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PVLogger_v0.5_St__ckliste.pdf
50kOhm TRIPOT10X5V 1 R37 1.8kOhm 5% RES900-‐300X200 3 R42,R43,R44 3.3kOhm 5% RES900-‐300X200 3 R45,R46,R47 BAT85 DO-‐34 4 D1,D2,D3,D4 DSUB9F DB9FL 1 RS232 SD-‐Card_(Hirose-‐DM1AA-‐SF-‐PEJ-SD-‐Card_(Hirose-‐DM1AA-‐SF-‐PEJ-‐1 SDCARD BC547BP TO92 11 T1,T2,T3,T4,T5,T6,T7,T8,T9,T10,T11 4MHz QUARZ_HC49
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STM32F107-SK-SCH-revA.pdf
TIM1_CH2N/USART3_RTS LCD_CS LCD_CS MICRO_AB VBAT PB15/SPI2_MOSI/I2S2_SD/TIM1_CH3N CS_UEXT CS_UEXT 3V_BAT D5 6 VBAT PB15 BAT54C R15 PC0/ADC12_IN10 15 TRIM WF2S HN1x3 94 BOOT0 PC1/ADC12_IN11/ETH_MII_MDC/ETH_RMII_MDC ETH_RMII_MDC ETH_RMII_MDC R145 R107 1 0 10k 17 BUT(R) 470R 100k C64 +C92 2 3 2 1 PC2/ADC12
in „Cortex M3 STM32F107VC beim Reset passiert nichts“ · Mikrocontroller und Digitale Elektronik ·
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HY-LandTiger_SCH.pdf
P1.28 P0.21 44 B 45 P1.29 RESET VREF- 15 VREF- P4.28/RX_MCLK/MAT2.0/TXD3 82 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 RTCX2 18 RTCX2 C49 32.768K 71 VDDIO_3 C51 96 VDDIO_4 22 X1 22P 42 XTAL1 10P 84 VDDREG_1 23 X2 12M VDDREG_2 XTAL2 Y1 C48 C1 C2 C3 C4 C5
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AVRnDxBoard.pdf
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 PE7 PF0 JP7 C12 PC4 PC4 PE6 PE6 Y2 23 41
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DS203V2.6_SCH.pdf
3K3 4K7 10V 3 R7 R9 2 3 74HC4052PW 74HC4052PW C21 4 DFS NC 35 2V8 R5 R5A R17 R21 C19 C17 12 GND VDD 46 FB 2V8 FB 105 105 16 GND VDD 33 R47 22uF/6.3V 27 GND AD9288-40 VDD 28 29 15 5 51R L2 C18 C20 C22 32 GND VDD 48 4 U7 CESD5V0AP CN5 FB R6 R6A 10V 3 U2A R18 R22 105 105 34 GND VD 31 1 D6 Fout Bin 3K3 4K7
in „Oszilloskop aus STM32 und FPGA“ · Mikrocontroller und Digitale Elektronik ·
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SAM7-EX256_Rev_C-sch.pdf
75 75 4 330 330 X 1 1 15U4PWR 16 U2 4 4 4 4 4 4 4 4 4 3 3 3 2 TD- 5 B5 R51 2 Common<5> R 2 GND VCC R46 AG AG E 2 330 E<2> D C62 I - 1.5K/1% LEDACT KG KG GREEN I Centerpush SW1 SW2 PA27/DRXD 100n R47 T L X X D D T X X D C X AY S B2 3 6 B4 R37 R83 3.3K RX3 2K R D N N D T T N R E LED100/DUP KY AY YELLOW
in „SPI-Initialisierung von zwei Geräte über den gleichen Bus“ · Mikrocontroller und Digitale Elektronik ·
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MT6252_Design_Notice.pdf
Copyright © MediaTek Inc. A30 rights reserved Reference design - Schematic IC Protection: PWRKEY and BAT_ON Please reserve 1k resistor on phone PCB to protect PWRKEY no matter if PWRKEY connect to any I/O connector or not. Please reserve 1k resistor on phone PCB to protect BAT O_ pin if BAT_ON is used
in „Amparos GPS Tacker - Pollin Schnäppchen“ · Mikrocontroller und Digitale Elektronik ·
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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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BM153-User-Manual-REV3-2130695.pdf
Recommended Operating Conditions Min Max Operating Temperature Range -20°C +70°C Supply Voltage, (V_BAT) 2.5V 4.2V Supply Voltage, (V_CHG) 4.5V 5.75V Power Consumption Units Average SCO Connection HV3 (30ms interval sniff mode) mA 21 SCO Connection HV1 mA 40 ACL Data Transfer 115.2Kbps UART no traffic
in „Pinout-Zählreihenfolge BT-Modul BM150-V2.0 und Schaltung gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Butterfly_Schematics.pdf
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) (SEG3)PA7 43 LCD6 PE5 7 PE4(SCL/USCK) (SEG4)PG2 42 LCD25 PE6 8 PE5(SDA/DI) (SEG5)PC7 41 LCD26 PE6(DO) (SEG6)PC6 RST_FLASH
in „Mikrocontroller mit Rs232 Schnittstelle“ · Mikrocontroller und Digitale Elektronik ·
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88E1111_DS.pdf
. If the last byte co DA 1 Figure 24: Sequential mriNe Operation 0 SDA LinePhyAdWr. [4:0]}0A Upper BAtLower BAte Data n D el ND N Upper BAtLr ,r BAtUpper ByAeLower BAtP Data n+x D from MaMteL to Slave U L from elaTI to Master . c T 2.10.2.3 CurreEt Address Read In , E read and resets the Slave to synchronize
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E461201_BA_Rev17_Touch-it_XELO.pdf
...................................................................................................46 6.6 Repairs..................................................................................................................................................................46 6.7 Cleaning...........
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tsc2003.pdf
2.53 2.53 V2.52 V 2.52 F (F R2.51 R2.51 V2.50 V 2.50 a a r2.49 r 2.49 n n I2.48 I 2.48 2.47 2.47 2.46 2.46 2.45 2.45 0 5 0 5 0 5 0 5 0 5 0 5 0 5 0 5 0 5 0 5 0 5 0 5 0 5 4 3 3 2 2 1 1 0 0 1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 2.5 3 3.5 4 4.5 5 5.5 – – – – – – – – V (V) Temperature (°C) DD 8 TSC2003 www.ti.com
in „Touchscreen Controller“ · Analoge Elektronik und Schaltungstechnik ·
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MiniBC5_Itay_pads.pdf
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 53014-0210 51 PIO_1 4 BLUE_LED 3 OUT_GAIN_UP R20 10K 53 PIO_2 SPI_MISO 17 SPI_MISO R17 R18 R19 4 PIO3 R21 10K 52 PIO_3 SPI_CS
in „Noise bei Audio processing mit IC von Cambridge Silicon Radio“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDFsam_panasonic_rf-d10eb_service_manual.pdf
8 BBOUT- C111 0.1 R111 33 0 CIRCUIT CP101* 9 VHF_IN D H D I B C 22 R110 14 RFII _ 1 _ A B A _ B F BAT3 35 3 . 0 5 2 3 4 5 IN SCHEMATIC 1000P G1C91NGA0040 10 IND1 2 _ D C _ C C D A STBY 21 33 56P 15 RFIIB R I D Y Y Y O R Y _ BAT2 34 2 0 2 2 2 2 2 2 I A G V A V V G R C216 0.1 C I W A A A _ N E C A E C C C C C C C DIAGRAM - 2 16 AVDDIOANA D D I T T T P _ T D T W L BAT1 33 D VA101 11 12 13 14 15 16 17 18 19 20 V V R R R R A D M V R P S D L102 1 0 0 K IC201 4 P 6 P 1 1 R 1 1 0 17 18 1920 2122 2324 2526 27 28 29 30 31 32 C0DBFYY00164 6 5 4 B0ZBZ0000230 G1C91NGA0040
in „Welche Fritzbox hat die meisten Spannungswandler?“ · Analoge Elektronik und Schaltungstechnik ·
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sony_ht-ct260h.pdf
DATA2, HS2 47 4 0 5 O 6 O R684 NC F GPIO17, DAO1_DATA3 / XMTA 3 P C N C / 24.576MHz/30PPM CS3.3V 0 46 C / V V C587 C589 CS1.8V 1 GPIO23,DAO2_LRCLK 44 0 / / 19 GPIO22, DAO2_SCLK 43 RF79 33 HS3 F P 33pF/50V/NP0 33pF/50V/NP0 GNDA GPIO18, DAO2_DATA0, HS3 39 HS4 0 0 0 DSP FB46 500/800mA +DSP_PLL_PWR GPIO19
in „(V) 2 Platinen aus einer Sony Soundbar und Nixie Röhren“ · Markt ·
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ec0e6f47-c1bb-4675-a7a3-18d434f2b127.pdf
er service centres structions for only. charging and never charge the Special safety battery or the bat- directions for bat- tery-powered tool tery-operated tools outside the temper- ature range stated • Ensure that the in the operating in- device is switched 41 GB MT off before inserting • Allow a hot
in „Makita 18V Akku Kapazitätsmessung“ · Mechanik, Gehäuse, Werkzeug ·
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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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50002370A.pdf
Pin 1 — GND Power Ground reference 2 — GND Power Ground reference 3 1 GND Power Ground reference 4 2 BAT_IN Power Battery input. Main positive supply input. Connect to 10 µF low ESR ceramic capacitor. 5 3 SW_BTN DI Software Button - H: Power On; L: Power Off. See Section 1.6 “Software Button (SW_BTN)”.
in „[V] 2St. Microchip Bluetooth4.0 Module RN4677“ · Markt ·
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philipsPM-LCDs.txt
Segmente ansteuerbar, davon sind 160-3=157 genutzt: BP0 BP1 BP2 BP3 Pin S00 ={DC} ~{AC} DELAY SEQU 46 S01 BURST MAX delta% AX+B 45 S02 READ MIN LIM CAL 44 S03 ??? 4W{ire} SPEAKER SHIFT 43 S04 --- HF {diode} 2W{ire} 42 S05 P8P9 Z {up} {down} 41 S06 D9 c9 A8 b9 40 S07 k9 G9 h9 j9 39 S08 i9 l9 m9 g9 38
in „Pjilips PM2519“ · Markt ·
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TransistorTester_eng_095k.pdf
probe resistor. 23. The Check of battery voltage is selectable in version 0.95k by the Makefile option BAT_CHECK. If selected, the output of the battery voltage is selectable too with option BAT_OUT. If the option BAT_CHECK is unselected, the software release number is displayed in row 1 of the LCD at the
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arm.pdf
PIR2101 PIR2102 22 PO\SDRAM0RAS PID302 POSDRAM0CLK0 GND 44 P2.17 / RAS 59 SDRAM_RAS 1 Y0 3 SDRAM_CLK0 46ID20XTAL1 P2.18 / CLKOUT0 PID6759 PID3CLKIN Y1 PID503 PSDRAM_CLK11 PID20XTAL2 P2.19 / CLKOUT1 PID7367 R2R2222 4 Y2 PID705 PO FPGA_CLK P2.20 / DYCS0 PID2073 PIR2201 PIR2202 PSDRAM_CECE PID3GND Y3 PID307
in „ARM Board Layout“ · Platinen ·
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velleman_hps5_oscilloscope.pdf
PersonalScope Batteries (option): Power supply ⇒ The unit can be used with either ordinary alkaline bat- The HPS5 PersonalScope can be powered by means of an teries or rechargeable ones e.g. our HR6 type (5 x). adapter, ordinary batteries or rechargeable ones. ⇒ Open the battery cover by loosening the
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SIM908-C.pdf
...................................................................................................46 TABLE 27: THE ESD CHARACTERISTICS (TEMPERATURE: 25℃, HUMIDITY: 45 %).......................................47 TABLE 28: SIM908-C GSM 900AND GSM 850 CONDUCTED RF OUTPUT POWER .........................
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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STM32F103C8T6-Schematic-Diagram.pdf
15 41 PB5 PA6 16 PA5 PB5 42 PB6 PA7 17 PA6 PB6 43 PB7 PA7 PB7 2 PA8 29 45 PB8 3 TXD PA9 30 PA8 PB8 46 PB9 1 RXD PA10 31 PA9 PB9 21 PB10 USB_D- PA11 32 PA10 PB10 22 PB11 J_PWR PA11 PB11 USB_D+ PA12 33 PA12 PB12 25 PB12 JTMS PA13 34 PA13/JTMS/SWDIO PB13 26 PB13 F2 VCC5 U2 VCC3_3 B JTCK PA14 37 PA14/JTCK
in „Löttemperatur STM32“ · Mikrocontroller und Digitale Elektronik ·
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MS-17631_2.0.pdf
Sheet 5 of 42 ▯ A B C D Haswell Processor (Power) Haswell Processor (Gnd) +VCC_CORE Haswell rPGA EDS U46E 95A AA28 VCC 4 AA34 VCC RSVD K27 U46F Haswell rPGA EDS U46G Haswell rPGA EDS 4 AA32 VCC RSVD T27 AB29 VCC RSVD V27 A13 VSS VSS AK54 B44 VSS VSS K20 AB27 VCC +1_35VDIMM A19 VSS VSS AL10 C1 VSS VSS K39
in „In Circuit Programmierer für 8-pin 150mil SOIC PM25LD512“ · Mikrocontroller und Digitale Elektronik ·
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70687A-1.pdf
selected, the MiWi Demo Kit contains any one of the following items: • Two MiWi Demo Boards with PIC18F46J50 XLP Microcontroller with MRF24J40 MA Module • Two MiWi Demo Boards with PIC18F46J50 XLP Microcontroller with MRF89XAM8A Module • Two MiWi Demo Boards with PIC18F46J50 XLP Microcontroller with MRF89XAM9A
in „Was darf man von einer PCB-Antenne erwarten?“ · HF, Funk und Felder ·
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MB1075.pdf
PIP20443 44 PIP2044PE1414 PB4B PIP10223 24 PIP1024PB5B DCX_SCL 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
in „.net auf STM32F429ZI“ · Mikrocontroller und Digitale Elektronik ·
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bq24725.pdf
hysteresis V VCCrising above VSRN 100 150 200 mV ACN to SRN COMPARATOR (ACN_SRN) VACN-SRN_FALL ACN to BAT falling threshold V ACNfalling towards SRN 120 200 280 mV VACN-SRN_RHYS ACN to BAT rising hysteresis V ACNrising above VSRN 40 80 120 mV (1) HIGH SIDE IFAULT COMPARATOR (IFAULT_HI) ChargeOption() bit
in „[V] 3St TI LiIon Lade/ Batterie-Management Chips: BQ24725RG und BQ24072RG“ · Markt ·
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JP7-T-family.pdf
I/O Description Level 15 V_BAT I Power for RTC and SRAM +3 V DC ±5% 16 GND Digital ground 17 GND Digital ground 18 GND Digital ground 19 GND Digital ground + 3.0 V DC / 20 VC3.0 O Supply voltage of RF section max. 25 mA 21 GND Digital
in „wo finde ich RX und TX an GPS-Maus SIRF II?“ · Mikrocontroller und Digitale Elektronik ·
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Diplomarbeit_24_Kanal_EEG_Recorder.pdf
AD8223 ergibt sich somit: -5 U a1= U GL* CMRR = 1*3,16*10 = 31,6µV U a2= U Diff 247,5 = 0,188 * 247,5 = 46,5mV Damit U =a46,5mV + 0,0316mV = 46,5316mV (worst case, gleichphasige Spannungen) Man sieht, dass hier der Einfluss der CMRR vom AD8223 sehr gering ist (<0,1%). Damit ergibt sich die fast unveränderte
in „EEG-Kappen-Controller“ · Mikrocontroller und Digitale Elektronik ·
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FK723M1-ZGT6.zh-CN.en.pdf
PA12 104 PA12 PE12 65 PE12 131 VDD VSSA 31 PA15 110 PA15 PE13 66 PE13 144 VDD GND GND 67 PE14 C2 PB0 46 PE14 68 PE15 95 BOOT0 138 BOOT0 PB1 47 PB0 PE15 GND VDD33USB NRST 25 RST PB2 48 PB1 10 PF0 1uF PB2 PF0 PB3 133 PB3 PF1 11 PF1 R4 105 SWDIO PA13 PB4 134 PB4 PF2 12 PF2 3.3V 143 PDR_ON PA13 109 SWCLK PA14
in „Neues Blackboard mit STM32H723“ · Mikrocontroller und Digitale Elektronik ·
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Ein___Ausg_nge.pdf
MIC29201X/TO220 50 PA0/AD0 AVCC 49 PA1/AD1 21 48 PA2/AD2 VCC 52 Ein & Ausgänge PA3/AD3 VCC 47 PA4/AD4 46 PA5/AD5 AREF 62 45 PA6/AD6 LM2575HVS-12V 44 25 Hier sollen mind. 20 Ein & Ausgänge entstehen. +12V PA7/AD7 PD0/SCL/INT0 26 Die Eingänge und Ausgänge sollen möglichst alle IC12 10 PD1/SDA/INT1 27 Analog
in „Messtechnik (Ein & Ausgangsproblem)“ · Mikrocontroller und Digitale Elektronik ·
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Blackpill_STM32F411CEU6_WeAct_Black_Pill_V2.0.pdf
GND 3.3V SW2 48 VDD VSS 47 3*4按键 3.3V VB R5 VREF+ 9 VDDA/VREF+ VSSA/VREF- 8 GND R10 4 3 10KΩ D3 NC BAT54C STM32F4X1CXU6 SW1 PB2 L1 1 3 2 4 3.3V 3.3V NRST 3*4按键 GND 10uH ±10% C7 RTC 电源 BOOT 设置 100nF 3.3V 复位电路 V1.2 修改 BOOT 跳线为 BOOT0 按键, BOOT1 10K 下拉 VREF+ C9 C10 C11 C12 100nF 100nF 100nF 100nF B B U1A
in „was kommt nach dem Bluepill-Board?“ · Mikrocontroller und Digitale Elektronik ·
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gysmi_165_inverter.pdf
64404 T I R07_01S 1 7 _ 7 0 100nF (50V) c 6 n OSC1 8MHz S P 64048 KR07_43S C R07_44S 0 R07_45S C R07_46S C a M_24V_S d R V 10K1/16W 164048 ) 0 64048 C 64048 ) 0 64048 ) 8 MOINS i o V 2 10K1/16W ) 8 10K1/16W V 2 10K1/16W 0 4 A C07_09S u e R07_17S 5 6 0 4 5 6 ( 6 A 64276 s r 64015 F ( 6 F n SEG g R07_35S
in „(S) Service manual Gysmi“ · Markt ·
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Lenovo_schematic.pdf
SB_DQ28 SB_MA5 AP45 DDRB_MA5 DDRB_DQ14 AR54 SA_DQ30 SA_MA7 AW39 DDRA_MA7 DDRB_DQ45 AM26 SB_DQ29 SB_MA6 AW46 DDRB_MA6 {14} DDRA_DQ[16..31] DDRB_DQ15 AN54 DDR CHANNEL A AY39 DDRA_MA8 DDRB_DQ46 AK25 AY46 DDRB_MA7 DDRA_DQ16 AY58 SA_DQ31 SA_MA8 AU40 DDRA_MA9 DDRB_DQ47 AL25 SB_DQ30 SB_MA7 AY47 DDRB_MA8 DDRA_DQ17
in „Pin Belegung bei dem Chip“ · Mikrocontroller und Digitale Elektronik ·
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hardware_dev.pdf
VSSA ). 1.1.2 Battery backup To retain the content of the Backup registers whenDD is turned off, thBAT pin can be connected to an optional standby voltage supplied by a battery or another source. The V BAT pin also powers the RTC unit, allowing the RTC to operate even when the main digital supply (V ) is turned off. The switch to the Vsupply is controlled by the power DD BAT down reset (PDR) circuitry embedded in the Reset block. If no external battery is used in the application, it is highly recommended to connect V BAT externally to DD. 1.1.3 Voltage regulator The voltage
in „STM32: JTAG mit ST-LINK: Error in Initializing ST-Link device“ · Mikrocontroller und Digitale Elektronik ·
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Hardware.pdf
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 P6.4 4 C47 C45 C46 E3 18 P1.5 P6.5 5 7 k 9 k 1 b E4 P1.6 P6.6 R 1 R 6 R n E5 19 P1.7 P6.7 6 n.b. n.b. n.b. GND GND GND GND GND GND 3 3 V V + + 2 1 TDO 4 3 TDI 6 5 TMS 1 7 8 7 TCK R 4 10 9 12 11 RST 14 13 C9 X1 n.b. GND
in „74HCT595 + ULN2003 an 5V und 12V problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Sender.asm
CLK-Pin RCALL SPI_TRANSMIT LDI R17,0x19 ;PLL-Setting LDI R16,0x80 RCALL SPI_TRANSMIT LDI R17,0xC0 ;Low Bat& µC Clock LDI R16,0xE0 RCALL SPI_TRANSMIT LDI R17,0xA1 ;Frequency Setting LDI R16,0xE0 RCALL SPI_TRANSMIT LDI R17,0xC6 ;Data-Rate Setting LDI R16,0x0A RCALL SPI_TRANSMIT LDI R17,0xC2 ;Data-Filter LDI R16,0xCA RCALL SPI_TRANSMIT LDI R17,0xCA LDI R16,0x46 RCALL SPI_TRANSMIT LDI R17,0xC4 ;Autoamtic Frequency Control LDI R16,0x0F RCALL SPI_TRANSMIT LDI R17,0x98 ;TX Configuration LDI R16,0x18 RCALL SPI_TRANSMIT ;ID-Code senden MAIN2: SBI PORTB,5 LDI R17,0xB8
in „Problem AM-Empfänger konstruieren“ · HF, Funk und Felder ·
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schaltplan.pdf
IN_M_1 5 2A 3OE 10 V33 6 9 IN_1 7 2Y 3A 8 GND 3Y GND 2- R 6 O 3 O 2 1 2 M 2 1 2 HB_1 HB_2 VREG_33 BAT BTN8982TA BTN8982TA LDL1117S33R 282836-2 8 4 4 8 1 3 1 7 OUT_TAB OUT 3 3 OUT OUT_TAB 7 2 GND VIN 4 V12 V12 2 1 V12 6 VS INH 2 2 INH VS 6 V12 VOUT_1 VOUT_2 V33 2 IS_1 5 IS IN 1 1 IN IS 5 IS_2 C1 C2 C13
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STM32-P207-P407_rev_D.pdf
R123 NA 100nF +3V 0 C C C C C C C C C C C C C C38 71 VCAP_1 PA14/JTCK-SWCLK 109 TCK R124 0R 0R(NA) BAT54C 3 0 2.2uF/6.3V 110 TDI/I2S3_WS TCN75AVUA(TSSOP8) L / n n n n n n n n n n n n n C39 106 VCAP_2 PA15/JTDI/SPI3_NSS/I2S3_WS/TIM2_CH1_ETR/SPI1_NSS 0 0 0 0 0 0 0 0 0 0 0 0 0 0 2.2uF/6.3V 46 LCD_BL PB0 LCD_BL 3V_BAT 0 1 1 R64 1 1 1 1 1 1 1 1 1 1 1 PB0/TIM3_CH3/TIM8_CH2N/OTG_HS_ULPI_D1/ETH_MII_RXD2/TIM1_CH2N/ADC147IN8 BUZ PB1 1 / NA 130 PB1/TIM3_CH4/TIM8_CH3N/OTG_HS_ULPI_D2/ETH_MI_RXD3/OTG_HS_INTN/TIM1_CH3N/ADC148IN9
in „Mit STM32F4 einen Laser ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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LCW_CQ7P.CC.pdf
Chromaticity Coordinate Groups 3) page 22 0.56 Cy 0.54 0.52 0.9 520 0.50 530 Cy 0.8 540 0.48 510 0.46 0.7 550 560 0.44 2700K 3000K 0.6 570 0.42 3500K 8 500 4000K 67 0.5 580 0.40 5 590 4500K W X 0.4 600 0.38 5000K RSTUV E 610 O PQ 620 0.36 7 LMN 0.3 490 630 6 JK 0.34 5 HI 0.2 480 + 0.32 0.1 4460 450 0.30
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STM32F407ZG-board-schematic.pdf
CIRCUIT JTAG 3.3V 3.3V 3.3V 3.3V 3.3V 3.3V 3.3V BL_PWR 0 0 1 1 3.3V +5VDC_only!!! R42 R43 R44 R45 R46 LCD L4 TRACE JTAG R99 R100 6 CL220uH/SD75 +5V 1 2 TMS 2 1 NA NA NA NA NA 33k 1 VDISPLAY R105 D3 - + 0 3 4 TCK 4 3 TRST 33k VDIGITAL R106 4 6 SPI1_SCKO 2.2R 1N5819S PWR_SEL 2 3.3V_E R 5 5 6 TDO/I2S3_CK
in „8Mbit/s Manchester Code codieren und decodieren mit STM32F407“ · Mikrocontroller und Digitale Elektronik ·
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STM32F407ZG-board-schematic.pdf
CIRCUIT JTAG 3.3V 3.3V 3.3V 3.3V 3.3V 3.3V 3.3V BL_PWR 0 0 1 1 3.3V +5VDC_only!!! R42 R43 R44 R45 R46 LCD L4 TRACE JTAG R99 R100 6 CL220uH/SD75 +5V 1 2 TMS 2 1 NA NA NA NA NA 33k 1 VDISPLAY R105 D3 - + 0 3 4 TCK 4 3 TRST 33k VDIGITAL R106 4 6 SPI1_SCKO 2.2R 1N5819S PWR_SEL 2 3.3V_E R 5 5 6 TDO/I2S3_CK
in „Problem: SPI Remap am STM32F407ZG“ · Mikrocontroller und Digitale Elektronik ·
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VAR-DT6CUSTOMBOARD_SCH_V1_1_Doc_V1_2.pdf
_TXD 43 UART3_TXD 6 44 DISP0_DATA_EN(GPIO4[17]) (GPIO2[21])CSI1_DATA12 43 CSI1_DATA12 6 7 GETH_RST 46 45 SDMMC2_CD 6 46 45 CSI1_DATA13 6 48 ENET_CRS_DV(GPIO1[25]) GPIO_6 47 48 DISP0_HSYNCH(GPIO4[18]) (GPIO2[20])CSI1_DATA13 47 6,8 RESET# 50 POR_B (GPIO1[1])PWM2 49 GPIO1_1 6 7 MDIO_CLK 50 ENET_MDC(GPIO1
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swBalancer.pdf
5 2 7 1 22µ C45783 22µ C45783 GND 4 3*2 PROG CHRG 6 MT3608 47k ID GND STDBY + Q1 l D+ 3 R55 4 VCC BAT 5 +3V3 C11 P$1 SW NC P$6 C12 R1 h 2 1k2 R8 33 33 s D- - U5 33 R59R7 VBUS 1 TP4056 P$2 GND IN P$5 330 1 4 C1 + 2 J2 R58 P$3 FB EN P$4 R28 R9 R4 2 3 T5 8F 2,8V 2 1 2 3 4 3 1 2 3 4 10k 0R4 _X_ J J IC3
in „SuperCap Balancer mittels µC“ · Analoge Elektronik und Schaltungstechnik ·
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Akkuschutz-V0.2.pdf
ZELLE3 C12 C13 X7-1 NTC4 U1 X1-3 ZELLE2 BQ7692000PW R12 1uF 10uF X7-2 NTC3 100R X1-2 ZELLE1 X7-3 NTC2 BAT 10 X1-1 VCC 12 VC5 X7-4 NTC1 13 VC4 REGSRC 9 GND R4 14 VC3 1k n 15 VC2 REGOUT 8 4 0 16 VC1 I2C Display C 1 17 VC0 7 CAP1 Temperaturmessungen 6 ZELLE3 TS1 TS1 X2-4 +3V3 R5 F 18 5 C8 C9 C10 C11 C18 IRLML6344
in „Ersatzbauteil - BMS incl. Balancer“ · Analoge Elektronik und Schaltungstechnik ·
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arduino-grid-tie-inverter-schema-20221024.pdf
10 drain 1K5 1 VI VO A1 D7 BC557 D 68K 21 A2 A1 D8 11 R13 R11 G R12 22 12 Sallen-Key 2 120K A3 D9 BAT43 68K R15 23 A4 D10 13 560 Q3 EM516 24 14 3 D5 D6 R14 27K A5 D11 470 C3 25 A6 D12 15 R17 R16 26 16 D7 2 B R18 A7 D D D13 gn 1 B 10u 120K N N 820 1 BC557 C4 C5 4K7 1 G G Pin2TC R19 Q4 2 4 rt 3 C6 N_opto
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HP_MSA-0520.pdf
• High Output Power: MMIC is designed for use as a general purpose 50 gain block. +23dBmTypicalP 1dBat Typical applications include 1.0GHz narrow and broad band IF and RF • LowDistortion: amplifiers in industrial and 33dBmTypicalIP at130 GHz military applications. • 8.5 dB Typical Gain at 1.0 GHz The
in „[S] RF-Transistor AT-64020 oder einen adäquaten Ersatz“ · Markt ·
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Elektroschaltplan_V10.4.pdf
GND_11 42 GND 12 43 13 IO0 GND_12 44 USB-C Buchse IO1 GND_13 +3.3V +3.3V 14 GND_4 GND_14 45 GND 15 46 IO6 GND_15 PWR_FLAG GND 16 IO7 GND_16 47 R11 17 48 R10 4.7 þÿk© 18 IO12 GND_17 49 4.7 þÿk© IO13 GND_18 19 50 SDA 20 IO14 GND_19 51 SCL IO15 GND_20 R9 21 NC_3 GND_21 52 22 53 4.7 þÿk© IO8 GND_22 BOOT
in „Elektroschaltplan für Platine so funktionsfähig“ · Platinen ·