-
PDF
STM32F746G_Discovery.pdf
4 4 4 4 4 4 4 3 3 3 Not Fitted, must be on a border or the PCB. 1 2 3 4 STM32F103CBT6 _ S B BT B B BS D D L CN111 99C9 01010 D V P PO P P PT / 5 W V B 4 P A / Not Fitted, must be on a border or the PCB. 3V3_ST_LINK1X4X2 02pF PIU2501VBAT P P T VDD_2 PI355036 3V3_ST_LINK P I XP I X 4 0 2 PIU1503PC14 2
in „STM32F7 Discovery Board“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PSpice_LibraryguideOrCAD.pdf
Bipolar TransistIXGM40N60A IXGM40N60A IGBT.OLB IXYS Corporation Insulated Gate Bipolar TransistMG100H1BS1 MG100H1BS1 IGBT.OLB Toshiba Insulated Gate Bipolar TransistMG15H1BS1 MG15H1BS1 IGBT.OLB Toshiba Insulated Gate Bipolar TransistMG15N1BS1 MG15N1BS1 IGBT.OLB Toshiba Insulated Gate Bipolar TransistMG25H1BS1 MG25H1BS1 IGBT.OLB Toshiba Insulated Gate Bipolar TransistMG25N1BS1 MG25N1BS1 IGBT.OLB Toshiba Insulated Gate Bipolar TransistMG50H1BS1 MG50H1BS1 IGBT.OLB Toshiba Insulated Gate Bipolar TransistMG50N1BS1 MG50N1BS1
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Transistor_Database.pdf
36W 850MHz BLY89C SI-N 18V 6A 73W 800MHz BLY93C SI-N 65V 2A 25W 175MHz BLY94 SI-N 65V 6A 50W 175MHz BS107 N-FET 200V 0.13A 0.8W 26R BS108 N-FET 200V 0.23A 0.8W 8E BS170 N-FET 60V 0.3A 0.8W 5R BS208 P-FET 200V 0.2A 0.8W BS250 P-FET 45V 0.18A 0.83W BSN254A N-FET 250V 0.3A 1W <7E BSN274 N-FET 270V 0.25A
in „Bauteilebeschaffung !!“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Transistor_Database.pdf
36W 850MHz BLY89C SI-N 18V 6A 73W 800MHz BLY93C SI-N 65V 2A 25W 175MHz BLY94 SI-N 65V 6A 50W 175MHz BS107 N-FET 200V 0.13A 0.8W 26R BS108 N-FET 200V 0.23A 0.8W 8E BS170 N-FET 60V 0.3A 0.8W 5R BS208 P-FET 200V 0.2A 0.8W BS250 P-FET 45V 0.18A 0.83W BSN254A N-FET 250V 0.3A 1W <7E BSN274 N-FET 270V 0.25A
in „Transistor-Datenbank“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Transistortester097k.pdf
L 100n 100n 10n 1 10 D3 11 D4 12 D5 13 1 ISP 2 VCC VCC 14 D6 MISO VCC 15 D7 3 SCK MOSI 4 16 5 6 33−270 Reset RESET GND Abbildung 2.1: Neue TransistorTester-Schaltung 2.2 Hinweise fur den Aufbau des Tr nsistorTesters Jede LCD-Anzeige-Einheit mit 2x16 Zeichen und einem HD44780 kompatiblen Kontroller kann
-
PDF
Switch.pdf
Anschlüsse Farbe Ausgangscode-Nummer e LAGER-NR. Teile-Nr. 1 25 50 100 r Einfacher Schalter a 653-A7BS-206-1 A7BS-206-1 D Schraube (vorne) Lötanschluss Schwarz 06 (binär codierte Dezimale) d 653-A7BS-207-1 A7BS-207-1 D Schraube (vorne) Lötanschlusss Schwarz 07 (binär cod. Dezimale, mit Diode) s 653-A7BS
in „Ausfallursache Printtaster DeLonghi Kaffeeautomat?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Akkulader_Beschreibung.pdf
erzeugt eine Rechteckspannung von 31,25 kHz (8 MHz/256), die mit ihrer Pulsweite die Spannung am Elko 270µF bestimmt. Dieser treibt über einen Widerstand von 470 Ohm den oberen Darlington BC879. Dieser lädt über einen Emitterwiderstand von 3,3 Ohm denAkku mit dem voreingestellten Strom. Der Strom wird überwacht
in „2A 1s Li-ion Lader + Protection“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AVX_Ta-Caps_11903.pdf
capacitance tolerance, rated voltage, polarity indication and date of manufacture. 5. Approved to BS CECC 30 201-001 and IECQ QC300 201 GB0002 supplied conforming to the limits of MIL-C- 39003 style CSR, CTS 13 and CTS 32. Case Dimensions: millimeters (inches) Case L1 L2 D Lead Length d Weight L2 Polarity
in „Widerstände und Tantal-Elkos“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Computer_Kontakt_1986-08_09_-_21.pdf
00 00 30 a8 a8 88 00 7c £4£10 c5 d5 e5 cd 43 Fc 06 06 c5 06 36 £5200 00 70 46 48 48 00 00 30 48 48 bS 64£20 bF 11 00 40 c3 6b 7a 3c 67 e6 aF £5210 30 00 00 70 48 48 70 40 00 38 42 65220 48 48 38 08 00 70 4B 40 40 00 rr 64 £30 07 20 0b 01 Z0 F8 09 b3 20 04 a3 £4640 7c c£ 07 67 e5 01 20 00 ed b0 d3 65230
in „ZX Spectrum => Upgrade von 16 auf 48 KB RAM“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
R6581.txt
267,"Internal Reference3 error" +268,"Internal Reference3 error" +269,"Internal Reference3 error" +270,"Internal Reference3 error" +271,"Internal Reference3 error" +272,"Internal Reference3 error" +273,"Internal Reference3 error" +274,"Internal Reference3 error" +275,"Internal Reference3 error" +276,
in „Hilfe bei Disassembler 68000 Binary“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
cc1100.pdf
01 10 11 maximum 400kHz – 2·37 kHz, which is 00 812 406 203 102 326 kHz. 01 650 325 162 81 10 541 270 135 68 11 464 232 116 58 Table 20: Channel Filter Bandwidths [kHz] (Assuming a 26MHz crystal) 14 Demodulator, Symbol Synchronizer, and Data Decision CC1100 contains an advanced and highly If the FOCCFG.FOC_BS_CS_GATE
in „Scrambler für Funkstrecke“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ADXL345.pdf
theclockri3etime(t ),andtheminimu10atasetuptime(t 5(min)Thisvalueiscalculatedast 6(max)t 3t −10 5(min) 7C bs the total capacitance of one bus line in picofarads. SDA t t9 3 t10 t11 t4 SCL t4 t6 t2 t5 t7 t1 t8 0 START REPEATED STOP 5 CONDITION START CONDITION 7 CONDITION 0 2 Figure10.I CTimingDiagram Rev. 0
in „mega8 und ADXL345 an Fleury Soft- I2C / TWI“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SARA-G3-U2_SysIntegrManual__UBX-13000995_.pdf
SARA-G350 ATEX SARA-G350-00X-00 08.49 GSM.G2-TN-13002 SARA-U260 SARA-U260-00S-00 23.20 UBX-14015739 SARA-U270 SARA-U270-00S-00 23.20 UBX-14015739 SARA-U280 SARA-U280-00S-00 TBD TBD u-blox reserves all rights to this document and the information contained herein. Products, names, logos and designs described
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
-
PDF
ST7567A_V1.2a.pdf
XV0O 105 -254.5 1 CLB 244 245 36 XV0O 160 -254.5 COM21 446 247COM23 37 XV0I 215 -254.5 2 8 2 38 XV0I 270 -254.5 57 31 MM MM 39 XV0I 325 -254.5 CC CC 40 VMO 380 -254.5 Figure 2 PAD Location Ver 1.2a 8/77 2016/12/06 ST7567A PAD NO. PIN Name X Y PAD NO. PIN Name X Y 41 VMO 435 -254.5 81 COM42 2009.5 2.5 42
in „LCD mit ST7567A und I2C“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
preis2024.pdf
Preis [€] 48,26 ISO Artikel-Nr. 1929 2.1.9 Endmaßzubehör Endmaßgrundplatte Genauigkeit des PrüflingsBS 4311 Prüfungsrichtlinie: Calpro QMA 1025-0 max. Nennmaß [mm] 100 ISO Preis [€] 16,88 ISO Artikel-Nr. 1069 Endmaßschenkel Genauigkeit des PrüflingsBS 4311 Prüfungsrichtlinie: Calpro QMA 1025-0 max. Nennmaß
in „PeakTech 365eff“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
HAL_STM32F1.pdf
quantum CAN_SJW_3TQ 3 time quantum CAN_SJW_4TQ 4 time quantum CAN Time Quantum in Bit Segment 1 CAN_BS1_1TQ 1 time quantum CAN_BS1_2TQ 2 time quantum CAN_BS1_3TQ 3 time quantum CAN_BS1_4TQ 4 time quantum CAN_BS1_5TQ 5 time quantum CAN_BS1_6TQ 6 time quantum CAN_BS1_7TQ 7 time quantum CAN_BS1_8TQ 8 time
in „CAN auf STM32F4“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
13475.pdf
Resynchronization Jump Width= 3 time quantum CAN_SJW_4tq Resynchronization Jump Width= 4 time quantum CAN_BS1 CAN_BS1 configures the number of time quanta in Bit Segment 1. The values taken by this member are given in Table 76. Table 76. CAN_BS1 values CAN_BS1 Description CAN_BS1_1tq Bit Segment 1= 1 time quantum ... ... CAN_BS1_16tq Bit Segment 1= 16 time quantum CAN_BS2 CAN_BS2 configures the number of time quanta in Bit Segment 2. The values taken by this member are given in Table 77. Table 77. CAN_BS2 values CAN_BS2 Description
in „STM32F: SPI "Halbduplex"“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Elektor.pdf
1µ Ω 150k 0 R1 250V 630V 250V C1 110V 90V 108V 0 C9 C11 R14 1 6 V1 6 EF86 V2.A 6 k V2.B 100p 250V 8 270p 1n 4 1 3 2 7 250V 630V 2 3 OUT 9 P1 3 2 P3 2 3 P5 R3 3 2 8 3 50k k C6 P2 20k P4 PHONO-IN 6 1 500k C10 1 2 K1 3V 2µ2 3V2 3V4 3 250V 1 500k 15n 1 500k GND-OUT 630V 2 1 R2 R4 R7 R9 V2 = ECC82 R13 R15
in „Röhrenverstärkerstufe ECC XX welches System zuerst?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
katalog_signaltechnik_web.pdf
mm, Höhe 140 mm Höhe Signalelemente je 25 mm WL 4-USB-S-60-C1-C2-C3-C4 Durchmesser 89 / 60 mm, Höhe 270 mm Höhe Signalelemente je 50 mm WL 4-USB-S-60-M-C1-C2-C3-C4 Durchmesser 89 / 60 mm, Höhe 165 mm Höhe Signalelemente je 25 mm WL 3/1-USB-S-60 Durchmesser 89 / 60 mm, Höhe 130 mm Höhe Signalelement 60
in „[V] RS232 Signalleuchte mehrfarbige LED 60mm Edelstahl mit optionalen 35cm Sockel Edelstahl (55€)“ · Markt ·
-
PDF
katalog_signaltechnik_web.pdf
mm, Höhe 140 mm Höhe Signalelemente je 25 mm WL 4-USB-S-60-C1-C2-C3-C4 Durchmesser 89 / 60 mm, Höhe 270 mm Höhe Signalelemente je 50 mm WL 4-USB-S-60-M-C1-C2-C3-C4 Durchmesser 89 / 60 mm, Höhe 165 mm Höhe Signalelemente je 25 mm WL 3/1-USB-S-60 Durchmesser 89 / 60 mm, Höhe 130 mm Höhe Signalelement 60
in „[V] RS232 Signalleuchte mehrfarbige LED 60mm Edelstahl mit optionalen 35cm Sockel Edelstahl“ · Markt ·
-
Datei
flash_console_out.txt
cfyeh-debug usb3_mac_setting_saturn(268) 0xb8013258 = 0x7; #@# cfyeh-debug usb3_mac_setting_saturn(270) 0xb8013258 = 0x7; #@# cfyeh-debug usb3_mac_setting_saturn(274) GTXTHRCFG #@# cfyeh-debug usb3_mac_setting_saturn(275) 0xb8028108 = 0x02400008 #@# cfyeh-debug usb3_mac_setting_saturn(280) 0xb8028108
in „Fantec Mediaplayer 3DS4600 zeigt nur noch Startbildschirm“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
slva001d_1_.pdf
140 µH 32-V VO Input Q2 R12 NTE6013 30 Ω R11 100 Ω 5-V Q1 NTE153 REF R8 R1 R2 5.1 kW 1 kΩ 4 kΩ R10 270 Ω R9 5.1 kW 16 15 14 13 12 11 10 9 + − VREF TL494 Control Load + − Osc 1 2 3 4 5 6 7 8 R7 CT R7 51 kΩ 0.001 µF 50 kΩ R5 R7 510 Ω 9.1 kΩ 5-V 5-V REF REF R3 R4 R6 C2 5.1 kΩ 5.1 kΩ 1 kΩ 2.5 µF R11 0.1
in „Suche µC für Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
L6206.pdf
protection. Figure 6. Logic inputs internal structure ▯▯9 (6' 3527(&7,21 '▯▯,1▯▯▯▯9▯ Figure 7. EN And EN piBs open collector driving 2&'$▯RU▯2&'% ▯▯9 5 ▯▯9 (1 23(1 &2//(&725 287387 & (1 $RU▯(1% (1 '▯▯,1▯▯▯▯9▯ Figure 8. ENA and EN pBns push-pull driving 2&' ▯RU▯2&' $ % ▯▯9 5(1 386+▯38// 287387 (1$▯RU▯(% & (1
in „l6206 Datenblatt Fehler?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Schaltungskonzepte_zum_Betrieb_von_Leuchtdioden_fuer_die_Allgemeinbeleuchtung.pdf
.265 B.1.2 Eingangsstufe aus B2-Brücke, Kondensator und Stromsenke....................................270 B.2 Ergänzungen zu Kapitel 4.........................................................................................................273 B.2.1 Einstufige Konvertertopologie mit sinusförmigem Eingangsstrom
in „PFC? Wozu diese Ladekondensatorschaltung im Schaltnetzteil?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ttester.pdf
D6 4 PC2(TCK/PCINT18) 24 14 R29 6 25 R21 15 D7 PC3(TMS/PCINT19) 26 1 0 360k 8 PC4(TD0/PCINT20) 33−270 16 R 2 10 27 C25 6 9 PC5(TDI/PCINT21) 28 PC6(TOSC1/PCINT22) VCC 39p 4 4 12 PC7(TOSC2/PCINT23) 29 ISP 3 M IC3 11 1 MISO VCC 2 R 2 VCC 13 3 4 14 7 SCK MOSI Vdd Vss Reset 5 6 RESET GND C17 74HC4052 100n
-
PDF
ttester.pdf
D6 4 PC2(TCK/PCINT18) 24 14 R29 6 25 R21 15 D7 PC3(TMS/PCINT19) 26 1 0 360k 8 PC4(TD0/PCINT20) 33−270 16 R 2 10 27 C25 6 9 PC5(TDI/PCINT21) 28 PC6(TOSC1/PCINT22) VCC 39p 4 4 12 PC7(TOSC2/PCINT23) 29 ISP 3 M IC3 11 1 MISO VCC 2 R 2 VCC 13 3 4 14 7 SCK MOSI Vdd Vss Reset 5 6 RESET GND C17 74HC4052 100n
-
PDF
ttester.pdf
D6 4 PC2(TCK/PCINT18) 24 14 R29 6 25 R21 15 D7 PC3(TMS/PCINT19) 26 1 0 360k 8 PC4(TD0/PCINT20) 33−270 16 R 2 10 27 C25 6 9 PC5(TDI/PCINT21) 28 PC6(TOSC1/PCINT22) VCC 39p 4 4 12 PC7(TOSC2/PCINT23) 29 ISP 3 M IC3 11 1 MISO VCC 2 R 2 VCC 13 3 4 14 7 SCK MOSI Vdd Vss Reset 5 6 RESET GND C17 74HC4052 100n
-
PDF
technical.pdf
VD +IBD − IDS · = eq eq (11.178) −g m −gds gbs+ gds+ gm+ g mb −g bs− gmb VS +IBS eq+ IDSeq 0 −gbd −g bs gbs+ gbd VB −IBD eq− IBSeq IBD = IBD − gbdV BD (11.179) eq IBSeq = IBS − gbsV BS (11.180) IDSeq = Id− gm·V GS − gmb·V BS− gds·V DS (11.181) 149 11.5.2 Physical model
-
PDF
PSPICE_MITSCHRIFT_ALLES_SS20908.pdf
02 + 2.250E-07 -1.1506E+00 2.260E-07 -9.3654E-02 + 9.700E-08 -1.0860E+00 9.800E-08 -6.8728E-01 + 2.270E-07 -2.8658E-01 2.280E-07 -3.0969E-01 + 9.900E-08 -7.1611E-03 1.000E-07 8.7403E-01 + 2.290E-07 -2.2082E+00 2.300E-07 9.4553E-01 + 1.010E-07 4.1111E-01 1.020E-07 -9.6841E-01 + 2.310E-07 -5.1101E-01 2.320E
in „Pspice Simulation“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
tmote-sky-datasheet.pdf
dB −45 4: 2.500 GHz −12.50 dB 2:2.450 000GHz 39.757 -4-4.623 14.050pF 3:2.483 958GHz 65.041 4.227 270.843pH −50 START 2.3GHz [ 10.00 dBm] STOP 2.55GHz 2.3 2.325 2.35 2.375 2.4 2.425 2.45 2.475 2.5 2.525 2.55 Frequency (GHz) Figure 10 : S11 measurements for the internal inverted-F antenna when no battery
in „MSP430 - Beste Möglichkeit der Kommunikation“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Micrel.pdf
250 mA — 250 — MIC2950x OUT = 2.5A — 370 600 MIC2950x OUT = 5A — 80 200 MIC2975x I = 250 mA OUT — 270 — MIC2975x OUT = 4A — 425 750 MIC2975x OUT = 7.5A MIC2915x OUT = 750 mA, — 8 20 V = V + 1V IN OUT — 22 — MIC2915x OUT = 1.5A — 10 35 MIC2930x OUT = 1.5A, VIN= VOUT + 1V Ground Current (Note 6) I — 37
-
PDF
TTester_096k.pdf
BC547 10n R 1 PD7(AIN1) 10 11 D3 D4 12 D5 ISP VCC 13 D6 1 2 VCC 14 MISO VCC 15 D7 3 4 SCK MOSI 120−270 16 5 RESET GND 6 Reset Figure 2.1: New circuit of TransistorTester 2.2 Hints for building the TransistorTester Every LCD-display with a 2 x 16 character display and a HD44780 compatible controller can
-
PDF
TTester_096k.pdf
) 13 D2 L 100n 100n 10n 10 D3 11 D4 12 13 D5 ISP VCC 14 D6 1 MISO VCC 2 VCC D7 3 4 15 SCK MOSI 120−270 16 5 RESET GND 6 Reset Figure 2.1: New circuit of TransistorTester 2.2 Hints for building the TransistorTester Every LCD-display with a 2 x 16 character display and a HD44780 compatible controller can
-
PDF
ST_70-780_Service_Manual.pdf
100k 220u 1,6k 1k 5,6n 520.97 BYW178 180k T2,5A BYW172D 470u/40V 812.97 7 BC858B 5 CUC2031(72cmPHI) X 270k 2,2n 120k 3,3 220u 680 3,3n 337.97 BYT56M 220k T4A MUR840 600u/63V 812.97 P 4,7k 0 0 M 5 k 5 n 8 1 8 2 CUC2040(63/70cmPHI/DPL) X 270k 2,2n 120k 3,3 220u 470 3,3n 336.97 BYT56M 220k T5A MUR840 600u/
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ttester.pdf
10 D2 L 11 D3 VCC 12 D4 Button 13 D5 ISP VCC 14 D6 1 MISO VCC 2 R14 15 D7 3 4 Reset 5 SCK MOSI 6 33−270 16 RESET GND Abbildung 2.1. Neue TransistorTester-Schaltung Die Tabelle 2.1 zeigt die Belegung des PD Ports für verschiedene Display-Versionen und die Bele- gung der Zusatzfunktionen. Bei allen Varianten
-
PDF
mega644.pdf
PAGEL PD7 I Program Memory and EEPROM data Page Load. BS2 PA0 I Byte Select 2. DATA PB7-0 I/O Bi-directional Data bus (Output when OE is low). Table 24-10. BS2 and BS1 Encoding Flash Data Flash / EEPROM Loading / Fuse Reading Fuse BS2 BS1 Address Reading Programming
in „AVR Controller braucht zu viel Strom“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATmegaXX4.pdf
Memory and EEPROM data Page Load. BS2 PA0 I Byte Select 2. DATA PB7-0 I/O Bi-directional Data bus (Output when OE is low). Table 26-10. BS2 and BS1 Encoding Flash Data Flash / EEPROM Loading / Fuse Reading Fuse BS2 BS1 Address Reading Programming
in „Atmega644PA Timer3“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SJA1000_3.pdf
Bit interpretation of the status register (SR); CAN address 2 BIT SYMBOL NAME VALUE FUNCTION SR.7 BS Bus Status; note 1 1 bus-off; the SJA1000 is not involved in bus activities 0 bus-on; the SJA1000 is involved in bus activities SR.6 ES Error Status; note 2 1 error; at least one of the error counters
in „Can Controller "SJA1000" Probleme mit Register“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
2287522.pdf
same time in any combination (for example, one register used for ‘All Call’ so that all the PCA9955Bs on the I C-bus can be addressed at the same time and the second 1 register used for three different addresses so tha3 ⁄ of all devices on the bus can be addressed at the same time in a group). Software
in „[V] 10St. NXP PCA9955 16-channel Fm+ I2C-bus 57 mA/20 V constant current LED driver SSOP28 (10€)“ · Markt ·
-
PDF
2287522.pdf
same time in any combination (for example, one register used for ‘All Call’ so that all the PCA9955Bs on the I C-bus can be addressed at the same time and the second 1 register used for three different addresses so tha3 ⁄ of all devices on the bus can be addressed at the same time in a group). Software
in „[V] 10St. NXP PCA9955 16-channel Fm+ I2C-bus 57 mA/20 V constant current LED driver SSOP28“ · Markt ·
-
PDF
grundig32zollLedTV.pdf
13 C712 100NF XTAL_I C713 3 L703 L704 L702 XTALO_T 14 XTAL_O 33PF C714 4 270nH 270NH 33PF 5 180NH 6 L705 R702 AGC1 5 R701 IF_AGC_T IF_AGC_T 7 NC 4 100R 8 C715 270NH 24 AGC2 180PF TUNER_FEF 1 GPIO1 C716 AJ-35 GPIO2 100NF 11 L706 D700 I2CM_SCL 240R 3 SCL XOUT 12 PMEG4010EH IC701
in „Reparaturbericht LED-TV Grundig 32 VLE 5620 BN Ton gut, aber kein Bild“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LTC_2400_24Bit-ADC.pdf
programis an example showing how to access the ' LTC2400 using the Basic Stamp2 fromParallax. Since ' the BS2 is based on a 16-bit architecture, only the ' upper 16 bits of the 24-bit result are displayed, ' although all 24 bits are retrieved. ADlo var word 'A/D result - lower 16 bits ADhi var word 'A/D result
in „ADC, Auslösung erhöhen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
2400fa.pdf
programis an example showing how to access the ' LTC2400 using the Basic Stamp2 fromParallax. Since ' the BS2 is based on a 16-bit architecture, only the ' upper 16 bits of the 24-bit result are displayed, ' although all 24 bits are retrieved. ADlo var word 'A/D result - lower 16 bits ADhi var word 'A/D result
in „hochauflösende Temperaturmessung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
an-978.pdf
high-side FET f = frequency of operation ICbs (leak)ootstrap capacitor leakage current Iqbs (max)Maximum V BS quiescent current V CC= Logic section voltage source V = Forward voltage drop across the bootstrap diode f V LSVoltage drop across the low-side FET or load V Min= Minimum voltage between V anB V . S
in „Treiber-IC Peripherie berechnen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
an-978.pdf
high-side FET f = frequency of operation ICbs (leak)ootstrap capacitor leakage current Iqbs (max)Maximum V BS quiescent current V CC= Logic section voltage source V = Forward voltage drop across the bootstrap diode f V LS= Voltage drop across the low-side FET or load V Min= Minimum voltage between V anB V .
in „Isolierter High-Side Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ir2110-app-note.pdf
high-side FET f = frequency of operation ICbs (leak)ootstrap capacitor leakage current Iqbs (max)Maximum V BS quiescent current V CC= Logic section voltage source V = Forward voltage drop across the bootstrap diode f V LS= Voltage drop across the low-side FET or load V Min= Minimum voltage between V anB V .
in „[Transistor Ansteuerung] Ausgang kein Rechteck?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Schematics.pdf
PG2(ALE) (A14)PC6 40 100n RESET SV4-5 LED1 R10 33 PG1(RD) (A13)PC5 39 1 PG0(WR) (A12)PC4 38 SV4-6 270 PEN (A11)PC3 37 ROW5 0805 red (A10)PC2 36 ROW4 SV3-1 + C14 +C16 (A9)PC1 ROW3 GND A SV3-2 C15 C17 C18 C19 C20 C22 (A8)PC0 35 ROW2 B SV3-3 + C2 100n 100n ROW1 C SV3-4 10µ 100n 10µ 100n 100n 100n 18p 18p
-
PDF
an-978.pdf
high-side FET f = frequency of operation ICbs (leak)ootstrap capacitor leakage current Iqbs (max)Maximum V BS quiescent current V CC= Logic section voltage source V = Forward voltage drop across the bootstrap diode f V LS= Voltage drop across the low-side FET or load V Min= Minimum voltage between V anB V .
in „high-side gate driver mit LT-Spice simulieren“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
an-978.pdf
high-side FET f = frequency of operation ICbs (leak)ootstrap capacitor leakage current Iqbs (max)Maximum V BS quiescent current V CC= Logic section voltage source V = Forward voltage drop across the bootstrap diode f V LS= Voltage drop across the low-side FET or load V Min= Minimum voltage between V anB V .
in „Halbbrücke Gate-Treiber Erklärung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
an-978.pdf
high-side FET f = frequency of operation ICbs (leak)ootstrap capacitor leakage current Iqbs (max)Maximum V BS quiescent current V CC= Logic section voltage source V = Forward voltage drop across the bootstrap diode f V LS= Voltage drop across the low-side FET or load V Min= Minimum voltage between V anB V .
in „H-Brücke mit 100% Duty-Cycle“ · Analoge Elektronik und Schaltungstechnik ·