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IPD053N06N_Infineon.pdf
Values Unit min. typ. max. Dynamic characteristics Input capacitance C iss - 2000 2500 pF V GS=0 V, V DS=30 V, Output capacitance C oss f=1 MHz - 490 613 Reverse transfer capacitance Crss - 22 44 Turn-on delay time td(on) - 12 - ns V DD=30 V, V GS=10 V, Rise time tr - 12 - ID=45 A, Turn-off delay time td
in „12V mit Logic Mosfet schalten - funktioniert nicht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
PLC-LOX.ino
ow_sensors[i][k][l]=sensors[l]; } k++; } else if (sensors[0] == 0x10||sensors[0] == 0x28||sensors[0] == 0x22) { // temperature sensor for (l=0,m++;l<8;l++){ ow_sensors[i][OW_counts-m][l]=sensors[l]; } dssetresolution(ds,sensors,OW_resolution); } else dbg("1-wire sensor unsupported: "),dbgln(oneWireAddressToString
in „1 Wire auf 2 GPIO pins“ · Mikrocontroller und Digitale Elektronik ·
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Datei
_zucMain.h
wdg_expander_on=0; //led1_tog; //++++++++++++ volleSecunde ++++++++++++++++++++++ if(sec==14||sec==34||sec==54){ ds1820_start_meas(); } //#ifdef ds1820_port if(sec==15||sec==35||sec==55){ ds1820_read_meas(); /* if(ds1820_val[0]<850){ lgi(3,1,ds1820_val[0]);lw("x"); li(ds1820_val[1]);lw("x"); li(ds1820_val[2]);lw("x"); li(ds1820_val[3]);lw("x"); li(ds1820_val[4]);lw("x"); }else*/{ lg(3,1); li(ds1820_tmp[0]);sub_set_Comma();lw("x"); li(ds1820_tmp[1]);sub_set_Comma();lw("x"); li(ds1820_tmp[2]);sub_set_Comma();lw("x"); li(ds1820
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PDF
si1551dl.pdf
Complementary 20 V (D-S) MOSFET PRODUCT SUMMARY FEATURES • Halogen-free According to IEC 61249-2-21 V DS (V) R DS(on)(Ω) D (A) Q gTyp.) 1.9 at V = 4.5 V 0.30 Definition GS TrenchFET Power MOSFET: 2.5 V Rated N-Channel 20 3.7 at GS = 2.7 V 0.22 0.72 Compliant to RoHS Directive 2002/95/EC 4.2 at GS = 2.5
in „CMOS: NAND bauen?“ · Mikrocontroller und Digitale Elektronik ·
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e2928_a8v-vm_se.pdf
DDR333-512 Hynix DS HY5DU56822CT-J • • 256MB Kingmax MPMB62D-38LT3R Mosel SS V58C2256804SAT6 • • 512MB Kingmax MPMC22D-38HT3R Hynix DS HY5DU56822BT-J • • 256MB Kingmax MPXB62D-38KT3R Kingmax SS KDL388P4LA-50 • • 512MB Kingmax MPXC22D-38KT3R Kingmax DS KDL388P4EA-50 • • 256MB Vdata MDYVD6F4G2880B1E0H Vdata SS VDD9616A8A-5C • • 256MB Pmi 3208GATA07-04A7 Pmi SS PM4D328D50406EU • • 512MB Pmi 3208GATA01-04A4 Pmi DS PM4D328S50403DU •
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mcp23008.pdf
INT CIO — — 50 pF D102 SDA C B — — 400 pF Note 1: This parameter is characterized, not 100% tested. DS21919B-page 22 © 2005 Microchip Technology Inc. MCP23008/MCP23S08 FIGURE 2-1: LOAD CONDITIONS FOR DEVICE TIMING SPECIFICATIONS VDD Pin 1 kΩ SCL and SDA pin 50 pF MCP23008 135 pF FIGURE 2-2: RESET AND
in „MCP23008 Problem“ · Mikrocontroller und Digitale Elektronik ·
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irlml6344pbf.pdf
ΔT Breakdown Voltage Temp. Coefficient ––– 0.02 ––– V/°C Reference to 25°C, I= 1mA (BR)DSS J D ––– 22 29 V GS= 4.5V, D = 5.0Ad R DS(on) Static Drain-to-Source On-Resistance mΩ ––– 27 37 V GS= 2.5V, D = 4.0Ad V GS(th) Gate Threshold Voltage 0.5 0.8 1.1 V V DS= VGS ID= 10μA IDSS ––– ––– 1.0 V DS=24V, V
in „IRLML 6344, bin ich zu doof zum Messen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irlml6344pbf-1228041.pdf
ΔT Breakdown Voltage Temp. Coefficient ––– 0.02 ––– V/°C Reference to 25°C, I= 1mA (BR)DSS J D ––– 22 29 V GS= 4.5V, D = 5.0Ad R DS(on) Static Drain-to-Source On-Resistance mΩ ––– 27 37 V GS= 2.5V, D = 4.0Ad V GS(th) Gate Threshold Voltage 0.5 0.8 1.1 V V DS= VGS ID= 10μA IDSS ––– ––– 1.0 V DS=24V, V
in „RaspiPi mit 3,3V einen 5V Kreis wie schalten?“ · Mikrocontroller und Digitale Elektronik ·
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176141-da-01-en-DS_1621_1621S.pdf
temperature, will set the high temperaturethreshold for operation of the TOUT output. Stop Convert T [22h] If R/W is 1, the value stored in this register is read back.This command stops temperature conversion. No fur- therdataisrequired.Thiscommandmaybeusedtohalt aDS1621incontinuousconversionmode.Afterissuing
in „Temperatursensor DS1621 über I²C ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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STP15N80K5.pdf
0.01 0.1 1 10 100 V DS(V) Figure 6. Safe operating area for TO-247 Figure 7. Thermal impedance for TO-247 ID AM15434v1 (A) 1µs i 10µs 10 raon iaDS 100µs it aR ti ym 1ms eredb Opii 10ms 1 L Tj=150°C Tc=25°C Single pulse 0.1
in „1500V 8A mit MOSFET schalten“ · Analoge Elektronik und Schaltungstechnik ·
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bluenrg-2.pdf
0x0 RW IO19 mode 15 RESERVED 0x0 RW RESERVED 18:16 IO20 0x0 RW IO20 mode 19 RESERVED 0x0 RW RESERVED 22:20 IO21 0x0 RW IO21 mode DS12166 - Rev 5 page 100/175 BlueNRG-2 GPIO Bit Field name Reset RW Description 23 RESERVED 0x0 RW RESERVED 26:24 IO22 0x0 RW IO22 mode 27 RESERVED 0x0 RW RESERVED 30:28 IO23
in „DC/DC-Wandler im ST BlueNRG-2 - Wofür?“ · Mikrocontroller und Digitale Elektronik ·
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LiveDesign_EB_Schematics-xilinx_spartan.pdf
N17 C8 GND P11 IO_L34P_6 IO_L21N_2 IO_L21N_7 NC VCCO_0 GND SRAM0_D5 N4 IO_L34N_6/VREF_6 IO_L21P_2 E22 SOFT_TDI E2 IO_L21P_7 NC P22 F8 VCCO_0 GND P12 N5 NC IO_L22N_2 G17 DIG5_SEG1 SRAM0_A3 G6 IO_L22N_7 NC P21 G9 VCCO_0 GND P13 C N6 NC IO_L22P_2 G18 MOUSEDATA F5 IO_L22P_7 NC P18 G10 VCCO_0 GND P14 C P1
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Elektronik_Sortimente.pdf
von 1pF … 220nF) für 10V / 16V / 25V / 50V (25-50 Stk pro Wert) 5/10% 10pF, 100pF, 1nF, 10nF, 100nF 22pF, 47pF, 220pF, 470pF, 2.2nF, 4.7nF, 22nF, 47nF 220nF (1pF … 22nF) Werte: 1,0 – 1,2 – 1,5 – 1,8 – 2,2 – 2,7 – 3,3 – 3,9 – 4,7 – 5,6 – 6,8 – 8,2 Tantal Kondensatoren 0,1µF/16V … 47µF/16V und in 35V Folien
in „Einkaufsliste für die Einrichtung eines Elektronik-Labors“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PLC-LOX.txt
ow_sensors[i][k][l]=sensors[l]; } k++; } else if (sensors[0] == 10||sensors[0] == 28||sensors[0] == 22) { for (l=0,m++;l<8;l++){ ow_sensors[i][OW_counts-m][l]=sensors[l]; } dssetresolution(ds,sensors,OW_resolution); } else dbg("1-wire sensor unsupported: "),dbgln(oneWireAddressToString(sensors,i)); j+
in „1 Wire auf 2 GPIO pins“ · Mikrocontroller und Digitale Elektronik ·
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si1539cd.pdf
V,GS = 0 V,JT = 55 °C N-Ch 10 V DS= - 30 V,GS = 0 V,JT = 55 °C P-Ch - 10 V =5 V, V = 10 V b I DS GS N-Ch 2 A On-State Drain Current D(on) V = -5 V, V = - 10 V P-Ch - 1 DS GS VGS = 10 V,DI = 0.6 A N-Ch 0.323 0.388 b VGS= - 10 V,DI =
in „7-Segment Display (elektromagnetisch) Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
OneWire.c
while(1); } // the first ROM byte indicates which chip switch (addr[0]) { case 0x10: printf("Chip = DS18S20"); // or old DS1820 type_s = 1; break; case 0x28: printf("Chip = DS18B20"); type_s = 0; break; case 0x22: printf("Chip = DS1822"); type_s = 0; break; default: { printf("Device is not a DS18x20 family
in „Böses One-Wire device“ · Mikrocontroller und Digitale Elektronik ·
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MCP738312.pdf
Includes Exposed Thermal Pad (EP); see Table 3-1. STAT SS MCP73831 2005-2014 Microchip Technology Inc. DS20001984G-page 1 MCP73831/2 Functional Block Diagram V DD 6 µA DIRECTION CONTROL V BAT 6 µA G=0.001 PROG 0.5 µA + CA REFERENCE MCP73831 GENERATOR - ONLY 43.6 k VREF(1.22V) 361 k 3.9 k VDD + 89 k -
in „MCP73832 Beschaltung für die Auswertung mit µC“ · Mikrocontroller und Digitale Elektronik ·
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01006a.pdf
uses WIP polling. FIGURE 3: BYTE WRITE COMMAND, ADDRESS AND DATA CS Twc 0 1 2 3 4 5 6 7 8 9 10 11 21 22 23 24 25 26 27 28 29 30 31 SCK instruction 16-bit address data byte SI 0 0 0 0 0 0 1 0 15 14 13 12 2 1 0 7 6 5 4 3 2 1 0 high-impedance SO DS01006A-page 4 © 2005 Microchip Technology Inc. AN1006 DATA
in „Infineon µC XC164D-Serie“ · Mikrocontroller und Digitale Elektronik ·
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ds17287.pdf
power-up AD7 11 14 ALE GND 12 13 CS § Crystal select bit allows RTC to operate with 6pF or 12.5pF crystal DS17285 24-Pin DIP § 114 bytes user NV RAM DS17285S 24-Pin SO § Auxiliary battery input § 2kB additional NV RAM PWR 1 24 VCC NC 2 23 SQW § RAM clear input NC 3 22 VBAU X § Century register AD0 4 21 RCLR
in „RTC-Baustein DS17287-5 von Dallas an ATMega16“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DS18S20.c
); // Write to EEPROM // if( !DS18_Copy_Scratchpad()) //return DS18_LeaveModDS18B20(251); // Read from EEPROM to ensure its correct functional behaviour // if( DS18_Recall_EE()) // Refresh scratchpad from EEPROM // //return DS18_LeaveModDS18B20
in „DS18S20 mit Infineon Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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Datei
S6D0154.c
return KAL_FALSE; } } } lcd_reg_index++; while (LCD_IS_RUNNING); return KAL_TRUE; } LCD_Funcs LCD_FUNCS_DS_S6D0154 = { LCD_Init_DS_S6D0154, LCD_PWRON_DS_S6D0154, LCD_SetContrast_DS_S6D0154, LCD_ON_DS_S6D0154, LCD_BlockWrite_DS_S6D0154, LCD_Size_DS_S6D0154, LCD_EnterSleep_DS_S6D0154, LCD_ExitSleep_DS_S6D0154, LCD_Partial_On_DS_S6D0154, LCD_Partial_Off_DS_S6D0154, LCD_Partial_line_DS_S6D0154, /*Engineering mode*/ LCD_GetParm_DS_S6D0154, LCD_SetBias_DS_S6D0154, LCD_Contrast_DS_S6D0154, LCD_LineRate_DS_S6D0154, LCD_Temp_Compensate_DS_S6D0154
in „Nokia N95-Display“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds1820.c
{ ds1820_skip_rom(); ds1820_convert_t(); rc = ds1820_reset_pulse(); if (rc == DS1820_ERR_OK) { ds1820_skip_rom(); ds1820_read_scratchpad(sp); rc = ds1820_reset_pulse(); sp->crc_calc = ds1820_crc8((char *)
in „DS18S20 in C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
05_TLV272CS-13.pdf
number: DS35394 Rev. 6 - 2 www.diodes.com © Diodes Incorporated TLV271/TLV272 Typical Performance Characteristics (cont.) 0 300.0 VDD=5V,IC= DD/2 V = +2.7V 270.0 V = V /2, R = 50Ω DD O DD S ) VDD= ±5V ) 240.0 V
in „TLV272 Rail to Rail Problem DIODES“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XCS20-3VQ100C.pdf
0 D Q D Q LE 1 sd D Q D Q 0 LE 1 IOB.I 0 DATAOUT UPDATE EXTEST SHIFT/ CLOCK DATA CAPTURE REGISTER DS060_20_080400 Figure 20: Spartan/XL Boundary Scan Logic 22 www.xilinx.com DS060 (v1.8) June 26, 2008 Product Specification R Spartan and Spartan-XL FPGA Families Data Sheet Table 12: Boundary Scan Instructions
in „[V] Spartan FPGA“ · Markt ·
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Datei
serielle_Schnittstelle_EPROM_80C31.asm
TI aus 30 F5 ]------ MOV SBUF,A Akkuinhalt in den Sendepuffer 31 99 ] (SBUF) schreiben 32 22 ]------ RET Return zum Hauptprogramm,Adr.21 33 00 ]------ NOP Keine Operation Echoprogramm EPROM (Prgr. 42),Serielle Schnittstelle 9600 Baud, NoP,1 SB,cs,ds,cd" AS#1 ohne WR-Impuls Adressen: Daten: Adressen
in „Unsauberes UART Signal“ · Mikrocontroller und Digitale Elektronik ·
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DS18B20.pdf
of the temperature register is +85°C. BIT 7 BIT 6 BIT 5 BIT 4 BIT 3 BIT 2 BIT 1 BIT 0 S 26 25 24 23 22 21 20 Figure 5. H and TLRegister Format Maxim Integrated 6 www.maximintegrated.com DS18B20 Programmable Resolution 1-Wire Digital Thermometer or equal to TLor higher than or equal to H , an alarm con
in „DS18B20 Sensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Chess-Schematic.PDF
S144 RS14 S155 RS15 S166 RS166 SIPO_SRCK PISIPO30SRCK DRAIN3 PISIPO306 150 ID00 LD00 R01 R020 5V PISO22 10K 10K 10K 10K 10K 10K 10K 10K 5V PISIPO30CLR DRAIN7 PISIPO3LD00 LD00 R11 R121 5V 150 PIPISO20DS P0 PIPISO2071 PS2 10 PS2 10 PS2 S0 PS0 S0 PR2 S0 PR2 I0 PR2 I0 PI2 GND PISIPO30G DRAIN6 PISIPO3013 150
in „Spannungsabfall bei Last“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Devices.txt
CPOL-EUE5-10.5 24 BYV28 24 BC107A 24 7408N 24 4094N 23 R-EU_0309/12 23 MAX3000 23 C-EUC0603K 23 74LS04N 22 R1206@2 22 PINHD-2X5 22 NEWD 22 MEGA16-P 22 MA03-1 22 AT90S2313P 21 PINHD-1X5 21 MA05-2 21 JP5Q 21 HCPL0500 21 C-USC0603K 21 BC337 21 31-XX 20 XTAL/S 20 TL082P 20 R-EU_R0603R 20 OHMSCHER_WIDERSTANDSMD
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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L6206.pdf
15 20 25 30 VS [V] V [V] S Figure 26. Normalized typical quiescent current Figure 27. Normalized R DS(ON) vs.junction vs. switching frequency temperature (typical value) Iq / (Iq @ 1 kHz) RDS(ON)/ (DS(ON) 25 °C) 1.7 1.8 1.6 1.6 1.5 1.4 1.4 1.3 1.2 1.2 1.1 1.0 1.0 0.8 0.9 0 20 40 60 80 100 120 140 0 20 40 60 80 100 f [kHz] Tj [°C] SW Figure 28. Typical low-side R DS(ON) vs. supply Figure 29. Typical drain-source diode forward voltage ON characteristic R DS(ON) ] ISD[A] 0.300 3.0 Tj= 25 °C 0.296 T = 25 °C 2.5 j 0.292 2.0 0.288 1.5 0.284 1.0 0.280 0.5 0.276 0.0 0
in „l6206 Datenblatt Fehler?“ · Mikrocontroller und Digitale Elektronik ·
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LDO.pdf
. SVR vs. frequency Figure 19. Output noise spectral density (V =O1.2 V) DS12022 - Rev 6 page 11/23 LDL1117 Typical characteristics Figure 20. Stability plan (VOUT = 5 V) Figure 21. Stability plan (VOUT = 1.2 V) Figure 22. Turn-on time (V OUT = 5 V) Figure 23. Turn-on time (
in „STM32 - 5V tolerante Pins bei Startup“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.asm
; .def Temp_Wait = R20 ; .def RAM_High = R21 ; Umrechnung OW_Temp_MSB ==> RAM_High .def RAM_Low = R22 ; Umrechnung OW_Temp_LSB ==> RAM_Low .def Curr_CRC_2 = R23 ; CRC_Ausgabe .def Fehler_Bit = R24 ; Fehler_Bit .equ DS_RESET = 0 ; DS18x20 RESET Fehler .equ CRC_ROM = 1 ; DS18x20 RAM CRC Fehler .equ CRC_RAM
in „AVR ATtiny13 DS18B20/DS18S20 I2C PCF8574 LCD Temperaturanzeige“ · Projekte & Code ·
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PDF
lm317-1.pdf
Characteristics Output Capacitor = 0 µF unless otherwise noted Load Regulation Current Limit Adjustment Current DS009063-37 DS009063-38 DS009063-39 Dropout Voltage Temperature Stability Minimum Operating Current DS009063-40 DS009063-41 DS009063-42 Ripple Rejection Ripple Rejection Ripple Rejection DS009063-43 DS009063
in „Konstantstromquelle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM317__NAT.pdf
Characteristics Output Capacitor = 0 µF unless otherwise noted Load Regulation Current Limit Adjustment Current DS009063-37 DS009063-38 DS009063-39 Dropout Voltage Temperature Stability Minimum Operating Current DS009063-40 DS009063-41 DS009063-42 Ripple Rejection Ripple Rejection Ripple Rejection DS009063-43 DS009063
in „Frage zu Spannungs/Stromregelschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IOR__IRFR6215.pdf
On-Resistance––– ––– 0.58 V GS= -10V, D = -6.6A TJ= 150°C VGS(th) Gate Threshold Voltage -2.0 ––– -4.0 V V DS= VGS ,DI = -250µA gfs Forward Transconductance 3.6 ––– ––– S V DS= -50V, D = -6.6A I Drain-to-Source Leakage Current ––– ––– -25 V DS= -150V, VGS = 0V DSS ––– ––– -250 µA V DS= -120V, VGS = 0V, J = 150
in „wie 24V-Busspannung mit 3,3V schalten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS3232M_RTC_Board_R1.pdf
1 2 3 4 DS323M RTC BOARD D D 3V3 3V3R U2 VCC 3V3 JP1 2 3 TP2 32KHZ VoutVin 1 TP4 REGEN C3 C5 Vss C4 32kHz 10uF, 16V R6 R1 3.3V 1u MCP1700 1u 100R0 1K R2 (CSNN) U1 100K GND GND GND GND J1 3V3 DS3232M C1 2 3 INTSQWDR
in „RTC DS3231 - Temperatur Daten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BSS138.pdf
Referenced to 25°C –2 mV/°C ∆T J Temperature Coefficient RDS(on) Static Drain–Source VGS = 10 V, ID= 0.22 A 0.7 3.5 Ω On–Resistance VGS = 4.5 V, ID= 0.22 A 1.0 6.0 VGS = 10 V, D = 0.22 A, J = 125°C 1.1 5.8 D(on) On–State Drain Current VGS = 10 V, V DS= 5 V 0.2 A gFS Forward Transconductance VDS = 10V, ID= 0.22 A 0.12 0.5 S Dynamic Characteristics Ciss Input Capacitance V = 25 V, V = 0 V, 27 pF DS GS Coss Output Capacitance f = 1.0 MHz 13 pF Crss Reverse Transfer Capacitance 6 pF R Gate Resistance V = 15 mV
in „L4791 Step-down stirbt - wieso?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BSS138.pdf
Referenced to 25°C –2 mV/°C ∆T J Temperature Coefficient RDS(on) Static Drain–Source VGS = 10 V, ID= 0.22 A 0.7 3.5 Ω On–Resistance VGS = 4.5 V, ID= 0.22 A 1.0 6.0 VGS = 10 V, D = 0.22 A, J = 125°C 1.1 5.8 D(on) On–State Drain Current VGS = 10 V, V DS= 5 V 0.2 A gFS Forward Transconductance VDS = 10V, ID= 0.22 A 0.12 0.5 S Dynamic Characteristics Ciss Input Capacitance V = 25 V, V = 0 V, 27 pF DS GS Coss Output Capacitance f = 1.0 MHz 13 pF Crss Reverse Transfer Capacitance 6 pF R Gate Resistance V = 15 mV
in „I2C Spannung von kleiner 5V auf 5V mit NMOSFET wandeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BSS138.pdf
Referenced to 25°C –2 mV/°C ∆T J Temperature Coefficient RDS(on) Static Drain–Source VGS = 10 V, ID= 0.22 A 0.7 3.5 Ω On–Resistance VGS = 4.5 V, ID= 0.22 A 1.0 6.0 VGS = 10 V, D = 0.22 A, J = 125°C 1.1 5.8 D(on) On–State Drain Current VGS = 10 V, V DS= 5 V 0.2 A gFS Forward Transconductance VDS = 10V, ID= 0.22 A 0.12 0.5 S Dynamic Characteristics Ciss Input Capacitance V = 25 V, V = 0 V, 27 pF DS GS Coss Output Capacitance f = 1.0 MHz 13 pF Crss Reverse Transfer Capacitance 6 pF R Gate Resistance V = 15 mV
in „P-Mosfet, Plus schalten mit 3.3V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BSS138.pdf
Referenced to 25°C –2 mV/°C ∆T J Temperature Coefficient RDS(on) Static Drain–Source VGS = 10 V, ID= 0.22 A 0.7 3.5 Ω On–Resistance VGS = 4.5 V, ID= 0.22 A 1.0 6.0 VGS = 10 V, D = 0.22 A, J = 125°C 1.1 5.8 D(on) On–State Drain Current VGS = 10 V, V DS= 5 V 0.2 A gFS Forward Transconductance VDS = 10V, ID= 0.22 A 0.12 0.5 S Dynamic Characteristics Ciss Input Capacitance V = 25 V, V = 0 V, 27 pF DS GS Coss Output Capacitance f = 1.0 MHz 13 pF Crss Reverse Transfer Capacitance 6 pF R Gate Resistance V = 15 mV
in „Logic Level Hype“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Drehzahl-ST.asm
wr0 ; IRQ bei k = 1/2 * fpwm ldi drehzahl, dz ; nur bei 1 MHZ !!! ; Prescaler = 128 ; Fclk/128 -> DS S.119 T46, Phase Correctly PWM - ein DS. S.117 T42 ; OC2 pin 14 PB3 - HIGH = Match->TOP->Match -DS. S118 T45 ldi wr0, 0x75 ; 01110101 out TCCR2, wr0 ; ; Timer0/Counter0 einstellen ; f = 3,815 KHz ; T
in „Fehler im ASM-Code zur Motorsteuerung“ · Mikrocontroller und Digitale Elektronik ·
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DSPIC33EP512GM710_datasheet.pdf
be ceramic or tantalum. See Section 33.0 “Electrical Characteristics” for additional information. DS70000689D-page 22 2013-2014 Microchip Technology Inc. dsPIC33EPXXXGM3XX/6XX/7XX 2.5 ICSP Pins 2.6 External Oscillator Pins The PGECx and PGEDx pins are used for ICSP and Many DSCs have options for at
in „Probleme mit SRAM 23LCV1024“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mdlm7301.pdf
-24 DS012842-12 DS012842-13 V Os I O V S = ± 2.5V Short Circuit Current Voltage Noise vs Supply Voltage vs Frequency DS012842-25 DS012842-26 DS012842-14 www.national.com 6 Typical Performance Characteristics
in „Problem mit OP als Spannungsfolger vor ADC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PHC2300_3_1_.pdf
VGS = 0; DS = 50 V; f = 1 MHz − 102 − pF P-channel VGS = 0; DS = −50 V; f = 1 MHz − 45 − pF C output capacitance oss N-channel VGS = 0; DS = 50 V; f = 1 MHz − 15 − pF P-channel VGS = 0; DS = −50 V; f = 1 MHz − 15 − pF C reverse transfer capacitance rss N-channel VGS = 0; DS = 50 V; f = 1 MHz − 7.3 − pF P-channel VGS = 0; DS = −50 V; f = 1 MHz − 3 − pF QG total gate charge N-channel VGS = 10 V; DS= 50 V; D = 170 mA − 6240 − pC P-channel VGS = −10 V; DS= −50 V; D = −115 mA
in „[S] PHC2300 komplementär Mosfet SO8 / Bestellung Farnell/HBE“ · Markt ·
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PDF
3703fc.pdf
DS tothecurve IN thehighcurrentefficiencygenerallyimproveswithlarger specifiedV DS values.AwaytoestimatetheC MILLER term MOSFETs,whileforV IN>25V,thetransitionlossesrapidly is to take the change in gate
in „Längs- oder Querregler 40V 250W als Überspannungsschutz für Tiefstellsetzer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SST89x516.pdf
P3.5 15 26 P2.5 (A13) (WR#) P3.6 16 25 P2.4 (A12) (RD#) P3.7 17 24 P2.3 (A11) XTAL2 18 23 P2.2 (A10) 22 P2.1 (A9) XTAL1 19 VSS 20 21 P2.0 (A8) 1273 40-pdip PI P2.0 Figure 3: Pin Assignments for 40-pin PDIP ©2013 Silicon Storage Technology, Inc. DS25093B 02/13 5 FlashFlex MCU SST89E516RD2 / SST89E516RD
in „Einstieg in 8051 - Atmels AT89S52 oder?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
564746-da-01-en-MOSFET_N_KA_800V_STP4N80K5_TO_220AB_STM.pdf
current GS = 0) VDS = 800 V, TC=125 °C 50 µA Gate-body leakage IGSS current (V = 0) VGS = ± 20 V ±10 µA DS V Gate threshold voltage V = V , I = 100 µA 3 4 5 V GS(th) DS GS D Static drain-source on- RDS(on) VGS = 10 V, D = 1.5 A 2.1 2.5 Ω resistance Table 5. Dynamic Symbol Parameter Test conditions Min. Typ
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Battery-Protection-LiIon-2S-HY2120.pdf
...................................................................................................22 © 2009-2015 HYCON Technology Corp DS-HY2120-V15_EN www.hycontek.com page2 HY2120 2-Cell Lithium-ion/Lithium Polymer Battery Packs Protection ICs Attention: 1. HYCON Technology Corp. reserves the right
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Battery-Protection-LiIon-2S-HY2120.pdf
...................................................................................................22 © 2009-2015 HYCON Technology Corp DS-HY2120-V15_EN www.hycontek.com page2 HY2120 2-Cell Lithium-ion/Lithium Polymer Battery Packs Protection ICs Attention: 1. HYCON Technology Corp. reserves the right
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Datei
main.lst
: \ 00000000 DS8 4 \ In segment DATA_AN, at 0xe01fc000 \ union <unnamed> volatile __data _A_MAMCR \ _A_MAMCR: \ 00000000 DS8 4 \ In segment DATA_AN, at 0xe01fc004 \ union <unnamed> volatile __data _A_MAMTIM \ _A_MAMTIM
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R7G_-_T7G.pdf
(2) 2 433.125(2) 19 433.975(2) 3 433.175(2) 20 434.025(2) 4 433.225(2) 21 434.075 (1) 5 433.275(2) 22 434.125(2) 6 433.325(2) 23 434.175(2) 7 433.375(2) 24 434.225(1) 8 433.425(2) 25 434.275(2) 9 433.475(2) 26 434.325 (2) 10 433.525(2) 27 434.375(2) 11 433.575(2) 28 434.425(2) 12 433.625(2) 29 434.475
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