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PDF
IRL1004_IR.pdf
TO-220 contribute to its wide acceptancethroughouttheindustry. Absolute Maximum Ratings Parameter Max. Units D @ TC= 25°C Continuous Drain CurrenGS @ 10V 130 D @ TC= 100°C Continuous Drain CurrenGS @ 10V 92 A DM Pulsed Drain Current 520 PD@T C 25°C Power Dissipation 200 W Linear Derating Factor 1.3
in „Schon wieder: Verpolungsschutz-MOSFET und LogicLevel-FET gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irl3705n.pdf
220AB contribute to its wide acceptance throughout the industry. Absolute Maximum Ratings Parameter Max. Units I @ T = 25°C Continuous Drain Current, @ 10V 89 D C GS D @ TC= 100°C Continuous Drain CurrenGS @ 10V 63 A DM Pulsed Drain Current 310 PD@T C 25°C Power Dissipation 170 W Linear Derating Factor
in „Ventilansteuerung mit Mosfet - Temperatur?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
kk_ov7670config.h
0xe8}, {0x13, 0xe0}, {0x00, 0x00},//AGC {0x10, 0x00}, {0x0d, 0x00}, {0x14, 0x20},//0x38, limit the max gain {0xa5, 0x05}, {0xab, 0x07}, {0x24, 0x75}, {0x25, 0x63}, {0x26, 0xA5}, {0x9f, 0x78}, {0xa0, 0x68}, {0xa1, 0x03},//0x0b, {0xa6, 0xdf},//0xd8, {0xa7, 0xdf},//0xd8, {0xa8, 0xf0}, {0xa9, 0x90}, {0xaa
in „Leisungsvergleich ARM AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematic_DDS.pdf
PA7 1 D6 13 0.1uF 0.1uF 0.1uF 0.1uF D7 NC 35 NC NC 57 B MASTER_RESET 71 MASTERRESET NC 58 R2 E2 B NC 63 VINP SMA S_P_SELECT 70 S/P SELECT C12 C13 1K C14 C15 51 IOUT22 IOUT2 R11 SHAPED_KEYING 30 IOUT2* 52 IOUT2 AVDD SHAPED KEYING IOUT2 R10 0.1uF 0.1uF 0.1uF 0.1uF 1K FSK/BPSK/HOLD 29 10K FSK/BPSK/HOLD R13
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Pana_FK.pdf
max. 2.6 0.65±0.1 1.8 0.35 ー0.20 R. voltage code Unit:V E 8.0 6.2±0.3 8.3 9.5 max. 3.4 0.65±0.1 2.2 0.35 ー0.20 F 8.0 10.2±0.3 8.3 10.0 max. 3.4 0.90±0.2 3.1 0.70±0.2 j 6.3 H 50 A 10 J 63 G 10.0 10.2±0.3 10.3 12.0 max. 3.5 0.90±0.2 4.6 0.70±0.2 C 16 K 80 H13 12.5 13.5±0.5 13.5 15.0 max. 4.7 0.90±0.3 4.4 0.70±0.3 E 25 2A 100 J16 16.0 16.5±0.5 17.0 19.0 max. 5.5 1.20±0.3 6.7 0.70±0.3 V 35 K16 18.0 16.5±0.5 19.0 21.0
in „Display vom Kühlschrank reparieren“ · Haus & Smart Home ·
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PDF
ILX551B_E_.pdf
Mode in use Pin condition S/H Pin 4 SHSW Yes GND No VDD2 Input Capacity of Pins Item Symbol Min. Typ. Max. Unit Input capacity of φCLK pin CφCLK — 10 — pF Input capacity of φROG pin CφROG — 10 — pF Recommended Input Pulse Voltage Item Min. Typ. Max. Unit Input clock high level 4.5 5.0 5.5 V Input clock
in „AD Wandler ~ 2 Mhz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILX551B.PDF
Mode in use Pin condition S/H Pin 4 SHSW Yes GND No VDD2 Input Capacity of Pins Item Symbol Min. Typ. Max. Unit Input capacity of φCLK pin CφCLK — 10 — pF Input capacity of φROG pin CφROG — 10 — pF Recommended Input Pulse Voltage Item Min. Typ. Max. Unit Input clock high level 4.5 5.0 5.5 V Input clock
in „Problem mit ILX551B (CCD-Sensor)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm072.pdf
lm-technologies.com Page Number : 1 of 6 Electrical Characteristics Absolute Maximum Ratings Parameter Min. Max. Unit Storage Temperature -40 +150 Đ Supply Voltage(VDD) 2.7 3.6 DCV Supply Voltage(P VCC ) 3.0 3.3 DCV O ther Pin Voltage Vss -0.4 VDD+0.4 DCV Recommended O perating Conditions Parameter Min. Max.
in „Bluetoothmodul LM072 von LM Technologies“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DLR1414.PDF
.............................70 cd/LED typ. 2.0 V LED to LED Intensity Matching ...........1.8:1.0 max. A0, A1 0.8 V LED to LED Hue Matching at V =5 V CC TAS TAH (Green only) ..................................... 2 nm max. Note 1: Peak luminous intensity values can be calculated 2.0 V D0-D6 0.8 V by
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Dashboard einer PV-Anlage und Microgrid-Überwachung
AC Verbundnetz -12.35 kW PV Produktion 14.10 kW DC Batterie 24.0 % Microgrid 0.63 kW Mittwoch, den 16. Juli 2025, 18:17:28 Halle18Nord 4.55 kW AC Soll: -12.23 kW Halle18Süd 4.04 kW AC Last: 49 W S: 4.14+4.27+4.49 = 12.55 kVA 14 °C min, 17 °C max DC Last: P1 P2 P3 Shed18Nord 7.03 kW
in „Grundlagen Wechselstrom Cos Phi“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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PDF
hd66701.pdf
these pins should be minimized. V CC = 5V V CC= 3V 500 500 400 400 z z H 320 H 320 ( 300 ( 300 S S f f max. max. 200 typ. 200 typ. min. min. 100 50 (68) 100 150 100 50 (56) 100 150 R (k ) R (k ) f f 64 HD66702/HD66701 13.R COM is the resistance between the power supply pins (V CCV1, V4, V5) and each common
in „Tipsend2 Pollin“ · Mikrocontroller und Digitale Elektronik ·
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MCP41HVX1.pdf
WIPER CODE (R W = R FS = R ZS = 0) FOR V+ - V- = 36V, 5K AND 10K DEVICES. Code V Code V Code V BW(MAX) BW(MAX) BW(MAX) Hex Dec R R Hex Dec R R Hex Dec R R S(MIN) S(MAX) S(MIN) S(MAX) S(MIN) S(MAX) 00h 0 0.000 0.000 20h 32 12.549 18.824 40h 64 25.098 01h 1 0.392 0.588 21h 33 12.941 19.412 41h 65 25.490
in „MCP41HVX READCMD falsch verstanden??“ · Mikrocontroller und Digitale Elektronik ·
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Datei
config-mod-LK511-mt7623n-BPiR2.txt
=m CONFIG_SENSORS_MAX6650=m CONFIG_SENSORS_MAX6697=m CONFIG_SENSORS_MAX31790=m CONFIG_SENSORS_MCP3021=m # CONFIG_SENSORS_TC654 is not set CONFIG_SENSORS_ADCXX=m CONFIG_SENSORS_LM63=m CONFIG_SENSORS_LM70=m CONFIG_SENSORS_LM73
in „Linux Kernel 5.1.1. auf dem BPi-R2“ · PC Hard- und Software ·
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Datei
IPCONFIG.txt
e-mail demo web page // -- SSL Options -------------------------------------------------------- #define MAX_SSL_CONNECTIONS (2ul) // Maximum connections via SSL #define MAX_SSL_SESSIONS (2ul) // Max # of cached SSL sessions #define MAX_SSL_BUFFERS (4ul) // Max # of SSL buffers (2 per socket) #define MAX_SSL_HASHES
in „TCP/IP Stack Konfiguration des GenericTCPServers“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX9814.pdf
E VA LU ATIO N K IT AVA ILA B LE MAX9814 Microphone Amplifier with AGC and Low-Noise Microphone Bias General Description Features The MAX9814 is a low-cost, high-quality microphone ●● Automatic Gain Control (AGC) amplifier with automatic
in „Impedanzanpassung MAX9814 <-> PCM2912A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Frequenzzaehler_-_die_zweite.pdf
0.70$ ab Werk, Farnell 3.06 Euro, RS auch langsamer als der Controller selbst. Da- 3.00 Euro, TME 2.63 Euro (incl. 20% poln. mit wäre dämlicherweise die Eingangsstufe MwSt) das langsamste Glied in der Kette - eigentlich ein Designfehler, aber was wäre eine Alterna- Ob man von NS Muster bekommt, ist tive
in „PIC - Frequenzzähler weit über 50 MHz auf die minimalistische Art“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD725.pdf
PAL DG DP (NTSC) Wfm — >MOD 5 STEP DG DP (PAL) Wfm — > MOD 5 STEP DIFFERENTIAL GAIN (%) MIN = –0.05 MAX = 0.39 pk–pk/MAX = 0.44 DIFFERENTIAL GAIN (%) MIN = –0.06 MAX = 0.43 pk–pk = 0.49 0.5 0.00 0.07 –0.05 0.20 0.22 0.39 0.5 0.00 –0.06 0.15 0.23 0.43 0.38 0.4 0.4 0.3 0.3 0.2 0.2 0.1 0.1 0.0 0.0 –0.1 –0.1 –0.2 –0.2 DIFFERENTIAL PHASE (deg) MIN = –0.33 MAX = 1.17 pk–pk = 1.50 DIFFERENTIAL PHASE (deg) MIN = –0.44 MAX = 1.34 pk–pk = 1.79 2.0 0.00 –0.33 0.10 0.70 1.05 1.17 2.0 0.00 –0.44 –0.02 0.70 1.17 1.34 1.5 1.5 1.0 1.0 0.5 0.5 0.0 0.0 –0.5 –0.5 –1.0
in „(F)UZE-Box Zusatzmodul für AVR NET-IO“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt Tabelle ESKA Fuse-links
Ausschaltvermögen Breaking capacity Pouvoir de coupure Spannungsabfall Voltage drop Chute de tension max [mV] Schmelzintegral Melting integral ∫ fusion [A²s] 521.002 32 mA 640 0,00088 521.003 40 mA 630 0,00154 521.004 50 mA 600 0,00125 521.005 63 mA 560 0,00320 521.006 80 mA 520 0,04 521.007 100 mA 470
in „TVS Diode wir bei Überspannung zerstört“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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PDF
tda2040.pdf
PIN CONNECTION THERMALDATA Symbol Parameter Value Unit Rth j-caseThermal Resistance Junction-case Max. 3 ⋅C/W 2/13 TDA2040 ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit V s Supply Voltage 〉 20 V Vi Input Voltage Vs Vi Differential Input Voltage 〉 15 V o Output Peak Current (internally limited
in „Frage zu TDA2040“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
I2C_128x64_Beispielcode.ino
on SSD1306 drivers Pick one up today in the adafruit shop! ------> http://www.adafruit.com/category/63_98 This example is for a 128x32 pixel display using I2C to communicate 3 pins are required to interface (two I2C and one reset). Adafruit invests time and resources providing this open source code, please
in „I2C 128x64 Display Displayfehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
High_Power_IGBT_IXGK-GX320N60A3.pdf
) Resistive load, T = 25°C 63 ns J tr 68 ns IC= 80A, V GE = 15V td(off) 290 ns V CE = 400V, R = GΩ tf 740 ns td(on) Resistive load, T = 125°C 62 ns J tr 77 ns IC= 80A, V GE = 15V td(off) 330 ns t V CE = 400V, R = GΩ 1540 ns f R thJC
in „IGBT brennt durch - Weit unter spezifkation.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IXGK-GX320N60A3.pdf
) Resistive load, T = 25°C 63 ns J tr 68 ns IC= 80A, V GE = 15V td(off) 290 ns V CE = 400V, R = GΩ tf 740 ns td(on) Resistive load, T = 125°C 62 ns J tr 77 ns IC= 80A, V GE = 15V td(off) 330 ns t V CE = 400V, R = GΩ 1540 ns f R thJC
in „Impulsbelastung von IGBTs -> Parallelschaltung -> Ausgleichswiderstände“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NHD-0420CW_Manual.pdf
SDA OUT SDA IN SCL Tie LOW SA0 /RES [5] Electrical Characteristics Item Symbol Condition Min. Typ. Max. Unit Operating Temperature Range Top Absolute Max -40 - +85 ⁰C Storage Temperature Range Tst Absolute Max -40 - +90 ⁰C Supply Voltage for logic VDD 2.4 2.8 5.5 V Supply Voltage for I/O Regulator REGVDD
in „Unbekannte Signale Oled-Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NHD-C12864WO-B1TGH-M.pdf
. 5 1 0 2 1 1 5 5 . . 1 0 1 8 1 1 4 9 . B 1 B . D ± C A A . . . 5 . V ( 4 3 4 7 4 . 9 4 3 1 C 3 C 63.97(AA) 1.9 4-Ø3.2 PTH 5.865 82.7 3.5 3.35 69.0(VA) 6.0±0.3 8.35 73.0(LCD) 3.5 82.7 89.7 D D 1 CS1B 11 D5 21 CAP2N 2 /RES 12 D6 22 V4 3 A0 13 D7 23 V3 4 /WR(R/W) 14 VDD 24 V2 5 /RD(E) 15 Vss 25 V1 6 D0
in „[V] 2St. NHD LCDs: NHD-C160100 und NHD C12864WO“ · Markt ·
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Datei
dcmi_ov9655.c
DCMI_SingleRandomWrite(uint8_t Device, uint16_t Addr, uint8_t Data) { uint32_t timeout = DCMI_TIMEOUT_MAX; /* Generate the Start Condition */ I2C_GenerateSTART(I2C1, ENABLE); /* Test on I2C1 EV5 and clear it */ timeout = DCMI_TIMEOUT_MAX; /* Initialize timeout value */ while(!I2C_CheckEvent(I2C1, I2C_EVENT_MASTER_MODE_SELECT
in „STM3220G-EVAL + Kamera OV2460“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP23017-Datasheet.pdf
DS20001952C-page 32 2005-2016 Microchip Technology Inc. MCP23017/MCP23S17 /HDG 6NLQQ\ 3ODVWLF 'XDO ,Q /LQH 63 ± PLO %RG\ >63',3@ 1RWH )RU WKH PRVW FXUUHQW SDFNDJH GUDZLQJV SOHDVH VHH WKH 0LFURFKLS 3DFNDJLQJ 6SHFLILFDWLRQ ORFDWHG DW KWWS ZZZ PLFURFKLS FRP SDFNDJLQJ N NOTE 1 E1 1 2 3 D E A2 A L c A1 b1 b e eB
in „kennt jemand sich aus mit MC23017 IO-Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
auo-B101AW06-V1-pre.pdf
points average) (Note: ILED is LED current) 170 min. (5 points average) Luminance Uniformity 1.25 max. (5 points) Contrast Ratio 400 typ Response Time [ms] 16 typ / 25 Max Nominal Input Voltage VDD [Volt] +3.3 typ. Power Consumption [Watt] 2.6 max. (Include Logic and Blu power) Weight [Grams] 170 max
in „Handydummy (Attrappe)mit richtigem Display 10Zoll - u.a.Motorola Xoom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irl7486mpbf-936689.pdf
topologies R typ. 1.0m DS(on) Synchronous rectifier applications Resonant mode power supplies max 1.25m @ V GS = 10V OR-ing and redundant power switches DC/DC and AC/DC converters DC/AC Inverters R DS(on)typ. 1.5m max @ V = 4.5V 2.0m Benefits GS Optimized for Logic Level Drive
in „Reparatur Makita XWT08Z (DTW1002Z)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MOC3020-M.pdf
n Vmax = 400 V (MOC302X) D APWAVEFORMLTAGE 252 V (MOC302X) = 250 V (MOC301X) I 158 V (MOC301X) P 0.63 max 252 R 0 VOLTS dv/dt = RC = RC (MOC302X) n RC d = 1RC (MOC301X) o m Figure 5. Static dv/dtTest Circuit - h a Note: s This optoisolator should not be used to drive a load directly. It is intended to
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Datei
ff.c
ABORT(fs, res) { fp->err = (BYTE)(res); LEAVE_FF(fs, res); } /* Definitions of sector size */ #if (_MAX_SS < _MIN_SS) || (_MAX_SS != 512 && _MAX_SS != 1024 && _MAX_SS != 2048 && _MAX_SS != 4096) || (_MIN_SS != 512 && _MIN_SS != 1024 && _MIN_SS != 2048 && _MIN_SS != 4096) #error Wrong sector size configuration
in „Problem mit VS1053“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3023-M.pdf
specified) A INDIVIDUAL COMPONENT CHARACTERISTICS Parameters Test Conditions Symbol Device Min Typ Max Units EMITTER Input Forward Voltage IF= 10 mA VF All 1.15 1.5 V Reverse Leakage Current V = 3 V, T = 25°C I All 0.01 100 µA R A R DETECTOR Peak Blocking Current,Either DirectioRated VDRM ,FI = 0 (note
in „Moc3023 Tic225 Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3020-M.pdf
specified) A INDIVIDUAL COMPONENT CHARACTERISTICS Parameters Test Conditions Symbol Device Min Typ Max Units EMITTER Input Forward Voltage IF= 10 mA VF All 1.15 1.5 V Reverse Leakage Current V = 3 V, T = 25°C I All 0.01 100 µA R A R DETECTOR Peak Blocking Current,Either DirectioRated VDRM ,FI = 0 (note
in „Thyristor ein- bzw. ausschalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MOC3022-M.pdf
specified) A INDIVIDUAL COMPONENT CHARACTERISTICS Parameters Test Conditions Symbol Device Min Typ Max Units EMITTER Input Forward Voltage IF= 10 mA VF All 1.15 1.5 V Reverse Leakage Current V = 3 V, T = 25°C I All 0.01 100 µA R A R DETECTOR Peak Blocking Current,Either DirectioRated VDRM ,FI = 0 (note
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PDF
MOC3022-M.pdf
specified) A INDIVIDUAL COMPONENT CHARACTERISTICS Parameters Test Conditions Symbol Device Min Typ Max Units EMITTER Input Forward Voltage IF= 10 mA VF All 1.15 1.5 V Reverse Leakage Current V = 3 V, T = 25°C I All 0.01 100 µA R A R DETECTOR Peak Blocking Current,Either DirectioRated VDRM ,FI = 0 (note
in „Problem beim dimmen von NV-Halogenspots“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3022-M.pdf
specified) A INDIVIDUAL COMPONENT CHARACTERISTICS Parameters Test Conditions Symbol Device Min Typ Max Units EMITTER Input Forward Voltage IF= 10 mA VF All 1.15 1.5 V Reverse Leakage Current V = 3 V, T = 25°C I All 0.01 100 µA R A R DETECTOR Peak Blocking Current,Either DirectioRated VDRM ,FI = 0 (note
in „triac und diac“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt_moc3022.pdf
specified) A INDIVIDUAL COMPONENT CHARACTERISTICS Parameters Test Conditions Symbol Device Min Typ Max Units EMITTER Input Forward Voltage IF= 10 mA VF All 1.15 1.5 V Reverse Leakage Current V = 3 V, T = 25°C I All 0.01 100 µA R A R DETECTOR Peak Blocking Current,Either DirectioRated VDRM ,FI = 0 (note
in „Phasenanschnitt- Fehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2019-02-22_SCH_ATMega_Eval_DEVEL_v0_2_.PDF
1 2 3 4 Power Input 12V ? 5V Versorgung Vin 5V mit Strom/Spannungsüberwachung Input Spannung: 30V max. A C1 Strom: 600 mA max. A J1 V2 R1 1 100 nF 2 GL34M 250mR 5 V1 3 U2 Vin VS 5V C2 4 IN- GND U1 SS14 GND L1 4µ7 R2 OUT 1 ANA_CUR 5 VIN SW 6 27k 3 IN+ BOOST 1 15 uH Strom : 500 mA max. C3 GND Rsense =
in „AD.wandler und FFT auf Atmega 128A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
kdc_ndtd.pdf
NDTD4815C Short circuit protection Continuous GENERAL CHARACTERISTICS Parameter Conditions Min. Typ. Max. Units Switching frequency 100% to 25% load,VIN min to max 60 620 kHz TEMPERATURE CHARACTERISTICS Parameter Conditions Min. Typ. Max. Units Operation -40 85 Storage -50 130 NDTD0503 54 NDTD1203C, NDTD2403C
in „Spannungsregler Uein= 80V (DC) Uaus=15V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HVG-100-SPEC.pdf
. 3 +V(Red) 9 ψ4.2×4PL ‧ tc : Max. Case Temperature . 3 File Name:HVG-100-SPEC 2025-04-17 100W Constant Voltage + Constant Current LED Driver HVG-100 series ※AB-Type 236 12 212 9.6 . 300±20 9 Vo Io UL2517 18AWG×2C FG (Green/Yellow)
in „0-10V auf z.B. 4-7V skalieren“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
minidds.asm
data ( 9 cycles ) ; ; f = r24/r25/r26 * (11059200/9)/16777216 ; ; f = r24/r25/r26 * 0.073242188 ; ; fMax (theoretical) = 0.5 * fClock ; ;****************************************************************************** ; start of code ;**********************************************************************
in „assembler kompilieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dds.asm
data ( 9 cycles ) ; ; f = r24/r25/r26 * (11059200/9)/16777216 ; ; f = r24/r25/r26 * 0.073242188 ; ; fMax (theoretical) = 0.5 * fClock ; ;****************************************************************************** ; start of code ;**********************************************************************
in „ASM von MiniDDS in WinAVR kompilieren. Wie?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
miniDDS.asm
data ( 9 cycles ) ; ; f = r24/r25/r26 * (11059200/9)/16777216 ; ; f = r24/r25/r26 * 0.073242188 ; ; fMax (theoretical) = 0.5 * fClock ; ;****************************************************************************** ; start of code ;**********************************************************************
in „Atmel Studio 7: Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1990a.pdf
guaranteed by design and characterization. Typical values at +25°C.) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS IO PIN: GENERAL DATA DS1990A (Note 1) 2.8 6.0 V 1-Wire Pullup Voltage VPUP DS1990AA (Note 1) 3.0 5.25 V 1-Wire Pullup Resistance R DS1990A (Notes 1 and 2) 0.6 5 kΩ PUP DS1990AA (Notes 1 and 2)
in „V 30 iButton DS1990A“ · Markt ·
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PDF
tda7375.pdf
L = 2 12 W P O max Max. Output Power (***) VS = 14.4V, Bridge 36 40 W P O EIAJ EIAJ Output Power (***) VS= 13.7V, Bridge 32 35 W THD Distortion RL = 4 Single Ended, P = 0.1 to 4W 0.02 % O Bridge, O = 0.1 to 10W 0.03 0.3
in „SCHALTUNGS-problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tda7375.pdf
L = 2 12 W P O max Max. Output Power (***) VS = 14.4V, Bridge 36 40 W P O EIAJ EIAJ Output Power (***) VS= 13.7V, Bridge 32 35 W THD Distortion RL = 4 Single Ended, P = 0.1 to 4W 0.02 % O Bridge, O = 0.1 to 10W 0.03 0.3
in „END-VERSTÄRKER probs“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
WIMA_DC_Link_MKP_4.pdf
Führungslöcher W 1 9,0± 0, 9,0± 0, 9,0± 0, 9,0± 0, 9,0± 0,5 9,0± 0,5 9,0± 0,5 Lage Klebeband W 0,5bis 3,0max, 0,5bis 3,0max, 0,5bis 3,0max, 0,5bis 3,0max, 0,5bis 3,0max, 0,5bis 3,0max, 0,5bis 3,0max, 2 Führungsloch-Durchmesser D 4,0± 0, 4,0± 0, 4,0± 0, 4,0± 0, 4,0± 0,2 4,0± 0,2 4,0± 0,2 0 Abstandder Bauelemente
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Schaltplan eines Ultraschall-Entfernungsmessers
4 3 2 1 Trig Echo +5v R2 10K R3 10K P50 P51 14 13 1 2 P67 P66 12 11 P65 P64 10 9 VDD Vss 8 7 P60 P63 RST P62 STC11 C1 22p C6 22p Y4 4MHZ +5v R5 1K C4 100n C3 100n C8 100n C11 100n MAX232 T1N T1OUT 14 13 T2IN T2OUT 12 11 R1OUT R2OUT 15 1 8 GND 发射 T40 +5v Q1 PNP R7 10K R9 120K R6 75K R11 1K C16 100nF
in „HC-SR04 ultraschall zu side scan sonar?“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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Rundes Bauteil auf einem Lineal
7 STRAND WIRE AWG a2.95mm PCB-RULER-ND Digi-Key 17.5µm Max A=C 12 11 10 9 8 7 6 5 4 3 2 1 0.24 0.25 0.26 0.27 0.28 0.29 0.30 0.31 0.32 0.33 0.34 0.35 0.36 0.37 0.38 0.39 0.40 0.41 0.42 0.43 0.44 0.45 0.46 0.47 0.48 0.49 0.50 0.51 0.52 0.53 0.54 0.55 0.56 0.57 0.58 0.59 0.60 0.61 0.62 0.63 0.64 0.65 0.66 0.67 0.68 0.69 0.70 0.71 0.72 0.73 0.74 0.75 0.76 0.77 0.78 0.79 0.80 0.81 0.82 0.83 0.84 0.85 0.86 0.87 0.88 0.89 0.90 0.91 0.92 0.93 0.94 0.95 0.96 0.97 0.98 0.99 1.00 1.01 1.02 1.03
in „[V] Schönes OKW Aluminium Synergy Tisch/Wandgehäuse Rund SEHR HOCHWERTIG! (15€)“ · Markt · · Fotos
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PDF
ACS758-Datasheet.pdf
Operating Ambient Temperature TOP Range K –40 to 125 ºC Range L –40 to 150 ºC Maximum Junction TJ(max) 165 ºC Storage Temperature Tstg –65 to 165 ºC Thermal Characteristics may require derating at maximum conditions Characteristic Symbol Test Conditions* Value Unit Mounted on the Allegro evaluation
in „Passender ADC für Dtrommessung mit ACS758“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACS758-Datasheet.pdf
Operating Ambient Temperature T Range K –40 to 125 ºC OP Range L –40 to 150 ºC Maximum Junction TJ(max) 165 ºC Storage Temperature Tstg –65 to 165 ºC Isolation Characteristics Characteristic Symbol Notes Rating Unit Agency type-tested for 60 seconds per Dielectric Strength Test Voltage* VISO UL standard
in „ACS 758 Strommessgenauigkeit“ · Analoge Elektronik und Schaltungstechnik ·