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schematic.PDF
PIR8PIR8PIDVBB VEEID505 2 2 L1L1 120R 120R PIR8PIRPIDVBB VEEID60572 72 CL2 120R 120R 2 BLM41PG102SN1L71 1 82 BLM41PG102SN1L1 91 1CC75C767 71C771C7878 1C797 100100p 81C80 100n100p 100n GND GND 100n GND GND GND GNDGND GND GND GND GND GND DUT2 input -12dBm .. 4dBm +5V +5V 12 0 2 92 X7X D7D7 R919 R922 D8D
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Timer_-_AVR-AN130.pdf
(1<<COM21)+(1<<PWM2)+(1<<CS20); DDRD = (1 << PD7)|0x0F; // PD7 (OC2) and PD0 // -PD3 as outputs OCR2= 0xE0; // Set compare // value/duty // cycle ratio } Literature 1. AVR072: Accessing 16-bit I/O Registers 2. AVR134: Real Time Clock (RTC) using the Asynchronous Timer
in „Timererklärung“ · Mikrocontroller und Digitale Elektronik ·
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STM32F746G_Discovery.pdf
PIU20H11D20 VSS20 PIU20H10 0 PIU20RVDDA VSSA PIU20M1 VDD VREF+ I0 PIU20P1REF+ VREF- PIU20N1 92C1 C0C5 0OC2 30C2 C202 C0OC2 0OC 32C3 C2C3 P2OC3 02C36 I0 COC18 VDD PIU20C1BAT VCAP1 PIU20L11 1uF 900nF PIU20LBYPASS-REG VCAP2 PIU20E11 C000nF 000nF 300nF C100nF C000nF 000nF 300nF C000nF P000nF 000nF I2 IR5 10KR5
in „STM32F7 Discovery Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
frequ.c
// H: 0xFC L:0x00=13,51Hz // H: 0xFC L:0x20=13,89HZ // H: 0xFC L:0x40=14,29HZ // H: 0xFC L:0x60=14,71HZ // H: 0xFC L:0x80=15,38Hz // H: 0xFC L:0xA0=15,87HZ // H: 0xFC L:0xC0=16,39HZ // H: 0xFC L:0xE0=16,95HZ // H: 0xFD L:0x00=17,86Hz // H: 0xFD L:0x20=18,52HZ // H: 0xFD L:0x40=19,23HZ // H: 0xFD L:0x60
in „Sinuserzeugung im c“ · Mikrocontroller und Digitale Elektronik ·
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Orion_Rev_3.0__1_.pdf
10uF FL4 1 CS 13 PTT_SELECT C255 U22 22 ROUT 12 LLINEOUT 3 1 100NF D CMODE MODE LOUT C18 3 D 1 16 OC0 10uF 2 USROUT0 2 1B 1C 15 4 10 3 1 2 USROUT1 2B 2C OC1 CDIN DIN RHPOUT HEADPHONES USROUT2 3 3B 3C 14 OC2 CDOUT 6 DOUT LHPOUT 9 C16 10uF 1 6 IN NO 1 PTTTIP USROUT3 4 4B 3C 13 OC3 CBCLK 3 BCLK FL5 MIC_TIP
in „Suche Firma die für Privat BGA FPGA reballing macht“ · Markt ·
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Datei
mpx_2digit_uart.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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LDO-Spannungsregler_LFxx.pdf
/54 DocID2574 Rev 30 LFXX Electrical characteristics Refer to test circuitsJ T = 25 °C,IC = 0.1 µF,OC = 2.2 µF unless otherwise specified. Table 4. LF18AB electrical characteristics Symbol Parameter Test conditions Min. Typ. Max. Unit IO= 50 mA, VI= 3.3 V 1.782 1.8 1.818 VO Output voltage V IO= 50 mA
in „Spannungsregelung-/Begrezung 5V.5,5V“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
DispTiny13C.c
---PB3---|2 7|---PB2---> (SCK/ADC1/T0/PCINT2) * (PCINT4/ADC2) <---PB4---|3 6|---PB1---> (MISO/AIN1/OC0B/INT0/PCINT1) * GND ---|4 5|---PB0---> (MOSI/AIN0/OC0A/PCINT0) * | | * ----------- */ #include <avr/io.h> static int8_t TubeTab[] = { 0x3f,0x06,0x5b,0x4f, 0x66,0x6d,0x7d,0x07, 0x7f,0x6f,0x77,0x7c, 0x39,0x5e,0x79,0x71};//0~9,A,b,C,d,E,F uint8_t Cmd_SetData; uint8_t Cmd_SetAddr; uint8_t Cmd_DispCtrl; #define ClkPin 3 #define DataPin 4 #define ADDR_AUTO 0x40 #define ADDR_FIXED 0x44 //To take effect the next time it
in „7 Segment an ATtiny13“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega_48_88_168.pdf
OC1A/OC1B on Compare Match, set OC1A/OC1B at TOP 1 1 Set OC1A/OC1B on Compare Match, clear OC1A/OC1B at TOP Note: 1. A special case occurs when OCR1A/OCR1B equals TOP and COM1A1/COM1B1 is set. In this case
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
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PL560-XX.pdf
51.37 320 26.00 64 139.09 128 56.32 64 158.56 160 76.89 165 48.17 330 24.18 66 130.39 132 52.67 66 148.71 165 71.95 170 45.24 340 22.52 68 122.45 136 49.34 68 139.71 170 67.44 175 42.57 350 21.00 70 115.19 140 46.29 70 131.48 175 63.31 180 40.11 360 19.60 72 108.52 144 43.49 72 123.92 180 59.52 185 37.85
in „Suche Analog Frequency Multiplier IC“ · Mikrocontroller und Digitale Elektronik ·
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Dokumentation.PDF
COR15 1P661I114128 CORCOR14I25I795A4202 71 01 041 COC6 01 COC1 COC3 A01 PA02PA32 PCOC9 R0 P R02PA0 A COC4 A01 PA0P42 PCOC10 COR2071 COR2 COX10P1P13X4A05 COX31A0P30X4A5 COX2X1A0P03X4X5 COX4X1A2P0P40X5 X1 C1P2 61 PAR2702PAC1702PAR2601 COX9 P1312X0
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Mega32.pdf
between how the counter behaves (counts) and how waveforms are generated on the Output Compare output OC0. For more details about advanced counting sequences and waveform generation, see “Modes of Operation” on page 71. The Timer/Counter Overflow (TOV0) Flag is set according to the mode of operation selected
in „AVR Timer/Counter Zeit berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AtMega644P_Datasheet.pdf
14 relates the alternate functions of Port D to the overriding signals shown in Figure 12-5 on page 71. Table 12-13. Overriding Signals for Alternate Functions PD7:PD4 PD6/ICP1/ PD7/OC2A/ OC2B/ PD5/OC1A/ PD4/OC1B/ Signal Name PCINT31 PCINT30 PCINT29 PCINT28 PUOE 0 0 0 0 PUOV 0 0 0 0 DDOE 0 0 0 0 DDOV 0 0 0 0 PVOE OC2A ENABLE OC2B ENABLE OC1A ENABLE OC1B ENABLE PVOV OCA2A OC2B OC1A OC1B DIEOE PCINT31 PCIE3 PCINT30 PCIE3 PCINT29 PCIE3 PCINT28 PCIE3 DIEOV 1 1 1 1 DI PCINT31 INPUT ICP1 INPUT PCINT29 INPUT PCINT28 INPUT
in „Alkoholmessgerät programmieren“ · Mikrocontroller und Digitale Elektronik ·
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atmega644.pdf
14 relates the alternate functions of Port D to the overriding signals shown in Figure 12-5 on page 71. Table 12-13. Overriding Signals for Alternate Functions PD7:PD4 PD6/ICP1/ PD7/OC2A/ OC2B/ PD5/OC1A/ PD4/OC1B/ Signal Name PCINT31 PCINT30 PCINT29 PCINT28 PUOE 0 0 0 0 PUOV 0 0 0 0 DDOE 0 0 0 0 DDOV 0 0 0 0 PVOE OC2A ENABLE OC2B ENABLE OC1A ENABLE OC1B ENABLE PVOV OCA2A OC2B OC1A OC1B DIEOE PCINT31 PCIE3 PCINT30 PCIE3 PCINT29 PCIE3 PCINT28 PCIE3 DIEOV 1 1 1 1 DI PCINT31 INPUT ICP1 INPUT PCINT29 INPUT PCINT28 INPUT
in „SPI-Kommunikation Atmega644 - ADS1118“ · Mikrocontroller und Digitale Elektronik ·
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Datasheet_ATmega1281_doc2549.pdf
P P P P P G V P P P P 99 98 97 96 95 94 93 92 91 90 89 88 87 86 85 84 83 82 81 80 79 78 77 76 100 (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 „LM73 über TWI/I2C mit Atmega1281 auslesen“ · Mikrocontroller und Digitale Elektronik ·
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tas5630.pdf
TD D D D S CC C C NN V VS U UV V N PSU_REF 1 44 GVDD_AB V P NN N N GG G GB O OP P G VDD 2 43 BST_A OC_ADJ 3 42 PVDD_A 6 6 6 6 6 5 5 5 5 5 5 5 5 5 5 RESET 4 41 PVDD_A OC_ADJ 1 48 GND_A C_STARTUP 5 40 OUT_A RESET 2 47 GND_B C_STARTUP 3 46 GND_B INPUT_A 6 39 OUT_A INPUT_A 4 45 OUT_B INPUT_B 7 38 GND_A INPUT_B
in „Ringkerntrafo 50V“ · Analoge Elektronik und Schaltungstechnik ·
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LGT8F328P.pdf
3 OC1B COM1B = 3 OC1A COM1A = 2 OC1A COM1A = 3 Dead Time OC1B_pre COM1B = 2 OC1B COM1B = 2 OC1A COM1A = 3 OC1A COM1A = 2 Figure 3 TC1 dead time control in FPWM mode https://translate.googleusercontent.com
in „Neue 8-Bit Tinys vorgestellt: 417/814/816/817“ · Mikrocontroller und Digitale Elektronik ·
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main.c
192, 182, 152, 104, 75, 65, 90, 158, 193, 178, 145, 107, 87, 76, 84, 141, 191, 188, 150, 104, 80, 71, 85, 141, 188, 182, 152, 116, 82, 67, 88, 148, 187, 175, 150, 118, 83, 55, 75, 144, 191, 190, 158, 120, 85, 59, 74, 134, 185, 191, 166, 128, 84, 54, 68, 132, 189, 188, 164, 135, 98, 60, 62, 125, 186, 189, 160, 132, 100, 62, 61, 120, 182, 195, 168, 135, 105, 69, 61, 111, 172, 192, 174, 139, 103, 71, 63, 107, 166, 190, 179, 144, 101, 68, 64, 110, 165, 181, 172, 145, 108, 77, 75, 111, 150, 170, 167, 145, 115, 85, 76, 104, 147, 177, 175, 144, 107, 76, 72, 106, 146, 177, 178, 143, 109, 79, 77, 109,
in „TDA2030 als Verstärker für PWM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PWM_test_2.c
type : ATMEGA 88 * Clock frequency : clock 20 Mhz Ein- und Ausgänge PORT B 0 (14) = PORT B 1 (15) = (OC1A/PCINT1) PWM Ausgabe, PORT B 2 (16) = (SS/OC1B/PCINT2) PWM Ausgabe, PORT B 3 (17) = PORT B 4 (18) = PORT B 5 (19) = PORT B 6 ( 9) = PORT B 7 (10) = PORT C 0 (23) = PORT C 1 (24) = PORT C 2 (25) = PORT
in „Skalierung von Integerwerten“ · Mikrocontroller und Digitale Elektronik ·
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Sheet1_AmpV2.pdf
D N 1mH P62 GND PCR4102 62 GND PCR4 32 PIR4545 P1.6K01 Q3 GND GND 1.2K801 GND GND GND 52 G G / 12 OC86PICC5050 C636 Q14Q14 C8585 D18D18 470µFPIC501 Semi PI4.7K 61 10µF PI4.7K1 PI4.7K1 PIQ1401MOSFET 51 330µF U3P 676P5PIR7502PIR7501 30BQ060 P61 2.2µF L 2 2IQ1402 R50502 63V DC/DC 10R 10 D s D1414 D D2
in „Verstärker TAS5630“ · Analoge Elektronik und Schaltungstechnik ·
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ATMEGA_128.pdf
(AD3) RXD0/(PDI) PE0 2 47 PA4 (AD4) (TXD0/PDO) PE1 3 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) (T3/INT6) PE6 8 41 PC6 (A14) (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) (OC0) PB4 14 35 PC0 (A8) (OC1A) PB5 15 34 PG1(RD) (OC1B) PB6 16 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 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 S V G T T P P P P P P P P
in „ATMEGA128 Board im Neuhold Newsletter 2/2011“ · Mikrocontroller und Digitale Elektronik ·
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tiny13.pdf
Alternate Functions in PB2..PB0 Signal PB2/SCK/ADC1/ PB1/MISO/AIN1/ PB0/MOSI/AIN0/AREF/ Name T0/PCINT2 OC0B/INT0/PCINT1 OC0A/PCINT0 PUOE 0 0 0 PUOV 0 0 0 DDOE 0 0 0 DDOV 0 0 0 PVOE 0 OC0B Enable OC0A Enable PVOV 0 OC0B OC0A PTOE 0 0 0 DIEOE PCINT2 PCIE + ADC1D PCINT1 PCIE + AIN1D PCINT0 PCIE + AIN0D DIEOV
in „ATtiny13 Datenblatt External Clock Source on T0-Pin“ · Mikrocontroller und Digitale Elektronik ·
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DTMF_AVR.pdf
application a DTMF tone generator is built using one of the 8-bit PWM outputs the DTMF Generator (OC1A) and a sinusoid table with Nc = 128 samples each with n = 7 bits. The following equations show this dependency and shows how the elements of the LUT are calculated: f (x) = 63 6+ × sin ▯----------
in „Frequenzverfahren beim Telefon“ · Mikrocontroller und Digitale Elektronik ·
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doc1982.pdf
PD2 PA1 PA0 PD1 PD0 GND GND GND GND J700 (Expand2) J701 (Expand1) The PWM signal is put out on the OC1A pin (PD5). An additional output filter will help to achieve a good sinusoid. If the PWM frequency is decreased, it can be necessary to implement a steeper filter to obtain a good result. 5 1982B–AVR
in „seriell verkabelte und auslesbare Schalter bzw. Sensoren?“ · Offtopic ·
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ATmega8.pdf
/OC1B on Compare Match, set OC1A/OC1B at BOTTOM, (non-inverting mode) 1 1 Set OC1A/OC1B on Compare Match, clear OC1A/OC1B at BOTTOM, (inverting mode) Note: 1. A special case occurs when OCR1A/OCR1B equals
in „Mikrocontroller und 15'' TFT LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_ATmega32.pdf
between how the counter behaves (counts) and how waveforms are generated on the Output Compare output OC0. For more details about advanced counting sequences and waveform generation, see “Modes of Operation” on page 71. The Timer/Counter Overflow (TOV0) flag is set according to the mode of operation selected
in „Anschwingvorgang µC & Quarz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega16.pdf
between how the counter behaves (counts) and how waveforms are generated on the Output Compare output OC0. For more details about advanced counting sequences and waveform generation, see “Modes of Operation” on page 71. The Timer/Counter Overflow (TOV0) flag is set according to the mode of operation selected
in „DCF auf INT0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
toshiba_satellite_l755.pdf
H45 CLK_PCI_FB C784 27P/50V_4C TP33 PCI_PME# K10 PME# 2 D3A 1110 PCI_PLTRST# C6 +3V_S5 A14 USB_SC_OC#_R R903 U2@0_4 USB_SC_OC# USB_SC_OC# [17,22] AB42 V47 XTAL25_IN Y3 PLTRST# +3V_S5 OC1# / GPIO40 K20 USB_BUS_SW2_R R908 *0_4 USB_BUS_SW2 USB_BUS_SW2 [17,22] AB40 CLKOUT_PEG_B_P XTAL25_OUTN V49 XTAL25_OUT R668 25MHZ_30 +3V_S5 B17 USB_OC2# B2A 10/05 1M_4 1 TP55 CLK_PCI0 H49 +3V_S5 OC2# / GPIO41 C16 USB_BUS_SW3_R R909 *0_4 USB_BUS_SW3 USB_BUS_SW3 [17,22] S3_STRAP E6 +3V_S5 33M TP28 CLK_PCI1 H43 CLKOUT_PCI0 +3V_S5 OC3# / GPIO42 L16 USB_Normal_OC
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PDF
ddr-buch-simson-s51-s70-1-sr50-sr80.pdf
Antriebsritzels und der Kupplung . 68 6.3.5. Einbau des Antriebskettenrades 70 6.3.6. Einbau der Motorelektrik 71 71 6.4. Arbeiten am Elektrostarter . 6.4.1. Aufbau und Wirkungsweise . 71 6.4.2. Reparatur- und Prüfarbeiten 72 4 7. Arbeiten am Nadeldüsen-Schieber-Vergaser 16 N 3 . 77 7.1. Aufbau des Vergasers . :
in „Spannungsbegrenzer für Simson S50 Rücklicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
attiny84.pdf
the Waveform Gen- erator to generate a PWM or variable frequency output on the Output Compare pins (OC0A and OC0B). See “Output Compare Unit” on page 71 for details. The Compare Match event will also set the Compare Flag (OCF0A or OCF0B) which can be used to generate an Output Compare interrupt request
in „Attiny 84 ISP?!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Tiny_Lighthouse.c
compatible with comparisons. #define TRUE (!FALSE) // Gate Trigger Output #define TRIAC_CONTROL_PIN PB1 // OC1A Timer 1 Channel A // Input for mains frequency #define MAINS_FREQUENCY_PIN PB2 // PCINT2 and T0 #define TEST_PIN PB0 // which is also OC0A // #define PROGRAM_PIN_0 PB3 #define PROGRAM_PIN_1 PB4 #define
in „LED Fader mit NE555 fadet nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MB997.pdf
Number:MB997 Rev:B.2(PCB.SCH) Date1/9/2012 Shee3 of 6 1 2 3 4 1 2 3 4 A A 0 I1 R616 R626 51 51 02 I0 01OC54 I1 OC55 U7U 020.022uF 0.022uF 2 CN4N4 Audio_SDA PB9B9 1 15 P I C N 4 0 2 Audio_SCL P PB9 B 9 PB6B PI2701SDA HP/LINE_OUTA PI14015 P PB6 B 6 PI3702SCL HP/LINE_OUTB PI31014 3 PIU703A0 SPKR/HP PIU7031
in „Mit STM32F4 einen Laser ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XMega-FPGA_V0.0.01.pdf
27 PD2 PK2 77 C_PROG_TDO/1.3C C_UART_TXD/4.7C 28 PD3 PK3 78 C_PROG_TDI/1.3C 29 79 C_PWM_OC1A/4.7C 30 PD4 PK4 80 C_PROG_TCK/1.3C C_PWM_OC1B/4.7C 31 PD5 PK5 81 C_PROG_TMS/1.3C C_USB_D /1.5E PD6 PK6 C_FPGA_A19/3.6D C_USB_D+/1.5E 32 PD7 PK7 82 C_FPGA_A20/3.6D C_PWM_8/4.5B 35 PE0 PQ0 85 C_FPGA_STROBE
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PDF
A3967-Datasheet.pdf
%) (%) 1 1 1 100.00 0.00 0.0 2 98.08 19.51 11.3 2 3 92.39 38.27 22.5 4 83.15 55.56 33.8 1 2 3 5 70.71 70.71 45.0 6 55.56 83.15 56.3 4 7 38.27 92.39 67.5 8 19.51 98.08 78.8 3 5 9 0.00 100.00 90.0 10 –19.51 98.08 101.3 6 11 –38.27 92.39 112.5 12 –55.56 83.15 123.8 2 4 7 13 –70.71 70.71 135.0 14 –83.15
in „Vref Dual Step Motor Shield (Arduino) iteadstudio.com“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
, 69,70,71,71,71,71,71,71,71,71,72,72,72,73,73,74, 75,75,76,77,78,79,80,81,82,83,84,86,88,91,93,96, 98,100,102,104,107,109,112,115,118,121,123,125, 126,127,127,127,127,127,126,125,124,121,119,116, 113,109,105,102,98,95,92,89,87,84,81,79,77,76,75, 74,73,72,70,69,68,67,67,67,68,68,68,69,69,69,69, 69,69,69,70,71,72,73,73,74,74,75,75,75,75,75,75, 74,74,73,73,73,73,72,72,72,71,71,71,71,71,71,71, 70,70,70,69,69,69,69,69,70,70,70,69,68,68,67,67, 67,67,66,66,66,65,65,65,65,65,65,65,65,64,64,63, 63,64,64,65,65,65,65,65,65,65,64,64,64,64,64,64
in „Falsche Ausgangsfrequenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmega32.pdf
by the waveform generator to generate a PWM or variable frequency output on the Output Compare Pin (OC0). See “Output Compare 69 2503Q–AVR–02/11 ATmega32(L) Unit” on page 71. for details. The compare match event will also set the Compare Flag (OCF0) which can be used to generate an output compare interrupt
in „STK500 als ISP“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VAR-DT6CUSTOMBOARD_SCH_V1_1_Doc_V1_2.pdf
14 USB_OTG_VBUS GPIO1_4 13 GPIO1_4 4 16 GEN_2V5 (GPIO1[28])ENET_TX_EN 15 USB_H1_PWR_EN 5 5 USB_H1_OC 18 17 Note: 20 USB_H1_OC(GPIO3[30]) GND 19 Following Pins are latched on Boot, 22 GND PCIE_TXP 21 PCIE_TXP 7 10k Pull-Down Resistors must be placed on lines. B 5 USB_HOST_DN 24 USB_HOST_DN PCIE_TXM 23
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PDF
74245.PDF
DC V CC or Ground Current 〉 70 mA PD Power Dissipation 500 (*) mW T Storage Temperature -65 to +150 oC stg TL Lead Temperature (10 sec) 300 oC AbsoluteMaximomRatingsarethose values oeyono whichoamage tothedevicemayoccur. Functional operationunder theseconditionisnotimplied. (*)500 mW: ≅ 65 C derate to300
in „Schema von 74245“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan.pdf
GND C C J1A J1B J1C A V IC2 C D A1 D B1 D C1 C8 1 2 D A2 D B2 D C2 5 4 VCC VCC N A3 N B3 N C3 R R P71. A4 GP4.1B4 D1 C4 6 7 P7.2 A5 P4.2B5 D2 C5 WDI RST C9 P7.3 A6 P4.3B6 D3 C6 3 P7.4 A7 P4.4B7 D4 C7 4 GND 8 P7.5 A8 P4.5B8 D5 C8 GND GND P7.6 A9 P4.6B9 D6 C9 MAX699CPA P7.7 A10 P4.710 D7 C10 GND P8.0 A11
in „80C537 System“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tiny13_doc2535.pdf
Alternate Functions in PB2..PB0 Signal PB2/SCK/ADC1/ PB1/MISO/AIN1/ PB0/MOSI/AIN0/AREF/ Name T0/PCINT2 OC0B/INT0/PCINT1 OC0A/PCINT0 PUOE 0 0 0 PUOV 0 0 0 DDOE 0 0 0 DDOV 0 0 0 PVOE 0 OC0B Enable OC0A Enable PVOV 0 OC0B OC0A PTOE 0 0 0 DIEOE PCINT2 PCIE + ADC1D PCINT1 PCIE + AIN1D PCINT0 PCIE + AIN0D DIEOV
in „Atmel AVRs: SRAM so unwichtig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hc11dat.pdf
DDRD $100A PE7 PE6 PE5 PE4 PE3 PE2 PE1 PE0 PORTE $100B FOC1 FOC2 FOC3 FOC4 FOC5 0 0 0 CFORC $100C OC1M7 OC1M6 OC1M5 OC1M4 OC1M3 0 0 0 OC1M $100D OC1D7 OC1D6 OC1D5 OC1D4 OC1D3 0 0 0 OC1D $100E Bit 15 14 13 12 11 10 9 Bit 8 TCNT (High) $100F Bit 7 6 5 4 3 2 1 Bit 0 TCNT (Low) $1010 Bit 15 14 13 12 11
in „68HC11 MC68HC11 Layout gesucht PLCC68“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC68HC11F1FN.pdf
DDRD $100A PE7 PE6 PE5 PE4 PE3 PE2 PE1 PE0 PORTE $100B FOC1 FOC2 FOC3 FOC4 FOC5 0 0 0 CFORC $100C OC1M7 OC1M6 OC1M5 OC1M4 OC1M3 0 0 0 OC1M $100D OC1D7 OC1D6 OC1D5 OC1D4 OC1D3 0 0 0 OC1D $100E Bit 15 14 13 12 11 10 9 Bit 8 TCNT (High) $100F Bit 7 6 5 4 3 2 1 Bit 0 TCNT (Low) $1010 Bit 15 14 13 12 11
in „MC68HC11F1FN (EEPROM) von Motorola zu verkaufen“ · Markt ·
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TS13003_D07.pdf
TO-92 1.5 Total Power Dissipation @ Tc= 25 C Ptot W TO-126 30 Operating Junction Temperature T +150 oC J Operating Junction and Storage Temperature Range TSTG - 55 to +150 oC Thermal Performance Parameter Symbol Limit Unit TO-92 122 o Junction to Ambient Thermal Resistance RӨJA 90 C/W TO-126 1/6 Version
in „Transistor "13003" (TO92)“ · Mikrocontroller und Digitale Elektronik ·
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CPV-Modoul_3C44_AzurDesign_EFA_10x10.pdf
Cell Application: Concentrating Photovoltaic (CPV) Modules Typical Average Electrical Data Sun Isc V oc IMPP V MPP PMPP FF Ŋ Concentration [A] [V] [A] [V] [W MPP] [%] [%] Version MC/Air Grid optimized for medium concentration + Antireflective Coating adapted to air X 250 3,85 3,06 3,77 2,80 10,59 89,9%
in „Sonnenernte loggen, Photovoltaik, PV-Anlagen, Solarmodule, PV-Laderegler“ · Haus & Smart Home ·
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PDF
TS13003_D07.pdf
TO-92 1.5 Total Power Dissipation @ Tc= 25 C Ptot W TO-126 30 Operating Junction Temperature T +150 oC J Operating Junction and Storage Temperature Range TSTG - 55 to +150 oC Thermal Performance Parameter Symbol Limit Unit TO-92 122 o Junction to Ambient Thermal Resistance RӨJA 90 C/W TO-126 1/6 Version
in „Reparatur EVG für T5 Röhre“ · Analoge Elektronik und Schaltungstechnik ·
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TAS5611.pdf
TD D D D SC C C CN N VV S U UV V N PSU_REF 1 44 GVDD_AB V P NN N NG G GG B O OP P G VDD 2 43 BST_A OC_ADJ 3 42 PVDD_A 6 6 6 6 6 5 5 5 5 5 5 5 5 5 5 RESET 4 41 PVDD_A OC_ADJ 1 48 GND_A C_STARTUP 5 40 OUT_A RESET 2 47 GND_B C_STARTUP 3 46 GND_B INPUT_A 6 39 OUT_A INPUT_A 4 45 OUT_B INPUT_B 7 38 GND_A INPUT_B
in „TAS5611 Layout erfahrung“ · Mikrocontroller und Digitale Elektronik ·
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AVR_ATtiny_24_44_84.pdf
the Waveform Gen- erator to generate a PWM or variable frequency output on the Output Compare pins (OC0A and OC0B). See “Output Compare Unit” on page 71 for details. The Compare Match event will also set the Compare Flag (OCF0A or OCF0B) which can be used to generate an Output Compare interrupt request
in „AVR Programm brennen ohne Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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Littelfuse_PTC_SMD_Catalog_Datasheet.pdf-1021736.pdf
6.00 6.71 0.56 0.71 0.56 0.71 3.68 3.94 0.66 1.37 0.43 S4 (0.315) (0.370) — (0.118) (0.236) (0.264) (0.022) (0.028) (0.022) (0.028) (0.145) (0.155) (0.026) (0.054) (0.017) SMD150F/33 8.00 9.40 — 3.00 6.00 6.71
in „[V] 24 St. Selbstrückstellende Polyswitch SMD Littlefuse SMD200F-2 2A/15V“ · Markt ·
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doc7707.pdf
and SPI SLAVE INPUT.. Table 11-4. Overriding Signals for Alternate Functions in PB7..PB4 Signal PB7/OC0A/OC1C/PCI Name NT7 PB6/PCINT6 PB5/PCINT5 PB4/T1/PCINT4 PUOE 0 0 0 0 PUOV 0 0 0 0 DDOE 0 0 0 0 DDOV 0 0 0 0 PVOE OC0A/OC1C ENABLE 0 0 0 PVOV OC0A/OC1C 0 0 0 DIEOE PCINT7 PCIE0 PCINT6 PCIE0 PCINT5 PCIE0
in „AVR (AT90USB162) - Sleep Mode und PCINT“ · Mikrocontroller und Digitale Elektronik ·
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ATM16_doc2466.pdf
by the waveform generator to generate a PWM or variable frequency output on the Output Compare Pin (OC0). See “Output Compare 71 2466P–AVR–08/07 Unit” on page 73. for details. The compare match event will also set the Compare Flag (OCF0) which can be used to generate an output compare interrupt request
in „ISP - Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·