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AN_165_Establishing_Synchronous_245_FIFO_Communications_using_a_Morph-IC-II.pdf
powered; these connections are illustrated in Figure 6. Morph-IC-II to UM232H Connections Master IOD13 D0 CN Slave J4-2 J2-7 J1-3 USB 2-7 J4-4 IOD14 D1 J2-8 J1-2 5V0 IOG13 D2 J4-6 J2-9 J2-3 V3V3 J4-8 IOC14 D3 J2-10 J2-2 VIO IOG16 D4 J4-10 J2-11 J4-12 IOA12 D5 J2-12 IOA13 D6 J4-14 J2-13 IOA14 Morph-IC-II J4-16 D7 J2-14 UM232H J4-19 IOE14 RXF# 26 J1-14 IOD15 TXE# J4-17 J1-13 IOB14 RD# J4-15 J1-12 IOB13 WR# J4-13 J1-11 J4-11 IOB12 SI/WUA L1 J1-10 IOJ12 CLKOUT J4-9 J1-9 J4-7 IOJ11 OE# J1-8 GND GND Figure 6 – Morph-IC-II and FT232H wire scheme Copyright © 2012 Future Technology
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Datei
LCD_PCF8574-dotmatrix_7219--learn.asm
arbeitsregister .def IRQ_index = r22 ;IRQ-zähler .def testindex = r23 .equ DQ = 7 ;Datenleitung des Ds18B20 .equ DS_DDR = DDRC ;Data Direction Port des DS18B20 .equ DS_Port = PortC ; .equ DS_Pin = PinC ; .equ XTAL = 4000000 ;Quartzfrequenz .equ BAUD = 9600 ;Baudrate für UART .equ EEProm = 0xAE .equ RTC = 0xD0 ;RTC (DS3231 o. DS13107)Adresse .equ LCD = 0x4E ;LCD (PCF8574) Adresse .equ RTCIndex = 0x07 ;7 Bytes (Zeit Wochentag und Datum) .equ TempIndex = 0x02 ;2 Bytes (10bit temperatur) für DS3231 .equ TempAdr = 0x11
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PDF
BF998.pdf
voltage VG1-S = VDS= 0; G2-SS= 10 mA 6 20 V V(P)G1-S gate 1-source cut-off voltage VG2-S = 4 V; DS= 8 V; D = 20 A 2.0 V V(P)G2-S gate 2-source cut-off voltage VG1-S = 0; DS= 8 V; D = 20 A 1.5 V DSS drain-source current VG2-S = 4 V; DS= 8 V; G1-S = 0; note 12 18 mA G1-SS gate 1 cut-off current
in „Schaltung mit BF998“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
s-gu256x128d-3xxxhard_e02.pdf
...................................................................................................13 9.1 For -3xx0 series...........................................................................................................................13 Notice for the Cautious Handling VFD Modules.........
in „[V] Verkaufe VFD Grafik Display mit RS232 Interface von Noritake“ · Markt ·
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PDF
Temperatursensor.pdf
DS1821 PRELIMINARY DS1821 Programmable Digital Thermostat FEATURES PIN ASSIGNMENT Requires no external components DALLASLLAS Measurestemperaturesfrom–55⋅Cto+125⋅Cin1⋅C DS18212434 1 2 3 increments.Fahrenheitequivalentis
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PDF
Halbleiterliste.pdf
2SK30A 1 Mosfet 4049BCD 4 Hex Inverting Buffer https://pdf.datasheetcatalog.com/datasheets/70/109093_DS.pdf 4085PC 4 CMOS Dual 2-wide 2-input and-or-invert gate https://www.ti.com/lit/ds/symlink/cd4085b.pdf 4520BPC 2 Dual 4 bit binary counter https://datasheetspdf.com/pdf-file/504568/FairchildSemiconductor
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PDF
SPP80N06S2L-07.pdf
h 2 3.23.5 3.8 4.0 4.55.0 10.0 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 V 5.0 00 20 40 60 80 A 120 V I DS D 7 Typ. transfer characteristics 8 Typ. forward transconductance I = f ( V ); V ≥ 2 x I x R g = f(I ); T=25°C D GS DS D DS(on)max fs D j parameter: t = p0 µs parameter: g fs 160 110 S A 90 120 80 s
in „Transistor (Mosfet) Temperatur“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2206071616_BL-Shanghai-Belling-BLM3404_C3032968.pdf
Enhancement Mode Power MOSFET Description D The BLM3404 uses advanced trench technology to provide excellent DS(ON)nd low gate charge.This device is suitable G for use as a load switch and PWM applications. Genera Features S ● V DS = 30V,D = 5.8A Schematic diagram RDS(ON) 31mΩ @ V =GSV RDS(ON) 43mΩ @ V =GS5V ●
in „Betrieb von MOSFETS bei maximalstrom?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BP2832A_CN_DS_Rev.1.1.pdf
0.5 V 功率管 RDS_ON 功率管导通阻抗 VGS15V/IDS0.5A 10 Ω BVDSS 功率管的击穿电压 VGS0V/IDS250uA 500 V IDSS 功率管漏电流 VGS0V/V DS00V 1 uA 过热调节 TREG 过热调节温度 150 ℃ 注 4:典型参数值为 25˚C 下测得的参数标准。 注 5:规格书的最小、最大规范范围由测试保证,典型值由设计、测试或统计分析保证。 BP2832A_CN_DS_Rev.1.1 www.bpsemi.com 4 BPS Confidential – Customer Use Only BP2832A 晶丰明源半导体 非隔离降压型 LED
in „LED-Treiber Platine“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Mikroskopische Aufnahme einer Leiterplatte mit Bauteilen
C71 U3 C9 R240 R30 DS9 R239 DS13 R155 C6 DS14 R7 R8 U14 DS11 R8 U1 1080FHD
in „ALLPOWERS S2000 PRO Reparaturhilfe“ · Mikrocontroller und Digitale Elektronik · · Fotos
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PDF
NUVOTON_M058_M0516.pdf
D1 VQ1 5 AA1 AD9 4 D1 VQ1 5 AA9 AD2 7 6 AA2 AD10 7 6 AA10 AD3 8 D2 Q2 9 AA3 AD11 8 D2 Q2 9 AA11 AD4 13 D3 Q3 12 AA4 AD12 13 D3 Q3 12 AA12 AD5 14 D4 Q4 15 AA5 AD13 14 D4 Q4 15 AA13 S S AD6 17 D5 Q5 16 AA6 AD14 17 D5 Q5 16 AA14 S S AD7 18 D6 Q6 19 AA7 AD15 18 D6 Q6 19 AA15 A D Reset Circuit D7 Q7 D7 Q7
in „ARM Cortex M0 NUVOTON M058ZBN auslesen / flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Samsung_64MB_K4M51323PC_1_8V.pdf
1 3 N Symbol Min Typ Max 2 G 3 A - - 1.00 A1 0.25 - - P C E 10.9 11.0 11.1 - X E1 - 6.40 - D 12.9 13.0 13.1 X W X e D1 - 11.2 - X e e - 0.80 - k b 0.45 0.50 0.55 z - - 0.10 February 2006 K4M51323PC-S(D)E/G/C/F Mobile-SDRAM ABSOLUTE MAXIMUM RATINGS Parameter Symbol Value Unit Voltage on any pin relative
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PDF
HausAutoTest.pdf
I/O_VCC3 VSS WRITE_PROTECT QE 4 5 5B 5C 14 7 N MISO0 5 I/O_VL4 I/O_VCC4 10 4 VDD CS_SCH1 12 5 6 13 8 O 7 GND TriState 8 5 CLK SHELL1 12 13 RCLK QF 6 7 6B 6C 12 9 C 6 13 G QG 7B N 7C U8 VSS SHELL2 QH 7 8 8B G 8C 11 10 5V 1 0 7 DAT0 11 R 1 8 GND U16 9 E 2 C DAT1 QH 9 C 5V GND PD30 B SOT-23 SD_Card 9 74HC595 10k 1 BC856 D R20 Q1 P C 3 0 GND 1 P9 1 0 R19 2 N 10k 5V N R13 C DS1631 5V 10k C36 TWCK_SCL 1 8 100nF SDA VDD DS3234S# 25AA512 GND TWD_SDA 2 SCL A_0 7 CS_RTC 1 20 SCK0 CS_EEProm 1 8 P6 0 3 6 100nF1 0 1 CS SCLK CS Vcc 1 X T_OUT A_1 0 1 R 3 32_kHz DOUT 19 MISO0 MISO0
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
I/O_VCC3 VSS WRITE_PROTECT QE 4 5 5B 5C 14 7 N MISO0 5 I/O_VL4 I/O_VCC4 10 4 VDD CS_SCH1 12 5 6 13 8 O 7 GND TriState 8 5 CLK SHELL1 12 13 RCLK QF 6 7 6B 6C 12 9 C 6 13 G QG 7B N 7C U8 VSS SHELL2 QH 7 8 8B G 8C 11 10 5V 1 0 7 DAT0 11 R 1 8 GND U16 9 E 2 C DAT1 QH 9 C 5V GND PD30 B SOT-23 SD_Card 9 74HC595 10k 1 BC856 D R20 Q1 P C 3 0 GND 1 P9 1 0 R19 2 N 10k 5V N R13 C DS1631 5V 10k C35 TWD_SDA 1 8 100nF SDA VDD DS3234S# 25AA512 GND TWCK_SCL 2 SCL A_0 7 CS_RTC 1 20 SCK0 CS_EEProm 1 8 P6 0 3 6 0 1 CS SCLK CS Vcc 1 X T_OUT A_1 0 1 R 3 32_kHz DOUT 19 MISO0 MISO0 2 7
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
I/O_VCC3 VSS WRITE_PROTECT QE 4 5 5B 5C 14 6 _ MISO0 5 I/O_VL4 I/O_VCC4 10 4 VDD CS_SCH1 12 5 6 13 5 N 7 GND TriState 8 5 CLK SHELL1 12 13 RCLK QF 6 7 6B 6C 12 4 O 6 13 G QG 7B N 7C C U8 VSS SHELL2 QH 7 8 8B G 8C 11 3 5V 1 0 7 DAT0 2 R 1 8 GND U16 9 E 2 C DAT1 QH 9 1 C 5V PD30 B SOT-23 SD_Card 9 74HC595 P7 10k 1 BC856 D GND R20 Q1 P C 3 0 GND 1 P9 1 0 R19 2 N 10k 5V N R13 C DS1631 5V 10k C35 TWD_SDA 1 8 100nF SDA VDD DS3234S# 25AA512 GND TWCK_SCL 2 SCL A_0 7 CS_RTC 1 20 SCK0 CS_EEProm 1 8 P6 0 3 6 0 1 CS SCLK CS Vcc 1 X T_OUT A_1 0 1 R 3 32_kHz DOUT 19 MISO0 MISO0 2 7
in „Layout prüfen“ · Platinen ·
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Bild
Nahaufnahme einer Leiterplatte mit Flachbandkabel
PCB 13332249-00B PCBA 15532249-00 DRIVE SELECT DS0 DS1 DS2 DS3 3.5 5 J15 J12 33 J11 FUJIKURA-S AWM 2836 80C VW-1 MON2 MON4 J13 34
in „Siemens PG685 Testdiskette wird nicht gelesen“ · PC Hard- und Software · · Platinenfotos
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PDF
Schematics_v2.pdf
VCC +12V +12V D2 DS220W R23 D G Q1 U8 1Ω S VDD HO 0Ω R3 C7 100nF C13 IN_U_H HI HB HS MOTOR_U 4.7uF IN_U_L LI LO C8 GND R24 D 4.7nF G Q2 GND UCC27201DRMT S 1Ω R2 2.7Ω GND GND +12V VCC VCC U3 1 +12V 1 2 2 IN_U_L +12V D1 DS220W
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UART_Test.pdf
1 VBAT Power 5 PD0-OSC_IN I/O RCC_OSC_IN 6 PD1-OSC_OUT I/O RCC_OSC_OUT 7 NRST Reset 12 VSSA Power 13 VDDA Power 18 VSS Power 19 VDD Power 31 VSS Power 32 VDD Power 46 PA13 I/O SYS_JTMS-SWDIO 47 VSS Power 48 VDD Power 49 PA14 I/O SYS_JTCK-SWCLK 51 PC10 I/O USART3_TX 52 PC11 I/O USART3_RX 60 BOOT0 Boot
in „STM32F1 HAL UART Senden nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPS_40210.pdf
On tfall Switch switching period the next time Off Fig. 5. Representative DCM waveforms. VINI ×(R DS(ON)+R ISENSE) + V +I ×(R +R )2−4I ×(R + R )×(V + V ) (5) D = 1 IN OUT DS(ON) ISENSE OUT DS(ON) ISENSE OUT d CCM 2(VOUT + Vd) 3-4 Observe that since all of the energy in the Solving
in „Problem mit dem Hochsetzsteller (TPS 40210)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HausAutoTest1808.pdf
O_VL3 I/O_VCC3 VSS WRITE_PROTECT QE 4 5 5B 5C 14 6 _ 0 MISO0 5 I/O_VL4 I/O_VCC4 10 4 VDD PA23 12 5 6 13 5 N 1 2 7 GND TriState 8 5 CLK SHELL1 12 13 RCLK QF 6 7 6B 6C 12 4 O _ 6 13 G QG 7B N 7C C N 1 U8 VSS SHELL2 QH 7 8 8B G 8C 11 3 5V O 1 k 7 DAT0 2 GNC_5V1 R 1 8 GND U16 9 E 2 C GND DAT1 QH 9 1 C 5V PA09 PC20 B SOT-23 SD_Card 74HC595 P7 10k 1 BC856 GND R20 Q1 C 3 0 GND 1 P9 1 0 R19 2 N 10k 5V N R13 C DS1631 5V 10k C35 TWD_SDA 1 8 100nF SDA VDD DS3234S# 25AA512 GND TWCK_SCL 2 SCL A_0 7 CS_RTC 1 20 SCK0 CS_EEProm 1 8 P6 0 3 6 0 1 CS SCLK CS Vcc 1 X T_OUT A_1 0 1 R 3 32_kHz DOUT 19 MISO0 MISO0 2 7
in „Layout prüfen“ · Platinen ·
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PDF
sensata-acw4-tcw4-canopen-position-sensor-user-manual.pdf
absolute rotary encoder has a maximum resolution of 8192 steps per revolution (13 Bit). The Multi- Turn version can detect up to 65536 revolutions (16Bit). Therefore the largest resulting resolution is 29 Bit = 229 = 536.870.912 steps. The standard Single-Turn version has 13 Bit,
in „Hilfe mit (fehlerhafter?) EDS-Datei“ · Softwareentwicklung ·
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PDF
MCP9501-2-3-4.pdf
DFW YDOXH VKRZQ ZLWKRXW WROHUDQFHV 0LFURFKLS 7HFKQRORJ\ 'UDZLQJ & % © 2011 Microchip Technology Inc. DS22268A-page 13 MCP9501/2/3/4 Note: For the most current package drawings, please see the Microchip Packaging Specification located at http://www.microchip.com/packaging DS22268A-page 14 © 2011 Microchip
in „Thermal Shutdown“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MIC5239_Data.pdf
FIGURE 2-9: Ground Pin Current vs. FIGURE 2-12: Ground Pin Current vs. Input Voltage. Temperature. DS20006544A-page 6 2021 Microchip Technology Inc. MIC5239 FIGURE 2-13: Input Current. FIGURE 2-16: Load Transient Response. FIGURE 2-14: Output Voltage vs. FIGURE 2-17: Enable Turn-On. Temperature. FIGURE
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PDF
STD5NM50.pdf
STD5NM50 STD5NM50-1 N-CHANNEL 500V - 0.7 - 7.5A DPAK/IPAK MDmesh™Power MOSFET TYPE VDSS R DS(on) ID STD5NM50 500V <0.8 7.5 A STD5NM50-1 500V <0.8 7.5 A n TYPICAL R DS(on) = 0.7 n HIGH dv/dt AND AVALANCHE CAPABILITIES 3 3 2 n 100% AVALANCHE TESTED 1 1 n LOW INPUT CAPACITANCE AND GATE CHARGE n
in „Dynamischer Wärmewiderstand => Cth Rth“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Packages.txt
HDSP-B56Z 15 DIL06 14 TP06SQ 14 TO247BV 14 MINIMELF 14 MA04-2 14 MA04-1 14 B-DIL 14 1X06 14 153CLV-0405 13 TO220V 13 TO126 13 SMC_C 13 R-18 13 PT-10 13 NC 13 ES-5 13 DO201-15 13 CHIP-LED0805 13 B45181A 13 78LXX 12 SJ 12 SA10-21 12 S2XXEX 12 REED 12 R 12 ML10-O 12 JP3Q 12 JP2Q 12 DO13M 12 C2.5/5-2 12 B25P
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
Infineon-IPP_B_I70P04P4_09-DS-v01_03-en.pdf
IPB70P04P4-09 IPI70P04P4-09, IPP70P04P4-09 ® OptiMOS -P2 Power-Transistor Product Summary V DS -40 V R DS(on)SMD Version) 9.1 mW ID -70 A Features • P-channel - Normal Level - Enhancement mode PG-TO263-3-2 PG-TO262-3-1 PG-TO220-3-1 • AEC qualified • MSL1 up to 260°C peak reflow • 175°C operating
in „MOSFET als Lastschalter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
multimec-5-series-switches.pdf
and changes of s6ecifications on www.mec.dk 10 , 3 Min 10,1614 7,62 6 0 Max 12,5 7,62 0 0 multimec® 13,9 5,5 6,5 5 series switches basic switch modules 1 0 1 1 1 Right angle sw itches PC B layout 5,08 7,62 4,8 13,9 13,8 7,62 5E 5,5 5G 5G + 1SS 5G7,41DS 8,0 to 22,5 6,5 5,5 13,8 5,5 5,5 22,3 7,62 1 2 1
in „[S] Beleuchtete Navimec Navigationskreistaster für Prototypenherstellung“ · Markt ·
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Datei
pinout.h
c5 c6 c7 led:a0 #define use_lcdili9225 1 //ir #define ir_in_port B #define ir_in_pin 0 //ow #define ds1820_port A #define ds1820_pin 5 //led #define LED1_port B #define LED1_pin 1 //owx #define owx_port A #define owx_pin 7 //dht11 //#define dht_port A #define dht_pin 5 //Schacht 1: sd //#define sd_cs_port
in „Header Datei für Konfiguration erstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irlml6402pbf.pdf
Coefficient ––– -0.009 ––– V/°C Reference to 25°C,DI = -1mA ––– 0.050 0.065 V = -4.5V, I = -3.7A R DS(on) Static Drain-to-Source On-Resistance Ω GS D ––– 0.080 0.135 VGS = -2.5V,DI = -3.1A V Gate Threshold Voltage -0.40 -0.55 -1.2 V V = V , I = -250μA GS(th) DS GS D gfs Forward Transconductance 6.0 –
in „TP4056 Polarity protection“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
serieltest1.c
#include <util/delay.h> #include "variablen.h" /* 9600 baud */ #define UART_BAUD_RATE 9600 #define DS1307 0xD0 //Adresse des DS1307 #define PCF_Write 0x70 //Adresse für PCF Porterweiterung schreiben #define PCF_Read 0x71 //Adresse für PCF Porterweiterung lesen #define MCP_Write 0xDC //Adresse MCP ADC
in „UART Schleife MC stürzt ab“ · Mikrocontroller und Digitale Elektronik ·
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Datei
serieltest1.c
#include <util/delay.h> #include "variablen.h" /* 9600 baud */ #define UART_BAUD_RATE 9600 #define DS1307 0xD0 //Adresse des DS1307 #define PCF_Write 0x70 //Adresse für PCF Porterweiterung schreiben #define PCF_Read 0x71 //Adresse für PCF Porterweiterung lesen #define MCP_Write 0xDC //Adresse MCP ADC
in „UART Schleife MC stürzt ab“ · Mikrocontroller und Digitale Elektronik ·
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Datei
serieltest1.c
#include <util/delay.h> #include "variablen.h" /* 9600 baud */ #define UART_BAUD_RATE 9600 #define DS1307 0xD0 //Adresse des DS1307 #define PCF_Write 0x70 //Adresse für PCF Porterweiterung schreiben #define PCF_Read 0x71 //Adresse für PCF Porterweiterung lesen #define MCP_Write 0xDC //Adresse MCP ADC
in „UART Schleife MC stürzt ab“ · Mikrocontroller und Digitale Elektronik ·
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Datei
serieltest1.c
#include <util/delay.h> #include "variablen.h" /* 9600 baud */ #define UART_BAUD_RATE 9600 #define DS1307 0xD0 //Adresse des DS1307 #define PCF_Write 0x70 //Adresse für PCF Porterweiterung schreiben #define PCF_Read 0x71 //Adresse für PCF Porterweiterung lesen #define MCP_Write 0xDC //Adresse MCP ADC
in „UART Schleife MC stürzt ab“ · Mikrocontroller und Digitale Elektronik ·
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Datei
serieltest1.c
#include <util/delay.h> #include "variablen.h" /* 9600 baud */ #define UART_BAUD_RATE 9600 #define DS1307 0xD0 //Adresse des DS1307 #define PCF_Write 0x70 //Adresse für PCF Porterweiterung schreiben #define PCF_Read 0x71 //Adresse für PCF Porterweiterung lesen #define MCP_Write 0xDC //Adresse MCP ADC
in „UART Schleife MC stürzt ab“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds17001.pdf
) Z 10.26 X 1.2 Y 1.52 Z C 5.2 Y C DF005S – DF10S 4 of 5 November 2016 Document number: DS17001 Rev. 17 - 2 www.diodes.com © Diodes Incorporated DF005S – DF10S IMPORTANT NOTICE DIODES INCORPORATED MAKES NO WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, WITH REGARDS TO THIS DOCUMENT, INCLUDING,
in „Schutzwiderstand Dunstabzugshaube“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ureflow.pdf
1 2 3 4 5 6 D2 U3 +3V3 5VIN DS14W +5V +3V3 +3V3 VIN FB1 NCP1117 1 2 3 VI VO 2 VBUS D N C3 +3V3 U5 R12 R16 GND C2 G R8 R10 MAX6675ISA+T SW1 10K SW3 10K F1 D3 10uF 1 10uF 10K 1.5K A 500mA DS14W 4 1 4 BTN_LEFT 1 4 BTN_RIGHT A VCC 2 3
in „Feedback Schaltplan STM32G0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
O_VCC3 VSS WRITE_PROTECT QE 4 5 5B 5C 14 7 N CON1 MISO0 5 I/O_VL4 I/O_VCC4 10 4 VDD CS_SCH1 12 5 6 13 8 O 7 GND TriState 8 5 CLK SHELL1 12 13 RCLK QF 6 7 6B 6C 12 9 C MISO 1 2 VCC 6 13 G QG 7B N 7C 3 4 U8 VSS SHELL2 QH 7 8 8B G 8C 11 10 5V SCK MOSI 9 k 7 DAT0 11 nSRST RST 5 6 GND R 1 8 GND U16 9 E 2
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
O_VCC3 VSS WRITE_PROTECT QE 4 5 5B 5C 14 7 N CON1 MISO0 5 I/O_VL4 I/O_VCC4 10 4 VDD CS_SCH1 12 5 6 13 8 O 7 GND TriState 8 5 CLK SHELL1 12 13 RCLK QF 6 7 6B 6C 12 9 C MISO 1 2 VCC 6 13 G QG 7B N 7C 3 4 U8 VSS SHELL2 QH 7 8 8B G 8C 11 10 5V SCK MOSI 9 k 7 DAT0 11 nSRST RST 5 6 GND R 1 8 GND U16 9 E 2
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NDS356AP.pdf
Drain-SourceBreakdownVoltage V = 0 V, I = -250 µA -30 V DSS GS D I ZeroGateVoltage DrainCurrent V = -24 V, V = 0 V -1 µA DSS DS GS T =55°C -10 µA J IGSSF Gate-BodyLeakage,Forward VGS 20 V, V DS0 V 100 nA Gate-BodyLeakage,Reverse -100 nA IGSSR VGS -20V, V DS0 V ON CHARACTERISTICS (Note2) VGS(th) GateThresholdVoltage VDS V ,GS
in „nds355/nds356“ · Markt ·
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PDF
catalog.pdf
Battery Charger Li-Ion/Li-Pol 250mA 4.2V 6-Pin DSBGA T/R MPN: BQ27426YZFR [ID]: 000543 [Price]: 1.13 USD [QTY]: 3 [Category]: Battery Management [Desc]: Single cell System-side battery fuel (gas) gauge w/Pre-programmed chemistry Profile 9-DSBGA -40 to 85 MPN: DS2740U+ [ID]: 000547 [Price]: 2.97 USD
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PDF
catalog.pdf
6-Pin DSBGA T/R Page 11/105 Bauteileliste vom 12.08.2022 MPN: BQ27426YZFR [ID]: 000543 [Price]: 1.13 USD [QTY]: 3 [Category]: Battery Management [Desc]: Single cell System-side battery fuel (gas) gauge w/Pre-programmed chemistry Profile 9-DSBGA -40 to 85 MPN: DS2740U+ [ID]: 000547 [Price]: 2.97 USD
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PDF
TMC4671-LA_datasheet.pdf
RW Init 0x0Bh ADC_I1_I0_EXT RW Test 0x0Ch DS_ANALOG_INPUT_STAGE_CFG RW Test 0x0Dh AENC_0_SCALE_OFFSET RW Init 0x0Eh AENC_1_SCALE_OFFSET RW Init 0x0Fh AENC_2_SCALE_OFFSET RW Init 0x11h AENC_SELECT RW Init 0x12h ADC_IWY_IUX R Monitor 0x13h ADC_IV
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Datei
on.c
****************/ #include <mega8.h> #include <delay.h> #include <string.h> #include <stdlib.h> // DS1302 Real Time Clock functions #asm .equ __ds1302_port=0x18 ;PORTB .equ __ds1302_io=1 .equ __ds1302_sclk=0 .equ __ds1302_rst=7 #endasm #include <ds1302.h> // Standard Input/Output functions #include <
in „SPI ATmega8L Beschleunigungssenor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MTW8N60E.PDF
Drain Current IDSS Adc (VDS = 600 Vdc, GS = 0 Vdc) — — 10 (V = 600 Vdc, V = 0 Vdc, T = 125⋅C) — — 100 DS GS J Gate–Body Leakage Current (V = 〉 20 Vdc, V = 0) I — — 100 nAdc GS DS GSS ON CHARACTERISTICS (1) Gate Threshold Voltage VGS(th) (VDS = VGS DI = 250 Adc) 2.0 3.0 4.0 Vdc Temperature Coefficient (Negative) — 7.0 — mV/⋅C Static Drain–Source On–Resistance (V= 10 Vdc, I = 4.0 Adc) R — 0.46 0.55 Ohm GS D DS(on) Drain–Source On–Voltage (V = 10 Vdc) V Vdc GS DS(on) (D = 8.0 Adc) — 3.2 4.8 (D = 4.0 Adc,JT = 125⋅C) — — 4.6 Forward Transconductance DS = 15 Vdc,DI = 4.0 Adc) gFS 4.0 8.5 — mhos DYNAMIC CHARACTERISTICS
in „Identifizierung Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
–20 — — V ID= –10 mA, V GS= 0 voltage Gate to source breakdown V (BR)GSS ±20 — — V IG= ±100 µA, V DS0 voltage Gate to source leak current I — — ±10 µA V = ±16 V, V = 0 GSS GS DS Zero gate voltage drain current I — — –100 µA V = –16 V, V = 0 DSS DS GS Gate to source cutoff voltage V –1.0 — –2.5 V I = –1 mA, V = –10 V GS(off) D DS Static drain to source on stateR DS(on) — 0.05 0.08 ID= –5 A, VGS= –10 V*1 resistance — 0.09 0.14 ID= –5 A, VGS= –4 V*1 1 Forward transfer admittance |yfs 6 9 — S ID= –5 A, VDS –10 V* Input capacitance
in „Suche Mosfet oder Vergleichstyp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FS14KM-9.PDF
DSSDrain-sourcebreakdownvoltagD = 1mA, GS = 0V 450 — — V V (BR) GSSGate-sourcebreakdownvoltageG = ±100 A, DS = 0V ±30 — — V IGSS Gate-source leakage currentVGS = ±25V, DS= 0V — — ±10 A IDSS Drain-source leakage currenVDS = 450V,GS = 0V — — 1 mA VGS (th) Gate-sourcethresholdvoltageI = 1mA, DS = 10V 2 3 4 V rDS
in „High speed switching mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS_UJ3N120070K3S-1530204.pdf
high-performance G3 SiC normally- D (2) on JFET transistors. This series exhibits ultra-low on resistance () DS(ON) and gate charge (QG) allowing for low conduction and switching loss. The device normally-on characteristics with lowDS(ON)at GS= 0 V is also G (1) ideal for current protection circuits without the
in „SiC Kaskoden Body Diode“ · Analoge Elektronik und Schaltungstechnik ·
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CAN_Bit_Timing.pdf
third vari- able that determines maximum length and maximum Controller Area Network (CAN) Basics, DS00713 oscillator tolerances. PIC18C Reference Manual, DS39500 This application note should help assist system engi- PIC18C58 Datasheet, DS30475 neers design a controller area network for optimal per-
in „Infos zum CAN Bit-Timing gesucht“ · 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 +5V 2 INDEX 3 +5V 4 DS1 5 +5V 6 READY 7 INDEX 8 READY 9 DS0 10 MOTON 11 DS1 12 DIR 13 DS2 14 STEP 15 MOTON 16 UD 17 DIR 18 UGATE 18 STEP 19 WD 20 STEP 21 WD 22 UGATE 22 WD 23 ABPOT 24 WGATE 25 RGND 26 TRK0 27 SIDESEL 28 WPROT
in „Pinbelegung 3,5" Floppy mit FPC26“ · PC Hard- und Software · · Schaltpläne
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1-BTS7810K_11-03-2003.pdf
Heat-Slug 3 IL2 13 16 DL2 SL2 14 NC 15 Figure 1 Data Sheet 2 2003-03-11 BTS 7810 K 1.4 Pin Definitions and Functions Pin No. Symbol Function 1 NC Not connected 2 SL1 Source of low-side switch 1 3 IL1 Analog input of low-side
in „Kuehlkoerper“ · Mikrocontroller und Digitale Elektronik ·