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PDF
datasheet.pdf
CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP4 PCA Compare Capture Module 4 H H PCA Compare Capture Module 0 L CCAP0L EAh PCA Compare Capture Module CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 L CCAP1L EBh CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 L CCAP3L EDh CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0 CCAP4L EEh PCA Compare Capture Module CCAP4L7 CCAP4L6 CCAP4L5 CCAP4L4
in „8051 Ultraschall problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TeileListe.pdf
USB-MB-S X1 Reichelt USB BWM SMD 0,24 € 0,24 € 2 1k R-EU_R0603 R1, R2 CSD 10-06K001 0,04 € 0,08 € 1 1u L-EUL1206 L1, L2 Reichelt L-1206AS 1,0µ 0,26 € 0,26 € 2 10k R-EU_R0603 R5, R6 CSD 10-06K010 0,04 € 0,08 € 1 10n C-EUC0603 C5 CSD 115-06N010 0,04 € 0,04 € 2 3u3 CPOL-EUB/3528-21R C14, C15 Reichelt SMD TAN
in „ATxMega Stick“ · Markt ·
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PDF
TDA8702_Philips_DA_CONVERTER_8Bit.pdf
O −V OUT; see Table 1, ZL= 10 k ). (1) handbook, full pagewidth 100 nF REF V CCA ( ) AGND ZL VO Z L Z L 75 V OUT TDA8702/ TDA8702T MSA662 (1) This is a recommended value for decoupling pin 1. Fig.14 Analog output voltage with external load (external load Z = 75 to ∞). L 1996 Aug 23 13 Philips Semiconductors
in „DA Wandler TDA8702“ · Mikrocontroller und Digitale Elektronik ·
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Datei
485test.c
485test // Funktion : 485 Schnittstelle (USART0) soll Zeichen senden // Schaltung : // Prozessor : ATmega128 auf SAVY128 von chip45.com // Sprache : C // Datum : 16.08.2006 // Version : 1.0 // Autor : Ederer Christoph // --------------------------------------------------------------------------- #include <
in „USART Gehversuche und "syntax error before "volatile""“ · Mikrocontroller und Digitale Elektronik ·
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Datei
doswrite3.c
64); strcpy_P(filename,PSTR("77.bin")); WriteTestFile(filename,buffer,77); strcpy_P(filename,PSTR("128.bin")); WriteTestFile(filename,buffer,128); #if defined (__AVR_ATmega644__) || defined (__AVR_ATmega128__) strcpy_P(filename,PSTR("MAX.bin")); WriteTestFile(filename,buffer,BUFFER_SIZE); #endif puts
in „ATmega32 + SD-Karte (Klabunde-Lib)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RG12864K-BIW-VBG.pdf
Raystar Optronics Inc. C:Character Type, T:TAB Type 2 Display G:Graphic Type X:COG Type 3 Display Font: 128 * 64 dot 4 Serials code: P→TN Positive, Gray V→FSTN Negative, Blue N→TN Negative, T→FSTN Negative, Black L→VA Negative D→FSTN Negative (Double film) H→ HTN Positive, Gray F→FSTN Positive 5 LCD I→HTN
in „LCD U8g2 asm“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ata-query.c
send ATA CMD ID\n" " For more ATA cmds see linux/ata.h\n\n"); } else { ret = gethostname(hostname, 128); assert(ret == 0); timeseconds = time(NULL); timeinfo = gmtime(×econds); buf = calloc(1, BUFLEN_ATA); assert(buf); // ATA command to send? if (argc <= 2) { // default to ATA Identify Drive ata_cmd
in „Technics Keyboard Festplatte klonen geht das ?“ · PC Hard- und Software ·
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PDF
AT89C51CC03.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „Einstellung Akzeptanzfilter - Programm / Tool gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT89C2051.pdf
the 10.Power-off sequence: entire array can be erased by using the appropriate combi- set XTAL1 to “L” nation of control signals. The write operation cycle is self- set RST to “L” timed and once initiated, will automatically time itself to Turn V CC power off completion. Data Polling: The AT89C2051 features
in „Hilfe AT89C2051 will nicht !!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCDController.pdf
2MB DRAM Maximum Display Memory (EDO/FPM) (EDO/FPM) (EDO/FPM) 1280KB Built-in SDRAM Package QFP15-128pin QFP15-128pin QFP15-128pin QFP20-144pin Target Applications EPSON's LCD controllers are of high-quality and low power consumption, because they utilize original architecture based on the saving energy
in „Atmel mit VGA Ausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FLASHMCUProgrammerforFR.pdf
-V and 5-V products 4 FUJITSU FLASH MCU Programmer for FR Specifications (4) Setting for MB91F127/F128 Pin Function Supplementary Explanation MD2, MD1, Mode pins Should be controlled in flash memory reprogramming mode. MD0 When MD2 and MD1 are set to “H” and MD0 is set to “L”, they enter the reprogramming
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ssd1305-oled-neu.bas
16 , 32 , 0 , 0, Data 0 , 0 , 65 , 65 , 127 , 0 , 0 , 0, Data 0 , 4 , 2 , 1 , 2 , 4 , 0 , 0, Data 128 , 128 , 128 , 128 , 128 , 128 , 128 , 128, Data 0 , 0 , 3 , 7 , 0 , 0 , 0 , 0, Data 0 , 32 , 84 , 84 , 84 , 120 , 0 , 0, Data 0 , 127 , 68 , 68 , 68 , 56 , 0 , 0, Data 0 , 56 , 68 , 68 , 68 , 40 , 0
in „OLED Display mit ssd1305 Chip“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_PG240128ERS-XYABP1_Display.pdf
Contrast Ratio K Ø=10°, - 3.0 - - Frame fFLM - - 75 - Hz θ =0°, Frequency Note 1 2 Duty Ratio - 1/128 - Brightness - - - 10 - cd/m Recommended VDD -VO Duty=1/128 - 16.9 - V Viewing - 6 o’clock LC Drive T=0°C, Direction Voltage Ø=10°, Viewing Angle Ø2 - Ø1 K=1.4, - 40 - degree Note 3 Note 1 Duty=1/128
in „Problem mit Grafikdisplay (Powertip)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMG6401PLGE.pdf
/128 - 15.8 - V Response Time t Ø=10°, - 250 400 ms T=25°C, R Ø=10°, (Rise) θ=0°, Note 1 Note 3 Response Time tF Ø=10°, - 300 450 ms Duty=1/128 - 15.4 - V (Fall) T=40°C, θ=0°, Ø=10°, Note 1 Note 3 ABSOLUTE
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PDF
LMG6401PLGE.pdf
/128 - 15.8 - V Response Time t Ø=10°, - 250 400 ms T=25°C, R Ø=10°, (Rise) θ=0°, Note 1 Note 3 Response Time tF Ø=10°, - 300 450 ms Duty=1/128 - 15.4 - V (Fall) T=40°C, θ=0°, Ø=10°, Note 1 Note 3 ABSOLUTE
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PDF
K6T1008V2E-TB70.pdf
FUNCTIONAL DESCRIPTION CS 1 CS2 OE WE I/O Mode Power H X 1) X1) X 1) High-Z Deselected Standby X 1) L X1) X 1) High-Z Deselected Standby L H H H High-Z Output Disabled Active L H L H Dout Read Active 1) L H X L Din Write Active 1. X means don ′t care (Must be in high or low states) ABSOLUTE MAXIMUM RATINGS
in „[V] 10St SRAM 1MBit(128Kx8) 70ns, 3,3V Samsung K6T1008V2E-GF70 (8€)“ · Markt ·
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PDF
K6T1008V2E-TB70.pdf
FUNCTIONAL DESCRIPTION CS 1 CS2 OE WE I/O Mode Power H X 1) X1) X 1) High-Z Deselected Standby X 1) L X1) X 1) High-Z Deselected Standby L H H H High-Z Output Disabled Active L H L H Dout Read Active 1) L H X L Din Write Active 1. X means don ′t care (Must be in high or low states) ABSOLUTE MAXIMUM RATINGS
in „[V] 10St SRAM 1MBit(128x8) 70ns Samsung K6T1008V2E-GF70 (8€)“ · Markt ·
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Datei
pwm_12f683.asm
Vorteiler 16:1 ; bsf T2CON, T2CKPS0 bsf T2CON, TMR2ON ; Timer2 ein ; Frequenz + duty cycle bank1 movlw d'128' ; xxx kHz movwf PR2 bank0 movlw d'64' ; duty cycle: 50% von xxx sind yyy movwf CCPR1L movlw b'00001100' ; Start, PWM active high movwf CCP1CON bank0 ;***********************************************
in „Wert in Frequenz umwandeln“ · Mikrocontroller und Digitale Elektronik ·
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Datei
USART.h
"F_CPU not defined" #endif //F_CPU //Anpassen der seriellen Schnittstellen Register wenn ein ATMega128 benutzt wird #if defined (__AVR_ATmega128__) #define USR UCSR0A #define UCR UCSR0B #define UDR UDR0 #define UBRR UBRR0L #define USART_RX USART0_RX_vect #endif #if defined (__AVR_ATmega644__) || defined (__AVR_ATmega644P__) #define USR UCSR0A #define UCR UCSR0B #define UBRR UBRR0L #define EICR EICRB #define TXEN TXEN0 #define RXEN RXEN0 #define RXCIE RXCIE0 #define UDR UDR0 #define UDRE UDRE0 #define USART_RX USART0_RX_vect #endif #if defined (__AVR_ATmega1284__) || defined (_
in „#define (wie kann ich vektor erstellen.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD5241_5242-1501681.pdf
= +2.7V/0V L ) 1MΩ A 0.5 Ω 1k G B ( E S E N ( C I Y A D I T 100kΩ O R 0 I M E E 100 T I R T L L S O N O N VDD/VSS= +5.5V/0V, ±2.7V I H O 10kΩ R –0.5 N 10 –1.0 9 1 1 0 32 64 96 128 160 192 224 256 - –40 –20 0 20 40
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PDF
2243913.pdf
-40C DNL25C DNL 85C DNL 125C DNL 0.2 W 3 ( ( INL e 220 DNL INL ) e 220 2 ) n ) 0.1 b n ) S t s180 L t s180 ( i h 0 r i h 1 r e (o40 o e (140 o R -0.1 E R 0 E e 100 R W e 100 i i DNL RW W 60 -40°C -0.2 W 60 -40°C -1 125°C85°C25°C 125°C 85°C 25°C 20 -0.3 20 -2 0 32 64 96 128 160 192 224 256 0 25 50 75
in „[V] 11St. SMD Dual Digital Poti - I2C Microchip MCP4561-103 10kOhm 256Steps Nonvolatile (8€)“ · Markt ·
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PDF
22107B-1180063.pdf
-40C DNL25C DNL 85C DNL 125C DNL 0.2 W 3 ( ( INL e 220 DNL INL ) e 220 2 ) n ) 0.1 b n ) S t s180 L t s180 ( i h 0 r i h 1 r e (o40 o e (140 o R -0.1 E R 0 E e 100 R W e 100 i i DNL RW W 60 -40°C -0.2 W 60 -40°C -1 125°C85°C25°C 125°C 85°C 25°C 20 -0.3 20 -2 0 32 64 96 128 160 192 224 256 0 25 50 75
in „[V] 24St SMD Digital I2C / 256 Steps 5K Dual Poti Microchip MCP4561- 502E/MS (MSOP8) (alle 15€)“ · Markt ·
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PDF
2243913.pdf
-40C DNL25C DNL 85C DNL 125C DNL 0.2 W 3 ( ( INL e 220 DNL INL ) e 220 2 ) n ) 0.1 b n ) S t s180 L t s180 ( i h 0 r i h 1 r e (o40 o e (140 o R -0.1 E R 0 E e 100 R W e 100 i i DNL RW W 60 -40°C -0.2 W 60 -40°C -1 125°C85°C25°C 125°C 85°C 25°C 20 -0.3 20 -2 0 32 64 96 128 160 192 224 256 0 25 50 75
in „[V] 44St. SMD Digital I2C / 256 Steps 10K Poti Microchip MCP4561- 103E/MS (MSOP8 Gehäuse)“ · Markt ·
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PDF
2243913.pdf
-40C DNL25C DNL 85C DNL 125C DNL 0.2 W 3 ( ( INL e 220 DNL INL ) e 220 2 ) n ) 0.1 b n ) S t s180 L t s180 ( i h 0 r i h 1 r e (o40 o e (140 o R -0.1 E R 0 E e 100 R W e 100 i i DNL RW W 60 -40°C -0.2 W 60 -40°C -1 125°C85°C25°C 125°C 85°C 25°C 20 -0.3 20 -2 0 32 64 96 128 160 192 224 256 0 25 50 75
in „[V] 10St. Digitalpoti MCP4561-103E/MS 8MSOP orginalverpackt. (9€)“ · Markt ·
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Datei
ODM100.c
,0x40,0x00}, // (198) i - 0x0131 Latin Small Letter Dotless I {0x7F,0x48,0x44,0x40,0x40}, // (199) L - 0x0141 Latin Capital Letter L with Stroke {0x00,0x49,0x7F,0x44,0x00}, // (200) l - 0x0142 Latin Small Letter L with Stroke {0x7C,0x08,0x12,0x21,0x7C}, // (201) 'N - 0x0143 Latin Capital Letter N with
in „Frage zum ODM100 OLED Bausatz von ELV“ · Mikrocontroller und Digitale Elektronik ·
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Datei
oled1.c
,0x40,0x00}, // (198) i - 0x0131 Latin Small Letter Dotless I {0x7F,0x48,0x44,0x40,0x40}, // (199) L - 0x0141 Latin Capital Letter L with Stroke {0x00,0x49,0x7F,0x44,0x00}, // (200) l - 0x0142 Latin Small Letter L with Stroke {0x7C,0x08,0x12,0x21,0x7C}, // (201) 'N - 0x0143 Latin Capital Letter N with
in „AVR Oled Display odm 100-Wie ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
oled.c
0x40,0x00}, // (198) i - 0x0131 Latin Small Letter Dotless I //{0x7F,0x48,0x44,0x40,0x40}, // (199) L - 0x0141 Latin Capital Letter L with Stroke //{0x00,0x49,0x7F,0x44,0x00}, // (200) l - 0x0142 Latin Small Letter L with Stroke //{0x7C,0x08,0x12,0x21,0x7C}, // (201) 'N - 0x0143 Latin Capital Letter
in „ODM100 OLED bleibt schwarz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ODM100.c
,0x40,0x00}, // (198) i - 0x0131 Latin Small Letter Dotless I {0x7F,0x48,0x44,0x40,0x40}, // (199) L - 0x0141 Latin Capital Letter L with Stroke {0x00,0x49,0x7F,0x44,0x00}, // (200) l - 0x0142 Latin Small Letter L with Stroke {0x7C,0x08,0x12,0x21,0x7C}, // (201) 'N - 0x0143 Latin Capital Letter N with
in „SSD 1351 - OLED ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Platine_Schaltplan.pdf
RX0 RX0 _ 7 23 PC0 15 1 SDO NRES 6 7,4V 1 2 3 PD6 30 3D_FIX GND$5 3 1 13 32 12 SDI RFM12 PTC_FUSE 1 L L L PD5 29 1PPS 3D_FIX 2 GND PD7 31 3 SUPRESSOR 2 E E E PD4 28 1PPS R_SU 2 PD6 30 F 4 FSK/DATA/NFFS 1812L Q 1 1 1 PD3 27 1 Q PD5 29 K DCLK/CFIL/FFGT R QA 6 5 4 PD2 26 STATUS_USB 2 3V3_IC2 U PD4 28 5
in „Kleine Überprüfung von meiner ersten großen Platine“ · Platinen ·
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Datei
radio.c
i2c_write(0x20); i2c_write(0x00); i2c_write(freq_H); //high-byte //0x2260=88.00 MHz i2c_write(freq_L); //low-byte i2c_write(0x00); i2c_stop(); delay_ms(60); wait_for_ready_CTS(); FillRect(16,0,16,128,0); //leeres Rechteck zum löschen, RDS-Text löschen } //********************************************
in „OLED RDS Radio mit SI4735 + AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcm1796.pdf
selection Stereo Register 20 MONO yes yes yes Stereo, monaural Channel selection for monaural mode data L-channel Register 20 CHSL yes yes yes L-channel, R-channel Delta-sigma oversampling rate selection ×64 f Register 20 OS[1:0] yes yes (2) yes S ×64 fS, ×128 S , ×32Sf PCM zero output enable Enabled Register
in „Audio Signal verdoppeln“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
485test.c
485test // Funktion : 485 Schnittstelle (USART0) soll Zeichen senden // Schaltung : // Prozessor : ATmega128 auf SAVY128 von chip45.com // Sprache : C // Datum : 16.08.2006 // Version : 1.0 // Autor : Ederer Christoph // --------------------------------------------------------------------------- #include <
in „Einfach nur Zeichen senden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STC15-English.pdf
5.5-3.8 0.5K 128 - - 2 - Y 5 - 1 - Y Y 8-level Y Y Y Y ¥0.89 STC15L101W 5.5-3.8 1K 128 - - 2 - M 5 - 1 4K Y Y 8-level Y Y Y Y ¥0.99 STC15L102W 5.5-3.8 2K 128 - - 2 - Y 5 - 1 3K Y Y 8-level Y Y Y Y ¥1.1 STC15L104W 2.4-3.6 4K 128 - - C 2 - Y 5 - 1 1K Y Y 8-level Y Y Y Y ¥1.2 ¥1.4 T ¥1.2 S Theprogram IAP15L105W 2.4-3.6 5K 128 - - 2 - Y 5 - 1 IAP Y Y 8-level Y Y Y Y Flashinuser programarea can beusedas EEPROM. Encryption Download
in „Testbericht Elektronische Last“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
_Main.asm
gutes Signal Empfangen werden .equ cPPMHyst = 10 ; Hysterese in 0,5µs (0-31) .equ cPPMSync = (3000/128)+1 ; 3,072ms .equ cSVInterv = 20000/128 ; Servointervall 19,968ms .equ cSVTcs = 4<<CS10 ; Timer1 4 = CK/8 (0.5µs bei 16MHz) // **** I/O definieren .equ PORT = PORTB .equ DDR = DDRB .equ PIN = PINB .
in „Unruhige Servosignalgenerierung Tiny25 Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC51P66E04_Datasheet_1.20190628115453636973.pdf
HIGH-PRECISION PWM SUPPORTED ADC MCU DESCRIPTION SC51P66E04 adopts SC51 core with built-in 4Kbyte OTP, 128 byte RAM 2 and 256 byte E PROM. It integrates one 16MHz high-precision RCK, one 6-channel 12-bit precision ADC, one universal pulse generator, supporting 2-channel complementary PWM output and it suitable
in „Welche IC's / Funktion Mittelabgriff Akkupack ?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
timer.c
TIMSK0 |= (1 << OCIE0A); } else { OCR0A = 256 - u_cnt; } } static volatile uint8_t timer1_compa_cntL; static volatile uint8_t timer1_compa_cntH; ISR(TIMER1_COMPA_vect) { if (++ timer1_compa_cntL >= 100) { timer1_compa_cntL = 0; if (++ timer1_compa_cntH >= 20) { timer1_compa_cntH = 0; PORTB ^= _BV(PB1
in „Problem: ADC-Wandlung legt Timer ISR Routine lahm“ · Projekte & Code ·
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Datei
glcd_backup.c
the CodeWizardAVR V1.24.0 Standard Automatic Program Generator © Copyright 1998-2003 HP InfoTech s.r.l. http://www.hpinfotech.ro e-mail:office@hpinfotech.ro Project : Version : Date : 24.05.2004 Author : Sebastian Amthor Company : Comments: Chip type : ATmega32 Program type : Application Clock frequency
in „Besonderheiten der Compiler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
limestone_arm_pda_pxa320_datasheet.pdf
120 USBH1_N 121 GPIO62/GPIO81 1 122 USB5V 123 SUPPLY+ 124 USB5V 125 SUPPLY+ 126 SUPPLY+ 127 SUPPLY+ 128 SUPPLY+ 129 DC_IN_SUPPLY+ 130 PUSH_IN 131 BATT+ 132 BATT + 133 BATT + 134 BATT + 135 BATT + 136 BATT + 137 BATT + 138 BATT + 139 BATT + 140 BATT + ToradexAl Altsagenstrlsse5 60l8Horw Swilzerland wwwltoradex.com
in „[V] Toradex Limestone Marvell PXA320 Processor Board (8€)“ · Markt ·
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Bild
Blockdiagramm des STM32MP215 Mikrocontrollers
STM32MP215 block diagram Arm® Cortex®-A35 1.2GHz / up to 1.5GHz L1 32KB I-Cache / 32KB D-Cache 128KB L2 cache NEON TrustZone Arm® Cortex®-M33 300MHz 16KB I-Cache 16KB D-Cache FPU / MPU / NVIC TrustZone Memory DDR4 4GB LPDDR4 2GB DDR3L 1GB Shared RAM 448KB including 128KB Retention RAM Backup RAM 8KB / Boot ROM/ OTP fuse System Power Supply Regulators Crystal & Internal oscillators Watchdogs (I & W) Cyclic Redundancy Check (CRC) 96-bit unique ID Up to 123 GPIOs Connectivity
in „ESP32-E22, schneller Chip aus dem Hause WCH, ressourcensparendes WiFi 7 uvam“ · Mikrocontroller und Digitale Elektronik · · Diagramme
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PDF
PWM_Controller_Manual.pdf
2/2 AVR- Speicherreservierungen SRAM Adresse [^16] Größe[Byte] Reserviert für RX Bottom SRAM Start 128 Befehle TOP E0 Bottom E1 TWI Receive Buffer 128 TOP Bla Bla TWI Transmitt Buffer Bottom Bla Bla 128 TOP Bla Bla Bottom Bla Bla Daten Speicher TOP Bla Bla 512 Stack Bottom RAMEND- 128 128 TOP RAMEND
in „PWM- Controller 18- Kanal TWI- Bus Proj.“ · Projekte & Code ·
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PDF
MX25L12805D__3V__128Mb__v1.2.pdf
M X 2 5 L 1 2 8 0 5 D 128M-BIT [x 1] CMOS SERIAL FLASH FEATURES GENERAL • Serial Peripheral Interface compatible -- Mode 0 and Mode 3 • 134,217,728 x 1 bit structure • 4096 equal sectors with 4K byte each 256
in „FLASH Memory Chip im Lenovo X200 von 8 MB auf 16 MB vergroessern“ · PC Hard- und Software ·
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PDF
93LC46.pdf
typical standby current at 2.5V 6 6 6 ORG pin selectable memory configuration DI 3 6 ORG DO 4 5 V SS 128 x 8- or 64 x 16-bit organization (93LC46) 256 x 8- or 128 x 16-bit organization (93LC56) ROTATED SOIC 512 x 8 or 256 x 16 bit organization (93LC66) Self-timed erase and write cycles NU 1 3 3 3 8 ORG
in „Probleme mit SPI EEPROM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
512-bit Secured OTP Definition Addressrange Size Standard CustomerLock Factory Lock xxxx00~xxxx0F 128-bit ESN(electricalserialnumber) Determinedbycustomer xxxx10~xxxx3F 384-bit N/A P/N:PM1290 7 REV. 1.4, OCT. 01, 2008 M X 2 5 L 1 6 0 5 D M X 2 5 L 3 2 0 5 D M X 2 5 L 6 4 0 5 D HOLD FEATURES HOLD#pinsignalgoeslowtoholdanyserialcommunicationswiththedevice.TheHOLDfeaturewillnotstoptheoperation
in „MX25L160(5AM2C) neu beschreiben? Gibt es eine DIY Lösung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nRF24L01plus.pdf
Adapter, nur HEX Adapter->Server Quickstart Hardwareaufbau https://arduino-info.wikispaces.com/Nrf24L01-2.4GHz-HowTo von der Beschreibung abweichend sind die folgenden Verbindungen: • nRF24L01+ CE → Arduino D8 (ATMega8 PB0) • nRF24L01+ CSN → Arduino D4 (ATMega8 PD4) • nRF24L01+ IRQ → Arduino D3 (ATMega8
in „Repeating und Routing Netzwerk mit Arduino und nRF24L01+“ · Projekte & Code ·
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flipdot.pdf
R81 R83 R85 R87 R89 R91 R93 R95 R97 R99 R101 R103 R105 R107 R109 R111 R113 R115 R117 R119 R121 R123 L62 L63 L64 L65 L66 L67 L68 L69 L70 L71 L72 L73 L74 L75 L76 L77 L78 L79 L80 L81 L82 L83 L84 L85 L86 L87 L88 L89 ROW_2A R124 R126 R128 R130 R132 R134 R136 R138 R140 R142 R144 R146 R148 R150 R152 R154 R156
in „Flipdot Matrix - FP2800A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
flipdot.pdf
D147 D149 D151 D153 D155 D157 D159 D161 D163 D165 D167 ROW_2B D114 D116 D118 D120 D122 D124 D126 D128 D130 D132 D134 D136 D138 D140 D142 D144 D146 D148 D150 D152 D154 D156 D158 D160 D162 D164 D166 D168 L85 L86 L87 L88 L89 L90 L91 L92 L93 L94 L95 L96 L97 L98 L99 L100 L101 L102 L103 L104 L105 L106 L107
in „Flipdot Matrix - FP2800A“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AD7193.c
conf |= (1L<<BURN); else conf &= ~(1L<<BURN); // now we want to dis-/enable reference detection if(refDet) conf |= (1L<<REFDET); else conf &= ~(1L<<REFDET); // now we want to dis-/enable the buffer if(buf) conf |= (1L<<BUF); else conf &= ~(1L<<BUF); // now we want to set polarity if(pol) conf |= (1L<<UB); else conf &= ~(1L<<UB); // now we want to set reference input if(refsel) conf |= (1L<<REFSEL); else conf &= ~(
in „Merkwürdige Registerinhalte beim ADC AD7193“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AD7193.c
conf |= (1L<<BURN); else conf &= ~(1L<<BURN); // now we want to dis-/enable reference detection if(refDet) conf |= (1L<<REFDET); else conf &= ~(1L<<REFDET); // now we want to dis-/enable the buffer if(buf) conf |= (1L<<BUF); else conf &= ~(1L<<BUF); // now we want to set polarity if(pol) conf |= (1L<<UB); else conf &= ~(1L<<UB); // now we want to set reference input if(refsel) conf |= (1L<<REFSEL); else conf &= ~(
in „Merkwürdige Registerinhalte beim ADC AD7193“ · Mikrocontroller und Digitale Elektronik ·
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Datei
iic_tx_solo.c
V1.24.7e Professional Automatic Program Generator © Copyright 1998-2005 Pavel Haiduc, HP InfoTech s.r.l. http://www.hpinfotech.com e-mail:office@hpinfotech.com Project : Version : Date : 18.06.2007 Author : F4CG Company : F4CG Comments: Chip type : AT90CAN128 Program type : Application Clock frequency
in „I²C (TWI) CodeVison - Problem bei Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XPLAIN_Shematic.pdf
9 8 7 6 5 4 3 2 1 0 9 8 7 6 U100 GND AVCC 1 9 9 9 9 9 9 9 9 9 9 8 8 8 8 8 8 8 8 8 8 7 7 7 7 ATxmega128A1-AU ) ) ) ) ) ) 2 D ) ) T T 3 2 ) ) D C ) ) ) ) ) ) ) Analogpower A A A A A A C G L L S E P P C C G V B B B B B B B SDRAM_D3 L100 C C C C F F V A A E T S S E E E E E E E SDRAM_D2 AVCC - - D D R R A
in „Xplain: Schaltplan gesucht“ · Mikrocontroller und Digitale Elektronik ·