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MAX202E-MAX241E.pdf
+70°C 24 SSOP MAX202ECWE 0°C to +70°C 16 Wide SO MAX208EENG -40°C to +85°C 24 Narrow Plastic DIP2 E MAX202EC/D 0°C to +70°C Dice* MAX208EEWG -40°C to +85°C 24 SO – MAX202EEPE -40°C to +85°C 16 Plastic DIP MAX208EEAG -40°C to +85°C 24 SSOP M MAX202EESE -40°C to +85°C 16 Narrow SO MAX211ECWI 0°C to +70°C 28SO MAX202EEUE -40°C to +85°C 16 TSSOP MAX211ECAI 0°C to +70°C 28 SSOP A X MAX202EEWE -40°C to +85°C 16 Wide SO MAX211EEWI -40°C to +85°C 28
in „Touch-screen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
max232.pdf
______________Ordering Information A PART TEMP. RANGE PIN-PACKAGE PART TEMP. RANGE PIN-PACKAGE X MAX202ECPE 0°C to +70°C 16 Plastic DIP MAX208ECNG 0°C to +70°C 24 Narrow Plastic DIP MAX202ECSE 0°C to +70°C 16 Narrow SO MAX208ECWG 0°C to +70°C 24 SO 2 MAX208ECAG 0°C to +70°C 24 SSOP 0 MAX202ECWE 0°C to +70°C 16 Wide SO 2 MAX202EC/D 0°C to +70°C Dice* MAX208EENG -40°C to +85°C 24 Narrow Plastic DIP E MAX202EEPE -40°C to +85°C 16 Plastic DIP MAX208EEWG -40°C to +85°C 24 SO – MAX202EESE -40°C to +85°C 16 Narrow SO MAX208EEAG
in „ATMega8L an USB per max232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX232.pdf
______________Ordering Information A PART TEMP. RANGE PIN-PACKAGE PART TEMP. RANGE PIN-PACKAGE X MAX202ECPE 0°C to +70°C 16 Plastic DIP MAX208ECNG 0°C to +70°C 24 Narrow Plastic DIP MAX202ECSE 0°C to +70°C 16 Narrow SO MAX208ECWG 0°C to +70°C 24 SO 2 MAX208ECAG 0°C to +70°C 24 SSOP 0 MAX202ECWE 0°C to +70°C 16 Wide SO 2 MAX202EC/D 0°C to +70°C Dice* MAX208EENG -40°C to +85°C 24 Narrow Plastic DIP E MAX202EEPE -40°C to +85°C 16 Plastic DIP MAX208EEWG -40°C to +85°C 24 SO – MAX202EESE -40°C to +85°C 16 Narrow SO MAX208EEAG
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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MAX232_MAX.pdf
______________Ordering Information A PART TEMP. RANGE PIN-PACKAGE PART TEMP. RANGE PIN-PACKAGE X MAX202ECPE 0°C to +70°C 16 Plastic DIP MAX208ECNG 0°C to +70°C 24 Narrow Plastic DIP MAX202ECSE 0°C to +70°C 16 Narrow SO MAX208ECWG 0°C to +70°C 24 SO 2 MAX208ECAG 0°C to +70°C 24 SSOP 0 MAX202ECWE 0°C to +70°C 16 Wide SO 2 MAX202EC/D 0°C to +70°C Dice* MAX208EENG -40°C to +85°C 24 Narrow Plastic DIP E MAX202EEPE -40°C to +85°C 16 Plastic DIP MAX208EEWG -40°C to +85°C 24 SO – MAX202EESE -40°C to +85°C 16 Narrow SO MAX208EEAG
in „AVR an Handy C35“ · Mikrocontroller und Digitale Elektronik ·
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fixSTK500.pdf
STK500 using AVRProg) than its time to do some more searching. First you will want to see if the MAX202 is working OK. You will need a logic probe and a voltmeter for this experiment. The pin-out of the MAX202 is shown in figure 2, you will probably want the entire data-sheet at http://www.maxim-ic.com
in „STK500 getötet?“ · Mikrocontroller und Digitale Elektronik ·
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HB_V24ISP.pdf
Seite 4 Das Taktsignal SCLK des Zielsystems wird vom RS232-Signal DSR gebildet und sein Pegel vom MAX202 nach TTL gewandelt. Das Datensignal MOSI des Zielsystems wird vom RS232-Signal RxD gebildet und sein Pegel vom MAX202 nach TTL gewandelt. In der Richtung vom Zielsystem zum PC wird das Datensignal MISO im MAX202 auf RS232-Pegel gewandelt und als RTS zurückgegeben. 2.2.1 Zuordnung der Signale Vom PC zum Zielsystem: RESET CTS SCLK DSR MOSI RXD Vom Zielsystem zum PC MISO RTS 2.2.2 Spannungsversorgung In der gegebenen
in „Einfaches Programmiergerät für RS232“ · Projekte & Code ·
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Zeitnehmung_uC.pdf
Header 8H PIU608 R2 PIU609 6 15 Title D PIU606V- GND PIU6015 Zeitnehmung Feuerwehr Anzeige D GND GND MAX202CPW4 GND Size Number Revision 2.0 A4 Date: 22.09.2012 Sheet of2 File: E:\Alexander\..\ZeitnehmungHDGA.SchDocDrawn By:ander Hager 1 2 3 4 Comment Description Designator Footprint LibRef Quantity 10uF
in „Funkmodul RFM12BP-868 mit ATmega8 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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C51_Hardware_Connections.pdf
5 C15 1 0.1µF C1+ 3 C1- SUB-D9 FEMALE 4 C2+ C17 5 C2- V+ 2 0.1µF RS232 C16 D Vcc 0.1µF N 6 G V- MAX202ECSE C18 C19 1 U7 0.1µF 0.1µF B B A A Title C51_ISP Size Document Number Rev A <Doc> 1.0 Date: Wednesday, April 28, 2004 Sheet 3 of 4 5 4 3 2 1 5 4 3 2 1 Auto ISP Interfacing P1 Vcc 1 1 6 DSR 14 C 11
in „AT89C51SND1C“ · Mikrocontroller und Digitale Elektronik ·
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C51_Hardware_Connections.pdf
5 C15 1 0.1µF C1+ 3 C1- SUB-D9 FEMALE 4 C2+ C17 5 C2- V+ 2 0.1µF RS232 C16 D Vcc 0.1µF N 6 G V- MAX202ECSE C18 C19 1 U7 0.1µF 0.1µF B B A A Title C51_ISP Size Document Number Rev A <Doc> 1.0 Date: Wednesday, April 28, 2004 Sheet 3 of 4 5 4 3 2 1 5 4 3 2 1 Auto ISP Interfacing P1 Vcc 1 1 6 DSR 14 C 11
in „von AT89S8253 umsteigen auf xxx mit mehr Flash Bitte um Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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UART_CAN_USB_FLIP.pdf
5 C15 1 0.1µF C1+ 3 C1- SUB-D9 FEMALE 4 C2+ C17 5 C2- V+ 2 0.1µF RS232 C16 D Vcc 0.1µF N 6 G V- MAX202ECSE C18 C19 1 U7 0.1µF 0.1µF B B A A Title C51_ISP Size Document Number Rev A <Doc> 1.0 Date: Wednesday, April 28, 2004 Sheet 3 of 4 5 4 3 2 1 5 4 3 2 1 Auto ISP Interfacing P1 Vcc 1 1 6 DSR 14 C 11
in „Windows 7 + ATMEL FLIP + Atmel 89C51 µC“ · Mikrocontroller und Digitale Elektronik ·
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UART_CAN_USB_FLIP.pdf
5 C15 1 0.1µF C1+ 3 C1- SUB-D9 FEMALE 4 C2+ C17 5 C2- V+ 2 0.1µF RS232 C16 D Vcc 0.1µF N 6 G V- MAX202ECSE C18 C19 1 U7 0.1µF 0.1µF B B A A Title C51_ISP Size Document Number Rev A <Doc> 1.0 Date: Wednesday, April 28, 2004 Sheet 3 of 4 5 4 3 2 1 5 4 3 2 1 Auto ISP Interfacing P1 Vcc 1 1 6 DSR 14 C 11
in „Boeard flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
C51_Hardware_Connections.pdf
5 C15 1 0.1µF C1+ 3 C1- SUB-D9 FEMALE 4 C2+ C17 5 C2- V+ 2 0.1µF RS232 C16 D Vcc 0.1µF N 6 G V- MAX202ECSE C18 C19 1 U7 0.1µF 0.1µF B B A A Title C51_ISP Size Document Number Rev A <Doc> 1.0 Date: Wednesday, April 28, 2004 Sheet 3 of 4 5 4 3 2 1 5 4 3 2 1 Auto ISP Interfacing P1 Vcc 1 1 6 DSR 14 C 11
in „AT89S8253 und AT89C51ED2 mit Atmel Auto ISP Interfacing programmieren“ · Mikrocontroller und Digitale Elektronik ·
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AtmelConnections.pdf
5 C15 1 0.1µF C1+ 3 C1- SUB-D9 FEMALE 4 C2+ C17 5 C2- V+ 2 0.1µF RS232 C16 D Vcc 0.1µF N 6 G V- MAX202ECSE C18 C19 1 U7 0.1µF 0.1µF B B A A Title C51_ISP Size Document Number Rev A <Doc> 1.0 Date: Wednesday, April 28, 2004 Sheet 3 of 4 5 4 3 2 1 5 4 3 2 1 Auto ISP Interfacing P1 Vcc 1 1 6 DSR 14 C 11
in „μC 8051 Demoboard (AT89C51ED2)“ · Mikrocontroller und Digitale Elektronik ·
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PS2ADPTMan.pdf
non-standard 0-5 volt signal levels used in some systems. This is because the internal Texas Instruments MAX202 RS-232 driver has a receiver threshold that is approximately +1.2 volts above the RS-232 ground. So these ‘single-ended’ signals which do not go below ground provide a sufficient RS-232 signal level for the PS2ADPT to operate reliably. Please refer to: http://www.ti.com/lit/gpn/max202for more technical details of the drivers capabilities. Power Control: The standard PS2 keyboard requires +5VDC to operate and so does the PS2ADPT. Keyboard power is applied through the PS2ADPT’s PS2
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HandyCon.pdf
TXD 11 14 VCC \ 10 T2IN T2OUT 7 r RXD 12 R1OUT R1IN 13 o 9 R2OUT R2IN 8 2 c GND Handy SJ3 s VCC MAX202ECWE 5 1 L GND 1SJ1 2 4 9 O 3 8 G 2 7 C 1 C 1 6 O V N IC2P C1 2 SUBDM9POL H N 100n SJ2 \ 1 G 1 H n d GND C GND o . c h S h e t 1 1 )
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Schaltplan einer isolierten RS232-Schnittstelle
, R1OUT, 2, J3, 13, R2IN, 8, 3, R2, 6K8, 5, RS232, 1, VDD1, VDD2, 8, 7, C3, 100n, 1, 2, 3, 4, U1 MAX202, ADuM1201AR, VOB, 6, VIA, 5, GND2, GND1, VIB, 4, 1, 2, 3, 4, GNDD, R3, 30K, Q2, BC807, Q3A, BC847BS, R5, 1K, D2, Y, Q3B, BC847BS, GND-ISO, +Y-ISO, GND-ISO
in „RS232 galvanische Trennung zwischen Raspberry und STM32“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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ATMegaEvoBoard.pdf
3 PE1 10 T2IN T2OUT 7 2 PG3 4 12 R1OUT R1IN 13 7 PG4 5 PE0 R12 9 8 3 R2OUT R2IN 8 VCC 6 470R JP2 MAX202 4 7 9 8 +UB IC2 VCC 5 9 10 BU1 A1 7805 1 4 AC V+ 1 1 Vin Vout 3 DB9SLE Port G 2 D 3 AC V- 2 G CON2 C10 C11 C12 C13 DF005 10µF/16V 100nF 100nF 10µF/16V Title A 2 Microcontroller,RS232,TWI(I²C),SPI,Power
in „AT90CAN128 Development board“ · Mikrocontroller und Digitale Elektronik ·
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ICs.txt
PCF7334 1St. PCF7350 1St. 74H00 7St TLP523-2 Optokoppler 1St. MAX485 2St. LM555 3St. MAX232CPE 1St. MAX202ECP 4St. LM348 2St HCF4066B 1St. MAX260BC 1St. MAX233CPP 1St. MC1488 2St. SN7554 1St HP4100 1St HP4200 2St. ULN2004 1St. LM339 1St. AT89C5121-24PI Controller 3St CCS9310B2 BTI Ladechips 1St. TEA1101
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schaltung.pdf
T2IN T2OUT 13 4 8 8C+ C1 7 34 C7 9 R1OUT R1IN 8 5 9 V 100n 8 33 R2OUT R2IN IC1P 100n F 9 32 47n MAX202ECWE GND G 3 2 h 10 31 D 5 C FQ 4M 11 30 C6 G IC1 4 2 12 29 GND C5 C 2 13 28 100n 1 6 GND P 14 27 RO 5 8CC CGN+5V 100n 15 26 2 B 7 I 16 25 +5V RE/ 0 3 D 17 24 3 6 2 R N 18 23 DE A 1 G 19 22 4 0 1 20
in „Datenübertragung über UART zu 2xSMCi33-2 von Nanotec“ · Mikrocontroller und Digitale Elektronik ·
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schaltung.pdf
T2IN T2OUT 13 4 8 8C+ C1 7 34 C7 9 R1OUT R1IN 8 5 9 V 100n 8 33 R2OUT R2IN IC1P 100n F 9 32 47n MAX202ECWE GND G 3 2 h 10 31 D 5 C FQ 4M 11 30 C6 G IC1 4 2 12 29 GND C5 C 2 13 28 100n 1 6 GND P 14 27 RO 5 8CC CGN+5V 100n 15 26 2 B 7 I 16 25 +5V RE/ 0 3 D 17 24 3 6 2 R N 18 23 DE A 1 G 19 22 4 0 1 20
in „Datenübertragung über USART0 und USART1“ · Mikrocontroller und Digitale Elektronik ·
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max232.pdf
D Upgrade With Improved ESD (15-kV HBM) and 0.1-mF Charge-Pump Capacitors is Available With the MAX202 D Applications − TIA/EIA-232-F, Battery-Powered Systems, Terminals, Modems, and Computers description/ordering information The MAX232 is a dual driver/receiver that includes a capacitive voltage generator
in „RS232 zu wenig spannung“ · Mikrocontroller und Digitale Elektronik ·
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einkaufsliste.txt
Teil 6 (Das UART) Kondensator 100nF (kein Elektrolyt) VsKo 100nF RM2.5 csd Pegelwandler MAX232 oder MAX202 RS232E Interface, DIL-16, MAX 232 ECPE reichelt Schmale 16pin Fassung IC-Fassung 16 pol csd 5 Elektrolytkondensatoren 22µF Elko 22 µF 63 V csd 9-polige SUBD-Buchse (female) SUB-D 9 pol Buchse gerade
in „Einkaufsliste überprüfen“ · Mikrocontroller und Digitale Elektronik ·
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ISPSocket.pdf
19 19 9 R2 8 RTSPC 20 GND 20 MOSI51 6 Y2 G2 4 21 21 A2 5 GND 15 GND V- 6 22 22 23 23 U2B 74HC126 MAX202CSE C3 100 nF 24 24 25 25 26 26 27 27 28 28 D1 1N4148 29 29 VCC 30 30 31 31 U2C 74HC126 R2 32 EA51 32 8 10 DTRPC 1 33 33 RES51 Y3 G3 9 4K7 34 34 A3 35 35 D2 1N4148 36 36 R3 B 37 37 B 38 38 39 39 4K7
in „at89s2051 programmieren, wie?“ · Mikrocontroller und Digitale Elektronik ·
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ISPSocket.pdf
19 19 9 R2 8 RTSPC 20 GND 20 MOSI51 6 Y2 G2 4 21 21 A2 5 GND 15 GND V- 6 22 22 23 23 U2B 74HC126 MAX202CSE C3 100 nF 24 24 25 25 26 26 27 27 28 28 D1 1N4148 29 29 VCC 30 30 31 31 U2C 74HC126 R2 32 EA51 32 8 10 DTRPC 1 33 33 RES51 Y3 G3 9 4K7 34 34 A3 35 35 D2 1N4148 36 36 R3 B 37 37 B 38 38 39 39 4K7
in „AT89LS53 Programmer+SW gesucht? bzw ...taugt diese(r) was?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
einkaufsliste.txt
Teil 6 (Das UART) Kondensator 100nF (kein Elektrolyt) MKS2 100nF 100V csd Pegelwandler MAX232 oder MAX202 RS232E Interface, DIL-16, MAX 232 CPE reichelt Schmale 16pin Fassung IC-Fassung 16 pol csd 5 Elektrolytkondensatoren 22µF Elko 22 µF 63 V csd 9-polige SUBD-Buchse (female) SUB-D 9 pol Buchse gerade
in „Einkaufsliste überprüfen“ · Mikrocontroller und Digitale Elektronik ·
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Devices.txt
485 1 MAX4102ESA 1 MAX4029EWP 1 MAX3226EEAE 1 MAX3222 1 MAX235 1 MAX233 1 MAX232_TI 1 MAX211CAI 1 MAX202ECWE 1 MAX202CSE 1 MAX202CPE 1 MAX1818EUT 1 MAX1722 1 MAX1551 1 MAS3507D 1 MAC64L 1 MA08-2 1 MA08-1W 1 M9040P2 1 M25HPS 1 M25HP 1 M25H 1 M24C64 1 M09S 1 M07 1 M001 1 LY5150AL 1 L-USL1812 1 LTC4055UF
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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CodeBoard_2_0_Schematic.pdf
C5 100n VCC C1+ 3 100n C9 2 C1- GND MAX7219CNG +5V V+ C4 100n 15 GND C2+ 4 GND 6 V- C2- 5 C6 100n MAX202CPE
in „8051: An Port 0 kann nichts ausgegeben werden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CodeBoard_2_0_Schematic.pdf
C5 100n VCC C1+ 3 100n C9 2 C1- GND MAX7219CNG +5V V+ C4 100n 15 GND C2+ 4 GND 6 V- C2- 5 C6 100n MAX202CPE
in „8051: An Port 1 nur 3.5V anstatt 5V ?“ · Mikrocontroller und Digitale Elektronik ·
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STK200SCHEMATIC_SMALL.PDF
PB2 VREF T2OUT T2IN 11 12 PD2 5 6 8 R2IN R2OUT 9 6 PD6 13 14 PB3 7 8 1 PD7 15 16 PB4 9 10 PB3 C20 MAX202CPE PB5 100nF PD3 PB6 11 12 AGND RS232 HEADER 8X2 PB7 13 14 15 16 PB4 1K TXD PD4 Resnet HEADER 8X2 RXD PB5 PD5 PB6 PD6 PB7 PD7 Active 0 on LEDs Active 0 on Switches LCD Interface LCD Timing Ciruit l
in „LCD wie externen Speicher anspr.“ · Mikrocontroller und Digitale Elektronik ·
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MegaBoardV1.4.pdf
vorhanden PIN 3 RXD PIN 5 GND C2,C3 22p C4..C13 100n C1 4,7µ Programmierport (Seriell) IC1 ATmega103 IC2 MAX202CSE IC3 74HC4053 IC4 24FC512 IC5 7805 D1 1N4148 D2 LED 3mm(rot) PIN 1 MOSI JP1,JP2 Pin Header-2*16 PIN 2 VCC PIN 3 NC Q1 Quarz 6MHz PIN 4 GND Q2 Quarz 32Khz PIN 5 RST PIN 6 GND PIN 7 SCK SV1 Pin Header
in „ATMEGA128 funzt nicht“ · Mikrocontroller und Digitale Elektronik ·
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max232.pdf
D Upgrade With Improved ESD (15-kV HBM) and 0.1-mF Charge-Pump Capacitors is Available With the MAX202 D Applications − TIA/EIA-232-F, Battery-Powered Systems, Terminals, Modems, and Computers description/ordering information The MAX232 is a dual driver/receiver that includes a capacitive voltage generator
in „Problem mit RS232“ · Mikrocontroller und Digitale Elektronik ·
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max232.pdf
D Upgrade With Improved ESD (15-kV HBM) and 0.1-mF Charge-Pump Capacitors is Available With the MAX202 D Applications − TIA/EIA-232-F, Battery-Powered Systems, Terminals, Modems, and Computers description/ordering information The MAX232 is a dual driver/receiver that includes a capacitive voltage generator
in „CES Hautwiderstand“ · Analoge Elektronik und Schaltungstechnik ·
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STK300_Stromlaufplan.pdf
(SCK) Analog 8 T2OUT T2IN 9 6 Y1 Z Reference LINK R2IN R2OUT X X 1K D D 1 SCK(ISP) 5 Z0 3 Z1 VCC MAX202CPE R15 RS232 100R 6 11 INH VR1 LED ENABLE(ISP) 10 A 10K B 9 C 4053 IC C20 AGND PortB PIN1 100nF PortE PIN1 PE1 TXD ISP MOSI +5 PortE PIN0 VCC_BAR EXTERNAL PORT ( CONNECTIO NS ) Analog ISP LED 1 2 PE0
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PDF
STK300S.pdf
(SCK) Analog 8 T2OUT T2IN 9 6 Y1 Z Reference LINK R2IN R2OUT X X 1K D D 1 SCK(ISP) 5 Z0 3 Z1 VCC MAX202CPE R15 RS232 100R 6 11 INH VR1 LED ENABLE(ISP) 10 A 10K B 9 C 4053 IC C20 AGND PortB PIN1 100nF PortE PIN1 PE1 TXD ISP MOSI +5 PortE PIN0 VCC_BAR EXTERNAL PORT ( CONNECTIO NS ) Analog ISP LED 1 2 PE0
in „Kanda AVR Starterboard und noch keine Ahnung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stk500_1200.asm
Overflow Handler 6: 18 95 reti ; Analog Comparator Handler ;;; ;;; PD0 is connected to pin 12 of the max202 (R1OUT) and RxD of the 8535. ;;; PD1 is connected to pin 11 of the max202 (T1IN) and TxD of the 8535. ;;; ;;; This seems to imply that the following functions implement a bit banged ;;; uart. ;;; ;
in „AVRISP => Hex-Datei vom 1200er“ · Mikrocontroller und Digitale Elektronik ·
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STK500_Schematics.pdf
R306 470R DB9 6 V- C2+ 4 1K 6 39K 47K C301 1n2 5 + C308 Q300A 2 C305 C2- 10u/16V BC847BS + 10u/16V MAX202CSE 3 1 C309 Q300B 5 22pF BC847BS NOTE! MAX202ECSE can be used to improve ESD tolerance NOTE! Filters must be located as close to the DSUB connector as possible 4 J302 TxDB 1 2 VCC R307 COM PORT R302
in „Schema STK 500 ?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500_Schematics.pdf
R306 470R DB9 6 V- C2+ 4 1K 6 39K 47K C301 1n2 5 + C308 Q300A 2 C305 C2- 10u/16V BC847BS + 10u/16V MAX202CSE 3 1 C309 Q300B 5 22pF BC847BS NOTE! MAX202ECSE can be used to improve ESD tolerance NOTE! Filters must be located as close to the DSUB connector as possible 4 J302 TxDB 1 2 VCC R307 COM PORT R302
in „STK500 kein VTARGET mehr?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500_1_.pdf
R306 470R DB9 6 V- C2+ 4 1K 6 39K 47K C301 1n2 5 + C308 Q300A 2 C305 C2- 10u/16V BC847BS + 10u/16V MAX202CSE 3 1 C309 Q300B 5 22pF BC847BS NOTE! MAX202ECSE can be used to improve ESD tolerance NOTE! Filters must be located as close to the DSUB connector as possible 4 J302 TxDB 1 2 VCC R307 COM PORT R302
in „STK500 - Analog-Setup für Line-In-Adapter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500_Schematics.pdf
R306 470R DB9 6 V- C2+ 4 1K 6 39K 47K C301 1n2 5 + C308 Q300A 2 C305 C2- 10u/16V BC847BS + 10u/16V MAX202CSE 3 1 C309 Q300B 5 22pF BC847BS NOTE! MAX202ECSE can be used to improve ESD tolerance NOTE! Filters must be located as close to the DSUB connector as possible 4 J302 TxDB 1 2 VCC R307 COM PORT R302
in „Roter Bereich auf STK500 defekt“ · Mikrocontroller und Digitale Elektronik ·
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STK500.pdf
R306 470R DB9 6 V- C2+ 4 1K 6 39K 47K C301 1n2 5 + C308 Q300A 2 C305 C2- 10u/16V BC847BS + 10u/16V MAX202CSE 3 1 C309 Q300B 5 22pF BC847BS NOTE! MAX202ECSE can be used to improve ESD tolerance NOTE! Filters must be located as close to the DSUB connector as possible 4 J302 TxDB 1 2 VCC R307 COM PORT R302
in „STK500 Transistoren defekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500_Schematics.pdf
R306 470R DB9 6 V- C2+ 4 1K 6 39K 47K C301 1n2 5 + C308 Q300A 2 C305 C2- 10u/16V BC847BS + 10u/16V MAX202CSE 3 1 C309 Q300B 5 22pF BC847BS NOTE! MAX202ECSE can be used to improve ESD tolerance NOTE! Filters must be located as close to the DSUB connector as possible 4 J302 TxDB 1 2 VCC R307 COM PORT R302
in „STK500 getötet?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK500_Schematics.pdf
R306 470R DB9 6 V- C2+ 4 1K 6 39K 47K C301 1n2 5 + C308 Q300A 2 C305 C2- 10u/16V BC847BS + 10u/16V MAX202CSE 3 1 C309 Q300B 5 22pF BC847BS NOTE! MAX202ECSE can be used to improve ESD tolerance NOTE! Filters must be located as close to the DSUB connector as possible 4 J302 TxDB 1 2 VCC R307 COM PORT R302
in „STK500 reparieren“ · Mikrocontroller und Digitale Elektronik ·
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stk300full.pdf
T2IN 10 2 1 Y1 Z 4 Analog Reference 8 9 R T 6 1K K R2IN R2OUT X X 1 SCK(ISP) R13 5 L D D 3 Z0 VCC MAX202CPE R15 Z1 RS232 6 (PB1) 100R INH 11 A VR1 LED ENABLE(ISP) 10 B 9 10K C 4053 IC C20 AGND 100nF PortE PIN 1 PE1 TXD ISP MOSI PortE PIN 0 +5 VCC_BAR PE0 Brownout Detector Circuit EXTERNAL PORT ( CONNECTI
in „stk300 LCD Interface Problem“ · Mikrocontroller und Digitale Elektronik ·
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MCS8051_Evoboard.pdf
R1OUT R1IN 8 2 P1.3 50 P1.2 P3.5 35 P3.6 1 R2OUT R2IN 7 P1.3 P3.6 2 P1.4 51 P1.4 P3.7 39 P3.7 3 JP3 MAX202 3 P1.5 4 P1.5 4 (or MAX3232 -> see manual) 8 3V3 P1.6 5 P1.6 P4.0 7 P4.0 SCL 5 4 P1.7 6 P1.7 P4.1 8 P4.1 SDA 6 9 BU3 5 C EA 26 21 PLFF 27R 7 C R3 ALE 27 EA PLLF 22 D- R17 1 MiniDIN6 DB9SLE 10k PSEN
in „Gesucht: Mikrocontroller mit LAN und CAN“ · Mikrocontroller und Digitale Elektronik ·
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STK200SCHEMATIC.PDF
N ANALOG V- T1IN AVCC Supply 7 T2OUT T2IN 10 2 100R 1 8 R2IN R2OUT 9 6 1 REG2 F R7 R5 +5 BRIDGE MAX202CPE N C5 820R 39R LM78L05ACH RS232 0 3 1 1 470nF VOUT VIN + - D C6 N External Pow er Source 100nf G S1 (DC or AC) RXD 3V3 C4 C3 R4 470nF 2 220uF TXD 680R SW SPST (C) 1998 KANDA SYSTEMS Title ST K200
in „LCD Hardware Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
N ANALOG V- T1IN AVCC Supply 7 T2OUT T2IN 10 2 100R 1 8 R2IN R2OUT 9 6 1 REG2 F R7 R5 +5 BRIDGE MAX202CPE N C5 820R 39R LM78L05ACH RS232 0 3 1 1 470nF VOUT VIN + - D C6 N External Pow er Source 100nf G S1 (DC or AC) RXD 3V3 C4 C3 R4 470nF 2 220uF TXD 680R SW SPST (C) 1998 KANDA SYSTEMS Title ST K200
in „ATtiny13 und STK200 über PonyProg2000 flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
N ANALOG V- T1IN AVCC Supply 7 T2OUT T2IN 10 2 100R 1 8 R2IN R2OUT 9 6 1 REG2 F R7 R5 +5 BRIDGE MAX202CPE N C5 820R 39R LM78L05ACH RS232 0 3 1 1 470nF VOUT VIN + - D C6 N External Pow er Source 100nf G S1 (DC or AC) RXD 3V3 C4 C3 R4 470nF 2 220uF TXD 680R SW SPST (C) 1998 KANDA SYSTEMS Title ST K200
in „DS1820 Code + Atmel90S8515“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200SCHEM.PDF
N ANALOG V- T1IN AVCC Supply 7 T2OUT T2IN 10 2 100R 1 8 R2IN R2OUT 9 6 1 REG2 F R7 R5 +5 BRIDGE MAX202CPE N C5 820R 39R LM78L05ACH RS232 0 3 1 1 470nF VOUT VIN + - D C6 N External Pow er Source 100nf G S1 (DC or AC) RXD 3V3 C4 C3 R4 470nF 2 220uF TXD 680R SW SPST (C) 1998 KANDA SYSTEMS Title ST K200
in „Schaltplan für STK 200“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
N ANALOG V- T1IN AVCC Supply 7 T2OUT T2IN 10 2 100R 1 8 R2IN R2OUT 9 6 1 REG2 F R7 R5 +5 BRIDGE MAX202CPE N C5 820R 39R LM78L05ACH RS232 0 3 1 1 470nF VOUT VIN + - D C6 N External Pow er Source 100nf G S1 (DC or AC) RXD 3V3 C4 C3 R4 470nF 2 220uF TXD 680R SW SPST (C) 1998 KANDA SYSTEMS Title ST K200
in „AVR_90S8535“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200S.pdf
N ANALOG V- T1IN AVCC Supply 7 T2OUT T2IN 10 2 100R 1 8 R2IN R2OUT 9 6 1 REG2 F R7 R5 +5 BRIDGE MAX202CPE N C5 820R 39R LM78L05ACH RS232 0 3 1 1 470nF VOUT VIN + - D C6 N External Pow er Source 100nf G S1 (DC or AC) RXD 3V3 C4 C3 R4 470nF 2 220uF TXD 680R SW SPST (C) 1998 KANDA SYSTEMS Title ST K200
in „SRam am Atmega162 ohne zusätzliche Bauteile betreiben“ · Mikrocontroller und Digitale Elektronik ·