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Datei
UI-Messung_Textpad_erweitert.asm
=r24 .def math4b_mh =r25 .def math4b_h =r26 ;*****---------------------------------- .equ srdata =3 ;Schieberegister Datenltg./PortA,Bit3 .equ srtakt =3 ;Schieberegister Taktltg./PortB,Bit3 .equ lcdenable =7 ;Lcd Enable/PortA,Bit7 ;;;;;;;.equ mkspg = 1563 ;Multiplikator für Spannungsberechnung .equ
in „Ungenauigkeit beim ATtiny26 ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hmc234.pdf
SPDT SWITCH, DC - 8 GHz Insertion Loss Isolation 0 0 -1 -10 ( ) -20 RF1 S -2 ( -30 RF2 N T -40 T -3 L -50 S I I -4 + 85C -60 - 40C -70 -5 -80 E 0 1 2 FREQUENCY (GHz) 6 7 8 0 1 2 FREQUENCY (GHz) 6 7 8 T 10 Return Loss 0.1 and 1 dB Input Compression Point 0 35 T RFC E M -5 RF1, RF2 OFF S B ) 30 - S -10 ( L S L -15 1 25 E U T H R -20 I C -25 20 T O 0.1 dB Compression Point I -30 15 W 0 1 2 3 4 5 6 7 8 0 1 2 3 4 5 6 7 8 S FREQUENCY (GHz) S FREQUENCY (GHz) Input Third Order Intercept Point B 60 55 ) d50 O I45 U I40 + 25C 35 - 40C 30 0 1 2 FREQUENCY (GHz
in „suche für Rohde&Schwarz SML03 Abschwächerbaugruppe oder IC 4227T“ · Markt ·
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MW-BIC-2200.pdf
CN47 connected ; X : CN47 not connected) BIC-2200 BIC-2200 BIC-2200 BIC-2200 BIC-2200 PSU1 PSU2 PSU3 PSU4 PSU5 +V -V +V -V +V -V +V -V +V -V CN47 CN47 CN47 CN47 CN47 +V -V LOAD 4 2 4 2 4 2 4 2 4 2 DB DA DB DA DB DA DB DA DB DA DB DA DB DA DB DA DB DA DB DA 3 1 3 1 3 1 3 1 3 1 PSU1 CN47 PSU5 CN47 PSU2
in „LifePo4 mit Labornetz laden und gleichzeit entladen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
/ DB1: 1=increment, 0=decrement #define DISP_ENTRY_SHIFT (1<<0) // DB0: 1=display shift on #define DISP_DISPLAYMODE (1<<3) // DB3: turn lcd/cursor on #define DISP_DISPLAYMODE_ON (1<<2) // DB2: turn display
in „HD44780 Ansteuerung mit HAL und stm32f040f4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PE4302.pdf
Control Control Logic Interface 2 Power-Up Control Table 1. Electrical Specifications @ +25°C, V DD = 3.0 V Parameter Test Conditions Frequency Minimum Typical Maximum Units Operation Frequency DC 4000 MHz 2 dB Insertion Loss DC - 2.2 GHz - 1.5 1.75 Any Bit or Bit DC ≤ 1.0 GHz ±(0.10 + 3% of atten setting
in „Einstellbares Dämpfungsglied, Stufenschalter gesucht“ · HF, Funk und Felder ·
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Valvo_Brief_FD11_260178.pdf
Mischstufe, die dritte den verbunden Die nachfolgenden Daten beziehen sich auf die Fremdempfangs- DBS = 80 dB 2 1 oben genannten Speisespannungen und gelten in dämpfung ) DBS 2 = 100 dB einem Temperaturbereich von ϑU= 20 bis 25 ° C. (double beat suppression) DBS 3 = 80 dB Dämpfung von Misch Frequenzbereich
in „(V) Valvo FD11“ · Markt ·
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299d.pdf
8 33 B 299D336X_003BB_ 1.0 8 47 C 299D476X_003CB_ 1.4 8 68 D 299D686X_003DB_ 2.0 8 100 D 299D107X_003DB_ 3.0 10 150 D 299D157X_003DB_ 4.0 10 220 E 299D227X_003EB_ 5.0 10 330 E 299D337X_003EB_ 6.0 10 470 F 299D477X_003FB_ 8.0 10 680 F 299D687X_003FB_ 10.0 10 6.3 V AT + 85 °C,
in „Alte Tantalpillen ersetzen?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
display_5.0.txt
Variable BOD //steuert den Pin RS extern unsigned char BOD, SDat4Bit; //Ports initialisieren RA4 = 0; //DB4 RA5 = 0; //DB5 RA6 = 0; //DB6 RA7 = 0; //DB7 RC3 = 0; //RS *****************+ asm ("nop"); if (BOD != 0) RC3 = 1; //RS, Daten setzen asm ("nop"); RC4 = 0; //RW, Write aktiv *******************+ asm
in „Ball on plate controlling reglerprobleme“ · Softwareentwicklung ·
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PDF
mixer_basics_primer.pdf
Morgan Hill, CA 95037 Markimicrowave P 408.778.4200 | F 408.778.4300 | info@markimicrowave.com C. 1 dB Compression compromised. When the RF power is within about 3 dB of 1 dB compression, the mixer behaves unpredictably. Under normal (linear) operation, the conversion loss Amongothereffects,operatingthemixerincompression
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PDF
mixer_basics_primer.pdf
Morgan Hill, CA 95037 Markimicrowave P 408.778.4200 | F 408.778.4300 | info@markimicrowave.com C. 1 dB Compression compromised. When the RF power is within about 3 dB of 1 dB compression, the mixer behaves unpredictably. Under normal (linear) operation, the conversion loss Amongothereffects,operatingthemixerincompression
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Datei
Menu.asm
Parameterzeile für Wertänderung. ;Byte 4-5 = Programm-Adresse zur Anzeige und Auswertung. Menubaum: .set MN=1 .db MN+1, 0, 0 .dw PrintRoll .db MN+2, 0, 0 .dw PrintTimeDate .db MN+3, 0, 0 .dw PrintSWDate .db MN+4, MSU, 0 .dw PrintSUMain .db 0, MFan, 0 .dw PrintMain .set MN=MN+5 .set MSU=MN .db MN+1, 0, 0 .dw PrintSUStartStop .db MN+2, 0, 0 .dw PrintSULapClear .db 0, 0, 0 .dw PrintSUBack .set MN=MN+3 .set MFan=MN .db MN+2, MN+1, 0 .dw PrintFAN1 .db MRet, 0, 2 .dw PrintRPM .set MN=MN+2 .db MRet, MN+1, 0 .dw PrintSonstiges .db
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Datei
main.asm
, 0x00, 0x12, 0x00, 0x12, 0x33, 0x22, 0x00, 0x45 arpseq2: .DB 0, 1, 0, 1, 0, 1, 0, 2, 3, 3 arptiming: .DB 0x0C, 0x30, 0xFB, 0x0C arpeggio: .DB 0x24, 0x6A, 0x46, 0x9C, 0x13, 0x59, 0x02, 0x47, 0x24, 0x59, 0x24, 0x58, 0x57, 0xAD, 0x35, 0x9B leadtimes: .DB 1, 2, 3,
in „Ciptune Attiny9/10 auf Attiny13“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D120561D.PDF
signal: “High” for Read mode. “Low” for Write mode. 6 E Enable. Start signal for data read /write. 7 DB0 Data input/output (LSB). 8 DB1 Data input/output. 9 DB2 Data input/output. 10 DB3 Data input/output. 11 DB4 Data input/output. 12 DB5 Data input/output. 13 DB6 Data input/output. 14 DB7 Data input/output
in „Probleme mit LCD (MDLS16265BHD)“ · Mikrocontroller und Digitale Elektronik ·
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BWP_LF_EE_2019_WEB.pdf
), innen gel (L ), wa wa wa wa heiztechnologien,diesistimdirektenVergleichinAbbil- außen außen 70 dB 78 dB 80 dB 88 dB dung8(sieheSeite14)deutlichgemacht. Tab.1: Schallleistungspegel 15 3. Ökodesign von Wärmeerzeugern Anforderungen an andere Raumheizgeräte Energieeffizienz Für Öl- und Gaskessel ist
in „Berechnung Energieeffizienzklasse bei einem Haus“ · Haus & Smart Home ·
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PDF
LCD_64128A_LED.pdf
KS0108B for the display control. The following table shows various instructions. Instruction RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 Function Display ON/OFF 0 0 0 0 1 1 1 1 1 0/1 Controls the display on or off. Internal status and display RAM data are not affected. 0:OFF, 1:ON Set Address 0 0 0 1 Y address
in „Displaytech 64128 mit LPC2119 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD64128A_DIS.pdf
KS0108B for the display control. The following table shows various instructions. Instruction RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 Function Display ON/OFF 0 0 0 0 1 1 1 1 1 0/1 Controls the display on or off. Internal status and display RAM data are not affected. 0:OFF, 1:ON Set Address 0 0 0 1 Y address
in „64x128 Pixel Display funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcdroutines.c
bit Ausgabeoperation an das LCD static void lcd_out( uint8_t data ) { if (data & 1<<4) SETHIGH(LCD_DB4); else SETLOW(LCD_DB4); if (data & 1<<5) SETHIGH(LCD_DB5); else SETLOW(LCD_DB5); if (data & 1<<6) SETHIGH(LCD_DB6); else SETLOW(LCD_DB6); if (data & 1<<7) SETHIGH(LCD_DB7); else SETLOW(LCD_DB7); lcd_enable
in „LCD Keypad Shield zeigt nichts an“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lauflicht2.bas
the frame space config PORta.0 = output config porta.1 = output config porta.2 = output config porta.3 = output config porta.6 = output config porta.4 = output config portb.0 = output config portc.0 = output config porta.7 = output config portd.7 = output Lcd_db4 Alias Portd.1 Lcd_db5 Alias Portc.4 Lcd_db6 Alias Portc.3 Lcd_db7 Alias Portd.0 Lcd_e Alias Portc.1 Lcd_rs Alias Portc.2 Config Lcd = 16 * 2 Config Lcdpin = Pin , Db4 = Lcd_db4 , Db5 = Lcd_db5 , Db6 = Lcd_db6 , Db7 = Lcd_db7 , E = Lcd_e , Rs = Lcd_rs = lcd
in „pollin programmer+addon board lcd ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lauflicht2.bas
the frame space config PORta.0 = output config porta.1 = output config porta.2 = output config porta.3 = output config porta.6 = output config porta.4 = output config portb.0 = output config portc.0 = output config porta.7 = output config portd.7 = output Lcd_db4 Alias Portd.1 Lcd_db5 Alias Portc.4 Lcd_db6 Alias Portc.3 Lcd_db7 Alias Portd.0 Lcd_e Alias Portc.1 Lcd_rs Alias Portc.2 Config Lcd = 16 * 2 Config Lcdpin = Pin , Db4 = Lcd_db4 , Db5 = Lcd_db5 , Db6 = Lcd_db6 , Db7 = Lcd_db7 , E = Lcd_e , Rs = Lcd_rs = lcd
in „pollin programmer +addon board lcd ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AudioCodec-WM8731_8731L.pdf
12) Input Signal Level (0dB) VINMIC 1.0 Vrms AVDD/3.3 Signal to Noise Ratio SNR A-weighted, 0dB gain 85 dB (Note 1,3) Dynamic Range (Note 3) DR A-weighted, -60dB full 85 dB scale input Total Harmonic Distortion THD 0dB input, 0dB gain -60 -55 dB Power
in „Elektret-Mikrofon-Verstärker-->Line-In mit assymmetrischer Vers.Sp.“ · Mikrocontroller und Digitale Elektronik ·
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n172_mpeg2_de.pdf
RUNDFUNKTECHNIK Repetitorium Fortsetzung aus Heft 170 Messungen an MPEG2- und DVB-T-Signalen (4) Teil 3 befasste sich mit Masken Der Crest-Faktor des KCREST max. = 20 · log√6817 = 38,3 dB DVB-T Signals für die Außerbandanteile und der und im 2k-Modus: Definition Messung des Schulterabstands. In Der Crest-Faktor
in „Frage nach günstiges Pegelmessgerät - Messprinzip über mehrere Frequenzen“ · HF, Funk und Felder ·
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SBB5089Z_Data_Sheet-1499104.pdf
Min Typ Max Units Operational Frequency Range 50 6000 MHz Gain, Small Signal 850 MHz 19.0 20.5 22.0 dB 1950 MHz 18.3 19.0 21.5 dB 6000 MHz 14.5 15.5 17.5 dB Input Return Loss 1950 MHz 10 13 dB Output Return Loss 10 14 dB Output P1dB 850 MHz 20.5 dBm 1950 MHz 19.0 20.0 dBm Output IP3 2) 850 MHz 38.5 dBm 1950 MHz 33.0 35.0 dBm Bandwidth Minimum 10 dB typical return loss 3000 MHz Reverse Isolation 1950 MHz 23.3 dB Noise Figure 3.9 4.9 dB Device Operating Current,CI Pin 3 60 75 92 mA Thermal Resistance, θjc Junction to case 69.9 °C/W Notes: 1. Test
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Slave_mode.pdf
~24 0=Bass boost, BBE mode : 0~24 represent 1=Jazz, bbelo EQ mode : 0~4 0~12dB, 2=Live, 0.5dB/step 3=Vocal, 4=Acoustic bbehi 0~24 The value 0~24 represent 0~12dB, 0.5dB/step [B] bbecfreq 0 or 1 0:595Hz, 1:1000Hz [B] bbemachfreq 60, 90, 120, 150 Hz [B] bbemachgain 0, 4, 8, 12 dB [B] bbemachq 1 or 3 [
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TDA1591.pdf
signal on pin 20 − 1.7 − V (peak-to-peak value) Vi MPX(p-p)verdrive margin of MPX input signal THD = 1% 3 − − dB Vo(rms) AF mono output signal at pins 10 and 11 without pilot − 900 − mV (RMS value) Vo overdrive margin of output signal THD = 1% 3 − − dB V10-11o difference of output voltage levels − − 1 dB
in „TDA 7313 input AM / FM“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pcm1803.pdf
f Hz S Stop band 0.583 S Hz Pass-band ripple ±0.05 dB Stop-band attenuation –65 dB t Group delay time 17.4/f s GD S HPF frequency response –3 dB 0.019 S mHz POWER SUPPLY REQUIREMENTS VCC 4.5 5 5.5 VDC V Supply voltage range 2.7 3.3 3.6 VDC DD CC 7.7 10
in „PCM1803 Audio ADC ewige Einschwingzeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcm1803.pdf
f Hz S Stop band 0.583 S Hz Pass-band ripple ±0.05 dB Stop-band attenuation –65 dB t Group delay time 17.4/f s GD S HPF frequency response –3 dB 0.019 S mHz POWER SUPPLY REQUIREMENTS VCC 4.5 5 5.5 VDC V Supply voltage range 2.7 3.3 3.6 VDC DD CC 7.7 10
in „ADC (PCM1803) rauscht bei hoher Abtastrate“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd-routines.asm
;;;; ;; LCD-Routinen ;; ;; ============ ;; ;; (c)andreas-s@web.de ;; ;; ;; ;; 4bit-Interface ;; ;; DB4-DB7: PD0-PD3 ;; ;; RS: PD4 ;; ;; E: PD5 ;; ;; ;; ;; Takt: 4 MHz ;; ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; /* Portbelegung: PD0: frei PD1: frei PD2: RS (H: DATA, L: Instruction code) PD3: E (Enable) ---: R/W (Read / Write - connected with ground / Write) ---: Databusline DB0 (not connected) ---: Databusline DB1 (not connected) ---: Databusline DB2 (not connected) ---: Databusline DB3 (not connected) PD4: Databusline DB4 PD5: Databusline DB5 PD6: Databusline DB6 PD7: Databusline
in „Assembler als File in C einbinden“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan eines Logarithmus-Verstärkers oder Pegelwandlers
15 dB = 4.355V, 12 dB = 3.08V, 9 dB = 2.18V, 6 dB = 1.54V, 3 dB = 1.09V, 0 dB = 0.775V, -3 dB = 0.55V, -6 dB = 0.34V, -12 dB = 0.19V, -20 dB = 0.08V, .lib lm2901.lib, .lib TL072.301, R1 9660, D3, R2 1600, D4, R3 1200, D5, R4 820, D6, R5 560, D7, R6 390, D8, R7 270, D9, R8 240, D10, R9 180, D11, R10 130, D12, R11 91, D13 1N4148, D14 1N4148, R15 100, R16 22k, Q1, TL072, 1N4148, 22K Trim, 0 Ohm davor, INPUT, SINE
in „LED Metering für ein Audiomixer“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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Bild
Tabelle mit Messwerten verschiedener Boardkonfigurationen
Menue Ruhegeräusch Messsender -60dBm Messsender -90dBm Pegel SNR Pegel SNR DIFF-Test am Babyboard 62 dB -93 dBm 1 30 dB 0,3 -10 dB INA-Test am Babyboard 62 dB -93 dBm 1 30 dB 0,3 2 dB BALANCED am Babyboard 62 dB -87 dBm 0,8 20 dB 0,1 1 dB Protoboard Pico2 RP2350-Stamp 62 dB -100 dBm 1 30 dB 0,08 -1 dB Protoboard Pico1 Micro RP2040 62 dB -93 dBm 1 20 dB 0,04 -14 dB Protoboard + Preamp RP2350-Stamp 82 dB -118 dBm -. .- 0,9 28 dB
in „Raspberry Pi Pico SDR“ · HF, Funk und Felder · · Diagramme
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Datei
ne2.asm
db NIC_BNRY, NIC_RXSTART .db NIC_PSTART, NIC_RXSTART .db NIC_PSTOP, NIC_RXSTOP .db NIC_ISR, 0xff .db NIC_IMR, 0xff .db NIC_CR, ( 1 << STP ) | ( 1 << RD2 ) | ( 1 << PS0 ) ; reg page 1 .db 0x01, 0x01 .db NIC_PAR0, MAC0 ; set mac address .db NIC_PAR0+1, MAC1 .db NIC_PAR0+2, MAC2 .db NIC_PAR0+3, MAC3 .db NIC_PAR0+4, MAC4 .db NIC_PAR0+5, MAC5 .db NIC_CURR, NIC_RXSTART .db NIC_CR, ( 1 << STA ) | ( 1 << RD2 ) ; start nic .db 0x01, 0x01 .db NIC_TCR
in „NE2000 DMA Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
asm.txt
;PORTA .equ PIN_LCD_Enable = 6 .equ PIN_LCD_RS = 7 ;PORTB .equ PIN_LCD_DB4 = 4 .equ PIN_LCD_DB5 = 5 .equ PIN_LCD_DB6 = 6 .equ PIN_LCD_DB7 = 7 text: .db "TEXT",0 PowerOn: ldi temp, RAMEND ; Stack initialisieren out sp, temp ;PORTA und B Pullups ldi temp, (0<<PIN_LCD_ENABLE)
in „Tiny26 LCD an PortA und PortB“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AssemblerM2.asm
segment for Variables ------------ SEGMENT DATA ORG 20h VALEUR_MES DW ? ; 16-bit measured value COMP DB ? ; Auxiliary counter ; Reserve memory space for measured value (16-bit) ORG 40h BCD_MSB DB ? ; MSB of the BCD measured value BCD_MIB DB ? ; Middle byte of BCD measured value BCD_LSB DB ? ; LSB of the BCD measured value BIN_MSB DB ? ; Measured value, binary MSB BIN_LSB DB ? ; Measured value, binary LSB ORG 50H ASCII DB ? ; Reserve 4 bytes for ASCII measured value DB ? DB ? DB ? cs EQU p4.4 w EQU p4.3 ; ------------------------
in „Sinus Generator in Assembler, Werte übergeben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
1712VoltCutTopsSinus.asm
segment for Variables ------------ SEGMENT DATA ORG 20h VALEUR_MES DW ? ; 16-bit measured value COMP DB ? ; Auxiliary counter ; Reserve memory space for measured value (16-bit) ORG 40h BCD_MSB DB ? ; MSB of the BCD measured value BCD_MIB DB ? ; Middle byte of BCD measured value BCD_LSB DB ? ; LSB of the BCD measured value BIN_MSB DB ? ; Measured value, binary MSB BIN_LSB DB ? ; Measured value, binary LSB ORG 50H ASCII DB ? ; Reserve 4 bytes for ASCII measured value DB ? DB ? DB ? cs EQU p4.4 w EQU p4.3 ; ------------------------
in „Sinus Generator in Assembler, Werte übergeben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SLEEP.ASM
ldi r16, 0 out MCUCR, r16 ldi r16, 1<<INT0 ;PIND2 out GIMSK, r16 sei loop: cli sbis portb, 0 rjmp _db1 cbi portb, 0 sbi portb, 1 rjmp _db2 _db1: sbi portb, 0 cbi portb, 1 _db2: sei rjmp loop powerdown: sbis portb, 2 rjmp _db3 cbi portb, 2 sbi portb, 3 rjmp _db4 _db3: sbi portb, 2 cbi portb, 3 _db4: clr
in „Die PowerDown-Tücke!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lauflicht2.bas
for the frame space '$sim do config PORta.0 = 1 config porta.1 = 1 config porta.2 = 1 config porta.3 = 1 config porta.6 = 1 config porta.4 = 1 config portb.0 = 1 config portc.0 = 1 config porta.7 = 1 config portd.7 = 1 Lcd_db4 Alias Portd.1 Lcd_db5 Alias Portc.4 Lcd_db6 Alias Portc.5 Lcd_db7 Alias Portd.6 Lcd_e Alias Portc.7 Lcd_rs Alias Portc.2 Config Lcd = 16 * 2 Config Lcdpin = Pin , Db4 = Lcd_db4 , Db5 = Lcd_db5 = lcd config lcdpin = Db6 = Lcd_db6 , Db7 = Lcd_db7 , E = Lcd_e , Rs = Lcd_rs = lcd Config Lcdbus = 4 Lcddata 65 Lcdcmd 1 initlcd initlcd cls locate 1 , 1 lcd " hallo " Deflcdchar
in „pollin programmer +addon board lcd ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Mega8_test2.asm
B",10,10,13,0 s_mu22: .db 10,10,13,"Port C",10,10,13,0 s_mu23: .db 10,10,13,"Port D",10,10,13,0 s_mu2x: .db "0 - Zurück",10,13,"1 - Pin 0",10,13,"2 - Pin 1",10,13,"3 - Pin 2",10,13,"4 - Pin 3",10,13,"5 - Pin 4",10,13,"6 - Pin
in „Menü rs232 wie macht man so was besser?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bios.asm
changed disks dw all ;ALV: Address of an allocation info sratchpad dpb: dw 26 ;SPT: sectors per track db 3 ;BSH: data allocation block shift factor db 7 ;BLM: Data Allocation Mask db 0 ;Extent mask dw 242 ;DSM: Disk storage capacity dw 63 ;DRM, no of directory entries db 192 ;AL0 db 0 ;AL1 dw 16 ;CKS, size of dir check vector dw 2 ;OFF, no of reserved tracks trans: db 0,1,2,3,4,5,6,7,8,9 db 10,11,12,13,14,15,16,17,18,19 db 19,20,21,22,23,24,25,26 dirbuf: ds 128 chk: ds 16 all: ds 31 end
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr-video-8-8.asm
sonst noch zu tun ist, läuft im Interrupt ;Baudratenwerte für USART ; und Texte für Anzeige Baudtab: .DB 0x33,0x00," 9600 " ;000 .DB 0xc0,0x11," 110 " ;001 .DB 0x82,0x06," 300 " ;010 .DB 0xa0,0x01," 1200 " ;011 .DB 0xcf,0x00," 2400 " ;100 .DB 0x67,0x00," 4800 " ;101 .DB 0x19,0x00,"19200 " ;110 .DB 0x33,0x00
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PDF
AD8221-Datenblatt.pdf
µV OverTemperature T = −40°C to +85°C 1.00 mV AverageTC 9 µV/°C Offset RTI vs. Supply (PSR) VS= ±2.3V to ±18V G = 1 90 100 dB G = 10 100 120 dB G = 100 120 140 dB G = 1000 120 140 dB INPUT CURRENT Input Bias Current 0.5 2 nA OverTemperature T = −40°C to +85°C 3 nA AverageTC 3 pA/°C Input Offset Current
in „InAmp mit single supply möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Futaba_M40SD04FN_v1.0.pdf
Modes on, off, blinking Cursor positioning supported Scroll modes none, vertical, horizontal Page 3 of 7 Interface Connector CN1, 26-pin boxed header Pin Signal Description Pin Signal Description 1 DB7 data bit 7 2 Gnd Ground 3 DB6 data bit 6 4 Gnd Ground 5 DB5 data bit 5 6 Gnd Ground 7 DB4 data bit 4 8 Gnd Ground 9 DB3 data bit 3 10 Gnd Ground 11 DB2 data bit 2 12 Gnd Ground 13 DB1 data bit 1 14 Gnd Ground 15 DB0 data bit 0 16 Gnd Ground 17 WR Write signal 18 Gnd Ground 19 RxD Serial In (TTL level) 20 Gnd Ground 21
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PDF
vhfcindex.pdf
Jirmann, DB1V 1985/3 146 - 152 Oscillators A Stable Crystal Controlled Source for 10.37 GHz Jochen Jirmann, DB1NV 1985/3 146 - 152 Fundamentals Measurement of Cable Impedance with Impulses and Sine Waves Erich Stadletr
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PDF
LCD_Module.pdf
: 886-2-2633-1253 FAX: 886-2-2631-2881 8. Outline dimension 17.595 2.25 1.845 0.345 0.03 5 0 5 . 2 3 6 0 0 5 3 0 Interface pin connection PIN NO. 1 2 3 4 5 6 7 8 ____ SYMBOL V SS VDD VO RS R/W E DB0 DB1 PIN NO. 9 10 11 12 13 14 15 SYMBOL DB2 DB3 DB4 DB5 DB6 DB7 NC EVERBOUQUET INTERNATIONAL CO., LTD.
in „PIC16F690 LCD ansteurung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ALgAn102.bas
$00 , $00 ' . .db $00 , $7e , $40 , $40 , $40 , $00 ' / [L] .db $00 , $3c , $52 , $4a , $3c , $00 ' 0 .db $00 , $00 , $44 , $7e , $40 , $00 ' 1 .db $00 , $64 , $52 , $52 , $4c , $00 ' 2 .db $00 , $24 , $42 , $4a , $34 , $00 ' 3 .db $00 , $18 , $14 , $7e , $10 , $00 ' 4 .db $00 , $2e , $4a , $4a , $32 , $00 ' 5 .db $00 , $3c , $4a , $4a , $30 , $00 ' 6 .db $00 , $02 , $72 , $0a , $06 , $00 ' 7 .db $00 , $34 , $4a , $4a , $34
in „Bascom .def not found“ · Mikrocontroller und Digitale Elektronik ·
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Datei
io.h
include <avr/iox192d3.h> #elif defined (__AVR_ATxmega256A3__) # include <avr/iox256a3.h> #elif defined (__AVR_ATxmega256A3U__) # include <avr/iox256a3u.h> #elif defined (__AVR_ATxmega256A3B__) # include <avr/iox256a3b.h>
in „direkt in ein Register des Tiny5 schreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN758.pdf
provided for each module. conditions The MRF428 is a single chip transistor with the die size IMD, d 3 – 30 dB Maximum (1 kW PEP, 50 V and 800 W PEP, 40 V) of 0.140 x 0.248, and rated for a power output of 150 W PEP or CW. The single chip design eliminates the problem Power Gain, Total: 30 dB Minimum
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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PDF
_Motorola_AN758.pdf
provided for each module. conditions The MRF428 is a single chip transistor with the die size IMD, d 3 – 30 dB Maximum (1 kW PEP, 50 V and 800 W PEP, 40 V) of 0.140 x 0.248, and rated for a power output of 150 W PEP or CW. The single chip design eliminates the problem Power Gain, Total: 30 dB Minimum
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Datei
lcd-routines.h
angeschlossen sein und die 4 // Datenleitungen müssen auf aufeinanderfolgenden Pins liegen // LCD DB0-DB7 <--> PORTA Bit PA0-PA7 #define LCD_PORT PORTA #define LCD_DDR DDRA #define LCD_CTRL_PORT PORTB #define LCD_CTRL_DDR DDRB //LCD DB0 DB7 <-->PORTA Bit PA0-PA7 #define LCD_DB PA0 #define LCD_DB1 PA1 #define LCD_DB2 PA2 #define LCD_DB3 PA3 #define LCD_DB4 PA4 #define LCD_DB5 PA5 #define LCD_DB6 PA6 #define LCD_DB7 PA7 //LCD Steuersignale RS und EN am Control Port // LCD RS <--> PORTB Bit PB2 (RS: 0 = Data, 1 Command
in „LCD zeigt nichts an“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TD024THEB2.pdf
DB6 R148 C115 105 14 CP1 AGND VCC AVCC AVCC AVCC AVCC LCM_D4 LGPIO8 23 VCC AVDD C15 105 1 MK1 LCM_D3 LGPIO7 24 DB5 NC C116 NC 13 PVDD TD024THEB2 MICINP 1 2 LCM_D2 25 DB4 R149 12 AGND 2 2 SARIN3 BAT_DET AVCC AVCC C69 LCM_D1 LGPIO6 26 DB3 C117 2.2uF VCOMH 11 VCOMH MICINN 1 + LGPIO5 DB2 C118 2.2uF VCOML 10 C43 10uF LCM_D0 LGPIO4 27 DB1 NC C119 2.2uF PCDH 9 VCOML C16 105 R45 MICROPHONE R81 L6 104 VCC 28 DB0 C120 NC 8 PCDH 1K R73 10K LCM_RD
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Datei
mtd_dataflash.c
* AT45DB0161B 16Mbit (2M) xx1011xx (0x2c) 4096 528 10 * AT45DB0321B 32Mbit (4M) xx1101xx (0x34) 8192 528 10 * AT45DB0642 64Mbit (8M) xx111xxx (0x3c) 8192 1056 11 * AT45DB1282 128Mbit (16M) xx0100xx (0x10) 16384
in „Probleme mit Atmel DataFlash“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Impulszaehler16L.asm
anzeige mit gemeinsamen Kathode ; ; a ; ----- ; f| g |b ; ----- ; e| d |c * ; ----- ; abcdefg* tab: .db 0b11111100 ;0 .db 0b01100010 ;1 .db 0b11011010 ;2 .db 0b11110010 ;3 .db 0b01100110 ;4 .db 0b10110110 ;5 .db 0b10111110 ;6 .db 0b11100000 ;7 .db 0b11111110 ;8 .db 0b11110110 ;9 .db 0b11101110 ;A .db 0b00111110 ;b .db 0b10011100 ;C .db 0b01111010 ;d .db 0b10011110 ;E .db 0b10001110 ;F .db 0b00100000 ;i .db 0b00101010 ;n .db 0b00101110 ;h ret
in „Tabellen in Assembler für Atmega 16“ · Mikrocontroller und Digitale Elektronik ·