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ATMegaEvoBoard.pdf
1 VCC PA6 6 PD6 6 4 SCL PD0 PA4 47 PA3 PD3 29 PD4 2 PA7 7 PD7 7 5 PA5 46 PA4 PD4 30 PD5 3 8 8 6 PA5 PD5 9 9 7 JP16 PA6 45 PA6 PD6 31 PD6 PA0 4 10 10 PA7 44 PA7 PD7 32 PD7 PA1 5 MiniDIN6 PA2 6 Port A Port D VCC PB0 10 PB0 PE0 2 PE0 7 ST9 PB1 11 PB1 PE1 3 PE1 8 PE0 PB2 12 4 PE2 9 ST2 ST5 1 PB3 13 PB2 PE2 5 PE3 10 PB0 PE0 2 PB4 14 PB3 PE3 6 PE4 PA411 PB1 1 PE1 1 3 PB5 15 PB4 PE4 7 PE5 PA512 PB2 2 PE2 2 4 PB5 PE5 3 3 5 PB6 16 PB6 PE6 8 PE6 PA613 PB3 4 PE3 4 6 PB7 17 PB7 PE7 9 PE7 PA714 PB4 5 PE4 5 7 15
in „AT90CAN128 Development board“ · Mikrocontroller und Digitale Elektronik ·
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AVR_Stamp_sheet_V1_1.pdf
PA4 47 A C3 24 XTAL1 (AD3)PA3 48 A3 1 1 +3V3 22p C4 49 A2 ARESET 2 2 +5V 62 (AD2)PA2 50 A1 3 3 A18 / PE4 64 AREF (AD1)PA1 51 A0 D0 4 4 A17 PE3 100n AVCC (AD0)PA0 D1 A16 PE2 63 AGND 5 5 (OC0A/OC1C/PCINT7)PB7 17 PB7 D2 6 6 A15 VCC 16 PB6 D3 7 7 A14 21 (OC1B/PCINT6)PB6 15 PB5 D4 8 8 A13 52 VCC (OC1A/PCINT5
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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MB997.pdf
PA5 PA4 PE4 PE5E PC7 NRST PA5 PE5 NLPE NLPB6 PB3 PB3 T_SWO PA6 PA6 PE6 PE6 PB6 PB6 PA7 PA7 PE7 PE7E PB9PB9 PB9 PA8A PA8 PE8 PE8E PA9A PE9E U_USB_OTG_FS PA101 PA9 PE9 PE101 USB_OTG_FS.SchDoc PA1A1 PA10 PE10 PE1E1
in „Mit STM32F4 einen Laser ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Timing_Summary_N_2.txt
at 5.128ns Clock Uncertainty: 0.035ns Clock Uncertainty: 0.035ns ((TSJ^2 + TIJ^2)^1/2 + DJ) / 2 + PE Total System Jitter (TSJ): 0.070ns Total Input Jitter (TIJ): 0.000ns Discrete Jitter (DJ): 0.000ns Phase Error (PE): 0.000ns Maximum Data Path at Slow Process Corner: AD9249_dig_data_interface/ADC_bank1
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AVR_Stamp_sheet_V1_1.pdf
PA4 47 A4 A B A C3 24 48 A3 1 1 +3V3 22p XTAL1 (AD3)PA3 49 A2 ARESET 2 2 +5V_Ext C4 (AD2)PA2 A1 A18 /PE4 62 AREF (AD1)PA1 50 3 3 64 AVCC (AD0)PA0 51 A0 D0 4 4 A17 /PE3 100n 63 AGND D1 5 5 A16 / PE2 17 PB7 D2 6 6 A15 VCC (OC0A/OC1C/PCINT7)PB7 16 PB6 D3 7 7 A14 (OC1B/PCINT6)PB6 PB5 D4 A13 21 VCC (OC1A/PCINT5
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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STM32F429_V1.2.pdf
2 0 6 6 P I U 1 A42 9 DQ4 P I U 1 0 8 PIJ20115 16 PIJ2016 PIJ30118 17 PIJ3017 P I U 2 0VDD5 PE5 P I U 2 0 4_G0 LTDC_RP I U 2 0PB17 PG1 P I U 2 0 6 71 FMC_A5P I U 1 A53 0 DQ5 P I U 1 0 1 0A LTDC_BPIJ20117 18 PIJ2018C_B30B LTDC_RPIJ30220 19 PIJ3019PG3 P I U 2 0VDD3 PE6 P I U 2 0 5_G1 BOOT1 P I U
in „Hat jemand Erfahrungen mit diesem Board auf Ebay.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EtherBoardSch.pdf
RN2B 1 A13 40 A12/PC4 RXD/PE0/PDI 3 TXD 6 5 A14 22 SA13 BD5 78 4K7 4K7 6 A14 41 A13/PC5 TXD/PE1/PDO 4 PE2 A15 23 SA14 BD6 77 2 4 2 A15 42 A14/PC6 PE2/AC+/XCK0 5 PE3 24 SA15 BD7 7 A15/PC7 PE3/AC-/OC3A 6 PE4 25 SA16 74 PE4/INT4/OC3B
in „Elektronik über ein Ethernet Netzwerk steuern?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ambilight.pdf
DCMI_D3 C 3 14.31818MHz 100n 100n 31 27 PE13_TVP_INTEREQ 31 32 AGND AGND 7 CH_AGND INTREQ/GPCL/VBLK 9 PA6_DCMI_PIXCLK 29 30 0 R AGND SCLK 2 p 0 27 28 1 3 1 5 XTAL1/OSC_IN YOUT0 18 PC6_DCMI_D0 25 26 C 3 6 17 PC7_DCMI_D1 23 24 AGND XTAL2 YOUT1 16 PC8_DCMI_D2 21 22 YOUT2 1 AIP1A YOUT3 15 PC9_DCMI_D3 19 20 CVBS Video In 2 AIP1B YOUT4 14 PE4_DCMI_D4 17 18 n 13 PB6_DCMI_D6 15 16 X2 3 0 29 YOUT5 12 PE5_DCMI_D6 13 14 R4 C 1 4 REFP YOUT6 ZOE 1 u 30 REFM YOUT7/I2CSEL 11 PE6_DCMI_D7 11 12 37R4 C 1 PB7_DCMI_VSYNC 9 10 PB6_DCMI_D6 4 TVP5150AM1
in „Ambilight mit STM32F4discovery und TVP5150AM1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2595.pdf
RL-1283-22-43 — PE-53824 PE-53824-S DO3316-223 L26 330 0.80 67144100 67144480 RL-5471-1 — PE-53826 PE-53826-S DO5022P-334 L27 220 1.00 67144110 67144490 RL-5471-2 — PE-53827 PE-53827-S DO5022P-224 L28 150 1.20 67144120 67144500 RL-5471-3 — PE-53828 PE-53828-S DO5022P-154 L29 100 1.47 67144130 67144510 RL-5471-4 — PE-53829 PE-53829-S DO5022P-104 L30 68 1.78 67144140 67144520 RL-5471-5 — PE-53830 PE-53830-S DO5022P-683 L35 47 2.15 67144170
in „Schaltregler 9-18V input 14-V output“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2595.pdf
RL-1283-22-43 — PE-53824 PE-53824-S DO3316-223 L26 330 0.80 67144100 67144480 RL-5471-1 — PE-53826 PE-53826-S DO5022P-334 L27 220 1.00 67144110 67144490 RL-5471-2 — PE-53827 PE-53827-S DO5022P-224 L28 150 1.20 67144120 67144500 RL-5471-3 — PE-53828 PE-53828-S DO5022P-154 L29 100 1.47 67144130 67144510 RL-5471-4 — PE-53829 PE-53829-S DO5022P-104 L30 68 1.78 67144140 67144520 RL-5471-5 — PE-53830 PE-53830-S DO5022P-683 L35 47 2.15 67144170
in „5 Volt 1A fürs auto passiv gekühlt gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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datasheet_5_.pdf
CP 16 6 20 24 4.5 14 5 17 20 6.0 su set-up time 100 33 125 150 ns 2.0 Figs 8 and 9 J to CP 20 12 25 30 4.5 17 10 21 26 6.0 su set-up time 80 25 100 120 ns 2.0 Figs 8 and 9 K, PE, Dnto CP 16 9 20 24 4.5 14 7 17 20 6.0 h hold time 3 −8 3 3 ns 2.0 Figs 8 and 9 J,K, PE, Dnto CP 3 −3 3 3 4.5 3 −2 3 3 6.0 max
in „74hct195 an rs232“ · Mikrocontroller und Digitale Elektronik ·
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LM2575TADJ.PDF
RL−5471−4 − PE−53829 PE−53829−S DO5022P−104 0.39 − 67144340 RL−5470−4 RL1500−150 PE−53810 PE−53810−S DO3308−154 150 0.66 67144050 67144430 RL−5471−3 RL1500−150 PE−53819 PE−53819−S DO3316−154 1.20 67144120 67144500
in „3W Luxeon Led energiesparend dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
F407-IoTBoard-Schematics.pdf
PE9/FSMC_D6/TIM1_CH1 60 PE9 FSMC_D6 A USART1_RX PA10 102 63 PE10 FSMC_D7 USB_D- PA11 103 PA10/TIM1_CH3/U1_RX/OTG_FS_ID/DCMI_D1 PE10/FSMC_D7/TIM1_CH2N 64 PE11 FSMC_D8 USB_D+ PA12 104 PA11/TIM1_CH4/U1_CTS/CAN1_RX/OTG_FS_DM PE11/FSMC_D8/TIM1_CH2 65 PE12 FSMC_D9 JTMS PA13 105 PA12/TIM1_ETR/U1_RTS/CAN1_TX/OTG_FS_DP PE12/FSMC_D9/TIM1_CH3N 66 PE13 FSMC_D10 JTCK PA14 109 PA13/JTMS_SWDIO PE13/FSMC_D10/TIM1_CH3 67 PE14 FSMC_D11 18B20
in „STM32 Nucleo welches Board am besten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2595.pdf
L24 22 1.70 RL-1283-22-43 — PE-53824 PE-53824-S DO3316-223 L26 330 0.80 RL-5471-1 — PE-53826 PE-53826-S DO5022P-334 L27 220 1.00 RL-5471-2 — PE-53827 PE-53827-S DO5022P-224 L28 150 1.20 RL-5471-3 — PE-53828 PE-53828-S DO5022P-154 L29 100 1.47 RL-5471-4 — PE-53829 PE-53829-S DO5022P-104 L30 68 1.78 RL-5471-5 — PE-53830 PE-53830-S DO5022P-683 L35 47 2.15 RL-5473-1 — PE-53935 PE-53935-S — FIGURE 8. Inductor Manufacturers Part Numbers Coilcraft Inc. Phone (
in „Schaltregler LM2595“ · Analoge Elektronik und Schaltungstechnik ·
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schema_stm32_primer2_1_2.PDF
RESET PB4 / DTC PB3 / DTC 14 PB2 / DTC 13 12 SWDCLK PB1 / DTC 11 TQFP64 10x10mm PB0 / DTC PC7 36 10 PE7 (HS) / DTC PC6 35 VCC5_RLink 9 PE6 (HS) / DTC PC5 34 SWDIO 8 33 TSTV2 49 PE5 (HS) / DTC PC4 30 SWDCLK 48 PE4 / PWM1 PC3 (HS) / DTC / SCK 29 47 PE3 / PWM0 / AIN7 / DTC PC0 (HS) / DTC / MOSI 1 1 VCC2V8
in „STM32 USB Virtual COM Port“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
// Simple GPIO Example for STM32F10x und STM32F30x Discovery Modul Juni 2013 // A.Schnell #include "stm32f30x.h" #include "stm32f30x_gpio.h" #include "stm32f30x_rcc.h" #define BUTTON GPIO_Pin_0 // User Button #define LED6 GPIO_Pin_15 #define LED8 GPIO_Pin
in „AVR ARM STM32F3 Discovery GPIO Einführung“ · Projekte & Code ·
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PDF
3DSanner_Stromlaufplan1.pdf
$113 PA5 P$51 PA4 PE11 P$73 I/O7 P$103 VDD8 VSS8 P$126 V PIXCLK P$52 PA5 PE10 P$70 I/O6 P$114 VDD9 VSS9 P$135 + PA7 P$53 PA6 PE9 P$69 I/O5 P$127 VDD10 VSS10 P$148 PA8 P$119 PA7 PE8 P$68 I/O4 P$136 VDD11 VSS11 P$158 k VCC_USB1 P$120 PA8 PE7 P$5 PE6 P$149 VDD12 VSS12 1 . ID1 P$121 PA10 PE5 P$4 PE5 P$159 VDD14 R 4 USB1=> DM1 P$122 PA11 PE4 P$3 PE4 P$172 VDD15 GND DP1 P$123 PA12 PE3 P$2 A19 PDR_ON P$171 TMS/SWDIO P$124 PA13 PE2 P$1 PE2 P$38
in „STM32 Boot0 Problem“ · Mikrocontroller und Digitale Elektronik ·
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Elektronik.pdf
_CS1 3 PE4 PB4 90 SPI_MISO File: Schalter.sch SPI4_MISO 4 91 Ventil4 SPI4_MOSI 5 PE5 PB5 92 Ventil3 T_Element_K1 ADC1_19 D D D D PE6 PB6 N N N N 37 PE7 PB7 93 Ventil2 G G G G 38 95 Ventil1 An_additional2 ADC1_7 PE8 PB8 39 PE9 PB9 96 Ventil0 40 46 PE10 PB10 Raspi Connector Rasp_is_on File: analog.sch 41 PE11 PB11 47 TMC1_STP Tim2_Ch4 TMC0_DIR 42 51 TMC_en +5V 0 0 TMC0_Stall 43 PE12 PB12 52 TMC_SCLK 1 R PE13 PB13
in „50ns Delay mit STM32H7“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.lst
363 0004 65 .byte 101 364 0005 00 .byte 0 405 .Letext0: DEFINED SYMBOLS *ABS*:00000000 test.c /tmp/ccPeD6Ys.s:2 *ABS*:0000003f __SREG__ /tmp/ccPeD6Ys.s:3 *ABS*:0000003e __SP_H__ /tmp/ccPeD6Ys.s:4 *ABS*:0000003d __SP_L__ /tmp/ccPeD6Ys.s:5 *ABS*:00000034 __CCP__ /tmp/ccPeD6Ys.s:6 *ABS*:00000000 __tmp_reg__ /tmp/ccPeD6Ys.s:7 *ABS*:00000001 __zero_reg__ /tmp/ccPeD6Ys.s:20 .text:00000000 USART_Transmit /tmp/ccPeD6Ys.s:57 .text:00000010 uart3_puts /tmp/ccPeD6Ys.s:124 .text:0000002e main /tmp/ccPeD6Ys.s:358 .data:00000000
in „UART sendet nicht das was er soll (kein offset problem)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
log.txt
atmega128' '-I' '/home/georg/gnu/install/gcc-4.7/avr/include' '-v' '-save-temps' '-fltrans' '-o' '/tmp/ccv4pe15.ltrans0.ltrans.o' /local/gnu/install/gcc-4.7/libexec/gcc/avr/4.7.0/lto1 -quiet -dumpbase ccv4pe15.ltrans0.o -mmcu=atmega128 -auxbase-strip /tmp/ccv4pe15.ltrans0.ltrans.o -O2 -w -version -fltrans @/
in „avr-libc: relocation truncated to fit“ · Mikrocontroller und Digitale Elektronik ·
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STM32F103_Ind_Board_Worksheet_V1.pdf
1 2 3 4 5 6 D D A? 1 PA8 T4ETR/PE1 1B 2 PA7/MOSI1 PE0 2B 3 PA6/MISO1 PE3 3B 4 4B 5 PA5/SCK1 PE2 5B 6 PA4/NSS1/DAC1 PE5 6B 7 PA3 PE6 7B 8 PA2/AN2 TIM1ETR/PE7 8B PA1/AN1 PE4 9 PA0/WKUP TIM1CH1/PE9 9B T1CH1N/PE8 10B 10 PB12 TIM1CH2/PE11 11B 11 PB7/SDA1 T1CH3N/PE10 12B 12 13B 13 PB6/SCL1 TIM1CH3/PE13 14B 14 PB5 T1CH3N/PE12 15B PB0/AN8 TIBKIN/PE15 16B TIM1CH4/PE14 15 PD0/CANRX* C 16 PD1/CANTX* AN10/PC0 17B C 17 PD2 AN11/PC1 18B 18 PD3/CTS2 AN12/PC2 19B 19 20B
in „STM32F103VET6 Industrial Board Schaltbild“ · Mikrocontroller und Digitale Elektronik ·
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WIZ-EmbeddedWebServser_User_Manual_V1_0_2.pdf
TXD1/INT3/PD3 ADC6/PF6 ADC7/PF7 ICP1/PD4 XCK1/PD5 AREF PB4 T1/PD6 T2/PD7 PB5 PB6 SS/PB0 SCK/PB1 PB7 PE7 MOSI/PB2 MISO/PB3 PE5 PE6 RXD0/PE0 TXD0/PE1 PE3 PE4 GND GND /RESET PE2 Table 3. WIZ-Embedded WebServer PIN MAP © Copyright 2007 WIZnet Inc. All rights reserved WIZ-Embedded WebServer User’s Manual ⑤
in „[V] Ethernet Webserver mit ATMEGA128 und 2x Ohne MCU“ · Markt ·
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Datei
kty.txt
Ausgang DDRD=0xff; PORTD=0; // warten bist LCD-Controller gebootet waitMs(50); // SOFT-RESET PORTD = 0x30; //0b00110000; sbi(PORTD,3); cbi(PORTD,3); waitMs(5); PORTD = 0x30; //0b00110000; sbi(PORTD,3); cbi(PORTD,3); waitMs(1); PORTD = 0x30; //0b00110000; sbi(PORTD,3); cbi(PORTD,3); waitMs(5); // 4-BitModus
in „Temperaturmessung mit KTY81-110 am Atmega32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Arduino_Mega_schematics.pdf
ADC10/PCINT18) (OC3B/INT4)PE4 6 PE4 pwm PG5 5 4 u L t d n i 2 ADC9 88 PK1(ADC9/PCINT17) (OC3A/AIN1)PE3 5 PE3 pwm PE5 pwm 4 3 r P s e e o 1 ADC8 89 PK0(ADC8/PCINT16) (XCK0/AIN0)PE2 4 PE4 pwm 3 2 . n a o g u 3 PE1 (TX0) PE1 pwm 2 1 T Y t m r a r 79 (TXD0)PE1 2 PE0 (RX0) PE0 pwm 1 0 L N r s v f 69 PJ7 (RXD0/PCIN8)PE0 A , s i o t +5V+3V3 68 PJ6(PCINT15) 90 ADC7 8 A7 T d c t c k 1 67 PJ5(PCINT14) (ADC7/TDI)PF7 91 ADC6 7 L D c t h j a 2 66 PJ4(PCINT13) (ADC6
in „Arduino Mega 2560, schaltschranktauglich“ · Projekte & Code ·
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PDF
pe12864wrm-026-l-q.pdf
14.5 V Input Voltage VIN - - - V Operating Temperature TOP - -20 +70 °C Storage Temperature TST - -30 +80 °C Storage Humidity H D Ta < 40 °C 20 90 %RH PE12864WRM-026-L-Q VER.0 Page4 1.4 DC Electrical Characteristics V DD= 3.3 V ± 0.3 , SS = 0 V , Ta = 25°C Item Symbol Condition Min. Typ. Max. Unit Logic
in „Display von I-Radio wurde langsam immer dunkler.“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan_Mikrocontroller.pdf
CS7 AN0 PB7 KITCON-X KITCON-X KITCON-X KITCON-X KITCON-X X3N X3O X3P 101P4.0 109P5.0 117P7.0 PC0 PD0 PE0 PC1 105P4.1 PD1 113P5.1 PE1 121 PC2 102P4.2 PD2 110P5.2 PE2 118 PC3 106P4.3 PD3 114P5.3 PE3 122 PC4 103P4.4 PD4 111 P5.4 PE4 119 107P4.5 115 P5.5 123 PC5 104P4.6 PD5 112 P5.6 PE5 120 PC6 108P4.7 PD6 116 P5.7 PE6 124 PC7 PD7 PE7 KITCON-X KITCON-X KITCON-X PHYTEC Messtechnik GmbH Robert-Koch-Straße 39 D-55129 Mainz Projekt: KitCON-515C Department: Entwicklung Author: M.Schneider File: N:\GROUP\DEVELOP\HARDWARE
in „Hilfe bei PWM Signal und Hardware nötig!“ · Mikrocontroller und Digitale Elektronik ·
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PE.pdf
cycles Rated frequency of operation with / without load 6/1200 min -1 Contact ratings Type Load Cycles PE014 5 A, 250 VAC, resistive, 85°C, 6 cycles/min, 50% df, EN61810-1 1x10 5 PE014 5 A, 30 VDC,resistive, on NO-contact, 85°C, 6 cycles/min, 5 50% duty factor, EN61810-1, 1x10 PE014 5 A, 240 VAC resistive load, on NO or NC contact, UL508 1x10 5 PE034 5 A, 250 VAC, resistive, 85°C, 6 cycles/min, 50% df, EN61810-1 1x10 5 PE034 5 A, 30 VDC,resistive, 85°C, 6 cycles/min, 50% duty factor, EN61810-1, 1x10 5 PE034 5 A, 240 VAC resistive load, UL508 1x10
in „Relais Typ PE für 230V?“ · Mikrocontroller und Digitale Elektronik ·
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lm2596.pdf
67144510 RL-5471-4 — PE-53829 PE-53829-S DO5022P-104 L30 68 1.78 67144140 67144520 RL-5471-5 — PE-53830 PE-53830-S DO5022P-683 L31 47 2.20 67144150 67144530 RL-5471-6 — PE-53831 PE-53831-S DO5022P-473 L32 33 2.50 67144160 67144540
in „[V] 15 ST. Stepdown SIMPLE SWITCHER LM2596S-12V , 3A, 400kHz, TO263 (alle 12€)“ · Markt ·
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PDF
lm2596.pdf
67144510 RL-5471-4 — PE-53829 PE-53829-S DO5022P-104 L30 68 1.78 67144140 67144520 RL-5471-5 — PE-53830 PE-53830-S DO5022P-683 L31 47 2.20 67144150 67144530 RL-5471-6 — PE-53831 PE-53831-S DO5022P-473 L32 33 2.50 67144160 67144540
in „[V] 15 ST. Stepdown SIMPLE SWITCHER LM2596S-12V , 3A, 400kHz, TO263 (alle 18€)“ · Markt ·
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XMega_Uniboard_sch.pdf
XTAL2_PR0 OC0B_XCK0_PD1 27 59 XTAL1_PR1 OC0C_RXD0_PD2 28 JP6 OC0D_TXD0_PD3 29 1 2 C22 OC1A_/SS_PD4 30 3 4 C12 C11 OC1B_XCK1_MOSI_PD5 31 5 6 3 10µF RXD1_MISO_PD6 32 7 8 3 22pF 22pF TXD1_SCK_CLKO_EVO_PD7 33 9 10 + 2 1 OC0A_SDA_PE0 36 PE0 JP_PD 1 R OC0B_XCK0_SCL_PE1 37 PE1 OC0C_RXD0_PE2 38 PE2 GND OC0D_TXD0_PE3 39 PE3 GND n OC1A_/SS_PE4 40 PE4 De OC1B_XCK1_MOSI_PE5 41 PE5 Er RXD1_MISO_TOSC2_PE6 42 PE6 L G TXD1_SCK_CLKO_EVO_TOSC1_PE7 43 PE7 OC0A_PF0 46 PF0 GND D OC0B_XCK0_PF1 47 PF1 OC0C_RXD0_PF2 48 PF2 OC0D_TXD0
in „Kleines Xmega-Board - Verbesserungsvorschläge?“ · Platinen ·
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Datei
einfach_1xtemp1xlcd_zum__ben.s
r16,0 ret ;--------------------------------------------------------------------- ; UP;: send BCD ; PE: r16 ;-------------------------------------------------------------------- sendBCD: push r16 lsr r16 lsr r16 lsr r16 lsr r16 ori r16,0x30 rcall putChar pop r16 push r16 andi r16,0x0f ori r16,0x30 rcall
in „Zwei Programme gleichzeitig“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Scheune_Neozed.pdf
-polig) +A2-F3 30°C B2 1 1 23 A 2,88 % 16 A nicht geprüft 5. Zweig NYY-J 3x2,5 mm² 17 m B 16 A (1-polig) +A2-F4 30°C B2 1 1 23 A 2,88 % 16 A nicht geprüft 5. Zweig NYY-J 5x2,5 mm² 17 m B 16 A (3-polig) +A2-F5 30°C B2
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Handbuch_hager_DE_Internet.pdf
vom Typ B sein. Geeigneter RCD Schaltung Laststrom Fehlerstrom B A + HI L L L IL a z 1 IF z t t N PE IL L IL IL 2 IF t t N PE IL L IL IL 3 IF t t N PE L IL IL IL 4 IF N t t PE IL IL IL 5 L N IF t t PE IL IL IL 6 L N IF t t PE IL IL IL t L1 7 L2 IF M N t IL PE t L IL IL IL 8 IF N t t PE L IL IL IL 9
in „20A nach 25A“ · Haus & Smart Home ·
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PDF
LM2677_2000.pdf
PE-53829S DO5022P-104 L30 68 1.71 RL-5471-5 RL6050-68 PE-53830 PE-53830S DO5022P-683 L31 47 2.06 RL-5471-6 RL6050-47 PE-53831 PE-53831S DO5022P-473 L32 33 2.46 RL-5471-7 RL6050-33 PE-53932 PE-53932S DO5022P-333 L33 22 3.02 RL-1283-22-43 RL6050-22 PE-53933 PE-53933S DO5022P-223 L34 15 3.65 RL-1283-15-43 — PE-53934 PE-53934S DO5022P-153 L38 68 2.97 RL-5472-2 — PE-54038 PE-54038S — L39 47 3.57 RL-5472-3 — PE-54039 PE-54039S — L40 33 4.26 RL-1283-33
in „On-Chip Induktivität“ · Analoge Elektronik und Schaltungstechnik ·
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STM32F407ZG-board-schematic.pdf
PE2 STAT2 RM2G3 560R GPH 254 SMT 01x0STAT2se) PF3 A3 13 PF3/FSMC_A3/ADC3_IN9 PE2/TRACECK/FSMC_A23/ETH_MII_TX23 A19 PE3 YELLOW(GYX-SD-TC0805SYC) PF4 A4 14 PF4/FSMC_A4/ADC3_IN14 PE3/TRACED0/FSMC_A19 3 A20
in „8Mbit/s Manchester Code codieren und decodieren mit STM32F407“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F407ZG-board-schematic.pdf
PE2 STAT2 RM2G3 560R GPH 254 SMT 01x0STAT2se) PF3 A3 13 PF3/FSMC_A3/ADC3_IN9 PE2/TRACECK/FSMC_A23/ETH_MII_TX23 A19 PE3 YELLOW(GYX-SD-TC0805SYC) PF4 A4 14 PF4/FSMC_A4/ADC3_IN14 PE3/TRACED0/FSMC_A19 3 A20
in „Problem: SPI Remap am STM32F407ZG“ · Mikrocontroller und Digitale Elektronik ·
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erlaeuterung-tab-2007.pdf
Heizung Allgemeinbedarf - J M M N Y N u r r e e r s b g b n s b g b n s g g S SF h WW L s X2 X2 1 2 3 N PE A 1 2 3 N PE e e b O X3 1 2 3 4 5 6 7 e b b b b - e g b b b bl - S SF LW LW L g L1 L2 L3 N L1 L2 L3 N r h ci p Funkrundsteuer-Empfänger e E s 2H0*30 - 2H0*31 kWh kWh a m I II III IV V VI Zähler Zähler
in „Wärmepumpe und Rundsteuerempfänger“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
avr_sim_deviceu.pas
PCINT12'+ {26 } '*PC5 A13 TMS PCINT13'+ {27 } '*PC6 A14 TDO PCINT14'+ {28 } '*PC7 TDI PCINT15'+ {29 } '*PE2 OC1B'+ {30 } '*PE1 ALE'+ {31 } '*PE0 ICP1 INT2'+ {32 } '*PA7 ADC7 PCINT7'+ {33 } '*PA6 ADC6 PCINT6'+ {34 } '*PA5 ADC5 PCINT5'+ {35 } '*PA4 ADC4 PCINT4'+ {36 } '*PA3 ADC3 PCINT3'+ {37 } '*PA2 ADC2 PCINT2
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Scheune_LSS.pdf
H07V-K6 mm² 1 m 40 A / 30 mA (4-polig) +A2-F1 30°C B2 1 1 34 A 1,16 % 32 A Ok 5. Zweig NYY-J 3x2,5 mm² 17 m C 16 A (1-polig) +A2-F2 30°C B2 1 1 23 A 2,88 % 16 A Ok 5. Zweig NYY-J 3x2,5 mm² 17 m C 16 A (1-polig) +A2-F3 30°C B2
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Schematic_062C.pdf
VGEN 5 48 MD3 Q1 8550 D7 L1 100uH VPOS 6 PE3(OC3A/AIN1) PA3(AD3) 47 MD4 VRAW+ 2 3 2 1 ROW0 J5 R21 100K 7 PE4(OC3B/INT4) PA4(AD4) 46 MD5 AV- - + OK PB5 PB6 R58 DNI PE6 8 PE5(OC3C/INT5) PA5(AD5) 45 MD6 * 1N5819 PF0 1 2 PF1 C16 R59 DNI PE7 9 PE6(T3/INT6) PA6(AD6) 44 MD7 8.1V C14 SW4 SW5 SW6 ROW1 PF2 3 4 PD7 0.1u R60 DNI PB5 PE7(ICP3/INT7) PA7(AD7) 1 L2 C15 LEVEL SEC/DIV 5 6 + + ( RXD ) PE0 7 8 PE6 R61 DNI PB6 1mH/1A 100uF SW7 SW8 ROW2 ( TXD ) PE1 9 10 PE7 R17 2K R20 100uF 11 12 LCD_E 10 PB0(SS) PC0(A8) 35 LCD_D0 SLOPE HPOS
in „Oszilloskop erweitern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematic_062C.pdf
VGEN 5 48 MD3 Q1 8550 D7 L1 100uH VPOS 6 PE3(OC3A/AIN1) PA3(AD3) 47 MD4 VRAW+ 2 3 2 1 ROW0 J5 R21 100K 7 PE4(OC3B/INT4) PA4(AD4) 46 MD5 AV- - + OK PB5 PB6 R58 DNI PE6 8 PE5(OC3C/INT5) PA5(AD5) 45 MD6 * 1N5819 PF0 1 2 PF1 C16 R59 DNI PE7 9 PE6(T3/INT6) PA6(AD6) 44 MD7 8.1V C14 SW4 SW5 SW6 ROW1 PF2 3 4 PD7 0.1u R60 DNI PB5 PE7(ICP3/INT7) PA7(AD7) 1 L2 C15 LEVEL SEC/DIV 5 6 + + ( RXD ) PE0 7 8 PE6 R61 DNI PB6 1mH/1A 100uF SW7 SW8 ROW2 ( TXD ) PE1 9 10 PE7 R17 2K R20 100uF 11 12 LCD_E 10 PB0(SS) PC0(A8) 35 LCD_D0 SLOPE HPOS
in „DCF77 Welches Modul taugt was“ · Mikrocontroller und Digitale Elektronik ·
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ARM_Cortex_Modul.pdf
PC5 24 PC5 PD5 96 PD5 GND GND GND PC6 23 PC6/PhB0 PD6/FAULT 99 PD6 PC7 22 PC7 PD7/IDX0 100 PD7 72 PE0 73 PE0/PWM4 47 PE1 74 PE1/PWM5 PF0/PWM0 61 PF0 PE2 75 PE2/PhB1 PF1/IDX1 60 PF1 3,3V PE3 PE3/PhA1 PF2/LED1 59 PF3/LED2 ADC0 1 ADC0 ADC1 2 ADC1 3,3V R2 R3 GND 3,3V ADC2 5 ADC2 R4 49.9 49.9 C2 C3 ADC3
in „PoE AVR Modul“ · Markt ·
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Schema.pdf
TMS_PF5 RXD1_PD2 28 G TCK_PF4 TXD1_PD3 23 22K 58 PF3 IC1_PD4 29 R31 X1 C13 10 DS2401 59 PF2 XCK1_PD5 30 R9 470 1M 22pF 22 60 PF1 T1_PD6 31 R28 RJ45_5 Y1 GND 9 R13 GND RJ45_6 61 PF0 T2_PD7 32 R30 180 VCC3.3 R45 5.6K X2 C14 21 47 D4 330 6 12.000MHz J2 22pF 8 R14 10 2 RX_PE0 GND P X X CON6 20 47 SCK 11 PB0_SS RXD0_PE0 3 TX_PE1 VCC3.3 B 7 R15 LED MOSI 12 PB1_SCK TXD0_PE1 4 PE2 1 2 3 4 5 6 U 19 47 R7 R8 MISO 13 PB2_MOSI XCKO_PE2 5 PE3 2 2 2 2 2 1 1 1 1 1 1 13 _ 6 R16 470 470 14 PB3_MISO OC3A_PE3 6 DATA DD5 0 1 E V
in „Schema für Platine/Modul.wer kann sowas bauen?“ · Platinen ·
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Datei
temp_uf_lcd_u._uart_forum.s
------------------------------- ; Sendet einen mit 0x00 abgeschlossenen String von Flash an UART ; PE: Z=StartAdresse ;------------------------------------------------------------------------ uartPutString: push r16 push r30 push r31 uartPutString1: lpm r16,Z+ cpi r16,0 breq uartPutString2 rcall uartPutChar
in „Temperaturausgabe mit LM 75 u. UART“ · Mikrocontroller und Digitale Elektronik ·
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atxmega128_board-sch2.pdf
CKE VDDQ 9 1 R20 PH6 VDDQ 43 U$26 R 19 CS# VDDQ 49 1 DO2 CDA 9 GND JP_DAC2 PF1 PH2 18 100n100n100n PE4 10 9 2 9A GND S1 1 3 17 RAS# 54 8 7 3 CS CDA1 h e 2 2 PH1 16 CAS# VSS 28 C25C26C27 PE5 6 5 4 DI 10 u o 1 PH0 WE# VSS 41 PE7 4 3 5 VCC CDB 10A 6 5 S2 p c VSS 6 PE6 2 1 6 CLK CDB1 PE0 4 3 E JP_CS VSSQ PE3 GND PE1 GND VSSQ 12 JP_SD 7 DO PE2 2 1 1A GND GND VSSQ 46 8 DO1 n 2 VSSQ 52 100n JP_ENC 1C u W t S MT48LC32M4A2TSOP54 C28 1B GND GND GND GND 3V3 3V3 IC1 6 VS 3 5 QRF7416 TSOP34836 + D1 4 +C21 30K 100n
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atxmega128_board-sch2.pdf
CKE VDDQ 9 1 R20 PH6 VDDQ 43 U$26 R 19 CS# VDDQ 49 1 DO2 CDA 9 GND JP_DAC2 PF1 PH2 18 100n100n100n PE4 10 9 2 9A GND S1 1 3 17 RAS# 54 8 7 3 CS CDA1 h e 2 2 PH1 16 CAS# VSS 28 C25C26C27 PE5 6 5 4 DI 10 u o 1 PH0 WE# VSS 41 PE7 4 3 5 VCC CDB 10A 6 5 S2 p c VSS 6 PE6 2 1 6 CLK CDB1 PE0 4 3 E JP_CS VSSQ PE3 GND PE1 GND VSSQ 12 JP_SD 7 DO PE2 2 1 1A GND GND VSSQ 46 8 DO1 n 2 VSSQ 52 100n JP_ENC 1C u W tS MT48LC32M4A2TSOP54 C28 1B GND GND GND GND 3V3 3V3 IC1 6 VS 3 5 QIRF7416 TSOP34836 + D1 4 +C21 30K 100n
in „ATxmega-Experimentierplatine in Gold/Schwarz ab 12.04.10 eventuell Bausatz“ · Markt ·
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OLIMEX-stm32-p107-schematic.pdf
C40 NC PC14/OSC32_IN 9 Q2 47uF/6.3V/TANT PC15/OSC32_OUT NA GNDC15 10pF OPEN R17 32768Hz/6pF BH20S 97 PE0/TIM4_ETR PD0/OSC_IN/CAN1_RX 81 PD0 PE0 98 PE1 PD1/OSC_OUT/CAN1_TX 82 PD1 PE1 1 PE2/TRACECK 83 PD2 PE2 2 PD2/TIM3_ETR/UART5_RX 84 PE3 3 PE3/TRACED0 PD3/USART2_CTS 85 PD3 3.3V 3.3V 3.3V PE4 4 PE4/TRACED1 PD4/USART2_RTS 86 USART2_TX PD4 USART2_TX PE5 5 PE5/TRACED2 PD5/USART2_TX 87 USART2_RX PD5 USART2_RX PWDW_D PE6 PE6/TRACED3 PD6/USART2_RX PD6 3.3V 1 2HN1x2 UEXT PE7 38 PE7/TIM1_ETR PD7/USART2_CK 88 USB_VBUSON ETHERNET 39 PE8/TIM1_CH1N PD8/USART3
in „Streuung der ADC-Werte beim STM32“ · Mikrocontroller und Digitale Elektronik ·
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Rollix_Core_SRAM.pdf
nc 8 #SEL_BT1 #SEL_BT0 Gnd RxD_CPU_MOT RXD0 2 PEN AGND 62 Gnd LCD_#RST Gnd 29 #CE I nc 9 #SEL_BT1 PE0 (RXD0 / PDI) AREF Gnd #RST 2 nc TxD_CPU_MOT TXD0 3 PE1 (TXD0 / PDO) (ADC0) PF0 61 LCD_D0 30 D0 0 nc 10 #Sensor1A 4 PE2 (XCK0 / AINO) (ADC1) PF1 60 LCD_D1 31 D1 L nc 11 EX_CLK EX_CLK Buzzer 5 PE3 (OC3A / AIN1) (ADC2) PF2 59 LCD_D2 32 D2 nc 12 #EX_ENABLE #EX_ENABLE #Sensor1B 6 PE4 (OC3B / INT4) (ADC3) PF3 58 LCD_D3 33 D3 nc 13 LCD_D0 EX_D0 7 57 LCD_D4 34 14 LCD_D1 RADIO_DATA_IN 8 PE5 (OC3C / INT5) (ADC4 / TCK) PF4 56 LCD_D5 35 D4 nc 15 LCD_D2 EX_D1 C RTC_ADSEL0 9 PE6 (T3 / INT6
in „Externes SRAM Problem:“ · Mikrocontroller und Digitale Elektronik ·
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Schematic_Prints.pdf
INT2) PG1(!RD) 34 +5V +5V R118 22K 28 PD3(TXD1/INT3) PG2(ALE) 43 29 PD4(ICP1) PG3(TOSC2) 18 8 7 6 5 30 PD5(XCK1) PG4(TOSC1) 19 31 R114 P1 U27F S2 32 PD6(T1) ATmega128 22K 61 PD7(T2) +5V 2 1 60 PF0(ADC0) ATmega128 B 4 3 59 PF1(ADC1) TP29 TP33 TP35 B NC 6 5 58 PF2(ADC2) D16 TP28 TP30 TP34 TP36 8 7 PF3(ADC3
in „ATMega128 und AVR mkII - Resetproblem?“ · Mikrocontroller und Digitale Elektronik ·
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ATxMega_128_Stick.pdf
PA2 / ADC2 12 PB7 / TDO 27 PA1 / ADC1 13 PB6 / TCK 28 PA0 / ADC0 14 PB5 / TDI 29 GND 15 PB4 / TMS 30 +3.3V JP4 Pin Funktion Pin Funktion 1 VCC_IN 16 PE4 / CS 2 +3.3V 17 PE5 / MOSI 3 PD0 18 PE6 / MISO 4 PD1 19 PE7 / SCK 5 PD2 / RXD 20 GND 6 PD3 / TXD 21 PF0 7 PD4 / CS 22 PF1 8 PD5 / MOSI 23 PF2 9 PD6 / MISO 24 PF3 10 PD7 / SCK 25 PF4 11 GND 26 PF5 12 PE0 / SCL 27 PF6 13 PE1 / SDA 28 PF7 14 PE2 / RXD 29 GND 15 PE3 / TXD 30 +3.3V JP2 (PDI Anschluss) Pin Funktion Pin Funktion 1 PDI_CLOCK 4 NC 2 +3.3V 5 PDI_DATA 3 NC 6 GND JP1 (Spannungswahl) Jumperstellung
in „ATxMega Stick“ · Markt ·