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447.pdf
ATmega168 AREF - 21 9 - PB6 AVCC - 20 10 - PB7 PB5/PCINT5 - 19 Emergency shutdown (in) UL (out) 11 - PD5/OC0b PB4 - 18 UH (out) 12 - PD6/OC0A PB3/OC2A - 17 WH (out) Tacho (out) 13 - PD7 PB2/OC1B - 16 VL (out) 14 - PB0 PB1/OC1A - 15 VH (out) 19 8010A-AVR-06/06 Table 5-1. AVR pin usage and direction. Pin Name
in „Synchron- / BLDC - Motor zum Laufen bringen“ · Mikrocontroller und Digitale Elektronik ·
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LENOVO_THINKPAD_YOGA_900-13ISK_LCFC_NM-A411_BYG40_Rev1.0.pdf
RS VD_K46 TP4 RS VD_K45 A69 AL25 RSVD_A69 B69 AL27 RS VD_AL25 RS VD_B69 RS VD_AL27 AY3 RSVD_AY3 2 C71 RS VD_C71 B70 RSVD_B70 RSVD_D71 D71 R488 C70 0_0402_5% F60 RSVD_C70 RS VD_F60 C54 A52 RSVD_C54 D54 1 RS VD_A52 RS VD_D54 BA70 AY4 +3V B RS VD_TP_BA70 TP1 B BA68 RS VD_TP_BA68 TP2 BB3 J71 AY71 2 J68 RS VD_J71 VSS_AY71 AR56 ZVM_N R88 1 @ 2 10K_0402_5% RS VD_J68 ZVM# ZVM _N 31 R490 F65 AW71 0_040_5% G65 VSS_F65 RS VD_TP_AW71 AW70 VSS_G65 RS VD_TP_AW70 1 F61 RS VD_F61 M SM# AP56 TP49 1 E61 RS VD_E61 P ROC_SELECT
in „Notebook Leistungsteil reparatur“ · Mikrocontroller und Digitale Elektronik ·
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mpx_2digit_demo.c
AIN0 - PCINT1 PB3 - PCINT11 - /reset | 4 i 11 | PA2 - ADC2 - AIN1 - PCINT2 PB2 - PCINT10 - INT0 - OC0A / CKOUT | 5 n 10 | PA3 - ADC3 - T0 - PCINT3 PA7 - PCINT7 - ICP - OC0B - ADC7 | 6 y 9 | PA4 - ADC4 - USCK - SCL - T1 - SDO- PCINT4 PA6 - OC1A - SDA - SDI -MOSI - DI - ADC6 | 7 8 | PA5 - ADC5 - DO - MISO - OC1B - SII -PCINT5 +-----------+ */ // Zuordnung der Anschluesse der 7-Segmentanzeige zu den Portpins // des Controllers #define kseg1 A3 #define kseg0 A5 #define seg_a A1 #define seg_b A4 #define seg_c
in „7 Segment Anzeige auf verschiedenen Ports“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mpx_2digit_demo.c
AIN0 - PCINT1 PB3 - PCINT11 - /reset | 4 i 11 | PA2 - ADC2 - AIN1 - PCINT2 PB2 - PCINT10 - INT0 - OC0A / CKOUT | 5 n 10 | PA3 - ADC3 - T0 - PCINT3 PA7 - PCINT7 - ICP - OC0B - ADC7 | 6 y 9 | PA4 - ADC4 - USCK - SCL - T1 - SDO- PCINT4 PA6 - OC1A - SDA - SDI -MOSI - DI - ADC6 | 7 8 | PA5 - ADC5 - DO - MISO - OC1B - SII -PCINT5 +-----------+ */ // Zuordnung der Anschluesse der 7-Segmentanzeige zu den Portpins // des Controllers #define kseg1 A3 #define kseg0 A5 #define seg_a A1 #define seg_b A4 #define seg_c
in „7 Segment Anzeige auf verschiedenen Ports“ · Mikrocontroller und Digitale Elektronik ·
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Datei
oled_2313demo.c
MISO - DO - PCINT6 XTAL2 - PA1 | 4 T 17 | PB5 - MOSI - DI - SDA - PCINT5 XTAL1 - PA0 | 5 t 16 | PB4 - OC1B - PCINT4 CKOUT - XCK - INT0 PD2 | 6 i 15 | PB3 - OC1A - PCINT3 INT1 - PD3 | 7 n 14 | PB2 - OC0A - PCINT2 T0 - PD4 | 8 y 13 | PB1 - AIN1 - PCINT1 OC0B - T1 - PD5 | 9 12 | PB0 - AIN0 - PCINT0 GND | 10
in „I2C Display einfache Frage“ · Mikrocontroller und Digitale Elektronik ·
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voltcraft_lsp1403_Maplin_N27GG_Manson_SSP-7080_Extech_382260_psu-adjustable-voltage-0-36-v-dc-0-5-a-80-w_sch.pdf
102 102 102 101 102 102 102 102 102 102 102 102 102 102 102 102 101 101 101 101 3 X1 15 4 Z X1 13 R71 10K Y X2 11 5 Z0 X0 12 R73 10K 1 KEY_COM D X3 6 INH A 11 C77 104 2 D 1 7 VEE B 10 R74 10K 3 VOL D12 Y0 5 8 VSS C 9 C70 C71 C72 C73 C78 104 4 Vref 4148 Y1 2 5 CURR Y2 4 CD4053 R75 10K C79 104 6 Y3 6 4.7uF
in „Voltcraft LSP-1403 Netztgerät zerschossen“ · Mikrocontroller und Digitale Elektronik ·
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sht71_electronics-base_com_v1.c
const float T1=+0.01; // for 14 Bit @ 5V const float T2=+0.00008; // for 14 Bit @ 5V float Calc_SHT71(float p_humidity ,float *p_temperature) { float rh_lin; // rh_lin: Humidity linear float rh_true; // rh_true: Temperature compensated humidity float t=*p_temperature; // t: Temperature [Ticks] 14 Bit
in „ATMega8 - SHT71“ · Mikrocontroller und Digitale Elektronik ·
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BLDC_Controller.pdf
GND_B0 PIV1 03 0R AGND NOC_ADJ 7 PWM_B GND_B 30 OUT_B0 L3 P2 3 PRR1 PI0 CC 1R GND PI0R2 19.1k PIIC807 OC_ADJ OUT_B PII29030 PVDD OC PL0 PL0 PIV1 02 2 M1 50V 2100n P0R3 PR2 AGND PIIC908 GND PVDD_B PII28029 BST_B 50V C3100n 600 Ohm @ 100MHz PIV1 01 1 0R PCPI2 NVRE PIIC109 AGND BST_B PIIC1028 PCPI3 PRR4 PI0
in „Tipps Platinenlayout“ · Platinen ·
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HD49815TF.pdf
output OC2R 59 YPO (3) Y parallel output (3) O Luminance-signal digital output OC2R 60 YPO (2) Y parallel output (2) O Luminance-signal digital output OC2R 61 YPO (1) Y parallel output (1) ; LOB Luminance-signal
in „wo omnivision kameramodule kaufen“ · Mikrocontroller und Digitale Elektronik ·
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XPLAIN_Shematic.pdf
VCC 63 1 C A11 NC0 36 GND 14 GND GND 62 SDRAM_CLK GND NC1 15 0 n VCC PH7(EBI) NC2 C 1 PC0 15 PC0(SDA-OC0A-_OC0A) PH6(EBI) 61 SDRAM_CKE SDRAM_BA0 20 BA0 NC3 2 V_XM PC1 16 PC1(SCL-XCK0-OC0B-OC0A) PH5(EBI) 60 SDRAM_BA1 SDRAM_BA1 21 BA1 NC4 4 PC2 17 PC2(RXD0-OC0C-_OC0B) PH4(EBI) 59 SDRAM_BA0 NC5 7 PC3 18 PC3(TXD0-OC0D-OC0B) PH3(EBI) 58 SDRAM_DQM SDRAM_DQM 39 DQM NC6 8 PC4 19 57 SDRAM_RAS 10 PC5 20 PC4(_SS-OC1A-_OC0C) PH2(EBI) 56 SDRAM_CAS NC7 13 PC6 21 PC5(XCK1-MOSI-OC1B-OS0C) PH1(EBI) 55 SDRAM_WE SDRAM_WE 16 NC8
in „Xplain: Schaltplan gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Code.txt
55, 56, 56, 57, 58, 58, 59, 59, 60, 61, 61, 62, 62, 63, 64, 64, 65, 66, 66, 67, 68, 68, 69, 70, 70, 71, 72, 72, 73, 74, 75, 75, 76, 77, 78, 79, 79, 80, 81, 82, 83, 83, 84, 85, 86, 87, 88, 89, 89, 90, 91, 92, 93, 94, 95, 96, 97, 98, 99, 100, 101, 102, 103, 104, 105, 106, 107, 108, 109, 110, 111, 112, 114
in „Port als Ausgang gesetzt geht direkt auf High. Wieso?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mpx_2digit_ntc.c
AIN0 - PCINT1 PB3 - PCINT11 - /reset | 4 i 11 | PA2 - ADC2 - AIN1 - PCINT2 PB2 - PCINT10 - INT0 - OC0A / CKOUT | 5 n 10 | PA3 - ADC3 - T0 - PCINT3 PA7 - PCINT7 - ICP - OC0B - ADC7 | 6 y 9 | PA4 - ADC4 - USCK - SCL - T1 - SDO- PCINT4 PA6 - OC1A - SDA - SDI -MOSI - DI - ADC6 | 7 8 | PA5 - ADC5 - DO - MISO - OC1B - SII -PCINT5 +-----------+ */ // Zuordnung der Anschluesse der 7-Segmentanzeige zu den Portpins // des Controllers #define kseg1 A3 #define kseg0 A5 #define seg_a A1 #define seg_b A4 #define seg_c
in „7 Segment Anzeige auf verschiedenen Ports“ · Mikrocontroller und Digitale Elektronik ·
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v1-oben.pdf
470 C-RES IC2 R-RES-ISP 30 71 10k 100µF RESET/PG5 PA7 72 PA6 73 R-RES GND PA5 C PA4 74 C-AVµC PA3 75 3 CV 0 PA2 76 3 C0µHµ PA1 77 GND + -V 0 100µF F 100 AVCC PA0 78 470 C µ E F - 0 C-AVCC A 099 AGND (OC2A/PCINT15)PB7 26 4 3 4 3 4 3 4 3 4 3 4 3 4 3 4 3 SV2 R-MOSI C 1 - 0 25 D 6 5 - 0 C 198 (OC1B/PCINT14)PB6 24 0 1 6 2 6 3 6 4 6 5 6 6 6 7 6 6 N 4 3 470 C 1 AREF (OC1A/PCINT13)PB5 23 P P 8 A 8 P 8 P 8 P 8 P 8 P 8 8 G 2 1 220 GND (OC0A/PCINT12)PB4 22 K K V K V K V K V K V K V K V V R-SCK V 80
in „first Projekt - div Steuerungen per Atmel im Auto“ · Mikrocontroller und Digitale Elektronik ·
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s6board_schaltplan.pdf
UC_MOSI IO_L12N_D2_MISO3_2 P61 C CBUS3 14 9 8 0 4 5 VCC (SS)PB4 44 P60 1 V 3 OSC_2 USB_DP 15 12 C61 100Cu71 C63 C66 2 2 5 C 38 43 PROG_PROG_B IO_L13P_M1_2 P59 OE D OUT 16 USBDP CBUS4 C62 C65 C64 R R C (AIN1/OC0)PB3 42 IO_L13N_D10_2 N R5 USB_DM USBDM (AIN0/INT2)PB2 PROG_MOSI IO_L14P_D11_2 P58 C44 G TEST 26
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FK743M5-XIH6.pdf
MCU10D 7 NLC _DE PK77 PI STM32H743XIH6 205RIP GND CD1 R5ROC 单片机从片内flash启动 1N4007 1K PI2 105RIP T T2OC 8050 BOOT电路 202TIP PT BOOT0 71COC C 7 SW1按下时,T1和T2导通,触发单片机复位,且BOOT0被T2拉高,若此时SW1松开, D CO 1S IP720PI1 10 NOS_ K_INNI0K230 PR P1 D PI OS 10 4 P IO3S10 3 NOS_25M_INN RTC时钟晶振32.768KHz PI0 R6 GND GND OSC2
in „STM32H743 mit 32MByte externem SDRAM“ · Mikrocontroller und Digitale Elektronik ·
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Cube.pdf
DRAIN 716 R67 6 5 SRCK SER IN DRAIN 6 R68 DRAIN 515 R69 4 3 A E 5 DRAIN 414 R70 2 1 + 2 Vcc DRAIN 37 R71 S 10 GND DRAIN 26 R72 GND 100n 11 GND DRAIN 15 R73 POTI 19 GND DRAIN 04 33 C12 33 - - X X IC3 V V 7805T + S2 + GND D1 1 3 1N444627 1u C25 VI VO C24 +C28 1 3 1 k k GND GND D 4 2 7 0 7 0 TPIC6B595 10u
in „Cube - Bitte Schaltplan und Layout überprüfen“ · Mikrocontroller und Digitale Elektronik ·
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ATMEGA128.pdf
AREF0AREF AREFAREF PE30PE3 5 P0U105 P0U1044 44 PA7N0PA7 PG20PG2 PG2N0PG2 0 0 P0P209 9 10 P0P2010 (OC3A/AIN1)PE3 PA7(AD7) P0P1099 10 P0P1010 C2 P P P0P2011 P0P2012 PEN0PEN PE40PE4 6 P0U106 P0U1043 43 PG2N0PG2 PC70PC7 P0P1011 P0P1012 PC60PC6 XTAL2XTAL2 AVCC PE00PE0 1 12 PE1PE1 PE50PE5 7 (OC3B/INT4)PE4
in „Was nehme ich nur?“ · Offtopic ·
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AMSRB-78-NZ.pdf
Short circuit restart Auto recovery Output current limit 2 A Thermal shutdown Internal IC junction 160 oC Line voltage regulation Vin=(LL-HL) at full load ±1 % Load voltage regulation 10-100% load ±0.75 % o Temperature coefficient -40°C to +85°C ambient ±0.02 %/ C Ripple & Noise 20MHz Bandwidth 35 mV p-p
in „neuer Festspannungsregler LMS78“ · Analoge Elektronik und Schaltungstechnik ·
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Bluno_beetle_V1.0_layout_top.pdf
COJ6 COJ10 PJ01401 A01 P41 51 J1 PA01001 COPWR COTX COLINK OL CORX2A01AIR L1 A1 1R30O0 PX1 R1P02 N1 P71C7 L2 A2 1R60O8 PX2 R2P01 A02 N2 P72 CO4 COROW1 COIC5 42A1OR4 42C1I221 C1 AICC0187 P20 I03C2C3 C7IC5026P54C5015A02 PAIC5029PAIC5012A015 PAJP101 PD02 PAIC5031PAIC50100 O1 PAJCOR3 O1 PAIC5032PAIC509 A16 PAJP10402A0O1 PIIC5078 O3A02 PAJPR0ACR102 COCP102A04 A03 19 C71 A01 R1ACP22 O18PC0A01 A02 P81 O1L2A0P21O2 A82 OC8 COR12P21 COBOOT P82 C2 R1A2 PS01 AS2AO02 BO1 CR6 O4 C1 CORST PAJ1501 P01 P31 11 11 PAJ1101 COJ15 COJ9 COJ13 COJ1 COJ16 COJ11
in „Bluno Beetle mit CC2540 - Low Power?“ · Mikrocontroller und Digitale Elektronik ·
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SAM-V71Q-SAM-V71N-SAM-V71J_Datasheet.pdf
SAMV71N20 SAMV71N19 SAMV71J21 SAMV71J20 SAMV71J19 T [ R D Flash - T (Kbytes) 2048 1024 512 2048 1024 512 2048 1024 512 A A V S Multi-port SRAM 1 H 384 256 384 256 384 256 a E (Kbytes) s T e ] Cache(I/D) _ (
in „Atmel SAMV71 CAN FD“ · Mikrocontroller und Digitale Elektronik ·
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Atiny2313.pdf
the data direction for the pin is set to output. The waveform generated will have a maxi- 71 2543I–AVR–04/06 mum frequency of f OC0 = clk_I/O2 when OCR0A is set to zero (0x00). The waveform frequency is defined by the following equation: f = ---------------------------------- OCnx 2 ⋅ N ⋅ (1
in „Suche tutorial“ · Mikrocontroller und Digitale Elektronik ·
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Sheet1.pdf
PIR102 PIR107 COD3 205 6 7 8NLS2F NLS2G COD32 01T6T N2S2 2PIR102 PIR107 COD3D 25 6 7 NLS3F NLS3G COD34 71T7OT7 N3S 2 PIR120 PIR1207 COD3 205 6 7 NLS4F NLS4G COD36 01T8T8 N4S4 4 PIR903 PIR506 D29 7 PIT903F S1G D30 PIT503 S 4 PIR103 PI5106 D31 7 PIT1003 S2G D32 PIT603 S 4PIR103 PI5106 D33 7 PIT1103 S3G D34
in „Was denkt ihr, ist das noch routbar? (Angefangene Platine)“ · Platinen ·
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Sheet12.pdf
PIR102 PIR107 COD3 205 6 7 8NLS2F NLS2G COD32 01T6T N2S2 2PIR102 PIR107 COD3D 25 6 7 NLS3F NLS3G COD34 71T7OT7 N3S 2 PIR120 PIR1207 COD3 205 6 7 NLS4F NLS4G COD36 01T8T8 N4S4 4 PIR903 PIR506 D29 7 PIT903F S1G D30 PIT503 S 4 PIR103 PI5106 D31 7 PIT1003 S2G D32 PIT603 S 4PIR103 PI5106 D33 7 PIT1103 S3G D34
in „Was denkt ihr, ist das noch routbar? (Angefangene Platine)“ · Platinen ·
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Atmega128_doc2467.pdf
in PB7..PB4 Signal Name PB7/OC2/OC1C PB6/OC1B PB5/OC1A PB4/OC0 PUOE 0 0 0 0 PUOV 0 0 0 0 DDOE 0 0 0 0 DDOV 0 0 0 0 PVOE OC2/OC1C ENABLE (1) OC1B ENABLE OC1A ENABLE OC0 ENABLE PVOV OC2/OC1C (1) OC1B OC1A OC0B DIEOE 0 0 0 0 DIEOV 0
in „ATMEGA128 Timer“ · Mikrocontroller und Digitale Elektronik ·
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nightsky_arx15.pdf
12 USB_HSDN4 AD2 USB_PP4 47 4-Audio Port 5 USB2.0 Con.(AUD BD) T24 PPON_13 USB_PN4 47 3.3VA 42 USB_OC0# USB_OC0# AF1 USB_OC0N USB_HSDP5 AD4 USB_PP5 42 42 USB_OC1# USB_OC1# AF2 USB_OC1N USB_HSDN5 AD3 USB_PN5 42 5-Type-A USB3.1 Charger Port1(M/B) USB_OC2# VISACH2_D3 AE3 USB_OC2N USB_OC1# R277 4.7K_04 USB_OC4# AF4 USB_OC3N USB_HSDP6 AA2 USB_OC0# R278 4.7K_04 USB_OC5# AE4 USB_OC4N USB_HSDN6 Zdiff=80ȍ 5 " VISACH2_D3 R276 4.7K_04 USB_OC6# AE5 USB_OC5N USB_HSDP7 Y5 USB_OC7# AF5 USB_OC7N USB_HSDN7 Y6 RN1 USB_OC5# 4 5 USB_HSDP8
in „SMD TGAJ TVS Diode USB“ · Mikrocontroller und Digitale Elektronik ·
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Sager_D87P_Service_Manual_Part4.pdf
L24 HI_VSWING AD20 VCC3_3 VCC1_5 F14 AB15 VSS ICH5-6 VSS L14 [6] HUBREF CLK66_ICH_HUB N22 HIREF C15 OC0# G19 VCC3_3 VCC1_5 W19 plane AB18 VSS VSS L15 [5] CLK66_ICH_HUB CLK66 ICH5-2 OC0# D15 OC1# OC0# [20] G21 VCC3_3 VCC1_5 R12 AC2 VSS VSS L21 T180 C10 OC1# D14 OC2# OC1# [20] VCC3_3 VCC1_5 W9 AC4 VSS VSS L23 T178 C9 LAN_RXD0 OC2# C14 R536 100K OC2# [20] E18 ICH5-5 VCC1_5 W10 AC6 VSS VSS M1 T172 C11 LAN_RXD1 OC3# B14 R538 100K VDD3 B15 VCCSUS3_3 VCC1_5 W11 AC8 VSS VSS M5 s T176 D9 LAN_RXD2 OC4#/GPI9 A14 R539 100K E11 VCCSUS3
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Roehren.pdf
2 Oktalsockel- und Loktalsockelröhren Heizspannung 6,3V AC Typ Anzahl Sockel EM34 1 Oktalsockel EBL71 2 Loktalsockel ECH71 1 Loktalsockel Novalsockelröhren Heizstrom 300mA, Allstrom Typ Anzahl PC86 8 PC88 4 PL82 1 PM84 1 PY81 1 PY83 1 PY88 4 PCF80 5 PCF82 3 PCL82 4 PCL84 6 PCH80 2 PABC80 1 Weitere europäische
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OURDSO_V2.pdf
AS 10k 4 NC NC 12 GND DATA 20 104 VCCD_PLL1 GND_PLL1 50 62 78 GND GND 184 5 NC NC 13 DATA0 GND_PLL1 71 VCCIO4 85 GND GND 186 +3.3 10 NC NC 14 126 C8 157 158 83 VCCIO4 93 GND GND 196 GND GND NC MSEL0 VCCA_PLL2 GNDA_PLL2 VCCIO4 GND GND J3 S3 +8v R8 125 MSEL1 104 155 VCCD_PLL2 GND_PLL2 156 91 VCCIO4 100
in „Oszilloskop aus STM32 und FPGA“ · Mikrocontroller und Digitale Elektronik ·
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atmega8China.pdf
/ COM1A0/ COM1B1 COM1B0 说明 0 0 普通端口操作, OC1A/OC1B 未连接 0 1 WGM13:0 = 15: 比较匹配时 OC1A 取反 , OC1B 未连接。 WGM13:0 为其它值时为普通 端口操作, OC1A/OC1B 未连接 1 0 比较匹配时清零 OC1A/OC1B,OC1A/OC1B 在 TOP 时置位 1 1 比较匹配时置位 OC1A/OC1B, OC1A/OC1B 在 TOP 时清零 Note: 1. 当 OCR1A/OCR1B
in „Buch AVR von Günter Schmitt durcharbeiten“ · Mikrocontroller und Digitale Elektronik ·
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HF32FV-G.PDF
_ [n ?< CaOc ?C 9>>WCE69<7WCE S_mcmncp_YT_hmcncp_Z [n ?< 87C 9>>WCE69<7WCE S_mcmncp_ [n ?< CaThP 9 ?C 9>>WCE69<7WCE S_mcmncp_YT_hmcncp_Z [n ?< /;/ CaE^P 87C 9>>WCE69<7WCE S_mcmncp_ [n ?< 87C 9>>WCE69<7WCE S_mcmncp_ [n ?< 87C :7WFE S_mcmncp_ [n ?< CaOc ?C :7WFE S_mcmncp_YT_hmcncp_Z [n ?< ?C 9>>WCE69<7WCE S_mcmncp_YT_hmcncp_Z[n ?< 8NRGQ, 81 Pj_hcha nb_ p_hn bif_ oh^_l ]ihn[]n g[n_lc[f CaThP n_mncha5 91 Cff p[fo_m ohmj_]c`c_^ [l_ [n liig n_gj_l[nol_5
in „Defekte Pumpe (Elektronik)“ · Analoge Elektronik und Schaltungstechnik ·
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ATMega128CAN11_short.pdf
PE0 2 47 PA4 (AD4) (TXD0 / PDO) PE1 3 INDEX CORNER 46 PA5 (AD5) (XCK0 / AIN0) PE2 4 45 PA6 (AD6) (OC3A / AIN1) PE3 5 44 PA7 (AD7) (OC3B / INT4) PE4 6 43 PG2 (ALE) (OC3C / INT5) PE5 7 42 PC7 (A15 / CLKO) (T3 / INT6) PE6 8 41 PC6 (A14) ATmega128CAN11 (IC3 / INT7) PE7 9 40 PC5 (A13) (SS) PB0 10 39 PC4 (A12) (SCK) PB1 11 38 PC3 (A11) (MOSI) PB2 12 37 PC2 (A10) (MISO) PB3 13 36 PC1 (A9) (OC2A) PB4 14 35 PC0 (A8) (OC1A) PB5 15 34 PG1 (RD) (OC1B) PB6 16 33 PG0 (WR) 1 1 1 2 2 2 2 2 2 2 2 2 2 3 3 3 B G G E C N L L D D D D D D D D ) P P S V G T T P P P P P P P P C () () R X X 0 1 2 3 1 1 1 0
in „ATmega128CAN11“ · Mikrocontroller und Digitale Elektronik ·
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ATMega128CAN11_short.pdf
PE0 2 47 PA4 (AD4) (TXD0 / PDO) PE1 3 INDEX CORNER 46 PA5 (AD5) (XCK0 / AIN0) PE2 4 45 PA6 (AD6) (OC3A / AIN1) PE3 5 44 PA7 (AD7) (OC3B / INT4) PE4 6 43 PG2 (ALE) (OC3C / INT5) PE5 7 42 PC7 (A15 / CLKO) (T3 / INT6) PE6 8 41 PC6 (A14) ATmega128CAN11 (IC3 / INT7) PE7 9 40 PC5 (A13) (SS) PB0 10 39 PC4 (A12) (SCK) PB1 11 38 PC3 (A11) (MOSI) PB2 12 37 PC2 (A10) (MISO) PB3 13 36 PC1 (A9) (OC2A) PB4 14 35 PC0 (A8) (OC1A) PB5 15 34 PG1 (RD) (OC1B) PB6 16 33 PG0 (WR) 1 1 1 2 2 2 2 2 2 2 2 2 2 3 3 3 B G G E C N L L D D D D D D D D ) P P S V G T T P P P P P P P P C () () R X X 0 1 2 3 1 1 1 0
in „ATmega128CAN11“ · Mikrocontroller und Digitale Elektronik ·
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LM7805.pdf
oC/W o Thermal Resistance Junction-Air (TO-220) R θJA 65 C/W Operating Temperature Range T 0 ~ +125 oC OPR Storage Temperature Range T STG -65 ~ +150 oC Electrical Characteristics (MC7805/LM7805) (Refer to test circuit ,0°J < T < 125OC, I = 500mAI V = 10VI C = 0.33µO, C = 0.1µF, unless otherwise specified
in „Kein passendes Bauteil da“ · Mikrocontroller und Digitale Elektronik ·
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LM7805.pdf
oC/W o Thermal Resistance Junction-Air (TO-220) R θJA 65 C/W Operating Temperature Range T 0 ~ +125 oC OPR Storage Temperature Range T STG -65 ~ +150 oC Electrical Characteristics (MC7805/LM7805) (Refer to test circuit ,0°J < T < 125OC, I = 500mAI V = 10VI C = 0.33µO, C = 0.1µF, unless otherwise specified
in „Hilfe bei Berechnung des zul. Ausgangsstroms beim Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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LM7805.pdf
oC/W o Thermal Resistance Junction-Air (TO-220) R θJA 65 C/W Operating Temperature Range T 0 ~ +125 oC OPR Storage Temperature Range T STG -65 ~ +150 oC Electrical Characteristics (MC7805/LM7805) (Refer to test circuit ,0°J < T < 125OC, I = 500mAI V = 10VI C = 0.33µO, C = 0.1µF, unless otherwise specified
in „Versorgungsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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7805.pdf
oC/W o Thermal Resistance Junction-Air (TO-220) R θJA 65 C/W Operating Temperature Range T 0 ~ +125 oC OPR Storage Temperature Range T STG -65 ~ +150 oC Electrical Characteristics (MC7805/LM7805) (Refer to test circuit ,0°J < T < 125OC, I = 500mAI V = 10VI C = 0.33µO, C = 0.1µF, unless otherwise specified
in „LM7805 im D-PAK Gehäuse kaufen - wo??“ · Mikrocontroller und Digitale Elektronik ·
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rf__0_4_schem.pdf
L5L5 100nF A PIC302 PIC301 PIC1101 PIC1102 PIPIL502 PIC1902 PIC1901 C25 100nF 12 680 4.7uH 02 C262 71CO7 L9L9 0 C151 GND PIC2502 PIC2501 VCC_5V L1L 1.5nF 2.2uH 1.5nF GND PIC2602 PIC2601 VCC_5V U1U 100nF 2.2uH 72 2 U2U 100nF PTT PIU101 OE1 Vcc PIU1016 GND PTT PIU201 OE1 Vcc PIU2016 10 01 BND1PIU102 S1
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atmega2560_2561.pdf
P P P P P G V P P P P 100 99 98 97 96 95 94 93 92 91 90 89 88 87 86 85 84 83 82 81 80 79 78 77 76 (OC0B) PG5 1 75 PA3 (AD3) (RXD0/PCINT8) PE0 2 74 PA4 (AD4) (TXD0) PE1 3 INDEX CORNER 73 PA5 (AD5) (XCK0/AIN0) PE2 4 72 PA6 (AD6) (OC3A/AIN1) PE3 5 71 PA7 (AD7) (OC3B/INT4) PE4 6 70 PG2 (ALE) (OC3C/INT5)
in „Ethernet Buchse“ · Mikrocontroller und Digitale Elektronik ·
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v1-oben.pdf
V + S E 470 - 0 IC2 3 R 1 30 RESET/PG5 PA7 71 3 R-RES-ISP C-RES PA6 72 + PA5 73 3 4,5nf PA4 74 3 PA3 75 + GND PA2 77 GND L-AVCC 100 PA1 78 C-VCC1 C-VCC2 C-VCC3 100µF E AVCC PA0 470 10µH R 99 26 4 3 4 3 4 3 4 3 4 3 4 3 4 3 4 3 SV2 100µF 100µF 100µF C-AVCC - 0 AGND (OC2A/PCINT15)PB7 25 6 5 R-MOSI C 98 (OC1B/PCINT14)PB6 24 0 1 6 2 6 3 6 4 6 5 6 6 6 7 6 6 4 3 470 AREF (OC0A/PCINT12)PB4 23 P P 8 A 8 P 8 P 8 P 8 P 8 P 8 8 2 1 220 R-SCK 3 (MISO/PCINT11)PB3 22 K K T K T
in „first Projekt - div Steuerungen per Atmel im Auto“ · Mikrocontroller und Digitale Elektronik ·
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STM8_Programming_Manual.pdf
complementary output (channel 1) . . . . . . . . . . . . 170 Figure 69. Output compare mode, toggle on OC1. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 171 Figure 70. Edge-aligned counting mode PWM mode 1 waveforms (ARR = 8) . . . . . . . . . . . . . . . . . 173 Figure 71.
in „STLINK V2 und China Boards“ · Mikrocontroller und Digitale Elektronik ·
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Last_board.pdf
PIC-ALARM-INR21 5013 B Flipflop zum Fehlerspeich+3V3 ESP-ALARM-INR20 5014 C 47k NTC-ALARM-OUT-GESR19 50 3 D IC6 OC-ALARM-OUT-GES 50 4 E R71 REST-ALARM-OUT R18 F INPUT-OC-ALARM-IN-1 4 S0 Q0 2 OC-ALARM+3V31 GES-ALARM-OUT R17 50 5 G NOTAUS_RESET_1 3 R0 47k LUEFTER-ALARM-INR16 50 6 H INPUT-OC-ALARM-IN-2 6 S1 Q1 9 OC-ALARM-IN
in „Schaltplankontrolle Last- + HMI-Board“ · Mikrocontroller und Digitale Elektronik ·
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Lankarte.pdf
15 13 13 17 P6 RX_FLG_DV SEQ_RUNS WR_BYTE0 14 CLK 14 CLK P7 RX_START_1CK 1 CLKEN 1 CLKEN 3 22 3 2 OC1 2 OC1 A QA Q0 EN_B0 OC2 OC2 4 B QB 21 5 Q1 RX_CRC_EN 23 OC3 23 OC3 5 C QC 20 7 Q2 11 CLR 11 CLR 6 D QD 19 9 Q3 7 E QE 18 12 Q4 RX Packets avail 74825 74825 8 17 14 A 9 F QF 16 16 Q5 3 1 2 DBUS8 3 22
in „Space Age 2 der 32Bit MIPS Rechner in TTL“ · Projekte & Code ·
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LGT8FX8P_databook_v1.0.4.pdf
死区时间使能模式下 OC1A 信号输出波形的极性控制 DTEN1 COM1A[1:0] COM1B[1:0] 描述 0 - - OC1A 信号极性由 OC1A 比较输出模式控制 1 0 - OC1A 断开,通用 IO 口操作 1 1 - 保留 1 2 2 OC1A 信号与 OC1B 信号极性相同 3 OC1A 信号与 OC1B 信号极性相反 1 3 2 OC1A 信号与 OC1B 信号极性相反 3 OC1A 信号与 OC1B
in „Spot Welder Firmware Update fehlerhaft“ · Mikrocontroller und Digitale Elektronik ·
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LGT8FX8P_databook_v1.0.4.pdf
死区时间使能模式下 OC1A 信号输出波形的极性控制 DTEN1 COM1A[1:0] COM1B[1:0] 描述 0 - - OC1A 信号极性由 OC1A 比较输出模式控制 1 0 - OC1A 断开,通用 IO 口操作 1 1 - 保留 1 2 2 OC1A 信号与 OC1B 信号极性相同 3 OC1A 信号与 OC1B 信号极性相反 1 3 2 OC1A 信号与 OC1B 信号极性相反 3 OC1A 信号与 OC1B
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PCB_AmpV2.pdf
PPAU1PCOC8220COC78PAU15O321 P72 COCPAC8402PAC8401ACOC79PA17901COC57 J 120 P10 POL1510 COC86 COC61 O6 C 72 O42 AO5 P71 60 P0 R1 10 A0 81 A0 RPAR5PAR510PAR4012 OPAC720PAC602AC5801 COC59C5PAR3902 PAC7301 RPAR17PAC1PAC102 PAR102 PAR120 O6 O3AC1301PAC1201 PAC10 PAR10 PAR1201 O2O11R2 2 874298742 OA9201PAC1901 PAC202PAC1902
in „Verstärker TAS5630“ · Analoge Elektronik und Schaltungstechnik ·
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EtherBoardSch.pdf
10 75 VCC 14 VCC A13 1 A14 20 1 /RD 34 PD0/INT0/SCL 26 I2CDAT A5 11 SA4 BCS 60 GND A14 VCC 10 VCC OC 11 GND /WR 33 RD/PG1 PD1/INT1/SDA 27 RXD1 A6 12 SA5 LEDBNC 65 GND 62256 GND GND G ALE 43 WR/PG0 PD2/INT2/RXD1 28 TXD1 A7 13 SA6 JP VCC IC4D ALE/PG2 PD3/INT3/TXD1 29 PD4 A8 15 SA7 85 HC04 PD4/IC1 SA8
in „Elektronik über ein Ethernet Netzwerk steuern?“ · Mikrocontroller und Digitale Elektronik ·
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c.c
Initialisierungsroutine fuer den Prozessor void McuInit(void) { DDRD=0x00; DDRA=0x00; DDRB=0x00; DDRC=0x00; // OC1A output: Discon. // OC1B output: Discon. // Noise Canceler: Off // Input Capture on Falling Edge OCR1AH=0x00; OCR1AL=0x00; OCR1BH=0x00; OCR1BL=0x00; // Analog Comparator initialization // Analog Comparator
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SED1374_3Sch.pdf
PA0 43 D0 GND D0 9 8D 8Q 12 A0 A9 9 20 D7 D0 11 D8 CNF1 48 33 ALE A8 10 19 D5 CNF2 47 GND ALLSP7 32 OC1B (SCK)PB7 9 ALE 11 C D6 11 18 D7 12 D7 CNF3 46 (MISO)PB6 8 1 OC D4 12 17 D3 D6 13 D6 CNF4 45 44 7 D2 13 16 D1 D5 14 VCC 22 VCC (MOSI)PB5 6 GND 74HC573D 14 15 D0 D4 15 D5 39 1 2n.c. GND GND (SS)PB4 5
in „Grafikcontroller S1D13706“ · Mikrocontroller und Digitale Elektronik ·
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pc847x_SHA.pdf
90% LTPD : lO%/ZO% Test Items Test CmdiUons Failure Judgemmt Samplea In De6ccthntc ‘1 SoIderaw ?i! 23oc,ss xl=1 1, c-a soIderfngheat 26oc, IO 9 IelI, c=o We@t:SN n=ll. C=o -strength frenabrll 6 s/each terminaI vj.xJx12 T-strength weight : 2.m g>ux2 xl=ll, c=o (Balcungl l 3 2 times/each tkxn&aI &XX2 MeohanicaI
in „Displaybeleuchtung mit PWM dimmen“ · Mikrocontroller und Digitale Elektronik ·
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BREMI_BRS-36-Schematics.pdf
MASTER_OUT 4 5 M0V MASTER_PWR 1 M- M- M- JP2 E I L _ R M T R4 F E Q2 M_FCOMP TP1 X N BC550C 10k M_OC U C10 O 1M 470p M JP3 M- 2.2k 1 R5 C11 D2 2 volts pot M_CTRL- 1N4148 R 4 R6 M_VRHI 470p IC1 V 4 E AB TR1B 11 10 M D 1 C12 k S 1 8 M_HI R8 M_IC+ 12 VC OUT 9 7 . 2 C 0 V+ CL 2 10n R2 A JP4 I 7S A B2 6
in „Schaltplan für Labornetzgerät BREMI BRS 33 gesucht / Strombegrenzung defekt“ · Analoge Elektronik und Schaltungstechnik ·