-
Datei
timing_report.txt
BUFGCTRL_X0Y16 BUFG (Prop_bufg_I_O) 0.091 11.788 r MAIN_CLK_IN_IBUF_BUFG_inst/O net (fo=456, routed) 1.688 13.477 FIR_Test_inst/MAIN_CLK_IN_IBUF_BUFG DSP48_X4Y32 DSP48E1 r FIR_Test_inst/temp_result0/CLK clock pessimism 0.424 13.900 clock uncertainty -0.035 13.865 DSP48_X4Y32 DSP48E1 (Setup_dsp48e1_CLK_A[3])
in „VHDL Timing Constraints nicht erfüllt“ · FPGA, VHDL & Co. ·
-
Datei
15_4_MC_T13_PCF_LCD_2004.asm
; ******15_04_MC_T13_PCF_LCD_2004 vom D0. 26.06.2020 ; angepasst für Beitrag in MC ; unten vorläufer ;*******15_2_T13_PCF_LCD_2004.asm ;******nun korrigiert in beidenzeilen sodass die RS RW Leitungen nicht mehr vertauscht
in „AVR ATtiny13 I2C PCF8574 LCD Display Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
BTS4140N.pdf
R L= 270 Ω - - 64) R L 270 Ω, T =j25 °C, V bb = 13.5 V - 1.3 4 3) Slew rate off V IN= 0V to bb 70 to 40% OUT -dV/dtoff R L 270 Ω - - 84) R L 270 Ω, T =j25 °C, V bb = 13.5 V - 1.7 4 1 Device on 50mm*50mm*1.5mm epoxy PCB FR4 with 6 cm2 (one layer, 70µm
in „+12V mit +3.3V schalten P-MOSFET?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
slau049f.pdf
reset Mode Bits OSCOFF, CPUOFF, and GIE are not affected. Example The 32-bit counter pointed to by R13 is added to a 32-bit counter, eleven words (20/2 + 2/2) above the pointer in R13. ADD @R13+,20(R13) ; ADD LSDs with no carry in ADDC @R13+,20(R13) ; ADD MSDs with carry ... ; resulting from the LSDs Example The 24-bit counter pointed to by R13 is added to a 24-bit counter, eleven words above the pointer in R13. ADD.B @R13+,10(R13) ; ADD LSDs with no carry in ADDC.B @R13+,10(R13) ; ADD medium Bits with carry ADDC.B @R13+,10(R13) ; ADD MSDs
in „Umrechnung: C-Code->Assembler-Code->Cycles“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
USB_Programmer_V1.1_2007-11-04.pdf
- ie 16-pin C400 6 11 13 –TDO C7 220R 220R 220R 220R 220R 7 2A1 N N2B1 10 +3.3VD Si2301BDS+3.3V_OUT 100n 2A2 G G2B2 2 Q400 3 14-Vss (ground) DGND 100n 8 9 DGND +3.3VD C8 15 – nRST DGND R400 1 J2 4 3 4 1 3 DGND DGND link_NO 16
in „OpenOCD/FT2232 JTAG Communication failure“ · µC & Digital Electronics ·
-
PDF
HO.pdf
PA6 32 R 1 21 C V HA C E (ADC5)PA5 GND V SCK 2 SCLK WA 14 V R 7 XTAL2 (ADC4)PA4 33 UC_WDB 18 GND LA 13 (ADC3)PA3 34 UC_RDB a 7 GND MOSI 3 DIN 8 XTAL1 (ADC2)PA2 35 UC_RS s GND 25 HB 12 (ADC1)PA1 36 UC_CS1B D 26 TEST C11 + C13 4 11 C3 C4 29 37 16 S_DI_POT CS WB 10 27 AREF (ADC0)PA0 UC_RSTB 12 USBDM 15 100n
in „Projekt Handsender mit RFM12, GLCD, Navimec, Li-ion zum überprüfen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Schaltplan.pdf
14 3 14 3 14 CS1 CS DVDD DVDD CS2 CS DVDD DVDD CS3 CS DVDD DVDD CS4 CS DVDD DVDD IOUT1 4 IOUT1 AVDD 13 IOUT2 4 IOUT1 AVDD 13 IOUT3 4 IOUT1 AVDD 13 IOUT4 4 IOUT1 AVDD 13 AVDD AVDD AVDD AVDD AIN1+ R2 5 AIN1+ GND 12 GND AIN2+ R5 5 AIN1+ GND 12 GND AIN3+ R8 5 AIN1+ GND 12 GND AIN4+ R11 5 AIN1+ GND 12 GND
in „Meinung zu Layout, 8x AD-Wandler 2 Lagen EMV“ · Platinen ·
-
Datei
Bruno_Timer1_Pulsformen.ino
_BV(WGM12); TCCR1A |= _BV(WGM11) | _BV(WGM10); break; // Fast PWM 10 Bit case 8 : TCCR1B |= _BV(WGM13) ; ; break; // PWM, Phase & Frequency Correct, ICRn case 9 : TCCR1B |= _BV(WGM13) ; TCCR1A |= _BV(WGM10); break; // PWM, Phase & Frequency Correct, OCRnA case 10 : TCCR1B |= _BV(WGM13) ; TCCR1A |= _BV(WGM11) ; break; // PWM, Phase Correct, ICRn case 11 : TCCR1B |= _BV(WGM13) ; TCCR1A |= _BV(WGM11) | _BV(WGM10); break; // PWM, Phase Correct, OCRnA case 12 : TCCR1B |= _BV(WGM13) | _BV(WGM12); ; break; // CTC, ICRn case 13 : break; // Reserved case 14 : TCCR1B |= _BV(WGM13
in „Präzise Pulse aus Arduino Leonardo“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AN3-SL13A-SPI_Temperature_Measurement.pdf
Application Note 3:SL13A-SPI Temperature Measurement SPI Temperature Measurement with SL13A www.ams.com Revision 1.0 - 11/04/2013 page 1/9 AN3 SL13A-SPI Temperature Measurement Table of Contents 1 General Information ......
in „SL13A temperatur auslesen Arduino UNO“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SMD-QUARTZ-CRYSTAL-SMD03025-4.pdf
PETERMANN-TECHNIK GmbH Lechwiesenstr. 13 ∙ D-86899 ∙ Landsberg am Lech Tel: +49/8191/305395 ∙ Fax: +49/8191/305397 info@petermann-technik.com ∙ www.petermann-technik.com SMD QUARTZ CRYSTAL SERIES SMD03025/4 (4 pad housing 3.2x2.5mm) FEATURES
in „Bauteilidentifikation: Quarz oder Oszillator?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
TEA5768HL_2.pdf
pFRFGND 29 AGC Ccomp(1) 47 pF RFI2 30 14 XTAL2 TEA5768HL CRYSTAL Cpull1) 32.768 kHz TAGC 31 OSCILLATOR 13 XTAL1 or 4.7 nF 13 MHz 5 programmable divider output SOFTWARE 12 SWPORT2 10 k LOOPSW 32 TUNING SYSTEM MUX PROGRAMMABLE 11 SWPORT1 reference frequency divider output PORT VCCA pilot 10 k mono 10 BUSENABLE
in „Einfaches Radio basteln“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
JRXEWKbQXBFOb1fH.pdf
, U.S. (Internationa93P4719 13N9860 French, Canadian 08K5047 13N9834 French, Canadian (058) 93P4744 13N9861 French, European 08K5049 13N9836 German 08K5048 13N9835 Greek 08K5068 13N9855 Hungarian 08K5067 13N9854 Hebrew 93P4711 13N9851 Italian 08K5054 13N9841 Japanese 08K5045 13N9832 Korean 08K5059 13N9846 Norwegian 08K5052 13N9839 Polish 08K5070 13N9857 Portuguese 08K5057 13N9844 Russian 08K5063 13N9850 Slovak 08K5069 13N9856 Slovenian 08K5071 13N9858
in „Lenovo T42 Ladeelektronik spielt verrückt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Lenovo_Z50-70_NM-A273_ACLUA_MB_Rev0.3_schematic_.pdf
.31 32..63 0..31 32..63 FBA_D10 F15 FBA_D09 FBA_CMD09 G23 FBA_CMD10 RV78 1 2 100_0402_5% 0 FBA_D11 F13 FBA_D11 FBA_CMD11 G24 FBA_RAS# FBA_RAS# 24,25,26,27 U 2 FBx_CMD0 ODT_L ODT_L FBA_D13 B13 FBA_D12 FBA_CMD12 G25 FBA_CMD13 FBA_CMD6 RV79 1 2 100_0402_5% 0 FBA_D14 E13 FBA_D13 FBA_CMD13 G27 FBA_CMD14 RV80
in „Laptop defekt: Kommunikation EC - PCH - CPU“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DataLogger.pdf
I2C_SCL 2 2 3 8 s GND 21 I2C_SDA L 33E C j 4 GND RTX1 20 12 /RST V C VBCOMP 22 R7 2-4 a PCF8563 10K 13 SCLK V DP1 21 2-3 C 13 25 14 20 2-2 U : MEGA_RXD 14 UART_TXD-DTRDY RTX2 15 /SS DM1 2-1 W GND GND MEGA_TXD UART_RXD-BUSY 16 MISO R9 +5V +5V 10K 1K 39 UH_RESET MOSI 24 33E G R18 23 /UH_RES 46 UH_INT XI
in „datenlogger - ausreisser erkennen“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
LorchSH140L.txt
momentary switch (push button) 4 no connection 5 d1/a to coil of small contactor d1 6 d1/23 b1/8 7 d1/13 8 kl1/19 a1/ 9 9 kl1/20 a1/13 10 kl1/21 a1/10 11 kl1/22 kl1/18 d1/14 a1/14 12 no connection c1 (K1) big contactor Westinghouse Fanal Schütz DSL6-62 (6 closing + 2 opening contacts) a kl1/10 common 0V
in „Reparaturbericht Schutzgasschweißgerät Lorch SH140L SH 140 L“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
si-prog-v2_2.pdf
Option IDENT 5 3 C17 11 PD0 (RXD) ICP 30 R3 RESET CLOCK 4 12 PD1 (TXD) ALE 29 J1 Q1 SOCKET-DIP8 5 3 2 1 13 PD2 (INT0) OC1B 28 1 R4 10K BC547 R18 560K 6 100nF 14 PD3 (INT1) PC7 (A15) 27 7 PD4 PC6 (A14) 6 4K7 8 U12 AT90S8535/4434 15 PD5 (OC1A) PC5 (A13) 26 2 R5 R1 C19 1N4148 D4 C18 9 40 PA0 (ADC0) PB0 (T0)
in „Grundlagen: Teilen binär Teil 1 - Vorzeichenlose Ganzzahlen“ · Projekte & Code ·
-
PDF
eeprom_progger_schaltplan.pdf
Option IDENT 5 3 C17 11 PD0 (RXD) ICP 30 R3 RESET CLOCK 4 12 PD1 (TXD) ALE 29 J1 Q1 SOCKET-DIP8 5 3 2 1 13 PD2 (INT0) OC1B 28 1 R4 10K BC547 R18 560K 6 100nF 14 PD3 (INT1) PC7 (A15) 27 7 PD4 PC6 (A14) 6 4K7 8 U12 AT90S8535/4434 15 PD5 (OC1A) PC5 (A13) 26 2 R5 R1 C19 1N4148 D4 C18 9 40 PA0 (ADC0) PB0 (T0)
in „Eeprom-Progger unter XP will keine 24Cxx bearbeiten“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
z80_peripherie.sch.pdf
14 in 0 IC3P A H 5 in 0 pas 1 pas 0ED2 pas 0 D2 D6 D6 GATE1 D G D3 22 2 pas 1 D3 D7 io 01 D7 OUT1 13 out 0 PA5 8 G D7 12 in 0 Q10 F 4 in 0 pas 1 D4 21 1 pas 1 D4 D6 13 in 0 Q9 E 3 in 0 pas 1 LED3 D5 20 SV1 RD in 22 w 14 in 0 Q8 out 07 14 in 0 pas 1 pas 0 pas 0 20pas 1 in 23 RD 18 in 0 p D5 15 in 0 QH
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
7_tft_with_SSD1963_circuit.pdf
LDATA19 DE VS FSMC-D15103 D15 LDATA18 86 11 HS B7 12 LD17 5V FSMC-D14104 D14 LDATA17 35 LD17 LD16 13 B6 B5 14 LD15 R8 R9 GND FSMC-D13105 D13 LDATA16 59 LD16 LD14 15 B4 B3 16 LD13 5K1 10K FSMC-D12106 D12 LDATA15 60 LD15 LD12 17 B2 B1 18 AGND FSMC-D11107 D11 LDATA14 61 LD14 AGND 19 B0 G7 20 LD11 FSMC-D10111 62 LD13 LD10 21 22 LD9 FSMC-D9 112 D10 LDATA13 63 LD12 LD8 23 G6 G5 24 LD7 FSMC-D8 113 D9 LDATA12 67 LD11 LD6 25 G4 G3 26 FSMC-D7 114 D8 LDATA11 68 LD10 27 G2 G1 28 LD5 FSMC-D6 115 D7 LDATA10 69 LD9 LD4 29 G0
in „7" Tft am STM32“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TSynth_Schematic_V1_1.pdf
SDCS SCL 7_RX3_MISO0_SCL0 I12 C15 AB_MCLK 11 MCLK SDA 18AB_SDA Display_RST 10 8_TX3_MISO0_SDA0 15 E I13 18 C16 12 15AB_VOL AB_BCLK 11 17 Unused SPI MISO VOL 9_PWM_RX2_CS0 I14 C18 C17 SCK 14 Unused SPI Back_Btn 12 10_PWM_TX2_CS0 GND D I15 16 13AB_DOUT AB_MCLK 13 N 2 2 2 2 2 2 2 2 DOUT 11_MOSI0 G 3 1 3 1
in „Electrotechnic T-Synth DIY Synthesizer - Platinenanalyse“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AN2131_datasheet.PDF
......................................................13-2 13.1.6 Program Memory Read...............................................................................................13-2 13.1.7 Data Memory Read .....................................................................................................13-2 13.1.8 Data Memory Write......................................................................................................13-3 13.1.9 Fast Data Write............................................
in „Aufrufen von Funktion legt auch vorherigen Teil des Programms lahm“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AN2131_datasheet.PDF
......................................................13-2 13.1.6 Program Memory Read...............................................................................................13-2 13.1.7 Data Memory Read .....................................................................................................13-2 13.1.8 Data Memory Write......................................................................................................13-3 13.1.9 Fast Data Write............................................
in „Einteilung von data, pdata, xdata, code?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
frqmeter.asm
LRAM_0x13 DECF FSR,F CLRF INDF MOVLW 0x10 GOTO LADR_0x0201 LADR_0x01FA MOVF INDF,W MOVWF LRAM_0x13 INCF FSR,F MOVF INDF,W DECF FSR,F MOVWF INDF MOVLW 0x08 LADR_0x0201 SUBWF LRAM_0x12,F LADR_0x0202 BTFSC LRAM_0x13,7 GOTO LADR_0x0212 BCF STATUS,C RLF INDF,F RLF LRAM_0x13,F DECF LRAM_0x12,F GOTO LADR_0x0202 LADR_0x0209 BTFSC LRAM_0x13,7 GOTO LADR_0x0212 INCF FSR,F RLF INDF,F DECF FSR,F RLF INDF,F RLF LRAM_0x13,F DECF LRAM_0x12,F GOTO LADR_0x0209 LADR_0x0212 MOVF LRAM_
in „Zeitschleife in einem Vorhanden Pogramm ändern??“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
p6ke68-2635878.pdf
9.4 5 15.6 40.0 P6KE12 P6KE12C 12 ± 10% 10.8...13.2 9.7 5 17.3 36.0 P6KE12A P6KE12CA 12 ± 5% 11.4...12.6 10.2 5 16.7 37.0 P6KE13 P6KE13C 13 ± 10% 11.7...14.3 10.5 5 19.0 33.0 P6KE13A P6KE13CA 13 ± 5% 12.4...13.7 11.1 5 18.2 34.0 P6KE15 P6KE15C 15 ± 10% 13.5...16.5 12.1 5 22.0 28.0 P6KE15A P6KE15CA 15 ± 5% 14.3...15.8 12.8 5 21.2 29.0 P6KE16 P6KE16C 16 ± 10% 14.4...17.6 12.9 5 23.5 26.0 P6KE16A P6KE16CA 16 ± 5% 15.2...16.8 13.6 5 22.5 28.0 P6KE18 P6KE18C
in „Schaltung für Umpolung Gleichstrommotor“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Viper12a.pdf
IFB= 0.5 mA; D = 50 mA 4.5 mA D Restart duty-cycle (See Figure 11 on page 13) 16 % RST V undervoltage (See Figure 10, V DDoff DD 7 8 9 V shutdown threshold Figure 11 on page 13) V DDon VDD start-up (See Figure 10, 13 14.5 16 V threshold Figure 11 on page 13)) V VDD threshold
in „Reparatur Netzteil elektrischer Kamin“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
C906560.pdf
Min Typ Max [5C] Min Typ Max [5C] Min Typ Max −40 4130.00 4251.00 4612.34 16 152.51 154.60 156.96 72 13.69 14.10 14.52 −39 3851.00 3962.00 4290.13 17 145.20 147.20 149.28 73 13.19 13.60 14.00 −38 18 74 3593.00 3695.00 3992.58 138.27 140.10 142.02 12.71 13.11 13.51 −37 3353.00 3447.00 3717.65 19 131.72
in „Ersatz für ON-Semi STK5Q4U362J-E / STK5Q4U363J-E bzw. passt da NFAQ1060L33T / NFAQ1060L36T“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
PN300.pdf
“∧” and “∨ ” [13] the system address can be changed. With the help of the ENTER button [12] the current address is saved and the settings are finished. After switching off the settings are saved. 7.1.2 Interface RS-232C
-
PDF
LM2677_2000.pdf
Voltage (µH) Series Kemet T495 Series (V) No. C Code No. C Code No. C Code 10 3 C7 2 C10 3 C9 15 * * 3 C13 4 C12 3.3 22 * * 2 C13 3 C12 33 * * 2 C13 3 C12 10 3 C4 2 C6 3 C9 15 4 C9 3 C12 4 C10 5 22 * * 3 C13 4 C12 33 * * 2 C13 3 C12 47 * * 1 C13 2 C12 10 4 C9 2 C10 4 C10 15 4 C8 2 C10 4 C10 22 4 C9 3 C12
in „On-Chip Induktivität“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AS5410_Datasheet_EN_v2.pdf
E²PROM address Figure 32: Register 0030h Register Access Bit Function Note D15 (MSB) A15 D14 A14 D13 A13 D12 A12 D11 A11 D10 A10 To read/write E²PROM contents, D9 A9 the selected E²PROM address must be specified in 0030h: D8 A8 this register. Thecorrespondingdataisavailableinregister0031h. E²PROM R/
in „SPI funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CoolRoadRunnerIII-HB-2.pdf
.................................................................................................. 13 1.22 Speaker......................................................................................................................................... 13 1.23 SVGA Port................................
in „Embedded PC erkennt keine Festplatte“ · PC Hard- und Software ·
-
PDF
SSD1305.pdf
Row3 RAM11 COM4 Row4 RAM4 Row12 RAM12 Row4 RAM12 Row4 RAM4 Row12 RAM12 Row4 RAM12 COM5 Row5 RAM5 Row13 RAM13 Row5 RAM13 Row5 RAM5 Row13 RAM13 Row5 RAM13 COM6 Row6 RAM6 Row14 RAM14 Row6 RAM14 Row6 RAM6 Row14 RAM14 Row6 RAM14 COM7 Row7 RAM7 Row15 RAM15 Row7 RAM15 Row7 RAM7 Row15 RAM15 Row7 RAM15 COM8 Row8
in „i2c lese problem“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DSASW00146882.pdf
Row3 RAM11 COM4 Row4 RAM4 Row12 RAM12 Row4 RAM12 Row4 RAM4 Row12 RAM12 Row4 RAM12 COM5 Row5 RAM5 Row13 RAM13 Row5 RAM13 Row5 RAM5 Row13 RAM13 Row5 RAM13 COM6 Row6 RAM6 Row14 RAM14 Row6 RAM14 Row6 RAM6 Row14 RAM14 Row6 RAM14 COM7 Row7 RAM7 Row15 RAM15 Row7 RAM15 Row7 RAM7 Row15 RAM15 Row7 RAM15 COM8 Row8
in „OLED Display mit ssd1305 Chip“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
selftest.txt
Probes! T1 Ref=1297mVRHf=708 T1 Ref=1297mVRHf=708 T1 Ref=1299mVRHf=706 T1 Ref=1300mVRHf=706 T2 +RL- 12 13 23447 451 458 T2 +RL- 12 13 23447 451 458 T2 +RL- 12 13 23447 451 458 T2 +RL- 12 13 23447 451 458 T3 +RH- 12 13 23468 456 440 T3 +RH- 12 13 23468 456 441 T3 +RH- 12 13 23469 456 441 T3 +RH- 12 13 23469
-
PDF
Datasheet-Lead-carbon-battery-DE.pdf
Lade-erhaltungs-spannung Zyklus Betrieb Betrieb Konstant-spannungsmodus 14,1 - 14,4 V Ladeerhaltungs-modus 13,5 - 13,8 V 13,5 - 13,8 V Lagermodus 13,2 - 13,5 V 13,2 - 13,5 V Technische Daten Ah C5 Ah C10 Ah C20 LxBxH Gewicht CCA RES KAP Artikelnummer V bei Anschlüsse (10,8 V) (10,8 V) (10,8 V) mm kg 0°F bei
in „"neue" Blei-Carbon-Akkus für Solarspeicher WE-Haus?“ · Offtopic ·
-
PDF
Solar_Battery_Inverter_48V_TN-1500-SPEC.pdf
Number LOC-1234567890 Revision REV:1.10 Date Of Manu. 06/23/2007 I/O Type 212 Equalization Volt. 14.3 V 13.5 ~ 15.0V Voltage 230 V Floating Volt. 13.3 V 13.0 ~ 13.5V Frequency 50 Hz Alarm Volt. 11.3 V 11.0 ~ 11.5V 1 Stand-by saving mode On Off Shutdown Volt. 10.5 V 10.0 ~ 11.0V UPS mode On Energy saving mode
in „[V] True-Sinus-Wechselrichter Meanwell TN-1500“ · Markt ·
-
PDF
libble-de.pdf
Netzabsicherung 16 A träge 16 A träge 16 A träge 16 A träge Schweiz 10 A träge 10 A träge -- -- UK 13 A träge 13 A träge 13 A träge 13 A träge Garantie Bitte beachten Sie die beiliegende Garantieerklärung. 9 Assembly z Remove all parts from the packaging. z Mount each of the two sup- porting legs with
in „Einschalter beim Häcksler defekt?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
pcss.pdf
150178 8 – Sliding Bar PCSS3 150180 8 – Sliding Bar PCSS2-4 150181 BS – Sliding Block PCSS1-4 150185 13 – Standard Foam PCSS1 150186 13 – Standard Foam PCSS2 150187 13 – Standard Foam PCSS3 150188 13 – Standard Foam PCSS4 150189 13 – Antistatic Foam PCSS1 150190 13 – Antistatic Foam PCSS2 150191 15 13 – Antistatic Foam PCSS3 150192 13 – Antistatic Foam PCSS4 150193 9 – Centre Bar PCSS1 150166 9 – Centre Bar PCSS3 150168 9 – Centre Bar PCSS2-4 150169 15i 3 – Knob PCSS1-4 150197 4 + 5 – Side Bar + Centre Block PCCSS1-3 150195 4 + 5
-
Datei
main.c
LED_PIN11 1 SBIT(LED11, 0x90, LED_PIN11); #define LED_PIN12 2 SBIT(LED12, 0x90, LED_PIN12); #define LED_PIN13 3 SBIT(LED13, 0x90, LED_PIN13); #define LED_PIN14 4 SBIT(LED14, 0x90, LED_PIN14); #define LED_PIN15 5 SBIT(LED15, 0x90, LED_PIN15); #define LED_PIN16 6 SBIT(LED16, 0x90, LED_PIN16); #define LED_PIN17
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
HUTControl_ControlSheet.pdf
17 REL9/3.3C B 22 GND (OC0)PB4 14 REL10BUS 3 I3 O3 16 REL10/3.3D GND GND GND GND 53 GND (MISO)PB3 13 REL11BUS 4 I4 O4 15 REL11/3.5B V GND (MOSI)PB2 12 REL12BUS 5 I5 O5 14 REL12/3.5B + 18 11 6 13 PG3(TOSC2) (SCK)PB1 10 SCK_ISP REL13BUS 7 I6 O6 12 REL13/3.5C 100n 100n 19 (SS)PB0 REL14BUS 8 I7 O7 11 REL14
in „ATMEGA128-Platine an STK500 (ISP6)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PT3611_VFD_Module_SPI.pdf
1 2 3 4 5 6 Front Panel Main PCBAssembly VFDFilament and Bias Supply C14 VFD1 R14 VFD_FIP13C8 R1 1R0 47u 10K R17 U1 100R 3 8 ZD1 +IN Vo2 R16 D 4 5 m 0 1 2 3 m D -IN Vo1 100K f c - 1 2 3 4 5 6 7 8 9 1 1 1 1 o P f C2 R18 6V2 V M - u < D F G E D D D D D D D D D D D D C D D C B A V R2 R13 R3 2
in „Alte VFD-Anzeige übrig, möchte gerne eine Uhr damit bauen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
DCF77-Umsetzer-1.pdf
7 C + 3 5 12 5 12 14 2 C60 C C 5 5 C C S CPU TCU CPU TCU SIG PC1 4 1 D C T2 TC 3 3 3 6 2 4 CPD TCD 13 4 CPD TCD 13 4 3 COM PC2 13 4 A6G1 D8 5 C8 + +5V12 2 R R3 4 7 11 11 C 15 3 R C2 G S -5V1 C C C C34 R 14 PL 14 PL 6 PC3 1 R45 1 2 R37 9 MR MR C1 PCP 6 7 8 R49 A3G1 8 + +5V1C R 7 C2 R R R 2 0 L C7 6 7
in „Schomandl Frequenzvergleichsempfänger EA 155K“ · HF, Funk und Felder ·
-
PDF
iot.pdf
5 11 35 GNDB 1 DCD A G G C46 MCP3910 GND 1 u 3 k I 12 IO26 TXD0 36 V C4 C6 5 DCD 28 DTR D A A C 1 13 IO27 IO22 37 .VDD3V3 D- DTR 27 DSR G 14 IO14 IO23 38 7 DSR 26 R61 U0RX _ A_GNDA 15 IO12 GND_3 39 2 1 1 10uF MINI_USB_TYPE_RCM TXD 25 A 16 GND_2 GND_4 40 S S 1 54819-0572 EXP GND RXD 24 470 IO13 GND_5
in „Schaltung des IOT-Steckdoses mit Eagle entwickeln“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
state machine states #define ST_eintr1 10 #define ST_eintr2 11 #define ST_eintr3 12 #define ST_eintr4 13 #define ST_eintr5 14 #define ST_eintr6 15 #define ST_eintr7 16 #define ST_eintr8 17 #define ST_eintr9 18 #define ST_eintr10 19 #define ST_eintr11 20 #define ST_eintr12 21 #define ST_eintr13 22 //Button
in „Anfängerproblem C“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
state machine states #define ST_eintr1 10 #define ST_eintr2 11 #define ST_eintr3 12 #define ST_eintr4 13 #define ST_eintr5 14 #define ST_eintr6 15 #define ST_eintr7 16 #define ST_eintr8 17 #define ST_eintr9 18 #define ST_eintr10 19 #define ST_eintr11 20 #define ST_eintr12 21 #define ST_eintr13 22 //Button
in „Anfängerproblem C“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
report.txt
5 FB3_5 12 I/O (unused) 0 0 0 5 FB3_6 (b) (unused) 0 0 0 5 FB3_7 (b) addressOut<11> 0 0 0 5 FB3_8 13 I/O O (unused) 0 0 0 5 FB3_9 14 I/O (unused) 0 0 0 5 FB3_10 (b) addressOut<5> 0 0 0 5 FB3_11 18 I/O O (unused) 0 0 0 5 FB3_12 (b) (unused) 0 0 0 5 FB3_13 (b) (unused) 0 0 0 5 FB3_14 19 I/O addressOut
-
PDF
arm.pdf
/ MOSI P3.11 / D11 1 D12 PO\LLED_SS 120ID20P0.19 / DSR1 / MCICLK / SDA1 P3.12 / D12PID701 D13 PIC2801 PIC2802 PID20P0.20 / DTR1 / MCICMD / SCL1 P3.13 / D13PID207 POFPGA_CONF_DONE 11PID20P0.21 / RI1 / MCIPWR / RD1 P3.14 / D14PID2021 D14 POFPGA_STATUSS 11PID20P0.22 / RTS1 / MCIDAT0 / TD1 P3.15
in „ARM Board Layout“ · Platinen ·
-
Datei
bootloader_v2.asm
L04DA ;$1398 $7A $04 $DA std L049D ;$139B $7C $04 $9D clr L0499 ;$139E $79 $04 $99 clr L049A ;$13A1 $79 $04 $9A jsr L18DE ;$13A4 $16 $18 $DE clr L04DE ;$13A7 $79 $04 $DE L13AA puly ;$13AA $31 rts ;$13AB $3D pshb ;$13AC $37 clr 0,SP ;$13AD $69 $80 ldab L04DB ;$13AF $F6 $04 $DB cmpb #$04 ;$13B2 $C1
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
at90isp_ver23.asm
byte | 'C' | dd | | 13d | 3 | ;* | Issue Page Write | 'm' | | | 13d | | ;* | Read program memory | 'R' | |dd(dd)| | 4 | ;* | Write data memory | 'D' | dd | | 13d | | ;* | Read data memory | 'd' | | dd | | | ;* | Chip erase | 'e' | | | 13d | | ;* | Write lock bits | 'l' | dd | | 13d | | ;* | Write fuse bits | 'f' | dd | | 13d | 11 | ;* | Read fuse and lock bits | 'F' | | dd | | 11 | ;* | Leave programming mode | 'L' | | | 13d | 5 | ;*
in „avr910 Pins Kurzschluss“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
0900766b80eaef6e.pdf
53.5 145 1‘315 9200 V23054D1004F104 8-1393812-7 6 2.9 9 1‘091 33 V23054D1011F104 8-1393812-8 8.4 4.4 13 1‘008 70 V23054D1012F104 8-1393812-9 12 5.8 18 1‘108 130 V23054D1015F104 9-1393812-0 16 8.7 25.5 948 270 V23054D1017F104 9-1393812-1 20 10.5 31 1‘026 390 V23054D1019F104 9-1393812-2 24 13 39 914 630
in „Suche Daten zu Kammrelais von Siemens“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
amstrad_srx100_srx200_sat_receiver_sch.pdf
4W 17 18 16 1 6.0 6.1 6.1 0 6.0 6.0 5.9 2.6 2.6 2.w 1.1 2.6 E1.1 12.0 12.0 16 R314 470 8 9 10 11 12 13 14 9 10 11 12 e 13 14 L 15 16 1 15 3.6 5.9 GND VREF r w E VCC 14 R429 R312 C310 15 2 L306 − − i s K 0 0 0 0 6.1 0 6.1 12.0 12.0BUFFER 13 330 560 + + G BUFF. - e T 12 4 0.01 3.6 0 12µH 8 LPF ICe0k R 9 10 11 12 13 14 15 16 0.7 Q718 3 11 J 3 J 14 3 IC303 R403 NE572N t r O C B A X0 X1 X Y VDD 6.0 10 2 M C M C324 LPF BA10324 LPF 47k o n N (L) (R) 9 3 . . 6.0 7.1 1 50V i k I K C730 4 8 F 1 1C309 13 4 + + G BUFF. i
in „10,52 MHz Keramik Piezo Filter Resonator ZF IF“ · Analoge Elektronik und Schaltungstechnik ·