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PDF
TPH1R104PB_datasheet_en_20181228.pdf
Regulators 2. Features (1) AEC-Q101 qualified (2) Small, thin package (3) Low drain-source on-resistance: DS(ON) = 0.95 mΩ (typ.) (GS = 10 V) (4) Low leakage current: IDSS= 10 µA (max) (V DS = 40 V) (5) Enhancement mode: V th= 2.0 to 3.0 V DS = 10 V, D = 0.5 mA) 3. Packaging and Internal Circuit 1, 2, 3: Source
in „Einfluss von thermischen Vias auf den Wärmetransport eines MOSFETs“ · Platinen ·
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PDF
70687A-1.pdf
MCP9700 Temperature Sensor 8. 2K SPI EEPROM with a unique MAC Address 9. 1 Mbit SPI Serial Flash 10. 32 KHz Crystal for Sleep Mode DS70687A-page 12 2012 Microchip Technology Inc. MiWi™ Demo Board Some of main blocks defined on the board are explained in detail below: 2.1.1 PIC18F46J50 Microcontroller
in „Was darf man von einer PCB-Antenne erwarten?“ · HF, Funk und Felder ·
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PDF
FSP_SHB_D.pdf
10 kHz 9,7 ________ 10,3 kHz 30 kHz 29,1 ________ 30,9 kHz 100 kHz 90 ________ 110 kHz 300 kHz 270 ________ 330 kHz 1 MHz 900 ________ 1100 kHz 3 MHz 2,7 ________ 3,3 MHz 10 MHz 7 ________ 11 MHz 1164.4556.81
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PDF
nrf.pdf
7:6 00 R/W Only '00' allowed RX_PW_P0 5:0 0 R/W Number of bytes in RX payload in data pipe 0 (1 to 32 bytes). 0 Pipe not used 1 = 1 byte … 32 = 32 bytes 12 RX_PW_P1 Reserved 7:6 00 R/W Only '00' allowed RX_PW_P1 5:0 0 R/W Number of bytes in RX payload in data pipe 1 (1 to 32 bytes). 0 Pipe not used 1
in „NRF24L01 und Atmega328P“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6207.pdf
data Features Operating supply voltage from 8 to 52 V 5.6 A output peak current (2.8 A DC) R DS(ON) 0.3 typ. value atjT = 25 °C Operating frequency up to 100 KHz Non-dissipative overcurrent protection Dual independent constant t OFF PWM current 3RZHU',3▯▯ controllers Slow decay synchronous
in „Schrittmotor mit L6207“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1822670.pdf
data Features Operating supply voltage from 8 to 52 V 5.6 A output peak current (2.8 A DC) R DS(ON) 0.3 typ. value atjT = 25 °C Operating frequency up to 100 KHz Non-dissipative overcurrent protection Dual independent constant t OFF PWM current 3RZHU',3▯▯ controllers Slow decay synchronous
in „Treiberstufe fuer Faulhaber Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2574.pdf
DS011394-32 Oscillator Frequency Switch Saturation Efficiency Voltage DS011394-33 DS011394-35 DS011394-34 Minimum Operating Voltage Supply Current Feedback Voltage vs Duty Cycle vs Duty Cycle DS011394-36 DS011394-37 DS011394-38 7 www.national.com Typical Performance Characteristics (Circuit of Figure 2) (Continued) Feedback Junction to Ambient Pin Current Thermal Resistance DS011394-39 DS011394-40 Continuous
in „Ersatz für 7805 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2574.pdf
DS011394-32 Oscillator Frequency Switch Saturation Efficiency Voltage DS011394-33 DS011394-35 DS011394-34 Minimum Operating Voltage Supply Current Feedback Voltage vs Duty Cycle vs Duty Cycle DS011394-36 DS011394-37 DS011394-38 7 www.national.com Typical Performance Characteristics (Circuit of Figure 2) (Continued) Feedback Junction to Ambient Pin Current Thermal Resistance DS011394-39 DS011394-40 Continuous
in „Iverting Buck Boost -5V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS1302.pdf
connected to a backup source to maintain the time and date in the absence of primary power. The 1 1 V CC2 DS1302 operates from the larger of V CC1 or VCC2. When V CC2 is greater than V CC1 + 0.2V, V CC2 powers the DS1302. When V CC2 is less than VCC1, VCC1 powers the DS1302. Connections for Standard 32.768kHz
in „Wiedermal ein RTC-Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZXBM5210.pdf
REFbias current V REF= VDD -15 0 15 μA ( DC voltage speed control mode) VREF control mode 20 26.5 35 kHz FOUT Output PWM switching frequency (Internal PWM oscillator) PWM speed control mode 20 — 100 kHz FFWD_REV Input PWM frequency of speed control PWM control mode 20 — 100 kHz signal V = 3V to 18V T DEAD
in „Overcurrent Protecion (OCP) bei integrierten Voll-/Halbbrücken“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BF256_ON.pdf
Max Unit OFF CHARACTERISTICS Gate–Source Breakdown Voltage (–I = –1.0 Adc, V = 0) –V 30 – — Vdc G DS (BR)GSS Gate–Source Voltage (DS = 15 Vdc,D= 200 A) –V GS 0.5 — 7.5 Vdc Gate Reverse Current (–VGS = 20 Vdc, DS = 0) –IGSS — — 5.0 nAdc ON CHARACTERISTICS Zero–Gate–Voltage Drain Current (Note 1.) (VDS
in „BF256, Pinbelegung unterschiedlich“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CS5560_PP2.pdf
components due to digital interference from the on chip logic. 5.55 kHz, -120 dB 5.55 kHz, -130 dB 32k Samples @ 50 kSps 32k Samples @ 50 kSps Frequency (Hz) Frequency (Hz) Figure 15. Spectral Performance, -120 dB Figure 16. Spectral Performance, -130 dB DS713PP2 21 5/4/09 CS5560 Figure 17 illustrates
in „Bipolare Eingänge ADC“ · Analoge Elektronik und Schaltungstechnik ·
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gbdso_uk.pdf
. use most of the top of the ADC. 12 kHz. This allows relatively small 32 KB leaving 0000-7FFF available for exter- capacitors to be used for smoothing. nal ROM and A000-BFFF for external RAM. The DS1267 from Dallas Semicon- However, to prevent any high fre- The GBDSOprogramis
in „Bameboy-LCD mit avr“ · Mikrocontroller und Digitale Elektronik ·
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PDF
gbdso_uk.pdf
. use most of the top of the ADC. 12 kHz. This allows relatively small 32 KB leaving 0000-7FFF available for exter- capacitors to be used for smoothing. nal ROM and A000-BFFF for external RAM. The DS1267 from Dallas Semicon- However, to prevent any high fre- The GBDSOprogramis
in „Alternative zu teurem Oszilloskop“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
20002234D.pdf
40°C to +85°C. OUT A A Parameters Sym. Min. Typ. Max. Units Conditions NMOS Switch On Resistance R DS(ON)N — 0.6 — VIN= 3.3V, SW = 100 mA PMOS Switch On Resistance R DS(ON)P — 0.9 — VIN= 3.3V, SW = 100 mA NMOS Peak Switch Current I 600 850 — mA Note 4 N(MAX) Limit VOUT Accuracy VOUT % -3 — +3 % Includes
in „NRF24L01+ durch MCP1640 gestört?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430F5438IPZ.pdf
– signed multiply accumulate high word MACS32H 1Eh 32-bit operand 2 – low word OP2L 20h 32-bit operand 2 – high word OP2H 22h 32 × 32 result 0 – least significant word RES0 24h 32 × 32 result 1 RES1 26h 32 × 32 result 2 RES2 28h 32 × 32 result 3
in „Strombelastbarkeit MSP430“ · Mikrocontroller und Digitale Elektronik ·
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tca8418.pdf
GPIO interrupt status 0 0 0 0 0 0 0 0 GPIO_DAT_STAT1 0x14 (read twice to clear) GPIO data status R7DS R6DS R5DS R4DS R3DS R2DS R1DS R0DS 0x15 GPIO_DAT_STAT2 GPIO data status C7DS C6DS C5DS C4DS C3DS C2DS C1DS C0DS (read twice to clear) 0x16 GPIO_DAT_STAT3 GPIO data status N/A N/A N/A N/A N/A N/A C9DS
in „Keypad 3x4 (am Tasmota o.ä.)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_ATSAMD20E18A-MU.pdf
10x6 lines Maximum CPU frequency 48 MHz Packages QFN QFN QFN TQFP TQFP TQFP UFBGA WLCSP Oscillators 32.768 kHz crystal oscillator (XOSC32K) 0.4-32 MHz crystal oscillator (XOSC) 32.768 kHz internal oscillator (OSC32K) 32 kHz ultra-low-power internal oscillator (OSCULP32K) 8 MHz high-accuracy internal oscillator
in „Exposed Pad anschließen? (ATSAMD20E18A-MU und ELMOS E981.03)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
init_io.c
folgender Pinbelegung: // PA4: CSB (NSS) // PA5: SCK // PA7: MOSI (SI) // MISO wird nicht verwendet // STM32 ist Master, d. h. MSTR = 1 // Es wird Mode 3 verwendet, d. h. CPOL = 1 und CPHA = 1 // MSB wird zuerst gesendet, d.h. LSBFIRST = 0 (RESET-Status) // Datenlänge 8 Bit, d. h. DS[3:0] = 0x07 // SPI Baudrate
in „STM32F303 SPI kein SCK- und MOSI-Signal“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HEIZUNG_UNGARN.PDF
PI U2 06 PY0 PY22 PI U3202 OSCO PI U2 05 PI7U3 07 D10 1N4148 P6 P3 3 RST CLKOUT R66 C3 P IU2 03 CT 32.768KHZ 2K2 100nF P IU2101 REF PY3 PI U3303 INT P3 SCL PI6U3 06 PS14 PS13 P IU2707 CO5 PI PI U3404 PI5U3 05 P6 SEN GND SDA CSW1 402UIP 22pF PI PCF8563/SO08 OC BUT_RESET TLC7705I/SO08 C6 PC1 PT P1 BT1
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rtc.pdf
_____ 9 Low-Voltage SPI/3-Wire RTCs with Trickle Charger Pin Description 3 9 3 PIN NAME FUNCTION 1 DS1390 DS1391 DS1392 DS1393 Connections for Standard 32.768kHz Quartz Crystal. The internal oscillator S 1 1 1 1 X1 D circuitry is designed for operation with a crystal having a 6pF specified load / capacitance
in „ein Uhrenquartz für AVR und RTC???“ · Mikrocontroller und Digitale Elektronik ·
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PDF
innoswitch3-ep_family_datasheet.pdf
off once the capacitor should be connected at the FEEDBACK pin to the V of the SR FET reaches 0 V. DS SECONDARY GROUND pin of the InnoSwitch3-EP IC. This capacitor A FET with 18 mW R is appropriate for a 5 V, 2 A output, and a should be placed close to the InnoSwitch3-EP IC. DS(ON) FET with 8 mW R DS
in „Fritz Repeater 2400“ · Analoge Elektronik und Schaltungstechnik ·
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tc4420.pdf
VDD = 18V 70 ) 18V 40 A A ) t m ( e D2 T56 T 100 10V n30 N E 5V ( t R R M D1 R42 U T U C Y20 C 500 kHz Y A L28 P 10 E P P D U 200 kHz S 10 S14 20 kHz 0 0 0 –60 –20 20 60 100 140 0 100 1000 10,000 0 100 1000 10,000 T (°C) CAPACITIVE LOAD (pF) FREQUENCY (kHz) A TC4420/9-6 10/18/96 © 2001 Microchip TechnolDS21419A
in „Mosfet Driver gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HAL300_Differential_Hall-Effect_Sensor_IC_2ds-1109203.pdf
°C I Supply Current over 1 2.5 5 7.5 mA DD Temperature Range VDDZ Overvoltage Protection 1 – 28.5 32.5 V DD = 25 mA, J = 25 °C, at Supply t = 20 ms VOZ OvervoltageProtectionatOutput 3 – 28 32.5 V OL = 25 mA, J = 25 °C, t = 20 ms V Output Voltage over 3 – 180 400 mV I = 20 mA OL Temperature Range O OH
in „Hall-Effekt Sensor Aufschrift decodieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mcp6004.pdf
Voltage Eni — 6.1 — µVp-p f = 0.1 Hz to 10 Hz Input Noise Voltage Density eni — 28 — nV/√Hz f = 1 kHz Input Noise Current Density ini — 0.6 — fA/√Hz f = 1 kHz TEMPERATURE SPECIFICATIONS Electrical Characteristics: Unless otherwise indiDDted, V8V to +5.5V, anSSV= GND. Parameters Sym Min Typ Max Units
in „Nichtinvertierender Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mcp3424.pdf
W 5W 'O8UXNO3XOXFRLX<R)3GU,LX\OXFR0U,RD6Q:R±P5W.QW 6 1 LNO\R'O8UXNO3XWRVYU3,U)O\LGG[RU%L\)RZLG(URNY32XR2O)Y3()R)3GU,LX\UNW J:21 JU&U,UX\UR'O8UXNO3X/R(N(LGG[R2O)Y3()R)3GU,LX\U/R&3,ROX&3,8L)O3XR0(,03NUNR3XG[W QO\,3\YO0 VU\YX3G3F[ ',L2OXF $5HPK+ © 2009 Microchip Technology Inc. DS22088C-page 41 MCP3422/
in „Sensorplatine MPX4115 DS1621 HIH5030 - Schaltungskontrolle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC12F508_Datasheet.pdf
Value Timer0 Rate WDT Rate 000 1 : 2 1 : 1 001 1 : 4 1 : 2 010 1 : 8 1 : 4 011 1 : 16 1 : 8 100 1 : 32 1 : 16 101 1 : 64 1 : 32 110 1 : 128 1 : 64 111 1 : 256 1 : 128 DS41236E-page 24 © 2009 Microchip Technology Inc. PIC12F508/509/16F505 REGISTER 4-4: OPTION REGISTER (PIC16F505) W-1 W-1 W-1 W-1 W-1 W-
in „Funktion Reifendruckanlerngerät EL-50448; OEC-T5; Welches Bauelement ist das?“ · Fahrzeugelektronik ·
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PDF
PIC12F508.pdf
Value Timer0 Rate WDT Rate 000 1 : 2 1 : 1 001 1 : 4 1 : 2 010 1 : 8 1 : 4 011 1 : 16 1 : 8 100 1 : 32 1 : 16 101 1 : 64 1 : 32 110 1 : 128 1 : 64 111 1 : 256 1 : 128 DS41236E-page 24 © 2009 Microchip Technology Inc. PIC12F508/509/16F505 REGISTER 4-4: OPTION REGISTER (PIC16F505) W-1 W-1 W-1 W-1 W-1 W-
in „Funktion Reifendruckanlerngerät EL-50448; OEC-T5; Welches Bauelement ist das?“ · Fahrzeugelektronik ·
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PDF
AVRnDxBoard.pdf
DTROUT PB5 13 PB5 PF5 49 PF5 100n 14 48 PB6 15 PB6 PF4 47 PF4 PB7 PB7 PF3 PF3 46 16 PF2 45 PF2 XTAL32K2 JP6 R6 Voltage Reference PC0 PC0 XTAL32K2/PF1 17 44 XTAL32K1 0R B PC1 18 PC1 XTAL32K1/PF0 PF1 B PC2 PC2 JP4 19 43 VDDA PC3 22 PC3 PE7 42 PE7 PF0 JP7 C12 PC4 PC4 PE6 PE6 Y2 23 41 JP5 PC5 24 PC5 PE5
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Datei
UhrWS2812.ino
minutes=0; int tasterstatus=0; Adafruit_NeoPixel strip = Adafruit_NeoPixel(60, PIN, NEO_GRB + NEO_KHZ800); void setup() { pinMode(Taster, INPUT); Serial.begin(9600); strip.begin(); strip.show(); // Initialize all pixels to 'off' Rtc.Begin(); Rtc.SetSquareWavePin(DS1307SquareWaveOut_Low); if (!Rtc.GetIsRunning
in „LED Uhr mit RTC braucht Taster“ · Mikrocontroller und Digitale Elektronik ·
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Datei
radio.c
i2c_write(0x00); i2c_write(0x11); i2c_write(0x08); i2c_write(0x00); i2c_write(0x28); //max Tune Error 28=40KHz, 32=50KHz i2c_stop(); wait_for_ready_CTS(); delay_ms(1); } //************************************************************************************************** void fm_seek_tune_snr_threshold(void)
in „OLED RDS Radio mit SI4735 + AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Masterarbeit.pdf
dies in Abbildung 7.31b anhand der geringen Abweichungen ersichtlich ist [97][98]. Die Verläufe von uDS,2 und u GS,2 bei verschiedenen Ausgangsleistungen, sind in Abbildung 7.32a und 7.32b dargestellt. Aus den Verläufen sind keine Abweichungen zu den Schalt- vorgängen im Einzelbetrieb aus dem Abschnitt
in „False Turn On bei Synchron Buck mit eGaN FETs“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Hilfspannung.pdf
Symbol Condition Min. Typ. Max. Unit Drain-Source Breakdown Voltage BV DSS V GS=0V, ID=50µA 650 - - V V DS=Max., Rating, - - 50 µA Zero Gate Voltage Drain Current I V GS=0V DSS V DS=0.8Max., Rating, V =0V, T =125°C - - 200 µA GS C Static Drain-Source on ResistanceNote) R DS(ON) V GS=10V, ID=0.5A - 8 10 Ω (Note) Forward Transconductance gfs V DS=50V, ID=0.5A 0.5 - - S Input Capacitance Ciss - 250 - V GS=0V, V DS=25V, Output Capacitance Coss - 25 - pF f=1MHz Reverse Transfer Capacitance Crss - 10 - Turn on Delay Time td(on) V DD=0.5B V DSS D
in „unbek. TO220 Bauteil in einem Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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Datei
twitest.c
--------------------------------------------------- /* * Twitest.c aus avrgcc-doc * * Modified for Ds1621 temp-Sensor Mai 2007 hopi * * non interrupt - Twi-Master * * ---------------------------------------------------------------------------- * "THE BEER-WARE LICENSE" (Revision 42): * <joerg@FreeBSD.ORG
in „I2C-Bus und DS1631“ · Mikrocontroller und Digitale Elektronik ·
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PDF
viper20.pdf
VIPer20/SP/DIP VIPer20A/ASP/ADIP ∪ SMPS PRIMARY I.C. TYPE VDSS n R DS(on) VIPer20/SP/DIP 620V 0.5 A 16 VIPer20A/ASP/ADIP 700V 0.5 A 18 PENTAWATT HV PENTAWATT HV (022Y) FEATURE ADJUSTABLE SWITCHING FREQUENCY UP TO200KHZ 10 CURRENT MODE CONTROL 1 SOFTSTART AND SHUT DOWN
in „Besonders sparsame Standby-Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MW-BIC-2200.pdf
BS EN/ EN55032 Param eter Standard Test Level / Note EM C EM ISSION Conducted BS EN/EN55032 (CISPR32) Class B Radiated BS EN/EN55032 (CISPR32) Class A H arm onic C urrent BS EN/EN61000-3-2 ----- Voltage Flicker BS EN/EN61000-3-3 ----- SAFETY & BS EN/ EN55035, B S EN/EN61000-6-2 EM C Param eter Standard
in „LifePo4 mit Labornetz laden und gleichzeit entladen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
kicad_8450_dcm_liste_neu_v3.pdf
ATMEGA32A-PU PDIP40, 32k Flash, 2k SRAM, 1k EEPROM, JTAG ATMEGA32M1-AU TQFP32, 32k Flash, 2k SRAM, 1kB EEPROM, CAN ATMEGA32M1-MU QFN32, 32k Flash, 2k SRAM, 1kB EEPROM, CAN ATMEGA32U2-AU TQFP-32, 32k Flash, 1024B
in „KiCAD Eeschema, Bibliotheksdokumentation *.dcm als PDF-Datei“ · Platinen ·
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PDF
Viper12A.pdf
4) 0.32 0.4 0.48 A FBsd IFB Shutdown Current (See fig. 4) 0.9 mA RFB FB Pin Input Impedance ID=0mA (See fig. 4) 1.2 k Current Sense Delay to td ID=0.2A 200 ns Turn-Off t Blanking Time 500 ns b tONmin Minimum
in „LiIon 18650 Ladegerät für zwei Parallel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv8312.pdf
otorD river Check for Samples: DRV8312, DRV8332 FEATURES Because of the low R of the power MOSFETs DS(on) • High-Efficiency Power Stage (up to 97%) with and intelligent gate drive design, the efficiency of these motor drivers can be up to 97%, which enables Low R DS(on)MOSFETs (80 mΩ at T = 25°CJ the
in „Versorgung von BLDC für Logic“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LCD-Controller_NT3881.pdf
displays up to 80 characters) Three oscillator operations Character Generator RAM (CG RAM): (Freq. = 250KHz - 270KHz): 64 X 8 bits for general data, • Internal oscillation 8 5 X 8 programmable dot patterns, or • Ceramic resonator 4 5 X 10 programmable dot patterns Low voltage reset • External clock NOVATEK
in „Frage zu GCC Tutorial LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nt3881.pdf
displays up to 80 characters) Three oscillator operations Character Generator RAM (CG RAM): (Freq. = 250KHz - 270KHz): 64 X 8 bits for general data, • Internal oscillation 8 5 X 8 programmable dot patterns, or • Ceramic resonator 4 5 X 10 programmable dot patterns Low voltage reset • External clock NOVATEK
in „LCD mit NT3881D“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet-Novatec_display_controller.pdf
displays up to 80 characters) Three oscillator operations Character Generator RAM (CG RAM): (Freq. = 250KHz - 270KHz): 64 X 8 bits for general data, • Internal oscillation 8 5 X 8 programmable dot patterns, or • Ceramic resonator 4 5 X 10 programmable dot patterns Low voltage reset • External clock NOVATEK
in „mal wieder ein LCD am Atmega8“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RT8298E-02.pdf
0.808 0.82 V Feedback Current FB V FB = 0.8V -- 10 -- nA High-Side Switch On Resistance R -- 45 -- m DS(ON) High-Side Switch Current Limit BOOT SW = 4.8V -- 10 -- A Oscillation Frequency OSC1 -- 600 -- kHz Short Circuit Oscillation Frequency OSC2 V FB = 0V -- 190 -- kHz Maximum Duty Cycle DMAX V FB =
in „Schaltregler - maximaler Spulenstrom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RT8298E-02.pdf
0.808 0.82 V Feedback Current FB V FB = 0.8V -- 10 -- nA High-Side Switch On Resistance R -- 45 -- m DS(ON) High-Side Switch Current Limit BOOT SW = 4.8V -- 10 -- A Oscillation Frequency OSC1 -- 600 -- kHz Short Circuit Oscillation Frequency OSC2 V FB = 0V -- 190 -- kHz Maximum Duty Cycle DMAX V FB =
in „Wahl des SynchrongleichrichterMOSFETs für Buck Converter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RT8298E-02.pdf
0.808 0.82 V Feedback Current FB V FB = 0.8V -- 10 -- nA High-Side Switch On Resistance R -- 45 -- m DS(ON) High-Side Switch Current Limit BOOT SW = 4.8V -- 10 -- A Oscillation Frequency OSC1 -- 600 -- kHz Short Circuit Oscillation Frequency OSC2 V FB = 0V -- 190 -- kHz Maximum Duty Cycle DMAX V FB =
in „Woher Eingangsschwingung am Buck“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2937.pdf
Max) OUT = 5 mA VIN= (VOUT + 5V), 10 20 10 20 10 20 mA(Max) I = I OUT OUTmax Output Noise 10 Hz–100 kHz 150 240 300 µVrms Voltage OUT = 5 mA Long Term Stability 1000 Hrs. 20 32 40 mV Dropout Voltage OUT = IOUTmax 0.5 1.0 0.5 1.0 0.5 1.0 V(Max) OUT = 50 mA 110 250 110 250 110 250 mV(Max) Short-Circuit
in „Minimale Hardware zum Auto CAN-Bus abhören“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BMP581.pdf
Sensortec GmbH 2023 | All rights reserved, also regarding any disposal, exploiDocument number: BST-BMP581-DS004-11ibution, as well as in the event of applications for industrial property rights Bosch Sensortec | BST-BMP581-DS004-11 32 | 75 5.2.1 Interface timing The timing diagram for SPI is given in Figure
in „Datenlogger Pendeluhr“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSi001_R3v2.0.pdf
Max Unit AM Port 1 (F = 1.8 MHz) RF 1110 FIF 450 kHz, 48 mA AM Port 2 (RF= 15 MHz) 1110 IFBW = 200 kHz 50 mA FIF 450 kHz, VHF (FRF= 100 MHz) 1110 IFBW = 300 kHz 43.5 mA 1100 FIF 0 kHz 43 mA Band III (F= 195 MHz) IFBW = 1.536 MHz RF FIF 2.048 MHz, 1010 IFBW = 1.536 MHz 50.5 mA 0000 FIF 0 kHz, 58 mA Band
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PDF
Si_4322.pdf
rise/fall time 10 pF pure capacitive load 15 ns fckout, slow Slow clock frequency Tolerance +/- 1 kHz 32 kHz Note 2: Using other than a 10 MHz crystal is not recommended because the crystal referred timing and frequency parameters will change accordingly. Note 3: During this period, commands are not
in „RFM01 NIRQ immer high“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.ino.asm
//start the timer } void event_handlerCTC(void) { PINB = (1 << PINB5); 296: 80 e2 ldi r24, 0x20 ; 32 298: 83 b9 out 0x03, r24 ; 3 uint16_t delay = 0; switch (irq_flag) { 29a: 80 91 66 01 lds r24, 0x0166 ; 0x800166 <ds+0xd> 29e: 90 91 67 01 lds r25, 0x0167 ; 0x800167 <ds+0xe> 2a2: 82 30 cpi r24, 0x02
in „Atmega328 1-Wire mit Timer CTC/PWM“ · Mikrocontroller und Digitale Elektronik ·