-
PDF
IRF540-VIS.PDF
DM 110 Linear Derating Factor 1.0 W/°C b Single Pulse Avalanche Energy E AS 230 mJ Repetitive Avalanche Current I 28 A AR Repetitive Avalanche Energy E AR 15 mJ Maximum Power Dissipation TC= 25 °C PD 150
in „MOSFET für eine Stromgesteuerte Stromquelle“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
hardinfo_report.html
">uhci_hcd</td></tr> <tr><td class="field"><tt> c080-c09f </tt></td><td class="value">Intel Corporation 82801I (ICH9 Family) USB UHCI Controller #2 (rev 03) (prog-if 00 [UHCI])</td></tr> <tr><td class="field"><tt> c080-c09f </tt></td><td class="value">uhci_hcd</td></tr> <tr><td class="field"><tt> c400-c41f </tt></td><td class="value">Intel Corporation 82801I (ICH9 Family) USB UHCI Controller #1 (rev 03) (prog-if 00 [UHCI])</td></tr> <tr><td class="field"><tt> c400-c41f </tt></td><td class="value
in „Notebook vom Typ Asus UL50VT erkennt weder Festplatte noch DVD-Laufwerk“ · PC Hard- und Software ·
-
PDF
wavelet.pdf
d.h. man kann nach entsprechender Mo- di▯kation beispielsweise die Ersetzungen in den Gleichungen (3.13) bis (3.16) in C durch ein + =\ vornehmen. Die dafur otwendige Adressierung ist im Anhang C besprochen. (c) einfache, intuitiv einsichtige Konstruktion von Filtern (siehe Abschnitt 3.3) (d) einfache
in „Aufbaustudium Weiz / FH Mittweida“ · Ausbildung, Studium & Beruf ·
-
Datei
mines3.c
Markierung, Mine, falsche Markierung, "draufgetreten" uint8_t minecol[14] = { 0x08, 0x09, 0x0a, 0x0b, 0x0c, 0x0d, 0x0e, 0x0f, 0x0f, 0x08, 0x0c, 0x04, 0x0c, 0x0c }; /* ######################################################################################### Prototypen, Variable und Defines fuer Farben und
in „Rekursives Floodfill nach Iteratives Floodfill, wie mache ich das?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
162399-da-01-en-IRF_4905.pdf
wide acceptance throughout the industry. Absolute Maximum Ratings Parameter Max. Units I @ T = 25°C Continuous Drain Current, @ -10V -74 D C GS D @ TC= 100°C Continuous Drain CurrenGS @ -10V -52 A DM Pulsed Drain Current -260 P @T = 25°C Power Dissipation 200 W D C Linear Derating Factor 1.3 W/°C VGS
in „High Side Switch“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
IRF4905_TO220.pdf
wide acceptance throughout the industry. Absolute Maximum Ratings Parameter Max. Units I @ T = 25°C Continuous Drain Current, @ -10V -74 D C GS D @ TC= 100°C Continuous Drain CurrenGS @ -10V -52 A DM Pulsed Drain Current -260 P @T = 25°C Power Dissipation 200 W D C Linear Derating Factor 1.3 W/°C VGS
in „FET Frage (n oder p)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
DS_IRLZ44N-IR.pdf
to its wide acceptance throughout the industry. Absolute Maximum Ratings Parameter Max. Units D @ T C 25°C Continuous Drain CurrentGSV@ 10V 47 D @ T C 100°C Continuous Drain CurrentGSV@ 10V 33 A DM Pulsed Drain Current 160 PD@T =C25°C Power Dissipation 110 W Linear Derating Factor 0.71 W/°C VGS Gate-to-Source
in „IRLZ44N Logic Level? Welcher Parameter?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
IRLZ44N-IR_Reichelt.pdf
to its wide acceptance throughout the industry. Absolute Maximum Ratings Parameter Max. Units D @ T C 25°C Continuous Drain CurrentGSV@ 10V 47 D @ T C 100°C Continuous Drain CurrentGSV@ 10V 33 A DM Pulsed Drain Current 160 PD@T =C25°C Power Dissipation 110 W Linear Derating Factor 0.71 W/°C VGS Gate-to-Source
in „PWM-Drehzahlregelung Wasserpumpe mit DC bürstenloser Motor“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
irlz34npbf.pdf
220AB acceptance throughout the industry. Absolute Maximum Ratings Parameter Max. Units D @ TC= 25°C Continuous Drain CurrentGS@ 10V 30 D @ TC= 100°C Continuous Drain CurrentGS@ 10V 21 A DM Pulsed Drain Current 110 PD@T =C25°C Power Dissipation 68 W Linear Derating Factor 0.45 W/°C VGS Gate-to-Source
in „MOSFET defekt (evtl. durch Ohmmeter)?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
IRLZ34.pdf
wide acceptance throughout the industry. Absolute Maximum Ratings Parameter Max. Units D @ TC= 25°C Continuous Drain CurrentGS@ 10V 30 I @ T = 100°C Continuous Drain Current, @ 10V 21 A D C GS DM Pulsed Drain Current 110 PD@T =C25°C Power Dissipation 68 W Linear Derating Factor 0.45 W/°C VGS Gate-to-Source
in „einzellzellen entladung für nimh akku“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
irlz34n.pdf
wide acceptance throughout the industry. Absolute Maximum Ratings Parameter Max. Units D @ TC= 25°C Continuous Drain CurrentGS@ 10V 30 I @ T = 100°C Continuous Drain Current, @ 10V 21 A D C GS DM Pulsed Drain Current 110 PD@T =C25°C Power Dissipation 68 W Linear Derating Factor 0.45 W/°C VGS Gate-to-Source
in „IRLZ34N anschliessen ?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
lh06.PDF
. Es folgen einige Beispiele für Kontaktbauelemente, die von Hand oder mechanisch betätigt werden: C Tastaturen, C Tasten und Schalter in Bedienfeldern, C Netzschalter, C Endlagenkontakte in elektromechanischen Geräten (z. B. Druckern). Elektromechanische Relais werden nur noch eingesetzt, wenn folgende
in „Frage zu internen Pull-Up Widerstände bei PICs“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
infineon-irf1010e-mosfet.pdf
wide acceptance throughout the industry. Absolute Maximum Ratings Parameter Max. Units D @ TC= 25°C Continuous Drain CurrenGS @ 10V 84 D @ TC= 100°C Continuous Drain CurrenGS @ 10V 59 A DM Pulsed Drain Curre t 330 PD@T C 25°C Power Dissipation 200 W Linear Derating Factor 1.4 W/°C VGS Gate-to-Source
in „DC Wandler wiederbeleben“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Infineon_IRLB8721_DataSheet_v01_01_EN-3363432.pdf
Threshold Voltage vs. Temperature Case Temperature 10 ) C 1 D = 0.50 J t ( 0.20 e 0.10 n R1 R2 R3 R4 Ri (°C/W) τι (sec) o 0.1 0.05 R1 R2 R3 R4 s ττJ ττ 0.003454 13.68748 e 0.02 τ1 τ τ 0.17246 7.21E-05 l 1 2τ2 3τ3 ττ4 a 0.01 0.786312 0.001227 r Ci= τi/Ri 1.368218
in „LED Ansteuerung für Lazertag Projekt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
datasheet.pdf
J4 SPI_PCM# h SPI / PCM# High For SPI. Low For All Other Functions e e PIO[12] / QSPI_FLASH_CS# / I2C_WP PIO_12 PIO[10] / QSPI_FLASH_CLK / I2C_SCL PIO_10 t PIO[11] / QSPI_IO[0] / I2C_SDA PIO_11 2 PIO[13] / QSPI_IO[1] PIO_13 PIO / Serial Flash / I C PIO[14] / UART_RX2 PIO_14 PIO[15] / UART_TX1 PIO_15
in „A2DP Bluetooth Modul China eBay“ · HF, Funk und Felder ·
-
PDF
RequiresAcrobat6-5.pdf
wide acceptance throughout the industry. Absolute Maximum Ratings Parameter Max. Units I @ T = 25°C Continuous Drain Current, @ 10V 30 D C GS D @ TC= 100°C Continuous Drain CurrenGS @ 10V 21 A DM Pulsed Drain Current 120 PD@T =C25°C Power Dissipation 94 W Linear Derating Factor 0.63 W/°C VGS Gate-to-Source
in „Power Mosfet Hexfet wie ansteuern ?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
TKM32F499_______.pdf
1 2 3 4 5 6 7 8 A A P8P PC0~PC7 VDDQ C9C 1 2 3 4 5 6 7 8 PIC20 PIC302 PIC402 PIC502 PIC702PIC802 PIC902 PIC901 C2C2 C3C3 CO4 C5C5 C7C7 CO8 3.3V PIR180PIR1802 225 I1I2P3P0405068780 VDDQ 3.3V P1P1 PIC201 PIC301 PIC401 PIC501 PIC701PIC801 1C59
in „TKM32F499 Board mit Display“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
0A1E438Cd01_batterypower_appnote.PDF
Bypass Mode MCP1256 Output 3.3V IN OUT Input 10 µF 10 R 1 COUT10 µF 1.8V to 3.6V Power-Good C1 C 1 C 2 C 2 Indication 1 µF 8 C 1 C 2 1 µF 2 SLEEP ON/OFF 9 Typical Application with Power-Good Indication MCP1259 Output 3.3V IN OUT Input C IN 10 R 1 COUT10 µF 1.8V to 3.6V 10 µF Low-Battery C1 C 1 C 2 C 2 Indication 1 µF 8 1 µF C 1 C 2 2 SLEEP ON/OFF 9 Typical Application with Low-Battery Indication Battery Power Applications Design Guide 9 Powering Your Portable Design with Microchip Technology
in „mit Akku Microcontroller versorgen, 3,6V auf 5V“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
IRL540.pdf
Current DM 110 Linear Derating Factor 1.0 W/°C b Single Pulse Avalanche Energy E AS 440 mJ Avalanche Current AR 28 A a Repetitive Avalanche Energy E AR 15 mJ Maximum Power Dissipation TC= 25 °C PD 150 W c Peak
in „MOSFET mit Treiber Verständnisproblem“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
IRL540.pdf
Current DM 110 Linear Derating Factor 1.0 W/°C b Single Pulse Avalanche Energy E AS 440 mJ Avalanche Current AR 28 A a Repetitive Avalanche Energy E AR 15 mJ Maximum Power Dissipation TC= 25 °C PD 150 W c Peak
in „Problem mit Mosfet IRL540 an 52V, öffnet nicht mehr“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
066ff5d0ae41979babdbb2a054919e6488ccea2c9c04b742d1ae37c877e7b651.pdf
PIO 10 0.524 RXD 8 17 PIO 03 26.92 1.00 CTS 9 16 PIO 02 RTS 10 15 PIO 11 1.80 USB DP 11 14 AIO 0 USB DM 12 13 AIO 1 8.51 16.79 mm 8mm Minimum No Ground Zone Pio Assignments Only for this KC‐21 v6 module, our previous kcSerial v2.4 firmware edition provided a logical GPIO assignment within the AT Command
in „Diamex DX70 OBD Adapter Teildefekt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
EMV.pdf
60 ln 4⋅H 0 ε 0.67π 0⋅8 W T⋅ + ) r Cu 11.12. Differentielle Leitung Coplanar 11.13. Leiterprofil und Ladungsverteilung 11.14. Leiterprofil und Feldverteilung 11.15. Fertigungstoleranzen 11.15.1. Einfluss der Rückätzung 11.15.2. Einfluss des Pressvorgangs Bulk Er value C in this Er
-
PDF
DS_IRFB7430.pdf
Drain Current, V GS@ 10V (Silicon Limited) 409 c c D @ T C 100°C Continuous Drain Current, V GS@ 10V (Silicon Limited) 289 A D @ T C 25°C Continuous Drain Current, V GS@ 10V (Wire Bond Limited) 195 DM Pulsed Drain Current d 1524 P @T = 25°C Maximum
in „MOSFET Steuer vs Hauptkreis“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Infineon-IRFP4668-DataSheet-v01_01-EN.pdf
D TO-247AC G D S Gate Drain Source Absolute Maximum Ratings Symbol Parameter Max. Units D @ TC= 25°C Continuous Drain CurrenGS@ 10V 130 D@ T C 100°C Continuous Drain CurrenGS@ 10V 92 A DM Pulsed Drain Current 520 PD@T C 25°C Maximum Power Dissipation 520 W 3.5 Linear Derating Factor W/°C VGS Gate-to-Source
in „Ersatz Mosfet für 6kw Wechselrichter "Reliable/WZRELB"“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
KS0108B.pdf
SEGMENT DRIVER FOR DOT MATRIX LCD PIN CONFIGURATION 1. 100QFP C R C C C R L L / T 1 1 2 S N N N D D D D D D M E 1 2 L W B B B B 3 C C C 7 6 5 4 3 2 0 9 8 7 6 5 4 3 2 1 0 9 8 7 6 5 4 3 2 1 ADC 1 80 DB1 M 2 DB0 79 V DD 3 78 VSS V3R 4 77 V3L V2R 5 76 V2L V5R 6 75 V5L
in „GraphikLCD zeigt mir nichts“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SMA_Datenlogger_Rev_1_0_Final.pdf
74HCT32D lower current limit! 100nF I/O 3 1 S 1 2 9 1 U5 +5V S U B U 1 5 3 L27 IP4220CZ6 3 OUT IN C L22L23 FLT USBEN1 C C68 C69 FB0805/200mA R76 2.2k USB1-VBUS R47 4 A 100pF10uF 2.2k EN_OR_EN R77 10k USB1_ID L21 L24 2 FB0805/200mA GND R51 C44 C49 1 1 1 71 3 3 4 4 4 L263 100k 100nF 10uF 3 USB1_DM V V V V V V V V V U_D- LED4 TPS2069CDBVT . . . . . . . _ . U_D+ 4 1 2 USB1_DP ST1 L13 LED/Red _ _ _ _ _ _ _ C - WE-CNSW_0805 FB0805/2A A A A A A D D C _ 1uF C C C C C C C V G C70 R78 NA 3.3V 2 1 C C C C C C C R V V V V V V V V R72 47k R79 NA USB1_CE C34 3 4 U6 +5V 5 DD-1 RESETN 26 R73
in „Probleme mit phyCore AM3352 und Cypress USB, MMC2“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SMA_Datenlogger_Rev_1_0_Final.pdf
74HCT32D lower current limit! 100nF I/O 3 1 S 1 2 9 1 U5 +5V S U B U 1 5 3 L27 IP4220CZ6 3 OUT IN C L22L23 FLT USBEN1 C C68 C69 FB0805/200mA R76 2.2k USB1-VBUS R47 4 A 100pF10uF 2.2k EN_OR_EN R77 10k USB1_ID L21 L24 2 FB0805/200mA GND R51 C44 C49 1 1 1 71 3 3 4 4 4 L263 100k 100nF 10uF 3 USB1_DM V V V V V V V V V U_D- LED4 TPS2069CDBVT . . . . . . . _ . U_D+ 4 1 2 USB1_DP ST1 L13 LED/Red _ _ _ _ _ _ _ C - WE-CNSW_0805 FB0805/2A A A A A A D D C _ 1uF C C C C C C C V G C70 R78 NA 3.3V 2 1 C C C C C C C R V V V V V V V V R72 47k R79 NA USB1_CE C34 3 4 U6 +5V 5 DD-1 RESETN 26 R73
in „Cypress USB HUB Chip Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
lm072.pdf
at 0.1% BER 8 DPSK - -10 - > -20 dBm C/I co-channel at 0.1% BER π /4 DQ PSK - 10 - < + 13 dB 8 DPSK - 19 - < + 21 dB Adjacent channel selectivity C/I π /4 DQ PSK - -10 - < 0 dB F= F0+ 1 MHz 8 DPSK - -5 - < + 5 dB Adjacent channel selectivity
in „Bluetoothmodul LM072 von LM Technologies“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
circuitjs-Statron_3201.txt
9AzJcyx0dBP6oUU+QxJQrGwN4GKoIJ7HgtAqAyCORjjOxbCcvISIII8+zCk6Qz0CBeRATZkjKWhjltNwvDyvwlpzlIlmXqg3jKJg6AEBiepgC2WgmPI5oQNoyh6RAmAEO25jwDgxAKGUJhsMJ1jOK4tSGm6ICGkKJX+j5piVTwpKlaYho2ue5r1S0ny1F5vhtc0PVOV1rUWg1H5dU6pVOoBC62j5TqsJ13RTa6yk2k6lgnJ663TWtXSWltq2lEcvnPoNwhud1bmsoaggGvZPq6ndAGmHg7rtVaTSkpdJqmDd5ViL0VSec9u1OuBKTSIFwVYGFEXaNFCJnA4
in „Frage zum Statron 3201“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
Meteo.c
char select; unsigned int jahr; int hoehenkorr; float temp, druck, hoehe; eeprom int drucksave [32][13][24]; eeprom char tempsave [32][13][24]; eeprom unsigned int intsave [8]; eeprom unsigned char charsave [16]; eeprom unsigned char printbuf [96]; // Timer 1 overflow interrupt service routine interrupt
in „Problem mit CodeVisionAVR“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
rej09b0101_16c29hm_2_.pdf
10 C0MCTL10 292 020B 16 CAN0 message control register 11 C0MCTL11 292 020C 16 CAN0 message control register 12 C0MCTL12 292 020D 16 CAN0 message control register 13 C0MCTL13 292 020E 16 CAN0 message control
in „Zeitproblem bei Softwarepwm“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
STM_DEV.pdf
PC111 SD_DAT2 PIRK401PIRK402 POUUSB_DM PA121 71 PA11 PC11 80 PC121 POSD_DAT3 GND POUUSB_DP PA131 PIUC7271 PA12 PC12 PI7C1080 PC131 POSD_CLK 0R P OJTMS M S PA141 PIUC7672 PA13/JTMS/SWDIO PC13-TAMPER-RTC P 8 U C 1 0 7 PC141 P OJTCK C K PA151
in „STM32 Development Board“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DAVICOM.pdf
3V3 3V3 1 2 5 L13 E E K D D FP TP87 L L C S S GND 1V80 TP120 3V3 5 . . GND C67 C61 FP2 R R 6 6 n n SDIO LED1L 100n 100n R R 2N7002 SDC LED1R 0 0 k k 7 n n 6 6 5 V14 R76 R77 GND GND GND 4 4 GND GND GND 4 4 GND C 1 1 CND
in „Davicom DM9000 Verbindung mit Switch ADM6996i“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Datenblatt_Eurola_8-24kW.pdf
MJ/m 3 Erdg(s LL ă8,13 kWh/m 3 m /h 2,32 2,32 2,82 3,08 3 29,25 MJ/m Flüssigg(s 12,79 kWh/kg kg/h 1,47 1,47 1,47 ĊĊ 46,04 MJ/kg Abgas *2 Temper(tur ▯)rutto ▯ )ei - t /t āā=āā40/30 ▯C ▯C 55 55 55 55 V R - tV R āā=āā75/60 ▯C ▯C 75 85 85 85 M(ssenstrom )ei Erdg(s kg/h 13,8 )is 30,6 13,8 )is 30,6 13,8 )is 36,9 23,4 )is 40,1 M(ssenstrom )ei Flüssigg(s kg/h 16,0 )is 34,8 16,0 )is 34,8 16,0 )is 34,8 ĊĊ Verfügbarer Förderdruck P(
in „Schaltplan/Hilfe bei Steuerung Eurola OC“ · Haus & Smart Home ·
-
Datei
Packages.txt
13 TO126 13 SMC_C 13 R-18 13 PT-10 13 NC 13 ES-5 13 DO201-15 13 CHIP-LED0805 13 B45181A 13 78LXX 12 SJ 12 SA10-21 12 S2XXEX 12 REED 12 R 12 ML10-O 12 JP3Q 12 JP2Q 12 DO13M 12 C2.5/5-2 12 B25P 12 AMP 12
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
-
PDF
IRF4905.pdf
wide acceptance throughout the industry. Absolute Maximum Ratings Parameter Max. Units D @ TC= 25°C Continuous Drain CurrentGSV@ -10V -74 D @ TC= 100°C Continuous Drain CurrentGSV@ -10V -52 A DM Pulsed Drain Current -260 PD@T C 25°C Power Dissipation 200 W Linear Derating Factor 1.3 W/°C V Gate-to-Source
in „P Kanal Mosfet schlägt immer wieder mal Durch.“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ZXMHC6A07T8.pdf
Voltage V GS ⫾20 ⫾20 V (b)(d) Continuous Drain Current@V GS=10V; T A25⬚C ID 1.8 -1.5 A @V GS=10V; TA=70⬚C (b)(d) 1.4 -1.2 A @V =10V; T =25⬚C (a)(d) 1.6 -1.3 GS A Pulsed Drain Current (c) I 8.4 -7.2 A DM (b) Continuous Source Current (Body Diode) IS 2.3 -2.1 A (c) Pulsed Source Current (Body Diode) ISM 8.4 -7.2 A Power Dissipation at TA=25°C (a)(d) P D 1.3 W 10.4 mW/°C Linear Derating Factor (b)(d) Power Dissipation at TA=25°C P D 1.7 W Linear Derating Factor 13.6 mW/°C Operating and Storage Temperature Range T :T -55 to +150 °C j stg THERMAL
in „DCC Decoder“ · Projekte & Code ·
-
PDF
A100_ZXMHC6A07T8.pdf
Voltage V GS ⫾20 ⫾20 V (b)(d) Continuous Drain Current@V GS=10V; T A25⬚C ID 1.8 -1.5 A @V GS=10V; TA=70⬚C (b)(d) 1.4 -1.2 A @V =10V; T =25⬚C (a)(d) 1.6 -1.3 GS A Pulsed Drain Current (c) I 8.4 -7.2 A DM (b) Continuous Source Current (Body Diode) IS 2.3 -2.1 A (c) Pulsed Source Current (Body Diode) ISM 8.4 -7.2 A Power Dissipation at TA=25°C (a)(d) P D 1.3 W 10.4 mW/°C Linear Derating Factor (b)(d) Power Dissipation at TA=25°C P D 1.7 W Linear Derating Factor 13.6 mW/°C Operating and Storage Temperature Range T :T -55 to +150 °C j stg THERMAL
in „H-Brücke ohne Mosfet-Treiber“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
BUK962R5-60E_NMOS.pdf
W D drain current Tmb = 25 °C; GS = 5 V; Fig. 2 [3] - 120 A Tmb = 100 °C; GS = 5 V; Fig. 2 [3] - 120 A I peak drain current T = 25 °C; pulsed; t ≤ 10 µs; Fig. 3 - 1008 A DM mb p T storage temperature -55 175 °C stg BUK962R5-60E All
in „Kann der NMOS so kaputt gehen?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ADAT-Splitter.pdf
3 3 3 + V OX1 + TOTX147L TR1 1 2 P 1 R OUT 2 1 VCC T 9 1 0 GND 3 3 GND B1 + C15 IC1 R 1 VCC IN R E 22 23 14 P S 1000µ / 35V +VIN +VOUT C1 IN OUT C2 TORX147L OX2 2 7 + ADJ + D OX3 T 5 B40C800DM 3 2 -VIN -VOUT 16 E 1 1 2 3 TOTX147L 12V~ / 1,5VA 10µ / 10V IC2 100µ / 10V OUT 1 P 2
in „Frage zu ADAT®-Splitter Selbstbau“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ZXBM5210.pdf
Thermal Performance (1) Package Type: SO-8 MSOP8-EP Power Dissipation De-rating Curve (Note 11) TA (°C) -40 0 25 50 60 70 80 85 90 95 100 105 110 120 125 130 140 150 P DmW) 1043 1043 1043 835 751 668 584 543 501 459 417 376 334 250 209 167 83 0 1200 o o T Rthja= 120 C/WRthjc = 19.9 C/W C 1000 ) U m D
in „Overcurrent Protecion (OCP) bei integrierten Voll-/Halbbrücken“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
HX5116_4.3inch.pdf
2007 HX5116-A 160CH Single Chip Driver for LTPSAMOLED DATA SHEET Preliminary V03 3. Block Diagram C11P VDDD C11N DDVDH C12P VGAM1OUT C12N DC/DC HVO C21N LVO C22P VGH C22N VGL ARREF OTP_P OTP_W Garyscale NCS Serial Voltage SCL Interface Generator SDA RL FCS Gamma DM Register Decoder Control NRESET DCDC_EN
in „OLED CMEL SPI Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
andilcd_conoled_sheet_de_hx5116.pdf
2007 HX5116-A 160CH Single Chip Driver for LTPSAMOLED DATA SHEET Preliminary V03 3. Block Diagram C11P VDDD C11N DDVDH C12P VGAM1OUT C12N DC/DC HVO C21N LVO C22P VGH C22N VGL ARREF OTP_P OTP_W Garyscale NCS Serial Voltage SCL Interface Generator SDA RL FCS Gamma DM Register Decoder Control NRESET DCDC_EN
in „HX 5116 Anschlussbelegung an einem Atmega 644“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
index.php
+wRAiLitsynEtkZocacUThs9pfM+aFIF1ABz+cYVVZ/SxqK4kS2Y8W4qbtCoy0pWb9fYR5zKTNSVF0KdjNpWXLmaDURGkzJRT+Lwq6jgbtg72r62XDuK6RaWcaujOIZrk29iwzHnWZtoQS1SXo8ZptZKcNk+Sne13lrdVYAABKtN/eLvb1Ah/lWhFVHKYbgvslked3/AJp4v21yBm97XY7fhO3VQIHa6uo+5z8B3Orkn+16eX1epQdWM60HA7rSntcNuLDNc1uZGG3Eq8Sb8iDDO6lvKgOk5argxWF2C0SauFK7r6lOuPNEp5bxElJaKABz
in „Dynacord WV10 restaurieren“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
buildroot-2011.02-Mini2440-linux-2.6.39.patch
-0005-s3c2440-mini2440-nfs-DM9000-Networkpatch.patch board/friendlyarm/mini2440/linux-2.6.39-patches/linux-2.6.39-0005-s3c2440-mini2440-nfs-DM9000-Networkpatch.patch --- board/friendlyarm/mini2440/linux-2.6.39-patches/linux-2.6.39-0005-s3c2440-mini2440-nfs-DM9000-Networkpatch.patch 1970-01-01 01:00:00.000000000 +0100 +++ board/friendlyarm/mini2440/linux-2.6.39-patches/linux-2.6.39-0005-s3c2440-mini2440-nfs-DM9000-Networkpatch.patch 2011
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
buildroot-2011.02-Mini2440-linux-2.6.39.patch
-0005-s3c2440-mini2440-nfs-DM9000-Networkpatch.patch board/friendlyarm/mini2440/linux-2.6.39-patches/linux-2.6.39-0005-s3c2440-mini2440-nfs-DM9000-Networkpatch.patch --- board/friendlyarm/mini2440/linux-2.6.39-patches/linux-2.6.39-0005-s3c2440-mini2440-nfs-DM9000-Networkpatch.patch 1970-01-01 01:00:00.000000000 +0100 +++ board/friendlyarm/mini2440/linux-2.6.39-patches/linux-2.6.39-0005-s3c2440-mini2440-nfs-DM9000-Networkpatch.patch 2011
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
IRF7416_datasheet.pdf
possible in a typical PCB mount application. Absolute Maximum Ratings Parameter Max. Units D @ TA= 25°C Continuous Drain CurrenGS @ -10V -10 I @ T = 70°C Continuous Drain Current, @ - 10V -7.1 A D A GS DM Pulsed Drain Current -45 PD@T A 25°C Power Dissipation 2.5 W Linear Derating Factor 0.02 mW/°C VGS
in „Datenblatt / Prinzip richtig verstanden?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
162828-da-01-en-IRLML_2803TR.pdf
as portable electronics and PCMCIA cards. Absolute Maximum Ratings Parameter Max. Units D @ TA= 25°C Continuous Drain CurrenGS@ 10V 1.2 D @ TA= 70°C Continuous Drain CurrenGS@ 10V 0.93 A DM Pulsed Drain Current 7.3 PD@T A 25°C Power Dissipation 540 mW Linear Derating Factor 4.3 mW/°C V Gate-to-Source
in „PWM RGB-Led Beleuchtung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
WX_Station.pdf
33 ULPI_D4 0µ1 0µ1 SPI3_MOSI PC12 PB12 ULPI_D5 +3V3 1 2 2 GND GND GND GND GND SD_CS 2 PC13 PB13 34 ULPI_D6 C? C? 3 35 PC14 A PB14 BLUETOOTH_INT 1 C? 4 PC15 S S S PB15 36 ZEROCROSS SPI3_SCK SPI3_SCK 2 3 Y? V V V C? GND GND 32kHz 7p 8 3 2 0µ1 SPI3_MISO SPI3_MISO 4 1 6 1 SPI3_MOSI SPI3_MOSI C? GND 7p U? 6 1 2 3 GND C GND +3V3 C k . 3.3.3 . R 1 D D D D VDD1.8 15 J? 4 D D D D 26 1 1 VBUS V V V V VDD1.8 USB_B I 1 I 6 8 DM VDDA1.8 29 R? R? U? 7 DP 4k7 4k7 VBUS 1 C? 5 17 C? C? ID DATA7 ULPI_D7 4µ7 4µ7 I2C3_SCL 3V3_SCL
in „Weller WX/WSM/WHS Serie Kabel Reverse Engineering“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
eGC.pdf
PAIC10H12 PAIC10G12 PAIC10F12PAIC10E12PAIC10D12PAIC10C12PAIC10B12 PAIC10A12 4PAR8PAI0 90AIC70E3PAIC40E2PAIC40E10K1PAIC20K2PAIC20COR2PAR201PAR20PAC480APACPAC46015C10Y13 PAIC10W13 PAIC10V13PAIC10U13PAIC10T13 PAIC10R13 PAIC10P13 PAIC10N13 PAIC10M13PAIC10L13PAIC10K13PAIC10J13
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·