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PDF
bc337.pdf
ICM 1 A Base current – Basisstrom I 100 mA B Junction temperature – Sperrschichttemperatur T j -55...+150°C Storage temperature – Lagerungstemperatur T S -55…+150°C 1 Please note the detailed information on our
in „chinesische Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BC639_BCP56_BCX56.pdf
transistors 2. Pinning information Table 3. Pinning Pin Description Simplified outline Symbol SOT54 1 base 2 collector 2 3 emitter 1 1 2 3 3 001aab347 sym056 SOT54A 1 base 2 2 collector 3 emitter 1 1 2 3 001aab348 3 sym056 SOT54 variant 1 base 2 collector 2 3 emitter 1 1 2 3 3 001aab447 sym056 SOT223 1 base
in „Alternative BC327 und 337“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ssd1623.pdf
Phase5_en 01 02 03 Clock Overall timing scaling Osc_En E_CLK_DIV[2] E_CLK_DIV[1] E_CLK_DIV[0] CLK_Base[3] CLK_Base[2] CLK_Base[1] CLK_Base[0] 04 05 06 07 08 Reset Reset SW_Reset[1] SW_Reset[0] lock1 lock0 09 DC/DC 2 Booster voltage DC_Volt[4] DC_Volt[3] DC_Volt[2] DC_Volt[1] DC_Volt[0] DOFF_out[1] DOFF_out
in „E-Ink Display im Blutzuckermeßgerät“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Grille_prix_Tarif_Bleu.pdf
/mois) Heures Heures 3 12,03 19,40 Pleines Creuses 6 15,65 19,40 6 15,65 20,65 15,79 9 19,56 19,27 9 19,56 20,65 15,79 12 23,32 19,27 12 23,32 20,65 15,79 15 26,84 19,27 15 26,84 20,65 15,79 18 30,49 19,27 18 30,49 20,65 15,79 24 38,24 19,27 24 38,24 20,65 15,79 30 45,37 19,27 30 45,37 20,65 15,79 36 52,54 19,27 36 52,54 20,65 15,79 Majoration pour les auto-producteurs individuels avec injection (€/an HT) : 9,60 Majoration de l’abonnement pour les consommateurs non équipés d’un compteur
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PDF
Applications-1V1.1-DinA4.pdf
APPLICATION NOTES (1) OPTICOM GmbH Naegelsbachstr. 38 91052 Erlangen GERMANY Phone: +49 9131 / 530 20 0 Fax: +49 9131 / 530 20 20 EMail: info@opticom.de Website: www.opticom.de Further information: www.psqm.org www.pesq.org www.3sqm.org White Paper by OPTICOM GmbH, Germany Version 1.1, 03/2001 OPERA™
in „Rohde & Schwarz Audio-Analysator UPD noch zeitgemäß?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Main.java
ib.iow(0x3d8,0xa0); else ib.iow(0x3b8,0xa0); } static boolean et4000_test() { int newv, old, val, base; et4000_unlock(); // test for tseng old = ib.ior(0x3cd); ib.iow(0x3cd,0x55); newv=ib.ior(0x3cd); ib.iow(0x3cd,old); if(newv!=0x55) return false; // test for et4000 if((ib.ior(0x3cc)&1)!=0) base=0x3d4; else base = 0x3c4; ib.iow(base, 0x33); old=ib.ior(base+1); newv=old ^ 0xf; ib.iow(base+1, newv); val=ib.ior(base+1); ib.iow(base+1, old); if(val==newv) return true; return false; } static void writeSequencer(
in „VGA Grafikkarte an uC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at91rm9200.pdf
Read I TLB lockdown TLB lockdown 0 1 Write I TLB lockdown TLB lockdown 0 1 31 30 29 28 27 26 25 24 Base 23 22 21 20 19 18 17 16 Victim - - - - D 15 14 13 12 11 10 9 8 - - - - - - - - 7 6 5 4 3 2 1 0 - - - - - - - P Base[31:26]: Base The TLB replacement strategy only uses the TLB entries numbered from base to 63. The Victim field provided is in that range. Victim[25:20]: Victim Counter Specifies the TLB entry (line) being overwritten. P[0]: Preserved If 0, the TLB entry can be invalidated. If 1, the TLB
in „S1D113513 + AT91RM9200“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_AMD_FX_Performance_Tuning_Guide.pdf
Turbo Core Technology and Application Power Management (APM) allow the CPU cores to run above the CPU Base clock value as long as the CPU remains within the thermal and power limits. As an example the AMD FX-8150 CPU has a base clock of 3600MHz but it can run at 3900MHz when up to 8 cores are active and
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PDF
Apex_PA03.pdf
N U 5 =– N ( pF S TC A CC Φ M G 60 =O ,–90 R P CC= 470pF E S F 4 C O 40 N A120 P 25° L P R T C= N 20 –150 D 3 5°C E E = 12 O G 2 TC 0 –180 T L –20 –210 V 1 1 10 100 1K 10K .1M 1M 10M 1 10 100 1K 10K .1M 1M 10M 0 5 10 15 20 25 30 FREQUENCY, F (Hz) FREQUENCY, F (Hz) OUTPUT CURRENT, I O (A) ) COMMON MODE REJECTION PULSE RESPONSE INPUT NOISE B120 7.5 z 20 ( V = ±.5V, A = 10 H R R =.5Ω V / M100 5.0 L V , ( N N 10 I 80 2.5 , C E E T A E 60 L 0 T 6 R V O E V D 40 –2.5 E M I 4 N 20 –5.0 O O N M U M 0 –7.5 P 2 O 1 10 100 1K 10K .1M 1M 0 5 10 15 20 25 30 I
in „Hochleistungs-Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DSO-1062D_User_Manual_Ver0.pdf
POSITION knob 4 Cleaning 70 Hyperlinks 3 Coarse, Fine 20 Connector 5 I Contrast 39 Intensity 39 Coupling 9 CURSOR 12 L Language 43 CURSOR button 12 Cyc RMS 34 Level 9 Lissajous pattern 16 D DISPLAY button 38 M Main time base 16 Dual-window 17 Math FFT 21 E
in „Voltcraft DSO-1062D“ · Mikrocontroller und Digitale Elektronik ·
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PDF
snoaa35b.pdf
Supplies.................................................................13 List of Tables Table 1-1. Base Part Number, Channel Count, and Temperature Range....................................................................................2 Table 1-2. Maximum Input Offset Error at 25°C for Each Base Part
in „LM393 Komparatorschaltung gescheitert“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
fes8jt.pdf
220AC, TO-263AB IF(AV) 8.0 A V 50 V to 600 V Molding compound meets UL 94V-0 flammability rating RRM Base P/N-E3 - RoHS-compliant, commercial grade IFSM 125 A Base P/NHE3 - RoHS-compliant, AEC-Q101 qualified trr 35 ns, 50 ns Terminals: Matte tin plated leads, solderable per VF 0.95 V, 1.30 V, 1.50 V J-STD
in „Ersatz für Schottky SB 3200?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
usb_vcp.c
uint32_t *)(USB_BASE + 0x04)) #define USB_EP2R (*(volatile uint32_t *)(USB_BASE + 0x08)) #define USB_EP3R (*(volatile uint32_t *)(USB_BASE + 0x0C)) #define USB_EP4R (*(volatile uint32_t *)(USB_BASE + 0x10)) #define USB_EP5R
in „STM32 USB Übertragungsproblem mit Code von S.F.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
structures // ****************************************************** volatile AT91PS_PIO mPIOB = AT91C_BASE_PIOB; volatile AT91PS_PMC mPMC = AT91C_BASE_PMC; //AT91PS_PIO v_pPioA = AT91C_BASE_PIOA; // ******************************************************* // External References // ************************
in „Data aus USART vom SAM7-EX256 lesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EM6580.pdf
temperature 80 70.00 5.5V 60.00 f=800kHz 60 3.0V 50.00 A 2.0V A f=512kHz [ 40 [ 40.00 d d 30.00 I I 20.00 f=400kHz 20 10.00 f=32kHz 0 0.00 0 200 400 600 800 -40.00 -20.00 0.00 20.00 40.00 60.00 80.00 100.00 Frequency [kHz] Temperature[°C] Idd HALT vs. frequency, 512kHz base Idd HALT vs. temperature 8.000
in „Was ist aus dem Thread der MeteoData geworden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atollic_Develop_Debug_BootloaderApps_ARMCortex.pdf
this behavior! For instance the “SystemInit” in this example: #ifdef VECT_TAB_SRAM SCB->VTOR = SRAM_BASE | VECT_TAB_OFFSET; /* Vector Table Relocation in Internal SRAM */ #else SCB->VTOR = FLASH_BASE | VECT_TAB_OFFSET; /* Vector Table Relocation in Internal FLASH */ #endif 2016-04-20 13 Constructing the
in „GDB - ARM, Debug mit Offset“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Timer.txt
0x1A char period7; //0x1B char duty0; //0x1C char duty1; //0x1D char duty2; //0x1F char duty3; //0x20 char duty4; //0x21 char duty5; //0x22 char duty6; //0x23 char duty7; //0x24 char shutd; //0x25 char reserved_37; //0x26 char reserved_38; //0x27 char reserved_39; //0x28 }PWMmodule; PWMmodule* pwm_ptr
in „Problem mit dem Timer eines HCS12“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WIZNET_NM7010B.pdf
L_LINK t V GND 13 14 A9 GND 13 14 GND e . A8 15 16 A7 D1 15 16 D0 1 2 A6 17 18 A5 D3 17 18 D2 ) A4 19 20 A3 D5 19 20 D4 A2 21 22 A1 D7 21 22 D6 A0 23 24 GND GND 23 24 VCC NC 25 26 NC NC 25 26 NC NC 27 28 NC NC 27 28 NC I : Input O : Output I/O : Bi-directional Input and output P : Power 2.2. Power & Ground
in „Erfahrungen mit WIZnet NM7010B“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tianma.c
0x17, 0x07, 0x17, 0x07, 0x17, 0 }; const byte LcdSetup[11] = { 0x00, // Control Byte (CO=0/RS=0) 0x20, // Function Set (Base + Standard, 1 Line, 1:18 Multiplex) 0x06, // Entry Mode (Addr Increment, No Shift) 0x0E, // Display Ctl (Disp On, Cursor On), Cursor nicht sichtbar, da Zeile 8 0x21, // Function
in „Pollin TIAN MA A2C00096100 LCD Modul“ · Mikrocontroller und Digitale Elektronik ·
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Datei
top_basic.v
(tx_ca_cpld), .comp_id({bus_num, dev_num, func_num}), .debug() ); wb_arb #(.c_DATA_WIDTH(16), .S0_BASE (32'h04000), // UART6 .S1_BASE (32'h04008), // UART5 .S2_BASE (32'h04010), // UART4 .S3_BASE (32'h04018), // UART3 .S4_BASE (32'h04020), // UART2 .S5_BASE (32'h04028), // UART1 .S6_BASE (32'h05000), // GPIO+LEDs .S7_BASE (32'h06000), // ASRAM .S8_BASE (32'h106000), //MSI Ctrl .S9_BASE (32'h107000) // CAN1 ) wb_arb ( .clk(clk_125), .rstn(core_rst_n), // PCIe Master .m0_dat_i(pcie_dat_o), .m0_dat_o(pcie_dat_i), .m0_adr_i
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Datei
ohne_kontrollausgabe.asm
buf[sizeof(buf) - 1]; *str = '\0'; 2f8: 19 a2 std Y+33, r1 ; 0x21 // prevent crash if called with base == 1 if (base < 2) base = 10; 2fa: 42 30 cpi r20, 0x02 ; 2 2fc: 08 f4 brcc .+2 ; 0x300 <Print::printNumber(unsigned long, unsigned char) [clone .constprop.8]+0x28> 2fe: 4a e0 ldi r20, 0x0A ; 10 300:
in „AVR Inline Optimierung kaputt?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ccpneu.h
2000-29-11 1.30.00 Za - #ifndef CCP_EXTERNAL_STATION_ID | 2001-08-02 1.31.00 Za - new define CCP_DAQ_BASE_ADDR | - new function ccpGetDaqPointer | 2001-30-05 1.32.00 Za - Reserved word "data" in KEIL Compiler for C5x5 | - Prefix CCP_ for all #defines | 2001-14-09 1.33.00 Za - #define CCP_ODT_ENTRY_SIZE
in „XC16 Compiler Error“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Unidrive_SP_Manual.pdf
1- differential analog input, inverting input, 16 bit 0 to 24 Vdc input, or 1 ±10 Vdc,100 k Ω or 0-20/ 25 Digital I/O 2 to 24 Vdc, 240 mA max 7 Analog output digital I/O Input 2 4-20 mA, 200 Ω single-end- 0 to 24 Vdc input, or 1 ed analog input 10 bit ±10 Vdc, 100 kΩ or 0-20/ 26 Digital I/O 3 to 24 Vdc, 240 mA max Analog 4-20 mA, 200 Ω single-end- output digital I/O 8 0 to 24 Vdc, 6 kΩ Input 3 ed analog input 10 bit, 27 Digital Input 4 digital input motor thermistor input ±10 Vdc or 0-20 / 4-20 mA 0 to 24 Vdc, 6 kΩ 9 Analog
in „[V Verkaufe Umrichter Emerson Unidrive SP1403“ · Markt ·
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Datei
dmesg.txt
write-through [ 0.000000] E8000-FFFFF write-protect [ 0.000000] MTRR variable ranges enabled: [ 0.000000] 0 base 000000000 mask F00000000 write-back [ 0.000000] 1 base 100000000 mask FE0000000 write-back [ 0.000000] 2 base 0E0000000 mask FE0000000 uncachable [ 0.000000] 3 disabled [ 0.000000] 4 disabled [ 0.000000
in „Arduino - USB wird nicht erkannt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST-4000.pdf
. Max. Min. Max. 01 5 5 0.25 0.25 7.5 HCC 0/10 10 0.5 0.5 15 types 0/15 15 1 1 30 IL (gates) IJA 0/20 20 5 5 150 0/ 5 5 1 1 7.5 HCF types 0/10 10 2 2 15 0/15 15 4 4 30 015 5 1 1 30 HCC 0/10 10 2 2 60 types 0/15 15 4 4 120 IL(buffeFF) 0/20 20 20 20 600 IJA 0/ 5 5 4 4 30 HCF types 0/10 10 8 8 60 0/15 15
in „RC-Oszillator mit zwei CD4001B-NOR-Gattern schwingt nicht an“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds18s20_id_lesen.bas
'******************************************************************************* '* DS18S20 ID Auslesen * '* * '* M.Welnick, 26.01.2009 * '******************************************************************************* $regfile = "m8def.dat" $crystal = 3686400 $baud = 9600 $hwstack = 128 $swstack = 256 $framesize = 256 'Lcd ansteuerung Config Lcd = 16 * 2 Config Portc = Output Config Lcdpin = Pin , E = Portc.5 , Rs = Portc.4 , Db4 = Portc.0 , Db5 = Portc.1 , Db6 = Portc.2 , Db7 = Portc.3 Config Lcdbus = 4 Config Lcdmode = Port Cursor Off Cls 'Pin für DS18S20 Config 1wire = Portb.1 'Pin für 1Wire
in „AVR für wenig Geld im LAN“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DS18B20_go1.bas
$regfile = "m32def.dat" $crystal = 16000000 $swstack = 50 $hwstack = 50 $framesize = 50 '===================== Pinkonfiguration ===================== Config Lcdpin = Pin , Db4 = Portc.4 , Db5 = Portc.5 , Db6 = Portc.6 , _ Db7 = Portc.7 , E = Portc.3 , Rs = Portc.2 Config Lcd = 16 * 4 Config 1wire = Portd.5 Cls Cursor Off '=================== Variablendeklaration =================== Dim Scratchpad As Integer 'Integer für Scratchpadinhalt Dim Temp As Single 'Variable für Temperaturausgabe in Dezimal Dim I As Byte 'Zählervariable '============== 1wire-Bus ansprechen/auslesen =============== Do 1wreset
in „DS18B20 - Zwei Routinen zum checken“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DS18B20_go2.bas
$regfile = "m32def.dat" $crystal = 16000000 $swstack = 50 $hwstack = 50 $framesize = 50 '===================== Pinkonfiguration ===================== Config Lcdpin = Pin , Db4 = Portc.4 , Db5 = Portc.5 , Db6 = Portc.6 , _ Db7 = Portc.7 , E = Portc.3 , Rs = Portc.2 Config Lcd = 16 * 2 Config 1wire = Portd.5 Cls Cursor Off '=================== Variablendeklaration =================== Dim Scratchpad1(9) As Byte 'Array für Scratchpadinhalt Dim Tmp1 As Byte 'Variable zum Auslesen der ersten beiden Arraybytes Dim T1 As Integer 'Zwischenvariable zur Berechnung Dim Temp1 As Single 'Variable für Temperaturausgabe
in „DS18B20 - Zwei Routinen zum checken“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usart_nrf.c
RealTimeData(uint8_t *pBuffer) { switch(pBuffer[1]) { case ANSWER_REQ_A_DAT: //89 UsartNrf_Process_BaseDataPort(pBuffer, 0); break; case ANSWER_REQ_A_EVENT: //88 UsartNrf_Process_BaseEventPort(pBuffer, 0); break; case ANSWER_REQ_B_DAT: //91 UsartNrf_Process_BaseDataPort(pBuffer, 1); break; case ANSWER_REQ_B_EVENT
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
YAMAICHI_TS-Katalog-2017_01_2.pdf
Withstanding Voltage: 100V AC for 1 minute NP276 - 1105 22 - * - (*) Contact Resistance: 100mΩ max. at 10mA/20mV max. Operating Temperature Range: –55°C to +150°C Series No. Contact Force: 294 mN (30gf) per pin approx. No. of Contact Pins Mating Cycles: 10,000 insertions (.AC are depopulated base sockets MATERIALS
in „TSOP-66 Sockel zum testen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TCL5940_base.bas
'(******************************************** * TCL5940-base.bas * Arne Groh * 2010_06_27 * GreyScaleWerte werden An Tcl5940 uebertragen * Dazu werden allerdings Timer1 und Timer2 * verwendet. * Timer2 generiert den GSClk so schnell wie * moeglich (xtal/2). *
in „TCL5940 16-Kanal 12bit LED Treiber ansteuern und HighPower LEDs über MosFETs treiben (in Bascom)“ · Projekte & Code ·
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PDF
m_cbc.pdf
Option B [VDC][P4] (2) 0-7 PLV Range Option C [VDC][P4] (2) 0-10 PLV Range Option D [VDC][P4] (2) 4-20 Nominal Input Impedance Option A,B,C[ohms][P4] 20K Nominal Input Impedance Option D [ohms][P4] 220 OUTPUT STATUS FUNCTIONS Conditions LED Initial Logic Supply On Flash Once Load Voltage Missing / Load
in „0..10V AC auf 0..230V AC skalieren“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Orange Pi CM5 Modul und Base Board Werbebild
orange pi Compact Orange Pi CM5 4GB/8GB/16GB Start at 70 USD$ Rockchip orangepi CM5 V1.1 CM5 Base Board Start at 20 USD$ Powerful orangepixunlong Announcing the release of the new #OrangePi CM5 ! The CM5 baseboard is also being released simultaneously. Welcome to explore and purchase!! $70 with 4GB RAM $90 with 8GB RAM $119 with 16GB RAM $20 with CM5 Base Board http://www.orangepi.org/.../details/Orange-Pi-CM5.html 4d 35 likes 4 days ago
in „CubeMX- und Raspberry Pi OS-Updates, neuer OrangePi uvm“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
AIO486.PDF
1 A20 schnelle A20-Umschaltung 0 = A20-Leitung immer low 1 = A20 unter CPU-Kontrolle 0 RST schneller CPU-Reset 0 = keinen Reset auslösen 1 = Reset auslösen AIO486 Rev. A4 GS10 AB/PB Seite 95 Software-Schnittstellen
in „AIO486 CPU-Board“ · Offtopic ·
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PDF
AIO486.PDF
1 A20 schnelle A20-Umschaltung 0 = A20-Leitung immer low 1 = A20 unter CPU-Kontrolle 0 RST schneller CPU-Reset 0 = keinen Reset auslösen 1 = Reset auslösen AIO486 Rev. A4 GS10 AB/PB Seite 95 Software-Schnittstellen
in „AIO486 CPU-Board“ · Offtopic ·
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PDF
lt32a1.pdf
BAV70 SOT23 BY PAN JIT ▯ D621 093G 64 42 P BAV70 SOT23 BY PAN JIT ▯ X701 093G 22S921 C CRYSTAL 27MHZ 20P SMD-5.0X3.2 ▯ ZD507 093G 39S 34 T UDZSNP5.6B ROHM ▯ D618 093G 64S3PH BAS32L ▯ D617 093G 64S3PH BAS32L ▯ D607 093G 64S3PH BAS32L ▯ D606 093G 64S3PH BAS32L ▯ D604 093G 64S3PH BAS32L ▯ D407 093G 64S3PH
in „Philips LCD TV kein Bild aber Ton [46PFL7655K/02]“ · Haus & Smart Home ·
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Datei
test.cpp
draw\n"; } void Textfield::draw () const { std::cout << "Textfield::draw\n"; } template <typename Base, typename... T, std::size_t... I> constexpr std::array<Base*, sizeof...(T)> tuple_pointers (std::tuple<T...>& t, std::index_sequence<I...>) { return {{ &std::get<I> (t) ... }}; } template <typename.
in „C++ : Mit for-Schleife über Objekte verschiedener Klassen iterieren“ · Softwareentwicklung ·
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Datei
main.c
structures // ****************************************************** volatile AT91PS_PIO mPIOB = AT91C_BASE_PIOB; volatile AT91PS_PMC mPMC = AT91C_BASE_PMC; //AT91PS_PIO v_pPioA = AT91C_BASE_PIOA; // ******************************************************* // External References // ************************
in „Data aus USART vom SAM7-EX256 lesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SPDIF-Gen_v1.3.asm
LDI YH, HIGH(BMCTable) ; Zeiger auf BMC Tabelle. nur YH - YL wird unten gesetzt LDI ZH, HIGH(SampleBase*2) ; Zeiger auf Anfang ; SMPLCNT LDI ZL, LOW(SampleBase*2) ; SMPLCNT LDI SmpLENhelpH, HIGH(SampleLength) LDI SmpLENhelpL, LOW(SampleLength) ; ## ##### ##### ###### ; ## ## ## ## ## ## ## ; ## ## ##
in „ATmega328 und SPDIF 24 Bit digital Audio“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ediptft43.c
len ) break; if( --i == 0 ) return 0xFF; // timeout } for (i=0; i < len; i++) { UARTCharPut(UART1_BASE,buffer[i]); } // Nun lesen wir den Returncode des Displays ret = UARTCharGet(UART1_BASE); return ret; } //--------------------------------------------------------------------- // Die Version auf dem
in „EA eDIPTFT43-ATP per RS-232 an Atmega32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.c
LCD_SET_DDRAM 0b10000000 // instruction: set DDRAM-address // define addresses of lines: W204B (4x20) // ----------------------------------------- #define LCD_ADR_4X20_L1 0x00 // base address line 1, character 1 #define LCD_ADR_4X20_L2 0x40 // base address line 2, character 1 #define LCD_ADR_4X20_L3 0x14 // base address line 3, character 1 #define LCD_ADR_4X20_L4 0x54 // base address line 4, character 1 // function-code // enable current signal (enable impulse) void lcd_enable_signal(void) { // variables &
in „selbstdefiniertes Zeichen wird am LCD nicht richtig ausgegeben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AV02-1132EN_DS_HEDS-9x40_2014-03-17__3_.pdf
. 2.54(0.100)TYP. C C V C N G. N N 1.52(0.060) 1.8 V 5 4 3 2 1 G OPTIONCODE 1.0(0.04) (0.07) 5.1(0.20) DATECODE 2.21 2.9 6.9(0.27) (0.087) (0.11) 11.9 3.73±0.05 2.54 (0.47) 00X9-SDEH (0.147±0.002) 20.8 (0.100) 1.02±0.10 Y (0.82) (0.040±0.004) 0 X 11.7 (0.46) 4.75±0.10 5.8 8.81 (0.187±0.004) 45° (0.23
in „Incremental Encoder läuft nicht an 2 µC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ELF_Format.pdf
That is, a file’s NOTE program header table may contain only those elements relevant to its contents. Base Address Executable and shared object files have a base address, which is the lowest virtual address associated with the memory image of the program’s object file. One use of the base address is to relocate
in „elf32-avr object file format (gcc)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2.8_HW240320F-2D-0B-L1-T4.pdf
TP Y+ 14 X- TP X- 15 Y- TP Y- 16 LEDA LED 3V 17 KEDK1 LED1 GND 18 LEDK2 LED2 GND 19 LEDK3 LED3 GND 20 LEDK4 LED4 GND 21 GND Internal logic GND: GND=0V. 22 DB4 Data Bas Line 23-30 DB10-DB17 Data Bas Line 31 /RESET Reset pin. This is an active low signal. Power supply to the crystal power supply anglog
in „[V]erkaufe TFT 2.8" und TFT 2.4" mit adapter PCB“ · Markt ·
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PDF
notes_82b96.pdf
also cause delay problems. Imagine the right hand I2C side was changed. Delete the 330 ohms emitter-base and put 200 pF to ground. That capacitor has the emitter-follower current gain action working to hold the bus low. To pull down 10 mA in the bus resistor needs less than 50uA of base current flowing
in „18 x SHT11 an welchem Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
notes_82b96.pdf
also cause delay problems. Imagine the right hand I2C side was changed. Delete the 330 ohms emitter-base and put 200 pF to ground. That capacitor has the emitter-follower current gain action working to hold the bus low. To pull down 10 mA in the bus resistor needs less than 50uA of base current flowing
in „I²C galvanisch trennen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DSP_Filter_Functions_Help.htm
buffers are implemented as circular increasing modulo buffers, both <span class=Computer><i>coeffsBase</i></span> and <span class=Computer><i>delayBase</i></span> must be aligned to a zero power of two address (<span class=Computer><i>coeffsEnd</i></span> and <span class=Computer><i>delayEnd</i></span
in „IIR auf DsPic mit Koeffizient > 1“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
an920-d.pdf
design example, the output switch transistor Comp is driven into saturation with a forced gain of 20 at 5 4 GND an input voltage of 7.0 V. The required base drive is: I Vout IB+ pk(switch) Bf R1 V Z V out 1.25 V + 442 10−3 Co + 20 + 22.1 mA Figure 13. MC34063 Ripple Reduction Technique The current required
in „MC34063 als Step Up arbeitet nicht“ · Analoge Elektronik und Schaltungstechnik ·
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AN920-D_MC34063_Theory_and_Applications_.pdf
design example, the output switch transistor Comp is driven into saturation with a forced gain of 20 at 5 4 GND an input voltage of 7.0 V. The required base drive is: I Vout IB▯ pk(switch) B f R1 VZ= Vout– 1.25 V + 442 ▯ 10 –3 Co ▯ 20 ▯ 22.1 mA Figure 13. MC34063 Ripple Reduction Technique The current
in „Schaltregler MC34063 - Wie berechnet man CT?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN920-D.PDF
design example, the output switch transistor Comp is driven into saturation with a forced gain of 20 at 5 4 GND an input voltage of 7.0 V. The required base drive is: I Vout IB▯ pk(switch) B f R1 VZ= Vout– 1.25 V + 442 ▯ 10 –3 Co ▯ 20 ▯ 22.1 mA Figure 13. MC34063 Ripple Reduction Technique The current
in „Frage zu Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·