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Datei
DG16080.c
********************************************/ #pragma code #define I_Temp LATAbits.LATA0 #define U_Bat LATAbits.LATA1 #define DCF_LED LATAbits.LATA2 #define DCF_Data LATAbits.LATA3 #define Piezo LATAbits.LATA4 #define DCF_PON LATAbits.LATA5 #define GLCD_RES LATBbits.LATB0 #define GLCD_RS LATCbits.LATC2
in „Display mit Touchscreen bei Pollin?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Butterfly_Schematics.pdf
1 2 3 4 5 6 7 0 1 2 C C C C C C C C M M M GND A A A A A A A A C C C LCDCAP 1 ( ( ( ( K S O I ( ( ( 48 COM3 LCDCAP C M D D (COM3)PA3 AVR_RxD PE0 2 PE0(RXD) ( ( ( ( (SEG0)PA4 47 LCD27 AVR_TxD PE1 3 PE1(TXD) (SEG1)PA5 46 LCD28 PE2 PE2 4 PE2(AIN0/XCK) (SEG2)PA6 45 LCD29 PE3 5 44 LCD4 PE3 PE4 6 PE3(AIN1)
in „Mikrocontroller mit Rs232 Schnittstelle“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bios6V127.asm
ani 03h lxi h,cotab ; Startadr CO-Tab jmp decode cotab: dw co-mon ; TTY dw crtout ; CRT dw list ; BAT dw uc1out ; UC1; Ext. ; ci: lda iobyte ; CP/M : Console Input ani 03h lxi h,citab ; Startadr CI-Tab jmp decode citab: dw ci-mon ; TTY dw crtin ; CRT dw reader ; BAT dw uc1in ; UC1; Ext. ; reader: lda
in „Suche MOPPEL Projekt in Heft oder .PDF“ · Mikrocontroller und Digitale Elektronik ·
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MB1136.pdf
wire. Note2: Remove [N/A] on R34, R36, C31, C32 , X2 from C.1 to C.2 Note3: Add “defaultopen” on SB48, SB49, SB55 from C.1 to C.2 Note4: Replace “defaultopen” by“ default closed” on SB16 & SB50 from C.1 to C.2 Note5: C31&C32 value changed from 10pF to 4.3pF to fit with new 32K crystal ABS25-32.768KHZ
in „Mikrocontroller Spannung/Strom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Nucleo_Board_Schematics.pdf
wire. Note2: Remove [N/A] on R34, R36, C31, C32 , X2 from C.1 to C.2 Note3: Add “defaultopen” on SB48, SB49, SB55 from C.1 to C.2 Note4: Replace “defaultopen” by“ default closed” on SB16 & SB50 from C.1 to C.2 Note5: C31&C32 value changed from 10pF to 4.3pF to fit with new 32K crystal ABS25-32.768KHZ
in „Erbitte Hilfe bei Fehlersuche - STM32F446“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PVLogger_v0.5_St__ckliste.pdf
R10,R25,R29,R32,R33 10kOhm 5% RES900-‐300X200 14 R11,R12,R13,R14,R15,R16,R17,R18,R19,R20,R26,R27,R48,R49 100Ohm 5% RES900-‐300X200 1 R21 15Ohm 5% RES900-‐300X200 1 R22 0Ohm 5% RES900-‐300X200 1 R23 1Ohm 1% RES900-‐300X200 1 R24 100kOhm 5% RES900-‐300X200 4 R28,R40,R41,R50 27kOhm 5% RES900-‐300X200
in „Reset durch Stack overflow?“ · Mikrocontroller und Digitale Elektronik ·
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MN-RBXEB-01.pdf
status register is initialized.Next, 0Bh performing any required initialization before the keyboard BAT command is issued. 0Ch The keyboard controller input buffer is free. Next, issuing the BAT command to the keyboard controller. The keyboard controller BAT command result has been 0Eh verified. Next, performing any necessary initialization after the keyboard controller BAT command test. The initialization after the keyboard controller BAT 0Fh command test is done. The keyboard command byte is written next. The keyboard controller command byte is written. Next, 10h issuing
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LTC2945.pdf
1.5 1.8 V CCI2C(RST) CC CC DD CC SENSE INPUTS + – VCM SENSE , SENSE Common Mode Voltage l 0 80 V I + 48V SENSE Input Current SENSE , SENSE , V = 48V l 100 150 μA SENSE (HI) Shutdown DD l 2 μA ISENSE (HI) 48V SENSE Input Current SENSE , SENSE , DD= 48V l 20 μA Shutdown l 1 μA ISENSE (LO) 0V SENSE Source
in „U/I/P Metrer für Netzteile“ · Mikrocontroller und Digitale Elektronik ·
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2945f.pdf
1.5 1.8 V CCI2C(RST) CC CC DD CC SENSE INPUTS + – VCM SENSE , SENSE Common Mode Voltage l 0 80 V I + 48V SENSE Input Current SENSE , SENSE , V = 48V l 100 150 μA SENSE (HI) Shutdown DD l 2 μA ISENSE (HI) 48V SENSE Input Current SENSE , SENSE , DD= 48V l 20 μA Shutdown l 1 μA ISENSE (LO) 0V SENSE Source
in „I2C mit Bascom Fehlersuche bei LTC2945“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ec0e6f47-c1bb-4675-a7a3-18d434f2b127.pdf
will fjnd the at the battery’s charge the top right after you level indicator using have selected the bat- the „Battery identifj- tery. 48 GB MT Press the icon again The battery can also and you can assign a be removed under „Re- new image to the bat- move device“. See also tery under „Symbol“, chapter
in „Makita 18V Akku Kapazitätsmessung“ · Mechanik, Gehäuse, Werkzeug ·
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L200.pdf
Regulation o = 2 A 0.15 1 % V (note 1) o = 1.5 A 0.1 0.9 % o Vi Line Regulation V 0 5 V V V i 8 to 18 V 48 60 dB o SVR Supply VoltageRejection V 0 5 V o = 500 mA Vi= 10 Vpp f = 100 Hz (note 2) 48 60 dB Vi-o Droupout Voltagebetween Pins 1 Io= 1.5 A V0 2% 2 2.5 V and 5 V ref Reference Voltage (pin 4) V i
in „L200 Beschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Code.c
PB1); // LED für Batterieüberwachung PORTB = (1<<PORTB1)|(1<<PORTB2); // Taster an PB2 mit Pull-UP, Bat-LED aus //PORTB = 0xFE; // b 1111.1110; /* Watchdog Timer */ wdt_disable(); // Watchdog Timer deaktiviert /* Initialisierung ADC */ ADCSRA = (1<<ADEN)|(1<<ADSC)|(1<<ADATE); //ADCSRA = 0xE0; // b 1110.0000
in „Power-down mit Taster“ · Mikrocontroller und Digitale Elektronik ·
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Hardware.pdf
45 K 16MHz XOUT2 0 P5.1 46 MOSI I A 3 3 4 P5.2 MISO V _ 3 Q2 3 1S P5.3 47 CLK U + C7 C8 + IM P5.4 48 CS0 P5.5 49 CS1 9 0 0 . 10pF 10pF k P5.6 50 CS2 R 1 R 6 R n 8 7 P5.7 51 A0 GND GND R 4 RTC_IRQ 12 P1.0 P6.0 59 AD0 BSL_TX 13 60 AD1 E0 14 P1.1 P6.1 61 AD2 E1 15 P1.2 P6.2 2 IC E2 16 P1.3 P6.3 3 17 P1.4
in „74HCT595 + ULN2003 an 5V und 12V problem“ · Mikrocontroller und Digitale Elektronik ·
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DUE_Faradays_law.pdf
yvon, xbis, ybis, n_max, mw, ntime = 0; Pen pen = new Pen(c, npen); Font fn = new Font("Verdana", 48); Brush br = new SolidBrush(Color.Black); String txt; Boolean b_result; x = 0; xvon = xX(x); n_max = this.ClientRectangle.Width; serialPort1.ReadExisting(); serialPort1.Write(sDUE); wait_ms(200); b_result
in „Arduino Due in plain C“ · Mikrocontroller und Digitale Elektronik ·
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en.DM00428288.pdf
1/10W ±5% RES N.A. 0R_5%_0603 R51, R52 603 169K 1/8W ±1% 46 1 R10 805 RES N.A. 169K_1%_0805 R11, R48, 680R 1/8W ±5% 47 3 R49 805 RES N.A. 680R_5%_0805 5.6K 1/10W 48 1 R12 ±5% 603 RES N.A. 5.6K_5%_0603 R13, R45, R46, R47, 10K 1/10W ±5% 49 9 R53, R54, 603 RES N.A. 10K_5%_0603 R55, R65, R71 50 1 R15 8.2K
in „Problem mit ST-Board zur BLDC-Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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MiniBC5_Itay_pads.pdf
LIN_OUT_L 1 Molex 53014-0210 1R 1UF16V 45 MIC_L_P SPKR_L_P 49 2 1 MIC_IN1 44 MIC_L_N R7 11K 4 LIN_OUT_R 2 48 42 SPKR_L_N R11 1M C9 R2 1R 43 MIC_R_P 8 U1-B 10UF10V MIC_IN2 MIC_R_N R12 11K C7 1UF16V TLV4112IDGN J6 1 C2 SPKR_R_P 46 5 + NA 2 1UF16V R15 11K 7 SPKR_R_N 47 6 - VREG_ON 1 P2 50 PIO_0 3_3V 2 Molex 53014
in „Noise bei Audio processing mit IC von Cambridge Silicon Radio“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
IDE11.PDF
--------------- rem Usage: IDE11_E!.BAT starting_address download_file rem -------------------------------------------------- cls if not exist %2 goto err1 31 IDE11 V2.3 Benutzerhandbuch rem -----------------------------------------------
in „Programm zum MC68HC11 auslesen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
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AVR450_BattCharger.pdf
voltage range from A A (3.67V). The output voltage () from the op-amp has to be within this range:. REF BAT2 Ra VBAT2 = *(V1-V2 ) Rb Where: V BAT2is the output voltage from the op-amp to the AVR A/D. V1 is the positive pole of the battery. V2 is the negative pole of the battery. Ra and Rb are the resistors
in „Pb-Akku Ladegerät mit µP Selbstgemacht“ · Mikrocontroller und Digitale Elektronik ·
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TTester_096k.pdf
avaiable to con▯gure the software for your Tester. PARTNO describes the target processor: m8 = ATmega8 m48 or m48p = ATmega48 m88 or m88p = ATmega88 m168 or m168p = ATmega168 m328 or m328p = ATmega328 example: PARTNO = m168 UI LANGUAGE speci▯es the favored Language LANG ENGLISH, LANG GERMAN, LANG POLISH,
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TTester_096k.pdf
avaiable to con▯gure the software for your Tester. PARTNO describes the target processor: m8 = ATmega8 m48 or m48p = ATmega48 m88 or m88p = ATmega88 m168 or m168p = ATmega168 m328 or m328p = ATmega328 example: PARTNO = m168 UI LANGUAGE speci▯es the favored Language LANG ENGLISH, LANG GERMAN, LANG POLISH,
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Infineon-AN76496_PSoC_5LP_Solar_Microinverter_Control_Design-ApplicationNotes-v03_00-EN.pdf
pF TDK Corp. C1608C0G1H101J 445-1281-2-ND 50-V, 5% NP0 0603 C605 Diode Schottky: 30-V 200- D601 1 BAT54S Fairchild BAT54S BAT54SFSTR- mA SOT-23 Semiconductor ND Resistor: 220–Ohm, 1/10-W, R602 1 220 Panasonic - ERJ-3EKF2200V P220HTR-ND 1% 0603 ECG Resistor: 100-Ohm, 1/10-W, R603, R604 2 100 Panasonic
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ADS7846.pdf
measure- ● TSSOP-16, SSOP-16, QFN-16, ment modes. The reference can also be powered down when AND VFBGA-48 PACKAGES not used to conserve power. The internal reference operates down to 2.7V supply voltage while monitoring the battery voltage from 0V to 6V. APPLICATIONS The low-power consumption of < 0.75mW
in „Frage zu ADS7846“ · Mikrocontroller und Digitale Elektronik ·
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l200.pdf
Regulation o = 2 A 0.15 1 % V (note 1) o= 1.5 A 0.1 0.9 % o Vi Line Regulation V 0 5 V V V i 8 to 18 V 48 60 dB o SVR Supply Voltage Rejection V 0 5 V o = 500 mA Vi= 10 Vpp f = 100 Hz (note 2) 48 60 dB Vi-o Droupout Voltage between Pins 1 Io= 1.5 A V0 ≤ 2% 2 2.5 V and 5 Vref Reference Voltage (pin 4) V i
in „L200 Beschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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ST__L200.pdf
Regulation o = 2 A 0.15 1 % V (note 1) o = 1.5 A 0.1 0.9 % o Vi Line Regulation V 0 5 V V V i 8 to 18 V 48 60 dB o SVR Supply VoltageRejection V 0 5 V o = 500 mA Vi= 10 Vpp f = 100 Hz (note 2) 48 60 dB Vi-o Droupout Voltagebetween Pins 1 Io= 1.5 A V0 2% 2 2.5 V and 5 V ref Reference Voltage (pin 4) V i
in „liegender einstellbarer Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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AVRnDxBoard.pdf
PG0 33K PB3 11 PB3 2 1 USER 2 1K 12 50 C10 PB4 PB4 ~{RESET}/PF6 DTROUT PB5 13 PB5 PF5 49 PF5 100n 14 48 PB6 15 PB6 PF4 47 PF4 PB7 PB7 PF3 PF3 46 16 PF2 45 PF2 XTAL32K2 JP6 R6 Voltage Reference PC0 PC0 XTAL32K2/PF1 17 44 XTAL32K1 0R B PC1 18 PC1 XTAL32K1/PF0 PF1 B PC2 PC2 JP4 19 43 VDDA PC3 22 PC3 PE7 42
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4_Sstelliges_LCD-PanelmeterPM4500.pdf
im Bereich zwi schen 7Vund15 V (typ. 9 V) geringe Stromaufnahme von nur ca. 1,4mA, daher auch fiir Bat teriebetrieb gut geeignet „Low Batt."-Anzeige bei zu geringer Versorgungsspannung extrem ruhige und konstante Anzeige auch der letzten Stelle integrierte, hochkonstante Präzisions-Spannungsreferenz
in „DVM ELV 49377“ · Mikrocontroller und Digitale Elektronik ·
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Aeternum_V1.pdf
3.3V - Bus A SCL/1.3A SCL/3.6B A SDA/1.3A SDA/3.6B +3V3 7 6 5 D1 NOTE: Crystal speed IC9IC$1 PCF8574P BAT43 D2 $ P3 allows for common 13 4 BAT43 6 5 T L A baud rates between 18pF 18pF /INT P0 GPIO_0 I F I S D 9600 and 921600. P1 5 GPIO_1 8 C P I O S V C17 R7 C18 1 A0 P2 6 GPIO_2 Z V C C + IC8 SC16IS740
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
read_me.txt
(For Windows 95 and Windows 98 only) Specify the location of the license.dat file in your autoexec.bat file, which is usually located in your c: directory. To specify the licence.dat file, add the following line to your autoexec.bat file: set LM_LICENSE_FILE <pathname of license file> You must restart
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STM32F407ZG-board-schematic.pdf
RST 10 9 TCK LCD_CS LCD_CS 5 CS 6 7 8 A +5V_OTG_PWR 7 8 VR1(3.3V) +5V_TRACE 11 12 A23 12 11 R47 10k R48 NA U4 R107 / +5V_CAN 5 6 FUSE1 LD1085D2M(TO263) 13 14 R38 0R 0R(NA) A19 14 13 TDO/I2S3_CK LCD_RST LCD_RST 2 RESET 5.6k/1% 5 V +5V_JTAG 3 4 3 VI 2 K 15 16 R40 NA TDO/I2S3_CK 16 15 RST C I D 5 1 +5V_EXT
in „8Mbit/s Manchester Code codieren und decodieren mit STM32F407“ · Mikrocontroller und Digitale Elektronik ·
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STM32F407ZG-board-schematic.pdf
RST 10 9 TCK LCD_CS LCD_CS 5 CS 6 7 8 A +5V_OTG_PWR 7 8 VR1(3.3V) +5V_TRACE 11 12 A23 12 11 R47 10k R48 NA U4 R107 / +5V_CAN 5 6 FUSE1 LD1085D2M(TO263) 13 14 R38 0R 0R(NA) A19 14 13 TDO/I2S3_CK LCD_RST LCD_RST 2 RESET 5.6k/1% 5 V +5V_JTAG 3 4 3 VI 2 K 15 16 R40 NA TDO/I2S3_CK 16 15 RST C I D 5 1 +5V_EXT
in „Problem: SPI Remap am STM32F407ZG“ · Mikrocontroller und Digitale Elektronik ·
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Datei
philipsPM-LCDs.txt
11 S31 Y3 e1 f1 g1 10 S32 P1 Y2 SRQ {arUp} 09 {arUp means clipping, see page 3-9 (17/114)} S33 {LoBat} Y1 REM {flash} 08 S34 ??? ??? SET ZERO 47 S35 X1 STRG LSTN MRNG 07+14 [single Trigger, Listen, manual Range S36 SPEED 1 TLK 2 06+15 [TALK] S37 X2 4 ONLY 3 05+18 S38 FILT NULL Z1 X3 04+23 S39 X4 PROBE S HOLD 03+32 BP0 01 BP1 02 BP2 48 BP3 49 Im Anhang OCR-Versionen der drei Service-Manuals und diese Textdatei mit der Tab-separierten Tabelle.
in „Pjilips PM2519“ · Markt ·
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Datei
main.c
, &page); tal_pib_get(phyCurrentChannel, &channel); switch (page) { case 0: printf("E.g. n=0 -> 96/48ms, n=6 -> 3/1.6s, n=14 -> 13/6.6min; ch0/1-10\r\n"); break; case 2: printf("E.g. n=0 -> 77/30ms, n=6 -> 2.5/1s, n=14 -> 10.5/4min; ch0/1-10\r\n"); break; case 5: printf("E.g. n=0 -> 30ms, n=6 -> 1s,
in „performance Testprogramm Atmel MAC“ · HF, Funk und Felder ·
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MB1075.pdf
WRX_DCX OTG_FS_IDID PB1B11 PIP20445 46 PIP2046PB101 PIP10225 26 PIP1026 DCX_SCL OTG_FS_ID PIP20447 48 PIP2048 C PG15 PIP10227 28 PIP1028PB3 SDA SDA OTG_FS_DM OTG_FS_DMDM PB1313 PIP20449 50 PIP2050PB121 C PG13 PIP10229 30 PIP1030PG14 ENABLE ENABLE OTG_FS_DP OTG_FS_DPDP PB15PISB260PISB2602 PIP20551 52
in „.net auf STM32F429ZI“ · Mikrocontroller und Digitale Elektronik ·
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SAM7-EX256_Rev_C-sch.pdf
+ Q E E Y SCK0 4 PB22/WP 9 10 PB23/CP B4 22 PA13/SPI0_NPCS1/PCK1/PGMD1 PB13/ERX2/SPI0_NPCS129 RX3 C48 R C N C49 R L L P MOSI0 3 SCK PB27/AD0 11 12 PB28/AD1 B5 23 PA14/SPI0_NPCS2/IRQ1/PGMD2 PB14/ERX3/SPI0_NPCS235 RXDV 10u/6.3V E F E 0 1 2 3 LS 100n _ 8 CS_LCD 5 DIO 13 14 24 PA15/SPI0_NPCS3/TCLK2/PGMD3
in „SPI-Initialisierung von zwei Geräte über den gleichen Bus“ · Mikrocontroller und Digitale Elektronik ·
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sony_ht-ct260h.pdf
Powe220 V - 240 V AC, 50/60 Hznadian models) This system incorporates Dolby* Digital Linear PCM 2ch 48 kHz or less OutpBLUETOOTH Specification Power Power consumption Australian models) * Manufactured under license fromstem. Input/Output (HDMI Repeater block) Maximum communication range “Control for HD
in „(V) 2 Platinen aus einer Sony Soundbar und Nixie Röhren“ · Markt ·
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SIM908-C.pdf
.................................................................................................. 48 6.10.3 Module Operating Frequencies........................................................................................................ 49 7 Manufacturing ........................................
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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PDF
gysmi_165_inverter.pdf
AIN2/PD2 PC2(HS)/ICAP2_B 100 _ _ 10 24 0 0 AIN3/PD3 F S PC1/OCMP1_B/AIN13 D07_02S Info Secteur C R07_48S C R07_49S R07_03S 11 / ( 23 R07_26S ) 864048 ) 8 64048 C07_01S AIN4/PD4 0 ) 1 ) 7 PC0/OCMP2_B/AIN12 Info Soudage 0 4 0 4 Q07_01S 64276 64048 F S I H / 64033 ( 610K1/16W ( 6 10K1/16W 64001 100nF (50V
in „(S) Service manual Gysmi“ · Markt ·
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PDF
Sager_D87P_Service_Manual_Part4.pdf
BK2125HS241 TV OUT [11] LTGIO1 R24 10K 39 37 38 40 VDD5 [11] C/R [11] LTGIO2 R365 10K 41 39 40 42 BAT_FULL [27] R347 C416 C417 [27] E-MAIL 43 41 42 44 PWR/SUS_LED [27] [27] CHA/BATLOW PANEL 45 43 44 46 INTMIC [24] 75_1%(0402) 82P 82P 47 45 46 48 BRIGADJ [28] [27] WL_LED 49 47 48 50 ACIN_LED [28] VIN
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MAX1647.PDF
A25°C, unless otherwise noted.) 6 MAX1647 MAX1647 BATT LOAD TRANSIENT BATT LOAD TRANSIENT 1 MAX1647/48-01 MAX1647/48-02 1.1A TO 0.9A TO 1.1A X CCI CCI A CCV V CCV 2.3V V CCI V CCV CCV CCV 100mV/div M CCI 2.4V CCI / VCCV 7 200mV/div CCI CCI CCV 4 VBATT 12V 1V/div 6 12V V BATT 5V/div 1 X 0.9A TO 1.9A TO
in „Win98 Diagnose Notebook Akku immer 50%“ · PC Hard- und Software ·
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PDF
MAX1647_1_.PDF
A25°C, unless otherwise noted.) 6 MAX1647 MAX1647 BATT LOAD TRANSIENT BATT LOAD TRANSIENT 1 MAX1647/48-01 MAX1647/48-02 1.1A TO 0.9A TO 1.1A X CCI CCI A CCV V CCV 2.3V V CCI V CCV CCV CCV 100mV/div M CCI 2.4V CCI / VCCV 7 200mV/div CCI CCI CCV 4 VBATT 12V 1V/div 6 12V V BATT 5V/div 1 X 0.9A TO 1.9A TO
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STM32F103C8T6-Schematic-Diagram.pdf
1 VBAT GND 5 1.5k C9 K1 1N4148 VCC3_3 24 VDD_1 VSS_1 23 USB_MINI P1 104 D3 36 VDD_2 VSS_2 35 GND 1 48 VDD_3 VSS_3 47 2 L1 1N4148 9 8 VCC3_3 Header 2 BAT 100uH VDDA VSSA GND BATTERY C10 C11 STM32F103C8T6 106 104 P3 P4 PA0 PB0 GND 1 PA1 1 PB1 2 2 GND 3 PA2 3 PB2 4 PA3 4 PB3 5 PA4 5 PB4 6 PA5 6 PB5 C 7
in „Löttemperatur STM32“ · Mikrocontroller und Digitale Elektronik ·
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arm.pdf
PIC4201 PIC4202 A11 3PID5035 PID5047 D12 A11 3PID6035 PID6047 D26 A12 PID707 PID7042 D11 A12 36 A11 D11 48 D11 A12 36 A11 D11 48 D25 A13 6 A11 D11 45 D12 PID50A12 D12 PID5048 PID60A12 D12 PID6048 PID70A12 D12 PID7045 D13 PID5050 D10 D13 PID6050 D29 A14 PID70A13 D13 PID7047 D13 C4343 A13 20 51 D9 A13 20 51
in „ARM Board Layout“ · Platinen ·
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Datei
All.txt
LED 1 D3 EGL-1D EGL-1D SOD87-2 1 D3 BZV10 BZV10 DO34Z7 Z DIODE 1 D3 BYV27 BYV27 SOD57-10 DIODE 1 D3 BAT85 BAT85 DO35-10 1 D3 BAT81 BAT81 DO35-10 1 D3 BAT81 BAT81 DO34-7 DIODE 1 D3 BAT49 BAT49 DO41-10 DIODE 1 D3 BAT43 DIODE-7,5 D-7,5 1 D3 BAT43 * BAT43 MINIMELF 1 D3 BAS16 BAS16 SOT23 BAS16 1 D3 7SEG-CA
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
MEGA_1284P_Xplained_Schematic.pdf
CD10 RESET pin of the ATmega1284P device. PTITWIA TWI TWI_SCL TWI_SDA 1R13 SCHOTTKY_SMD_31 TWI_SDA BAT54 02 10 Close to VCC/GND Pair Close to VCC/GND Pair Close to VCC/GND Pair Close to AVCC/GND OR04 RESET R41330RR42 ATMEL Norway * VCC_MCU_P3V3 VCC_MCU_P3V3 VCC_MCU_P3V3 VCC_MCU_P3V3 AVCC_MCU_P3V3 Vestre
in „MEGA1284P XPLAINED über USB mit avrdudue programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Athlet_BCH6L2560_SCH.pdf
0 200 1 2 4 R1 BQ77PL900DL R 1 VI VO , T A R50 U6 8 , + A 200 GND TP30 65678 P 1 R C1 1 CPOUT CHG 48 3 5 T 5 G C 2 47 1000 4 P - R4 3 NC_2 PACK 46 R43 Q15 T + A 4 CP4 PMS 45 200 GND R17 2 TP11 IRFS3306S - C2 5 CP3 NC 44 13 200 2 R CP2 GPOD R49 6 G - C R5 6 CP1 NC_4 43 R82 T 7 NC_3 VREG1 42 + A 8 DSG GND 41 Q16 3 R C3 9 BAT VREG2 40 IRFS3306S G C 10 39 200 P - R6 11 VC1 TOUT 38 TP31 T + A 12 VC2 TIN 37 R83 - VC3 GND_4 GND 4 R C4 13 VC4 ZEDE 36 8 G - C R7 14 VC5 CNF2 35 P 15 VC6 CNF1 34 T + A 16 VC7 CNF0 33 - C5 17 32 G
in „Bosch Athlet 25,2 V Akku 7 Stück Tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HY-LandTiger_SCH.pdf
P4.28 485_TX P0.22 45 B 46 P0.0 P4.29/TX_MCLK/MAT2.1/RXD3 85 P4.29 485_RX GND 46 47 P0.1 31 3V3 47 48 P0.10 41 VSS_1 13 BT1 P2.10 48 49 P0.11 55 VSS_2 NC P2.11 49 50 P2.13 72 VSS_3 19 VBAT JP1 P2.12 50 97 VSS_4 VBAT C50 50PIN 83 VSS_5 BAT 3V 50PIN VSS_6 Y2 3V3 RTCX1 16 RTCX1 10P 28 VDDIO_1 54 VDDIO_2
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Control_S03_Sch_4011.pdf
110A 8mR 3247pF Mut1-5 8BMS LiFePo4 3,2/12,8V 20uA 30/70A 2,0/2,25V 3,6/3,75V Balance 3,6V@45mA 56x48x4mmBoard with Cable Makita P75N02LDG 25V 5mR 75/50A 5nF niko-sem12c8 HY2112C IRF1404PBF TO220 40V 202A 4mR 5669pF Vgsth2-4V M3_Mutter DIN934 SW55 2Temp 3mR=50A 4mR=40A 5mR=30A 4s 12c8 (LiFePo4 HY2112
in „Laufzeitbegrenzung für 12V Pumpe mit Akku, Solarmodul, Step-Up, Zeitschaltuhrbetrieb LED-Anzeige MPP“ · Projekte & Code ·
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AVRDUDE-doc-5.5.pdf
ATmega2560 (**) m2561 ATmega2561 (**) m32 ATmega32 m324 ATmega324 m329 ATmega329 m3290 ATmega3290 m48 ATmega48 m64 ATmega64 Chapter 2: Command Line Options 4 m640 ATmega640 m644 ATmega644 m649 ATmega649 m6490 ATmega6490 m8 ATmega8 m8515 ATmega8515 m8535 ATmega8535 m88 ATmega88 t12 ATtiny12 t13 ATtiny13
in „USB-ISP PRogrammer unter Ubuntu“ · PC Hard- und Software ·
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GD32F3x0_RM_v1.0.pdf
Interrupt register, RCU_INT, is set when the IRC28M becomes stable. 76 GD32F3x0 User Manual Internal 48 MHz RC Oscillator (IRC48M) The Internal 48 MHz RC Oscillator, IRC48M, has a fixed frequency of 48 MHz and dedicated as USB clock or PLL source. The IRC48M RC oscillator can be switched on or off using
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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GD32F3x0_RM_v1.0.pdf
Interrupt register, RCU_INT, is set when the IRC28M becomes stable. 76 GD32F3x0 User Manual Internal 48 MHz RC Oscillator (IRC48M) The Internal 48 MHz RC Oscillator, IRC48M, has a fixed frequency of 48 MHz and dedicated as USB clock or PLL source. The IRC48M RC oscillator can be switched on or off using
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·