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frequenznormal.pdf
. Die Gesamtamplitude eines solchen FBAS-Signals beträgt normalerweise 1V bei 75 Ohm Abschluß, bei ss älterenASTRA-Empfängernistesmöglich,daßdiesesSignalnurca.700mV beträgtunssolltedeshalbmit einerVerstärkerstufeaufNormpegelverstärktwerden. Aus diesem Videosignalgemisch muß nun der Synchronimpuls für
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Timer_ISEL_Rev1.1.pdf
1 2 3 4 LCD1 TC1602A_09 DG1B +5V EC1111B04 R A GND +5V T LCD 16*2 + - A EC1111B04 N D O S W 0 1 2 34 5 6 7 E E MEGA8-P A A G V C R R E D D D DD D D D L L R4 1 23 PC6(/RESET) PC0(ADC0) 24 B B 3 1 2 3 4 5 6 7 8 9101 1 1 1 1 1 6 10k 22 PC1(ADC1) 25 P1 2 1 1 21 AGND PC2(ADC2) 26 5k GND 20 AREF PC3(ADC3)
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Timer_ISEL_Rev1.1.pdf
2 3 4 LCD1 TC1602A_09 DG1B +5V EC1111B04 R A GND +5V T LCD 16*2 + - A R4 EC1111B04 N D O S W 0 1 2 34 5 6 7 E E 10k MEGA8-P A A G V C R R E D D D DD D D D L L 1 23 PC6(/RESET) PC0(ADC0) 24 B B 3 1 2 3 4 5 6 7 8 9101 1 1 1 1 1 6 22 PC1(ADC1) 25 P1 2 1 1 21 AGND PC2(ADC2) 26 5k GND 20 AREF PC3(ADC3) 27
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Schematic_Atmega_1284p_Mini_Lora_2021-11-18.pdf
2 D N R1 G 1.2K 3 GND SPANNUNGSREGLER U1 B ATMEGA1284P-AU B 1 44 VCC MOSI 2 PB5(PCINT13/MOSI) PB4(SS#/OC0B/PCINT12) 43 PB4 U2 MISO 3 PB6(PCINT14/OC3A/MISO) PB3(AIN1/OC0A/PCINT11) 42 PB3 HT7333-A SCK 4 PB7(PCINT15/OC3B/SCK) PB2(AIN0/INT2/PCINT10)41 PB2 VCC RESET 5 RESET# PB1(T1/CLKO/PCINT9) 40 PB1 Vout
in „Hilfe bei Schaltplan 1284p, Mosfet usw, MCU neustart“ · Mikrocontroller und Digitale Elektronik ·
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Pollin_NetIO_Clone_SCHEMATIC.pdf
3 4 5 6 7 8 RESET V V V 5 5 5 IC5 3 A + + + R12 10k 3 A 9 RESET (ADC7)PA7 33 ADC4 ADC + (ADC6)PA6 34 ADC3 10u (ADC5)PA5 35 ADC2 GND 22p Q2 12 36 ADC1 L2 J2 7499010211A C12 XTAL2 (ADC4)PA4 37 EIN4 EIN_AUS GND 13 (ADC3)PA3 38 EIN3 1 3 C13 22p XTAL1 (ADC2)PA2 39 4 TD+ int. 16MHz (ADC1)PA1 EIN2 CTD AREF
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Datei
IS51Basic.ASM
by basic ; ; ; ; Now everything else is used by basic. ; First the bit locations, these use bytes 34, 35, 36, 37 and 38 ; $EJECT OTS BIT 16 ;34.0-ON TIME INSTRUCTION EXECUTED INPROG BIT 17 ;34.1-INTERRUPT IN PROCESS INTBIT BIT 18 ;34.2-INTERRUPT SET BIT ON_ERR BIT 19 ;34.3-ON ERROR EXECUTED OTI BIT 20 ;34.4-ON TIME INTERRUPT IN PROGRESS LINEB BIT 21 ;34.5-LINE CHANGE OCCURED INTPEN BIT 22 ;34.6-INTERRUPT PENDING BIT CONB BIT 23 ;34.7-CAN CONTINUE IF SET GTRD BIT 24 ;35.0-READ GET LOCATION LPB BIT 25 ;
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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Datei
p24FJ64GB004.h
RPINR20bits.SCK1R2 #define _SCK1R3 RPINR20bits.SCK1R3 #define _SCK1R4 RPINR20bits.SCK1R4 /* RPINR21 */ #define _SS1R RPINR21bits.SS1R #define _SS1R0 RPINR21bits.SS1R0 #define _SS1R1 RPINR21bits.SS1R1 #define _SS1R2 RPINR21bits.SS1R2 #define _SS1R3 RPINR21bits.SS1R3 #define _SS1R4 RPINR21bits.SS1R4 /* RPINR22 */ #
in „PIC24FJ64GB004 eclipse“ · Mikrocontroller und Digitale Elektronik ·
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SJA1000_3.pdf
interpreted as recessive level and LOW is interpreted as dominant level V 21 ground for input comparator SS2 VDD1 22 5 V supply for logic circuits Note 1. XTAL1 and XTAL2 pins should be connected to V SS1via 15 pF capacitors. 2000 Jan 04 5 Philips Semiconductors Product specification Stand-alone CAN controller
in „Can Controller "SJA1000" Probleme mit Register“ · Mikrocontroller und Digitale Elektronik ·
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K_LINEPLAYITV100.pdf
.................................................................................................. 34 7.6 Entrance code checker................................................................................................................. 36 7.7 Count down timer.....................................
in „[V] NEC V850 Demonstration Kit K-Line "Play it"“ · Markt ·
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NT7533Lcd.pdf
Table 2. When CMO = “L”, use the Instruction Table 1. This pad is used to determine the duty ratio 34 MUX I When MUX = “H”, the Common output is 1/65 duty (COM0 ~ 64) When MUX = “L”, the Common output is 1/48 duty (COM0 ~ 47) 2005/3/9 6 Ver 1.0 With respect to the information represented on this website
in „Seriell (4-Wire)-LCD-Ansteuerung mit NT7533“ · Mikrocontroller und Digitale Elektronik ·
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Advantest_R4131.pdf
kHz F 2 GHz 2 kHz F 3.5 GHz R4131CN/DN ± 1 .5 d B o r le s s ± 2 .5 d B o r le s s ± 4 d B o r le ss R e sid u a l re sp o n se :0 0 d B m o r le ss: W h en term in ated at input. R4131A/B ATT 0 dB a n d irip u t 50 2 -.9 5 d B m o r less: R413'1C/D in p u t -9 8 d B m o r le ss: W h en term in ated
in „Advantest Spectrum Analyser R4131B Fehler im Netzteil“ · HF, Funk und Felder ·
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teXet_TF-127_Service_manual.pdf
BA1 21 34 A9 A9 A9 A10/AP A10/AP A10/AP 22 33 A8 A8 A8 A0 A0 A0 23 32 A7 A7 A7 A1 A1 A1 24 31 A6 A6 A6 A2 A2 A2 25 30 A5 A5 A5 54Pin TSOP A3 A3 A3 26 29 A4 A4 A4 (400mil x 875mil) VDD VDD V DD 27 VSS V SS VSS
in „Photo-Rahmen als Farbdisplay“ · Mikrocontroller und Digitale Elektronik ·
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ssd1803a.pdf
AND R EGULATOR ....................................................................................34 7.12.1 External VLCD mode..................................................................................................................................34 7.12.2 Internal voltage mode.............
in „Probleme mit EADOGM204-4 und ATMEGA32“ · Mikrocontroller und Digitale Elektronik ·
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ssd1803a_2_0.pdf
AND R EGULATOR ....................................................................................34 7.12.1 External VLCD mode..................................................................................................................................34 7.12.2 Internal voltage mode.............
in „Display DOGM-204A/SSD1803A mit I2C - ROM Auswahl“ · Mikrocontroller und Digitale Elektronik ·
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MINI68.TXT
ALTERREGFLAG,D7; !ALTERNATIVE MASKE BTST 15,D7; !STACK ANZEIGEN ? BEQ.S OUTREGY; !NEIN BTST.B 5,STATUSREG; !SS ODER US ? BNE.S OUTREGY; !SS IST ES BCLR 15,D7; !US, DANN SS LOESCHEN BSET 16,D7; !UND US SETZEN BRA.S OUTREGY; !UND AUSGEBEN OUTREGX: BSR PCRLF; !FUER 'R' OUTREG: MOVEM.L D0-A6,-(A7); !ALLES RETTEN
in „[S] MPU (Z80/6502/68k)“ · Markt ·
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Datei
Laut.asm
equ p16 = 0x16 .equ p17 = 0x17 .equ p18 = 0x18 .equ p29 = 0x29 .equ p2F = 0x2F .equ p33 = 0x33 .equ p34 = 0x34 .equ p36 = 0x36 .equ p3B = 0x3B .equ p3D = 0x3D .equ p3E = 0x3E .equ p3F = 0x3F ; ; pointer offsets: ; .equ o01 = 0x01 .equ o02 = 0x02 .equ o03 = 0x03 ; ; bit numbers: ; .equ b0 = 0x00 .equ b1
in „Decompilieren mit dem AVR-Studio?“ · Mikrocontroller und Digitale Elektronik ·
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RH5RL37AA.pdf
60 R 5RL31A 3.023 3.100 3.177 R 5RL32A 3.120 3.200 3.280 VIN– V OUT R 5RL33A 3.218 3.300 3.382 R 5RL34A 3.315 3.400 3.485 =2.0V 35 53 35 50 40 60 R 5RL35A 3.413 3.500 3.587 R 5RL36A V I– 3.510 3.600 3.690 1mA≤ OUT R 5RL37A VOUT 3.608 3.700 3.792 R 5RL38A =2.0V 3.705 3.800 3.895 VIN– ≤50mA 30 45 R 5RL39A
in „Spannungsregler 3,5 oder 3,6v gesucht.gibt es das?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
blue.c
write_bluetooth_adresse 0x27 #define end 0x03 #define bluetoothadresse LMX9830 #define ad0 0x12 //A #define ad1 0x34 //D #define ad2 0x56 //R #define ad3 0x78 //E #define ad4 0x9A //SS #define ad5 0xBC //E void USART_Transmit (unsigned char a) //Funktion für einzelne Zeichen { while (!(UCSRA & (1<<UDRE))) ; UDR=a;
in „usart string“ · Mikrocontroller und Digitale Elektronik ·
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Datei
blue.c
write_bluetooth_adresse 0x27 #define end 0x03 #define bluetoothadresse LMX9830 #define ad0 0x12 //A #define ad1 0x34 //D #define ad2 0x56 //R #define ad3 0x78 //E #define ad4 0x9A //SS #define ad5 0xBC //E void USART_Transmit (unsigned char a) //Funktion für String { while (!(UCSRA & (1<<UDRE))) ; UDR=a; } void Senden_Von_String
in „usart string“ · Mikrocontroller und Digitale Elektronik ·
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Datei
blue.c
write_bluetooth_adresse 0x27 #define end 0x03 #define bluetoothadresse LMX9830 #define ad0 0x12 //A #define ad1 0x34 //D #define ad2 0x56 //R #define ad3 0x78 //E #define ad4 0x9A //SS #define ad5 0xBC //E void USART_Transmit (unsigned char a) //Funktion für String { while (!(UCSRA & (1<<UDRE))) ; UDR=a; } void Senden_Von_String
in „usart string“ · Mikrocontroller und Digitale Elektronik ·
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Schematic.pdf
L L L L L L L L L L L L L C1 R 1 100n IC1 Q3A RST 9 RESET (ADC7)PA7 33 SP8K1-ROHMSO8 R6 (ADC6)PA6 34 12 (ADC5)PA5 36 R7 4 1 5 2 5 3 5 4 5 5 5 6 5 7 5 8 5 9 5 0 5 1 6 2 GND XTAL2 (ADC4)PA4 37 D D D D D D D D D D D D D D D D D D D D D D D D 13 (ADC3)PA3 38 10k 1 6 L E L E L E L E L E L E L E L E L E L
in „LED Matrix - mehrere LEDs parallel“ · Mikrocontroller und Digitale Elektronik ·
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embmega32_sch.pdf
/AIN1) PA3(ADC3) 37 PA3 PA7 15 16 +5V 3 X2 SQW/OUT 6 PB4 5 36 PA4 PORTA 4 VBAT SCL 5 PC0 PB5 6 PB4(SS) PA4(ADC4) 35 PA5 GND SDA PC1 4K7 1N4148 7 PB5(MOSI) PA5(ADC5) 34 32.768KHz PB6 8 PB6(MISO) PA6(ADC6) 33 PA6 PB0 PB0 1 2 GND GND DS1307 PB7 PB7(SCK) PA7(ADC7) PA7 PB1 PB1 GND GND BAT 3V 9 PB2 3 4 GND
in „AVR ISP Programmer an ATmega32 Board“ · Mikrocontroller und Digitale Elektronik ·
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print.pdf
AVR ISP 9 R2OUT R2IN 8 5 9 V MAX232 COM + 4 GND GND IC1 9 32 D7 RESET C (AD7)PA7 33 D6 F V (AD6)PA6 34 D5 5 2 (AD5)PA5 35 D4 D C 2 18 (AD4)PA4 36 D3 N XTAL2 (AD3)PA3 37 D2 G F z (AD2)PA2 38 6 2 1 M (AD1)PA1 39 D1 Anschlüsse für Module D C 2 Q 19 (AD0)PA0 D0 N XTAL1 8 PullUps for Master-In-leitungen SV2
in „Labor Netzteil“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RTCDEMO.PAS
Status-Register und Alarmregister lesen/schreiben - RAM lesen/schreiben $Id: RTCDEMO.PAS 195 2013-02-11 21:34:04Z leo $ ----------------------------------------------------------------------} const I2CCMD = 5; {adr of I2C Command Port (1=read, 2=write)} I2CMSGLEN = 6; {Transferpuffergroesse} I2CADRL = 7; {Transferpufferadresse
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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SS-160SE-6N.pdf
D12 J2 IS04 D C C26 1uF 10K LM324 RL1 1N4148 VIPER20A 4 SOURE V O 102 5 UC3845A 1N4148 D C37 R21 C34 D19 104 R19 103 R27 2 1 C25 C36 Q2 C12 C14 R23 56K IS4 D11 1N4148 9013 103 Q3 47K C 0 104 R19 681 R22 9013 104 4.7V/0.5W 3 / C29 D24 R22 223 102 8.2K C30 C10 R20 C11 C13 472 104 C15 C u C28 15V 2.2K
in „Schweiß Inverter reparieren“ · Analoge Elektronik und Schaltungstechnik ·
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Crumb644-NET_v2.1_Schematic.pdf
ATMEGA644-20MU 100n U5 PB5 1 44 PB4 C C C C C C C C C C C GND GND 6 PB6 2 PB5 MOSI PCINT13 PCINT12 OC0B /SS PB4 43 PB3 N N N N N N N N N N N PB6 MISO PCINT14 PCINT11 OC0A AIN1 PB3 POE Addon OUT PB7 3 PB7 SCK PCINT15 PCINT10 INT2 AIN0 PB2 42 PB2 23 CTS 1 2 3 4 5 /RESET 4 41 PB1 24 4 D+ B GND 5 /RESET PCINT9
in „W5100 Modul und SD-Card-Modul gleichzeitig an Mega 2560“ · Mikrocontroller und Digitale Elektronik ·
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Datei
adcamp01.vhd
STD_LOGIC_VECTOR(31 downto 0) := x"00000000"; --ausgang: out STD_LOGIC; abtasten: out STD_LOGIC; --disables spi_ss_b : out STD_LOGIC; dac_cs : out STD_LOGIC; sf_ce0: out STD_LOGIC; fpga_init_b: out STD_LOGIC ); end adcamp01; architecture Behavioral of adcamp01 is signal counter : STD_LOGIC_VECTOR(7 downto 0):= x"
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DEM128064J_SBH-PW-N.pdf
HPM = “L”: High power mode This terminal selects the resistors for the V0 voltage level adjustment. 34 IRS IRS = “H”: Use the internal resistors IRS = “L”: Do not use the internal resistors. The V0 voltage level is regulated by an external resistive voltage divider attached to the VR terminal Version
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Multiplexer_Voltmeter_Logger.pdf
0V S K S _ S V O C C + _ C 0V C C V + E E _ IC7 R31 C z 9 RESET (ADC7)PA7 33 GPIB_DB_7/4.2D 10k H 34 GPIB_DB_6/4.2D SV1 1 2 M (ADC6)PA6 35 13 14 C 2 Q 16 12 (ADC5)PA5 36 GPIB_DB_5/4.2D LCD_DB2 11 12 LCD_DB3 2 2 XTAL2 (ADC4)PA4 37 GPIB_DB_4/4.2D LCD_DB0 9 10 LCD_DB1 C 2 (ADC3)PA3 GPIB_DB_3/4.2D 13 XTAL1
in „PM2528 als Scannermultimeter mit GPIB“ · Mikrocontroller und Digitale Elektronik ·
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PICkit_3_Programmer_Application_User_s_Guide_50002158a.pdf
........ 34 4.10 Hex File Options ......................................................................................... 34 4.11 EEPROM Data Memory ............................................................
in „PICkit3 und Windows 11“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LC75710NE.pdf
Tstg –50 to +125 °C Allowable Operating Ranges at Ta = –40 to +85°C, V = 4.5 to 5.5 V, V = 0 V DD SS Parameter Symbol Conditions min typ max Unit VDD V DD 4.5 5.0 5.5 Supply voltage V VFL V FL VDD – 50 VDD VIH DI, CL, CE 0.8 VDD 5.5 Input high level voltage V 2 RES 0.7 V 5.5 V IH DD VIH OSCI 0.7 VDD
in „Help on communications protocol with Sanyo LC75710NE“ · Projekte & Code ·
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PDF
discoveryf4.pdf
and layout Figure 3. Top layout 34 ,).+▯6▯ ,$▯▯▯RED▯GREEN▯,%$ ▯ #/- ,$▯▯▯RED▯,%$ #.▯ 072 37$▯CONNECTOR #.▯▯ 34 ,).+▯$)3#/6%29 SELECTOR ▯6▯POWER SUPPLY▯INPUT▯OUTPUT *0▯▯ $$ ▯MEASUREM▯NT ▯6▯POWER SUPPLY▯OUTPUT▯ 34-▯▯&▯▯▯6'4▯ 3"▯▯▯"▯ 2%3%
in „Hilfe bei Programmierung STM32F407VG bei TIM1“ · Mikrocontroller und Digitale Elektronik ·
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Aeternum_V1.pdf
CLKO/PCINT0) 15 TXD_CPM D2_A2 4 2D 2Q 17 A10 PB1(OC1A/PCINT1) D3_A3 3D 3Q A11 AS6C4008 22 AGND PB2(SS/OC1B/PCINT2) 16 CS 5 4D 4Q 16 PB3(MOSI/OC2A/PCINT3) 17 MOSI_A8 D4_A4 6 5D 5Q 15 A12 8 18 MISO_A9 D5_A5 7 14 A13 GND PB4(MISO/PCINT4) 19 SCK_A10 D6_A6 8 6D 6Q 13 A14 PB5(SCK/PCINT5) D7_A7 7D 7Q A15 9
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Wohnraumuhr1_Rev1.1.pdf
6 6 6 6 6 6 6 6 67 7 6 6 6 6 6 6 6 6 6 6 6 6 6 6 IC5 GND 4 5 J2-2 C3 9 RESET (ADC7)PA7 33 100n C C 34 1 1 1 1 1 1 1 1 1 1 2 2 29 3 2 2 2 2 2 2 3 3 3 3 3 3 3 3 V V (ADC6)PA6 35 J1-1 J1-2 R R R R R R R R R R R R RR R R R R R R R R R R R R R R R C11 GND A (ADC5)PA5 36 3 0 8 7 6 5 GND +47µ/25V 12 (ADC4)PA4
in „wohnraumuhr 2 - leiterplatte nach projekt scott huehn“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt__HT9032C_HT9032D.pdf
Filter 60Hz -64 550Hz 5V Frequency Response ¾ -4 ¾ dB Relative to 1700Hz @ 0dBm 2700Hz -3 3300Hz -34 Carrier Detect Sensitivity 5V ¾ -48 ¾ dBm tDOSC Oscillator Start Up Time 5V ¾ ¾ 2 ¾ ms tSUPD Power Up to FSK Signal Set Up Ti5V ¾ 15 ¾ ¾ ms tDAQ Carrier Detect Acquisition Time 5V ¾ ¾ 14 ¾ ms tDCH End
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KTY-Philips.pdf
SOT23 KTY82-2 2000 ±1% up to ±5% −55 to 150 SOT23 KTY83-1 1000 ±1% up to ±5% −55 to 175 SOD68 (DO-34) KTY84-1 1000 (R ) ±3% up to ±5% −40 to 300 SOD68 (DO-34) 100 5.1 0.1 13.6 0.9 handbook, full pagewidth 0.2 0.05 3.7 0.1 1.65 0.1 0.6 0.1 0.6 0.1 1 0.04 0.3 O 4.5 0.1 2.54 2 0.61 1.8 0.1 MLC325 0.05
in „Zwischenwerte vom KTY82-210 berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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Ublox_-_Protocol_Specifications.pdf
................................................................... 34 Dead Reckoning, Extrapolating Positioning .................................................................... 34 Remote Inventory............................................................................................................................... 34 Description ................................................................................................................................. 34 Usage ................................................
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Display_Controller.pdf
124 125 126 127 128 129 1 2 3 4 5 CL(Internal) FR(Internal) M(Internal) V0 V V 1 COM0 V 2 V 3 V 4 SS V0 V 1 V 2 COM1 V 3 V 4 V SS V0 V 1 V SEGn V 2 V 3 V 4 SS Figure 11 2-frame AC Driving Waveform (Duty Ratio: 1/129 in mode-0) 128 129 1 2 3 4 5 6 7 8 9 10 11 12 120 121 122 123 124 125 126 127 128 129
in „LCD Controler mit Spannungsregulier-Eingängen“ · Mikrocontroller und Digitale Elektronik ·
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doc4688.pdf
pin) VIN VSS –0.6 ≤V IN≤V DD+0.6 V Input/output clamp current (SS> Vi/Vo > VDD) IK OK ±15 mA Min. ESD protection (100 pF through 1.5 Ω ) ±2 kV Operating temperature range T -40 to +85 °C amb Storage temperature range T STG -40 to +125 °C Soldering temperature (t≤ 10s
in „Die I2C Schnittstelle eines PIC16F876A initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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T83C5121.PDF
FE bit. When FE feature is enabled, RI rises on stop bit instead of the last data bit (See Figure 34 and Figure 35). 81 4164G–SCR–07/06 Figure 34. UART Timings in Mode 1 RXD D0 D1 D2 D3 D4 D5 D6 D7 Start Data Byte Stop Bit Bit RI SMOD0 = X FE SMOD0 = 1 Figure 35. UART Timings in Modes 2 and 3 RXD D0
in „[V] 1 Stange ältere (ca. 56St) Atmel AT89C5121 mit Interface für Chipkarten/ SIM (9€)“ · Markt ·
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T83C5121.PDF
FE bit. When FE feature is enabled, RI rises on stop bit instead of the last data bit (See Figure 34 and Figure 35). 81 4164G–SCR–07/06 Figure 34. UART Timings in Mode 1 RXD D0 D1 D2 D3 D4 D5 D6 D7 Start Data Byte Stop Bit Bit RI SMOD0 = X FE SMOD0 = 1 Figure 35. UART Timings in Modes 2 and 3 RXD D0
in „[V] noch 1 Stange ältere (60St) Atmel AT89C5121 mit Interface für Chipkarten/ SIM (9€)“ · Markt ·
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Datei
Devices.txt
C-EU075-032X103 41 C2.5/5 38 R-EU_0309/10 38 LEDCHIPLED_1206 37 R-US_R0603 37 BC547B 36 C5/2.5 36 0204/7 34 3,81/1,1 33 DT6 33 C-EUC0805K 33 78XXS 33 7805T 32 TPB2,54 32 LED 32 IRF350 31 CRYSTALHC49S 31 CPOL-EUE2.5-7 31 CAPNP-2,5 31 BC557 30 1AMP_P7+4N 29 PINHD-1X4 29 NEWCC5 29 MPT2 29 F09HP 28 W237-02P 28
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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Datei
version_1p3_assembler.asm
Channel to use ; ; ; ; Now everything else is used by basic. ; First the bit locations, these use bytes 34, 35, 36, 37 and 38 ; OTS BIT 16 ;34.0-ON TIME INSTRUCTION EXECUTED INPROG BIT 17 ;34.1-INTERRUPT IN PROCESS INTBIT BIT 18 ;34.2-INTERRUPT SET BIT ON_ERR BIT 19 ;34.3-ON ERROR EXECUTED OTI BIT 20 ;34.4-ON TIME INTERRUPT IN PROGRESS LINEB BIT 21 ;34.5-LINE CHANGE OCCURED INTPEN BIT 22 ;34.6-INTERRUPT PENDING BIT CONB BIT 23 ;34.7-CAN CONTINUE IF SET GTRD BIT 24 ;35.0-READ GET LOCATION LPB BIT 25 ;35.1-PRINT TO LINE PRINTER PORT CKS_B BIT 26 ;35.2
in „Spaß mit Kloeckner-Moeller PS3 in BASIC(?)“ · Projekte & Code ·
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Datei
version_1p3_assembler.asm
by basic ; ; ; ; Now everything else is used by basic. ; First the bit locations, these use bytes 34, 35, 36, 37 and 38 ; OTS BIT 16 ;34.0-ON TIME INSTRUCTION EXECUTED INPROG BIT 17 ;34.1-INTERRUPT IN PROCESS INTBIT BIT 18 ;34.2-INTERRUPT SET BIT ON_ERR BIT 19 ;34.3-ON ERROR EXECUTED OTI BIT 20 ;34.4-ON TIME INTERRUPT IN PROGRESS LINEB BIT 21 ;34.5-LINE CHANGE OCCURED INTPEN BIT 22 ;34.6-INTERRUPT PENDING BIT CONB BIT 23 ;34.7-CAN CONTINUE IF SET GTRD BIT 24 ;35.0-READ GET LOCATION LPB BIT 25 ;35.1-PRINT TO LINE PRINTER PORT CKS_B BIT 26 ;35.2
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BASIC131-PS3.a51
by basic ; ; ; ; Now everything else is used by basic. ; First the bit locations, these use bytes 34, 35, 36, 37 and 38 ; OTS BIT 16 ;34.0-ON TIME INSTRUCTION EXECUTED INPROG BIT 17 ;34.1-INTERRUPT IN PROCESS INTBIT BIT 18 ;34.2-INTERRUPT SET BIT ON_ERR BIT 19 ;34.3-ON ERROR EXECUTED OTI BIT 20 ;34.4-ON TIME INTERRUPT IN PROGRESS LINEB BIT 21 ;34.5-LINE CHANGE OCCURED INTPEN BIT 22 ;34.6-INTERRUPT PENDING BIT CONB BIT 23 ;34.7-CAN CONTINUE IF SET GTRD BIT 24 ;35.0-READ GET LOCATION LPB BIT 25 ;35.1-PRINT TO LINE PRINTER PORT CKS_B BIT 26 ;35.2
in „Spaß mit Kloeckner-Moeller PS3 in BASIC(?)“ · Projekte & Code ·
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PDF
Schematic_Prints.pdf
) PB2(AIN0/INT2) PA2 (ADC2) 37 IO2 +5 ISP 5 PB3(AIN1/OC0) PA3 (ADC3) 36 IdentitätPin1 ISP 5V 6 PB4(SS) PA4 (ADC4) 35 IdentitätPin2 1 2 1 7 PB5(MOSI) PA5 (ADC5) 34 IdentitätPin3 +5 4 3 PB6(MISO) PA6 (ADC6) 2 6 5 8 PB7(SCK) PA7 (ADC7) 33 IdentitätPin4 C 8 7 IO3 LCD C 10 9 RX 14 PD0 (RXD) PC0(SCL) 22 1
in „Bus an Atmega32 funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AquaCtrl.pdf
ADC3) 12 R1 +12V 36 PA4 (PCINT4/ADC4) L1 11 +12V 2k2 DB5 35 PA5 (PCINT5/ADC5) 10u Nachtlicht 10 DB6 34 PA6 (PCINT6/ADC6) 9 U13 VCC DB7 33 PA7 (PCINT7/ADC7) AVCC 30 C143 1-10V 8 F/DGX-12P 100n +12V R1 LIGHT 1 DCF77 7 DCF77 C1 18k R140 CO2 2 PB0 (PCINT8/XCK0/T0) 6 10u/16V 100k HEATER 3 PB1 (PCINT9/T1/CLKO
in „Aquarium Steuerung“ · Mikrocontroller und Digitale Elektronik ·
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Elektroden_Brevier.PDF
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