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68332_test.pdf
A10 26 A9 D11 122 D11 A11 51 A11 A11 23 A10 A11 23 A10 D12 119 D12 A12 52 A12 A12 25 A11 A12 25 A11 D13 118 D13 A13 56 A13 A13 4 A12 A13 4 A12 D14 117 57 A14 A14 28 A14 28 D15 116 D14 A14 58 A15 A15 3 A13 A15 3 A13 D15 A15 60 A16 A16 31 A14 A16 31 A14 CS2 140 A16 63 A17 A17 2 A15 A17 2 A15 CSBOOT A17 A18
in „Motorola MC68332 und BD32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Seiten_aus_FDV303N.pdf
Transconductance V DS5 V, I D 0.5 A 1.45 S DYNAMIC CHARACTERISTICS C iss InputCapacitance V DS10 V, V =GS V, 50 pF C oss Output Capacitance f = 1.0 MHz 28 pF C rss ReverseTransferCapacitance 9 pF SWITCHING CHARACTERISTICS
in „Antiparallele Dioden??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irlml2502.pdf
= 4.0A fs DS D ––– ––– 1.0 VDS= 16V, VGS= 0V IDSS Drain-to-Source Leakage Current ––– ––– 25 µA V = 16V, V = 0V, T = 70°C DS GS J Gate-to-Source Forward Leakage ––– ––– -100 VGS= -12V GSS Gate-to-Source Reverse Leakage
in „suche Transistor 5V 2A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irlml6401.pdf
On-Resistance Vs. Temperature www.irf.com 3 IRLML6401 1200 10 I = VGS = 0V, f = 1 MHZ D -4.3A Ciss = gs+ Cgd C ds SHORTED ) V DS =-10V 1000 C = C ( rss gd e 8 Coss = Cds Cgd a F Ciss o ( 800 V c e 6 n r i 600 o a - a t 4 C t C 400 a Coss , Crss S 200 G 2 - 0 0 1 10 100 0 4 8 12 16 V , Drain-to-Source Voltage (V) Q G Total Gate Charge (nC) DS Fig 5. Typical Capacitance Vs. Fig 6. Typical Gate Charge Vs. Drain-to-Source Voltage Gate-to-Source Voltage 100 1000 OPERATION IN THIS AREA LIMITED BY R DS(on) A t e )100 r ( u 10 n n TJ= 150 C e 10us
in „CMOS Transistoren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRLML6401.pdf
On-Resistance Vs. Temperature www.irf.com 3 IRLML6401 1200 10 I = VGS = 0V, f = 1 MHZ D -4.3A Ciss = gs+ Cgd C ds SHORTED ) V DS =-10V 1000 C = C ( rss gd e 8 Coss = Cds Cgd a F Ciss o ( 800 V c e 6 n r i 600 o a - a t 4 C t C 400 a Coss , Crss S 200 G 2 - 0 0 1 10 100 0 4 8 12 16 V , Drain-to-Source Voltage (V) Q G Total Gate Charge (nC) DS Fig 5. Typical Capacitance Vs. Fig 6. Typical Gate Charge Vs. Drain-to-Source Voltage Gate-to-Source Voltage 100 1000 OPERATION IN THIS AREA LIMITED BY R DS(on) A t e )100 r ( u 10 n n TJ= 150 C e 10us
in „parasitäres Glimmen beim LED-Muxing. Transistoren? Einstreuungen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRLML6401.pdf
On-Resistance Vs. Temperature www.irf.com 3 IRLML6401 1200 10 I = VGS = 0V, f = 1 MHZ D -4.3A Ciss = gs+ Cgd C ds SHORTED ) V DS =-10V 1000 C = C ( rss gd e 8 Coss = Cds Cgd a F Ciss o ( 800 V c e 6 n r i 600 o a - a t 4 C t C 400 a Coss , Crss S 200 G 2 - 0 0 1 10 100 0 4 8 12 16 V , Drain-to-Source Voltage (V) Q G Total Gate Charge (nC) DS Fig 5. Typical Capacitance Vs. Fig 6. Typical Gate Charge Vs. Drain-to-Source Voltage Gate-to-Source Voltage 100 1000 OPERATION IN THIS AREA LIMITED BY R DS(on) A t e )100 r ( u 10 n n TJ= 150 C e 10us
in „LED Multiplexer glimmt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VRE104c_Thaler.pdf
Power Supply +13.5 +22 * * * * * * V Operating Temperature -25 85 * * -55 125 -55 125 °C Storage Temperature -65 150 * * * * * * °C Short Circuit Protection Continuous * * * OUTPUT VOLTAGE VRE104 +4.5 * * * V OUTPUT
in „[V] Referenzspannungsquellen VRE Thaler Corp.“ · Markt ·
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PDF
DS1210.pdf
consumption. The 8-pin DIP package keeps PC board real estate requirements to a minimum. By combining the DS1210 Nonvolatile Controller Chip with a CMOS memory and batteries, nonvolatile RAM operation can be achieved. 1 of 6 111899 DS1210 OPERATION The DS1210 nonvolatile controller performs five circuit functions
in „Suche Chip aus Mega-Drive-2-Spielplatine“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1210.pdf
consumption. The 8-pin DIP package keeps PC board real estate requirements to a minimum. By combining the DS1210 Nonvolatile Controller Chip with a CMOS memory and batteries, nonvolatile RAM operation can be achieved. 1 of 6 111899 DS1210 OPERATION The DS1210 nonvolatile controller performs five circuit functions
in „DS1210 als Ersatz für BA6162?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AL5801.pdf
On-Resistance RDS (ON) ⎯ ⎯ 0.99 Ω V GS= 6V, D = 1A Forward Transconductance gfs ⎯ 0.9 ⎯ S V DS= 15V, D = 1A Diode Forward Voltage V SD ⎯ 0.89 1.1 V V GS= 0V, S = 1.5A DYNAMIC CHARACTERISTICS Input Capacitance Ciss ⎯ 129 ⎯ pF V = 50V, V = 0V Output Capacitance C oss ⎯ 14 ⎯ pF DS GS f = 1.0MHz Reverse
in „Suche Konstantstromquelle effizient, klein und günstig.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DMOS_Analog_Switch_Introduction.pdf
353-0261 recommended for the output. Since C GD < C GS The circuit shown in Figure 4 exhibits the r DS(on) this causes less charge injection noise on the vs. analog signal voltage relationship shown in load. Figure 5. As can be seen from Figures 3a and 3b, the When the analog signal excursion is large
in „Gerät elektronisch abschalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Techniques_for_Robust_Touch_Sensing_Design_AN1334.pdf
breakdown diodes, between V DD and ground to shunt the ESD current. 2010-2013 Microchip Technology Inc. DS00001334B-page 13 AN1334 For transient charge coupling to the PCB, there are Typically, these boards utilize the same V DD as the several approaches that may help resolve this issue: capacitive sensor
in „Wie realisiert man Sensortasten?“ · Analoge Elektronik und Schaltungstechnik ·
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DCF77_telegram.txt
Hello world! This is the experimental 2313 board (C)DG4FAC at work. ? for help. *> *>ds Date/Time echo. SPACE to leave. 01.12.2013, 13:27:39 01.12.2013, 13:27:40 01.12.2013, 13:27:41 *>dm Date/Time echo. SPACE to leave. DCF: Synchronisation. 01.12.2013, 13:28:00 *>? List of commands: d?: Display date/time. *> Error! Unknown command! *>ds Date/Time echo. SPACE to leave. 01.12.2013, 13:28:54 01.12.2013, 13:28:55 01.12.2013, 13:28:56 01.12.2013, 13:28:57 01.12.2013, 13:28:58 01.12.2013, 13:28:59 DCF: Synchronisation. 01.12.2013, 13:29:00
in „Pollin DCF77 - Empfangsprobleme anderer Art“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UP6281B8.pdf
-------------------------------------------------------------------------------------------+10.8Vto13.2V Electrical Characteristics (VCC = 12V, TA= 25 C, unless otherwise specified) Parameter Symbol Test Conditions Min Typ Max Unit Supply Input Supply Input Voltage V 10.8 -- 13.2 V Supply Input Current
in „Am3 Mainboard Vcore instabil wenn kalt“ · PC Hard- und Software ·
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PDF
Wohnraumuhr2_Rev1.2.pdf
B6 B1 R102 18 b AN B17 18 b AN QG 7 B7 B2 R103 16 a b B18 R119 16 a b QH R104 c h R120 c h B3 R105 13 d km n c B19 R121 13 d km n c ENA 13 G QH* 9 B4 R106 10 e B20 R122 10 e B5 9 f B21 9 f 74HC595N B6 R107 8 g B22 R123 8 g B7 R108 4 h u p B23 R124 4 h u p B8 R109 3 k B24 R125 3 k 14 15 B8 B9 R110 2 m
in „wohnraumuhr 2 - leiterplatte nach projekt scott huehn“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS75160__161__162_GPIB-Transceiver.pdf
D 7 February 1996 5 1 6 A DS75160A/DS75161A/DS75162A / D IEEE-488 GPIB Transceivers S General Description Features 7 This family of high-speed-Schottky 8-channel bi-directionalnel bi-directional non-inverting transceivers transceivers
in „PM2528 als Scannermultimeter mit GPIB“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Nahaufnahme einer Leiterplatte mit Mikrocontroller
DS13 DS12 3.3V T. R. DS11 GND R230 3.3V RX TX GND DS8 D6 C8 037 R163 C7 R4 RE R2 R R3 C3 R150 R2 N 201 101 R5 DS1 C2 2KU-MCU-MIN 8.000 MHz Date 20210812 101 102 C8 R2 103 19 R23 30E 101 102 R20
in „ALLPOWERS S2000 PRO Reparaturhilfe“ · Mikrocontroller und Digitale Elektronik · · Platinenfotos
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Datei
DS10-g0134-PID.c
********** // * Datenspeicher 10 * // ******************* // Flüssigkristallanzeige LMK62R125A1 // DS18B20 NR. 13,14,15,16 an 63-10 Adresse 0x18 /************************************************************************/ /* Messstelle 3 = Spannungseingang P6.3 */ /* Messstelle 2 = Spannungseingang P6.2
in „while-Schleife wird "unerlaubt verlassen"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ethernet_Transformer_Datasheet.pdf
9 0 0 2 ( 0 0,018 typ 0,050 typ (0,457) (1,270) 1 2 3 6 7 8 Ordering information Order-No.: 538431 DS_FS23_V6.PDF Beck IPC GmbH E-Mail: info@beck-ipc.com © Beck IPC GmbH Grüninger Weg 24 www.beck-ipc.com Product: SC13, SC1x3 35415 Pohlheim/Germany A member of the Festo group The following IPC/JEDEC J-STD
in „Ethernet Übertrager“ · Mikrocontroller und Digitale Elektronik ·
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PDF
miniboard.pdf
V9 IO_L6P_D5_LC_2 IO_L2P_D13_LC_2 V6 FLASH_D13 FLASH_D10 V12 IO_L5N_D6_LC_2 IO_L1N_D14_CC_LC_2 V15 FLASH_RESET_N VCCO1 FLASH_A09 V13 IO_L5P_D7_LC_2 IO_L1P_D15_CC_LC_2 V16 FLASH_WE_N XC4VFX12-SF363 B 5 1 3 B U1 T U Y 1 2 81 U1 T
in „Xinlinx Virtex-4 FX12 363 / Miniboard / Clock Pin“ · FPGA, VHDL & Co. ·
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PDF
ch32v003_getting_started.pdf
ein Acknowledge gesendet 0 : es wird kein Acknowledge gesendet Rückgabe: vom I2C-Bus gelesenes Byte ds18b20_single.h / ds18b20_single.c Mit ds18b20_single kann ein DS18B20 Temperatur- sensor ausgelesen werden. Obwohl die Datenkommunikation des Sensors über einen "OneWire-Bus" erfolgt und der Sensor DS18B20
in „CH32V003: Selbstbauprogrammer und "Getting started"“ · Projekte & Code ·
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PDF
BSP149_Rev1.1.pdf
0 V - - 10 nA On-state drain current IDSS V GS=0 V, V DS=10 V 140 - - mA Drain-source on-state resistance R DS(on) V GS=0 V, ID=70 mA - 1.7 3.5 Ω V GS=10 V, ID=660 mA - 1.0 1.8 |V |>2|I |R , Transconductance g fs DS D DS(on)max 0.4 0.8 - S ID=0.48 A 3) Threshold
in „BF246B probleme“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Funkmodul.pdf
FROM 2.2 TO 6 VOLTS REJECTION 50DB • 10mW ON 433.92MHZ (EUROPE) , 1mW ON • SUPPLY 3.0 TO 6.0 VOLTS @ 13MA 418MHZ (UK) • 40KBIT/S, -F VERSION , -100 DBM • HIGH EFFICIENCY, >15% , DC --> RF SENSITIVITY @ 1PPM BER • IMPROVED FREQUENCY AND DEVIATION • 14KBIT/S. -A VERSION , -107 DBm ACCURACY SENSITIVITY @
in „Funkübertragung über uC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irl7486mpbf-936689.pdf
applications V DSS 40V Battery powered circuits Half-bridge and full-bridge topologies R typ. 1.0m DS(on) Synchronous rectifier applications Resonant mode power supplies max 1.25m @ V GS = 10V OR-ing and redundant power switches DC/DC and AC/DC converters DC/AC Inverters R DS(on)typ.
in „Reparatur Makita XWT08Z (DTW1002Z)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTC1477_LinearTechnology.pdf
FEATURES DESCRIPTION Extremely Low R Switch: 0.07 The LTC 1477/LTC1478 protected high side switches DS(ON) No Parasitic Body Diode provide extremely low R DS(ON) switching with built-in Built-In Short-Circuit Protection: 2A protectionagainstshort-circuitandthermaloverloadcon- Built-In Thermal Overload
in „TPS61175 Overccurent Protection Mode“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
DS10-g0133-PID.c
********** // * Datenspeicher 10 * // ******************* // Flüssigkristallanzeige LMK62R125A1 // DS18B20 NR. 13,14,15,16 an 63-10 Adresse 0x18 /************************************************************************/ /* Messstelle 3 = Spannungseingang P6.3 */ /* Messstelle 2 = Spannungseingang P6.2
in „while-Schleife wird "unerlaubt verlassen"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
538824.attach.pdf
Board CCA. The +12 Vdc output of U1 is fed via J3-1 to the series-parallel combination of flood lamps (DS1, DS2) and spot lamp (DS3) in the Lighting And Sensing Assembly. It is returned to chassis ground (E2) from the parallel DS1, DS2 lamps via J3-2 and FET light switch Q1 (or relay K2). Q1 is switched
in „Fotozellen-gesteuerte Brennschneidmaschine zuckt rum“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
538824.attach.pdf
Board CCA. The +12 Vdc output of U1 is fed via J3-1 to the series-parallel combination of flood lamps (DS1, DS2) and spot lamp (DS3) in the Lighting And Sensing Assembly. It is returned to chassis ground (E2) from the parallel DS1, DS2 lamps via J3-2 and FET light switch Q1 (or relay K2). Q1 is switched
in „Autogenbrenner elektrisch zünden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Microchip_AppNote_00994a.pdf
): 10A Reference Frequency: 50 Hz Temperature: 23°C Humidity: 45% © 2005 Microchip Technology Inc. DS00994A-page 13 AN994 Certificate of EMC Compliance DS00994A-page 14 © 2005 Microchip Technology Inc. AN994 REFERENCES [1] Steven R. Norsworthy, Richard Schreier, Gabor C. Temes, “Delta-Sigma Data Converters
in „Strom 10A bis 300A messen mit Tiny26“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan Dual Slim FDD Adapter v1.1
Dual Slim FDD Adapter v1.1 (C) RBSC 2022 CN3 1 DCHG 2 INDEX 3 NC1 4 DS1 5 NC2 6 DS0 7 INDEX 8 READY 9 INDEX 10 MOTON 11 DS0 12 DIR 13 DS1 14 STEP 15 DS2 16 UD 17 MOTON 18 UGATE 18 DIR 19 STEP 20 STEP 20 TK0 21 WD 22 WD 22 APBOT 23 WD 24 WGATE 24 WGATE 25 2KGND 26 SIDESEL
in „Pinbelegung 3,5" Floppy mit FPC26“ · PC Hard- und Software · · Schaltpläne
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PDF
MT48LC16M16A2.PDF
AUTOPRECHARGE ENABLE AUTOPRECHARGE A10 ROW ROW ROW t t AS AH BA0, BA1 BANK 0 BANK 0 BANK 1 BANK 1 BANK 0 DS DH tDS tDH tDS tDH DS tDH DS tDH tDS DH tDS tDH DS tDH DINm DINm+ 1 D INm+ 2 DINm+ 3 DINb DINb + 1 DINb + 2 DINb + 3 DQ t t t t RCD - BANK 0 WR - BANK 0 RP - BANK 0 RCD - BANK 0 t RAS - BANK 0 tRC -
in „[Verkaufe] 5xSDRAM (4Meg x 16 x 4 Banks) und 5xFLASH (64Meg 8 o. 16 Bit)“ · Markt ·
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PDF
BOM-GH-TFT.pdf
0,27 6 TFT-Display 1 LQ043T3DX02, Sharp 27,66 27,66 7 Touch-Panel 1 HT043A-NCOFD52-R, Hantouch CSD 13,00 13,00 8 IC1 1 LT1932 SOT23/6 2,60 2,60 9 IC2 1 TSC2046E TSSOP16 5,42 5,42 10 IC3 1 LT1930 SOT23/5 2,80 2,80 11 J3, J4 2 Pfostenleiste 2X32 RM2,54 0,25 0,50 12 K1 1 FPC/FFC4TC_P1 FPC/FFC 4pol.,Top-Contact
in „Grasshopper und TFT Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CLIPDecoder_Antoniak.pdf
D D D D R20 CALL VCC 4k7 1 2 3 4 5 6 7 8 9 1 1 1 1 1 T2 BC548B C13 R18 C10 PR1 470n 47k 100n 1k GND GND GND GND GND GND U2 AT90S2313 C11 22p 5 12 XTAL1 PB0(AIN0) 13 X1 PB1(AIN1) VCC C12 10MHz PB2 14 B 22p PB3(OC1) 15 JP1 B 4 XTAL2 PB4 16 1 PB5(MOSI) 17 2 1 18 GND RESET
in „Kryptischer CLIP-Decoder“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CLIPDecoder_Antoniak.pdf
D D D D R20 CALL VCC 4k7 1 2 3 4 5 6 7 8 9 1 1 1 1 1 T2 BC548B C13 R18 C10 PR1 470n 47k 100n 1k GND GND GND GND GND GND U2 AT90S2313 C11 22p 5 12 XTAL1 PB0(AIN0) 13 X1 PB1(AIN1) VCC C12 10MHz PB2 14 B 22p PB3(OC1) 15 JP1 B 4 XTAL2 PB4 16 1 PB5(MOSI) 17 2 1 18 GND RESET
in „Festnetzklingel mit Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
On-State Resistance (VGS = 10V, 0.5D[Cont.] 0.011 Ohms Zero Gate Voltage Drain Current (= V , V = 0V) I DS DSS GS 250 A DSS Zero Gate Voltage Drain Current (= 0.8 V , V = 0V, T = 125°C) 1000 DS DSS GS C GSS Gate-Source Leakage Current (GS= ±30V, VDS = 0V) ±100 nA VGS(th) Gate Threshold Voltage DS = VGS, D
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PDF
en.CD00002654.pdf
conditions Min. Typ. Max. Unit V Drain-source I = 1 mA, V = 0 100 V (BR)DSS Breakdown voltage D GS V DS= max rating 50 µA DSS Zero gate voltage V = max rating, Drain currentGSV= 0) T C=125°C 500 µA s ) GSS Gate-body leakage V GS= ± 20 V ±400 nA current DS = 0) u c VGS(th) Gate threshold voltage V DS= VGS, D = 250 µA 2 d3 4 V R Static drain-source on V = 10 V, I = 125 A r o 0.0045 0.0055 Ω DS(on) resistance GS D P te Table 6. Dynamic le o Symbol Parameter Tess conditions Min. Typ. Max. Unit gfs Forward transconductance VDS = 20 , D =70 A - 60 - S Ciss Input capacitance - O 31 nF ) Coss Output
in „STE250NS10 Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A4979-Datasheet.pdf
0.2(I [R +R ])+0.8(I ×2×R ) compared to the allowable power dissipation shown in figure 15. D(TOT)SS DS(on)H DS(on)L DS(on)L For critical applications, where the first order power estimate is • Non-synchronous slow decay mode close to the allowable dissipation, the power calculation should P D(TOT)NS =
in „Schrittmotor-Treiber-IC mit umfangreichen Programmiermöglichkeiten und Diagnose-Funktionen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP41010.pdf
Potentiometer P1 is only available on the dual MCP42XXX version. PDIP/SOIC/TSSOP CS 1 14 VDD SCK 2 M 13 SO P 12 SI 3 4 SHDN VSS 4 X 11 RS PB1 5 X 10 PB0 X PW1 6 9 PW0 PA1 7 8 PA0 2003 Microchip Technology Inc. DS11195C-page 1 MCP41XXX/42XXX 1.0 ELECTRICAL CHARACTERISTICS DC CHARACTERISTICS: 10 kΩ VERSION
in „Widerstand regeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
11195c.pdf
Potentiometer P1 is only available on the dual MCP42XXX version. PDIP/SOIC/TSSOP CS 1 14 VDD SCK 2 M 13 SO P 12 SI 3 4 SHDN VSS 4 X 11 RS PB1 5 X 10 PB0 X PW1 6 9 PW0 PA1 7 8 PA0 2003 Microchip Technology Inc. DS11195C-page 1 MCP41XXX/42XXX 1.0 ELECTRICAL CHARACTERISTICS DC CHARACTERISTICS: 10 kΩ VERSION
in „DC-DC Wandler mit MCP42010“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mcp41xxx.pdf
Potentiometer P1 is only available on the dual MCP42XXX version. PDIP/SOIC/TSSOP CS 1 14 VDD SCK 2 M 13 SO P 12 SI 3 4 SHDN VSS 4 X 11 RS PB1 5 X 10 PB0 X PW1 6 9 PW0 PA1 7 8 PA0 2003 Microchip Technology Inc. DS11195C-page 1 MCP41XXX/42XXX 1.0 ELECTRICAL CHARACTERISTICS DC CHARACTERISTICS: 10 kΩ VERSION
in „Schaltregler, Feedback und Op Amp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
00954A.pdf
, implicitly or otherwise, under any intellectual Analog-for-the-Digital Age, Application Maestro, dsPICDEM, property rights. dsPICDEM.net, dsPICworks, ECAN, ECONOMONITOR, FanSense, FlexROM, fuzzyLAB, In-Circuit Serial Programming, ICSP, ICEPIC, Migratable Memory, MPASM, MPLIB, MPLINK, MPSIM, PICkit,
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PDF
00954A.pdf
, implicitly or otherwise, under any intellectual Analog-for-the-Digital Age, Application Maestro, dsPICDEM, property rights. dsPICDEM.net, dsPICworks, ECAN, ECONOMONITOR, FanSense, FlexROM, fuzzyLAB, In-Circuit Serial Programming, ICSP, ICEPIC, Migratable Memory, MPASM, MPLIB, MPLINK, MPSIM, PICkit,
in „Kondensatornetzteil: Frage.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
transformerless_AC_DC.pdf
, implicitly or otherwise, under any intellectual Analog-for-the-Digital Age, Application Maestro, dsPICDEM, property rights. dsPICDEM.net, dsPICworks, ECAN, ECONOMONITOR, FanSense, FlexROM, fuzzyLAB, In-Circuit Serial Programming, ICSP, ICEPIC, Migratable Memory, MPASM, MPLIB, MPLINK, MPSIM, PICkit,
in „230V AC auf 5V DC Bauteile“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Uhr_Temp.asm
= r21 .def IRQ_index = r22 .def EE_Adr = r23 .def rawlow = r24 ;Rohwert DS18B20 LSB .def rawhigh = r25 ;Rohwert DS18B20 MSB .equ DQ = 7 ;Datenleitung des Ds18B20 .equ DS_DDR = DDRC ;Port des DS18B20 .equ DS_Port = PortC .equ DS_Pin = PinC .equ LCD = PortB ;LCD-Datenport .equ
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PDF
LM386_Low_Voltage_Audio_Power_Amplifier.pdf
Peak-to-Peak Output Voltage vs Supply Voltage (Referred to the Output) Swing vs Supply Voltage vs Frequency DS006976-5 DS006976-13 DS006976-12 Voltage Gain vs Frequency Distortion vs Frequency Distortion vs Output Power DS006976-14 DS006976-15 DS006976-16 Device Dissipation vs Output Device Dissipation vs Output
in „Elektretmikrofon und LM 386N-1 als Verstärker“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm386.pdf
Peak-to-Peak Output Voltage vs Supply Voltage (Referred to the Output) Swing vs Supply Voltage vs Frequency DS006976-5 DS006976-13 DS006976-12 Voltage Gain vs Frequency Distortion vs Frequency Distortion vs Output Power DS006976-14 DS006976-15 DS006976-16 Device Dissipation vs Output Device Dissipation vs Output
in „Spannanungsverstärkung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
soft_clip.pdf
D D D D R20 CALL VCC 4k7 1 2 3 4 5 6 7 8 9 0 2 3 4 1 1 1 1 1 T2 BC548B C13 R18 C10 PR1 100n 1k 470n 47k GND GND GND GND GND GND U2 AT90S2313 C11 22p 5 12 XTAL1 PB0(AIN0) 13 B X1 PB1(AIN1) 14 VCC B C12 10MHz PB2 15 JP1 22p PB3(OC1) 4 XTAL2 PB4 16 1 PB5(MOSI) 17 2 1 RESET PB6
in „CLIP Schaltplan; Protel->PDF Umwandlung bitte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sch_lay.pdf
DS4 DS5 S1B DS8 DS91 2 S2B 0 0 0 0 DS7 0 0 9 9 S S S S P0S1BR8 S S D D P0S2B0R81 2 0 0 0 0 P0S1B03 0 0 0 0 0 0 P0S2B03 0 0 DS1 2 P P P P DS60 0 P0S1B00 R 0 0 P P P P P0S2B00 8 8 0 0 S S P P S S DS00 0 0
in „signal- bzw. funktionsgenerator mit OPs“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AQ_Rly_Dm_lcd_lan_1_wire_18_11_12.pdf
type_s = 0; break; default: Serial.println("Device is not a DS18x20 family device."); return; } ds.reset(); ds.select(addr); ds.write(0x44,1); // start conversion, with parasite power on at the end delay(1000); // maybe 750ms is enough, maybe not // we might do a ds.depower() here, but the reset will take care of it. present = ds.reset(); ds.select(addr); ds.write(0xBE); // Read Scratchpad Serial.print(" Data = "); Serial.print(present,HEX); Serial.print(" "); for
in „Aquariumcontroller: hängt sich auf / stürzt ab / friert ein - Hilfe!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm70.c
value const uint8_t Bank0_Reg[][2] PROGMEM = { {0,0x0F},//reflect RX_DR\TX_DS\MAX_RT,Enable CRC ,2byte,POWER UP,PRX {1,0x3F},//Enable auto acknowledgement data pipe5\4\3\2\1\0 {2,0x3F},//Enable RX Addresses pipe5\4\3\2\1\0 {3,0x03},//RX/TX address field width 5byte {4,0x0F},//
in „RFM70 und ATMega16 benötige Hilfe!!“ · Mikrocontroller und Digitale Elektronik ·