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PDF
SH1106_datasheet.pdf
IM2 D7 D6 D5 D4 D3 D2 D1 D0 (SA0) (E) (R/W) (SI/SDA) (SCL) 2 V0.1 SH1106 Pad Configuration (TBD) 10 SS SS 1 7 3 2 6 M M M M C C C C Chip Outline Dimensions Item Pad No. Size (µm) X Y Chip boundary - 5060 814 Chip height All pads 300 I/O 40 80 SEG 15 110 COM 15 110 Bump size COM36~63 15 110 COM0~35 110
in „SH1106 Init-Sequenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan.pdf
!! 3 1 5 + VIN D VOUT C31 3 N 4 C32 I ON/OFF GBYPASS 10nF 7 V C IO 1uF LP2992 10uF 2 + V 2 C30 C24C34 100nF 100n1F00n1F00nF100nF 100nF 100nF 100nF C1100nF 100nF 100nF 100nF 100nF 100nF 100nF100nF100nF GND C23F C22C38C10 C9 C8 C5 C2 10uFC29 C21 C20 C16 C12 C11 10uF C35 C36 C37 10 100nF D R1 G A GND V
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Cube.pdf
2 100n 19 RTS 11 SRCK 13 SRCK DRAIN 717 R2 8 7 U 1 RESET CTS 2 E E 3 SER IN DRAIN 616 R3 6 5 C31 C34 27 DTR 9 L _ DRAIN 515 R4 4 3 L1 28 OSCI DSR 10 D D V DRAIN 414 R5 2 1 X1 10n OSCO DCD 6 X X 5 2 7 R6 RI T R + 10 Vcc DRAIN 36 R7 GND GND DRAIN 2 R8 GND 5 CBUS0 23 100n 11 GND DRAIN 15 R9 + CBUS1 22
in „Cube - Bitte Schaltplan und Layout überprüfen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Controller_neu_final.pdf
V_REF 5 RA3/AN3/VREF+ RB3/AN9/CCP2/VPO 36 LED -15V 6 RA4/T0CKI/CIOUT/RCV RB2/AN8/INT2/VMO 35 PWM C34 +C33 GND GND 100n BAT 7 RA5/AN4/SS/HLVDIN/C2OUT RB1/AN10/INT1/SCK/SCL 34 RPM +15V_T1 8 RE0/AN5/CK1SPP RB0/AN12/INT0/LFT0/SDI/SDA33 BRAKE_SIGNAL 100n 47u 3 9 32 3 10 RE1/AN6/CK2SPP VDD 31 C18 + C174 N
in „MOSFET´s für H-Brücke, wie viele ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Controller_neu_final.pdf
V_REF 5 RA3/AN3/VREF+ RB3/AN9/CCP2/VPO 36 LED -15V 6 RA4/T0CKI/CIOUT/RCV RB2/AN8/INT2/VMO 35 PWM C34 +C33 GND GND 100n BAT 7 RA5/AN4/SS/HLVDIN/C2OUT RB1/AN10/INT1/SCK/SCL 34 RPM +15V_T1 8 RE0/AN5/CK1SPP RB0/AN12/INT0/LFT0/SDI/SDA33 BRAKE_SIGNAL 100n 47u 3 9 32 3 10 RE1/AN6/CK2SPP VDD 31 C18 + C174 N
in „LCD verliert Zeichen“ · Mikrocontroller und Digitale Elektronik ·
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KT_Objekterkennung_Kap10.pdf
ist eine gesiebte Gleichspannung mit einer U e= Bemessungsbetriebsspannung Restwelligkeit von max. U ssSchwingungsbreite 15 % (nach DIN 41755) U ss erforderlich. Restwelligkeit σ =U e ×100 [%] Bemessungs- ... ist der zulässige Dauer- die Last RLfließt. betriebsstrom I e ausgangsstrom, der durch Reststrom
in „Drehzahlmessung mit induktivem Näherungsschalter“ · Mikrocontroller und Digitale Elektronik ·
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485.pdf
transition has occurred (limits overshoots and undershoots). A Logic D V + 100 Ω (1 or 0) OD – B ui 1.1 V SS 0.9 SS 0.1 SS V OD VSS 0-V Differential VOD 0.1 V 0.9 V SS SS 1.1 SS r tr NOTES: A. tui time duration of the unit interval B. V = |V – V | SS OD OD C. 2 V ≤ OD| ≤ 10 V Figure 6. Test Circuit and Output-Signal
in „Widerstände RS485“ · Mikrocontroller und Digitale Elektronik ·
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PDF
485.pdf
transition has occurred (limits overshoots and undershoots). A Logic D V + 100 Ω (1 or 0) OD – B ui 1.1 V SS 0.9 SS 0.1 SS V OD VSS 0-V Differential VOD 0.1 V 0.9 V SS SS 1.1 SS r tr NOTES: A. tui time duration of the unit interval B. V = |V – V | SS OD OD C. 2 V ≤ OD| ≤ 10 V Figure 6. Test Circuit and Output-Signal
in „2 RS-485 so richtig ?“ · 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 „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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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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Thread
Speicher aus alten E-Auto Akkus
> Wenn mildes Herbstwetter bei 5-10 Grad herrscht. Wenn es WIRKLICH kalt > wird, so unter -5, -1ß0 ° sind das fast reine Elektroheizungen mit einer > Arbeitszahl knapp über 1! Im Sommer ist man dafür bei > 6, in der Übergangszeit bei > 4 und die letzten Tage warens immer noch > 3. 2 eiskalte
>> Wenn mildes Herbstwetter bei 5-10 Grad herrscht. Wenn es WIRKLICH kalt >> wird, so unter -5, -1ß0 ° sind das fast reine Elektroheizungen mit einer >> Arbeitszahl knapp über 1! > > Im Sommer ist man dafür bei > 6, in der Übergangszeit bei > 4 und die > letzten Tage warens immer noch > 3. >
Haus & Smart Home ·Hans H. · ·875 Antworten
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PDF
UCC27201_datasheet.pdf
current VLI V HI= 0 V 0.4 0.8 HBO Boot voltage operating current f = 500 kHz, CLOAD= 0 2.5 4 HBS HB to V SS quiescent current VHS = VHB = 110 V 0.0005 1 uA HBSO HB to V SS operating current f = 500 kHz, CLOAD= 0 0.1 mA INPUT VHIT Input rising threshold 5.8 8 V Input falling threshold UCC27200 3 5.4 LIT VIHYS
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Thread
ESP8266 hängt bei gleichzeitigem senden/empfangen
??"?2<\f>?C<\b>!<\0>???m?k??6???M??9?U??d(???b<2>??a???}<4>A<\0>?u??B?$<24><\f><6>???<16>????n4<26>ss?Y<2> <28>?jgg<7>?????<<15>I?@J? <\b>???<\0>!<4>???????$I@<\b>?????L;?<19>?<20>?n???<25><21>2_??W9??<9>f?[?<15>?Nn??L3Hk?0<\f>??>??<24><14>??t:p]<23>??@<\b><1>?X?<\b>????l?<25>??? kkK?i????i<1>?,??l6<
GzjqZvZtvurxcUsOaXk5dFL8RbV9h4DjYRcuf6n7BYn5oPBlbI0XBCxYkaRorkLFiAMUchWLExMGcvTMAH4LP5R9AsWLFnRqnsW8Zf5d+qE4cpmtjbYfFzHzJWLFNepVdlpijGVdZQsWLJY4I1UUqxYkALKUK95WLEAKsXq3NaSFVZnl1ydSsWK9Rz2nboQMpF1NJMW2sVixUOb6MY+dozAaqv1kIa+wW1iImZdhNMFdMEZyhYsUrDrr6Ldh4T2mWLFMoMYAjWLFiANlQTrFiBCusdokkJ57+qxYtIywwnyC6gdoVixDMgM+5W1ixNCP/2Q==" />[/code] Das nennt sich data-uri. Hier ein Converter
Mikrocontroller und Digitale Elektronik ·Fritz Huber · ·128 Antworten
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PDF
WISMO218_AT_Commands_User_Manual-Rev001.pdf
of 3.1 kHz modem and non-transparent service) 4 2400 bps (V.22bis) 7 9600 bps (V.32) 12 9600 bps (V.34) 14 14400 bps (V.34) 15 19200 bps (V.34) 16 28800 bps (V.34) 17 33600 bps (V.34) 68 2400 bps (V.110 or X.31 flag stuffing) 71 9600 bps (V.110 or X.31 flag stuffing) 75 14400 bps (V.110 or X.31 flag stuffing
in „wavecom wismo218 guthaben auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Thread
CQ CQ CQ SAQ SAQ SAQ
Störer drauf. Ärgerlich nur, daß die Tonaufnahmefunktion vom HDSDR nit funktioniert hat :/ Mist, 34MB leere Datei!
Quartz Crystal Resonator 18 KHz http://www.ebay.de/itm/351377462356?_trksid=p2055119.m1438.l2649&ssPageName=STRK%3AMEBIDX%3AIT
HF, Funk und Felder ·Henrik V. · ·353 Antworten
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PDF
The_International_System_of_Units_sp330.pdf
SS RC EM STM YT RM TEM YT SS EN ST SS ISY TI ME NM YT CS RIS OD SS RS TRC MD ISY TRI ET NME EN DER S ETI MT MM TRI MT NME TEM ET NME RM DER MD MMO T RM ERN YTE NME EN DE SS RNM DER OD MMO TM ST SS E MOD
in „Stromangabe in der Einheit At?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Z80int-jmp.asm
--------------------+----------------------| ;|ADC A,s |***V0*|Add with Carry |A=A+s+CY | ;|ADC HL,ss |**?V0*|Add with Carry |HL=HL+ss+CY | ;|ADD A,s |***V0*|Add |A=A+s | ;|ADD HL,ss |--*-0*|Add |HL=HL+ss | ;|ADD IX,pp |--*-0*|Add |IX=IX+pp | ;|ADD IY,rr |--*-0*|Add |IY=IY+rr | ;|AND s |**1P00|Logical
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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EtherBoardSch.pdf
D7 D7 44 AD7/PA7 A3 9 SA3 EECS 76 LED4 28 26 A13 25 I2CCLK A4 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
in „Elektronik über ein Ethernet Netzwerk steuern?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schaltplan.pdf
SENSORIK OUT_PB1 M20-9980545 SS_VN OUT_PA5 1 1 2 2 GND 3 3 4 4 OUT_PA6 5 5 6 6 7 7 8 8 9 10 OUT_PA4 9 10 V33 3 V V33 MGT1 6 4 5 1 0 1 P P P 1 R 1 _ _ _ J_CD V U U U M20-9980545 O O O GND PA8 CD_VCC 1 1 2 2 V33 3 3 4 4 V5 3 2 3 5 7 5 6 R R R R 7 5 6 8 1 Q1 CD_EN 9 7 8 10 V33 SS_VN SMMBT3904WT1G 9 10 1K 2 R15 5 1 PA0 PA4 PA5 PB1 7 R GND 4 6 8 1 R R R R CD74HCT GND CD74HCT125M 1 14 1OE VCC CD_VCC IN_M_2 2 1A 4OE 13 IN_2 3 1Y 4A 12 INH_M CD_EN GND GND GND GND CD_EN 4 2OE 4Y 11
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PDF
Schaltplan.pdf
+5V R3 IC1A IO 29 PC6(RESET) (CLKO/ICP1)PB0 12 CLKO +5VIO 10k (OC1A)PB1 13 14 D10_MCP2515_CS (OC1B/SS0)PB2 15 D11_MOSI 7 (OC2A/TXD1/MOSI0)PB3 16 D12_MISO PB6(XTAL1) (RXD1/MISO0)PB4 17 1 k 4 k 4MHz (XCK0/SCK0)PB5 D13_SCLK R 1 R 1 8 PB7(XTAL2) 3 1 (MISO1/ADC0)PC0 23 A0_H2_CS (SCK1/ADC1)PC1 24 A1_H1_CS
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
can_g1251_v02_12f.eagle7.sch.pdf
RESET) (CLKO/ICP1)PB0 13 RST GND GND 20 1 1 8 (OC1A)PB1 14 GND 19 VDD TXCAN 2 2 TXD RS 7 GND (OC1B/SS0)PB2 15 D10_MCP2515_CS 18 RST RXCAN 3 3 VSS CANH 6 (OC2A/TXD1/MOSI0)PB3 D11_MOSI CS CLKOUT/SOF VDD CANL Q1 7 PB6(XTAL1) (RXD1/MISO0)PB4 16 D12_MISO 17 SO TX0RTS 4 4 RXD VREF 5 TP1 0 (XCK0/SCK0)PB5 17
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan_2.pdf
16 SO TX0RTS 5 +5IOO RXD VREF TP1 1 2 (OC1A)PB1 14 D10_MCP2515_CS 15 SI TX1RTS 6 TJA1050 R 1 (OC1B/SS0)PB2 15 14 NC' NC 7 (OC2A/TXD1/MOSI0)PB3 D11_MOSI SCK TX2RTS 7 PB6(XTAL1) (RXD1/MISO0)PB4 16 D12_MISO 13 INT OSC2 8 100n +5VIO I GND 2 (XCK0/SCK0)PB5 17 D13_SCLK 12 RX0BF OSC1 9 n 2 J 4MHz 8 PB7(XTAL2
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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onkyo_tx_nr_616_service_manual.pdf.pdf
C_FMT_43W 32 : C_FMT_32 5H3 : C_FMT_53H 24 : C_FMT_24 5W4 : C_FMT_54W 23 : C_FMT_23 4W4 : C_FMT_44W 34 : C_FMT_34 5W3 : C_FMT_53W 33 : C_FMT_33 4W3 : C_FMT_43W 11 : C_FMT_11 24 : C_FMT_24 5W4 : C_FMT_54W 15.Information of the LFE channel input 34 : C_FMT_34 5W3 : C_FMT_53W 0 : SW 0ch 11 : C_FMT_11 1 :
in „Onkyo verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
X2L-OSTB-PC1-MW-Infos.txt
de pse tsc msr pae mce cx8 apic sep mtrr pge mca cmov pat pse36 clflush dts acpi mmx fxsr sse sse2 ss ht tm pbe syscall nx pdpe1gb rdtscp lm constant_tsc art arch_perfmon pebs bts rep_good nopl xtopology nonstop_tsc cpuid aperfmperf tsc_known_freq pni pclmulqdq dtes64 monitor ds_cpl vmx est tm2 ssse3
in „Preiswerter X86-Einplatinenrechner, STM-Softwareupdates und anderes mehr“ · Mikrocontroller und Digitale Elektronik ·
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25P40_STMicroelectronics.pdf
Note: 1. See page 31 (onwards) for package dimensions, and how to identify pin-1. C S M25P40 W HOLD V SS AI04090 Table 1. Signal Names C Serial Clock D Serial Data Input Q Serial Data Output S Chip Select W Write Protect HOLD Hold V CC Supply Voltage V SS Ground 2/35 M25P40 SIGNAL DESCRIPTION Serial Data
in „SMD EEPROM: Reparatur gebrochenes Beinchen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT3800.pdf
(VOUT(SS)) follows the relation: Soft-Start VOUT(SS)= 220mV + R SS• 2E–6 The LT3800 incorporates a programmable soft-start function to control start-up surge currents, limit outputwhich is typically 0.64V forSS
in „LT3800 Frage“ · Analoge Elektronik und Schaltungstechnik ·
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grasshopper_schematic.pdf
PA16 32 31 PA13 M1 PA13(MMCI-DATA1/TIMER0-A1) PC13(MACB0-RX_ER) G11 ETH_RX_ER[4] [1,5] USART1_RXD 34 33 [1] PA14 N4 PA14(MMCI-DATA2/TIMER0-A2) PC14(MACB0-RX_CLK/AUX2-MOD4) G10 ETH_RX_CLK [4] [1,5] USART1_TXD 36 35 [1] PA15 N2 PA15(MMCI-DATA3/TIMER0-B0) PC15(MACB0-RX_DV) B16 ETH_RX_DV[4] [1] PA19 38
in „Grasshopper Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TMPA910_Rev.1.0_Schematic.pdf
1 VDD1W5 3 C811 C812 2 10uF/50V GND GND GND GND 8 3 C808 D801 C815 PJ-002BH-SMT V 2 V 0 100nF/50V SS16 100uF / 2 / 5 7 n 7 8 n R R807 U801 CN802 8 0 8 E 8 0 8 B 140R 1% LM20242MH C C 1 L W C 1 D M C 1 VDDEXT R805 160R 1% 1 SS PGD 3 PWR_GOOD R812 R813 ON/OFF 19 17 C809 140R 160R 2 18 EN BOOT 7 100nF/
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MCP4151.pdf
Interface (10 MHz, modes 0,0 & 1,1) V 4 5 P0A V 4 5 P0W - High-Speed Read/Writes to wiper registers SS SS 3x3 DFN* 3x3 DFN* - SDI/SDO multiplexing (MCP41X1 only) • Resistor Network Terminal Disconnect Feature via: MCP42X1 Dual Potentiometers - Shutdown pin (SHDN) D O D S D D H - Terminal Control (TCON
in „Frage zum MCP4151 SPI Digital Poti?“ · Mikrocontroller und Digitale Elektronik ·
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22103a.pdf
— V DD V SI, RESET GPIO VIH 0.8 DD — 5.5 V Input Leakage Current D060 I/O port pins IL — — ±1 µA V SS≤ VPIN≤ DD , Output Leakage Current D065 I/O port pins ILO — — ±1 µA V SS≤ VPIN≤ DD , D070 GPIO internal pull-up IPU — 220 — µA V DD= 5V, GP Pins =SS current Note 1 Output Low-Voltage D080 GPIO VOL —
in „MCP23S18 I/O Expander“ · Mikrocontroller und Digitale Elektronik ·
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Datei
z80.asm
--------------------+----------------------| ;|ADC A,s |***V0*|Add with Carry |A=A+s+CY | ;|ADC HL,ss |**?V0*|Add with Carry |HL=HL+ss+CY | ;|ADD A,s |***V0*|Add |A=A+s | ;|ADD HL,ss |--?-0*|Add |HL=HL+ss | ;|ADD IX,pp |--?-0*|Add |IX=IX+pp | ;|ADD IY,rr |--?-0*|Add |IY=IY+rr | ;|AND s |***P00|Logical
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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avr-m8_z80.asm
--------------------+----------------------| ;|ADC A,s |***V0*|Add with Carry |A=A+s+CY | ;|ADC HL,ss |**?V0*|Add with Carry |HL=HL+ss+CY | ;|ADD A,s |***V0*|Add |A=A+s | ;|ADD HL,ss |--?-0*|Add |HL=HL+ss | ;|ADD IX,pp |--?-0*|Add |IX=IX+pp | ;|ADD IY,rr |--?-0*|Add |IY=IY+rr | ;|AND s |***P00|Logical
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt_NVSRAM_23LCV1024.pdf
30 31 32 33 34 35 36 37 38 39 SCK Instruction 24-bit Address Data Byte SI 0 0 0 0 0 0 1 0 23 22 21 20 2 1 0 7 6 5 4 3 2 1 0 High-Impedance SO DS25156A-page 6 Preliminary 2012 Microchip Technology Inc. 23LCV1024 FIGURE
in „Probleme mit SRAM 23LCV1024“ · Mikrocontroller und Digitale Elektronik ·
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F407-IoTBoard-Schematics.pdf
1 2 3 4 U1 USART4_TX PA0 34 141 PE0 FSMC_NBL0 RMII_RX_CLK USART4_RX PA1 35 PA0-WKUP/U2_CTS/U4_TX/ETH_MII_CRS/TIM2_CH1_ETR/TIM5_CH1/TIM8_ETR/ADC123_IN0 PE0/TIM4_ETR/FSMC_NBL0/DCMI_D2 142 PE1 FSMC_NBL1 RMII_MDIO USART2_TX PA2 36
in „STM32 Nucleo welches Board am besten?“ · Mikrocontroller und Digitale Elektronik ·
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3703fc.pdf
0V l 1.7 2.5 mA CC CC RUN/SS = 0V 50 µA IDRVCC DRV CCSupply Current (Note 5) 0 5 µA RUN/SS = 0V 0 5 µA IBOOST BOOST Supply Current (Note 5) J ≤ 125°C l 360 500 µA T J> 125°C l 360 800 µA RUN/SS = 0V 0 5 µA Main Control Loop VFB
in „Längs- oder Querregler 40V 250W als Überspannungsschutz für Tiefstellsetzer“ · Analoge Elektronik und Schaltungstechnik ·