-
Bild
Schaltplan einer Ladeschaltung mit MOSFET
+3.8V F1 1A 2 R52 10K00 2 T5 IRLM1902 54 23 4 Vbat Bat + Bat - GND R58 240K0 R51 240K0 charge +10V C69 100N 25V IC17 LM358D 8 4 GND 1 2 C67 10N 63V 2 R50 10K00 2 3 2 1M R59 1M 2 1M C58 470P 100V R53 560K0 2 550K0 2
in „Ladeschaltung für 2x NiMH Zelle - wo passiert die Strombegrenzung“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
-
Bild
Schaltplan einer RS485-Schnittstelle Slave 1
Slave 1 U1 ISO7221AD VCC1 1 GND1 4 OUTA 2 INB 3 INA 7 OUTB 6 IGND2 5 VCC2 8 C1 100n GND U_RX U_TX D2 BAT545 +5V D4 BAT54S +5V C5 100n +5V isd. GND isd. U9 MAX485EESA 8 VCC 6 A 7 B 2 RE 3 DE 4 DI 5 GND C13 100n +5V isd. GND isd. R9 10k R10 10k GND isd.
in „Optimierung RS485-Bus“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
-
PDF
media32.pdf
Date: 18.04.2009 Sheet of File: C:\Altium\media32\media32.SchDoc Drawn By: 1 2 3 4 1 2 3 4 COUA2 V_BAT COUA3 V_USB 4 UA2 BQ24070 15 2 UA3 3 A 2 PIUA2IN OUT PI162015 P I U AIN 0 2 OUTP I U A 3 0 3 VCC A COCT6 PIUA2VREF OUT PIUA2017 1 22 02 110µ I0 COCT4 CK1212 4 GNDP I U A GND 8 COCT5 TSMD_B BAT PIUA205
in „MP3 Player mit Clickwheel und S65“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Butterfly_Schematics.pdf
C400 R401 PB6 7 8 PB7 2 100N_16V_X7R VCC_EXT 1 2 1 2 GND 9 10 VCC_EXT 0R D400 PORTB GND NOT MOUNTED BAT54C 1 J404 1 LCD[32..3] Battery- KEY-3008-TR BT400 Coin Cell LCD[32..3] clip Battery 2 2 CR-2450 GND VCC_EXT J401 LCD15 1 2 LCD16 LCD18 3 4 LCD13 1 LCD11 5 6 LCD12 C402 LCD14 7 8 LCD9 2 100N_16V_X7R
in „Mikrocontroller mit Rs232 Schnittstelle“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
bestellungsparser_reichelt_v1.py
SMD-Chip-Widerstand, Bauform 0805, 27 10 0,82 Euro L-0805F 10µ SMD-Induktivität, 0805, Ferrit, 10µ 5 1,10 Euro BAT 43 SMD Schottky Diode SMD, Mini-Melf, 30V, 0 10 1,00 Euro BAT 43WS SMD-Schottky-Dioden, SOD323F, 30V, 0, 10 0,50 Euro ________________________________________________________________________________
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
-
PDF
EMS_PIC.pdf
4700µH V DC1 1 D7 F 7 6 + 1L4 4 2 4 1µ2H L1 C1 D EMS_TX 2 0 4 R 100n +VIN +VOUT 100n L300n 3 D JP1 BAT54S S C F 3 IC1A 1 -VIN -VOUT 3 V A 4700µH 68pF 4 R1 C 1 1 R7 EMS_232_RX 2 36 C7 C8 U1P A D8 5 A 10K 2 4k7 ACM3225 DC/DC CONVERTER L2 D B R 2 LM393D VA-0505S 2 S BAT54S 9 R m 3 4 5 GND V D 3 O R R R
in „Buderus EMS-"Gateway" mit PIC18F / Sammelbestellung“ · Haus & Smart Home ·
-
PDF
I2C_Sheet.pdf
/THERMOMETER 6 PF3 R36 R37 SDA 4 PF2 3K3 3K3 Vdd VCC 45ua/0.1uA/Sleep GND 2 TWI-1 5 U11 VCC AD0 3 C54 6 8 3 JP13 4 2 JP14 1 J40 TWI-1 ADDRESS = 0x48 ALERT 5 SCL Vcc 7 1 2 4 3 3 Q3 Q4 3 SDA1 0u1 SDA WP R78 1 SDA I2C EN I2C EN SCL1 2 SCL GND 2 1 1K 2 1 1 2 4 A1 A0 3 3 VDD OUT R81 GND A2 R80 1 BSH111BK
in „NXP PCA8574 hat Phänomen mit 2 Adressen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
5500-0080_VQC_DisplayAdapter_V2R1.pdf
1 Q2 2 R18 100uF 3 QA 3 1 A Y0 15 R10 10K 33R 1 9 4 2 14 R11 10K 3 Z2 8 CLR QB 5 3 B Y1 13 R12 10K BAT54C-HF CLK QC C Y2 AO3401A QD 6 BR1 Y3 12 R13 10K Q3 1 A QE 10 BR2 VCC 6 G1 1 2 VD1 2 11 BR3 4 2 1 RES-INT- GND B QF 12 5 G2A 11 R14 10K 3 Z3 VCC VCC OUT QG R4 G2B Y4 QH 13 Y5 10 R15 10K AO3401A 3 33R
in „Als Mikro noch Makro war: Die "Dicke Tal- Uhr"“ · HF, Funk und Felder ·
-
PDF
MC_product_selection_AN.pdf
During the Constant-Current mode, the programmed V > V BAT PTH charge current is supplied to the battery or load. The VBAT > VPTH charge current is established using a single resistor FAST CHARGE from PROG to V SS . Constant-Current mode is main- MODE tained
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
igrid_ss_3kw_plus.pdf
Figure 3.1 O/P Relay L Load N BUS INVRelay SafetyRelay + L P- PVEMI BOOST INV/REC INVEMI AC EMI N + BAT - DSP MCU PV RS232/USB BAT SPS GRID LCD Parallel connection Figure 3.1 Function block Diagram The CNTL block provides control signals to control the action of the inverter. It also provides the communication
in „PV Wechselrichter startet nicht mehr und verursacht Kurzschluss bzw. hohen Strom“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
BettyHHU.pdf
EN_VDDLED 59 P04/SCK/CAP01 P118/TRACEPKT2 15 TRACEPKT2 U3 h + GND BYPASS 3 GND HWID4 61 7 TRACEPKT3 BAT54A O - VAKKU R % P05/MISO0/MAT01 P119/TRACEPKT3 SC_IO I/O1 VDD 8 6 VDD +IN 3 1 SOUND_ON 68 P06/MOSI0/CAP02 102 TRACESYNC_TO_J2 PKG_TYPE=SO8 GND SPEAKER_PWM P120/TRACESYNC 95 PIPESTAT0 ICT243 ICT32 GND
in „Innenleben von Betty TV“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DELL_VOSTRO_3300__WIstron_Winery13_MB_DIS_.pdf
7-GP D 51125_ENTIP1 3 3 PG4603 1 1 1 2 G PC4S05 PR4602 PD4603 PD4604 [42] 3V_5V_EN C DY 180KR2F-GP BAT54S-5-GP BAT54S-5-GP GAP-CLOSE-PWR 8 2 5 6 5 4 PG4605 S 0 2 +15V_ALW 2 1 2 1 +5V_PWR 1 2 2 2009/08/18 PQ4602 N DMN66D0LDW-7-GP PG4610 4 +3.3V_ALW +3D3V_PWR GAP-CLOSE-PWR 1 GAP-CLOSE-PWR-3-GP _ PG4607
in „Bios programmieren mit Dual Bios Main.Bin und EC.Bin ?“ · Softwareentwicklung ·
-
PDF
b8_handbuch_1205.pdf
rad47/35 C6, C7 1nF X7R-2,5 1,0n C8 100nF Z5U-5 100n C9 100nF Z5U-5 100n C10 100nF Z5U-2,5 100n D1, D2 BAT43 BAT 43 D3 BZX97-3,3 ZF 3,3 D4 BAT43 BAT 43 IC1 PIC18F2550SP PIC18F2550-I/SP 28-polige IC-Fassung GS 28P-S IC2 40-poliger Testsockel TEX 40 JP1 Jumper Jumper 2,54 RT L1 680µH SMCC 680µ L2 10µH SMCC
in „PIC16f628 programmieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
EMS_V2_Plan.pdf
V 2 3 1 3 L3 V X2-1 F 7 6 + ACM3225 C6 -VIN -VOUT C7 C8 U1P L1 C1 D EMS_TX 2 0 4 R DC/DC CONVERTER BAT54S S C F 3 IC1A VA-0505S S1 A 4700µH 68pF 4 R1 C 1 1 R7 EMS_232_RX 1 2SJ2 2 V A X2-2 D8 5 A 10K 2 4k7 1 TXD CANH 7 1 L5 4 JP2 EMS-Bus L2 D B R 2 LM393D 5 1 VDD1 VDD2 8 1 9 R m 3 4 5 + RB2 2 VOA VIA 7 4 RXD CANL 6 2 D BAT54S 3 h R R R RB3 3 VIB VOB 6 2 3 N D K 0 k 4 GND1 GND2 5 8 RS TCM1210 CAN _ N D 4 1 1 VREF 5 S _ S 1 2SJ3 2 1 E S 4 D6 EMS_GND MCP2551SN E 4 3 D9 N EMS_GND GND PSD2CAN 1 5 S 5 M S EMS_TX 1N4148SMD +
in „Buderus EMS-"Gateway" mit PIC18F / Sammelbestellung“ · Haus & Smart Home ·
-
PDF
EMS_V2_Schaltplan.pdf
-1 D5 5 2 3 C15 1 -VIN -VOUT 3C16 C17 V 2 2 L1 C9 D EMS_TX 1 0 k 1 + ACM3225 DC/DC CONVERTER U1P R BAT54S S C 1 3 IC1A 4 R VA-0505S S1 2 Term. A TP1 68p 4 R11 1 n 1 R17 +5V 1 2 SJ2 2 V 1L5 4 1 A 4µ7 T C 1 2 EMS_232_RX 1 7 X1-1 X2-2 D6 D B 10k 0 2 LM393D 4k7 V 1 8 TXD CANH EMS-Bus L2 3 1 k 3 4 5 + 2 VDD1 VDD2 7 4 6 2 3 TP2 D BAT54S R 4 R R R D1 RB2 3 VIB VOBA 6 RXD CANL ZJYS81 X1-2 N D k k 1N4148SMD RB3 4 GND1 GND2 5 8 RS 1 _ N D 1 0 5 k VREF 5 3 CAN S _ M 1 R 1 D2 1 2 SJ3 100n 2 E S 8 D7 EMS_GND 1N4148SMD MCP2551SN D10 E 1
in „Buderus EMS-"Gateway" mit PIC18F / Sammelbestellung“ · Haus & Smart Home ·
-
PDF
MCP73811_2.pdf
— mΩ VDD = 3.75V,JT = 105°C Battery Detection Battery Detection CurrentI — 6 — µA V Source Current BAT_DET BAT No-Battery-Present VNO_BAT — VREG + — V VBATVoltage >= NO_BAT for Threshold 100 mV No Battery condition No-Battery-Present ZNO_BAT 2 — — MΩ VBATImpedance >= ZNO_BAT Impedance for No Battery
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MCP_73831.pdf
— mΩ VDD = 3.75V,JT = 105°C Battery Detection Battery Detection CurrentI — 6 — µA V Source Current BAT_DET BAT No-Battery-Present VNO_BAT — VREG + — V VBATVoltage >= NO_BAT for Threshold 100 mV No Battery condition No-Battery-Present ZNO_BAT 2 — — MΩ VBATImpedance >= ZNO_BAT Impedance for No Battery
in „LiPo-IC MCP73831 kennt keine Ladeschlussspannung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
final_board.pdf
67 P2.5/PWM1.6/DTR1/TRACEDATA0 P0.29/USB_D+ 30 D3 NC 66 P2.6/PCAP1.0/RI1/TRACECLK P0.30/USB_D- VIN BAT60A C P2.7/CAN_RX2/RTS1 +3V3 C V 65 D1 GND 3 64 P2.8/CAN_TX2/TXD2 BAT60A IN K OUT + 53 P2.9/USB_CONNECT/RXD2 GND Q1 P2.10/EINT0N/NMI 52 P2.11/EINT1N/I2STX_CLK IC3 C8 C36 BCX71SMD 51 P2.12/EINT2N/I2STX_WS
in „Schaltplan Prüfung/Kritik LPC1769 + IMU + Bluetooth“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MCP73832T.pdf
200 kΩ Impedance Automatic Power Down Automatic Power Down V V <(V V <(V — 3.5V ≤ V ≤ V PDENTER DD BAT DD BAT BAT REG Entry Threshold +20 mV) +50 mV) VDD Falling Automatic Power Down V — V <(V V <(V 3.5V ≤ V ≤ V PDEXIT DD BAT DD BAT BAT REG Exit Threshold +150 mV) +200 mV) VDD Rising Thermal Shutdown
in „LiPo-Charger mit MCP73832T“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MCP73831-2_ENG_TDS.pdf
200 kΩ Impedance Automatic Power Down Automatic Power Down V V <(V V <(V — 3.5V ≤ V ≤ V PDENTER DD BAT DD BAT BAT REG Entry Threshold +20 mV) +50 mV) VDD Falling Automatic Power Down V — V <(V V <(V 3.5V ≤ V ≤ V PDEXIT DD BAT DD BAT BAT REG Exit Threshold +150 mV) +200 mV) VDD Rising Thermal Shutdown
in „LiPo-IC MCP73831 kennt keine Ladeschlussspannung“ · Analoge Elektronik und Schaltungstechnik ·
-
Bild
Nahaufnahme einer Leiterplatte mit Transformator und Kondensatoren
To BAT- BAT+ EC3 CN1 HS1 HS2 12.0801.0119-00 JL2101281 2245 U14 R6 R11 R4 DS C14 R22 R23 R25 R26 R27 R28 R29 R30 R31 R32 R33 R34 R35 R36 R37 R38 R39 R40 R41 R42 R43 R44 R45 R46 R47 R48 R49 R50 R51 R52 R53 R54 R55 R56 R57 R58 R59 R60 R61 R62 R63 R64 R65 R66 R67 R68 R69 R70 R71 R72 R73 R74 R75 R76 R77 R78 R79 R80 R81 R82 R83 R84 R85 R86 R87 R88 R89 R90 R91 R92 R93 R94 R95 R96 R97 R98 R99 R100 R101 R102 R103
in „PDP8974 Ersatz gesucht“ · Analoge Elektronik und Schaltungstechnik · · Platinenfotos
-
PDF
MCP738312.pdf
— m V DD= 3.75V, J = 105°C Battery Detection Battery Detection CurrentI — 6 — µA V Source Current BAT_DET BAT No-Battery-Present V NO_BAT — VREG + — V V BATVoltage≥ VNO_BATfor Threshold 100 mV No Battery condition No-Battery-Present ZNO_BAT 2 — — M V BATImpedance ≥ ZNO_BAT Impedance for No Battery
in „MCP73832 Beschaltung für die Auswertung mit µC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
bq24072.pdf
1.5 mA VBAT > VBAT(REG) (EN1, EN2) ≠ (HI, HI) POWER PATH VDO(IN-OUT) V IN– VOUT VIN= 4.3 V, IN= 1 A, BAT = 4.2 V 300 475 mV VDO(BAT-OUT) V BAT– V OUT OUT = 1 A, VIN= 0 V, BAT > 3 V 50 100 mV VIN> V OUT+ V DO(IN-OUT)VBAT < 3.2 V 3.3 3.4 3.5 OUT pin voltage regulation (BQ24072) V BAT+ VBAT + V BAT+ VIN>
in „[V] 3St TI LiIon Lade/ Batterie-Management Chips: BQ24725RG und BQ24072RG“ · Markt ·
-
Datei
DevConfigSMLPE.txt
getAcEhSf(); int getAcMode(); int getAcPAddr(); int getAcPFc(); int getAcPNum(); int getAcPSf(); int getBatPAddr(); int getBatPFc(); int getBatPNum(); int getBatPSf(); int getBatSocAddr(); int getBatSocFc(); int getBatSocNum(); int getBatSocSf(); int getBatteryEn(); int getBaudBd(); int getBuyPAddr(); int
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AvrBoard.pdf
2 2 18 4 3 3 5PD3 PC14 (Data3) 5 D X S 5 A 2 6PD4 PC03 (Data2) 4 B 100n M 100n 5x 2 6 1 7Vcc AGnd2 BAT46 (Data1) 3 m ä 7 CTS 0 8Gnd ARef1 (Data0) 2 n . 8 RTS 9 9Xtal1 AVcc0 220 1 14 100n 2x22p 0Xtal2 PB59 3,6864MHz 1PD5 PB48 1k2 MISO Vcc 2 PD6 PB37 Atmel-Verbinder +5V (Stiftleiste) SCK MOSI Graetz 78
-
PDF
AvrBoard.pdf
1 2 18 4 2 3 5PD3 PC14 (Data3) 5 D X S 5 A 2 6PD4 PC03 5x (Data2) 4 B 100n M 100n 5 6 1 7Vcc AGnd2 BAT46 (Data1) 3 m ä 7 CTS 0 8Gnd ARef1 (Data0) 2 n . 8 RTS 9 9Xtal1 AVcc0 220 1 14 100n 2x22p 0Xtal2 PB59 3,6864MHz 1PD5 PB48 1k2 Atmel-Verbinder MISO Vcc 2 PD6 PB37 +5V (Stiftleiste) SCK MOSI Graetz 78
in „LED flackern“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AvrBoard__1_.pdf
1 2 18 4 2 3 5PD3 PC14 (Data3) 5 D X S 5 A 2 6PD4 PC03 5x (Data2) 4 B 100n M 100n 5 6 1 7Vcc AGnd2 BAT46 (Data1) 3 m ä 7 CTS 0 8Gnd ARef1 (Data0) 2 n . 8 RTS 9 9Xtal1 AVcc0 220 1 14 100n 2x22p 0Xtal2 PB59 3,6864MHz 1PD5 PB48 1k2 Atmel-Verbinder MISO Vcc 2 PD6 PB37 +5V (Stiftleiste) SCK MOSI Graetz 78
in „portpin PD.3 liefert kein signal“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TMC5240-EVAL_V10_-_Schematic_Drawing.pdf
4k7/1% 4k7/1% 4k7/1% REFL J204 0603 0603 0603 REFR 1 R206 IC203 3 2 D203 3 3 1k/1% 1 1A 1Y 7 ENCA BAT54A D204 0603 R207 +5V_VM SOT23 4 3 2A 2Y 5 ENCB 1 2 BAT54A J205 SOT23 5 1k/1% 6 3A 3Y 2 ENCN 1 2 0603 R208 +VCC_IO 1 REFL_INT HEADER-1X5 GND; 4 +VCC_IO; 8 2 REFL_EXT REFR_INT HEADER-1X5_V 1k/1% 0603
in „TMC5240 antwortet nicht im Single Wire Uart“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ACT2803_Data_Sheet.pdf
. Connect it to battery current sense positive terminal. Bypass to PGND with high 16,17 BAT quality ceramic capacitors placed as close to the IC as possible. Battery charge current sense input. Connect to charge sense resistor positive terminal with 18 BATS Kevin sense. 19 BATP Connect to
in „ACT2803 dual cell lipo charger - Problem“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ps2.pdf
zu bestimmen, wann diese Taste losgelassen wird. 6 Alle Tasten Typematic/Make/Break. Zu Beginn des BAT schaltet die Tastatur ihre drei LEDs ein, und am Ende wieder aus. Dann wird BAT-Ende-Code gesendet, entweder 0xaa (BAT erfolgreich) oder 0xfc (Fehler). Der BAT-Ende- Code muss 500 bis 750 ms nach dem
in „Unbekannter 2-Draht Bus - Event Triggered“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ds17287.pdf
timekeeping function continues unaffected by the lower input voltage. As CC falls below the greater ofBAT and V BAUX , the RAM and timekeeper are switched over to a lithium battery connected either to the Vin or V pin. BAT BAUX The 3V device is fully accessible and data can be written or read only when
in „RTC-Baustein DS17287-5 von Dallas an ATMega16“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
OLIMEX-stm32-p107-schematic.pdf
_CK/USART3_CTS/TIM1_CH1N/CAN2_TX/ETH_MII_TXD1/ETH_RMII53XD1 PB14 PB14/SPI2_MISO/TIM1_CH2N/USART3_RT54 CS_UEXT PB15 CS_UEXT D1 VBAT 6 PB15/SPI2_MOSI/I2S2_SD/TIM1_CH3N 3V_BAT VBAT 15 BAT54C R13 10k PC0/ADC12_IN10 PC0 WF2S 94 BOOT0 PC1/ADC12_IN11/ETH_MII_MDC/ETH_RMII_MDC ETH_RMII_MDC ETH_RMII_MDC 3.3V 1
in „Streuung der ADC-Werte beim STM32“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
tidud83.pdf
0 - Buck; 1 - Boost 13 AGND Analog Ground OUT_EN Output on/off. 1 - on; 0 - off 12V Aux 12V VS_N V bat - Input 14 15 12V+ 12V power input VS_P V bat + Input 16 12V+ 12V power input VS_P V bat + Input 17 12V+ 12V power input VS_N V bat - Input 18 GND Power Ground IN_EN Input on/off. 1 - on; 0 - off 19
in „DC/DC-Wandler von 2.4 V auf 15 V mit 25 Watt“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Mixer_Musings.pdf
us-sessentialythesameasfortheHSMS-2804. ing cores whose dimensions provide a gener- ouscross-section. TheperformanceoftheBAT54Swassur- prisingly good, approaching the theoretical Adding fixed resistors in series with theinimum conversion loss of 3.92dB (5), mak- diodes to improve IMD performance is best ing this device well-suited
in „Ladderfilter berechnen und bauen“ · HF, Funk und Felder ·
-
PDF
Trask_Mixer_Musings.pdf
us-sessentialythesameasfortheHSMS-2804. ing cores whose dimensions provide a gener- ouscross-section. TheperformanceoftheBAT54Swassur- prisingly good, approaching the theoretical Adding fixed resistors in series with theinimum conversion loss of 3.92dB (5), mak- diodes to improve IMD performance is best ing this device well-suited
in „Mischer selber bauen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Trask_Mixer_Musings.pdf
us-sessentialythesameasfortheHSMS-2804. ing cores whose dimensions provide a gener- ouscross-section. TheperformanceoftheBAT54Swassur- prisingly good, approaching the theoretical Adding fixed resistors in series with theinimum conversion loss of 3.92dB (5), mak- diodes to improve IMD performance is best ing this device well-suited
-
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 ·
-
PDF
tps61032.pdf
TPS6103xPWP TPS61032 L1 = Sumida CDRH124–6R8 C3, C5, C6, = X7R,X5R Ceramic C3 = Low ESR Tantalum DS1 = BAT54S Figure 20. Power Supply Solution With Auxiliary Positive Output Voltage 16 TPS61030 TPS61031, TPS61032 www.ti.com SLUS534D–SEPTEMBER 2002–REVISED APRIL 2004 Layout Considerations (continued) VCC2
in „DC DC Converter Problem!“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
terminal.c
'; // Cursor an Position 0; sbi(PORTB, PB0); // Keyboard ein sei(); while(count != 0) // Warte auf BAT-Ergebnis { count--; } lcd_clrscr(); if (key_status != ready) { // Im Fehlerfall: 1) Keyboard aus cbi(PORTB, PB0); if (key_status == error) // 2) Fehlermeldung senden lcd_puts(" FEHLER Self-Test Error
in „Keyboardencoder - prob mit linkem shift“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
GD32VF103_Datasheet_Rev1.0.pdf
characteristics ......................................................................................... 54 4.11. NRST pin characteristics....................................................................................... 54 4.12. GPIO characteristics....................................................
in „RISC-V: Wird das was?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
GD32VF103_Datasheet_Rev1.0.pdf
characteristics ......................................................................................... 54 4.11. NRST pin characteristics....................................................................................... 54 4.12. GPIO characteristics....................................................
in „STM32F103C8T6 => GD32VF103C8T6“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
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
-
PDF
OZ890-Datenblatt.pdf
Power Disabled Mode and Idle Mode, maximum supply is about 100uA in Sleep Mode and Shut Down Mode BAT10 49 I Cell10 positive input CB10 50 O Cell10 external bleeding control BAT9 51 I Cell9 positive input CB9 52 O Cell9 external bleeding control BAT8 53 I Cell8 positive input CB8 54 O Cell8 external
in „Schaltung für aktiven 3s Balancer gesucht“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
bt817-board.pdf
Company: Your Company Sheet: 1/1 Date: 2021-02-05 Drawn By: sachma 1 2 3 4 5 1 2 3 4 5 L3 D2 10uH BAT60B 5V0 LEDA A A C16 47uF U7 PT4110E89E 1 IN SW 5 GND 2 GND C15 BLEN 3 EN FB4 LEDK 2.2uF RFB1 GND 20 Ohm TP5 GND 1 1 BL TP6 B 1 1 BLEN B HDR-F-2.54_1x2 1 5V0 2 GND P1 P2 IO14 SCK HDR-F-2.54_2x10 HDR-F-2.54_2x10 IO12 SDO IO13 SDI 1 2 EN 3V3 1 2 IO15 BT815_CS 3 4 3 4 IO0 IO5 BT815_INT GND RXD0 5 6 TXD0 5 6 GND C 7 8 BT815_INT 7 8 C 9 10 9 10 11 12 11 12 13 14 13 14 15 16 SDI 15 16 SDO 17 18 BT815_CS 17 18
-
Datei
philipsPM-LCDs.txt
6,5 Stellen). Also, es ist so: Das PM2519 verwendet zwei Philips-LCD-Treiber OQ0070. Jeder kann 3*18=54 Segmente treiben. Diese werden intern aus einer 6x9=54-Matrix aus dem I2C-Signal erzeugt. Achim Minifloat hat das genau untersucht: https://www.mikrocontroller.net/topic/584743?goto=8037728#8037384 Genutzt
in „Pjilips PM2519“ · Markt ·
-
PDF
arm.pdf
PIX501 VCC 2 PIX502 A CON2 A R6363 PO\BOOT 83 COV 4k7 V8 PIV801 PIR6302PIR6301 BC846B 82 V3 V9V V1 BAT54 GND GND X6X6 RS232_RTS PIX601 RS232_TX PIX602 D111 RS232_RX PIX603 1PID101 PID1014 PIX604 POTXD0 10 T1IN T1OUT 7 5 POTXD3 12ID1T2IN T2OUT PI13107 X7X7 6IX605 PORXD0 9ID1R1OUT R1IN PI81013 1 7IX606
in „ARM Board Layout“ · Platinen ·
-
PDF
bq24618.pdf
HIDRV N SIS412DN ISET1 PH RSR L1 0.010 W VBAT ISET2 BTST PACK+ C6 6.8 H* D1 0.1 µF PACK ACSET REGN BAT54 R4 R6 R8 C5 32.4 kW 10 kW 22.1 kW bq24618 1 µF C12 C13 VREF Q5 10 µF* 10 µF* C4 LODRV N SIS412DN R2 1 µF CE 500 k 22 pF GND C10 C11 R11 10kW 0.1F 0.1F D2 STAT1 SRP R12 10 kW D3 R1 ADAPTER + STAT2
in „Li-Ion - Charger & Balancing“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MCP73871-Data-Sheet-20002090E__2_.pdf
? VOUT State + e l h i IO a VI N a T B n D C V B y S 1 0 Shutdown OFF 2 V > V 0 0 1 — Battery OFF BAT IN powered ON system 3 V IN> VBAT 0 0 X — Shutdown OFF 4 0 Shutdown OFF 5 Battery ON 0 1 — powered ON OFF system 6 V < V Standby OFF BAT OUT 7 0 IN + BAT OFF V BAT> V OUT powered ON V IN> VBAT 1 system
in „Fehlersuche beim MCP73871“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
tft-power.pdf
VIN SW 9 6.8p GND 1 COMP SW 8 GND 14 GND FB1 4 C11 C10 2 ENR SUP 12 0.22uF GND D1 0.22uF 3 EN C2+ 17 BAT54S 19 C1+ C2-MODE 18 20 C1- OUT3 16 VGL 21 15 VGH R6 C9 24 DRV FB3 13 C15 220K 0.22uF 23 FB2 PG 11 0.22uF 5 REF PGND 10 R8 R12 C12 GND 6 FB4 PGND 22 33K 680K 0.22uF BASE E GND B GND R1 B 500K 2 GND C8 R3 GND 0.1u 500K V R7 GND 3 100K R13 GND 51K C6 0.1u GND GND H1 R15 HDR-F-2.54_1x6 15K VCOM 1 AVDD 3V3 2 VCOM 3 R4 R16 VGH 4 0.1u 10K 6K8 0.1u VGL 5 C AVDD C 6 GND GND GND GND D D TITLE: Sheet_1 REV: 1.0 Company: Your Company Sheet: 1/1 Date: 2021-02-22 Drawn By: sachma 1 2 3 4
-
Datei
Descriptions.txt
CONNECTOR 2 AMP CONNECTOR 2 75xxx DEVICE 2 3M (TM) Pak 100 4-Wall Header 2 2-wire serial EEPROM 2 .100" (2.54mm) Center Header - 8 Pin 2 .100" (2.54mm) Center Header - 5 Pin 1 Xilinx Spartan 3E FPGA 1 X CAPACITOR 1 XC3S in PQ208 package 1 v-reference, vref, 1 VG-Leiste 64polig 1 USB UART / FIFO Controller 1
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·