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17060711197339.pdf
确定 S41xx 的外围结构 ▯ 3. 根据输出电压和电流计算外围原件 的参数。 6.1隔离反激恒流结构 C1:决定状态保持时间,一般 1uF 的电容可以保持 5S左右 R1=1M (Vomax−13)/5≤ R2 ≤ (Vomin−13)/1.5 其中: Vomax 是输出的最大电压 Vomin 是输出的最小电压 6.2非隔离降压结构 C:决定状态保持时间,一般 1uF 的电容可以保持 5左右 R1=1M (Vomax−13)/5≤ R2 ≤ (Vomin−13)/1.5 Vomax 其中: 是输出的最大电压 Vomin是输出的最小电压 S41xx-DS-1p1 Page 5 of 10 S41xx 系列开关调色温控制芯片 6.3非隔离降压浮地结构 C1:决定状态保持时间,一般 1uF的电容 可以保持 5S左右 R1=1M R3 =10K (Vomax−13)/5≤ R2 ≤ (Vomin−13)/1.5 其中: Vomax是输出的最大电压 Vomin是输出的最小电压 在该应用中 必须加电阻 R3(如图) C1:决定状态保持时间,一般 1uF的电容 6.4Buck-boost 结构 可以保持 5S左右 R1=1M (Vomax−13)/5≤ R2 ≤ (Vomin−13)/1.5 其中: Vomax 是输出的最大电压 Vomin 是输出的最小电压 S41xx-DS
in „LED Lampe, automatische Farbtemperatur Umschaltung abschalten“ · Mikrocontroller und Digitale Elektronik ·
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Robomower_V0.8.pdf
50 03 Antwort: Byte0 Byte1 Byte2 Byte3 Byte4 Byte5 Byte6 Byte7 Byte8 Byte9 Byte10 Byte11 Byte12 Byte13 02 07 09 00 81 13 00 0A 35 3E 01 01 58 03 Byte5 ist die Stunde 0x13 = 19 Byte7 ist die Minute. 0x0A = 10 StopZeit ist 19:10. Byte 8 gibt die Arbeitstage an: So Sa Fr Do Mi Die Mo Bit7 Bit6 Bit5 Bit4
in „Automower G3 mit USB Diagnoseport fernsteuern?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CM108_DataSheet_v1.6.pdf
AVSS2 CS LOR MUTER LOBS CM108 PWRSEL LOL XI AVDD1 XO VSEL MODE MICIN GPIO2 CM108 VREF LEDO 25 VBIAS 13 3 1 4 L P C L R L T 1 I S I ID C T R C D S S S G D G S D M D D L A T A A A A Pin Assignments (Top View) Date: Feb/13/2007 Version: 1.6 - 6 - CM108 Integration Dual DAC, Earphone Driver, ADC, Microphone
in „Beschleunigungsaufnehmer + USB Soundkarte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Tyco_MQS_ENG_SS_108-18030_B.pdf
Testanforderungen und -abläufe 6 procedures 4.4. Test sequence 11 4.4 Prüfreihenfolge 11 5. ATTACHMENTS 13 5. ANLAGEN 13 5.1. Derating curves 13 5.1 Derating Kurven 13 5.2. Test defaults 26 5.2 Testvorgaben 26 1 of 24 © 2017 TE Connectivity family of companies | Indicates Changed *Trademark. TE Connectivity
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Datei
Eeprom_2.txt
13E4 44 LD B,H 2633 13E5 00 NOP 2634 13E6 F8 RET M 2635 13E7 44 LD B,H 2636 13E8 00 NOP 2637 13E9 80 ADD A,B 2638 13EA 45 LD B,L 2639 13EB 00 NOP 2640 13EC A4 AND H 2641 13ED 45 LD B,L 2642 13EE 00 NOP 2643 13EF C8 RET Z 2644 13F0 45 LD B,L 2645 13F1 33 INC SP 2646 13F2 CB 45 BIT 0,L 2647 13F4 00 NOP 2648 13F5 D0 RET NC 2649 13F6 45 LD B,L 2650 13F7 00 NOP 2651 13F8 A0 AND B 2652 13F9 46 LD B,(HL) 2653 13FA
in „Hilfe bei Z80 Opcodes“ · Mikrocontroller und Digitale Elektronik ·
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PDF
layer-setup_designrules.pdf
Prepreg : 1 Blind/Micro ----------||-||- Prepreg || || 2 Blind/Micro ----||-||----||- Prepreg || || || 13 Through/Buried -||-||-------||- Core || || || 14 Through/Buried -||-||-------||- Prepreg || || 16 Blind/Micro --- ------||-||- ([2:1+[13:(2+(13*14))]+16:14]) _________________________________________
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Relaisansteuerung.sch__1_.pdf
16 + VCC 9 10 GND +5V 12 RCK QF 5 C6 6 2 15 QG 7 1A 4A 100nF QH 3 14 GND 1Y 4Y 13 G QH* 9 GND 4 GND1 GND3 13 74HC595N 5 GND2 GND4 12 GND 6 11 GND 2Y 3Y 7 2A 3A 10 8 VCC2 3-4EN 9 +12V L293D 5 IC7 + 1 16 1-2EN VCC1 C7 2 15 1A 4A 100nF 3 1Y 4Y 14 GND 4 GND1 GND3 13 5 12 GND2 GND4 GND
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sipeed-tang-primer-pins.pdf
Y UP 9 Y ADC 4 M12 Ever Analog F16 R15 EA3036 24 MHz C10 GND GND P15 - D0 GD32F150Gx - UART2 TX L13 SPI1 NSS JTAG TMS - GD32F150Gx P16 - D1 JTAG TCK + JTAG TDI Vb0 GD32F150Gx Tw H13 UART1 RX - GD32F150Gx M14 - D4 GD32F150Gx - UART2 RX M13 3h SPI1 SCK JTAG TCK - GD32F150Gx L14 - D3 +3.3V J13 UART1 TX
in „Einen Softcore (AVR) an andere FPGA anpassen?“ · FPGA, VHDL & Co. ·
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Datei
main.asm
: sbr jobs,1<<dht_mess ret esp_ein: .db "ESP einschalten",13,0,0 boottxt: .db "BOOT",0,0 wifitxt: .db "Wifi...OK",0 bootoktxt: .db "BOOT OK",13,0,0 wifioktxt: .db "WIFI OK",13,0,0 wififailtxt: .db "WIFI FAIL",13,0,0 esptimotxt: .db "ESP Timeout",13,0,0 ;Wird am
in „ATMega328 + Si7021 + I2C (Assembler)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Schrittmotor.asm
Taktgeber 1...5",0 Textv1: .db "Vorteiler Taktgeber /1 ",10,13,10,13,0 Textv2: .db "Vorteiler Taktgeber /8 ",10,13,10,13,0 Textv3: .db "Vorteiler Taktgeber /64",10,13,10,13,0 Textv4: .db "Vorteiler Taktgeber /256 ",10,13,10,13,0 Textv5: .db "Vorteiler Taktgeber
in „Spielerei mit einem 2- und 5-Phasen-Schrittmotor“ · Projekte & Code ·
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Bild
Pinbelegungsliste von FPGA-Chips
P5 P13 VCCIO4 VCCINT K13 L6 M13 N7 T16 VCCIO4 VCCINT K14 M13 B2 GND GND P12 K8 GND GND C5 GND R2 K6 GND N10 L9 GND P5 L10 GND P12 K12 GND R15 G11 GND B2 R15 G12 GND GND E13 H15 E14 VCCIO6 VCCINT G14 J12 B15 H16 E13 GND H15 A16 VCCIO7 C10 C13 VCCIO7 A1 VCCIO8 C4 VCCIO8 C7 VCCIO8 EP4CE22F17C8 EP4CE22 EP4CE6F17C8 EP4CE6 EP4CE22F17C8 EP4CE22
in „Cyclone IV BGA484 Pin Migration“ · FPGA, VHDL & Co. · · Screenshots
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Datei
test.bas
Pullups einschalten Portd.2 = 1 Portd.3 = 1 Portd.4 = 1 Portd.5 = 1 Dim Sp_pll As Word Dim Pllstat_13 As Byte Locked_13 Alias Pllstat_13.6 Dim Pllstat_23 As Byte Locked_23 Alias Pllstat_23.6 Const Addr1 = 192 ' Const Addr2 = 193 Do Tastenschleife: Gosub Read_sp5055_13 Gosub Write_sp5055_13 Gosub Read_sp5055_23 Gosub Write_sp5055_23 Lcd Pllstat_13.6 Locate 1 , 15 If Locked_13 = 1 Then Lcd "L" If Locked_13 = 0 Then Lcd "X" Locate 2 , 15 If Locked_23 = 1 Then Lcd "L" If Locked_23 = 0 Then Lcd "X" Goto Tastenschleife Loop Write_sp5055_13: 'Config
in „2 i2c ports in bascom mit mega8 ode mega 88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.c
0b11000000; TIMER0_100usTick_init(); UART_init(); //TIMER1_init(); sei(); Zufall_init(42); UART_send(13); UART_send(13); UART_send(13); UART_send(13); UART_Stringsend ("Neue Reihe"); UART_send(13); UART_send(13); UART_send(13); while (i != 42) { j++; i = Zufall(); UART_Stringsend("Zufallszahl1-"); u16toa
in „Frage zur Periodenlänge von LFSR (Linear Feedback Shift Register)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SH367107X_BMS_IC.pdf
VC10 - VC10A CELL6 CELL8 CELL8 CELL10 CELL10 VC11 - VC12 CELL7 CELL9 CELL9 CELL11 CELL11 VC12 - VC13 CELL8 CELL10 CELL10 CELL12 CELL12 VC13 - VC14 CELL9 CELL11 CELL11 CELL13 CELL13 VC14 - VC15 CELL10 CELL12 CELL12 CELL14 CELL14 VC15 - GND CELL11 SHORT CELL13 SHORT CELL15 表 11 11 - 串配置 17 SH367105/106
in „WER KENNT DIESES 10S BMS von 36V Lion Akku vom Hersteller GW.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
NMEA.txt
True 8) Bearing, Magnetic 9) M = Magnetic 10) Nautical Miles 11) N = Nautical Miles 12) Waypoint ID 13) Checksum BWR - Bearing and Distance to Waypoint - Rhumb Line Latitude, N/S, Longitude, E/W, UTC, Status 11 1 2 3 4 5 6 7 8 9 10 | 12 13 | | | | | | | | | | | | | $--BWR,hhmmss.ss,llll.ll,a,yyyyy.yy,
in „Zeichenketten auswerten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
crc32_opencores.vhd
51) xor data_in(56) xor data_in(57); lfsr_c(17) <= lfsr_q(1) xor lfsr_q(4) xor lfsr_q(6) xor lfsr_q(13) xor lfsr_q(15) xor lfsr_q(16) xor lfsr_q(17) xor lfsr_q(20) xor lfsr_q(25) xor lfsr_q(26) xor data_in(1) xor data_in(5) xor data_in(6) xor data_in(9) xor data_in(13) xor data_in(14) xor data_in(18)
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schematic4.pdf
Q 12 12 D line_in_l_reg[12] R hphone_r_reg[10] C C FDRE CE 12 CE 12 Q Q 10 hphone_l_freeze_100_reg[13] D 10 D R R C CE 13 FDRE FDRE 13 Q D line_in_l_reg[13] hphone_r_reg[11] R FDRE C C CE 13 CE 11 13 Q 11 Q D D hphone_l_freeze_100_reg[14] R R C FDRE FDRE CE Q 14 14 D line_in_l_reg[14] hphone_r_reg[12
in „Genesys 2 (Xilinx Kintex 7): Audio-Codec Implementierung und Filteranbindung“ · FPGA, VHDL & Co. ·
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Datei
bootloader_v2.asm
;$13AB $7D $04 $B9 L13AE ldy L04A8 ;$13AE $FD $04 $A8 iny ;$13B1 $02 sty L04A8 ;$13B2 $7D $04 $A8 inc 2,SP ;$13B5 $62 $82 ldab 2,SP ;$13B7 $E6 $82 L13B9 cmpb #$08 ;$13B9 $C1 $08 bhs L13C5 ;$13BB $24 $08 ldd
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan und Fehlermeldungen in CAD-Software
13.07.2023 6 [Warning] Sheet1.SchDoc Compiler Unconnected Sheet Entry U LEDs2-LED (Passive) at 5200mil,890mil 09:02:38 13.07.2023 7 [Warning] Sheet1.SchDoc Compiler Unconnected Sheet Entry U LEDs1-LED (
in „Altium - Repeatative Design - Schaltplanseiten vervielfachen“ · Platinen · · Screenshots
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Datei
main.c
10 = 1ms) uint8_t servo_pulse[105] = { 10, 10, 10, 10, 10, 11, 11, 11, 11, 11, 12, 12, 12, 12, 12, 13, 13, 13, 13, 13, 14, 14, 14, 14, 14, 15, 15, 15, 15, 15, 16, 16, 16, 16, 16, 17, 17, 17, 17, 17, 18, 18, 18, 18, 18, 19, 19, 19, 19, 19, 20, 20, 20, 20, 20, 19, 19, 19, 19, 19, 18, 18, 18, 18, 18, 17, 17, 17, 17, 17, 16, 16, 16, 16, 16, 15, 15, 15, 15, 15, 14, 14, 14, 14, 14, 13, 13, 13, 13, 13, 12, 12, 12, 12, 12, 11, 11, 11, 11, 11, 10, 10, 10, 10, 10 }; uint8_t arraysize = sizeof(servo_pulse) / sizeof(uint8_t); ISR(TIMER1_COMPA_vect){ static uint8_t counter = 0, pulselength
in „Soft-PWM Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
10 = 1ms) uint8_t servo_pulse[105] = { 10, 10, 10, 10, 10, 11, 11, 11, 11, 11, 12, 12, 12, 12, 12, 13, 13, 13, 13, 13, 14, 14, 14, 14, 14, 15, 15, 15, 15, 15, 16, 16, 16, 16, 16, 17, 17, 17, 17, 17, 18, 18, 18, 18, 18, 19, 19, 19, 19, 19, 20, 20, 20, 20, 20, 19, 19, 19, 19, 19, 18, 18, 18, 18, 18, 17, 17, 17, 17, 17, 16, 16, 16, 16, 16, 15, 15, 15, 15, 15, 14, 14, 14, 14, 14, 13, 13, 13, 13, 13, 12, 12, 12, 12, 12, 11, 11, 11, 11, 11, 10, 10, 10, 10, 10 }; ISR(TIMER1_COMPA_vect){ static uint8_t counter = 0, pulselength = 0, i = 0; if(counter < 200){ //Positionsaktualisierung
in „Soft-PWM Problem“ · Mikrocontroller und Digitale Elektronik ·
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Pinbelegung einer EP4CE15 FPGA-Komponente
, U102L, VCCINT, GND, D4, J11, L10, L20, K4, VCCIO, J12, M11, GND, U10, U12, U4, VCCIO, M14, P11, M13, GND, U12, U13, U14, VCCIO, L14, P13, P11, U13, U14, VCCIO, M15, J13, W1, GND, W13, VCCIO, J16, W15, VCCIO, W14, J10, W12, VCCIO, K9, W11, VCCIO, K12, R19, K13, AB3, AB2, W5, VCCIO, K10, N13, U13, N12
in „Cyclone IV BGA484 Pin Migration“ · FPGA, VHDL & Co. · · Screenshots
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Datei
HWP_EX16_MRF24WB_C30.h
unsigned char*)(&LATD)) = (d)) // // Momentary push buttons //#define BUTTON0_TRIS (TRISDbits.TRISD13) // Ref S4 //#define BUTTON0_IO (PORTDbits.RD13) //#define BUTTON1_TRIS (TRISAbits.TRISA7) // Ref S5; Note: This is multiplexed with LED7 //#define BUTTON1_IO (PORTAbits.RA7) //#define BUTTON2_TRIS (
in „Microchip Wifi Demo APP portieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CA3280.pdf
VIEW ID, A1 1 A1 16 +IN, A1 + EMITTER, A1 2 - 15 -IN, A1 1/2 CA3280 14 11 ABC , A1 3 14 V+, A1 V- 4 13 OUT, A1 NC 5 12 OUT, A2 - 15 ABC , A2 6 11 V+, A2 10 7 EMITTER, A2 7 A2 - 10 -IN, A2 2 I , A2 8 + 9 +IN, A2 + 16 D 9 13 2K 2K 12 1 Ordering Information 8 4 TEMP. PKG. 3 6 PART NUMBER RANGE ( oC) PACKAGE
in „Suche OTA für +/-2.5V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
User_s_Manual_of_ET-STM32F103.pdf
100n 1 16 C1+ VCC C10 C11 100n 100n 3 C1- V+ 2 4 C2+ V- 6 C12 C13 100n 5 15 100n +3V3 J11 C2- GND PA10 R14 12 13 RXD-1 1 100 PA9 11 R1O R1I 14 TXD-1 2 9 T1I T1O 8 3 10 T2I T2OI 7 4 PA3 USART1(Download) PA3-P ICL3232 +3V3 J12 J13 3 2 1 RXD-2 1 PA2 TXD-2 2 PA2-P 3 4
in „SPI mit SD Karte antwortet nicht korrekt auf CMD0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
User_s_Manual_of_ET-STM32F103.pdf
100n 1 16 C1+ VCC C10 C11 100n 100n 3 C1- V+ 2 4 C2+ V- 6 C12 C13 100n 5 15 100n +3V3 J11 C2- GND PA10 R14 12 13 RXD-1 1 100 PA9 11 R1O R1I 14 TXD-1 2 9 T1I T1O 8 3 10 T2I T2OI 7 4 PA3 USART1(Download) PA3-P ICL3232 +3V3 J12 J13 3 2 1 RXD-2 1 PA2 TXD-2 2 PA2-P 3 4
in „Suche Schalter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Midi-Controller-Entwurf-01.pdf
74HC165N 5 6 X302-4 74HC14N XA5 10 74HC14N XB7 11 SER 9 3 12 A QH 3 0 IC302A XA8 B MEGA8-P R 1 XA9 13 C X302-5 13 12 IC305A XA10 14 D QH 7 MUX_OUT 23 PC0(ADC0) PC6(/RESET) 1 XB8 X308-2 13 12 XA11 3 E 24 PC1(ADC1) C312 74HC14N XA6 XA12 4 F 25 PC2(ADC2) GND 22 100n IC302B 74HC14N 5 B_BANK 26 21 Execute
in „Midicontroller zur Steuerung einer DMX-Software“ · Projekte & Code ·
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PDF
EP4CE22_pin-out.pdf
DQS3R/CQ3R#,CDPCLK4 DQS3R/CQ3R#,CDPCLK4 B5 VREFB5N0 IO DIFFIO_R15p R16 DQ1R B5 VREFB5N0 IO DIFFIO_R13n N16 DQ1R B5 VREFB5N0 IO DIFFIO_R13p N15 DQ1R B5 VREFB5N0 IO VREFB5N0 L14 80 B5 VREFB5N0 IO DIFFIO_R12p L13 DQ1R B5 VREFB5N0 IO DIFFIO_R11n L16 DQ1R PT-EP4CE22-1.2 Copyright © 2011 Altera Corp. Pin List
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_Dokumentation_V1.7_Stand_27.02.2013.pdf
D0 * '* PA1 - Bitmuster D1 * '* PA2 - Bitmuster D2 * '* PA3 - Bitmuster D3 * '* PA4 - Bitmuster D4 (13. Latch EA0) * '* PA5 - Bitmuster D5 (13. Latch EA1) * '* PA6 - Bitmuster D6 (13. Latch EA2) * '* PA7 - Bitmuster D7 (13. Latch EA3) * '* * '* PB0 - frei * '* PB1 - frei * '* PB2 - frei * '* PB3 - frei
in „Tutorial 10x10x10 LED-Cube“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_BT81X.pdf
16 20 10 12 14 15 19 26 32 42 56 85 U 8 8 10 12 14 18 24 9 11 13 17 21 28 37 48 62 86 V 8 7 9 11 13 17 22 9 11 14 15 20 27 34 45 58 87 W 8 9 13 15 18 22 31 12 15 18 21 27 36 46 61 79 88 X 8 7 9 11 13 17 22 9 11 13 15 20 27 34 45 58 89 Y 8 7 9 11 13 16 22 9 10 14 15
in „STM32F407 DISCOVERY mit EVE3 50GTPC von MatrixOrbital“ · Mikrocontroller und Digitale Elektronik ·
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Datei
EB1_XC3S10004FG456.ucf
> LOC = B18; ##NET DIG2_SEG<0> LOC = B17; ## ##NET DIG3_SEG<7> LOC = D15; ##NET DIG3_SEG<6> LOC = E13; ##NET DIG3_SEG<5> LOC = B13; ##NET DIG3_SEG<4> LOC = D13; ##NET DIG3_SEG<3> LOC = D14; ##NET DIG3_SEG<2> LOC = A14; ##NET DIG3_SEG<1> LOC = E16; ##NET DIG3_SEG<0> LOC = E15; ## ##NET DIG4_SEG<7> LOC
in „.ucf file erstellen für Altium Eval-Board“ · FPGA, VHDL & Co. ·
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PDF
HausAutoTest1808.pdf
LED 1 N 11 SRCLK QC 2 4 15 7 X 2 1 2 G 5V 10 SRCLR QD 3 4B 4C 1 5 4 5 5B 5C 14 6 _ D3 J 3 Ub+ QE 6 13 5 N R 4 12 RCLK QF 5 6B 6C O LED 5 13 6 7 7B N 7C 12 4 C 2 1 R G QG 8 8B G 8C 11 3 D4 R27 B 6 CAN_GND QH 7 2 LED B J D 7 10k U18 9 2 1 HI CAN_H R18 9 1 S 8 CAN_L QH D5 P8 9 74HC595 GND P1 C40 1 2 C37
in „Layout prüfen“ · Platinen ·
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Datei
irmp-fdc-detail.txt
pulse] start-bit: pulse = 21, pause = 9 protocol = FDC, start bit timings: pulse: 16 - 26, pause: 7 - 13 pulse_1: 1 - 5 pause_1: 5 - 10 pulse_0: 1 - 5 pause_0: 1 - 4 command_offset: 25 command_len: 12 complete_len: 40 stop_bit: 1 42 [bit 0: pulse = 3, pause = 7] 1 53 [bit 1: pulse = 3, pause = 8] 1 63 [
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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PDF
ST-L6561-Datasheet.pdf
0.976 8.3 0.976 4.3 220 83.1 400.1 14 80.7 97.1 0.940 10.7 0.941 5.6 265 82.9 400.1 14 80.7 97.3 0.890 13.7 0.893 8.1 7/13 L6561 Figure 11. OVP Current Threshold vs. Figure 13. Supply Current vs. Supply Temperature Voltage D94IN047A CC D97IN548A OVP (mA) (µA) 10 41 5 1 40 0.5 0.1 0.05 39 C L 1nF 0.01 f =
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PDF
ET0500G0DH6.pdf
ELECTRICITY OF THE ELECTRICALLY-POWERED DRIVER OR THE VACUUM CLEANER MAY DESTROY THE MODULE . 13.7.5 DON’T GIVE EXTERNAL SHOCK. 13.7.6 DON’T APPLY EXCESSIVE FORCE ON THE SURFACE. 13.7.7 LIQUID IN LCD IS HAZARDOUS SUBSTANCE. MUST NOT LICK AND SWALLOW. WHEN THE LIQUID IS ATTACH TO YOUR, SKIN, CLOTH ETC. WASH IT OUT THOROUGHLY AND IMMEDIATELY. 13.7.8 DON’T OPERATE IT ABOVE THE ABSOLUTE MAXIMUM RATING. 13.7.9 STORAGE IN A CLEAN ENVIRONMENT, FREE FROM DUST, ACTIVE GAS, AND SOLVENT. 13.7.10STORE WITHOUT ANY PHYSICAL LOAD. 13.7.11REWIRING: NO MORE
in „EMV-Störung beim Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
an266.pdf
determines the direction of by using I1and I 0nputs. Figure 1 : TEA3717 Block Diagram. AN266/0189 1/13 APPLICATION NOTE Figure 2 : Typical Operating Sequences. Transistors of the bridge are represented by Direction of current switches : flow – switch open : transistor cut-off 2/13 APPLICATION NOTE CONTROL
in „Schrittmotor mit L6219 und tiny2313 - Microstepping funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
156346062-STi7105.pdf
3.3 Programmable input/output bank12 K4 PIO12[4] J3 PIO12[5] J2 PIO12[6] ) n K6 PIO12[7] t g H3 PIO13[0] b J4 PIO13[1] r f H1 PIO13[2] e H2 PIO13[3] a I/O 3.3 Programmable input/output bank13 t l P5 PIO13[4] l R2 PIO135] e i ( t P3 PIO13[6] y n o R4 PIO13[7] t e P4 PIO14[0] n d o f N5 PIO14[1] - N4 PIO14
in „Motorola Vip19x0 (Big brother of Vip1710)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
prog.s
0x31 .uleb128 0x13 .byte 0x0 .byte 0x0 .uleb128 0xc .uleb128 0xb .byte 0x1 .byte 0x0 .byte 0x0 .uleb128 0xd .uleb128 0x34 .byte 0x0 .uleb128 0x31 .uleb128 0x13 .byte 0x0 .byte 0x0 .uleb128 0xe .uleb128 0x2e .byte 0x1 .
in „Problem beim Auslagern von Funktionen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HY-SmartSTM32_SCH.pdf
FSMC_NE1/FSMC_NCE2/USART2_CK 88 LCD_CS LCD_CS CAM_XCLK XCLK 67 PA8/USART1_CK/TIM1_CH1/MCO PD8/FSMC_D13/USART3_TX 55 FSMC_D13 FSMC_D13 U1_TX 68 56 FSMC_D14 USART1_TX U1_RX 69 PA9/USART1_TX/TIM1_CH2 PD9/FSMC_D14/USART3_RX 57 FSMC_D15 FSMC_D14 USART1_RX USB_DM 70 PA10/USART1_RX/TIM1_CH3 PD10/FSMC_D15/USART3
in „STM32 can Message“ · Mikrocontroller und Digitale Elektronik ·
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Datei
squere_wav.txt
squere_wave00: mov w0,w13 ;save w0 mov #62500,w2 ;fs lsr w10,#3,w10 sl w11,#13,w11 ior w10,w11,w4 mov fosc0,w3 lsr w3,#3,w3 ;fosc nach dpw-synthes fs/16 add w4,w3,w3 ;----------------- btss knob7_2,#7 ;if fmmod with lfo0,add
in „Rechteck mit DPW-Algorithmus“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
JBT6K71-AS_A__v1.42_2006-02-07_E.PDF
013FE”h “013FF”h • • • • • • • • • • • • • • • • • • • • • • • • • • • • • • • • • • • • Line 317 “13C00”h “13C01”h “13C02”h “13C03”h “13C04”h ······ “13CFE”h “13CFF”h Line 318 “13D00”h “13D01”h “13D02”h “13D03”h “13D04”h ······ “13DFE”h “13DFF”h Line 319 “13E00”h “13E01”h “13E02”h “13E03”h “13E04”h
in „LCD aus Benq EL71 Handy“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ES13BB0whiteLED1.pdf
) (1.0) mA 10 10.1 POWER SUPPLY FOR LCM VDD (3.3V) → VDD(+3.0V) NOV.23,2004 0-3 NUMBERING SYSTEM EW13BB0FLW ES13BB0FLW → 2 3.1 ELECTRICAL ABSOLUTE MAXIMUM RATINGS.(AT Ta=25 C) ° LED POWER DISSIPATION : (0.4)MAX. 0.45MAX. → LED FORWARD CURRENT : (80)MAX. 90MAX. → LED REVERSE VOLTAGE : 8.0MAX. 10.0MAX.
in „Grafik LCD mit ST7565P Controller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ES13BB0whiteLED1.pdf
) (1.0) mA 10 10.1 POWER SUPPLY FOR LCM VDD (3.3V) → VDD(+3.0V) NOV.23,2004 0-3 NUMBERING SYSTEM EW13BB0FLW ES13BB0FLW → 2 3.1 ELECTRICAL ABSOLUTE MAXIMUM RATINGS.(AT Ta=25 C) ° LED POWER DISSIPATION : (0.4)MAX. 0.45MAX. → LED FORWARD CURRENT : (80)MAX. 90MAX. → LED REVERSE VOLTAGE : 8.0MAX. 10.0MAX.
in „Grafik LCD mit ST7565P Controller“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
}, // /*13 14*/ {45,40,36,32,28,25,22,19,16,14,12,10,8,6,5,3,2,1,1,2,3,4,6,7,9,11,13,15,17,20,23,26,30,34,38,42,47,52,58,64,70,76,83,91,98,106,114,123,131,140,149,158,166,175,184,192,201,209,216,223,229,235,240,245,248,251,253,254,254,254,252,250,247,243,238,232,226,220,212,205,197,188,180,171,162,153,144,135,127,118,110,102,94,87,80,73,67,61,55,50
in „Soft-PWM Version 3: Probleme beim Anpassen des Programms“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F429_V1.2.pdf
PIU1048D12_DA121 DCMI_DPIJ20331 32 PIJ2032I_VSYNCYNC TX_ENEPIJ30334 33 PIJ30330B10 PIU20103 VDD PE13 PIU2076D10_DA10 LTDC_BPIU20168 PB9 PG9 PIU201529 PIU1040 NC DQ13 PIU1050D13_DA131 PE2E2 PIJ20333 34 PIJ2034I_D70D BOOT1TPIJ30336 35 PIJ3035C_R60R 01 P0 PIU20114 VDD PE14 PIU2077D11_DA11 PB10 PIU2079
in „Hat jemand Erfahrungen mit diesem Board auf Ebay.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LC_DISPLAY_20X4.pdf
TON 25°C -- -- 250 ms TOFF 25°C -- -- 250 ms Revision: 1.0 Author: MB/SK Date: 02.10.2009 Page: 4/13 NLC20X4X05CSCD SPECIFICATION Revision: 1.0 Revision: 1.0 Author: MB/SK Date: 02.10.2009 Page: 5/13 NLC20X4X05CSCD SPECIFICATION Revision: 1.0 Revision: 1.0 Author: MB/SK Date: 02.10.2009 Page: 6/13 NLC20X4X05CSCD
in „Set DDRAM Address am 4 zeiligen LCD durch ATMega 32 funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SelfProg.bas
21"); break; // Select device "T": goto eat // read(uart, wreg); // read and trash.. // write(uart, 13); // break; // Set addr "A": read(uart, R31, R30); // AH AL Z := Z + Z; // convert word addr to byte write(uart, 13); break; // Enter Programming Mode "P": write(uart, 13); break; // Leave Programming
in „Bootloader für ATMega163“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8574_4.pdf
LIMITING VALUES 9 HANDLING 10 DC CHARACTERISTICS 2 11 I C-BUS TIMING CHARACTERISTICS 12 PACKAGE OUTLINES 13 SOLDERING 13.1 Introduction 13.2 Through-hole mount packages 13.2.1 Soldering by dipping or by solder wave 13.2.2 Manual soldering 13.3 Surface mount packages 13.3.1 Reflow soldering 13.3.2 Wave soldering 13.3.3 Manual soldering 13.4 Suitability of IC packages for wave, reflow and dipping soldering methods 14 DATA SHEET STATUS 15 DEFINITIONS 16 DISCLAIMERS 17 PURCHASE OF PHILIPS I C COMPONENTS 2002 Nov 22
in „PCF8574 Routine in C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8574_4.pdf
LIMITING VALUES 9 HANDLING 10 DC CHARACTERISTICS 2 11 I C-BUS TIMING CHARACTERISTICS 12 PACKAGE OUTLINES 13 SOLDERING 13.1 Introduction 13.2 Through-hole mount packages 13.2.1 Soldering by dipping or by solder wave 13.2.2 Manual soldering 13.3 Surface mount packages 13.3.1 Reflow soldering 13.3.2 Wave soldering 13.3.3 Manual soldering 13.4 Suitability of IC packages for wave, reflow and dipping soldering methods 14 DATA SHEET STATUS 15 DEFINITIONS 16 DISCLAIMERS 17 PURCHASE OF PHILIPS I C COMPONENTS 2002 Nov 22
in „I²C tolle Alternative“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8574_4.pdf
LIMITING VALUES 9 HANDLING 10 DC CHARACTERISTICS 2 11 I C-BUS TIMING CHARACTERISTICS 12 PACKAGE OUTLINES 13 SOLDERING 13.1 Introduction 13.2 Through-hole mount packages 13.2.1 Soldering by dipping or by solder wave 13.2.2 Manual soldering 13.3 Surface mount packages 13.3.1 Reflow soldering 13.3.2 Wave soldering 13.3.3 Manual soldering 13.4 Suitability of IC packages for wave, reflow and dipping soldering methods 14 DATA SHEET STATUS 15 DEFINITIONS 16 DISCLAIMERS 17 PURCHASE OF PHILIPS I C COMPONENTS 2002 Nov 22
in „I2C mit Display parallel?“ · Mikrocontroller und Digitale Elektronik ·