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Datei
SP601_RevC_annotated_master_ucf_8-28-09.ucf
J13 (thru series R97 200 ohm) #NET "GPIO_HDR7" LOC = "P12"; ## 8 on J13 (thru series R96 200 ohm) ### NET "GPIO_LED_0" LOC = "E13"; ## 2 on DS11 LED #NET "GPIO_LED_1" LOC = "C14"; ## 2 on DS12 LED #NET "GPIO_LED_2" LOC = "C4"; ## 2 on DS13 LED #NET "GPIO_LED_3" LOC = "A4"; ## 2 on DS14 LED ### #NET "GPIO_SWITCH_0" LOC = "D14"; ## 1 on SW8 DIP Sw #NET "GPIO_SWITCH_1" LOC = "E12"; ## 2 on SW8 DIP Sw #NET "GPIO_SWITCH_2" LOC = "F12"; ##
in „Ethernet GMII“ · FPGA, VHDL & Co. ·
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PDF
25AA640A_25LC640A-MIC.pdf
SI MSB in LSB in High-Impedance SO FIGURE 1-3: SERIAL OUTPUT TIMING CS 9 10 3 Mode 1,1 SCK Mode 0,0 13 15 14 SO MSB out ISB out Don’t Care SI 2003-2013 Microchip Technology Inc. DS21830F-page 5 25AA640A/25LC640A 2.0 FUNCTIONAL DESCRIPTION 2.1 Principles of Operation 2.3 Write Sequence The 25XX640A is
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PDF
70599B.pdf
LAYER 2 – GROUND PLANE Note: Top view positive Gerber. 2009 Microchip Technology Inc. Preliminary DS70599B-page 13 MRF24J40MB FIGURE 2-5: LAYER 3 – POWER FIGURE 2-6: BOTTOM COPPER PLANE Note: Top view positive Gerber. Note: Top view. FIGURE 2-7: PCB LAYER STACK UP 1/2 oz. Copper Top Copper 8 mil FR4
in „AVR32UC3B mit Funkmodul MRF24J40MB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Readme_130816.pdf
Pinstatus von Ausgangspins setzen adc._guipy - ADC-Eingänge auslesen und Messwerte darstellen dsread.py - DS18B20-Temperatursensoren auslesen, Messwerte anzeigen Stand: 16.08.13 - Seite 1 von 6 "Rasp"-Mega IO - Readme Module in Python3.2 für einige gängige TWI-Slaves hyt221.py - TWI-Luftfeuchtigkeits-/Temperatursensor
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ds18s20.pdf
Read Power Supply [B4h] With every read data time slot issued after this command has been sent to the DS18S20, the device will signal its power mode: 0=parasite power, 1=external power supply provided. 13 of 27 DS18S20 MEMORY FUNCTIONS FLOW CHART Figure 9 MASTER TXMEMORY OR CONTROL COMMAND 4Eh N BEh N WRITE
in „Messabweichung beim 1-wire DS1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_002.pdf
Read Power Supply [B4h] With every read data time slot issued after this command has been sent to the DS18S20, the device will signal its power mode: 0=parasite power, 1=external power supply provided. 13 of 27 DS18S20 MEMORY FUNCTIONS FLOW CHART Figure 9 MASTER TXMEMORY OR CONTROL COMMAND 4Eh N BEh N WRITE
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MBI5039_Preliminary_Datasheet_V1.01-English.pdf
IOUT=20mA R ext700Ω - ±3.0 ±6.0 % V DS=1.0V Output Current vs. V DSwithin 1.0V and 3.0V, Output Voltage Regulation* %/dV DS R ext700Ω@20mA - ±0.1 ±0.3 % / V Output Current vs. %/dV DD V DDwithin 4.5V and 5.5V - ±1.0 ±2.0 % / V Supply Voltage
in „LED-Treiber-IC mit möglichst vielen Ausgängen“ · Mikrocontroller und Digitale Elektronik ·
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BMA456.pdf
DATA_13 12. Calculate difference of positive and negative acceleration values and compare against threshold values Document number: BST-BMA456-DS000-07 Modifications reserved | Data subject to change without
in „Datenlogger Pendeluhr“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT91SAM7A3-EK.pdf
GND_ADC GND_ADC GND_ADC S26 6 LIN WAKE 3 3V3 PB[0..29] C38 C39 220pF 100NF 5 MN5A GND S27 R23 120R DS4 GREEN ATA6661 PA25 1 2 74ALVC04 B PB13 B PB8 MN5B S28 R24 120R DS3 GREEN 3V3 MN11 PA24 3 4 16 1 C41 C40 VCC C1+ 100NF 3V3 BP1 100NF 74ALVC04 3V3 100K 8 1 1 4 SERIAL DEBUG PORT 15 GND RR3 7 2 PB12 2 5 C1- 3 6 3 PB14 3 6 2 V+ C2+ 4 C43 5 4 C42 100NF MN5C DS2 GREEN 1 100NF R25 S29 R26 120R 6 100K PA21 5 6 2 C44 6 5 PB9 7 100NF V- C2- S31 3 14 11 DBGU_TXD PA31 74ALVC04 UP = PB8 T 8 DOWN = PB9 4 LEFT = PB12 9 7 T 10 RIGHT = PB13 5 MN5D DS1 GREEN PUSH = PB14
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DS1267.pdf
relative linearity 16-Pin SOIC (300-mil) § Standard resistance values: See Mech. Drawings Section – DS1267-10 ~ 10 kΩ – DS1267-50 ~ 50 kΩ VB 1 14 VCC – DS1267-100 ~ 100 kΩ H1 2 13 SOUT § Operating Temperature Range: – Industrial: -40°C to +85°C L1 3 12 W0 W1 4 11 H0 PIN DESCRIPTIONS RST 5 10 L0 L0, L1
in „Poti mit Atmega8 ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF4905.pdf
Reverse Leakage -100 VGS = -20V Qg Total Gate Charge 180 ID= -38A Qgs Gate-to-Source Charge 32 nC V DS = -44V Qgd Gate-to-Drain ("Miller") Charge 86 V GS= -10V, See Fig. 6 and 13 d(on) Turn-On Delay Time 18 V DD = -28V tr RiseTime 99 D = -38A d(off) Turn-Off Delay Time 61 ns R G 2.5Ω f FallTime 96 RD=
in „P Kanal Mosfet schlägt immer wieder mal Durch.“ · Analoge Elektronik und Schaltungstechnik ·
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LM2595.pdf
Performance Characteristics (Circuit of Figure 1) Normalized Line Regulation Efficiency Output Voltage DS012565-12 DS012565-13 DS012565-11 5 www.national.com Typical Performance Characteristics (Circuit of Figure 1) (Continued) Switch Saturation Switch Current Limit Dropout Voltage Voltage DS012565-15 DS012565
in „Schaltregler LM2595“ · Analoge Elektronik und Schaltungstechnik ·
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TM56E6422-tenxtechnology.pdf
/INT1/CIP1 I/O 19 15 13 7 1 PA3/ADC3 /PWM2O/INT0/CIN I/O 1 16 14 8 4 VSS P DS-TM56E6422_E 13 Rev 0.9, 2024/04/10 TM56E6422 Data Sheet FUNCTION DESCRIPTION 1 CPU Core 1.1 Program ROM (PROM) The MTP ROM of
in „MCU identifikation/Datenblatt - MC9989A0ZQ“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DS10-g0066b-4xDS18B20_PID.c
********** // * Datenspeicher 10 * // ******************* // Flüssigkristallanzeige LMK62R125A1 // DS18B20 NR. 13,14,15,16 an 63-10 Adresse 0x18 // ************************************************************************* #include <MSP430x16x.h> // für MSP430F1611 #include "DS10-gP12-SD_MAINTI.c" #include
in „Digitaler PID-Regler für elektromotorisches Heizkörperventil“ · Mikrocontroller und Digitale Elektronik ·
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DS-000021-v1.22.pdf
Compliant FUNCTIONAL BLOCK DIAGRAM ORDERING INFORMATION PART TEMP RANGE PACKAGING ICS-40180 −40°C to +85°C 13” Tape and Reel EV_ICS-40180-FX — OUTPUT AMPLIFIER OUTPUT POWER ICS-40180 VDD GND InvenSense Inc. InvenSense reserves the right to change th1745 Technology Drive, San Jose, CA 94089 U.S.ANumber: DS-000021
in „Analog MEMS Mikrofon am Mikrocontroller“ · Analoge Elektronik und Schaltungstechnik ·
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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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irl1404.pdf
contact S Ciss Input Capacitance ––– 6590 ––– VGS = 0V C Output Capacitance ––– 1710 ––– pF V = 25V oss DS Crss Reverse Transfer Capacitance ––– 350 ––– ƒ = 1.0MHz, See Fig. 5 C Output Capacitance ––– 6650 ––– V = 0V, V = 1.0V, ƒ = 1.0MHz oss GS DS Coss Output Capacitance ––– 1510 ––– VGS = 0V, VDS= 32V,
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Kuehlschrankplatine_12.bas.txt
Tim0_isr 'Wenn Timer überläuft, löse den Interrupt "Tim0_isr" aus Enable Timer0 Enable Interrupts Dim Ds18b20_scratchpad_k(9) As Byte 'Kühlschrankfühler Dim Ds18b20_scratchpad_p(9) As Byte 'Platinenfühler Dim Ds18b20_scratchpad_a(9) As Byte 'Außenfühler Dim Kuehlschrank_integer_temp As Integer At Ds18b20
in „unzuverlässiger Temperaturregler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP79521.pdf
: SERIAL OUTPUT TIMING CS 3 9 10 SCK 13 14 15 SO MSb Out LSb Out Don’t Care SI FIGURE 1-3: POWER SUPPLY TRANSITION TIMING VCC VTRIPMAX ) VTRI(MIN) 17 18 2012-2023 Microchip Technology Inc. anditssubsidiaries DS20002300E-page 7 MCP7951X/MCP7952X
in „RTC -> MCP79521“ · Mikrocontroller und Digitale Elektronik ·
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PDF
40001722A.pdf
3042h) PIC16LF1707 11 0000 0100 0100 (3044h) REGISTER 4-4: REVID: REVISION ID REGISTER R R R R R R REV<13:8> bit 13 bit 8 R R R R R R R R REV<7:0> bit 7 bit 0 Legend: R = Readable bit ‘1’ = Bit is set ‘0’ = Bit is cleared bit 13-0 REV<13:0>: Revision ID bits 2013 Microchip Technology Inc. Preliminary DS40001722A-page
in „PIC16(L)F1703 low voltage Programmierung?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
// D8 CLK, D9 DAT, D10 RST(CE) // #define DS1302_CLK 0b00000001 // pin on PORTB (PD8) #define DS1302_DAT 0b00000010 // PD9 #define DS1302_RST 0b00000100 // old name for CE; PD10 #define DS1302_bitmask 0b00000111 // RST HIGH enables the DS1302 access
in „Seminarprojekt Binäruhr, passenden µC gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TM56M152A-tenxtechnology.pdf
. If 'd' is 1, the result is stored back in register 'f'. Cycle 1 Example COMX REG1, 0 B : REG1 =0x13 A : REG1 =0x13, W =0xEC DS-TM56M152A_E 76 Rev 0.96, 2024/05/16 TM56M152A Data Sheet DECX Decrement "f" Syntax DECX f [,d] Operands f : 000h ~ 1FFh, d : 0, 1 Operation (destination) ← (f) - 1 Status Affected
in „MCU identifikation/Datenblatt - MC9989A0ZQ“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BST-BMP180-DS000-07.pdf
pressure 0.01 hPa Resolution of output data temperature 0.1 °C Noise in pressure see table on page 12-13 Absolute accuracy @ 25 °C -1.5 ±0.5 +1.5 °C temperature V DD= 3.3V 0 . . . +65 °C -2.0 ±1.0 +2.0 °C Conversion time c_p_low ultra low power mode 3 4.5 ms BST-BMP180-DS000-07 | Revision 2.3 | May 2011
in „Suche Projektpartner für Kalmanfilter-Implementierung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
SP601_RevC_annotated_master_ucf_8-28-09.ucf
J13 (thru series R97 200 ohm) #NET "GPIO_HDR7" LOC = "P12"; ## 8 on J13 (thru series R96 200 ohm) ### NET "GPIO_LED_0" LOC = "E13"; ## 2 on DS11 LED NET "GPIO_LED_1" LOC = "C14"; ## 2 on DS12 LED NET "GPIO_LED_2" LOC = "C4"; ## 2 on DS13 LED NET "GPIO_LED_3" LOC = "A4"; ## 2 on DS14 LED ### #NET "GPIO_SWITCH_0" LOC = "D14"; ## 1 on SW8 DIP Sw #NET "GPIO_SWITCH_1" LOC = "E12"; ## 2 on SW8 DIP Sw #NET "GPIO_SWITCH_2" LOC = "F12"; ##
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PDF
BUZ71A.pdf
BUZ71A Data Sheet December 2001 13A, 50V, 0.120 Ohm, N-Channel Power Features MOSFET • 13A, 50V This is an N-Channel enhancement mode silicon gate power • r = 0.120Ω DS(ON) field effect transistor designed for applications such as • SOA
in „AVR + N-Mosfet Transistor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PIC18F46J11_39932D.pdf
unimplemented, read as ‘0’. Shaded cells are not used by Timer0. 2011 Microchip Technology Inc. DS39932D-page 199 PIC18F46J11 FAMILY NOTES: DS39932D-page 200 2011 Microchip Technology Inc. PIC18F46J11 FAMILY Figure 13-1 displays a simplified block diagram of the 13.0 TIMER1 MODULE Timer1 module.
in „PIC18F46J11 und RTC. Quarz nötig? Anfängerfrage Übersicht verloren ;-(“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Taupunkt_V1_V2_THD_DS18B_3ok.ino
Intervallbildung #include <math.h> #include "DHT.h" #include <OneWire.h> #include <DallasTemperature.h> // Dallas DS18B20 Temperatursensor als Oberflaechentemperaturfuehler #define DHTPIN 8 // DHT Signal Pin an Arduino Eingang //#define DHTTYPE DHT11 // DHT 11 #define DHTTYPE DHT22 // DHT 22 (AM2302) #define LED 13
in „Taupunktberechnung mit Arduino, DHT22, DS18B20“ · Projekte & Code ·
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Datei
test.ino.asm
308: 89 f5 brne .+98 ; 0x36c <__vector_11+0xf0> i = 0; 30a: 10 92 59 01 sts 0x0159, r1 ; 0x800159 <ds> msg.position++; 30e: 2f 5f subi r18, 0xFF ; 255 310: 20 93 62 01 sts 0x0162, r18 ; 0x800162 <ds+0x9> if (msg.position == msg.length) { 314: 30 91 61 01 lds r19, 0x0161 ; 0x800161 <ds+0x8> 318: 23 13
in „Atmega328 1-Wire mit Timer CTC/PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS4344-45-46-48_F1.pdf
ratio’s and frequencies. 12. In Internal SCLK Mode, the Duty Cycle must be 50% +/− 1/2 MCLK Period. 13. The SCLK / LRCK ratio may be either 32, 48, 64, or 72. This ratio depends on part type and MCLK/LRCK ratio. (See Figures 7-9) DS613F1 9 CS4344/5/6/8 LRCK tslrs sclkh tslrd t sclkl SCLK t tsdlrs sdh
in „STA015, CS4344 Platinencheck“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irl7833.pdf
150 ––– ––– S V = 15V, I = 30A DS D Q g Total Gate Charge ––– 32 47 Qgs1 Pre-Vth Gate-to-Source Charge ––– 8.7 ––– V DS= 16V Qgs2 Post-Vth Gate-to-Source Charge ––– 5.1 ––– nC V = 4.5V GS Qgd Gate-to-Drain Charge ––– 13 ––– ID= 30A Qgodr
in „Beschaltung Mosfet für Brushless-Regler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FDC6327C.pdf
to 25 C° N-Ch -2.1 mV/ ° T Temperature Coefficient ID= - 250 µ, Referenced to 25 ° P-Ch 2.3 ∆ J R DS(on) Static Drain-Source VGS = 4.5 V, D = 2.7 A N-Ch 0.069 0.08 Ω On-Resistance VGS = 4.5 V, D = 2.7 A, J = 12° C N-Ch 0.094 0.13 V = 2.5 V, I = 2.2 A N-Ch 0.093 0.12 GS D VGS = -4.5 V,DI = -1.6 A P-Ch
in „Port-Stromverstärkung,Push-Pull-Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP41HVX1.pdf
Dissipation PDISS — 260 — mW 5 k VL= 5.5V, V+ = 18V, V- = -18V — 130 — mW 10 k (Note 15) — 26 — mW 50 k — 13 — mW 100 k Note 15 P DISS= I * V, orDDD(* 5.5V) +DDA * 36V) + AB* 36V) ). 2013 Microchip Technology Inc. DS20005207A-page 13 MCP41HVX1 AC / DC Notes: 1. This specification by design. 2. This parameter
in „MCP41HVX READCMD falsch verstanden??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FT2232_datasheet.pdf
pins when the main Channel mode is 232 UART Mode. **Note 8 : SI/WU is not available in these modes. DS2232D Version 0.91 © Future Technology Devices International Ltd. 2006 Page 13 of 51 FT2232D Dual USB UART / FIFO I.C. Channel B Pin Definitions by Chip Mode **Note 2 Generic Enhanced Fast 232 UART 245
in „AVR-Programmierung via USB mit FT2232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irlu024n.pdf
Vs. Temperature www.irf.com 3 IRLR/U024N 800 15 V GS = 0V, f = 1MHz ID = 11A C iss= C gs + Cgd , C ds SHORTED V = 44V C = C ) DS C rss= C gd + C ( V DS = 28V C oss ds gd e 12 ) 600 iss a F l ( V e e n r 9 t u c 400 C S p oss o a - 6 C t , a C , 200 C S rss G 3 V FOR TEST CIRCUIT SEE FIGURE 13 0 A 0 A
in „Konstantstromquelle mit JFet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irlu024N.pdf
Vs. Temperature www.irf.com 3 IRLR/U024N 800 15 V GS = 0V, f = 1MHz ID = 11A C iss= C gs + Cgd , C ds SHORTED V = 44V C = C ) DS C rss= C gd + C ( V DS = 28V C oss ds gd e 12 ) 600 iss a F l ( V e e n r 9 t u c 400 C S p oss o a - 6 C t , a C , 200 C S rss G 3 V FOR TEST CIRCUIT SEE FIGURE 13 0 A 0 A
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PDF
OB2223CPA.pdf
Id=0.45A {5 Ώ t o a l n t i e f id o n t C h ri g -B n O ©On-Bright Electronics Co- 6 -ntial OB_DOC_DS_2223A0 OB2223 High Precision Low Cost MCM Power Switch CHARACTERIZATION PLOTS UVLO(ON) vs Temperature UVLO(OFF) vs Temperature V 7.4 ) 13.3 O 7.3 O 13.1 L 7.2 L 12.9 ▯ U 7.1 U 12.5 7 -40 -10 20 50 80
in „SMD IC "G1768A" Datenblatt gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS14C232.pdf
to ambient temperature at +25˚C. Above this temperature derate: J Package 12.2 mW/˚C and E 3ackage 13.3 mW/˚C. 2 Connection Diagrams J Package E Package 16-Lead Dual-In-line Package 20-Lead Ceramic Leadless Chip Carrier DS010744-10 DS010744-1 For Complete Military Product Specifications See MDS or SMD
in „Schnittstellentreiber IC DS14C232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MGA-62563__AV02-1237EN_.pdf
31. P1dB vs. Id (100 MHz). 10 MGA-62563TypicalScatteringParameters,T =25°C,Z =50Ω,VC=3V,I =60mAO d ds Freq. S11 S21 S12 S22 K-factor GHz Mag. Ang. dB Mag. Ang. Mag. Ang. Mag. Ang. 0.1 0.185 -82.272 22.91 13.982 155.827 0.042 5.4 0.129 -164.437 1.09 0.2 0.187 -90.11 22.63 13.537 153.346 0.042 5.474 0.135
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PDF
182853-da-01-en-IRLR_8103V.pdf
= 0, DS GS Tj = 100°C Gate-Source Leakage IGSS ±100 nA VGS = ±20V Current Total Gate Chg Cont FET Q 27 V =5V, I =15A, V =16V G GS D DS Total Gate Chg Sync FET Q 23 V = 5V, V < 100mV G GS DS Pre-Vth Q GS1 4.7
in „Drehzahlmesser für Drehbank“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm317-1.pdf
Application Hints (Continued) DS009063-64 FIGURE 12. Top View of the Thermal Test Pattern in Actual Scale 9 www.national.com Application Hints (Continued) DS009063-65 FIGURE 13. Bottom View of the Thermal Test Pattern in Actual Scale
in „Konstantstromquelle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM317__NAT.pdf
Application Hints (Continued) DS009063-64 FIGURE 12. Top View of the Thermal Test Pattern in Actual Scale 9 www.national.com Application Hints (Continued) DS009063-65 FIGURE 13. Bottom View of the Thermal Test Pattern in Actual Scale
in „Frage zu Spannungs/Stromregelschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
162399-da-01-en-IRF_4905.pdf
Normalized On-Resistance Vs. Temperature IRF4905 7000 20 VGS = 0V, f = 1MHz ID = -38A Ciss = C gs + Cgd , C ds SHORTED ) 6000 Crss = C gd V C = C + C ( VDS = -44V oss ds gd g16 V = -28V ) t DS F 5000 o ( C iss V e e c 4000 r12 a u c C oss o a - p 3000 t C e 8 , a C 2000 G C rss , S 4 V 1000 - FOR TEST CIRCUIT 0 0 SEE FIGURE 13 A A 1 10 100 0 40 80 120 160 200 -V , Drain-to-Source Voltage (V) Q , Total Gate Charge (nC) DS G Fig 6. Typical Gate Charge Vs. Fig 5. Typical Capacitance Vs. Drain-to-SourceVoltage Gate-to-Source Voltage
in „High Side Switch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF4905_TO220.pdf
Normalized On-Resistance Vs. Temperature IRF4905 7000 20 VGS = 0V, f = 1MHz ID = -38A Ciss = C gs + Cgd , C ds SHORTED ) 6000 Crss = C gd V C = C + C ( VDS = -44V oss ds gd g16 V = -28V ) t DS F 5000 o ( C iss V e e c 4000 r12 a u c C oss o a - p 3000 t C e 8 , a C 2000 G C rss , S 4 V 1000 - FOR TEST CIRCUIT 0 0 SEE FIGURE 13 A A 1 10 100 0 40 80 120 160 200 -V , Drain-to-Source Voltage (V) Q , Total Gate Charge (nC) DS G Fig 6. Typical Gate Charge Vs. Fig 5. Typical Capacitance Vs. Drain-to-SourceVoltage Gate-to-Source Voltage
in „FET Frage (n oder p)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irlz34npbf.pdf
On-Resistance Vs. Temperature IRLZ34NPbF 1400 15 V GS = 0V, f = 1MHz ID = 16A C iss= Cgs + C gd, C ds SHORTED ) 1200 C rss= C gd ( ▯VDS = 44V Ciss C oss= C ds+ C gd e 12 ▯VDS = 28V g F 1000 l ( o e e n 800 r 9 t u c Coss S p 600 o a - 6 , t C G 400 , C▯rss S 3 VG 200 FOR TEST CIRCUIT SEE FIGURE 13 0
in „MOSFET defekt (evtl. durch Ohmmeter)?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS1000Z_Firmware_Release_Notes-7.pdf
Instrument Firmware Release Notes Models DS1054Z, DS1074Z, DS1104Z, DS1054Z-S, DS1074Z-S, DS1104Z-S, MSO1074Z, MSO1104Z, MSO1074Z-S, MSO1104Z-S Version Information Released version: 00.04.03.02.03 Release Date: 10/20/2015 Compatibility Compatible
in „Rigol-DS1054Z“ · Mikrocontroller und Digitale Elektronik ·
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PDF
infineon-irf1010e-mosfet.pdf
Temperature www.irf.com 3 IRF1010E 6000 20 VGS = 0V, f = 1 MHZ D = 50A C = C + C , C SHORTED iss gs gd ds V V DS= 48V 5000 Crss= Cgd ( 16 V DS= 30V C = C + C g V DS= 12V oss ds gd l F4000 Ciss o ( V c c 12 t u c3000 o p Coss o a - 8 ,2000 t C G , S 4 1000 Crss VG FOR TEST CIRCUIT 0 0 SEE FIGURE 13 1 10 100
in „DC Wandler wiederbeleben“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRLU2905.pdf
Advanced Process Technology V DSS = 55V l Ultra Low On-Resistance l 175°C Operating Temperature R = 13.5mΩ l Fast Switching G DS(on) l Repetitive Avalanche Allowed up to Tjmax l Lead-Free D = 42A S Description This HEXFET Power MOSFET utilizes the latest processingtechniquestoachieveextremelylowon- resistance
in „Batterieschutzschaltung. Murks oder möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MOC3041-M.pdf
factor < 0.5), change this value to 360 ohms. Figure 12. Hot-Line Switching Application Circuit Figure 13. Hot-Line Switching Application Circuit (MOC3031M, MOC3032M, MOC3033M) (MOC3041M, MOC3042M, MOC3043M) DS300256 8/06/01 5 OF 9 www.fairchildsemi.com 6-PIN DIP ZERO-CROSS OPTOISOLATORS TRIAC DRIVER OUTPUT
in „Triac schaltet nicht ab“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xminilab-manual.pdf
screen as two small lines, with a size proportional to the trigger value. Figure 14: Slope trigger DS-Xminilab-1.6 - February, 2012 Page | 13 Xminilab User’s Manual 2.3.3 Post Trigger The oscilloscope is continuously acquiring samples in a circular buffer. Once the trigger event occurs, the oscilloscope
in „USART - xmodem (Xminilab) - Bildübertragung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xminilab-manual.pdf
screen as two small lines, with a size proportional to the trigger value. Figure 14: Slope trigger DS-Xminilab-1.6 - February, 2012 Page | 13 Xminilab User’s Manual 2.3.3 Post Trigger The oscilloscope is continuously acquiring samples in a circular buffer. Once the trigger event occurs, the oscilloscope
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