-
PDF
2m_BP_FILTER-YU1LM.pdf
0.1377GHz 0.145GHz 0.1079GHz -3.63dB -0.5083dB 0.1523GHz DB(|S(1,1)|) -45.03dB TRANS -3.413dB BP2m 0 DB(|S(2,1)|) BP2m DB(|S(2,2)|) 0.05028GHz 0.1742GHz BP2m -69.11dB -41.16dB -20 -40 -60 -80 0.044 0.094 0.144 0.194 0.244 Amplitude
-
Datei
txtlcd8d.asm
,$1E,$1E,$01,$00 .db $00,$1B,$1B,$1B,$1B,$1B,$1B,$00 .db $00,$0E,$11,$11,$11,$0E,$00,$00 */ ;8 Bytes per Char CG_RAM: .db $00,$02,$06,$0E,$06,$02,$00,$00 .db $1F,$1D,$19,$11,$19,$1D,$1F,$00 .db $00,$0F,$0F,$01,$0F,$0F,$00,$00 .db $1B,$1F,$13,$1B,$1B,$1B,$11,$00 .db $1F,$1F,$09,$06,$0E,$0E,$0E,$00 .db $11,$0E,$0E,$0E,$00,$0E,$0E,$00 .db $1F,$1F,$0E,$0E,$0E,$0C,$12,$00 .db $1F,$1F,$11,$0F,$11,$1E,$01,$00 ;**********************
in „Programmfehler LCD-Sonderzeichenproblem“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
lcd_spi.c
//Devider on and set value //_delay_ms(50); spi_sendCommand(0x56); //Booster on and set contrast (DB1=C5, DB0=C4) //_delay_ms(50); spi_sendCommand(0x7A); //Set contrast (DB3-DB0=C3-C0) //spi_masterTransmit(0x74); //Set contrast (DB3-DB0=C3-C0) //_delay_ms(50); spi_sendCommand(0x38); //8 bit data length
in „Initialisierung EADOGS 204-N via SPI“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
GTRV2.asm
,0xff,0xff .db 0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xd0 Endheader: .db 0x3A,0x45,0x4E,0x44,0xff,0xff,0xff,0xff,0xff,0xff .db 0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff .db 0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff .db 0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff .db 0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0x56 defaultwerte: ;Wert = 0 .db 0x3a,0x00,0x01,0x00,0x01,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0xfe
in „UART Programm (Umwandlung von Assembler zu C)“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Final.asm
,0xff,0xff .db 0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xd0 Endheader: .db 0x3A,0x45,0x4E,0x44,0xff,0xff,0xff,0xff,0xff,0xff .db 0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff .db 0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff .db 0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff .db 0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0xff,0x56 defaultwerte: ;Wert = 0 .db 0x3a,0x00,0x01,0x00,0x01,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0xfe
in „UART Programm (Umwandlung von Assembler zu C)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
IO_subprocessor_draft.pdf
TCNT2 TCCR2 ICR1L ICR1H .db 0,0,0,0 ;0x28 OCR1BL OCR1BH OCR1AL OCR1AH .db 0,0,0,0 ;0x2C TCNT1L TCNT1H TCCR1B TCCR1A .db 0,0,0,0 ;0x30 SFIOR OSCCAL TCNT0 TCCR0 .db 0,0,0,0xff ;0x34 MCUCSR MCUCR TWCR SPMCR .db 0,0,0,3 ;0x38 TIFR TIMSK GIFR GICR .db 0,0xff,0xff,0xff ;0x3C OCR0 SPL SPH SREG .endmacro Hardware IO units with special support may need extra disable settings. Since pin 4 of port B is also the slave select pin of the SPI module, slave
in „ATMEGA16 Revision & USART receive buffer“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
LCD.asm
, Pascal ; ; ********************************************************** ; Pinbelegung PORTB: ; 0 - DB7 ; 1 - DB6 ; 2 - DB5 ; 3 - DB4 ; 4 - DB3 ; 5 - DB2 ; 6 - DB1 ; 7 - DB0 ; Pinbelegung PORTE: ; 2 - RS ; 0 - R/W ; 1 - E ; ********************************************************** list p=16F887 #include
in „PIC16F887 - LCD Toshiba 20x4 Zeichen - Assembler“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
lcd_4_bit.c
POLLIN-Erweiterungsboard mit Drahtbrücken // Port-Belegung // // E -> PB0 // RS -> PB2 // R/W -> PB1 // // DB0 -- // DB1 -- // DB2 -- // DB3 -- // DB4Ž-> PA4 // DB5 -> PA5 // DB6 -> PA6 // DB7 -> Pa7 void delay_ms(unsigned int anz_milisekunden); void delay_100us(unsigned int anz); void init_ports(void); void
in „Problem mit LCD 4 Bit Initalisierung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AD9833.pdf
device. REV. A –5– AD9833–Typical Performance Characteristics 5.5 –60 5.5 T = 25ⴗC TA= 25ⴗC A AVDD = 3V 5V TA= 25ⴗC 5.0 5.0 –65 5V –70 4.5 )4.5 A A 3V ) m ( B–75 D 3V D ( I4.0 I4.0 R D SFDR dB MCLK/7 SFDR dB MCLK/50 S–80 3.5 3.5 –85 3.0 –90 3.00 5 10 15 20 25 1 10 100 1k 10k 100k 1M 0 5 10 15 20 25 f
-
Datei
raw.txt
Schreibzeiger=Lesezeiger -> nix zum lesen mov a,rs232LastReadByte cjne a,rs232LastRecByte,IFSrs232buf3 jmp IFrs232buf3 IFSrs232buf3: ;| _if a<>rs232LastRecByte ; Lesezeiger neu berechnen inc rs232LastReadByte mov a,rs232LastReadByte mov r0,a cjne a,#rs232InBufferEnd,IFrs232buf4 ;|e_if a=#rs232InBufferEnd
in „Ringspeicher - wie am besten realisieren?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
freqgen1.bas
------- Display initialisieren 'Fuer Lochrasterplatine - weniger Kreuzungen: Config Lcdpin = Pin , Db4 = Portc.4 , Db5 = Portc.1 , Db6 = Portc.2 , Db7 = Portc.0 , E = Portc.3 , Rs = Portc.5 'Wie im Schaltplan: 'Config Lcdpin = Pin , Db4 = Portc.2 , Db5 = Portc.3 , Db6 = Portc.4 , Db7 = Portc.5 , E =
in „Einstellbarer Frequenzgenerator für 0.12 Hz - 8 MHz mit Atmega 8 und Bascom“ · Projekte & Code ·
-
Datei
32atmega_freqgen1_org1.bas
------ Display initialisieren 'Fuer Lochrasterplatine - weniger Kreuzungen: 'Config Lcdpin = Pin , Db4 = Portc.4 , Db5 = Portc.1 , Db6 = Portc.2 , Db7 = Portc.0 , E = Portc.3 , Rs = Portc.5 'Wie im Schaltplan: Config Lcdpin = Pin , Db4 = Portc.2 , Db5 = Portc.3 , Db6 = Portc.4 , Db7 = Portc.5 , E = Portc
in „Einstellbarer Frequenzgenerator für 0.12 Hz - 8 MHz mit Atmega 8 und Bascom“ · Projekte & Code ·
-
Datei
freqgen1.bas
------- Display initialisieren 'Fuer Lochrasterplatine - weniger Kreuzungen: Config Lcdpin = Pin , Db4 = Portc.4 , Db5 = Portc.1 , Db6 = Portc.2 , Db7 = Portc.0 , E = Portc.3 , Rs = Portc.5 'Wie im Schaltplan: 'Config Lcdpin = Pin , Db4 = Portc.2 , Db5 = Portc.3 , Db6 = Portc.4 , Db7 = Portc.5 , E =
in „Einstellbarer Frequenzgenerator für 0.12 Hz - 8 MHz mit Atmega 8 und Bascom“ · Projekte & Code ·
-
Datei
freqgen1_DISPL_MOD_03.bas
------ Display initialisieren 'Fuer Lochrasterplatine - weniger Kreuzungen: 'Config Lcdpin = Pin , Db4 = Portc.4 , Db5 = Portc.1 , Db6 = Portc.2 , Db7 = Portc.0 , E = Portc.3 , Rs = Portc.5 'Wie im Schaltplan: Config Lcdpin = Pin , Db4 = Portc.2 , Db5 = Portc.3 , Db6 = Portc.4 , Db7 = Portc.5 , E = Portc
in „Einstellbarer Frequenzgenerator für 0.12 Hz - 8 MHz mit Atmega 8 und Bascom“ · Projekte & Code ·
-
Datei
lcd.asm
userchar2<<1) ldi iobuf,(0b01000000+16) rcall lcd_command .ENDIF rcall lcd_writechar .ENDIF .IFDEF userchar3 .IFNDEF userchar2 ldi ZL,LOW(userchar3<<1) ldi ZH,HIGH(userchar3<<1) ldi iobuf,(0b01000000+24) rcall lcd_command .ENDIF rcall lcd_writechar .ENDIF .IFDEF userchar4 .IFNDEF userchar3 ldi ZL,LOW(userchar4
in „Hilfe! LCD-Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
LH155.asm
, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000 .db 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000 .db 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000 .db 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000 .db 0b00000000, 0b00000000, 0b00000000, 0b00000000, 0b00000000
-
Datei
TXbuddy.asm
1" bthgh_: out TCCR0A, rpospwmon ; PWM connected to PB1 rjmp wtftc__ ;exponential table expotbl_: .db 0,0,0,0,0,0,0,1,1,1,1,1,1,2,2,2 .db 2,2,3,3,3,3,4,4,5,5,5,6,6,7,7,8 .db 8,9,9,10,10,11,11,12,13,13,14,14,15,16,17,17 .db 18,19,20,20,21,22,23,24,25,25,26,27,28,29,30,31 .db 32,33,34,35,36,37,38,39,41,42,43,44,45,46,48,49 .db 50,51,53,54,55,56,58,59,61,62,63,65,66,68,69,71 .db 72,74,75,77,79,80,81,83,84,86,88,89,91,93,95,96 .db 98,100,102,104,105,107,109,111,112,114,116,118 .db 120,122,124,126 ; MAIN LOOP END .EXIT
in „Anfängerfrage zu AVR Tiny12“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
YJD1602A-1.pdf
L--Write 6 E H,H-L Enable Signal 7--10 DB0-- DB3 H/L Data bus used in 8 bit transfer 11--14 DB4-- DB7 H/L Data bus for both 4 and 8 bit transfer 15 BLA ---- Power for LED Backlight (+5 V) 16 BLK ---- Power for LED Backlight (Ground) 6.0 EXTERNAL DIMENSIONS 7.0 SYSTEM BLOCK DIAGRAM Vss DB7-DB0 LCD PANEL Dot Matrix16(Common) 16CHARCTERS *2 LINES E LCD R/W Controlle80(Segment) RS V0 Vdd YJD1602A-1 LCD Module Specification Ver1.0 3 µç »°£”0755-27668030 27668083 ·« Õæ£ 0755-27668030-606 µØÖ
in „Welches Display zur Platine (Luftentfeuchter-Steuerung)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
171972-da-01-en-LM_1876.pdf
, 98 dB O Measured at 1 kHz, RS e 25X P e 15W, A—Weighted 108 dB O Measured at 1 kHz, RS e 25X AM Mute Attenuation Pin 6,11 at 2.5V 115 80 dB (min) Standby Pin V Standby Low Input Voltage Not in Standby Mode
in „LM1876-Gleichspannung am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
bootloader_v2.asm
' ;$0DB7 $C1 $31 bne L0E22 ;$0DB9 $26 $67 ldd L049D ;$0DBB $FC $04 $9D cpd #$FF01 ;$0DBE $8C $FF $01 bne L0E00 ;$0DC1 $26 $3D ldab #$10 ;$0DC3 $C6 $10 stab L04BF ;$0DC5 $7B $04 $BF ldab #$08 ;$0DC8 $C6 $08 stab
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ADA4817-1_4817-2.pdf
ground, unless otherwise noted. Table 1. Parameter Conditions Min Typ Max Unit DYNAMIC PERFORMANCE −3 dB Bandwidth VOUT= 0.1V p-p 1050 MHz V = 2V p-p 200 MHz OUT VOUT= 0.1V p-p, G = 2 390 MHz Gain Bandwidth Product VOUT= 0.1V p-p ≥410 MHz Full Power Bandwidth VIN 3.3V p-p, G = 2 60 MHz 0.1 dB Flatness
in „Alternative zum OPA656“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ADA4817-1_4817-2.pdf
ground, unless otherwise noted. Table 1. Parameter Conditions Min Typ Max Unit DYNAMIC PERFORMANCE −3 dB Bandwidth VOUT= 0.1V p-p 1050 MHz V = 2V p-p 200 MHz OUT VOUT= 0.1V p-p, G = 2 390 MHz Gain Bandwidth Product VOUT= 0.1V p-p ≥410 MHz Full Power Bandwidth VIN 3.3V p-p, G = 2 60 MHz 0.1 dB Flatness
in „Wittig(welec) DSO W20xxA Hardware“ · Mikrocontroller und Digitale Elektronik ·
-
Bild
Rigol DNA6264 Vektor-Netzwerkanalysator mit Messkurven
Preset Format Avg BW Marker Scale Math Cal Search Freq Power Sweep Trigger Trace Channel 7 8 9 0 1 2 3 4 5 6 Ch 1 Internal Trig Continuous BW100 Hz No Correction RF 0 dB -10 dB -20 dB -30 dB -40 dB -50 dB -60 dB -70 dB -80 dB -90 dB -100 dB 0.000000 GHz
in „EmbeddedWorld 2026, Tag 3 – Messtechnik, Software und mehr“ · Mikrocontroller und Digitale Elektronik · · Fotos
-
Datei
zbox.c
+1 RAM-Größe (240) #define RTCKorr 52 #define UARTSPEED 57600 //#define F_CPU 12000000 //von 7..0: DB7/DB6/DB5/DB4/RS/Beleuchtung-/Enable/XX #define LCDEnable 1 #define LCDLightDisable 1 #define LCDLightEnable 0 #define LCDBefehl 0 // Befehl RS Bit #define LCDZeichen 1 volatile uint16_t beepZahl; volatile
in „UART Phänomen“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Auschnitt.txt
- . . . ;------------------------------------------------------------------------------- menue71: .db " Licht 1 " menue72: .db "--------------------" menue73: .db " An = xx:xx " menue74: .db " Aus = xx:xx " ;-------------------------------------------- menue81: .db " Licht 2 " menue82: .db "--------------------" menue83: .db " An = xx:xx " menue84: .db " Aus = xx:xx " ;--------------------------------------------
in „"komische" Zeichen auf dem LCD“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LM78XX.pdf
10Hz≦f≦100kHz 55 μV Temperature Coefficient of Vo ΔVo/ΔT IOUT=5mA -0.4 mV/°C Ripple Rejection RR V I N3V–16.3V, f=120Hz, T =J5°C 57 dB Peak Output Current IPEAK T J25°C 1.8 A Short-Circuit Current SC V IN5V, T =J5°C 250 mA For UTC LM7847 (V =IN7V) PARAMETER SYMBOL TEST CONDITIONS MIN TYP MAX UNIT T J25
in „2 Spannungen mit 1 Labornetzteil“ · Analoge Elektronik und Schaltungstechnik ·
-
Bild
Software-Screenshot eines Crystal Ladder Filter Calculators
Crystal Ladder Filter Calculator "DISHAL" Vers. 3.0.2.3 HF Tools by DJ6EV Lm 62 mH fs= 7020.271 kHz Xtal Rm 10 Xtal Qu 273469 3 8 Series Freq. [kHz] 7020 B3db [kHz] 8 FP= 2.14 Display Freq. Span 10db <-> 1dB Filter Type Chebyshev/Butterworth F Ripple
in „Quarzfilterprogramm Dishal3023“ · HF, Funk und Felder · · Screenshots
-
PDF
AK5388AEQ.pdf
Dynamic Range Stereo Mode 114 120 - (60dBFS with A-weighted) Mono Mode - 123 - dB S/N Stereo Mode 114 120 - dB (A-weighted) Mono Mode - 123 - Input Resistance 3.15 3.7 4.25 k Interchannel Isolation 110 120 dB Interchannel Gain Mismatch 0.1 0.5 dB Power Supply Rejection (Note 7) 60
in „Audio-ADC - Taktfrequenzen I2S“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Farnell_1330644_LT1364.pdf
0.5 1.1 V – Input Voltage Range 15V –13.2 –12.0 V 5V –3.2 –2.5 V 2.5V –0.9 –0.5 V CMRR Common Mode Rejection Ratio VCM = 12V 15V 84 90 dB VCM = 2.5V 5V 76 81 dB VCM = 0.5V 2.5V 66 71 dB PSRR Power Supply Rejection Ratio VS= 2.5V to 15V 90 100 dB AVOL Large-Signal
in „Schneller Peak-Detector (Spitzenwertspeicher)“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
DPasmfinale.asm
************ ; *********PORTA*******PORTB*******PORTC*******PORTD************************ Muster: .db 0b00000001, 0b10000000, 0b10000000, 0b10000000 // 1 .db 0b00000011, 0b11000000, 0b10100000, 0b11000000 // 2 .db 0b00000111, 0b11100000, 0b10101000, 0b11100000 // 3 .db 0b00001111, 0b11110000, 0b10101010, 0b11110000 // 4 .db 0b00011111, 0b11111000, 0b11111111, 0b11111000 // 5 .db 0b00111111, 0b11111100, 0b00000000, 0b11111100 // 6 .db 0b01111111, 0b11111110, 0b01010101, 0b11111110 // 7 .db 0b11111111, 0b11111111, 0b11111111
in „Audiotisch (Daft Punk)“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
lcd_spi.c
include "lcd_spi.h" #include <avr/io.h> #include <util/delay.h> #define SPI_DDR DDRB #define SPI_MOSI DDB3 #define SPI_MISO DDB4 #define SPI_SCK DDB5 #define LCD_CS DDB2 #define LCD_RESET DDB1 #define LCD_CS_1 PORTB |= (1 << LCD_CS); #define LCD_CS_0 PORTB &= ~(1 << LCD_CS); #define LCD_RESET_1 PORTB |= (
in „Initialisierung EADOGS 204-N via SPI“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ralph3.pdf
= = 0 110° 40µA 3000Ω 120mV 4,8µW R –: 30 MΩ R ~:e1 MΩ || 20pF 30eHz ... 1 MHz 5 6 7 8 10 12 15 20 3 4 2530 4 2 -7 -5 -4 -3 2 1 0 60 1 1. -0 15 20 25 0 10 0.5 -14 10 1 50 0 -05 4 5 6 75 86 9 10 30 0 Ω 3 2 3 4 7 8 11 2 dB Ω dB 0 2 1 10 15 20 9 12 ~ ~ 010 5 | 25 10 0 – + 30 = = 110°40A 300Ω 120 V4,8µ R –:30M Ω R ~:1M Ω|20pF 3 Hz..1M Hz e e 5 6 7 8 10 12 15 20 3 4 2530 4 52 -7 -5 -4 -3 2 1 0 60 1 1. -0 15 20 25 0 10 0.5 -14 10 7 8 1 50 0 -05 4 5 4 5 6 9 10 30 2 0 Ω 3 2 3 7 8 11 dB Ω dB 0 1 2 1 10 15 20 9 12 ~ ~ 0 0 5 – | +
-
PDF
swra228c.pdf
................................................................................................ 2 3 DESCRIPTION OF THE PCB ANTENNA...................................................................... 3 3.1 IMPLEMENTATION OF THE NVERTED F ANTENNA ....................................................
in „Bitte Hilfe bei Antennenanpassung 2.4GHz“ · HF, Funk und Felder ·
-
PDF
Resources_TI_Design_Note_DN023.pdf
................................................................................................ 2 3 DESCRIPTION OF THE PCB ANTENNA...................................................................... 3 3.1 IMPLEMENTATION OF THE NVERTED F ANTENNA ....................................................
in „STM32WLE5CCU6 LoRa-Antennenendesign review“ · HF, Funk und Felder ·
-
PDF
AV-H500_EFGIS_.pdf
Hz à 80 kHz Consommation: 200 W(avec sortie G/D, 6% Commande de tonalité de surtension) Graves: ±10 dB (100 Hz) Dimensions (L x H xP): 285 x 131 x 352 mm Aigus: ±10 dB (10 kHz) Poids (net): 7,3 kg Séparation des canaux (entrée en court- Accessoire standard: circuit): 65 dB (1 kHz) Télécommande (RC-646
in „Verstärkerleisung - kann ich nicht mehr rechnen?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
lm16a211.pdf
k enable signal) Code 1/0 data LSB Data bus line Code 1/0 data 2nd bit :DB7 may also be used to check the busy flag. Code 1/0 data 3rd bit :Lines DBO- DB3 are not Code 1/0 data 4th bit used when interfacing with a 4-bit microprocessor. Code 1/0 data 5th bit (For details, see
in „15 LCD Displays 16x2“ · Markt ·
-
PDF
sn761678b.pdf
(2) dB Gc26 fin 364 MHz 16 19 22 G f = 370 MHz (2) 20 23 26 c27 Conversion gain 2 (mixer-IF amplifier), UHF in dB Gc29 fin 804 MHz (2) 19 22 25 NF1 fin 55.25 MHz 9.5 Noise figure, VHF-LOW dB NF3 fin 127.25 MHz 9.5 NF4 Noise figure, VHF-HIGH fin 133.25 MHz 10 dB NF f = 361.25 MHz 10 6 in NF7 fin 367.25 MHz 11 Noise figure, UHF dB NF9 fin 801.25 MHz 11 (3) CM 1 fin 55.25 MHz 89 CM 1% cross-modulation distortion, VHF-LOW f = 127.25 MHz (3) 89 dBµV 3 in CM 4 fin
in „Infos zu TV-Tunern gesucht“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ADG714.pdf
signals are specified with tr = tf = 5 ns (10% toDD) and timed from a voltage level IL (V IHV )/2. 3C = 20 pF, R = 1 kΩ. L L Specifications subject to change without notice. t1 SCLK t 8 2 3 t4 7 SYNC t6 t5 DIN DB7 DB0 9 DOUT DB7* DB6 * DB2* DB1* DB0* *DATA FROM PREVIOUS WRITE CYCLE Figure 1. 3-Wire Serial
in „Analogschalter mit 8 Ein-und Ausgänge“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
ff.h
,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \ 0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xF7,0xD8,0xD9,0xDA,0xDB
in „HC8SX Filestruktur in RAM“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
USB90S2313.asm
------------------------------------------------------------------------------- DeviceDescriptor: .db 0x12 0x12,0x01 ;0 byte - velkost deskriptora v bytoch ;1 byte - typ deskriptora: Deskriptor zariadenia .dw USBversion ;2,3 byte - verzia USB LSB (1.00) .db 0x00 0x00,0x00 ;4 byte - trieda zariadenia
in „USB mit AVR ohne FTDI“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
eval-scs001v1.pdf
R21 VBUS_VS_Disch GPIO 22k 22k 20 Power_PDO2 Power_OK2 1 14 Power_PDO3 CC1DB Power_OK3 Standalone USB PD controller CC1 2 CC1 A_B_Side17 A_B_Side with sink auto-runmode CC2 4 CC2 Attach11 Attach 5 CC2DB SCL 7 SCL D1 SDA 8 SDA ESDA25W 13 ALERT# 19 Alert# Addr1 Vbus CC1 TP10
in „USB C Connector zur Speisung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LMC7111BIM5X.pdf
LMC7111BI Symbol Parameter Conditions (Note 5) Limit Limit Units (Note 6) (Note 6) V Input Common-Mode V = 3V −0.25 0.0 0.0 V CM Voltage Range For CMRR ≥ 50 dB min 3.2 3.0 3.0 V 2.8 2.8 max 3 www.national.com y i T 3.3V DC Electrical Characteristics 1 Unless otherwise specified, all limits guaranteed for T
in „PIN Dioden Geiger“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LMC7111BIM5X.pdf
LMC7111BI Symbol Parameter Conditions (Note 5) Limit Limit Units (Note 6) (Note 6) V Input Common-Mode V = 3V −0.25 0.0 0.0 V CM Voltage Range For CMRR ≥ 50 dB min 3.2 3.0 3.0 V 2.8 2.8 max 3 www.national.com y i T 3.3V DC Electrical Characteristics 1 Unless otherwise specified, all limits guaranteed for T
in „Einbau-Vorverstärker für E-Gitarre, Ub = 3V“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
swru120b.pdf
• CC2510 • Inverted F Antenna • CC2511 1 Introduction This document describes a PCB antenna to be +3.3 dB and overallsize design that can be used with all 2.4 GHz requirements for this antenna are 25.7 x transceivers and transmitters from Texas 7.5 mm. Thus, this is a compact, low cost Instruments.
in „Bitte Hilfe bei Antennenanpassung 2.4GHz“ · HF, Funk und Felder ·
-
PDF
LT6752_Figure_12_Page_23.pdf
SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS PSRR_V CC Input Power Supply Rejection Ratio VCM = 0.3V, DD= 2.5V, CC Varied from2.45V 59 74 dB to 5.25V (LTC6752-2/LTC6752-3/LTC6752-4) l 57 dB Total Power Supply Rejection Ratio VCM = 0.3V, CCVaried from2.45V to 3.5V 53 73 dB (LTC6752/LTC6752-1) l 51 dB
in „sehr kurzen Impuls detektieren“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LTC6752.pdf
SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS PSRR_V CC Input Power Supply Rejection Ratio VCM = 0.3V, DD= 2.5V, CC Varied from2.45V 59 74 dB to 5.25V (LTC6752-2/LTC6752-3/LTC6752-4) l 57 dB Total Power Supply Rejection Ratio VCM = 0.3V, CCVaried from2.45V to 3.5V 53 73 dB (LTC6752/LTC6752-1) l 51 dB
in „Impulsverlängerung mit RC-Glied“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
crystal_slide_show.pdf
we need an accurate frequency reading and a stable generator • We don’t need a fancy meter to show -3dB points. Just a relative reading of voltage and a simple 3 dB pad that can be switched in and out. • The Q we measure is loaded Q. Crystal Q is X/Rs Signal Generator • For BW / Q method, 1 Hz readout
in „Quarz mit großem Ziehbereich (für VCXO)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
OM5610_2_1_.pdf
kHz; temperature range = 15 to 35 °C. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT FM mono Φlim 3 dB limiting sensitivity V9 11= −3 dB; − 5.5 7.5 V V9 11= 0 dB at FMi> 100 V ΦRF RF sensitivity (S + N)/N = 26 dB − 3.5 5 V S/N signal-to-noise ratio V = 1 mV − 68 − dB FMi L lower audio frequency measured
-
PDF
OM5610_2_1_.pdf
kHz; temperature range = 15 to 35 °C. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT FM mono Φlim 3 dB limiting sensitivity V9 11= −3 dB; − 5.5 7.5 V V9 11= 0 dB at FMi> 100 V ΦRF RF sensitivity (S + N)/N = 26 dB − 3.5 5 V S/N signal-to-noise ratio V = 1 mV − 68 − dB FMi L lower audio frequency measured
in „[V] FM Tuner OM5610“ · Markt ·
-
PDF
OM5610_2_1_.pdf
kHz; temperature range = 15 to 35 °C. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT FM mono Φlim 3 dB limiting sensitivity V9 11= −3 dB; − 5.5 7.5 V V9 11= 0 dB at FMi> 100 V ΦRF RF sensitivity (S + N)/N = 26 dB − 3.5 5 V S/N signal-to-noise ratio V = 1 mV − 68 − dB FMi L lower audio frequency measured