-
Datei
BUP-Q9000-CONTENT.txt
7A9354D9-0468-444A-CE81-0BF617D890DF 1710144 0x1A1840 Microsoft executable, portable (PE) 1713340 0x1A24BC Microsoft executable, portable (PE) 1717156 0x1A33A4 Microsoft executable, portable (PE) 1719744 0x1A3DC0 Microsoft executable, portable (PE) 1832592 0x1BF690 Microsoft executable, portable (PE) 1886208
in „Suche DeskFlash Ver. > 6.30 für ein FJT Esprimo Q9000“ · PC Hard- und Software ·
-
Datei
roms_constant.vhd
--------------------------------------------------- -- Company: -- Engineer: -- -- Create Date: 07:04:42 10/20/2014 -- Design Name: -- Module Name: roms_constant - Behavioral -- Project Name: -- Target Devices: -- Tool versions: -- Description: -- -- Dependencies: -- -- Revision: -- Revision 0.01 - File
in „Rom simulation“ · FPGA, VHDL & Co. ·
-
Datei
LiIon_1s_Lader.lst
RETURN 00359 ;********************************************************************* 00436 #INCLUDE <04_ADC_LiIon.INC> 00001 ;********************************************************************* 00002 ; File: 04_ADC_LiIon.INC 00003 ; Author: Ottmar 00004 ; Date: 21.05.2022 00005 ;*********************
in „PIC16F1827-MCP4151 TMR0-Interrupt wird immer wieder nicht ausgefuehrt“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
font12x16.h
0x0F, 0xC3, 0x03, 0xF3, 0x00, 0x3F, 0x00, 0x0F, 0x00, 0x03, 0x00, // "7" 0x00, 0x00, 0x00, 0x0F, 0xBC, 0x1F, 0xFE, 0x39, 0xE7, 0x30, 0xC3, 0x30, 0xC3, 0x30, 0xC3, 0x30, 0xE7, 0x30, 0xFE, 0x39, 0xBC, 0x1F, 0x00, 0x0F, // "8" 0x00, 0x00, 0x3C, 0x00, 0x7E, 0x00, 0xE7, 0x30, 0xC3, 0x30, 0xC3, 0x30, 0xC3,
in „Displaytech 64128A an ATMega8“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
BB_Schem_75839_b.pdf
RESET_OUT_B Reset Switch D 74AC74 RESET_SW U21A U21B 4 U22A 1 2 3 4 2 R 5 R67 300 D P Q 4 3 3 2 LED7 MC74HCU04AD MC74HCU04AD CLK R68 L 6 EXTERNAL BUS C Q 100k VCC RED LED 1 2 C91 1 1 1 SW2 R69 PUSHBUTTON RED 10uF 10K GND GND 2 C B_A2 C Buzzer VCC 3 R70 Q1 TONE_OUT 1 1K 1 BC847 1 2 B 100K 1 B R72 2 33 2 U23 1
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DEV-CD-1645C.pdf
Silicon Radio PLC Title: LIMITATION OF LIABILITY Churchill House, Cambridge Business Park, BlueTunes2 BC5MM Audio Example Design and Dev. Kit The performance of this design has not been verified completely by CSR. Cowley Road, Cambridge, It may contain errors or omissions for which CSR shall not be held
in „Noise bei Audio processing mit IC von Cambridge Silicon Radio“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
-
PDF
CY7C64613.pdf
Count * d6 d5 d4 d3 d2 d1 d0 7FBA IN3CS Control & Status * * * * * * in3bsy in3stl 7FBB IN3BC Byte Count * d6 d5 d4 d3 d2 d1 d0 7FBC IN4CS Control & Status * * * * * * in4bsy in4stl 7FBD IN4BC Byte Count * d6 d5 d4 d3 d2 d1 d0 7FBE IN5CS Control & Status * * * * * * in5bsy in5stl 7FBF IN5BC Byte Count * d6 d5 d4 d3 d2 d1 d0 7FC0 IN6CS Control & Status * * * * * * in6bsy in6stl 7FC1 IN6BC Byte Count * d6 d5 d4 d3 d2 d1 d0 7FC2 IN7CS Control & Status * * * * * * in7bsy in7stl 7FC3 IN7BC Byte Count * d6 d5 d4 d3 d2 d1 d0 7FC4 (reserved) 7FC5 OUT0BC Byte Count * d6 d5 d4 d3 d2 d1 d0 7FC6
in „Verkaufe CY7C64613-52NC“ · Markt ·
-
PDF
CY7C64613_1.pdf
Count * d6 d5 d4 d3 d2 d1 d0 7FBA IN3CS Control & Status * * * * * * in3bsy in3stl 7FBB IN3BC Byte Count * d6 d5 d4 d3 d2 d1 d0 7FBC IN4CS Control & Status * * * * * * in4bsy in4stl 7FBD IN4BC Byte Count * d6 d5 d4 d3 d2 d1 d0 7FBE IN5CS Control & Status * * * * * * in5bsy in5stl 7FBF IN5BC Byte Count * d6 d5 d4 d3 d2 d1 d0 7FC0 IN6CS Control & Status * * * * * * in6bsy in6stl 7FC1 IN6BC Byte Count * d6 d5 d4 d3 d2 d1 d0 7FC2 IN7CS Control & Status * * * * * * in7bsy in7stl 7FC3 IN7BC Byte Count * d6 d5 d4 d3 d2 d1 d0 7FC4 (reserved) 7FC5 OUT0BC Byte Count * d6 d5 d4 d3 d2 d1 d0 7FC6
in „Logikanalzyer mit FT232BL“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
EMS_Adapter.xml
iP3VcSI6kF30fjfzUubyMj+79ysgyq/KUhbd/nK289Jjf3q76Nv+pYPeSkB+UUOkCE/S0al3/GF9ToAkIdN7dx2d3K4rHiUEjRw37+oraqUE7SofuEt1ehK04qOZ9keG8rhdfbqeX3KqWvOSXRfuRX+WHCLu1CF/6GkkRRTSRggkfZ3KQeOOhIpk785y1O9elkR65ALfox7zOgKjeLj6uh9+qSUtzS0h6+IIhIOpCDIbKgcgQYIEWJ4UTZzS+b5JGBcc9ZLhzod+9Qm04laxOZE2myOCO4G+F3MjTR5w0EgYdn10f/q8oO+/SW9TMaZc66NseDoSlwjUXPKpYJYVNKlFD8ojBtS1xg6Ny73YYQdaAK20rpfk
-
Datei
EMS_Adapter.xml
iP3VcSI6kF30fjfzUubyMj+79ysgyq/KUhbd/nK289Jjf3q76Nv+pYPeSkB+UUOkCE/S0al3/GF9ToAkIdN7dx2d3K4rHiUEjRw37+oraqUE7SofuEt1ehK04qOZ9keG8rhdfbqeX3KqWvOSXRfuRX+WHCLu1CF/6GkkRRTSRggkfZ3KQeOOhIpk785y1O9elkR65ALfox7zOgKjeLj6uh9+qSUtzS0h6+IIhIOpCDIbKgcgQYIEWJ4UTZzS+b5JGBcc9ZLhzod+9Qm04laxOZE2myOCO4G+F3MjTR5w0EgYdn10f/q8oO+/SW9TMaZc66NseDoSlwjUXPKpYJYVNKlFD8ojBtS1xg6Ny73YYQdaAK20rpfk
-
Datei
CoolTerm_Capture__FritzAVM_1V8.CoolTermSettings__2026-06-27_08-52-21-633.txt
00000000 01cac1d8 00000003 c0209fa4 cdae0000 0000017b 01cac140 c02a4958 [ 22.936855][ T0] 3f40: 0000c7bc c02d8ee4 d1c78000 0000c7bc d1c840dc d1c83f10 d1c81010 00009000 [ 22.945832][ T0] 3f60: 00009880 bf126070 00000001 00000000 000039e0 00000029 0000002a 0000001e [ 22.954687][ T0] 3f80: 00000000 00000016
in „FRITZ!Box 7490 Bootloop“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
catalog.pdf
Category]: BJTs [Desc]: Transistor, bjt, npn, 15V V(Br)Ceo, 50Ma I(C), to-92 Rohs Compliant: Yes MPN: BC337-25 [ID]: 000223 [Price]: 0.09 USD [QTY]: 450 [Category]: BJTs [Desc]: Trans GP BJT NPN 45V 0.8A 625mW Automotive 3-Pin TO-92 Ammo MPN: BC846BMTF [ID]: 000331 [Price]: 0.03 USD [QTY]: 210 [Category
-
PDF
catalog.pdf
npn, 15V V(Br)Ceo, 50Ma I(C), to-92 Rohs Compliant: Yes Page 9/105 Bauteileliste vom 12.08.2022 MPN: BC337-25 [ID]: 000223 [Price]: 0.09 USD [QTY]: 450 [Category]: BJTs [Desc]: Trans GP BJT NPN 45V 0.8A 625mW Automotive 3-Pin TO-92 Ammo MPN: BC846BMTF [ID]: 000331 [Price]: 0.03 USD [QTY]: 210 [Category
-
PDF
fcc_9.pdf
Channel Frequency Channel Frequency Channel Frequency Channel Frequency (MHz) (MHz) (MHz) (MHz) 01 2412 04 2427 07 2442 10 2457 02 2417 05 2432 08 2447 11 2462 03 2422 06 2437 09 2452 Page 8 of 56 Report No.: BCTC-141211251E 3. Table for Filed Antenna Ant Brand Model Name Antenna Type Connector Gain (dBi)
in „Wlan2Serial Modul für 5 euro“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
cdcsim.c
receive_bytes == 0xFFFF8C73) package[1] = 0xBD; // CD2 if(receive_bytes == 0x00004CB3) package[1] = 0xBC; // CD3 if(receive_bytes == 0xFFFFCC33) package[1] = 0xBB; // CD4 if(receive_bytes == 0x00002CD3) package[1] = 0xBA; // CD5 if(receive_bytes == 0xFFFFAC53) package[1] = 0xB9; // CD6 if(receive_bytes
in „CDChanger Simulator“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
buderus_ems_crc.c
BUDERUS_EMS_POLY 12 #ifdef BUDERUS_EMS_CRC_TABLE /** */ const uint8_t buderus_crc_table[] = { 0x00, 0x02, 0x04, 0x06, 0x08, 0x0A, 0x0C, 0x0E, 0x10, 0x12, 0x14, 0x16, 0x18, 0x1A, 0x1C, 0x1E, 0x20, 0x22, 0x24, 0x26, 0x28, 0x2A, 0x2C, 0x2E, 0x30, 0x32, 0x34, 0x36, 0x38, 0x3A, 0x3C, 0x3E, 0x40, 0x42, 0x44, 0x46,
-
Datei
fdc-getkey.c
#define STATE_LEFT_SHIFT 0x01 #define STATE_RIGHT_SHIFT 0x02 #define STATE_LEFT_CTRL 0x04 #define STATE_LEFT_ALT 0x08 #define STATE_RIGHT_ALT 0x10 #define KEY_ESCAPE 0x1B // keycode = 0x006e #define KEY_MENUE 0x80 // keycode = 0x0070 #define KEY_BACK 0x81 // keycode = 0x0071 #define KEY_FORWARD
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
-
Datei
blue.c
#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; } void Senden_Von_String( char *s) //Funktion für String { while(*s) { USART_Transmit
in „usart string“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
blue.c
#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(const char *s) //Funktion für einzelne Zeichen { while(*s) { USART_Transmit
in „usart string“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
blue.c
#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(const char *s) //Funktion für einzelne Zeichen { while(*s) { USART_Transmit
in „usart string“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PSE1800_a-_Schaltplaene.pdf
Peripheriebaustein Peripheriebaustein | , io IS2 om 1S1 i ! Timer- 1/0 - Ports |/0 -Ports Fi oe a Ausg. A BC ane, i es AD cee lS rf =ac Baustein- > Auswahl Doppel- \S7 D-Latch IS9 01, Interruptdurch: a InterruptRST 7,5 infowmi Timer zum Prozessor pe Datenausgabe ————_———_ 7 IS3,4 ateneingabe S| 8) BY 2p 8y
in „AEG - Telefunken E1800 mit PIO 1200 Schnittstelle.“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DS_SX1261-2_V1.1-1307803.pdf
frequency range SX1261 150 - 960 MHz FSTEP Synthesizer frequency step - - 0.95 - Hz 1 kHz offset - -75 - dBc/Hz Synthesizer phase noise 10 kHz offset - -95 - dBc/Hz PHN 1 2 100 kHz offset - -100 - dBc/Hz (for 868 / 915 MHz) 1MHz offset - -120 - dBc/Hz 10 MHz offset - -135 - dBc/Hz TS_FS Synthesizer wake-up
-
PDF
bluenrg-2.pdf
modulation on interfering signal C/ICO- Co-channel interference Wanted signal = -67 dBm, BER ≤ 6 dBc channel 0.1% Wanted signal = -67 dBm, C/I1 MHz Adjacent (+1 MHz) interference BER ≤.1% 0 dBc Wanted signal = -67 dBm, BER ≤ C/I2 MHz Adjacent (+2 MHz) interference -40 dBc 0.1% C/I3 MHz Adjacent (+3 MHz) interference Wanted signal = -67 dBm, BER ≤ -47 dBc 0.1% C/I≥4 MHz Adjacent (≥ ± 4 MHz) interference Wanted signal = -67 dBm, BER ≤ -46 dBc 0.1% C/I≥6 MHz Adjacent (≥ ± 6 MHz) interference Wanted signal= -67 dBm BER ≤ -48 dBc 0.1% Wanted signal= -67 dBm
in „DC/DC-Wandler im ST BlueNRG-2 - Wofür?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
1_AMD_BKDG_Family__15h_Mod_00h-0Fh_BKDG.pdf
0549 1449 BA49 CA49 4A 4A00 004A 4A4A 4A25 4AAA 4A55 4A31 4AA0 4A62 4A50 4A1C 254A AA4A 554A 314A A04A 624A 504A 1C4A 4B 4B00 004B 4B4B 4B9D 4BF6 4B7B 4BF7 4BC3 4B9F 4BD9 4B81 9D4B F64B 7B4B F74B C34B 9F4B D94B 814B 4C 4C00 004C 4C4C 4C26 4C13 4CB1 4C47 4C9B 4C8E 4CF5 4CC1 264C 134C B14C 474C 9B4C 8E4C
-
PDF
SDG1000_ServiceManual_en.pdf
Temperature <5 ppm/°C coefficient Sine Wave Spectrum Purity Harmonic Distortion CH1/CH2 DC ~ 1MHz -60 dBc 1MHz ~5MHz -53 dBc 5MHz ~25MHz -35 dBc 25MHz ~50MHz -32 dBc Total harmonic waveform distortion DC ~ 20 kHz,1 Vpp <0.2% DC ~ 1 MHz: < -70 dBc Spurious signal(non-harmonic) 1 MHz ~ 10 MHz :< -70 dBc + 6 dB/spectrum phase Phase noise 10kHz Offset,–108 dBc / Hz (typical value) Square Wave Rise/fall time < 12 ns(10% ~ 90%,typical value,1 kHz,1 Vpp) Overshoot < 5%(typical value,1kHz,1Vpp) 1μHz ~ 10 MHz 20% ~ 80% Duty Cycle 10 MHz(exclude)~ 20 MHz 40% ~ 60%
in „Erfahrung mit Siglent SDG 10xx Arbitrary Generatoren?“ · Markt ·
-
Datei
dmesg_wegen_sata_problem_ohne_hdd.txt
000038 (v01 HPQOEM SLIC-CPC 01072009 AMI 00010013) [ 0.005535] ACPI: TPM2 0x000000006FA6D000 00004C (v04 HPQOEM SLIC-CPC 00000001 AMI 00000000) [ 0.005537] ACPI: PHAT 0x000000006FA6C000 000591 (v01 HPQOEM SLIC-CPC 00000005 MSFT 0100000D) [ 0.005539] ACPI: WSMT 0x000000006FA86000 000028 (v01 HPQOEM SLIC-CPC
in „Linux erkennt SATA DVD Laufwerk nicht im AHCI Modus“ · PC Hard- und Software ·
-
PDF
MKS_GEN_V14.PDF
+5V D17/RXD2 D51/MOSI P MU T 1 0 D +5V R3RC6C PIRy01 PIRy02 R131IRR1212IR120 D32/SCK S S3 NE C NB BC GES S PIR402 RI 10k?n 1M D20/SDA 4k7PIR130PIR120 D22 D37 1 EXP12 D35 U U 3 G R V G C C N A T O O PIR401 D52/SCK RST PIYPI16MHz D21/SCL PI?n902 PI?n60 0 D17/RXDPICONPICONN?04XD2 5 6 7 8 9 0 1 2 3 4 5
in „Hilfe zu Optokoppler (6N137)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
opa847.pdf
12 dB max B Harmonic Distortion G = +20, f = 5MHz, O = 2PP 2nd-Harmonic R L 100Ω –74 –70 –69 –68 dBc max B R L 500Ω –105 –90 –89 –88 dBc max B 3rd-Harmonic R L 100Ω –103 –96 –91 –88 dBc max B R = 500Ω –110 –105 –100 –90 dBc max B L 2-Tone, 3rd-Order Intercept G = +20, f = 20MHz 39 37 36 35 dBm min B
in „ADC für OPA847“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
main.c
//ICC-AVR application builder : 13.04.2010 16:15:44 // Target : m48 // Crystal: 8.0000Mhz #include <iom48v.h> #include <macros.h> //------------------------------------------------------------------------------ // Port-Zuweisung //------
in „ATmega48 Hardware-PWM - Zu kurzer Servoweg“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
SDRSharp_20190801_191129Z_145803355Hz_IQ.txt
17:49:44$ fm DL1FX-0 to APRX29-0 via DB0FDA-0 UI PID=F0 !4944.13NI00834.57E& BC4 Raspberry RX/TX APRX iGate QTH: Haehnlein JN49GR OP: Peter 17:49:57$ fm DB0ASF-0 to APGE01-0 via DB0GIS-10,DB0FDA-0 UI PID=F0 }DB0ASF-4>APGE01,TCPIP,DB0ASF*:>!5004.67N/00906.55E_292/000g...t072r000p000h47b10199
in „SDR: ISS SSTV Signal durch Digipeater gestört - Quelle finden“ · HF, Funk und Felder ·
-
Datei
log.txt
size=0x0cfa4 ( 53156) map I (265) esp_image: segment 2: paddr=0x00068100 vaddr=0x3ffe8000 size=0x006bc ( 1724) load I (266) esp_image: segment 3: paddr=0x000687c4 vaddr=0x40100000 size=0x00bd0 ( 3024) load I (277) esp_image: segment 4: paddr=0x0006939c vaddr=0x40100bd0 size=0x04cd8 ( 19672) load +ښj%(
in „Merkwürdiges verhalten bei einem ESP8266 und dem RTOS SDK“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
test.c
int main(void) { // first square sinwave lookup table const uint8_t sinewave[]={ 0x00,0x01,0x03,0x04,0x06,0x07,0x09,0x0A,0x0C,0x0E,0x0F,0x11,0x12,0x14,0x15,0x17, 0x19,0x1A,0x1C,0x1D,0x1F,0x20,0x22,0x24,0x25,0x27,0x28,0x2A,0x2B,0x2D,0x2E,0x30, 0x31,0x33,0x35,0x36,0x38,0x39,0x3B,0x3C,0x3E,0x3F,0x41,0x42,0x44,0x45,0x47,0x48
in „PWM mit Interrupts steuern“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
DCF.txt
23-11-04 13:58:59 Großraum Freiburg i.Brsg., schlechtes Wetter Reichelt-DCF-Modul (von Kundo, St. Georgen) Bit '0' received ($006B, 107 ms). Bit #0. Possible synchronization pause received ($0755, 1889 ms). Bit
in „DCF77 - Puls der Sekunde 0 nur 65 ms?“ · HF, Funk und Felder ·
-
Datei
kueche_2.lst
LCD_RS_DIR = DDRD .equ LCD_RS_BIT = PD5 .endif .equ LCD_CLR = $01 .equ LCD_HOME = $02 .equ LCD_ENTRY = $04 .equ LCD_ENTRY_INCR = $02 .equ LCD_ENTRY_DECR = $00 .equ LCD_ENTRY_SHIFT = $01 .equ LCD_DISPLAY = $08 .equ LCD_DISPLAY_ON = $04 .equ LCD_DISPLAY_CURSOR = $02 .equ LCD_DISPLAY_BLINK = $01 .equ LCD_SHIFT = $10 .equ LCD_SHIFT_DISP = $08 .equ LCD_SHIFT_CURSOR = $00 .equ LCD_SHIFT_RIGHT = $04 .equ LCD_SHIFT_LEFT = $00 .equ LCD_FUNCTION = $20 .equ LCD_FCN_8BIT = $10 .equ LCD_FCN_4BIT = $00 .equ LCD_FCN_2LINES = $08 .equ LCD_FCN_1LINE = $00 .equ LCD_FCN_5X10 = $04 .equ LCD_FCN_5X7 = $00 .equ
-
PDF
TimerPumpe_S01_CMOS4060.pdf
SSOP10 RM1 SD30CRMA multicell consonance-elec.com, PCB 45x20x15mmSI4435 2,89€/1 2,63€/5 (LED.XLS 018-04) G w KF2510-2P 3A 10mR 0,08€/10 D4 alt470u1622mA GND D6 ye2mA modify R5=34k parallel 330k-1,5V R6=2k49, 1,2-25Vo R1=Adj=50k R2=2k49, 1Ao Rcs=0,12R/0,036R@120mV 3Ao E d use T1b or T1r closT1bther 2 B1
in „Laufzeitbegrenzung für 12V Pumpe mit Akku, Solarmodul, Step-Up, Zeitschaltuhrbetrieb LED-Anzeige MPP“ · Projekte & Code ·
-
Datei
ch557.h
bSCL0 0x01 // SCL input for I2CS #define bTXD_ 0x08 // alternate pin for TXD of UART0 #define bRXD_ 0x04 // alternate pin for RXD of UART0 #define bAIN13 0x20 // AIN13 for ADC #define bAIN12 0x10 // AIN12 for ADC #define bAIN11 0x08 // AIN11 for ADC #define bAIN10 0x04 // AIN10 for ADC #define bAIN9 0x02
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AT070TN07-V2.pdf
Timing conditions, including vales of rising time, falling time, high and low level pulse width, OEH 04 2007/03/01 9 pulse width, sample and hold disable time, OEV pulse width, CKV pulse width, clean enable time, horizontal display timing range 05 2007/06/12 16 Modify the luminance from “450 cd/m ”to “
-
PDF
nRF24LE1_Product_Specification_rev1_6-6439.pdf
-40 dBc C/I th f -47 dBc Nth N ACS, C/I f >i25 MHz (1 Mbps) C/ICO C/I co-channel (250 kbps) 12 dBc st C/1ST 1 ACS, C/I 1 MHz (250 kbps) -12 dBc C/2ND 2 ndACS, C/I 2 MHz (250 kbps) -33 dBc C/3RD 3 ACS, C/I 3
in „Projekt: Kugelschreiber-Morse“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
FSP_SHB_D.pdf
3ter Ordn. FSP 13: 1 MHz bis 13.6 GHz SMP02 1035.5005.02 Frequenzgang FSP 30: 1 MHz bis 30 GHz SMP04 1035.5005.04 FSP 40: 1 MHz bis 40 GHz SMP04 1035.5005.04 3 Meßsender Phasenrauschen bei 498 MHz: SMHU 0835.8011.52 Kalib.-Quelle bei 128 MHz Klirrfaktor 2ter Ordnung <-100 dBc(1Hz) bei 100 Hz Intercept-Punkt 3. Ordn. <-115 dBc(1Hz) bei 1 kHz ZF-Filter <-127 dBc(1Hz) bei 10 kHz Frequenzgang <-130 dBc(1Hz) bei 100 kHz Anzeigelinearität <-142 dBc(1Hz) bei 1 MHz Eichleitung Referenzpegeleinstellung Phasenrauschen RF-Trigger 4
-
Datei
dmesg.txt
reserved [ 0.480704] system 00:02: [io 0x0e20-0x0e2f] has been reserved [ 0.481049] system 00:05: [io 0x04d0-0x04d1] has been reserved [ 0.482027] system 00:06: [io 0x04d0-0x04d1] has been reserved [ 0.482037] system 00:06: [io 0x040b] has been reserved [ 0.482045] system 00:06: [io 0x04d6] has been reserved
in „Ubuntu Server: OS noch zu retten?“ · PC Hard- und Software ·
-
Datei
C8051F330_ext.H
AMUX0 NEGATIVE CHANNEL SELECT */ sfr AMX0P = 0xBB; /* AMUX0 POSITIVE CHANNEL SELECT */ sfr ADC0CF = 0xBC; /* ADC0 CONFIGURATION */ sfr ADC0L = 0xBD; /* ADC0 LOW */ sfr ADC0H = 0xBE; /* ADC0 HIGH */ sfr SMB0CN = 0xC0; /* SMBUS CONTROL */ sfr SMB0CF = 0xC1; /* SMBUS CONFIGURATION */ sfr SMB0DAT = 0xC2; /*
in „rfm02 -> rfm01, Fehler im Programm?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
BGS12PL6_V2_0.pdf
be endangered. BGS12PL6 Revision History Document No.: BGS12PL6.pdf Previous Version: v1.9, April 04, 2013 Page Subjects (major changes since last revision) 10 Updated RF Characteristics (Table 6) 12, 13, 14 Updated Package Information (Figure 3, Figure 4, Figure 6) Trademarks of Infineon Technologies
in „RF Switch : Ein-/Ausgang und Impedanz“ · HF, Funk und Felder ·
-
Datei
MSP_VOL2.ASM
i2cdata,$00 ; HIGH rcall i2c_do_transfer ldi i2cdata,$9B ; LOW rcall i2c_do_transfer ldi i2cdata,$04 ; CONTROL-HIGH rcall i2c_do_transfer ldi i2cdata,$C6 ; CONTROL-LOW rcall i2c_do_transfer rcall i2c_stop rcall MSP_PAUSE rjmp LOAD_REGISTER LOAD_REGISTER: ldi i2cadr,$80 ; MSP3400 rcall i2c_start rcall
in „Mein MSP3400 und mein MSP3410 wollen nicht funktionieren“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
ATmega324P.xml
> <MEM_ADDR>$BC</MEM_ADDR> <TWIE_MASK>0x01</TWIE_MASK> <TWEN_MASK>0x04</TWEN_MASK> <TWWC_MASK>0x08</TWWC_MASK> <TWSTO_MASK>0x10</TWSTO_MASK> <TWSTA_MASK>0x20</TWSTA_MASK> <TWEA_MASK>0x40</TWEA_MASK> <TWINT_MASK>0x80
in „M324def.inc gesucht“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
ATmega324PA.xml
> <MEM_ADDR>$BC</MEM_ADDR> <TWIE_MASK>0x01</TWIE_MASK> <TWEN_MASK>0x04</TWEN_MASK> <TWWC_MASK>0x08</TWWC_MASK> <TWSTO_MASK>0x10</TWSTO_MASK> <TWSTA_MASK>0x20</TWSTA_MASK> <TWEA_MASK>0x40</TWEA_MASK> <TWINT_MASK>0x80
in „M324def.inc gesucht“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
AT90PWM3.xml
/MEM_ADDR> <OCR0RB_8_MASK>0x01</OCR0RB_8_MASK><OCR0RB_9_MASK>0x02</OCR0RB_9_MASK><OCR0RB_00_MASK>0x04</OCR0RB_00_MASK><OCR0RB_01_MASK>0x08</OCR0RB_01_MASK><OCR0RB_02_MASK>0x10</OCR0RB_02_MASK><OCR0RB_03_MASK>0x20</OCR0RB_03_MASK><OCR0RB_04_MASK>0x40</OCR0RB_04_MASK><OCR0RB_05_MASK>0x80</OCR0RB_05_MASK
in „AVRStudio4(SP4) debug mode: ACSR fehlt für AT90PWM3?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
kessel_init.htm
+0.0200 seconds) </B></FONT></P> <P><FONT face="Courier New" color="#0000ff"> 4D 41 0F 49 00 05 01 04 41 62 67 61 73 74 65 6D MA.I....Abgastem 70 2E 04 B2 p..² </FONT></P> <P><FONT face="MS Shell Dlg" color="#000000"><B>Request: 28.11.2013 19:57:07.10164 (+0.0000 seconds) </B></FONT></P> <P><FONT face
in „Fröling Heizungssteuerung auslesen.“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
trm-868-eur-463941_4_.pdf
Mid-low +2dBm 0x00 2,400 0x02 DTS Mode Mid-high +7dBm 0x01 9,600 0x03 DTS Mode High +13dBm 0x02 19,200 0x04 DTS Mode Low -2dBm 0x03 38,400 0x05 LP Mode Mid-low +2dBm 0x04 57,600 0x06 LP Mode Mid-high +7dBm 0x05 115,200 0x07 LP Mode High +13dBm 0x06 10,400* 0x07 31,250* Figure 19: Power Mode Register Values
-
PDF
trm-868-eur-463941.pdf
Mid-low +2dBm 0x00 2,400 0x02 DTS Mode Mid-high +7dBm 0x01 9,600 0x03 DTS Mode High +13dBm 0x02 19,200 0x04 DTS Mode Low -2dBm 0x03 38,400 0x05 LP Mode Mid-low +2dBm 0x04 57,600 0x06 LP Mode Mid-high +7dBm 0x05 115,200 0x07 LP Mode High +13dBm 0x06 10,400* 0x07 31,250* Figure 19: Power Mode Register Values
-
Datei
test.lst
00B8 BE0F OUT 0x3F,R0 00B9 900F POP R0 00BA 9508 RET float_prolog: 00BB DFD3 RCALL save_floatregs 00BC DFED RCALL stk2arg0 00BD CFE7 RJMP stk2arg1 add32fs: 00BE D001 RCALL add32f 00BF CF85 RJMP push_arg4 add32f: 00C0 DFFA RCALL float_prolog 00C1 D00D RCALL FADD 00C2 CFF1 RJMP float_epilog sub32fs: 00C3
in „Wurzel ziehen asm“ · Mikrocontroller und Digitale Elektronik ·