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CS8415A_data.pdf
, and so is doubled in frequency compared to stereo mode. The receiver will run at a frame rate of Fs/2, and the serial audio output port will run at Fs. Sub-frame A data will be routed to both the left and right data fields on SDOUT. Similarly, sub-frame B data will be routed to both
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MRF150.pdf
= 100 mA) V 1.0 3.0 5.0 Vdc DS D GS(th) Drain–Source On–Voltage (V= 10 V, I = 10 A) V 1.0 3.0 5.0 Vdc GS D DS(on) Forward Transconductance (V= 10 V, I = 5.0 A) g 4.0 7.0 — mhos DS D fs DYNAMIC CHARACTERISTICS
in „Wärmeleitpad gesucht für POWER FET MRF150“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MMC5633NJL.pdf
VIO I3C interface 1.5 1.8 VDD V Supply Voltage rise time 10.0 ms Supply Current 2,3 BW=00 3.4 4.0 mA BW=01 2.4 3.0 mA (100 measurements/second) BW=10 1.3 1.6 mA BW=11 0.75 1.0 mA 3 Power Down Current 1.0 1.2 µA Operating Temperature -40 85 C Storage Temperature -55 125 C 3 Linearity Error FS=±30 G
in „Sensor Array ansprechen mit I2C - Unterschiede zu Mega2560 und Seeed RP2040“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AON6500.pdf
=10V, I =20A 0.75 0.95 GS D m R DS(ON) Static Drain-Source On-Resistance TJ=125°C 1.1 1.4 V GS.5V, I D20A 1 1.3 m gFS Forward Transconductance V DSV, I D20A 100 S V Diode Forward Voltage I =1A,V =0V 0.7 1 V SD S
in „Unbekanntes Bauteil?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
hwinfop14s.txt
=3348c513-073b-4331-8ffc-686927ebab52 E: ID_PART_TABLE_TYPE=gpt E: ID_FS_UUID=8c20e5e2-a7e1-4925-a328-86a3b2e1e25f E: ID_FS_UUID_ENC=8c20e5e2-a7e1-4925-a328-86a3b2e1e25f E: ID_FS_VERSION=1.0 E: ID_FS_BLOCKSIZE=4096 E: ID_FS_LASTBLOCK=524288 E: ID_FS_SIZE=2147483648 E: ID_FS_TYPE
in „Lenovo Thinkpad P14s (Intel) freeze beim Steckerziehen“ · PC Hard- und Software ·
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PDF
irl3705n.pdf
V GS= 5.0V, D = 46A ––– ––– 0.018 V = 4.0V, I = 39A GS D VGS(th) Gate Threshold Voltage 1.0 ––– 2.0 V V DS = GS ,DI = 250µA g Forward Transconductance 50 ––– ––– S V = 25V, I = 46A fs DS D ––– ––– 25 V DS= 55V, VGS = 0V
in „Anschluss MOSFET IRL3705N“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irl3705n.pdf
V GS= 5.0V, D = 46A ––– ––– 0.018 V = 4.0V, I = 39A GS D VGS(th) Gate Threshold Voltage 1.0 ––– 2.0 V V DS = GS ,DI = 250µA g Forward Transconductance 50 ––– ––– S V = 25V, I = 46A fs DS D ––– ––– 25 V DS= 55V, VGS = 0V
in „Ventilansteuerung mit Mosfet - Temperatur?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
F1E200_Datsheet_V1.pdf
excellent overall system performance. The general-purpose peripherals include functions such as USB HS/FS DRD, UART, SPI, TWI, LCD controller, TV encoder, SD/MMC I/F, SDRAM I/F, a watchdog timer. This set of functions satisfies a wide variety of typical system support needs and is augmented by the system
in „Allwinner F1E200 Alternative“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KlangPlusTon_2007-01.pdf
Abb. ähnlich Pioneer DVR-645H /-940HX NEU! Hitachi 42 PD 6600 Restposten Audio Analogue Studio HTS 1000 Panasonic TH-37/-42PA60 NEU! Denon PMA-500 /-700AE NEU! Onkyo TX-NR 5000E sw/silber Yamaha DVD-S 559 NEU! 8-fach Netzleiste Panasonic TH-42PD60 NEU! Denon PMA-1500 /-2000AE sw/silber Onkyo TX-SR 304
in „Symasym hohe Ausgangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DMF-5005NY-LY-AKE.pdf
Maximum Ratings Ta=25℃ Parameter Symbol Conditions Min. Typ. Max. Units Foward Current IF Note 1 - - 1000 mA Reverse Voltage V R - - - 8 V LED Power Dissipation P D - - - 4.3 W Note 1 : Refer to the foward current derating curve. I (mA) F 1000 666 0 25 50 Ta (℃ ) 2.5.2.Operating Characteristics Ta=25℃ Parameter
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ZXMHC6A07T8.pdf
G 3 S2 S 3 ORDERING INFORMATION PINOUT DIAGRAM DEVICE REEL TAPE QUANTITY SIZE WIDTH PER REEL ZXMHC6A07T8TA 7’‘ 12mm 1000 units ZXMHC6A07T8TC 13’‘ 12mm 4000 units DEVICE MARKING • ZXMH C6A07 Top View ISSUE 2 - MAY 2005 1 ZXMHC6A07T8 ABSOLUTE MAXIMUM RATINGS PARAMETER SYMBOL N-Channel P-Channel UNIT Drain-Source
in „DCC Decoder“ · Projekte & Code ·
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PDF
A100_ZXMHC6A07T8.pdf
G 3 S2 S 3 ORDERING INFORMATION PINOUT DIAGRAM DEVICE REEL TAPE QUANTITY SIZE WIDTH PER REEL ZXMHC6A07T8TA 7’‘ 12mm 1000 units ZXMHC6A07T8TC 13’‘ 12mm 4000 units DEVICE MARKING • ZXMH C6A07 Top View ISSUE 2 - MAY 2005 1 ZXMHC6A07T8 ABSOLUTE MAXIMUM RATINGS PARAMETER SYMBOL N-Channel P-Channel UNIT Drain-Source
in „H-Brücke ohne Mosfet-Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
PowerReglerDTZ.ino
formaction=\"back\">Abruch</button></p></form>"; s += "<hr>Regler-Version: "; s += PWRVersion; s += "<br><a href=\"firmware\">Check for update firmware</a>"; s += "<br><hr><p><a href=\"https://infozaehler.de/help.html\"/help.html\">Hilfe & Impressum</a></p>"; s += HTTP_TEXT_END; } else if (argument == "/favicon.ico
in „Schaltsteckdose für StromLog ESP“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADA4870.pdf
100°C 9 +100°C 6 6 3 3 ) 0 ) 0 d d ( ( I–3 I –3 A A G–6 G –6 –9 –9 VS= ±5V VS = ±20V –12 VOUT = 2V p-p –12 VOUT = 20V p-p RF= 1.21kΩ R F 1.21kΩ AV= −2 –15 A V= −2 –15 CL= 300pF C L= 300pF RS= 5Ω R S 5Ω –18 2 –18 1 1 10 100 1000 - 1 10 100 1000 5 1 1
in „Spannungsfolger mit ADA4870“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
The-ESP8266-Book-September-2015.pdf
system_os_task • system_os_post Page 113 Timers and time Within our code, we may wish to delay for a period of time. We can use the os_delay_us() function to suspend processing for a given period measured in microseconds. There are 1000 microseconds in a millisecond and a 1000 milliseconds in a second
in „ESP8266 Freies eBook August 2015 'Kolban'“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Distance-Test.bas
: B = B * T2 C = Lat1 * Mpi : C = Sin(c) T2 = Lat2 * Mpi : T2 = Sin(t2) : C = C * T2 T2 = A + B T2 = T2 + C A = Abs(t2) If A >= 1 Then Calc_distance = 0 Else T2 = Acos(t2) : Tmp = T2 : T2 = T2 * Radiusearth Calc_distance = T2 End If 'Calculate bearing course A = Lat2 * Mpi : A = Sin(a) B =
in „Was mache Ich falsch? Bascom Simulator-OK HW-Error“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XBSM6T_DATA_E.pdf
(typical values) C (pF) C (pF) 10000 10000 Tj= 25° C Tj = 25° C F= 1 MHz F= 1 MHz SM 6T6 S M6T6V 8A V8C A 1000 SM 1000 SM 6T 15C 6T15 A SM A SM 6T 30A 6T 30CA SM 6T68A SM6 T 68CA SM6T SM 6T 220 100 220A CA 100 V R (V) V R(V) 101 10 100 500 10 1 10 100 500 Figure 7. Peak forward voltage drop versus
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DAC3550A_Stereo_Audio_DAC.pdf
0...0.446 fs FOUTL/R (no external filters used) AD/A D/A Stop Band Attenuation 40 dB 0.55...7.533 fs (no external filters used) BW AUX Bandwidth for AUXnL/R, 760 kHz (no external filters Auxiliary Inputs FINL/R used
in „Mini-DSP für Audio-Verarbeitung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3066.pdf
D GS Gate threshold voltage V V = 10 V, I = 1 mA 2.0 — 4.0 V th DS D Drain−source ON resistance R V = 10 V, I = 3 A — 0.9 1.25 Ω DS (ON) GS D Forward transfer admittance |Y | V = 10 V, I = 3 A 2.0 5.5 — S fs DS D Input capacitance C — 1300 — iss Reverse
in „Reparatur Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
semicon.pdf
4A tirisztor TO220 166 x LM137K / C neg. 1,5A / 40V TO3 29 x 1N5928B 13V / 1,5W zener 918 x BAS221 SMD 1000 HVE300A7TRU varicap SMD 3000 Félvezetık / tranzisztor fet FET STM STP36N06 Mosfet TO 220 700 FET
in „4" TFT für 7,97€“ · Markt ·
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Datei
lok_tn15.asm
NB: NMRA-DCC Basisprotokoll (abs. FRU, 7-bit-Adr., 14 FS) ;N1: NMRA-DCC erweitert (abs. FRU, 7-bit-Adr., 5 Funkt., 28 FS) ;N2: NMRA-DCC erweitert (abs. FRU, 7-bit-Adr., 5 Funkt., 128 FS) ;N3: NMRA-DCC erweitert (abs. FRU, 14-bit-Adr., 5 Funkt., 28 FS) ;N4:
in „DCC Decoder“ · Projekte & Code ·
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PDF
AO4410.pdf
1.5 V ID(ON) On state drain current V GS=4.5V, VDS5V 80 A V GS=10V, D =18A 4.7 5.5 mΩ R DS(ON) Static Drain-Source On-Resistance TJ=125°C 6.4 7.4 V GS=4.5V, D =15A 5.2 6.2 mΩ g FS Forward Transconductance V DS=5V, D =18A 102 S V SD Diode Forward Voltage I =
in „Falsches Ladegerät am Notebook :-(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS100728A_IXTN660N04T4_-1022876.pdf
150ºC, VGS= 10V RG= 1Ω, V GS= 10V 1400 V =20V 140 V = 20V DS 340 DS 480 t d ( d200 120 o d f o ) n )- 1000 100 N c20 440 N s I = 660A a e ID= 330A a n D o o o a800 80 s 300 400 e - ID= 330A c N ID= 660A c r n - n t600 60 d t d s 280 360 s 400 40 260 320 200 20 ID=330A 0 0 240 280 1 2 3 4 5 6 7 8 9 10 25
in „Suche Power-MosFet für etwa 600A“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
CAPTURE.TXT
driver $Revision: 1.8 $ 2 ports, IRQ sharing disabled serial8250: ttyS0 at I/O 0xb0000500 (irq = 37) is a 16550A serial8250: ttyS1 at I/O 0xb0000c00 (irq = 12) is a 16550A RAMDISK driver initialized: 16 RAM disks of 16384K size 1024 blocksize loop: loaded (max 8 devices) rdm_major = 253 IMQ starting with
in „Plunder von Pollin:WMDR-143N“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datenblatt2.pdf
631-951-0800 - Fax 631-951-2121 - www.datamodul.com /D /WR C/D MGLS12864T /CE GRAPHICLCDDISPLAY T6A40 128X64DOTMATRIX 64 /ST FS E T L 3L R 6 V N TU C E 0 8 D O 8 4 DB0~DB7 8 L T6A39 T6A39 FG VDD V0 VSS 8KRAM FIG. 2: Block diagram DATA MODUL INC. 1767-46 Veterans Memorial Highway Islandia NY 11749 Tel
in „LCD 128x64 Initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
vs1001.pdf
Consumption DVDD, Reset 3.7 100.0 „A Power Supply Consumption DVDD 15.0 mA 2.3 DAC Interpolation Filter Characteristics Parameter Symbol Min Typ Max Unit Passband (to -3dB corner) 0 0.459Fs Hz Passband (Ripple Spec) 0 0.420Fs Hz Passband
in „VS1001k: SDI & SCI am SPI-Bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AO4459.pdf
GS(th) DS GS D ID(ON) On state drain current V GS10V, V =DSV -30 A V GS10V, I =D6.5A 33 42 m R DS(ON) Static Drain-Source On-Resistance V GS=-4.5V, D =-5A 56 60 m gFS Forward Transconductance V DS=-5V, D =-6.5A 14 S V Diode Forward Voltage IS=-1A,V GSV -0.8 -1 V SD
in „P-Mosfet sperrt nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
156346062-STi7105.pdf
FS0 and FS1 setup. The clock generator design ensures a glitch-free f frequency change. o C C FS0 and FS1 frequency definition i The frequencies generated by FS0 and FS1 are defined by the registers i CKGB_FS0
in „Motorola Vip19x0 (Big brother of Vip1710)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dmesg.txt
interface driver cdc_mbim [ 9.168742] cdc_ncm 2-1.4:1.6 wwp0s29u1u4i6: renamed from wwan0 [ 9.207434] EXT4-fs (sda2): mounting ext3 file system using the ext4 subsystem [ 9.215720] nvidia-uvm: Loaded the UVM driver in 8 mode, major device number 240 [ 9.222344] EXT4-fs (sda2): mounted filesystem with ordered
in „[F] Linux MINT 18: Boot-Verzögerung nach HDD-Umzug“ · PC Hard- und Software ·
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PDF
MAX187_MAX.pdf
___________________________________________________ +5V, Low-Power, 12-Bit Serial ADCs M 10000 3.0 A 2.5 X 1000 ) 1 ( MAX187 ) 2.0 8 E ( 7 R 100 A 1.5 / Y tW M P MAX189* 1.0 S 10 A 0.5 X 1 *REF CONNECTED DD V 0 1 0.1 1 10 100 1000 10000 100000 0.0001 0.001 0.01 0.1 1 10 8 9 CONVERSIONS PER SECOND TIME
in „AD-Wandler mittels Optokoppler anbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina105.pdf
0.01 0.025 % vs Temperature 1 5 ppm/°C (2) Nonlinearity 0.0002 0.001 % OUTPUT Rated Voltage O = +20mA, –5mA 10 12 V Rated Current VO= 10V +20, –5 mA Impedance 0.01 Current Limit To Common +40/–10 mA Capacitive Load Stable Operation 1000 pF INPUT Impedance(3) Differential 50 k Common-Mode 50 k (4) Voltage
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ads1115.pdf
drift over temperature FSR = ±2.048 V 0.005 LSB/°C FSR = ±2.048 V, TA= 125°C, Long-term Offset drift 1000 hrs ±1 LSB Offset power-supply rejection FSR = ±2.048 V, DC supply variation 1 LSB/V Offset channel match Match between any two inputs 3 LSB Gain error3) FSR = ±2.048 V, T = 25°C 0.01% 0.15% A FSR =
in „Raspberry ADC 0-5V Input“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ferritperlen.pdf
Pack Reel 1 F1 d L H DS 306 Series 2000 — W 1 W W 0 DS310/310H Series 2000 — DST310/310H Series — 1000 P0 D0 DSS310/310H Series — 800 t1 t2 Non Standard 254 CG01-I EMI LEADED FILTERS E M EMI SUPPRESSION FILTERS L E WITH SEMICONDUCTOR SURGE PROTECTION VFR303 Series A D The VFR303 Series is an EMI suppression
in „24Bit Delta-Sigma ADC-Eingang vor ESD und Überspannung schützen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-IPD180N10N3_G-DS-v02_03-en.pdf
=20 V, V =0 V Gate-source leakage current GSS GS DS - 1 100 nA Drain-source on-state resistance R DS(on) VGS =10 V, D =33 A - 14.7 18 mW V =6 V, I =16 A - 18.4 33 GS D Gate resistance R G - 1.4 - W g |VDS|>2|ID|RDS(on)max Transconductance fs ID=33 A 20 40 - S 3)
in „MosFet; unterschiedliche Schaltzeiten aus Datenblatt und Simulation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina125.pdf
15 ppm/°C G > 4(1) ±25 ±100 ppm/°C Nonlinearity VO= –14V to +13.3V G = 4 ±0.0004 ±0.002 ±0.004 % of FS G = 10 ±0.0004 ±0.002 ±0.004 % of FS G = 100 ±0.001 ±0.01 % of FS G = 500 ±0.002 % of FS OUTPUT Voltage: Positive (V+)–1.7 (V+)–0.9 V Negative (V–)+1 (V–)+0.4 V Load Capacitance Stability 1000 pF Short-Circuit
in „Kraftsensor PSD-S1 in Verbindung mit INA125“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina125.pdf
15 ppm/°C G > 4(1) ±25 ±100 ppm/°C Nonlinearity VO= –14V to +13.3V G = 4 ±0.0004 ±0.002 ±0.004 % of FS G = 10 ±0.0004 ±0.002 ±0.004 % of FS G = 100 ±0.001 ±0.01 % of FS G = 500 ±0.002 % of FS OUTPUT Voltage: Positive (V+)–1.7 (V+)–0.9 V Negative (V–)+1 (V–)+0.4 V Load Capacitance Stability 1000 pF Short-Circuit
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PDF
2sk3142.pdf
Area 40 1000 ) ) 300 10 ( A 10 µs h ( 0µ c 30 D100 P s P I W = 1 30 D 10 ms n n CO m s t e per 1 a 20 r 10 ato ho i C Operation in n( ) i n this area is c = D a 3 25 l r limited by DS(on) C) n 10 D 1 n h C 0.3 0.1
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Switch.pdf
3750Vrms 2mA 3/3ms 6-Kontakt SMD 849-LCA120 LCA120 B 2 250 170mA 20Ω 3750Vrms 5mA 5/5ms 6-Kontakt DIP 849-LAA710 LAA710 D 3 60 1000mA 0.5Ω 3750Vrms 10mA 2.5/0.25ms 8-Kontakt DIP 849-LCA710 LCA710 B 2 60 1000mA 0.5Ω
in „Ausfallursache Printtaster DeLonghi Kaffeeautomat?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
High_Power_IGBT_IXGK-GX320N60A3.pdf
DS99583B(12/09) IXGK320N60A3 IXGX320N60A3 Symbol Test Conditions Characteristic Values TO-264 (IXGK) Outline (T J 25°C, Unless Otherwise Specified) Min. Typ. Max. g fs IC = 60A, V CE = 10V, Note 1 75 125 S C 18 nF ies C V = 25V
in „IGBT brennt durch - Weit unter spezifkation.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IXGK-GX320N60A3.pdf
DS99583B(12/09) IXGK320N60A3 IXGX320N60A3 Symbol Test Conditions Characteristic Values TO-264 (IXGK) Outline (T J 25°C, Unless Otherwise Specified) Min. Typ. Max. g fs IC = 60A, V CE = 10V, Note 1 75 125 S C 18 nF ies C V = 25V
in „Impulsbelastung von IGBTs -> Parallelschaltung -> Ausgleichswiderstände“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irl2203ns.pdf
cycle ≤ 2%. application note #AN-994. R θs measured at T Jpproximately 90°C 2 www.irf.com IRL2203NS/L 1000 1000 VGS VGS TOP 10V TOP 10V ) 4.5V A 4.5V ( 3.5V t 3.5V n 3.3V n 3.3V r BOTTOM2.7V r BOTTOM2.7V u100 u100 C C c r u u S S 2.7V o o - n a 10 a 10 r 2.7V D , , D ID I 20µs PULSE WIDTH 20µs PULSE WIDTH
in „FETs - 5V steuerspannung - selbstleitend selbstsperrend“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRL1004.pdf
= 65A GS D VGS(th) Gate Threshold Voltage 1.0 ––– ––– V V DS= VGS, D = 250µA g Forward Transconductance 63 ––– ––– S V = 25V, I = 78A fs DS D ––– ––– 25 VDS= 40V, VGS= 0V DSS Drain-to-Source Leakage Current
in „Mosfet als Schalter 100W“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SSM5N15FU__DP_.pdf
DS 1000 250 Common Source Common Source 500 V = 3 V VGS = 0 V DS ) e 300 Ta = 25°C m 200 Ta = 25°C c ( D a i 100 D d S) I I a m 50 n 150 G DR e ( e s ⏐ 30 u S a f c t ⏐ s 100 r 10 e w e o 5 n F a 50 3 D 10
in „(S)uche UPA572“ · Markt ·
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Datei
StromLog_Open.ino
DNSServer.h> #include <ESP8266WebServer.h> //Local WebServer #include <ESP8266HTTPClient.h> #include <LittleFS.h> // LittleFS is declared #include <NTPClient.h> #include <WiFiManager.h> // https://github.com/tzapu/WiFiManager #include <WiFiClient.h> #include <base64.h> #include "global.h" #include "WebClient.h
in „Digitale Stromzähler auslesen und in DB speichern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ASLGZ_Logger_OPEN.ino
<ESP8266WebServer.h> //Local WebServer #include "configDTZ.h" #include "strings.h" #include <LittleFS.h> // LittleFS is declared #include <NTPClient.h> #include <base64.h> #include <WiFiManager.h> // https://github.com/tzapu/WiFiManager #include <ESP8266HTTPClient.h> #include <WiFiClient.h> ADC_MODE(
in „Digitale Stromzähler auslesen und in DB speichern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_SX1261-2_V1.1-1307803.pdf
kV (Human Body Model) ESD_CDM ESD Charged Device Model, JEDEC standard JESD22-C101D, class III - - 1000 V LU Latch-up, JEDEC standard JESD78 B, class I level A - - 100 mA 3.2 Absolute Maximum Ratings Stresses above the values listed below may cause permanent device failure. Exposure to absolute maximum
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PDF
2SK1119_datasheet_en_20090929__1_.pdf
Characteristics Symbol Test Condition Min Typ. Max Unit Gate leakage current IGSS VGS = ±20 V, DS= 0 V — — ±100 nA Drain cut−off current DSS VDS = 800 V, GS= 0 V — — 300 μA Drain−source breakdown V (BR) DSS D = 10 mA, GS = 0 V 1000 — — V voltage Gate threshold voltage Vth VDS = 10 V,DI = 1 mA 1.5 — 3.5 V Drain−source ON resistance RDS (ON) VGS = 10 V,DI = 2 A — 3.0 3.8 Ω Forward transfer admittance |fs| VDS = 20 V,DI = 2 A 1.0 2.0 — S Input capacitance C — 700 — iss Reverse transfer capacitance C V = 25 V, V = 0 V, f = 1 MHz — 55 — pF rss DS GS Output capacitance
in „brauche hilfe beim Nachbau eines DC-DC-Converters“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
syslog.txt
36:49 raspberrypi kernel: [ 0.000000] free_area_init_node: node 0, pgdat 80c6f800, node_mem_map ba3a1000 Apr 25 17:36:49 raspberrypi kernel: [ 0.000000] Normal zone: 2133 pages used for memmap Apr 25 17:36:49 raspberrypi kernel: [ 0.000000] Normal zone: 0 pages reserved Apr 25 17:36:49 raspberrypi kernel
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Datei
DFT_Klausur_F_T_.m
% Lösung DFT fs = 1000; alpha = 0:1:9; A = [1, 1.35, 1.8, 1.9, 1.95, 1.92, 1.92, 1.94, 1.95, 1.93]; N = length(A); subplot(2,1,1); stem(alpha, A); xlabel('alpha'); ylabel('A(alpha)'); grid on; xk = zeros(1,10); xkabs = zeros(1,10); for m=0:1:9 for n=1:1:10 xk(m+1) = xk(m+1)+ A(n) * (cos(2*pi*(n-1)*m/N) - i*sin(2*pi*n*m/N)); end xkabs(m+1) = abs(xk(m+1))/N; end k = (0:1:(N-1)); subplot(2,1,2); stem(k, xkabs); xlabel('k'); ylabel('xkabs'); grid on;
in „Probleme mit Aufgabe zu digitale Signalverarbeitung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
DFT_Klausur_F_T_.m
% Lösung DFT fs = 1000; alpha = 0:1:9; A = [1, 1.35, 1.8, 1.9, 1.95, 1.92, 1.92, 1.94, 1.95, 1.93]; N = length(A); subplot(2,1,1); stem(alpha, A); xlabel('alpha'); ylabel('A(alpha)'); grid on; xk = zeros(1,10); xkabs = zeros(1,10); for m=0:1:9 for n=1:1:10 xk(m+1) = xk(m+1)+ A(n) * (cos(2*pi*(n-1)*m/N) + i*sin(2*pi*n*m/N)); end xkabs(m+1) = abs(xk(m+1))/N; end k = (0:1:(N-1)); subplot(2,1,2); stem(k, xkabs); xlabel('k'); ylabel('xkabs'); grid on;
in „Probleme mit Aufgabe zu digitale Signalverarbeitung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·