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SW6007.pdf
2,可复用为 I2C 数据信号。 10 LED1/SCK LED 灯显示接口 1,可复用为 I2C 时钟信号。 11 BAT 电池电压检测引脚。 12 NTC/WLED 电池温度检测及照明输出。 13 VCC 内部工作电源。 14 KEY/BSET 机械按键输入及电池目标电压设置。 15 GATEC Type-C 口通路控制。 Mode: iSW_Release_DS066_v1.0 www.ismartware.com 第 3 页 共 19 页 珠海智融科技有限公司 ZHUHAI ISMARTWARE TECHNOLOGY CO., LTD. 16 VBUSC Type-C 口输入输出电压检测引脚
in „I2C: Li/ion Mobile Power Shield SW6007<->SW6115“ · Mikrocontroller und Digitale Elektronik ·
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B1nn.pdf
SOIC (3.90 mm) Example: XXXXXXXT 24LC01BI XXXXYYWW SN e3 0527 NNN 13F 8-Lead TSSOP Example: XXXX 4L1B TYWW I527 NNN 13F 8-Lead MSOP Example: XXXXT 4L1BI YWWNNN 52713F 5-Lead SOT-23 Example: XXNN M13F © 2009 Microchip Technology Inc. DS21711J-page 13 24AA01/24LC01B 5-Lead SC-70 Example: XXNN B13F 8-Lead 2x3 DFN Example: XXX 214 YWW 527 NN 13 8-Lead 2x3 TDFN Example: XXX YWW 527 NN 13 1st Line Marking Codes Part Number SOT-23 DFN TDFN SC-70 TSSOP MSOP I Temp. E Temp. I Temp. E Temp. I Temp. E
in „IPL Lampe Blitzcounter rücksetzten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PLC-LOX.txt
digital inputs 17-24 8 analog input 1 0-256 9 analog input 2 0-256 10 service - reset (bit 0) 11 1st DS2438 Temp (value multiplied by 100) 12 1st DS2438 Vad (value multiplied by 100) 13 1st DS2438 Vsens (value multiplied by 100) - 39 DS2438 values (up to 10 sensors) 40-50 DS18B20 Temperature (up to 10
in „1 Wire auf 2 GPIO pins“ · Mikrocontroller und Digitale Elektronik ·
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LM567.pdf
RETS567X drawing for specifications of military LM567H version. www.national.com 2 Schematic Diagram DS006975-3 Typical Performance Characteristics Typical Frequency Drift Typical Bandwidth Variation Typical Frequency Drift DS006975-10 DS006975-11 DS006975-12 3 www.national.com Typical Performance Characteristics
in „Frage zum NE567“ · Mikrocontroller und Digitale Elektronik ·
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XC9500XL.pdf
in-system programmable option for future enhancements and design changes. I/O Reliability and Endurance DS054_13_042101 All XC9500XL CPLDs provide a minimum endurance level of 10,000 in-system program/erase cycles and a minimum Figure 13: Bus-Hold Logic data retention of 20 years. Each device meets all functional
in „Oszilloskop mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
benchmark.c
, x16=10000, y16=27; volatile long r32, x32=0xffee9988, y32=1357; volatile float rf, xf=1000.0, yf=13.3; volatile float x_sin=0.9; // clear 256 single bytes // PIC18@10MIPS = // PIC24@40MIPS = 96.2µs // dsPIC@30MIPS = 128.26µs // ATMEGA@16MIPS = 641µs // Z16F@20MIPS = 51.4µs // LPC2103@60MIPS = 46.93µs
in „LPC2103 63MIPS?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF3205.pdf
–– ––– 8.0 mΩ VGS = 10V,DI = 62AVR V Gate Threshold Voltage 2.0 ––– 4.0 V V = V , I = 250µA GS(th) DS GS D gfs Forward Transconductance 44 ––– ––– S VDS = 25V,DI = 62AR ––– ––– 25 V = 55V, V = 0V DSS Drain-to-Source Leakage Current µA DS GS ––– ––– 250 VDS = 44V, GS = 0V, J = 150°C Gate-to-Source Forward
in „Hohe Ströme aus Akku Entladen ?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irf3205.pdf
–– ––– 8.0 mΩ VGS = 10V,DI = 62AVR V Gate Threshold Voltage 2.0 ––– 4.0 V V = V , I = 250µA GS(th) DS GS D gfs Forward Transconductance 44 ––– ––– S VDS = 25V,DI = 62AR ––– ––– 25 V = 55V, V = 0V DSS Drain-to-Source Leakage Current µA DS GS ––– ––– 250 VDS = 44V, GS = 0V, J = 150°C Gate-to-Source Forward
in „Erzeugt ein 9V-Printtrafo mehr als 750V?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS1337-DS1337C.pdf
this pin may be left floating. 8 3 VCC DC Power. DC power is provided to the device on this pin. — 4–13 N.C. No Connect. These pins are not connected internally, but must be grounded for proper operation. TIMING DIAGRAM 5 of 16 2 DS1337 I C Serial Real-Time Clock BLOCK DIAGRAM DETAILED DESCRIPTION The
in „[V] DALLAS RTCs : 10x DS1337S+ SO8 und 4x DS1337U+ 8 uSOP“ · Markt ·
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PDF
Chess-Schematic.PDF
IE00 GND 11 7 S1 PS2 10 P12 10 P12 20 P0 0 P 02 P0 P 02 P0 P 2 I0 PI2 5V PIS8PO3CLR DRAIN7 PI13PO4L02 P1K1 E20 PE20 GND RL22 LED22 PIP16O20DS P0 PI6ISO207 SIPO_RCK GND PI10PO3G8 DRAIN6 PI12PO3013 RL23 LED23 I22 1K1 IE20 IE20 GND PISO_CP 3.3V PIP10O20VDD P1 PI5ISO206 PIS9PO3RCK DRAIN5 PI11PO2L02
in „Projekt: Schachcomputer mit OLED-Display, Gehäuse aus Holz (open source)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon-IRFZ44N-DataSheet-v01_01-EN.pdf
––– ––– 17.5 mΩ VGS = 10V,DI = 25A V Gate Threshold Voltage 2.0 ––– 4.0 V V = V , I = 250µA GS(th) DS GS D gfs Forward Transconductance 19 ––– ––– S VDS = 25V,DI = 25A ––– ––– 25 V = 55V, V = 0V DSS Drain-to-Source Leakage Current µA DS GS ––– ––– 250 VDS = 44V, GS = 0V, J = 150°C Gate-to-Source Forward
in „Mosfet IRFZ44N 12V schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ssd1803a.pdf
BS0 F2 F1 F0 F2~0: adjust internal OSC frequency for FE frequency (POR: 011) (when DH’ = "1") POR DS4~1=1111 Determine the line for display shift. DS1 = "1/0": 1st line display shift enable/disable Shift DS2 = "1/0": 2nd line display shift enable 1 1 0 0 0 0 0 1 DS4 DS3 DS2 DS1 enable/disable DS3 =
in „Probleme mit EADOGM204-4 und ATMEGA32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1803a_2_0.pdf
BS0 F2 F1 F0 F2~0: adjust internal OSC frequency for FE frequency (POR: 011) (when DH’ = "1") POR DS4~1=1111 Determine the line for display shift. DS1 = "1/0": 1st line display shift enable/disable Shift DS2 = "1/0": 2nd line display shift enable 1 1 0 0 0 0 0 1 DS4 DS3 DS2 DS1 enable/disable DS3 =
in „Display DOGM-204A/SSD1803A mit I2C - ROM Auswahl“ · Mikrocontroller und Digitale Elektronik ·
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IRF_1404_S.pdf
e e 12 n r i 6000 o a S p t C e 8 , 4000 a C Coss G , 2000 G 4 V FOR TEST CIRCUIT Crss SEE FIGURE 13 0 0 1 10 100 0 40 80 120 160 200 240 V DS , Drain-to-Source Voltage (V) Q , Total Gate Charge (nC) G Fig 5. Typical Capacitance Vs. Fig 6. Typical Gate Charge Vs. Drain-to-SourceVoltage Gate-to-SourceVoltage
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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NTD4963N-D.PDF
VGS(TH)TJ 5 Coefficient mV/°C Drain−to−Source On Resistance R DS(on) VGS = 10 V ID= 30 A 8.2 9.6 D = 15 A 8.2 mW V GS= 4.5 V ID= 30 A 13.6 16 D = 15 A 13.6 Forward Transconductance gFS VDS= 1.5 V,DI = 30 A 40 S CHARGES, CAPACITANCES AND GATE RESISTANCE Input Capacitance
in „Vergleichsmosfet NTD 4963N“ · Analoge Elektronik und Schaltungstechnik ·
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device_list_hilo_all03_v9-12.pdf
*CAT28F002B *CAT28F002T CAT28F010/I CAT28F010V5/I CAT28F020/I CAT28F512/I CAT28F512V5/I <<DALLAS>> DS1213B (2K*8) DS1213B (8K*8) DS1213C (32K*8) DS1213C (8K*8) DS1213D (128K*8) DS1213D (32K*8) DS1213D (512K*8) DS1213D (8K*8) DS1216B (2K*8) DS1216B/C/E (8K*8) DS1216C/D/E (32K*8) DS1216D/F (128K*8) DS1216F (32K*8) DS1216F (8K*8) DS1220Y/AB/AD DS1225AB/AD/D/E/Y DS1230Y/AB DS1235Y/AB DS1243Y DS1244Y DS1245EE DS1245Y/AB DS1248Y DS1286 DS12887 DS1386 (32K*8) DS1386 (8K*8) DS1387 DS1486 DS1630Y/AB DS1642 DS1643 DS1645EE
in „PROM programmieren“ · Mikrocontroller und Digitale Elektronik ·
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projekt_snt.pdf
Spannungsfestigkeit eingeplant. Es standen zwei Bauteile zur Verfügung: • IXFX26N90 R ≈ 0,3Ω R ≈ 0,54Ω C ≈ 700pF DS_On(25°C) DS_On(125°C) DS • 2SK1489 R DS_On(25°C)1,0Ω RDS_On(125°C)1,84Ω C DS≈ 300pF 4.7.2 Durchlaßverluste Zur Berechnung der Durchlaßverluste wurden die primären Effektivströme bei maximaler und minimaler
in „2kW Gleichstromleistung“ · Mikrocontroller und Digitale Elektronik ·
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Vishay-Silcnx_FET_VoltCntrlRES_AN105.pdf
IN DS(on) OUT(min) R ) r DS(on ) (2) ) 100 Signal Distortion: Causes ( ) rDS(on) Figure 2 shows that the bias lines bend down as V DS ( r ] r DS 1 – VGSńV GS(off) increases in a positive direction toward the
in „Spannungsgeregelter Widerstand“ · Analoge Elektronik und Schaltungstechnik ·
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DS18B20.pdf
63 MATCH? MATCH? Y Y MASTER TX FUNCTION COMMAND (FIGURE 12) 13 of 21 DS18B20 DS18B20 FUNCTION COMMANDS FLOW CHART Figure 12 44h 48h MASTER TX N N FUNCTION CONVERT COPY TEMPERATURE SCRATCHPAD COMMAND ? ? Y Y N PARASITE Y N PARASITE Y POWER POWER ? ? DS18B20 BEGINS
in „Suche nach einem Temperatursensor“ · Mikrocontroller und Digitale Elektronik ·
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DS18B20.pdf
63 MATCH? MATCH? Y Y MASTER TX FUNCTION COMMAND (FIGURE 12) 13 of 21 DS18B20 DS18B20 FUNCTION COMMANDS FLOW CHART Figure 12 44h 48h MASTER TX N N FUNCTION CONVERT COPY TEMPERATURE SCRATCHPAD COMMAND ? ? Y Y N PARASITE Y N PARASITE Y POWER POWER ? ? DS18B20 BEGINS
in „Mehrere DS18B20 an einen Pin Avr-Mega32“ · Mikrocontroller und Digitale Elektronik ·
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bs1Appnotes.pdf
the net. input 7 ' Set pin 7 to input. pause 1000 ' Give others time to wake up. serout 7,OT2400,(10,13,"Three ") ' Say the line. serout 7,OT2400,("Larry",10,13) ' Cue next. ' Now enter the main program loop. Loop: serin 7,T2400,("Moe",10,13) ' Wait for cue. serout 7,OT2400,(10,13,"Three ") ' Say the line
in „Smartcard-Kode-Schloss mit PIC16F84“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt_DS18B20.pdf
MATCH? MATCH? Y Y MASTER TX FUNCTION COMMAND (FIGURE 12) 13 of 22 DS18B20 Figure 12. DS18B20 Function Commands Flowchart 44h 48h MASTER TX CONVERT N COPY N FUNCTION TEMPERATURE SCRATCHPAD COMMAND ? ? Y Y N PARASITE Y N PARASITE Y POWER POWER ? ? MASTER ENABLES
in „DS18B20 Darstellung von negativen Zahlen im Zweierkomplement?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_DS18B20.pdf
MATCH? MATCH? Y Y MASTER TX FUNCTION COMMAND (FIGURE 12) 13 of 22 DS18B20 Figure 12. DS18B20 Function Commands Flowchart 44h 48h MASTER TX CONVERT N COPY N FUNCTION TEMPERATURE SCRATCHPAD COMMAND ? ? Y Y N PARASITE Y N PARASITE Y POWER POWER ? ? MASTER ENABLES
in „Timing Probleme 1-Wire“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_DS18B20.pdf
MATCH? MATCH? Y Y MASTER TX FUNCTION COMMAND (FIGURE 12) 13 of 22 DS18B20 Figure 12. DS18B20 Function Commands Flowchart 44h 48h MASTER TX CONVERT N COPY N FUNCTION TEMPERATURE SCRATCHPAD COMMAND ? ? Y Y N PARASITE Y N PARASITE Y POWER POWER ? ? MASTER ENABLES
in „1-Wire Protokollablauf“ · Mikrocontroller und Digitale Elektronik ·
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BSS139.pdf
drain current IDSS V GS=0 V, V DS=10 V 30 - - mA Drain-source on-state resistance R DS(on) V GS=0 V, ID=15 mA - 12.5 30 Ω V GS=10 V,I D0.1 mA - 7.8 14 |V DS|>2|D |RDS(on)max Transconductance gfs ID=0.08 A 0.060 0.13 - S Threshold voltage
in „High-Side-Strom auf Low-Side spiegeln (Stromspiegel?!)“ · Analoge Elektronik und Schaltungstechnik ·
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DS1615.pdf
DS1615 14 1 DS275 7 2 9 NC RX 13 3 RX OUT RX IN5 7 ST TX TX IN TX OUT 3 7 INT COMS 15 8 S1 4 4 8 9 5 990073 - 11 auch die Messung. Setzt man dagegen zu werden. Entweder nutzt man das den Speicher der Temperaturm
in „Temperaturlogger+Funk“ · Mikrocontroller und Digitale Elektronik ·
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MOSFET-Basics_AN-9010.pdf
V V i GG G Cgs GG G Cgs — — (b) (a) VDD VDD I O O Cgd2 RG C gd1 + R G + G VGG i VGG rDS(on) G — — (c) (d) Figure 13: Equivalent Circuits of the MOSFET with Turn-on Divided into 4 Periods at the Diode-clamped Inductive Load Circuit. (a) equivalent circuit of period t ~ t 0 1 (b) equivalent
in „MOSFET ohne Body-Diode“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ATmega8515.asm
wr0, dz ; Startdrehzahl siehe oben Definitionen out OCR0, wr0 ; IRQ bei k = 1/2 * fpwm ; Fclk/8 -> DS S.91 T48, Phase Correctly PWM - ein DS. S.90 T44 ; OC0 pin 14 - HIGH = Match->Top->Match -DS. S91 T47 ldi wr0, 0x62 ; 62h = 01100010 out TCCR0, wr0 ldi wr0, 1<<TOIE0^0<<OCIE0 ;Interrupt Overflow/ Compare
in „mC arbeitet nicht“ · Mikrocontroller und Digitale Elektronik ·
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IRF-610-Datasheet.pdf
Zero Gate Voltage Drain Current DSS DS GS µA V DS = 160 V, VGS = 0 V, TJ= 125 °C - - 250 Drain-Source On-State Resistance R DS(on) VGS = 10 V ID= 2.0 A b - - 1.5 Ω Forward Transconductance g fs V DS= 50 V, ID= 2.0 Ab 0.8 - - S Dynamic Input
in „Schaltung für logic level to high voltage“ · Analoge Elektronik und Schaltungstechnik ·
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PIC_18F8722_Data_Sheet.pdf
primary oscillator modes. When disabled, these bits read as ‘0’. © 2008 Microchip Technology Inc. DS39646C-page 163 PIC18F8722 FAMILY NOTES: DS39646C-page 164 © 2008 Microchip Technology Inc. PIC18F8722 FAMILY A simplified block diagram of the Timer1 module is 13.0 TIMER1 MODULE shown in Figure 13-1
in „PIC 18F6527 mit 32MHz Takten“ · Mikrocontroller und Digitale Elektronik ·
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FB180SA10.pdf
iss V n c i u c10000 S 10 p o a C oss - , t C G 5000 , 5 C rss S V FOR TEST CIRCUIT 0 0 SEE FIGURE 13 1 10 100 0 50 100 150 200 250 300 350 400 Q , Total Gate Charge (nC) V DS , Drain-to-Source Voltage (V) G Fig 5. Typical Capacitance Vs. Fig 6. Typical Gate Charge Vs. Drain-to-Source Voltage Gate-to-Source
in „Strom bis 200A schalten mit Power MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irl2203n.pdf
GS D ––– ––– 10 VGS= 4.5V, D = 48A V Gate Threshold Voltage 1.0 ––– ––– V V = V , I = 250µA GS(th) DS GS D gfs Forward Transconductance 73 ––– ––– S VDS= 25V, D = 60A ––– ––– 25 V = 30V, V = 0V DSS Drain-to-Source Leakage Current µA DS GS ––– ––– 250 VDS= 24V, VGS = 0V, J = 125°C Gate-to-Source Forward
in „Saito Pro Charger Batterieladegerät - Mikrocontroller ATmel ATTINY26L defekt?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
clock_porta_forumpost.asm
TRISA ; .line 10; "clock_porta_forumpost.c" PORTA = 0x3f; MOVLW 0x3f BCF STATUS,5 MOVWF _PORTA _00120_DS_ ; .line 13; "clock_porta_forumpost.c" for (i = 0; i < 200; i++) { BANKSEL r0x20 CLRF r0x20 CLRF r0x21 ;signed compare: left < lit(0xC8=200), size=2, mask=ffff _00111_DS_ MOVF r0x21,W ADDLW 0x80 ADDLW
in „ausgänge PORTA vom pic wollen nicht so recht in C“ · Mikrocontroller und Digitale Elektronik ·
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ds1820.pdf
15ms 45ms 15ms LINE TYPE LEGEND Bus master pulling low DS18S20 pulling low Resistor pullup 13 of 21 DS18S20 DETAILED MASTER READ 1 TIMING Figure 12 V PU 1-WIRE BUS VIH of Master GND TINT> 1ms TRC Master samples 15ms RECOMMENDED MASTER READ 1 TIMING Figure 13
in „Thermometer mit ds18s20 und LED Annzeige“ · Projekte & Code ·
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TF5000CI.pdf
ordering information. Pinout CD54HC164, CD54HCT164 (CERDIP) CD74HC164, CD74HCT164 (PDIP, SOIC) TOP VIEW DS1 1 14 VCC DS2 2 13 Q 7 Q 3 12 Q 0 6 Q1 4 11 Q5 Q2 5 10 Q 4 Q3 6 9 MR GND 7 8 CP CAUTION: These devices are sensitive to electrostatic discharge. Users should follow proper IC Handling Procedures. Copyrigh
in „CPU SAA7219 per Jtag auf Basis FT2232H ansprechen - Tool schreiben“ · PC Hard- und Software ·
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PDF
DS1820-DS1820S.pdf
µs 15 µ 45 µ 15µs LINE TYPE LEGEND Bus master pulling low DS18S20 pulling low Resistor pullup 13 of 21 DS18S20 DETAILED MASTER READ 1 TIMING Figure 12 VPU 1-WIRE BUS VIH of Master GND TINT 1µs TRC Master samples 15 µ RECOMMENDED MASTER READ 1 TIMING Figure 13
in „1-Wire & Pull-UP“ · Mikrocontroller und Digitale Elektronik ·
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DS18B20.pdf
X MASTER R XCRATCHPAD CRC BYTE RETURN TO INITIALIZATION SEQUENCE (FIGURE 11) FOR NEXT TRANSACTION 13 of 20 DS18B20 1-WIRE SIGNALING The DS18B20 uses a strict 1-Wire communication protocol to insure data integrity. Several signal types are defined by this protocol: reset pulse, presence pulse, write
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PDF
DS18b20.pdf
X MASTER R XCRATCHPAD CRC BYTE RETURN TO INITIALIZATION SEQUENCE (FIGURE 11) FOR NEXT TRANSACTION 13 of 20 DS18B20 1-WIRE SIGNALING The DS18B20 uses a strict 1-wire communication protocol to insure data integrity. Several signal types are defined by this protocol: reset pulse, presence pulse, write
in „Temperatur ohne AD-Eingang messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS18b20.pdf
X MASTER R XCRATCHPAD CRC BYTE RETURN TO INITIALIZATION SEQUENCE (FIGURE 11) FOR NEXT TRANSACTION 13 of 20 DS18B20 1-WIRE SIGNALING The DS18B20 uses a strict 1-wire communication protocol to insure data integrity. Several signal types are defined by this protocol: reset pulse, presence pulse, write
in „Displaybeleuchtung faden ohne Analog I/O“ · Mikrocontroller und Digitale Elektronik ·
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Datei
catneu2.asm
ph_lampe ds 16 ;Phasenanschnittswerte (Word) lampe ds 8 ;Empfangene Lampen-Kanal-Bytes (0..255) softstart ds 1 ;255 normal, nach Einschalten von 0 auf 255 l_softstart ds 1 ;Low-Byte von Softstart overheat ds 1 ;
in „DMX-Receiver“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BAUD.ass
$30+$40 steuercode fuer datenlogger (2 byte reserviert) VORWID equ $32+$40 vorwahladresse aufnahme, a13 weiterzaehlen VORAUF equ $34+$40 vorwahladresse wiedergabe, a13 weiterzaehlen FENWID equ $36+$40 fensterbreite widergabe FENAUF equ $38+$40 fensterbreite aufnahme STOP equ $3A+$40 stoppt nach durchlauf
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datasheet.pdf
Typ. Max. Unit Drain-source V (BR)DSS ID= 250µA, VGS =0 30 V breakdown voltage Zero gate voltage V DS= max ratings 1 µA IDSS V DS= max ratings, drain currentGSV= 0) 10 µA TC = 125°C I Gate-body leakage V = ± 20V ±100 nA GSS current DS = 0) GS V GS(th) Gate threshold voltage V DS= VGS, D = 250µA 1 V Static
in „Unbekannter Spannungsregler von ST“ · Analoge Elektronik und Schaltungstechnik ·
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APT34F100B2_L_D-1593638.pdf
vs Source-to-Drain Voltage 1 - 5 0 APT34F100B2_L 200 200 100 100 I I DM DM A A ( ( T T E 10 E 10 R 13μs R R R 13μs U 100μs U 100μs C C I 1ms I Rds(on) 1ms A A T = 150°C 10ms D 1 R 10ms D 1 J , ds(on) , TC = 25°C ID ID 100ms Scaling for Different Case & Junction T = 125°C DC line Temperatures: 100ms J
in „SMA SB4200TL-MS Reparatur“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
benchmark.c
, x16=10000, y16=27; volatile long r32, x32=0xffee9988, y32=1357; volatile float rf, xf=1000.0, yf=13.3; volatile float x_sin=0.9; // clear 256 single bytes // PIC18@10MIPS = // PIC24@40MIPS = 96.2µs // dsPIC@30MIPS = 128.26µs // ATMEGA@16MIPS = 641µs // Z8Enc!XP@20MIPS = 487.6µs // Z16F@20MIPS = 51.4µs
in „LPC2103 63MIPS?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
benchmark.c
, x16=10000, y16=27; volatile long r32, x32=0xffee9988, y32=1357; volatile float rf, xf=1000.0, yf=13.3; volatile float x_sin=0.9; // clear 256 single bytes // PIC18@10MIPS = // PIC24@40MIPS = 96.2µs // dsPIC@30MIPS = 128.26µs // ATMEGA@20MIPS = 449.0µs // Z8Enc!XP@20MIPS = 487.6µs // Z16F@20MIPS = 51.4µs
in „LPC2103 63MIPS?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
benchmark.c
, x16=10000, y16=27; volatile long r32, x32=0xffee9988, y32=1357; volatile float rf, xf=1000.0, yf=13.3; volatile float x_sin=0.9; // clear 256 single bytes // PIC18@10MIPS = // PIC24@40MIPS = 96.2µs // dsPIC@30MIPS = 128.26µs // ATMEGA@16MIPS = 641µs // Z8Enc!XP@20MIPS = 487.6µs // Z16F@20MIPS = 51.4µs
in „ATMEL billiger und leistungsfähiger als PIC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC18f6622.pdf
oscillator modes. When disabled, these bits read as ‘0’. 2004 Microchip Technology Inc. Preliminary DS39646B-page 163 PIC18F8722 FAMILY NOTES: DS39646B-page 164 Preliminary 2004 Microchip Technology Inc. PIC18F8722 FAMILY A simplified block diagram of the Timer1 module is 13.0 TIMER1 MODULE shown in
in „PIC 18F6622 Zeit um EEPROM zu schreiben“ · Mikrocontroller und Digitale Elektronik ·
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BME280_Datasheet.pdf
1 2.1 1.2 0.8 0.5 0.3 7.1 ×8 / ×1 1.6 1.0 0.6 0.4 0.2 12.8 ×16 / ×2 1.3 0.8 0.5 0.4 0.2 24.9 Table 13: Temperature dependence of pressure noise RMS noise at different temperatures Temperature Typical change in noise compared to 25 °C -10 °C +25 % 25 °C ±0 % 75 °C -5 % BST-BME280-DS001-10 | Revision 1.1
in „PIC18F, Sensor auslesen I2C“ · Mikrocontroller und Digitale Elektronik ·
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MCP73871-Data-Sheet-20002090E__2_.pdf
-Lead QFN (4 mm x 4 mm) temperature range of -40°C to +85°C. 2008-2019 Microchip Technology Inc. DS20002090E-page 1 MCP73871 Package Types MCP73871 20-Lead QFN* E N S T T U E B O I NI C V 20 19 18 17 16 OUT 1 15 VBAT VPCC 2 14 V EP BAT SEL 3 21 13 PROG1 PROG2 4 12 PROG3 THERM 5 11 VSS 6 7 8 9 10 S
in „Fehlersuche beim MCP73871“ · Mikrocontroller und Digitale Elektronik ·
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ATmega1284P_128KByte.pdf
Boot Flash section */ MCUCR = temp|(1<<IVSEL); } 2020 Microchip Technology Inc. Data Sheet Complete DS40002070B-page 74 ATmega164A/PA/324A/PA/644A/PA/1284/P 13. External Interrupts 13.1 Overview The External Interrupts are triggered by the INT2:0 pin or any of the PCINT31:0 pins. Observe that, if enabled
in „ATmega1284P versus ohne P“ · Mikrocontroller und Digitale Elektronik ·