-
PDF
CR-10_Schematic.pdf
P0U6016 X-STEP R 13 P0U8013 P0U8166 Y-STEP R 3 C24 RESET PA2 (ADC2/PCINT2) P0U5036 36 EXT-A1EXT0A1 9 14 ROSC STEP P0U6015 P 9 14 ROSC STEP P0U8155 P C PA1 (ADC1/PCINT1) R18 R P0SLEEP VDD VCC5V-M R28 R PSLEEP4 VDD VCC5V-M P 7 P0U507 P0U5037 37 SD-SSSD0SS P P C23 P0C2401 P0C2400 XTAL2 PA0 (ADC0/PCINT0) VCC5V-M
in „Suche einfache Möglichkeit 24V 6A DC zu schalten“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
XC6216_XE6216.pdf
600 mV ① Dropout Voltage2 Vdif2(*3) IOUT=100mA, V =CE, VIN OFB =VOUT - 1900 2600 mV ① Supply Current SS V IN.0V, V =CE, IN OFB=V OUT 1 5 9 μA ② Stand-by Current ISTB V IN.0V, V CE SS , VOFB=V OUT - 0.01 0.10 μA ② △V OUT / 4.0V≦V IN≦28.0V, Line Regulation1 - 0.05 0.10 %/V ① (△V ・IN OUT) IOUT=5mA, V CE ,
in „Suche schaltung für Ladeerhaltung einer Pufferbatterie“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
a6802550.pdf
shown below. Pin 90 Pin 1 FPC Active Area Front View – 2 – ACX704AKM Absolute Maximum Ratings (HV SS1, VVSS1 = 0V) • H driver supply voltage 1 HV DD –1.0 to +10.5 V • V driver supply voltage 1 VV DD –1.0 to +10.5 V • H driver supply voltage 2 HV SS2 –7.5 to +1.0 V • V driver supply voltage 2 VV SS2
in „[V] Sony QVGA Reflective Color LCD Module + TouchGlasplatte“ · Markt ·
-
PDF
BT_42003.pdf
7 to 14 DB 0o DB 7 Data Bus - Software selectable 4 or 8 Bit Mode ABSOLUTE MAXIMUM RATINGS 15 +V Anode of LED Unit LED Parameter Symbol Min. Max. Unit 16 -VLED Cathode of LED Unit Supply Voltage (Logic) VDD (VDD SS ) 0 6.5 V Supply Voltage (LCD Driver) VEE (VDD 0V ) 0 5.0 V Input Voltage V V V V I SS DD ADDITIONAL INFORMATION Operating Temperature TOP See Page 11 °C Display Connector Type (Option): Storage Temperature
in „Bascom + LCD“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
F_CAL 12800000L // gemessener Kalibriertakt in 10^-5 Hz // Endung L ist wichtig! volatile uint8_t ss = 0; //Sekunde uint8_t mm = 32; //Minute uint8_t hh = 14; //Stunde uint8_t dd = 26; //Tag uint8_t doW = 2; //Tag der Woche uint8_t m = 3; //Monat uint8_t y = 13; //Jahr volatile int8_t ssW = 0; //Sekunde
in „pgmspace.h|1067|error: unknown type name ‘uint_farpt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TPN15.1E_LA.pdf
OHM 1% 1/4W9203 10R 1/8W 5% AOTF8N50 FMX-23S UF4007 R9205 2 1.5M OHM 1% 1/4W D9201 T9201 10R 1/8W 5% SS1060FL HEAT SINK ! 1 R9207 6 1.5M OHM 1% 1/4W IC9201 R9206 82 OHM R9208 2 Vsen NC 17 10K 1/8W 1% 1 10 3 Vcc NC 16 12 4 FB VGH 15 +60V 5 GND VS 14 6 Css VB 13 4 7 OC NC 12 8 D9204 8 RC NC 11 3 FMX-23S
in „Philips 6300 TV Bildfehler "fading"“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
_Verkaufs-Fotos.pdf
ASSIGNMENTS STATUS LlNES CONTROL LlNES MIN MODE BIT MAX MODE MIN MODE BIT MAX MODE MIN MODE GND +5V AD14 AD15 11 INT VECT INT VECT 15 S7 S7 AD13 A16/S3 10 **R/G ERROR 14 S6 S6 AD12 A17 IS4 9 lliT TEST 13 S5 85 ADIl A18/S5 8 MNIMX MNIMX 12 S4 S4 AOID A19/S6 7 PWR FAlL PWR FAlL 11 83 S3_ A09 ) BHE/S7 6 10
in „Fluke9010A Microprocessor-Emulator Grundgerät & CPU-POD's“ · Markt ·
-
PDF
Schematic.pdf
7 0 11SUSPENDb GPIO.1/RXT 18 RTS Q1 5 5 5 4 1 12SUSPEND GPIO.2/RS485 17 SS8050-G 5 5 5 13CHREN GPIO.3/WAKEUP 16 IO0 0 0 0 14 15 CC1 CC2 T T T CHR1 CHR0 1 1 1 U3 CP2102N-A02-GQFN28R G G G R6 2k▯' R3 R9 5.1k▯' 5.1k▯' GNDGNDGND GND +3V3 GND GND GND GND Terminals & Levelshifter
in „ESD32 + USB-C - Welche Bauteile müssen zusammen sein“ · Platinen ·
-
PDF
Schematic.pdf
30 IO18 IO25 10 IO25 IO5 29 IO5 GND IO26 11 IO26 IO17 28 IO17 +3V3 IO27 12 IO27 IO16 27 IO16 CN3 IO14 13 IO14 IO4 26 BM02B-SRSS-TB (LF)(SN) 14 25 15 IO12 IO0 24 IO0 R1 GND 16 GND IO2 23 IO2 10k▯' 17 IO13 IO15 22 IO15 GND 18 NC NC 21 EN 19 NC NC 20 NC NC C10 U1 0.1uF / 50V ESP32-WROOM-32D(8MB) GND Power
in „ESD32 + USB-C - Welche Bauteile müssen zusammen sein“ · Platinen ·
-
PDF
80C40.pdf
P V D D D DB B B 3 2 1 0 9 8 7 6 5 4 XTAL2 3 38 P27 4 4 4 4 4 3 3 3 3 3 3 RESET 4 37 P26 V 1 33 DB SS 5 36 P25 DD 3 P10 2 32 DB2 INT 6 35 P24 P11 3 31 DB1 EA 7 34 P17 P12 4 30 DB0 RD 8 33 P16 P13 5 29 ALE PSEN 9 32 P15 WR 10 31 P1 P14 6 28 WR 4 P15 7 27 PSEN ALE 11 30 P13 NC 8 26 RD DB 0 12 29 P12 P1 9 25 EA DB 1 13 28 P11 6 P17 10 24 INT DB 2 14 27 P10 ▯ DB V P24 11 23 SS 3 15 26 DD DB 4 16 25 PROG 1 1 1 1 1 1 1 1 2 2 2 DB 5 17 24 P23 N 2 26 2 T C T L L N E DB 6 18 23 P22 P P P V T T E X X R DB 7 19 22 P21 VSS 20 21 P20 NC: No-connection pin
in „Kennt jemand einen Simulator für 8048 und Derivate?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MC9S08DZ60_Data_Sheet.pdf
P 32 25 31 30 29 28 27 26 PTA7/PIA7/ADP7/IRQ 1 24 PTB1/PIB1/ADP9 VDD 2 23 PTA0/PIA0/ADP0/MCLK V 22 SS 3 PTB0/PIB0/ADP8 PTG0/EXTAL 4 21 BKGD/MS 32-Pin LQFP PTG1/XTAL 5 20 PTD5/PID5/TPM1CH3 RESET 6 19 PTD4/PID4/TPM1CH2 18 PTE0/TxD1 7 PTD3/PID3/TPM1CH1 PTE1/RxD1 8 17 PTD2/PID2/TPM1CH0 10 11 12 13 14 15
in „Bei AD-wandlung Bitsverlust“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
x9c102-103-104-503.pdf
movement direction selected by the U/D input and not the voltage potential on the terminal. 4 V V SS SS 5 V /R V /R V /R is the wiper terminal and is equivalent to the movable terminal of a mechanical potentiometer. The W W W W W W position of the wiper within the array is determined by the control
in „Glanz und Elend der Digitalpotis“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
NHD-C160100DiZ-FSW-FBW.pdf
12/14/2010 Updated backlight cable length CL 7 8/25/16 Mechanical Drawing, Electrical & Optical Char. Updated SB 8 3/24/17 Mechanical Drawing Updated SB 9 5/25/17 Electrical Characteristics Updated TM 10 5
in „[V] 2St. NHD LCDs: NHD-C160100 und NHD C12864WO“ · Markt ·
-
Datei
GPS_INTERRUPT.asm
###################################################### ZEIT: ; 10-tel SEKUNDE LDS temp,(adr_SYSTEM_ss10) ; aus SRAM_LADEN inc temp ; +1 cpi temp,10 brsh ZEIT_SS STS (adr_SYSTEM_ss10),temp ; in SRAM schreiben ret ; SEKUNDE ZEIT_SS: clr temp STS (adr_SYSTEM_ss10),temp ; in SRAM schreiben LDS temp,(adr_BETRIEBSSTUNDEN_SS) ; aus SRAM_LADEN inc temp ; +1 cpi temp,60 brsh ZEIT_MM STS (adr_BETRIEBSSTUNDEN_ss),temp ; in SRAM schreiben ret ; MINUTE ZEIT_MM: clr temp STS (adr_BETRIEBSSTUNDEN_ss),temp ; in SRAM schreiben ;------------------ LDS temp,(adr_BETRIEBSSTUNDEN_SPEICHERN) ; aus SRAM_LADEN inc temp ;
in „Hilfe bei ASM-Codes von Bernhard S.“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
D120591D.pdf
Interfacing 8 9. Timing characteristics 9 ~ 11 10. Power supply 12 11. Block diagram 13 12. Instructions 14 ~ 16 13. Quality assurance 17 ~ 18 14. Precautions in use LCM 19 ~ 20 15. Mechanical drawing 21 1 CRYSTAL CLEAR TECHNOLOGY SDN. BHD. Spec. No: C420x01xxW00 REV. 1.0 2.0 Record of revision Rev Date Item
in „LCD schreibt keine zeichen sonder wechselt die zeile“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MICRF104BM.pdf
most reliable remote actuator and RF link system available. Typical Application L1 22µH MICRF104 1 14 1Supply 410µF VDDPWR EN 2VSS VSS13 35V SW 12 0.1µF100pF 10µF 4VSS PC 11 Power Control 5REFOSC 10 VDDRF 9 RF Standby 6RFSTBY ASK DATA IN 7 8 ANTM ANTP LOOP ANTENNA (PCB TRACE) Figure 1 QwikRadio is a
-
PDF
AD5290.pdf
Input Capacitance CIL 5 pF POWER SUPPLIES Positive Supply Current DD V IH +5V orV IL0V, 15 50 μA V DD SS±15V Negative Supply Current SS V IH +5V orV IL0V, −0.01 −1 μA V DDVSS ±15V Power Dissipation7 P V = +5V orV = 0V, 765 μW DISS IH IL V DD SS±15V Power Supply Rejection Ratio PSRR ΔV DDV =SS15V ± 10% −
in „frage zum Open Drain Ausgang + Pull up Widerstand“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
datasheet.pdf
time ADC = 14 MHz 1.5 239.5 1/ADC (2) STAB Power-up time 0 0 1 µs 1 18 µs t (2) Total conversion time f = 14 MHz CONV (including sampling time) ADC 14 to 252 Stfor sampling +12.5 for 1/f successive approximation)
in „ARM Audio Spektrum Analyser“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
-
Datei
start.c
Enable, Master, 1Mhz SPSR = (1<<SPI2X); //Slaveselect etc., 1Mhz Takt DDRB |= (1<<SLOW_SCK); DDRC = (1<<SS1)|(1<<SS2)|(1<<SS3)|(1<<C1_SCK)|(1<<C2_SCK)|(1<<C3_SCK); } void UART_Init (unsigned int baud) { UBRRH = (unsigned char)(baud>>8); UBRRL = (unsigned char)baud; UCSRB = (1<<TXEN); UCSRC = (1<<URSEL)|(3
in „AD-W. - Shiftregister - Atmega8 - SPI“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
volatile uint8_t dcfbufferposition; volatile uint16_t dcf[60]; volatile uint8_t cnt; volatile uint8_t ss; volatile int8_t mm; volatile int8_t hh; volatile int8_t m; volatile int8_t d; volatile int8_t ssW; volatile int8_t hhW; volatile int8_t mmW; uint8_t DCFempfang = 0; uint8_t Alarmzeit = 0; uint8_t AlarmEin
in „Atmega16 Waveform Mode 14 und LEDs am PORTD“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PCA9626.pdf
D D D D D CL S V A A V L L L L V S S V 8 7 6 5 4 3 2 1 0 9 8 7 4 4 4 4 4 4 4 4 4 3 3 3 VSS 1 36 V SS LED0 2 35 LED19 LED1 3 34 LED18 LED2 4 33 LED17 LED3 5 32 LED16 V 6 31 V SS PCA9626B SS VSS 7 30 V SS LED4 8 29 LED15 LED5 9 28 LED14 LED6 10 27 LED13 LED7 11 26 LED12 VSS 12 25 VSS 3 4 5 6 7 8 9 0 1
in „Probleme mit PCA9626 und I2C“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
hardwarespi.c
using the built-in SPI interface A LED connected to the 74HC595 will flash. AVR AT90S8515 74HC595 SS (5) -> LatchClock (12) MOSI (6) -> SerialIn (14) SCK (8) -> ShiftClock (11) Reset (10) -> VCC OE (13) -> GND Q1 (1) -> 1K Resistor -> LED -> GND AVR ATmega8 SS (16) MOSI (17) SCK (19) ***************
-
Datei
M16-was_ist_los_damit.bas
lcd_doublesize 0=16x8 zeichen 12=8x4 Zeichen 2=16x4 'Copyright Stefan Horn - Dezember 2004 'Controller D15G14E_14_030526 'Atmega 128 'HWSTACK-256 'SWSTACK-256 'FRAMESIZE-256 '------------------------------------------------------------------------------- 'Display Pin 1 Reset => AVR Pin a0 ' 2 CS a1 ' 3 GND GND
-
PDF
eBZ_Betriebsanleitung_DD3.pdf
und mit (rechts) mit Leistungsanzeige -X-'-irti ^SSW}^ oSoc? i^ p ~~3Stf?^ r7- r:::=::::"1 10 tfl'SS^ZS^ 1kWhi9\ Il^ SS iSJ ^ '35."i!l p '3!W^ rnSOß^ [kWh ^10 E: wWS!6 SSom is -A 'M kWh^ ^üffZü% kWhu\ ;: p '^z W Abb. 11: Doppeltarif- 2-Richtungszähler ohne (links) und mit (rechts) Leistungsanzeige -
-
PDF
TPS2120.pdf
5.5 V R ST Status Pin Pull Up Resistance ST 6 20 kΩ R ILM Current Limit Resistance ILM 18 100 kΩ V SS SS Pin Output Voltage SS 4 V I , I TPS2120 Continuous Input Current IN1, IN2 3 A IN1 IN2 IIN1,IN2 TPS2121 Continuous Input Current IN1, IN2 4.5 A TJ Junction temperature - -40 125 °C (1) See Power Supply
in „Speisung umschalten“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
S8200A_E.pdf
overcurrent detection VCU V CL(V CU− V HC) Battery voltage V DU(VDL + VHD) VDL VDD DO pin voltage V SS V DD CO pin voltage V SS V EB− VDD VM pin voltage V SS V CIOV V EB− Charger connection Load connection Overdischarge detection delay time DL ) Charge overcurrent detection Charge overcurrent detection
in „Li-Ion Ladeschutzschaltung mit S-8200“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
GU140X32F-7806AR.pdf
line. >250ns>250ns >125ns <20us tBUSY I/O SIN I/O SOUT SCK HOST I/O SCK GU140x32F-7806AR 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 „[V] Noritakte Grafik Vakuum Fluoreszenz Display (GVFD) 140x32 Pixel [NEU]“ · Markt ·
-
PDF
Treiber_IC-SSD0323_OLED_128x64_GELB.pdf
should be connected between this pin and V SS VSL This pin is the output pin for the voltage output low level for SEG signals. A capacitor should be connected between this pin and V . SS VSLCAP This pin is the output pin for the voltage output low level for SEG signals. A capacitor should be connected between this pin and V . SS VCL This pin is the output pin for the voltage output low level for COM signals. This pin should be connected to V SS. VDDB This is the power supply pin for the GDR pin buffer. It must be connected when
in „[Q]Erfahrungen mit (Reichelt) Pictiva OLED Displays“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
app-note_HIP_4081A.pdf
DELAY D TO VDD(PIN 16) BS DIS 3 V 15 CC DRIVER ALO TURN-ON 6 DELAY 13 +12VDC ALI C BIAS ALS BF SUPPLY 14 HDEL 8 LDEL 9 V 4 SS FIGURE 4. HIP4081A BLOCK DIAGRAM 80V 1 20 BHB BHO 12V 2 BHI BHS 19 A LOAD DIS 3 DIS 8 BLO 18 4 4 VSS I BLS 17 PWM BLI / INPUT 5 8 VDD 16 6 ALI 4 V 15 12V I CC 7 AHI H ALS 14 8 HDEL
in „HIP 4081 Verständnisprobleme“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
standard.dio.txt
FC=0.5 mfg=Philips type=zener ) .MODEL PH_BZX384-B18 D ( IS=1.13E-14 N=1.103 BV=18 IBV=0.005 RS=0.4798 CJO=3.17E-11 VJ=0.6421 M=0.3327 FC=0.5 mfg=Philips type=zener ) .MODEL PH_BZX384-B20 D ( IS=1.13E-14 N=1.103 BV=20 IBV=0.005 RS=0.4798 CJO=2.915E-11 VJ=0.635 M=0.3362
in „Hilfe bei LTSpice nötig!“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
HT71XX-1_30ma_LDO.pdf
HT71XX-1 Short-Circuit Protection by Tr1 Circuit for Increasing Output Voltage R2 VOUT = VXX(1+ ) +SS R2 R1 Circuit for Increasing Output Voltage VOUT=V XX+V D1 Rev. 1.50 5 January 12, 2006 HT71XX-1 Constant Current Regulator I = V XX+ I OUT RA SS Dual Supply Rev. 1.50 6 January 12, 2006 HT71XX-1 Package
in „Suche LDO mit Iss oder Iq >1uA.“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ME6206.pdf
Voltage VIN 6 V Maximum Output Voltage IOUT(max) V INout+1V 300 mA V INout+1V Load Regulation ∆V OUT 14 mV 1mA≤I OUT≤100mA Dropout Voltage Vdif1 OUT =80mA 180 mV (Note 3) Vdif2 IOUT=200mA 380 mV Supply Current SS V INout+1V 8 μA ∆V OUT OUT =40mA Line Regulations ∆V •V Vout+1V ≤V ≤6V 0.03 %/V IN OUT IN
in „Spannungsregler 5 V auf 3,3 V bei < 1 mA“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
PCA9532-1127723.pdf
A2 3 22 SCL LED0 4 21 RESET LED0 4 21 RESET LED1 5 20 LED15 LED1 5 20 LED15 LED2 6 PCA9532D 19 LED14 LED2 6 PCA9532PW 19 LED14 LED3 7 18 LED13 LED3 7 18 LED13 LED4 8 17 LED12 LED4 8 17 LED12 LED5 9 16 LED11 LED5 9 16 LED11 LED6 10 15 LED10 LED6 10 15 LED10 LED7 11 14 LED9 LED7 11 14 LED9 VSS 12 13 LED8 V SS 12 13 LED8 002aae518 002aae519 Fig 2. Pin configuration for SO24 Fig 3. Pin configuration for TSSOP24 D A L terminal 1 A A A V S CS index area 2 2 2 2 2 1 LED0 1 18 RESET LED1 2 17 LED15 LED2 3 16 LED14
in „[V] 3St. 16 Bit I2C/SM Bus LED Treiber PCA9532BS (HVQFN24)“ · Markt ·
-
PDF
SSD1332_R1.61.pdf
...................................................................................................14 V SS.........................................................................................................................................................................14 V CC...................
in „OLED und 8051“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
XMega_Uniboard_sch.pdf
PR1 OC0C_RXD0_PD2 28 JP6 OC0D_TXD0_PD3 29 1 2 C22 OC1A_/SS_PD4 30 3 4 C12 C11 OC1B_XCK1_MOSI_PD5 31 5 6 3 10µF RXD1_MISO_PD6 32 7 8 3 22pF 22pF TXD1_SCK_CLKO_EVO_PD7 33 9 10 + 2 1 OC0A_SDA_PE0 36 PE0 JP_PD 1 R OC0B_XCK0_SCL_PE1 37 PE1 OC0C_RXD0_PE2 38 PE2 GND OC0D_TXD0_PE3 39 PE3 GND n OC1A_/SS_PE4 40 PE4 De OC1B_XCK1_MOSI_PE5 41 PE5 Er RXD1_MISO_TOSC2_PE6 42 PE6 L G TXD1_SCK_CLKO_EVO_TOSC1_PE7 43 PE7 OC0A_PF0 46 PF0 GND D OC0B_XCK0_PF1 47 PF1 OC0C_RXD0_PF2 48 PF2 OC0D_TXD0_PF3 49 PF3 PF4 50
in „Kleines Xmega-Board - Verbesserungsvorschläge?“ · Platinen ·
-
PDF
D1_v2.0.0.pdf
7 7 2 8 8 9 9 10 10 1 2 3 4 1 1 2 2 3 3 4 4 5 5 1 RSET TXD 16 6 6 2 ADC/TOUT RXD 15 7 7 3 EN GPIO5 14 8 8 4 13 5 GPIO16/WAKE GPIO4 12 6 GPIO14/CLK GPIO0 11 GPIO12/MISO GPIO2 7 GPIO13/MOSI HSPICS/GPIO15 10 8 VCC GND 9 1 1 2 2 3 3 5 2 1 4 4 5 5 6 6 4 3 7 7 8 8 1 1 2 2 3 3 4 4 P1 1 16 5 5 VBUS GND VCC P2 D- SH1 S1 2 TXD R232 15 6 6 P3 D+ SH2 S2 3 RXD RTS# 14 P4 S3 4 13 P5 ID SH3 S4 5 V3 DTR# 12 GND SH4 SS1 6 UD+ DCD# 11 SH5 UD- RI# SH6 SS2 7 XI DSR# 10 8 XO CTS# 9
in „ESP8266/Wemos D1: Wozu OpAmp an LED?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
uPD6126A.PDF
. The LSB of control registers P 13 and P 14 switches between input and output modes. When in input mode, all pins are pulled down by the LSI to the V SS level. When “all clear” is input or on reset, input mode goes into effect, and the output latch value becomes undefined. Figure 11-2. I/O Pin Organization Note Note P13, P14 P03, P04 P /P 4 IN/OUT I/O3 I/O2 I/O1 I/O 0 IN/OUT 0 ······· Input mode P3 ··· I/00to I/O0, 1 ······· Output mode P4 ··· I/10to I/O13 Note PD6125A is not equipped with P 1, P 14, P03, and P 04. 11.4
in „Chinesische IC und ihre Verwandschaft“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
lcd_gfx.c
0x00, // sp 0x00, 0x00, 0x00, 0x2f, 0x00, 0x00, // ! 0x00, 0x00, 0x07, 0x00, 0x07, 0x00, // " 0x00, 0x14, 0x7f, 0x14, 0x7f, 0x14, // # 0x00, 0x24, 0x2a, 0x7f, 0x2a, 0x12, // $ 0x00, 0x62, 0x64, 0x08, 0x13, 0x23, // % 0x00, 0x36, 0x49, 0x55, 0x22, 0x50, // & 0x00, 0x00, 0x05, 0x03, 0x00, 0x00, // ' 0x00,
in „RS485 von ms - immer noch Einschaltprobleme“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ad5241_ad5242.pdf
possibleaddresses. 11 VSS NegativePowerSupply,SpecifiedforOperation from0Vto−2.7V. 11 DGND CommonGround. 12 V SS NegativePowerSupply,SpecifiedforOperation 12 O2 LogicOutputTerminalO2 from0Vto−2.7V. 13 NC NoConnect. 13 O 2 LogicOutputTerminal2. 14 O1 LogicOutputTerminalO1 14 B ResistorTerminalB. 2 2 15 W 2 WiperTerminalW2
in „[V] 11 St. Dual I2C 8Bit Digital Poti AD5242 , 10kOhm SO16 (12€)“ · Markt ·
-
PDF
hw1005_hw1007_CH1_Input_Circuit.pdf
1 2 3 4 5 6 CH1 Input Circuit POTTemp Comp CH1 P O SoCADIN_CH10 C H 1 A PO1GSs/500 Ss ontrol Relay 2 A C01_30 PO1GSs/500 Ss ontrol Relay 1 C01_202 PIC01PIC010302 12pF PIC010201 PIC010202 CR01_7 52 Termal compensation routed but not yet INDATA2 POINDATA2 PICT010102 PICT010101200MHz R01
-
PDF
XPLAIN_Shematic.pdf
GND k 1 k 2 k NC13 51 V3P3 V3P3 C 1 1 0 1 0 1 0 SDRAM_CKE 37 53 PC0 R 1 R 1 R 1 SDRAM_CLK 38 CKE NC14 TP104 PC1 PC1 V_XM CLK TP105 PC2 PC2 PC1 DATAFLASH_SS 2 k 2 k TP106 PC2 USB_UART_TX ) ) ) ) ) R 1 R 10 TP107 PC3 PC3 PC3 USB_UART_RX L A L A L V3P3 V3P3 V3P3 V3P3 1 VDD1 VSS1 54 C TP108 PC4 PC4 PC4 USB_SS
in „Xplain: Schaltplan gesucht“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
CT-RFM-Selfmade.txt
####################################################################### Const Device = CB220 Const SS = 4 ' Define Ports for SPI (RFM) / nSel Const MOSI = 5 ' SDI Const MISO = 6 ' SDO Const SCK = 7 ' SCK Const Power = 3 ' VDD Output Power ' Set Pin directions (SS & Power high (5V)) High Power Output SS High SS Output MOSI Input MISO Output SCK Low MISO Dim Temp As Integer Set Spi SCK, MOSI, MISO, 1 ' Set SPI Wait 2000 InitRF Do Wait 2000 SendString Loop Sub SendString() Debug "Write",Cr Temp = SPItrans
in „RFM12 in CuBasic, nach 25h Schrei nach Hilfe“ · HF, Funk und Felder ·
-
PDF
CMX865A_datasheet.pdf
output disconnected b15 = 0 TXAN output connected (normal modem operation) General Control Register b14: Disconnect TXA Output This bit allows the TXA output to be disconnected and set to high impedance. See below for conditions applying to the setting of this bit. b14 = 1 TXA output disconnected b14 =
-
PDF
AS3955_DS000400_2-00.pdf
configured • All SPI interface input lines (including /SS) must be set to high • All SPI output lines must be open Figure 14: Power Manager Concept Page 16 amsDatasheet Document Feedback [v1-07] 2016-Nov-17 AS3955 − Detailed Description Power Mode 1 AS3955
in „AS3955 External Power“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DC-DC_Wandler.pdf
5 4 3 2 1 Vcc D D1 S1 L1 D2 D SS14 C3 + C4 C5 + 220u SS14 C7 + 10u 100n 10u 10u D3 white LED GND GND GND GND R1 R3 D4 100k 100k U1 2 white LED C V R5 Solar- 1 TEST P2.0 8 Zelle Q1 5 XOUT P2.1 9 BT2 32,768kHz 6 XIN P2.2 10 + P2.3 19
-
PDF
DC-DC_Wandler.pdf
5 4 3 2 1 Vcc D D1 S1 L1 D2 D SS14 C3 + C4 C5 + 220u SS14 C7 + 10u 100n 10u 10u D3 white LED GND GND GND GND R1 R3 D4 100k 100k U1 2 white LED C V R5 Solar- 1 TEST P2.0 8 Zelle Q1 5 XOUT P2.1 9 BT2 32,768kHz 6 XIN P2.2 10 + P2.3 19
in „Solarlicht Steuerung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
stm32_magic_eye2.pdf
2 C 18 1 8 L07 1A0 C 1Y0 DIN DIG7 H00 H01 H02 H03 H04 H05 H06 H07 4 1A1 V 1Y1 16 13 CLK MAX7219 6 14 12 SEG_DP 22 H00 1A2 1Y2 CS SEG_A 14 H01 8 1A3 1Y3 12 16 H02 D9 D10 D11 D12 D13 D14 D15 D16 17 3 SEG_B LED LED LED LED LED LED LED LED 2A0 2Y0 SEG_C 20 H03 15 2A1 2Y1 5 23 H04 13 7 SEG_D L01 11 2A2 2Y2
in „STM32F103 und I2S Probleme“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LC4103C.pdf
voltage applied for an on output,DDH, V1=19/20 (VDDH –VSSH),V4=1/20 (V DDH–V SSH),V5=V SSH, VSSH=V SS No.5193–5/11 LC4103TAB-01, 4103TAB-02, 4103C Switching Characteristics at Ta =–20 to +75˚C, V =0V, V SS DD =5V±10% Ratings Parameter Symbol Conditions min typ max Unit DIO output delay time tPCD 30pF
in „Display von Pollin - Datenblatt - Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Schematic_SIMInterface_Base_v2_Sheet_1_20190912110535.pdf
1 2 3 4 5 U2 Buttons + Encoders MCP23S17T-E/SS 11 CS# GPA0 21 1 BTN_1_8 22 Header_Male_1x8 12 GPA1 23 2 A 13 SCK GPA2 24 3 A 14 SI GPA3 25 4 SO GPA4 26 5 15 GPA5 27 6 A0 GPA6 7 VCC 16 A1 GPA7 28 8 R1 17 A2 1K GND 18 RESET# GPB0 1 1 BTN_9_16 330 GPB1
in „AVR - Hilfe bei Schematics prüfung?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
dds-seq.asm
temp1, ' ' rcall lcd_data ldi XL, low(SEQACCENT) ; Akzent rcall selflag ldi temp1, '-' tst temp2 breq ss_acc ldi temp1, 'A' ss_acc: rcall lcd_data ldi XL, low(SEQSLIDE) ; Bindung rcall selflag ldi temp1, '-' tst temp2 breq ss_sld ldi temp1, 'G' ss_sld: rcall lcd_data ldi temp1, ' ' rcall lcd_data ldi temp1
in „Claude Code trifft AVR-Assembler: vom Chip in den Browser mit einem Prompt“ · Mikrocontroller und Digitale Elektronik ·