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Getting_started_with_STM32F10xxx_hardware_development.pdf
nTRST (4) JTDI (5) TDI (6) JSTM/SWDIO (7) TMS (8) (9) TCK (10) JTCK/SWCLK (11) RTCK (12) JTDO (13)TDO (14) nRSTIN (15) nSRST (16) (17) DBGRQ (18) 10 kΩ (19) DBGACK (20) 10 kΩ 10 kΩ V SS ai14376 Doc ID 13675 Rev 7 19/28 Recommendations AN2586 5 Recommendations 5.1 Printed circuit board For technical reasons
in „Quarz an STM32F103 / Widerstand?“ · Mikrocontroller und Digitale Elektronik ·
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KS0713.pdf
This LCD panel driver voltage depends on the combination of display data and M signal. DD COM1 M COM2 SS COM3 V0 V1 V2 COM4 COM1 V3 V4 SS COM5 COM6 V0 V1 V2 COM7 COM2 V3 V4 COM8 SS V0 V1 V2 COM9 COM3 V3 V4 COM10 SS COM11 V0 V1 V2 COM12 SEG1 V3 V4 SS COM13 COM14 V0 V1 V2 COM15 SEG2 V3 V4 COM16 SS S S S S
in „Dbox LCD HT12538“ · Mikrocontroller und Digitale Elektronik ·
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datasheet_HIP_4081A.pdf
meet or exceed the Pb-free requirements of IPC/JEDEC J Std-020B. BHI 2 19 BHS DIS 3 18 BLO V 4 17 BLS SS BLI 5 16 VDD ALI 6 15 VCC AHI 7 14 ALS HDEL 8 13 ALO LDEL 9 12 AHS AHB 10 11 AHO CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures. 1 1-888-INTERSIL
in „HIP 4081 Verständnisprobleme“ · Mikrocontroller und Digitale Elektronik ·
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si-prog-v2_2.pdf
SOCKET-DIP8 5 12 PD5 (T1) PB4 (MISO) 17 6 AVR AT90Sxx adapter PD6 (AIN0) PB3 (MOSI) 7 13 PD7 (AIN1) PB2 (SS) 16 8 14 PB0 (ICP) PB1 (OC1) 15 C8 9 100nF SOCKET-DIP28S 10 CON10 SPI 25xxx adapter U14 1 A0 VCC 8 2 A1 TEST 7 3 A2 SCL 6 4 GND SDA 5 JP1 SOCKET-SO8 JUMP3 Select power ext/batt U10 8 VCC SDA 1 1 2 3 7 A0 SCL 2 6 A1 Tout 3 Q5 5 A2 GND 4 BC557 C14 100nF SOCKET-DIP8 R14 10K BT1 J5 9V-BAT R10 C21 1 1K U9 PIC16Fxx J8 B U4 2 1 RA2 RA1 18 100nF 1 B U13 8 VCC CS 1 3 2 RA3 RA0 17 R17 1K 2 1 A0 VCC 8 7 PE CLK 2 4 3 RA4/T0CKI OSC1/CLKIN 16 3 2 7 C7 6 3
in „Grundlagen: Teilen binär Teil 1 - Vorzeichenlose Ganzzahlen“ · Projekte & Code ·
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PDF
eeprom_progger_schaltplan.pdf
SOCKET-DIP8 5 12 PD5 (T1) PB4 (MISO) 17 6 AVR AT90Sxx adapter PD6 (AIN0) PB3 (MOSI) 7 13 PD7 (AIN1) PB2 (SS) 16 8 14 PB0 (ICP) PB1 (OC1) 15 C8 9 100nF SOCKET-DIP28S 10 CON10 SPI 25xxx adapter U14 1 A0 VCC 8 2 A1 TEST 7 3 A2 SCL 6 4 GND SDA 5 JP1 SOCKET-SO8 JUMP3 Select power ext/batt U10 8 VCC SDA 1 1 2 3 7 A0 SCL 2 6 A1 Tout 3 Q5 5 A2 GND 4 BC557 C14 100nF SOCKET-DIP8 R14 10K BT1 J5 9V-BAT R10 C21 1 1K U9 PIC16Fxx J8 B U4 2 1 RA2 RA1 18 100nF 1 B U13 8 VCC CS 1 3 2 RA3 RA0 17 R17 1K 2 1 A0 VCC 8 7 PE CLK 2 4 3 RA4/T0CKI OSC1/CLKIN 16 3 2 7 C7 6 3
in „Eeprom-Progger unter XP will keine 24Cxx bearbeiten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GU112x16G-7806-07.pdf
line. >250ns>250ns >125ns <20us tBUSY I/O SIN I/O SOUT SCK HOST I/O SCK GU112x16G-7806 SYSTEM I/O /SS MOSI MSB LSB I/O MB GND VDD VDD GND MISO MSB LSB MB /SS The /SS pin can be used as an enable pin if other devices are connected to the serial line, and also allows byte synchronisation. >250ns >250ns
in „Noritake VFD im 10x14-Modus“ · Mikrocontroller und Digitale Elektronik ·
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EB-85A_User_Manual.pdf
...............13 Chapter 4 Available NMEA and UBX Messages........................................14 4.1 NMEA Protocol .................................................................................................................14 GGA – GPS Fix Data...............................................
in „[V] EB85-A GPS-Empfaenger“ · Markt ·
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PDF
Skript_Praktikum_Rechnerarchitektur.pdf
mm oder ss) up / down / Ausgabesymbole: mm - mm:ss (Uhr läuft) "mm+1":ss stellen "mm-1":ss - "mm":ss (Uhr steht, Minuten blinken) - "mm+1":ss (mm inkrementieren) mode / mm:"ss" - "mm-1":ss (mm dekrementieren) - mm:"ss" (Uhr steht, Sekunden blinken) up / ss down / - mm:"ss+1" (ss inkrementieren) mm:"ss+1" mm:"ss-1" - mm:"ss-1" (ss dekrementieren) stellen Seite 48 | Prof. Dr.-Ing. Ulrich Schmidt | 2011 Praktikum Rechnerarchitektur
in „Clockmultiplexing vom mehreren Taktsignalen“ · FPGA, VHDL & Co. ·
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PDF
Wolfson_Audio_Card_Schematic_Diagram.pdf
C64 C53 C61 C63 C65 17 B3 A3 4 16 B4 A4 5 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 15 B5 A5 6 14 7 13 B6 A6 8 12 B7 A7 9 B8 A8 DC_3V3 DBVDD1 U8 TXB0108RGYR 19 2 VCCB VCCA 11 10 R73 GND OE 20 1 10K RST_5102 [2] RST [7] 18 B1 A1 3 LDO_EN [2] LDOENA [7] 17 B2 A2 4 [2] MCLK1 [5] B3 A3 MCLK_1 RPI_SS [7] 16 B4 A4 5 CIF2_SS [2] IRQ [7] 15 B5 A5 6 NIRQ [[2] AIF1RXDAT [7] 14 B6 A6 7 AIF1RX_DAT RPI_MOSI [7] 13 B7 A7 8 CIF2_MOSI [2] RPI_SCLK1 [7] 12 B8 A8 9 CIF2_SCLK [2] DC_3V3 DBVDD1 U9 TXB0108RGYR 19 2 VCCB VCCA 11 10 R74
in „Vorstellung digitaler Audioausgang für Raspberry Pi“ · Projekte & Code ·
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PDF
MC14504B-D.PDF
Referenced tSS) AWLYWW ALYWG Symbol Parameter Value Unit 1 VCC DC Supply Voltage Range −0.5 to +18.0 V 1 SOIC−16 SOEIAJ−16 VDD DC Supply Voltage Range −0.5 to +18.0 V 16 Vin Input Voltage Range −0.5 to +18.0 V 14 (
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CoolTerm_Capture__FritzAVM_1V8.CoolTermSettings__2026-06-27_08-52-21-633.txt
(2 gpios from hw_config) [ 14.245728][ T443] cprocfs: loaded [ 14.247270][ T443] cchardevice: loaded [ 14.248906][ T443] cchardevice: device_create(b2b): 240,0 [ 14.249296][ T443] b2b: AVM B2B driver: init done [Supervisor] Info:
in „FRITZ!Box 7490 Bootloop“ · Mikrocontroller und Digitale Elektronik ·
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MSV30245_Schematic_RevB.pdf
A3 P77/CTS3/RTS3/SS3/TA3in/LED7 P23/A3 2 14 T1O T1I 11 Y2 P24/A4 66 A4 7 7 T2O T2I 10 P25/A5 65 A5 3 13 R1I R1O 12 P26/A6 64 A6 8 8 R2I R2O 9 P27/A7 63 A7 3 4 VCC C20 32.7KHz C19 P30/A8 61 A8 J6 3 9 22pF 22pF 59 A9 A0 1
in „m16C on Chip Programmierung“ · Mikrocontroller und Digitale Elektronik ·
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LDO_ME6211C33M5G.PDF
ME6211CXXG/ ME6211HXXG Pin Number Pin Name Functions SOT23-5/SOT353 DFN2*2-6L 1 3 V Power Input IN 2 2 V SS Ground 3 1 CE ON / OFF Control 4 5,6 NC No Connect 5 4 VOUT Output V14 www.microne.com.cn Page 4 of 20 ME6211 Block Diagram Absolute Maximum Ratings Parameter Symbol Ratings Units Input Voltage VIN 6.5
in „ESP32-H2 will nicht schlafen“ · Mikrocontroller und Digitale Elektronik ·
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s81350hg.pdf
voltage VOUT V IN.2 V, I OUT=30 mA 3.123 3.200 3.277 V 1 Input/output voltage Vdif IOUT=30 mA 0.14 0.28 V 1 difference I =10 A to 30 mA Load regulation V OUT OUT 60 150 mV 1 V IN.2 V Current consumption I V =5.2 V, No loaded 16 30 A 2 SS IN V OUT V INV to 15 V Line regulation V •V I =30 mA 0.04
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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TEA1716T.pdf
– chssPFC RssPFC ICurPFCpk = -------------------------------------------------------------------- RcurPFC = R ssPFC C ssPFC Switching on the internal current source I ch(ss)(PFC)tarts
in „Reparatur Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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Sd2PinMap.h
(aka I2C) ports uint8_t const SDA_PIN = 20; uint8_t const SCL_PIN = 21; // SPI port uint8_t const SS_PIN = 53; uint8_t const MOSI_PIN = 51; uint8_t const MISO_PIN = 50; uint8_t const SCK_PIN = 52; static const pin_map_t digitalPinMap[] = { {&DDRE, &PINE, &PORTE, 0}, // E0 0 {&DDRE, &PINE, &PORTE, 1}
in „SD Karte an AVR 328 Arduino UNO welche Pins ?“ · Mikrocontroller und Digitale Elektronik ·
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ADG714_715.pdf
subject to production test. REV. D –3– 1 ADG714/ADG715–SPECIFICATIONS DUALSUPPLY (V DD= +2.5 V ± 10%,V =SS2.5 V ± 10%, GND = 0 V unless otherwise noted.) B Version –40 C Parameter +25 C to +85 C Unit Test Conditions/Comments ANALOG SWITCH Analog Signal Range V to V V SS DD On Resistance (RON) 2.5 Ω typ V S V SS V DD , DS= 10 mA 4.5 5 Ωmax On Resistance Match Between Channels (ΔRON) 0.4 Ωtyp V S V SS V DD , DS= 10 mA 0.8 Ω max On Resistance Flatness (R ) 0.6 Ω typ V = V to V , I = 10 mA FLAT(ON) S SS DD DS 1
in „Arduino Uno & ADG714 via SPI funktioniert nur sporadisch“ · Mikrocontroller und Digitale Elektronik ·
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ksger_t12_v3.pdf
R15 JBC Mod 3 GND GND 4k7 1 PC14 z Y k +3V3 GND GND 4 3 C T12 connection PC15 N 9 _ GND 1: Earth/(ground) C C 8 V_DDA D 2: NTC 10KB3950 to ground/earth sense C 2 5 C V_DD1 24 A 3: Switch to ground/earth 1 OSC_IN 0 36 C6 F 1 V_DD2 48
in „[V] JBC-Äquivalente: JAbe 2245-A UD, drei Spitzen, Knokoo Halter, ksger Lötstation“ · Markt ·
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PDF
d6a9b561-b36e-41ba-960d-979f019b7a6f.pdf
EN GPIO10 4GPIO16 GPIO9 19 PWM_GPIO14 5GPIO14 MISO 18 PWM_GPIO12 6GPIO12 CS0 17 PWM_GPIO13 7GPIO13 TXD0 16 TX 12k▯' 8VCC RXD0 15 RX R19 GPIO15 3V3 GND 9 14 GPIO5 10GND GPIO5 13 C26 GPIO15 11GPIO15 GPIO4 12 C25 GPIO2 GPIO2 GPIO0 GPIO0 100nF
in „Bitte um Hilfestellung beim Platinen Layout“ · Platinen ·
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PDF
d6a9b561-b36e-41ba-960d-979f019b7a6f.pdf
EN GPIO10 4GPIO16 GPIO9 19 PWM_GPIO14 5GPIO14 MISO 18 PWM_GPIO12 6GPIO12 CS0 17 PWM_GPIO13 7GPIO13 TXD0 16 TX 12k▯' 8VCC RXD0 15 RX R19 GPIO15 3V3 GND 9 14 GPIO5 10GND GPIO5 13 C26 GPIO15 11GPIO15 GPIO4 12 C25 GPIO2 GPIO2 GPIO0 GPIO0 100nF
in „Bitte um Hilfestellung beim Platinen Layout“ · Platinen ·
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ds.pdf
E — N — N L 1 — L1 L 2 — L2 L3 L3 LS LS LS LS LS LS Netzteil 24V DC WLAN dSF dSM d S M ! dSM dSM dSS Ethernet dS485Bus Legende: LIN P E L1 N P E L2 N P E L3 N P E L3 N P E LS: Leistungs-Schutzschalter Stromkreis1I dSF: digitaISTROMFilter dSM: digitaISTROMMeter Stromkreis2 dSS: digitaiSTROM Server (optional
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SG6105A.pdf
Protector 3ms DSQT u 9 p CQR e Protector r OP2 v SET 8 s 3.2V S Q o V RCLR r CC FB1 + 5V SQT R D O.S.C 14 e NVP 64μA 2.1V Delay CQR g 6 Buffer 7ms 2.5V u 13 a 2.4V 8μA t Delay VREF1 o 4 Buffer 7ms + OPP FB2 P W 11 15msy M VCC 12 PSON 1.4V On/Off Delay VREF2 50ms D2msy 1 16ms 18 17 16 SS IN COMP Figure 2.
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SSD1351-Revision_1.5.pdf
SC13 3818.00 681.25 313 SB40 1818.00 681.25 74 VDDIO -916.30 -651.82 154 COM32 5127.62 -662.08 234 SA14 3793.00 681.25 314 SC40 1793.00 681.25 75 VCI -763.30 -651.82 155 COM31 5162.62 -662.08 235 SB14 3768.00 681.25 315 SA41 1768.00 681.25 76 VDD -693.30 -651.82 156 COM30 5197.62 -662.08 236 SC14 3743.00
in „OLED128x128 SSD1351 RGB Initialisierung Color Farbe bunt SPI 3.3V AVR ATmega8 ATmega328p Assembler“ · Projekte & Code ·
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PDF
UM1285_schematic2.pdf
5 4 3 2 1 Whats this? Q1 VC NPN EBC SS8050 C6 val Audio Subcarrior Oscil. D 10 24 (adjustable: 3- 9 Mhz) D R8 R Q3 5.5MHZ Audio Frequency Modulation C5 4 T2 1 23 Q8 NPN EBC VHF SS9018 val +5V VC Audio Carier 5.5mhz 2 5417 NPN ECB C3 C7 R7
in „VHF TV Modulator UM1285 von Pollin oä.“ · HF, Funk und Felder ·
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PDF
PA100D.pdf
C1+ 23 18,432 M PB7(XTAL2/TOSC2/PCINPD0(RXD/PCINT16) 30 MSCK 17 SCLK C2+ 24 B PD1(TXD/PCINT17) 31 /SS 18 CS C2- 25 JP8 B 4 VCC PD2(INT0/PCINT18) 32 PTT_IN 1 6 VCC PD3(INT1/OC2B/PCINT19) 1 VOX_IN SG1 14 TX 2 PD4(T0/XCK/PCINT20) 2 SQW/OUT 4 T1IN T1OUT 7 3 C8 C7 C6 C5 18 AVCC PD5(T1/OC0B/PCINT21) 9 OUTP_LA
in „Schutzbeschaltung Analog-Eingänge / Durchsicht Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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NANO_BreakoutBoard_Stromlaufplan2.pdf
A4 8 A4 D7 10 R6 10 D7/PD7/AIN1 ADC3/PC3/A3 22 A3 330R 9 A3 D8 11 11 D8/PB0/ICP ADC2/PC2/A2 21 A2 R14 10 A2 330R 12 20 A1 C D9 12 D9/PB1/OC1A ADC1/PC1/A1 19 A0 11 A1 C D10/SS 13 R7 13 ADC0/PC0/A0 330R 12 A0 D11/MOSI 14 D10/OC1B/SS/PB2 R15 13 AREF D12/MISO 15 330R 14 D11/OC2/PB3/MOSI 14 3V3/CH340G-CAUTION
in „Zeigt her eure Kunstwerke (2017-2019)“ · Projekte & Code ·
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mc68hc11a1.pdf
VRH CONVERTER VRL CPU AN7 PE7 AN6 PE6 SINGLE AN5 PE5 EXPANDED CHIP T AN4 R PE4 A15 PB7 AN3 P PE3 A14 PB6 AN2 PE2 A13 PB5 AN1 PE1 A12 PB4 T 256 512 AN0 PE0 R BYTES BYTES A11 PB3 P RAM EEPROM A10 PB2 A9 PB1 U SS PD5 A8 PB0 I B SPI SCK PD4 E T MOSI D PD3 A D 8 MISO D T PD2 A7/D7 PC7 S S KBYTES T O A6/D6
in „mc68hc11a1fn-uC-8bit“ · Markt ·
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Datei
lcd5110.h
0x00, 0x00, 0x00, 0x00, // sp 0x00, 0x00, 0x2f, 0x00, 0x00, // ! 0x00, 0x07, 0x00, 0x07, 0x00, // " 0x14, 0x7f, 0x14, 0x7f, 0x14, // # 0x24, 0x2a, 0x7f, 0x2a, 0x12, // $ 0x62, 0x64, 0x08, 0x13, 0x23, // % 0x36, 0x49, 0x55, 0x22, 0x50, // & 0x00, 0x05, 0x03, 0x00, 0x00, // ¡¯ 0x00, 0x1c, 0x22, 0x41, 0x00
in „Nokia 5110 ansteuern für newbie“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICM7226.pdf
IN BCD 8 7 34 NC (NOTE 1) D1 8 33 EXT OSC IN D3 9 32 RST OUT D2 10 31 EXT RANGE D4 11 30 DP OUT V SS 12 29 SEG g D5 13 28 SEG e D6 14 27 SEG a D7 15 26 SEG d D8 16 25 VDD BCD 2 17 24 SEG b BCD 1 18 23 SEG c RST INPUT 19 22 SEG f EXT DP IN 20 21 RANGE NOTE: 1. For maximum frequency stability, connectDDo
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digitalSTROM.pdf
oder die Ana- lyse der Stromverbräuche sowie eine App zur Integration des Multi- Zugriff auf den dSS-Konfigurator room-Sound-Systems von Sonos oder des Farb-LED-Systems Philips Dazu schließt man den Eingang des dSS mit seinem RJ45-Anschluss Hue sein. Der Hersteller stellt dafür immer wieder neue Apps
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D120346D.pdf
Symbol Standard Value Unit ABSOLUTELY MAXIMUM RATINGS Min Typ. Max. Itemly Voltage for Logic SymbolSS Standard Value 7.0 Unit Supply Voltage for LCD Drive VDD V EE Min Typ. Max. V Supply Voltage for Logic VDD- VSS 0SS -- 7.0 V Supply Voltage for LCD Drive VDD V EE 0 -- 19.0 V Input Voltage V V -- V V PIN FUNCTIONS I SS DD Pin No. Symbol Level Function 1 V Ground PIN FUNCTIONS ss Pin No. Symbol Level Functionpply For Logic Circuit 1 Vss GroundSupply For LCD 4 RS H/L H Instruction L Data 2 VDD Power Supply For Logic
in „WelchenEl-Inverter für Hintergrundbeleuchtung auswählen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Empfangen.c
RFM12B_MOSI_O &= ~(1<<(RFM12B_MOSI_P)) #define RFM12B_MOSI_HIGH() RFM12B_MOSI_O |= (1<<(RFM12B_MOSI_P)) // SPI SS / CS (slave select, output) #define RFM12B_SS_I PINB #define RFM12B_SS_O PORTB #define RFM12B_SS_P 2 #define RFM12B_SS_D DDRB #define RFM12B_SS_INIT() RFM12B_SS_D |= (1<<(RFM12B_SS_P)) #define RFM12B_SS_LOW() RFM12B_SS_O &= ~(1<<(RFM12B_SS_P)) #define RFM12B_SS_HIGH() RFM12B_SS_O |= (1<<(RFM12B_SS_P)) #define RFM12B_STATUS RFM12B_spi(0x0000) // INTs #define RFM12B_RGIT() (RFM12B_STATUS & 0x8000) #define RFM12B_WAIT_RGIT
in „RFM12b an Atmega168 - Empfangsprobleme“ · Mikrocontroller und Digitale Elektronik ·
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XC6216.pdf
XC6216B/DC02 XC6216B/DC02 V IN CE=15.0V, Ta=℃, CINCL=1.μ F (ceramic) Ta=2℃ , IN=CL=1μ0F (ceramic) 14 14 12 12 ) )) ( (( U 10 T 10 O U : V g 8 :e 8 t gg l ll V 6 oV 6 p tu t pt O 4 Ta=-40℃ uu 4 VIN=13V O OO VIN=14V Ta=25 ℃ 2 2 VIN=15V Ta=85 ℃ 0 0 0 50 100 150 200 250 300 0 50 100 150 200 250 300 Output
in „Suche Spannungsregler mit kleinem Ruhestrom <<2mA“ · Analoge Elektronik und Schaltungstechnik ·
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hardware_dev.pdf
nTRST (4) JTDI (5) TDI (6) JSTM/SWDIO (7) TMS (8) JTCK/SWCLK (9) TCK (10) (11) RTCK (12) JTDO (13)TDO (14) nRSTIN (15) nSRST (16) (17) DBGRQ (18) 10 kΩ (19) DBGACK (20) 10 kΩ V 10 kΩ SS ai14376 Doc ID 13675 Rev 4 19/28 Recommendations AN2586 5 Recommendations 5.1 Printed circuit board For technical reasons
in „STM32: JTAG mit ST-LINK: Error in Initializing ST-Link device“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XC6216.pdf
XC6216B/DC02 XC6216B/DC02 V IN CE=15.0V, Ta=℃, CINCL=1.μ F (ceramic) Ta=2℃ , IN=CL=1μ0F (ceramic) 14 14 12 12 ) )) ( (( U 10 T 10 O U : V g 8 :e 8 t gg l ll V 6 oV 6 p tu t pt O 4 Ta=-40℃ uu 4 VIN=13V O OO VIN=14V Ta=25 ℃ 2 2 VIN=15V Ta=85 ℃ 0 0 0 50 100 150 200 250 300 0 50 100 150 200 250 300 Output
in „Suche Linearregler 5V für ca. 100uA minimal / 100mA max.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_FT232H.pdf
or 8-bits wide. FPGA (FT1248 Master) FT232H (FT1248 Slave) SCLK SCLK MIOSIO [7:0] MIOSIO MISO MISO SS# SS# Figure 4.7 FT1248 Bus with Single Master and Slave. In the FT1248 there are 3 distinct phases: While SS_n is inactive, the FT1248 reflects the status of the write buffer and read buffers on the
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lm25576.pdf
PWP 20-HTSSOP Top View 20 1 VCC BST 2 SD PRE 19 3 VIN SW 18 4 VIN SW 17 5 SYNC IS 16 6 COMP IS 15 7 14 FB PGND 8 13 RT PGND 9 12 RAMP OUT 10 11 AGND SS Pin Functions NO. NAME DESCRIPTION Output of the bias regulator 1 VCC Vcc tracks Vin up to 9 V. Beyond 9 V, Vcc is regulated to 7 Volts. A 0.1 uF to 1
in „[V] 15 ST. Stepdown SIMPLE SWITCHER LM2596S-12V , 3A, 400kHz, TO263 (alle 18€)“ · Markt ·
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Datenblatt-Relais.pdf
Überspannungskategorie III Einbaulage beliebig Montagehinweis anreihbar ohne Abstand Klassifikationen eCl@ss eCl@ss 4.0 27371104 16.09.2015 Seite 2 / 4 https://www.phoenixcontact.com/ch/produkte/2961105 Einzelrelais - REL-MR- 24DC/21 - 2961105 Klassifikationen eCl@ss eCl@ss 4.1 27371104 eCl@ss 5.0 27371001 eCl@ss 5.1 27371001 eCl@ss 6.0 27371001 eCl@ss 7.0 27371001 eCl@ss 8.0 27371601 ETIM ETIM 2.0 EC000196 ETIM 3.0 EC000196 ETIM 4.0 EC000196 ETIM 5.0 EC001437 UNSPSC UNSPSC 6.01 30211916 UNSPSC 7.0901 39121515
in „Datenblatt eines Relais richtig verstehen“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Pinbelegung eines Mikrocontrollers und SD-Karten-Moduls
+5V RESET +3.3V GND GND VIN A0 D15/SCL D14/SDA D13/SCK D12/MISO D11/MOSI D10/SS D9 TX/D9 D8 GPIO0 D1/MOSI/D7 D2/MISO/D6 D13/SCK/D5 D14/SDA/D4 D15/SCL/D3 D2/D1 D1/GPIO16 RX/D0 D0/GPIO3 D15 GPIO5 SCL D14 GPIO4 SDA D13 GPIO14 SCK D12 GPIO12 MISO D11 GPIO13 MOSI D10 GPIO10 SS D9 GPIO2 D8 GPIO0 D7 GPIO13 MOSI D6 GPIO12 MISO D5 GPIO14 SCK D4 GPIO4 SDA D3 GPIO5 SCL D2 GPIO16 D1 GPIO1 TX D0 GPIO3 RX GND VCC MISO MOSI SCK SDA GND WiFi D1
in „AZ Delivery D1 Board ESP8266 mit SD Card verbinden“ · Mikrocontroller und Digitale Elektronik · · Diagramme
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CountDown.pdf
blinkenden Dekade ändern. ; : Betrieb mit 8 Dekaden: Maximal eingebbarer Wert: 23:59:59.99 [HH:MM:SS.ss] ; : Betrieb mit 6 Dekaden: Maximal eingebbarer Wert: 23:59:59 [HH:MM:SS] ; : Taste 1: Nach der Eingabe des Wertes in die letzte Dekade: ; : Die Relais werden eingeschaltet. ; : Die gewählte Zeit
in „CountDown Zeitschalter ATMEGA8A Assembler“ · Projekte & Code ·
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w2465a.pdf
Inputs/Outputs I/O2 12 17 I/O6 CS1 , CS2 Chip Select Inputs 16 I/O3 13 I/O5 WE Write Enable Input V SS 14 15 I/O4 Output Enable Input OE V DD Power Supply VSS Ground NC No Connection Publication Release Date: October 1995 - 1 - Revision A6 W2465A DC CHARACTERISTICS Absolute Maximum Ratings PARAMETER RATING
in „Welches SRAM für M16C?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8574_4.pdf
quasi-bidirectional I/O 6 P7 12 quasi-bidirectional I/O 7 INT 13 interrupt output (active LOW) SCL 14 serial clock line SDA 15 serial data line VDD 16 supply voltage handbook, halfpage handbook, halfpage A0 1 16 VDD A0 1 16 VDD A1 2 15 SDA A1 2 15 SDA A2 3 14 SCL A2 3 14 SCL P0 4 13 INT P0 4 13 INT PCF8574P
in „PCF8574 Routine in C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8574_4.pdf
quasi-bidirectional I/O 6 P7 12 quasi-bidirectional I/O 7 INT 13 interrupt output (active LOW) SCL 14 serial clock line SDA 15 serial data line VDD 16 supply voltage handbook, halfpage handbook, halfpage A0 1 16 VDD A0 1 16 VDD A1 2 15 SDA A1 2 15 SDA A2 3 14 SCL A2 3 14 SCL P0 4 13 INT P0 4 13 INT PCF8574P
in „I²C tolle Alternative“ · Mikrocontroller und Digitale Elektronik ·
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PCF8574_4.pdf
quasi-bidirectional I/O 6 P7 12 quasi-bidirectional I/O 7 INT 13 interrupt output (active LOW) SCL 14 serial clock line SDA 15 serial data line VDD 16 supply voltage handbook, halfpage handbook, halfpage A0 1 16 VDD A0 1 16 VDD A1 2 15 SDA A1 2 15 SDA A2 3 14 SCL A2 3 14 SCL P0 4 13 INT P0 4 13 INT PCF8574P
in „I2C mit Display parallel?“ · Mikrocontroller und Digitale Elektronik ·
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FPGA-TN-02001-3-2-iCE40-Programming-Configuration.pdf
cycles iCE40 clears internal Configuration memory SPI_SCK iCE40 enters SPI Peripheral modewithSPI_SS = Low on l rising edgeof CRESET_B iCE40 captures SPI_SI data onSPI_SCK risingedge l i a p SPI_SS SPI_SS go to High, SPI_SS = High, wait 100 a I wait 8 clock cycle, then SPI_SCK to allow CDONE to i e
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PCF8591.pdf
oscillator the The AGND pin has to be connected to the system analog EXT pin has to be connected to V SS. At the OSC pin the ground and may have a DC off-set with reference to V SS. oscillator frequency is available. A low frequency may be applied to the V REFand AGND If the EXT pin is connected to VDD
in „Datentransfer an PCF8591“ · Mikrocontroller und Digitale Elektronik ·
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PCF8591.pdf
oscillator the The AGND pin has to be connected to the system analog EXT pin has to be connected to V SS. At the OSC pin the ground and may have a DC off-set with reference to V SS. oscillator frequency is available. A low frequency may be applied to the V REFand AGND If the EXT pin is connected to VDD
in „I2C Analog Mux/Demux im DIP gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Emitterschaltung_Loesung.pdf
' i U(p.,,tltt t).4l; -:-"-<i--.1. ri , l") ',', 'Jc',t ,o - _1*:o':' r( Rr= !x( 0c ) -. --- J. lt ß 4414t/ /t?v (?ß, ß ' ,'4 N t rc 'Jc 4r/14 l/ c Uce , 24r 'Ic-46ur zuq .f^- \c (/cn-d,6n Jr3; T : --;;;'"" Ctt vl Ure = /hv- K" 4tr r-f t'Jl-c 2av- 4''z\t4 /'6t 2kx 4r{t/ Sr.Zf,cu = Z3,or'ß B f' 4,{1 ?s'4/ß '\,(trro -+ß = ?j,trt/ Vcu 26/4 + 2cru4,/4 'I, . 7rt{{*- A Ure:4422/
in „Aufgabe: Berechnung Emitterschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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SED1520.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14 2.3.10 Display Timing Generator . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14 2.3.11 Oscillation Circuit . . . . . . . . . . . . . . . . . . . . . . .
in „SED1520: Lesen vom Display“ · Mikrocontroller und Digitale Elektronik ·
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mc14553b-d-1192980.pdf
CIB Q0 9 Qualified and PPAP Capable 12 CLOCK Q1 7 MAXIMUM RATINGS (Voltages Referenced to V) Q2 6 SS 10 LE Q3 5 Parameter Symbol Value Unit O.F. 14 DC Supply Voltage Range V DD −0.5 to +18.0 V 11 DIS DS1 2 Input or Output Voltage Range Vin −0.5 to DD V DS2 1 (DC or Transient) V out + 0.5 13 MR DS3 15
in „MC14553BCP - Alternative“ · Analoge Elektronik und Schaltungstechnik ·