14 15 16 PB4 1K TXD PD4 Resnet HEADER 8X2 RXD PB5 PD5 PB6 PD6 PB7 PD7 Active 0 on LEDs Active 0 on Switches LCD Interface LCD Timing Ciruit
in „LCD wie externen Speicher anspr.“ · Mikrocontroller und Digitale Elektronik ·
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spingrd.pdf
Leaded MLC (.0175 .00)5 Temperature Coefficients: C0G (NP0), X7R, X5R, Z5U 10, 50, 100, 200 Volts 2.Max.")90 Case Material: Epoxy (Flame Retardant to UL Bulletin 492, Par. 280) Lead Material: Solderable 3.00 (.118 Max. 25.4 (")00 Min. HOW TO ORDER SA10 5 E 104 Z A R Conformal Voltage Dielectric Capacitance
in „Vielschichtkondensator identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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nkat20-21.pdf
– Sortimente 0201 119 SMD - Nullohm - Widerstand 0201 Baugröße 0201 (0.6 x 0.3 x 0.2 mm) Spannung max. 50 Volt Widerstand < 50 Milliohm Temperaturbereich - 55 .... + 125 °C Strom max. 0.5 Ampere gegurtet (8mm Gurt) Best.Nr. ab 10 ab 100 ab 1000 ab 5000 ab 10.000 (=VPE) 8105/000 -.08 -.0120 -.0033 -.0019
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NTCLE100E-SERIES_ENG_TDS.pdf
H2 I H 1 L 0 - 40 0 55 85 125 150 P d Tamb(°C) Note • Zero power is considered as measuring power max. 1 % of max. power. PHYSICAL DIMENSIONS FOR RELEVANT TYPE (all dimensions in millimeters) H1 R25VALUE BMAX. d H2 MAX. L P T MAX. MIN. MAX. 3.3 to 220 5.0 0.6 ± 0.06 1.0 4.0 6.0 24 ± 1.5 2.54 4.0
in „Gaggenau Backofen NTC-Luftfühler defekt“ · Haus & Smart Home ·
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NTCLE100E-SERIES_ENG_TDS.pdf
H2 I H 1 L 0 - 40 0 55 85 125 150 P d Tamb(°C) Note • Zero power is considered as measuring power max. 1 % of max. power. PHYSICAL DIMENSIONS FOR RELEVANT TYPE (all dimensions in millimeters) H1 R25VALUE BMAX. d H2 MAX. L P T MAX. MIN. MAX. 3.3 to 220 5.0 0.6 ± 0.06 1.0 4.0 6.0 24 ± 1.5 2.54 4.0
in „Defekt bei Sentiotec Sauna/Infrarotkabinen-Steuerung“ · Haus & Smart Home ·
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test7.c
171, 172, 172, 173, 173, 174, 174, 175, 175, 176, 176, 177, 178, 178, 179, 179, 180, 180, 181, 181, 182, 182, 183, 183, 184, 184, 185, 185, 186, 186, 187, 187, 188, 188, 189, 189, 190, 190, 191, 192, 192, 193, 193, 194, 194, 195, 195, 196, 196, 197, 197, 198, 198, 199, 199, 200, 200, 201, 201, 202, 202
in „Frage zu Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Beispiel_ESP32_ledc.ino
(pin, frequency, resolution); } constexpr unsigned ledList [] {D2, D3, D4, D5, D6}; // max. 5 Leds // --------------------------------------------------------------------------------------------------------- void setup (void) { Serial.begin(115200); for (unsigned i=D2; i<D13; i++) { pinMode
in „Arduino-ESP32 LEDC API ledcAttach() resolution“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test7.c
171, 172, 172, 173, 173, 174, 174, 175, 175, 176, 176, 177, 178, 178, 179, 179, 180, 180, 181, 181, 182, 182, 183, 183, 184, 184, 185, 185, 186, 186, 187, 187, 188, 188, 189, 189, 190, 190, 191, 192, 192, 193, 193, 194, 194, 195, 195, 196, 196, 197, 197, 198, 198, 199, 199, 200, 200, 201, 201, 202, 202
in „Frage zu Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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SEMIKRON_DataSheet_SKT_100_01236311.pdf
...10 ms 15300 A s insulator Threaded stud ISO M12 x 1,75 V T Tvj 25 °C, IT= 300 A max. 1,75 V V T(TO) Tvj 130 °C max. 1 V or ½” - 20 UNF 2A rT Tvj 130 °C max. 2,4 m Interchangeable with international standard case IDD; RD Tvj 130 °C; V RD= V RRM; VDD = VDRM max. 30 mA tgd Tvj 25 °
in „Thyristor Steuerung mit Teensy 4.0“ · Analoge Elektronik und Schaltungstechnik ·
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stationsbaro.pdf
Luft befindet. Zu diesem Zweck neigt man das Baro- meter langsam aus der senkrechten Lage (bis zu max. 40°), bis das Quecksilber die ganze Röhre füllt. ACHTUNG! Das Gerät darf niemals in entarretiertem Zu- stand über 40° geneigt, waagerecht oder auf den Kopf gestellt werden! Schlägt das Quecksilber
in „Genauer Barometer“ · Mikrocontroller und Digitale Elektronik ·
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180pF-.39uF_Rev_Oct_2008.pdf
www.semtech.com 180pF THRU .39µF POWER DISCRETES Outline Drawing - Encapsulated Dimensions Size L(Max) S T(Max) H(Ref) (1) Code In. (mm) In.(mm) In.(mm) In.(mm) 2 .400 .300 ± .032 .275 .475 (10.2) (7.62 ± .82) (7.00) (12.1) 3 .500 .400 ± .032 .300 .575 (12.7) (10.2 ± .82) (7.62) (14.6) 4 .600 .500 ±
in „Möglichst Identischer Ersatz gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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BT42012.pdf
DATA PIN TABLE Parameter Width x Height x Depth Unit Pin Symbol Signal Description Outline Dimensions 182 x 90 x 11 (with LED: 14) mm 1 V SS GND (0 V) Effective viewing area 147 x 65.4 mm 2 V DD Power Supply (5 V) Dot Size 1.1 x 1.5 mm 3 V 0 Supply Voltage (LCD Driver) Dot Pitch 1.2 x 1.6 mm 4 RS Register
in „Altes LCD-Display BT42012“ · Mikrocontroller und Digitale Elektronik ·
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XLampXML2.pdf
equipment. Profile Feature Lead-Based Solder Lead-Free Solder Average Ramp-Up Rate (Ts to Tp) 3 °C/second max. 3 °C/second max. max Preheat: Temperature Min (Ts ) 100 °C 150 °C min Preheat: Temperature Max (Tsmax) 150 °C 200 °C Preheat: Time (tsmino tmax) 60-120 seconds 60-180 seconds Time Maintained Above:
in „Li Akku effizient in WLED endladen“ · Analoge Elektronik und Schaltungstechnik ·
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Akku-Waechter.pdf
PD KTY81 1,35V 3 8,22 28 ADC0 10k T Sub-D 3 2 5 I-Schalter Tx 3 br 13 0,1A 1A 11 12 7 Taster Rx 2 Max232 5 Max 1,19A gn 14 7 Lad/Entlad TLC272 6 1 NiCd/LiIon 18k 2W 0,1 Laden V=9,182 bl 100n 2k2 Source
in „Akku - Zustandsautomat“ · Analoge Elektronik und Schaltungstechnik ·
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STK300_Stromlaufplan.pdf
4 (SCK) Analog 8 T2OUT T2IN 9 6 Y1 Z Reference LINK R2IN R2OUT X X 1K D D 1 SCK(ISP) 5 Z0 3 Z1 VCC MAX202CPE R15 RS232 100R 6 11 INH VR1 LED ENABLE(ISP) 10 A 10K B 9 C 4053 IC C20 AGND PortB PIN1 100nF PortE PIN1 PE1 TXD ISP MOSI +5 PortE PIN0 VCC_BAR EXTERNAL PORT ( CONNECTIO NS ) Analog ISP LED 1 2
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STK300S.pdf
4 (SCK) Analog 8 T2OUT T2IN 9 6 Y1 Z Reference LINK R2IN R2OUT X X 1K D D 1 SCK(ISP) 5 Z0 3 Z1 VCC MAX202CPE R15 RS232 100R 6 11 INH VR1 LED ENABLE(ISP) 10 A 10K B 9 C 4053 IC C20 AGND PortB PIN1 100nF PortE PIN1 PE1 TXD ISP MOSI +5 PortE PIN0 VCC_BAR EXTERNAL PORT ( CONNECTIO NS ) Analog ISP LED 1 2
in „Kanda AVR Starterboard und noch keine Ahnung“ · Mikrocontroller und Digitale Elektronik ·
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datenblatt_HELLIGKEITSSENSOR_NAPICA_SMD_AMS104YJ.pdf
U = 5 V, E = 5 lx (*1) L1 R V Max. IL1 16,9 µA Min. IL2 182 µA Photostrom 2 Typisch IL2 260 µA UR= 5 V, E =V100 lx (*1) Max. IL2 338 µA Min. Photostrom 3 Typisch IL3 500 µA UR= 5 V, E =V100 lx (*2) Max. Dunkelstrom Max. ID 0,3 µA U
in „helligkeit messen, definiertes ausgangssignal“ · Mikrocontroller und Digitale Elektronik ·
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ADXL330.pdf
Recommended Soldering Profile ProfileFeature Sn63/Pb37 Pb-Free Average Ramp Rate (T toL ) P 3°C/s max 3°C/s max Preheat MinimumTemperature (T SMIN 100°C 150°C MaximumTemperature (T SMAX) 150°C 200°C Time (TSMINtoT SMAX, S 60 s to 120 s 60 s to 180 s TSMAXtoT L Ramp-Up Rate 3°C/s max 3°C/s max Time Maintained
in „Lagebestimmung mit Beschleunigssensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stk300full.pdf
T2IN 10 2 1 Y1 Z 4 Analog Reference 8 9 R T 6 1K K R2IN R2OUT X X 1 SCK(ISP) R13 5 L D D 3 Z0 VCC MAX202CPE R15 Z1 RS232 6 (PB1) 100R INH 11 A VR1 LED ENABLE(ISP) 10 B 9 10K C 4053 IC C20 AGND 100nF PortE PIN 1 PE1 TXD ISP MOSI PortE PIN 0 +5 VCC_BAR PE0 Brownout Detector Circuit EXTERNAL PORT ( CONNECTI
in „stk300 LCD Interface Problem“ · Mikrocontroller und Digitale Elektronik ·
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155032-da-01-en-XY_BESCHL_SENS_ADXL320JCP_LFCSP16.pdf
5°C Time within 5°C of Actual Peak Temperature (t ) P 10 s − 30 s 20 s − 40 s Ramp-Down Rate 6°C/s max 6°C/s max Time 25°C to Peak Temperature 6 min max 8 min max Rev. 0 | Page 6 of 16 ADXL320 TYPICAL PERFORMANCE CHARACTERISTICS (V = 3.0 V) S 25 25 20 20 N N I I T 15 T 15 L L U U P P P P F 10 F 10 O
in „suche sockel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
155032-da-01-en-XY_BESCHL_SENS_ADXL320JCP_LFCSP16.pdf
5°C Time within 5°C of Actual Peak Temperature (t ) P 10 s − 30 s 20 s − 40 s Ramp-Down Rate 6°C/s max 6°C/s max Time 25°C to Peak Temperature 6 min max 8 min max Rev. 0 | Page 6 of 16 ADXL320 TYPICAL PERFORMANCE CHARACTERISTICS (V = 3.0 V) S 25 25 20 20 N N I I T 15 T 15 L L U U P P P P F 10 F 10 O
in „Black Box - Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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4100R.pdf
Temperature Coefficient of Resistance PIN #1 REF. 50Ω to 2.2 MΩ..................±100ppm/°C 3.50 27.05 MAX. below 50Ω........................±250ppm/°C (1.065) above 2.2 MΩ...................±250ppm/°C 3.00 4120R 24.51 MAX. (.965) TCR Tracking ..........................50ppm/°C 4118R 21.97 maximum; equal
in „[V] 28 Stück 4114R-001(1,5KOHM), Widerstände zu verkaufen“ · Markt ·
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opa129.pdf
Ultra-Low Bias Current Difet ® OPERATIONAL AMPLIFIER FEATURES APPLICATIONS ULTRA-LOW BIAS CURRENT: 100fA max PHOTODETECTOR PREAMP LOW OFFSET: 2mV max CHROMATOGRAPHY LOW DRIFT: 10 V/ °C max ELECTROMETER AMPLIFIERS HIGH OPEN-LOOP GAIN: 94dB min MASS SPECTROMETER LOW NOISE: 15nV/ √ Hz at 10kHz pH PROBE AMPLIFIER
in „Guarding in Eagle“ · Platinen ·
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TCA9406_I2C_translator.pdf
0.15 V (unless otherwise noted) VCCB = 2.5 V VCC = 3.3 V V CC= 5 V ± 0.2 V ± 0.3 V ± 0.5 V UNIT MIN MAX MIN MAX MIN MAX Push-pull driving 21 22 24 Data rate Mbps Open-drain driving 2 2 2 t Pulse Push-pull driving Data inputs 47 45 41 ns w duration Open-drain driving 500 500 500 TIMING REQUIREMENTS over
in „I2C translator tri-state“ · Mikrocontroller und Digitale Elektronik ·
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M7000_US_2003.pdf
6.38 6.97 be found in the previous tables adjacent to the OHL 71L/4 112 99 6.38 6.97 values: 80S/4 182 157 7.13 7.91 80L/4 182 157 7.13 7.91 x▯ Capacity shown is lowest value of either a load 90S/4 193 166 8.52 9.51 directed into or away from the Unit. 90L/4 193 166 8.52 9.51 x▯ Load cannot exceed the
in „Frequenzumformer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
K572pa2.pdf
25 n.c. CC2 Типономинал T [°C] Корпус НомерТУ Произво А дитель 572ПА2А,Б –60…+85 4134.48 2 бК0.347.182ТУ2 Альфа DB6 1 40 DB5 DB7 2 39 DB4 КР572ПА2А,Б,В –10…+70 2123.40 2 бК0.348.432 02ТУ Альфа DB8 3 38 DB3 К572ПА2А,Б,В –10…+70 4134.48 2 бК0.348.432 02ТУ Альфа КР572ПА2А,Б,В DB9 4 37 DB2 2123.40 2 DB10
in „DACs - Die-Bilder“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
2.txt
0x0000 000 000 000 Old_age Offline - 0 181 Program_Fail_Count 0x000a 100 100 000 Old_age Always - 0 182 Erase_Fail_Count 0x0032 100 100 000 Old_age Always - 0 187 Reported_Uncorrect 0x0012 100 100 000 Old_age Always - 0 190 Airflow_Temperature_Cel 0x0000 026 044 000 Old_age Offline - 26 (Min/Max 20/44) 194 Temperature_Celsius 0x0022 026 044 000 Old_age Always - 26 (Min/Max 20/44) 195 ECC_Uncorr_Error_Count 0x001c 120 120 000 Old_age Offline - 0/0 196 Reallocated_Event_Count 0x0033 100 100 003 Pre-fail Always - 0 201 Unc_Soft_Read_Err_Rate 0x001c 120 120 000 Old_age Offline
in „[V] SATA SSD/HDDs“ · Markt ·
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PDF
B400_NTC-02_Serie.pdf
) and (2) are interchangeable with an = {1.05 × 1.0089 – 1 } × 100% = 5.9345% ( ≈ 5.93% ) error of max. 0.005 °C in the range 25 °C to 125 °C and max. 0.015 °C in the range −40 °C to +25 °C . ∆T = -- = -- - = 1.167 °C ( ≈ 1.17 °C) TC 5.08 A NTC with a R -v25ue of 10 kΩ has a value of 32.56 kΩ between
in „Temperatur Messung mit Mega8 und NTC-Widerstand 4,7k“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
B400_NTC-02_Serie.pdf
) and (2) are interchangeable with an = {1.05 × 1.0089 – 1 } × 100% = 5.9345% ( ≈ 5.93% ) error of max. 0.005 °C in the range 25 °C to 125 °C and max. 0.015 °C in the range −40 °C to +25 °C . ∆T = -- = -- - = 1.167 °C ( ≈ 1.17 °C) TC 5.08 A NTC with a R -v25ue of 10 kΩ has a value of 32.56 kΩ between
in „NTC Berechnung nach Steinhart and Hart, 2. Gleichung geht nicht!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
icc-musbr-m1c1-xx.pdf
PROVIDES .886 SEAL TO INSIDE FACE OF ENCLOSURE PANEL. REF REAR SHIELD 3. CURRENT RATING: COLLECTIVELY 5A MAX. FOR PINS A4, A9, B4, & B9 PLUS 1.25A MAX. FOR PIN B5 WITH RETURN PATH SHARED THROUGH PINS A1, A12, 5 PCB STANDOFF RIGHT ANGLE B1 & B12. ADDITIONAL POSITIONS 0.25A MAX. EACH. 5 ORDERING CODE: M U S
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STK200SCHEMATIC.PDF
R14 1 RESET + R Digital 43K T 1M 2 Q2 _ E PD0 PD1 M 1 2 Decoupling Capacitors VCC 5V Brownout 1 BC182 EXT RESET TO MISC HEADER PD2 PD3 3 4 2 Q1 3 PD4 PD5 BC182 C13 C14 C15 C16 C17 C18 C19 R10 R9 C7 5 6 18K 11K 100nF 3 PD6 PD7 TO(PA0)ON 8515 (TO) PB0 PA0 (ADC0) 7 8 100nF 100nF 100nF 100nF 100nF 100nF
in „LCD Hardware Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
R14 1 RESET + R Digital 43K T 1M 2 Q2 _ E PD0 PD1 M 1 2 Decoupling Capacitors VCC 5V Brownout 1 BC182 EXT RESET TO MISC HEADER PD2 PD3 3 4 2 Q1 3 PD4 PD5 BC182 C13 C14 C15 C16 C17 C18 C19 R10 R9 C7 5 6 18K 11K 100nF 3 PD6 PD7 TO(PA0)ON 8515 (TO) PB0 PA0 (ADC0) 7 8 100nF 100nF 100nF 100nF 100nF 100nF
in „ATtiny13 und STK200 über PonyProg2000 flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
R14 1 RESET + R Digital 43K T 1M 2 Q2 _ E PD0 PD1 M 1 2 Decoupling Capacitors VCC 5V Brownout 1 BC182 EXT RESET TO MISC HEADER PD2 PD3 3 4 2 Q1 3 PD4 PD5 BC182 C13 C14 C15 C16 C17 C18 C19 R10 R9 C7 5 6 18K 11K 100nF 3 PD6 PD7 TO(PA0)ON 8515 (TO) PB0 PA0 (ADC0) 7 8 100nF 100nF 100nF 100nF 100nF 100nF
in „DS1820 Code + Atmel90S8515“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200SCHEM.PDF
R14 1 RESET + R Digital 43K T 1M 2 Q2 _ E PD0 PD1 M 1 2 Decoupling Capacitors VCC 5V Brownout 1 BC182 EXT RESET TO MISC HEADER PD2 PD3 3 4 2 Q1 3 PD4 PD5 BC182 C13 C14 C15 C16 C17 C18 C19 R10 R9 C7 5 6 18K 11K 100nF 3 PD6 PD7 TO(PA0)ON 8515 (TO) PB0 PA0 (ADC0) 7 8 100nF 100nF 100nF 100nF 100nF 100nF
in „Schaltplan für STK 200“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
R14 1 RESET + R Digital 43K T 1M 2 Q2 _ E PD0 PD1 M 1 2 Decoupling Capacitors VCC 5V Brownout 1 BC182 EXT RESET TO MISC HEADER PD2 PD3 3 4 2 Q1 3 PD4 PD5 BC182 C13 C14 C15 C16 C17 C18 C19 R10 R9 C7 5 6 18K 11K 100nF 3 PD6 PD7 TO(PA0)ON 8515 (TO) PB0 PA0 (ADC0) 7 8 100nF 100nF 100nF 100nF 100nF 100nF
in „AVR_90S8535“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200S.pdf
R14 1 RESET + R Digital 43K T 1M 2 Q2 _ E PD0 PD1 M 1 2 Decoupling Capacitors VCC 5V Brownout 1 BC182 EXT RESET TO MISC HEADER PD2 PD3 3 4 2 Q1 3 PD4 PD5 BC182 C13 C14 C15 C16 C17 C18 C19 R10 R9 C7 5 6 18K 11K 100nF 3 PD6 PD7 TO(PA0)ON 8515 (TO) PB0 PA0 (ADC0) 7 8 100nF 100nF 100nF 100nF 100nF 100nF
in „SRam am Atmega162 ohne zusätzliche Bauteile betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
R14 1 RESET + R Digital 43K T 1M 2 Q2 _ E PD0 PD1 M 1 2 Decoupling Capacitors VCC 5V Brownout 1 BC182 EXT RESET TO MISC HEADER PD2 PD3 3 4 2 Q1 3 PD4 PD5 BC182 C13 C14 C15 C16 C17 C18 C19 R10 R9 C7 5 6 18K 11K 100nF 3 PD6 PD7 TO(PA0)ON 8515 (TO) PB0 PA0 (ADC0) 7 8 100nF 100nF 100nF 100nF 100nF 100nF
in „Kanda AVR Starterboard und noch keine Ahnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
R14 1 RESET + R Digital 43K T 1M 2 Q2 _ E PD0 PD1 M 1 2 Decoupling Capacitors VCC 5V Brownout 1 BC182 EXT RESET TO MISC HEADER PD2 PD3 3 4 2 Q1 3 PD4 PD5 BC182 C13 C14 C15 C16 C17 C18 C19 R10 R9 C7 5 6 18K 11K 100nF 3 PD6 PD7 TO(PA0)ON 8515 (TO) PB0 PA0 (ADC0) 7 8 100nF 100nF 100nF 100nF 100nF 100nF
in „Schaltplan STK200 und STK500 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200_schematic.pdf
R14 1 RESET + R Digital 43K T 1M 2 Q2 _ E PD0 PD1 M 1 2 Decoupling Capacitors VCC 5V Brownout 1 BC182 EXT RESET TO MISC HEADER PD2 PD3 3 4 2 Q1 3 PD4 PD5 BC182 C13 C14 C15 C16 C17 C18 C19 R10 R9 C7 5 6 18K 11K 100nF 3 PD6 PD7 TO(PA0)ON 8515 (TO) PB0 PA0 (ADC0) 7 8 100nF 100nF 100nF 100nF 100nF 100nF
in „Wer kennt dieses AVR-Board?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BSS139.pdf
BSS139 ® SIPMOS Small-Signal-Transistor Product Summary Features V DS 250 V • N-channel R DS(on),max 30 Ω • Depletion mode IDSS,min 0.03 A • dv/dt rated • Available with GS(th)ndicator on reel • Pb-free lead-plating; RoHS compliant PG-SOT-23 Type Package Tape and Reel Information Marking Pb-free BSS139
in „High-Side-Strom auf Low-Side spiegeln (Stromspiegel?!)“ · Analoge Elektronik und Schaltungstechnik ·
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Ausschnitt aus einem STM32L431xx Datenblatt mit Schaltplan
Embedded voltage reference Table 25. Internal voltage reference VREFINT -40 °C < TA < +130 °C Min 1.182 Typ 1.212 Max 1.232 V 3.15.2 Internal voltage reference (VREFINT) Table 9. Internal voltage reference calibration values VREFINT VDDA = VREF = 3.0 V (± 10 mV) ADC_DATA VCHANNEL * FULL_SCALE VDDA
in „ADC - ungenaue Werte“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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NanoVNA Messgerät mit Smith-Chart auf Display
PORT1 S11 LOGMAG 10dB/-26.29dB S11 SWR 250MHz/1.182 S11 SMITH 51.21/4.760 S11 PHASE -98°/73.87° Edelgut 900ps (189mm) S21 860.188 000 MHz PORT2 +10dBm RF 10VDC Max NanoVNA START 860.000 000 MHz BW 1000Hz 10IF STOP 890.000 000 MHz
in „868MHz-Antenne Optimierung“ · HF, Funk und Felder · · Fotos
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PDF
APT10050B2VR_B.pdf
APT10050B2VR 1000V 21A 0.500 Ω ® POWER MOS V T-MAX™ Power MOS V is a new generation of high voltage N-Channel enhancement mode power MOSFETs. This new technology minimizes the JFET effect, increases packing density and reduces the on-resistance. Power
in „SMA SB4200TL-MS Reparatur“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
FastSoftPWM.asm
process_ltbl1 ;continue with processing if length indicator >0 ret process_ltbl1: mov r16,r25 andi r25,15 ;max. length needed for 256 LEDs is 2048 bytes andi r16,$f0 sts (probability),r16 ;upper 4 bits for definition of probability in random mode elpm r16,Z+ ;read duration low byte st Y+,r16 elpm r16,Z+ ;read
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Oszilloskop-Messkurve eines Stromverlaufs
Lock Y-axis 10ms 100ms 1s 3s 10s 1min LIVE VIEW 20 mA 15 mA 10 mA 5 mA 0 nA 00:00:06 182.199 00:00:06 400.000 00:00:06 600.000 00:00:06 800.000 00:00:06 968.632 Δ786.4ms WINDOW SELECTION ZOOM TO SELECTION SELECT ALL CLEAR 2.82mA average 19.17mA max 786.4ms time 2.22mC charge Hold SHIFT+
in „ESP32-H2 will nicht schlafen“ · Mikrocontroller und Digitale Elektronik · · Oszi-Bilder