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l7987.pdf
monotonically. The soft-start is performed by charging an external capacitor, connected between the SS pin and ground, with a constant current (5 µA typ.). The SS voltage is used as reference of the switching regulator and the output voltage of the converter tracks the ramp of the SS voltage. When the
in „L7987, wie Output regeln?“ · Analoge Elektronik und Schaltungstechnik ·
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ym480x240a.pdf
CHARACTERISTICS STANDARD VALUE ITEM SYMBOL CONDITIONS UNIT MIN TYP MAX POWER SUPPLY VOLTAGE VDD-V SS Ta= +25℃ 3.0 3.3 3.6 V POWER SUPPLY FOR LCD DRIVING Vlcd Ta= +25℃ - 24.0 - V INPUT VOLTAGE “H” LEVEL VIH - 0.8DD - VDD V INPUT VOLTAGE “L” LEVEL VIL - VSS - 0.2VDD V OUTPUT VOLTAGE “H” LEVEL V OH OH
in „grafik.LCD display ansteuern möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTM8054.pdf
IINMONVoltage LTM8054 in Input Current Limit 0.96 1.04 V IOUTMON Voltage LTM8054 in Output Current Limit 1.14 1.26 V CTL Input Bias Current VCTL= 0V 22 µA SS Pin Current VSS = 0V 35 µA CLKOUT Output High 10k to GND 4 V CLKOUT Output Low 10k to 5V 0.7 V SYNC Input Low Threshold 0.3 V SYNC Input High Threshold
in „DC/DC Wandler (Step Down) gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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DSA0079368.pdf
(99 × 13 × 106m ) PIN DESCRIPTION E Pin Data read or write operation enable signal pin. V DD and V SS Pins DB to DB Pins VDD and V SS pins are for power supply. V SS pin is 0 7 grounded, and V DD pin is supplied with +5 V. Each Tri-statebidirectionaldatabuspins.Thebusallows voltage necessary to drive
in „Pin Belegung LCD 1x16 Sharp LM16152“ · Mikrocontroller und Digitale Elektronik ·
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DE2012010361.pdf
R1 0 R8 1 10k C1 C2 C3 10mH R9 150p 270p 1n8 56k 3 R2 R3 R4 R5 R6 R7 J1 1 5 10 12 U1A 9k31 20k 7k15 14k3 3k65 4k22 14 1 CD1 2 U1B 7 U1C 8 U1D 3 2 6 9 13 1 U2A 3 R10 2 1 TO ACTIVE ANTENNA R11 C8 C4 C5 C6 C7 1 A3V3 4n7 120p 120p 120p 4n7 BSR18A A3V3 = mica 1% C9 Q1 = metal film 1% J4 10n R12 1 4 8 R13 R14
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CD00277537.pdf
(3) S V - LCD LCD PC13- 7 2 A2 C1 2 I/O FT PC13 RTC_TAMP1/RTC_TS/RTC_OUT/WKUP2 WKUP2 8 3 A1 D1 3 PC14- (4) I/O TC PC14 OSC32_IN OSC32_IN PC15- 9 4 B1 E1 4 OSC32_OUT I/O TC PC15 OSC32_OUT (4) 10 - - F2 - V SS_5 S - VSS_5 - 11 - - G2 - VDD_5 S - VDD_5 - 12 5 C1 F1 5 PH0- I/O TC PH0 OSC_IN OSC_IN (5) PH1
in „SPI-Schnittstelle Befehl: SPI_I2S_SendData(spi2, data)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
r5f2136cy.inc
--------------------------------------------------------------------------- ; DTC Control Register 14 ;------------------------------------------------------------------------------------ .equ DTCCR14 , 0x2CB0 .equ MODE_DTCCR14 , 0 .equ RPTSEL_DTCCR14 , 1 .equ SAMOD_DTCCR14 , 2 .equ DAMOD_DTCCR14 , 3 .equ CHNE_DTCCR14 , 4 .equ RPTINT_DTCCR14 , 5 ;------------------------------------------------------------------------------------ ; DTC Block Size Register 14 ;-------------------------------------------------------
in „Universelle Mikrocontroller Toolchain (Linux)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
adresse001.asm
.dw 0x0316,0xEF15,0xDB15,0xC615,0xB215,0x9E15,0x8A15,0x7615,0x6215,0x4E15,0x3A15,0x2615,0x1215,0xFE14,0xEA14,0xD614 .dw 0xC214,0xAE14,0x9B14,0x8714,0x7314,0x6014,0x4C14,0x3814,0x2414,0x1114,0xFD13,0xEA13,0xD613,0xC213,0xAF13,0x9B13 .dw 0x8813,0x7413,0x6013,0x4D13,0x3913,0x2513,0x1213,0xFE12,0xEB12,0xD712,0xC312,0xAF12,0x9C12,0x8812,0x7412,0x6112
in „Migration AT90S4433 -> ATMega8“ · Mikrocontroller und Digitale Elektronik ·
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AM27C010.pdf
DIP PLCC ) # VPP 1 32 VCC ( # A16 2 31 PGM# (P#) 1 1 6 P C G C A15 3 30 NC A A A V V P N A12 4 29 A14 4 3 2 1 32 31 30 A7 5 28 A13 A7 5 29 A14 A6 6 28 A13 A6 6 27 A8 A5 7 26 A9 A5 7 27 A8 A4 8 26 A9 A4 8 25 A11 A3 9 25 A11 A3 9 24 OE# (G#) A2 10 23 A2 10 24 OE# (G#) A10 A1 11 23 A10 A1 11 22 CE# (E#) A0 12 22 CE# (E#) A0 12 21 DQ7 DQ0 13 21 DQ7 DQ0 13 20 DQ6 14 15 16 17 18 19 20 DQ1 14 19 DQ5 1 2 S 3 4 5 6 DQ2 15 18 DQ4 D D V D D D D 10205I-3 V SS 16 17 DQ3 10205I-2 Notes: 1. JEDEC nomenclature is in parenthesis. 2. The 32-pin DIP to 32-pin PLCC configuration
in „OTP "E"EPROM programmieren amd 27c010“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
12] = makeGraphLine1(fftBuffer[12]); databufferG1[13] = makeGraphLine1(fftBuffer[13]); databufferG1[14] = makeGraphLine1(fftBuffer[14]); databufferG1[15] = makeGraphLine1(fftBuffer[15]); databufferG2[0] = makeGraphLine1(fftBuffer[16]); databufferG2[1] = makeGraphLine1(fftBuffer[17]); databufferG2[2] =
in „AVR Controller Spinnt Probleme mit 16Bit Variabeln!?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
log_avr.txt
.......... 14 00 03 0E 03 00 00 01 1B 15 00 03 0E 03 00 01 ................ 01 1B 16 00 02 0E 10 00 11 1B 17 00 04 0E 18 00 ................ 06 00 18 1B 18 00 04 0E 18 00 DF 00 CE 1B 19 00 ..........ß.Î... 04 0E 18
in „seriell ISP sehr langsam“ · Mikrocontroller und Digitale Elektronik ·
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Arduino-UNO-Rev3e-SCH.pdf
MOSI 11 1 P X2 MF-MSMF050-2 500mA C 2 XT2z 1 (PD0/MISO/PCINT3)PB3 17 MISO2 T D 41 RESET (SCK)PB5 19 SS 3 10 P 9 22R RN3A p H 1 Y 2 XTAL2(PC0) (PDI/MOSI/PCINT2)PB2 16 MOSI2 D C S (MISO)PB4 18 2 9 8 P 1 XUSB 8 1 N 9 2 6 R1 (SCLK/PCINT1)PB1 15 SCK2 GND XTAL2 T (MOSI)PB3 17 1 8 P T D B 2 D- RD- G C 1 1M 1 XTAL1 (SS/PCINT0)PB0 14 R2 10 XTAL2 (SS)PB2 16 SS T D 2 1 3 D+ T XT1 2 XT1 T 1M (OC1)PB1 15 IO9 IOH P P 4 E 22E5RN3D4 RD+ _ _ XTAL1 9 14 IO8 6x1F-H8.5 0 0 T 32 22 n T CSTCE16M0V53-R0 16MHZ XTAL1 (ICP)PB0 6 A C
in „Arduino UNO an 4fach Relais“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Arduino-UNO-Rev3e-SCH.pdf
MOSI 11 1 P X2 MF-MSMF050-2 500mA C 2 XT2z 1 (PD0/MISO/PCINT3)PB3 17 MISO2 T D 41 RESET (SCK)PB5 19 SS 3 10 P 9 22R RN3A p H 1 Y 2 XTAL2(PC0) (PDI/MOSI/PCINT2)PB2 16 MOSI2 D C S (MISO)PB4 18 2 9 8 P 1 XUSB 8 1 N 9 2 6 R1 (SCLK/PCINT1)PB1 15 SCK2 GND XTAL2 T (MOSI)PB3 17 1 8 P T D B 2 D- RD- G C 1 1M 1 XTAL1 (SS/PCINT0)PB0 14 R2 10 XTAL2 (SS)PB2 16 SS T D 2 1 3 D+ T XT1 2 XT1 T 1M (OC1)PB1 15 IO9 IOH P P 4 E 22E5RN3D4 RD+ _ _ XTAL1 9 14 IO8 6x1F-H8.5 0 0 T 32 22 n T CSTCE16M0V53-R0 16MHZ XTAL1 (ICP)PB0 6 A C
in „Arduino Ethernet Shield Sketches auf Arduino laden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Arduino-UNO-Rev3e-SCH.pdf
MOSI 11 1 P X2 MF-MSMF050-2 500mA C 2 XT2z 1 (PD0/MISO/PCINT3)PB3 17 MISO2 T D 41 RESET (SCK)PB5 19 SS 3 10 P 9 22R RN3A p H 1 Y 2 XTAL2(PC0) (PDI/MOSI/PCINT2)PB2 16 MOSI2 D C S (MISO)PB4 18 2 9 8 P 1 XUSB 8 1 N 9 2 6 R1 (SCLK/PCINT1)PB1 15 SCK2 GND XTAL2 T (MOSI)PB3 17 1 8 P T D B 2 D- RD- G C 1 1M 1 XTAL1 (SS/PCINT0)PB0 14 R2 10 XTAL2 (SS)PB2 16 SS T D 2 1 3 D+ T XT1 2 XT1 T 1M (OC1)PB1 15 IO9 IOH P P 4 E 22E5RN3D4 RD+ _ _ XTAL1 9 14 IO8 6x1F-H8.5 0 0 T 32 22 n T CSTCE16M0V53-R0 16MHZ XTAL1 (ICP)PB0 6 A C
in „Arduino 5V auf 3V regeln 40mA“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Spezifikation.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
in „SPI, ISP, USI, TWI, I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
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PDF
Spezifikation.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
in „I²c mit Bascom und ATmega“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
in „Reset auf I2C-Bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Philips_Semiconductors_-_I2C_Bus_Specification_v2.1.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
in „GND-Fäche sinnvoll???“ · Platinen ·
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PDF
Spezifikation.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
in „i2c und Takt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
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PDF
Spezifikation.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
in „I2C Speicher HotSwap?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
in „I²C Bus Schnittstelle extern ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_BUS_SPECIFICATION_3.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
in „SPI oder TWI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
in „Unterschied Defintion I²C und SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
i2c_bus_specification_3.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
in „IIC-Bus Verständnisfrage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_SPEC.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
in „I2C abstrakt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_SPEC.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
in „I2C programmieren lernen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
39340011.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
in „Problem mit I²C-Device“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_SPEC.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
in „was bedeutet acknowleges bei SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
philips_i2c.pdf
SDA SCL SDAH SCLH SDA SCL (2) (2) (2) (2) (2) (2) (2) (2) MCS MCS (4) (4) (3) (3) VDD VDD V V V V SS SS SS SS SLAVE SLAVE MASTER/SLAVE MASTER/SLAVE MSC612 (1) SDA and SCL are not used here but may be used for other functions. (2) To input filter. (3) Only the active master can enable its current-source
in „wie sieht ein i2c protokoll aus?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Arduino_Mega_schematics.pdf
11 GND (SCK/PCINT1)PB1 20 PB1 (SCK) PH6 pwm 9 9 S m n 32 GND 19 PB0 PH5 pwm 10 8 E S t w D 62 GND (SS/PCINT0)PB0 R E o t 18x2F-H8.5 G 81 60 PC7 X I s o 36 35 GND (A15)PC7 59 PC6 , g o i 53 PB0 34 33 PB1 52 (A14)PC6 58 PC5 S R o s a i 51 PB2 (SS) 32 31 (SCK) PB3 50 GND (A13)PC5 57 PC4 I t e h s d 49 PL0
in „Arduino Mega 2560, schaltschranktauglich“ · Projekte & Code ·
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PDF
spi_differential_apnote_ti.pdf
acts as a slave. The master provides clock (SPICLK), slave in master out (SIMO), and slave select (SS). The slave provides data to the master via the slave-out-master-in (SOMI) line. The master controls the data flow over the SPI, since data can only flow when both the SS is low (active low) and the
in „SPI mit (M-)LVDS-Technik - Bitte um Konzeptbewertung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Fragen_und_Antworten_zur_fachlichen_Pruefung_fuer_Funkamateure_BAPT_1988.pdf
|e:gs"täsign6to*e. -5 - 1 . 2 . 40 :i::ä#::et:::!:ääfr*:::m£:#;%okü3.:qw;sgeti:fs=er:ä:agt L. Icn "ß auf 14Z90 kllz oda` da`über rufen. - 5 - 1 . 2 . 41 W£ ?::;::e£e8iegga|S`S8:9:6tdah3t?in Funkamateur mit .VK auf L.?i:i:eekrbtind::g:s:ifga#ggenAuw:grgä::ng3%:gng::g;TnwaJeJ;z¥ stande gekmmn. - 5 - ü
in „Neuer Fragenkatalog für die Amateurfunkprüfung“ · HF, Funk und Felder ·
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h-bridge-driver_hip4081a.pdf
DELAY TO V (PIN 16) DBS DD DIS 3 VCC 15 DRIVER ALO +12VDC TURN-ON 13 BIAS ALI 6 DELAY SUPPLY CBF ALS 14 HDEL 8 LDEL 9 VSS 4 FN3659 Rev.9.00 Page 2 of 18 Feb12, 2020 HIP4081A Typical Application (PWM Mode Switching) 80V 1 BHB BHO 20 12V 2 BHI BHS 19 A LOAD DIS 3 DIS 8BLO 18 4 4 V SS IBLS 17 PWM BLI / INPUT
in „Motorsteuerung AVR Atmega per ISP flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RDM630-Spec.pdf
byte, form as below:- : D37 D36 D35 D34 D33 D32 D31 D30 D27 D26 D25 D24 D23 D22 D21 D20 D17 D16 D15 D14 D13 D12 D11 D10 D07 D06 D05 D04 D03 D02 D01 D00 Wiegand Format 26 bits format form by 26 bits data which including 24 bit user data and 2 bit parity bit. As far as module concerned, former 12bit of 24
in „RFID RDM 630 - Checksum“ · Mikrocontroller und Digitale Elektronik ·
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hexa_schaltung.pdf
22-23-2041 J 1 1 L 31 AVCC 8 X10-1 1 2 D 22-23-2021 2 S T GND (SCK)PB7 X10-2 + 270 LED4 D E X6-1 R14 LED5 (MISO)PB6 7 X10-3 V MEGA8-P N L X6-2 10 VCC (MOSI)PB5 6 X10-4 X11-2 R12 270 LED7 D 4053N 10k 11 GND (SS)PB4 5 X11-1 +C12 1 PC6(/RESET) PC0(ADC0) 23 N C 9 2 (AIN1/OC0)PB3 4 270 LED2 22-23-2021 10k
in „ISP zerschiesst Atmegas?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
untitled.pdf
1 V 0 G 1 4,7k LED1 100n A GND D 100n IC1P34 C5 D L1 green V + A G G 1 2 F2 V C7 10n 6 55 1 V MISC 14µH C13PFRA050 D3 0 0 IC2 C9 100n SMBJ 11A 1 R OPA171 - GND 5 X4 10µ 50V 3 7+VS 10µ 50V V , 1 C15 D + 6 R32 D 2 3 N 2 N + 7,5 22 2 100n D1 G - 4-VS 10 C8 G V C14 SMBJ 11A 0 3 C12 + - C3 18,5 4,6 24 ...
in „HF Linearverstärker für Messzwecke“ · HF, Funk und Felder ·
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PDF
M27C1001.PDF
M27C1001 is offered in PDIP32, PLCC32 and TSOP32 (8 x 20 mm) packages. 17 8 A0-A16 Q0-Q7 P M27C1001 E G V SS AI00710B June 2002 1/17 M27C1001 Figure 2A. DIP Connections Figure 2B. LCC Connections VPP 1 32 VCC A16 2 31 P 2 5 6 P C A A A V V P N C A15 3 30 NC A12 4 29 A14 1 32 A7 A14 A7 5 28 A13 A6 6 27 A8 A6
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MC9S08DZ60.pdf
P 32 25 31 30 29 28 27 26 PTA7/PIA7/ADP7/IRQ 1 24 PTB1/PIB1/ADP9 VDD 2 23 PTA0/PIA0/ADP0/MCLK V 22 SS 3 PTB0/PIB0/ADP8 PTG0/EXTAL 4 21 BKGD/MS 32-Pin LQFP PTG1/XTAL 5 20 PTD5/PID5/TPM1CH3 RESET 6 19 PTD4/PID4/TPM1CH2 18 PTE0/TxD1 7 PTD3/PID3/TPM1CH1 PTE1/RxD1 8 17 PTD2/PID2/TPM1CH0 10 11 12 13 14 15
in „Delay Funktion für Freescale“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PSpice_LibraryguideOrCAD.pdf
Epcos Metal Oxide Varistor S14K14 S14K11/SIE SIEMENS.OLB Epcos Metal Oxide Varistor S14K140 S14K300/SIE SIEMENS.OLB Epcos Metal Oxide Varistor S14K14AUTO S14K115/SIE SIEMENS.OLB Epcos Metal Oxide Varistor S14K14AUTOD1 S14K130/SIE
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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Bruecke.sch.pdf
PCB mit max Kupferauflage auf Federklemmblöcke WAGO2716 15 S13 D D D D D 0 2 0 15 S13 D D D D D FK2 14 S12 3 R 2 R1 2 14 S12 1 - 10V-Highside-Gatedriver mit 10µ 100V Bootstrap-C (7.5µF effektiv) 13 S9 8 7 6 5 4 3 2 1 R 1 13 S9 8 7 6 5 4 3 2 1 2 - 2x5kW oder 1x 8kW-Z-Diode 8.0SMDJ51A bleibt bis 60V kalt
in „DIY 10kW/20kWh eta=99% Insel ESS Projektvorstellung“ · Haus & Smart Home ·
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Sony_STR-DE585_Service_Manual.pdf
(AEP,UK) CC14 1-127-876-21 CERAMIC 0.01uF 10% 50V D722 8-719-991-33 DIODE 1SS133T-77 (AEP,UK) D731 8-719-991-33 DIODE 1SS133T-77 CC16 1-127-876-21 CERAMIC 0.01uF 10% 50V D732 8-719-991-33 DIODE 1SS133T-77 (AEP,UK) D733 8-719-991-33 DIODE 1SS133T-77 D734 8-719-991-33 DIODE 1SS133T-77 CC18 1-127-876-21 CERAMIC 0.01uF 10% 50V (AEP,UK) D740 8-719-991-33 DIODE 1SS133T-77 CC20 1-127-876-21 CERAMIC 0.01uF 10% 50V D750 8-719-991-33 DIODE 1SS133T
in „Reparaturanleitung Sony STR-DE585 FM STEREO/FM-AM RECEIVER Surround“ · Mikrocontroller und Digitale Elektronik ·
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Datei
simstruc.h
rtwSfcnInfo; /* Used only in RTW by the S-function */ void* unused; struct _ssPortInfo2 *portInfo2; void *reservedPtrs[14]; int_T reserved[16]; }; struct _ssBlkInfo { int_T inputConnected; /* Is input connected to a non-virtual block? */ int_T outputConnected; /* Is output connected
in „no such instruction 'sei'“ · Mikrocontroller und Digitale Elektronik ·
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mcp23009.pdf
I R SSOP VDD 1 20 V SS NC 2 19 NC SCL 3 18 NC SDA 4 17 GP7 ADDR 5 16 GP6 RESET 6 15 GP5 INT 7 14 GP4 GP0 8 13 GP3 GP1 9 12 GP2 NC 10 11 NC * Includes Exposed Thermal Pad (EP); see Table 1-1 and.Table 1-2 Package Types: MCP23S09 PDIP/SOIC QFN * G G G G 7 P6P 5 4 VDD 1 18 V SS NC 2 17 NC 6 5 4 3 CS 3 16 GP7 VSS 1 12 GP3 SCK 2 EP 11 GP2 SCK 4 15 GP6 17 SI 5 14 GP5 V DD 3 10 GP1 SO 6 13 GP4 CS 4 9 GP0 5 6 7 8 RESET 7 12 GP3 I INT 8 11 GP2 S O E T S S I GP0 9 10 GP1 R * Includes
in „Frage zu SPI und MCP23S09“ · Mikrocontroller und Digitale Elektronik ·
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RE5VL-RICOH.pdf
5 R 5VL ABSOLUTE MAXIMUM RATINGS Topt=25˚C Symbol Item Rating Unit VDD Supply Voltage 12 V CMOS V SS–0.3 to DD+0.3 VOUT Output Voltage V Nch V SS–0.3 to 12 IOUT Output Current 70 mA PD1 Power Dissipation 1 NOTE1) 300 mW PD2 Power Dissipation 2 NOTE2) 150 mW Topt Operating Temperature Range –30 to +80
in „12V Tiefentladeschutz ohne Eigenverbrauch“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RE5VL-RICOH.pdf
5 R 5VL ABSOLUTE MAXIMUM RATINGS Topt=25˚C Symbol Item Rating Unit VDD Supply Voltage 12 V CMOS V SS–0.3 to DD+0.3 VOUT Output Voltage V Nch V SS–0.3 to 12 IOUT Output Current 70 mA PD1 Power Dissipation 1 NOTE1) 300 mW PD2 Power Dissipation 2 NOTE2) 150 mW Topt Operating Temperature Range –30 to +80
in „Wie sprunghafte Bereitstellung der Betriebsspannung für MC realisieren?“ · Mikrocontroller und Digitale Elektronik ·
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Schottky_crossreference.pdf
SENSITRON 1N5818 1N5818 SB360 31DQ06 1N5819 1N5819 SB5100 50SQ100 1N5822 1N5822 SB580 50SQ080 BAT54 BAT54 SS12 CMSH1-20M BAT54A BAT54A SS14 10MQ040N BAT54C BAT54C SS16 10MQ060N BAT54S BAT54S SS22 CMSH2-20 FMKA140 10MQ040N SS24 CMSH2-40 FMKA140 CMSH1-40M SS26 CMSH2-60 FYP1504DN 15CTQ040 SS34 30BQ040 FYP2004DN
in „Ersatztyp für Schottky Diode 11dq06“ · Mikrocontroller und Digitale Elektronik ·
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1P138-00_01_E2271CS021_20160907.pdf
Characteristics........................................................................................14 3.1 Absolute Maximum Ratings of Panel..............................................................14 3.2 Recommended Operation Conditions of Panel.................................................14
in „e Papier einzelne Bildpunkte setzen“ · Mikrocontroller und Digitale Elektronik ·
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PIC_Testboard.pdf
R10 _ 5 6 26 8 +5V N RA4/C1OUT/CPS6/T0CKI/SRQ/SEG4 SEG8/DT/RX/RC7 120 O 6 7 RA5/AN4/C2OUT/CPS7/SRNQ/SS/VCAP/SEG5 P14 grün BARREL_JACK C 7 14 RA6/OSC2/CLKOUT/VCAP/SEG1 COM3/CPS8/RD0 19 1 2 1 2 8 13 20 2 3 RA7/OSC1/CLKIN/SEG2 CCP4/CPS9/RD1 8 D9 P2B/CPS10/RD2 21 3 0 F1 1 22 4 1 F_Small SEG16/P2C/CPS11/RD3