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PDF
MP2354DS.pdf
efficiency of the MP2354 10nF regulator. The bootstrap diode can be a low SW cost one such as IN4148 or BAT54. MP2354_F03 Figure 3—External Bootstrap Diode This diode is also recommended for high duty V OUT cycle operation (when >65%) and high V IN output voltage (V OUT >12V) applications. PACKAGE INFORMATION
in „[S] Step Down Converter MP2354DS (für Fritzbox 7170)“ · Markt ·
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PDF
rt8279.pdf
maximum, the ratio is higher than 65% .The bootstrap diode can be a low cost one such as IN4148 or BAT54. The external 5V inductorvalueshouldbechosenaccordingtothefollowing equation : can be a 5V fixed input from system or a 5V output of the VOUT VOUT RT8279. L = f I 1 V 5V L(MAX) IN(MAX) Theinductor'scurrentrating
in „Suche Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
snva390c.pdf
minimum on-time continues until Q3 is turned off. This modification includes 2 extra diodes (i.e. BAT54H) and At low dimming frequencies and depending on the duty cycle, one resistor (R ) and is only relevant when shunt FET the inductor current may be at a very low level when the Q3 OFF2 turns off. This
in „LED Serienschaltung mittels Transistor schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DCL10_ds593.pdf
Figure 20 V REF_CLAMP k FPGA V 2 NC7SZ126 REF_CLAMP 2-mm Connector Output 30.1Ω I/O Pin High-Z Control BAT54 To input buffer DS593_20_021408 Figure 20: Target Interface Driver Topology DS593 (v1.2.1) March 17, 2011 www.xilinx.com 20 Platform Cable USB II X-Ref Target - Figure 21 ) ( e g l V e r D u t u O
in „USBprog CPLD Starterkit Wie bauen?“ · FPGA, VHDL & Co. ·
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PDF
STM32F107-SK-SCH-revA.pdf
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_IN12/ETH_MII_TXD18
in „Cortex M3 STM32F107VC beim Reset passiert nichts“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at91rm9200-ek.pdf
C273 0R XOUT CFRNW/PC9/A25 B 10PF 2 N10 B Y3 RAS U8 RAS C287 18.4320MHz CAS CAS CR10 3 NRST 10PF BAT54-7 1 J17 XIN SDWE T8 SDWE SDA10 N6 SDA10 VDDOSC J14 VDDOSC SDCKE P9 SDCKE 2 C280 SDCK U7 SDCK 100NF J13 U6 BFCS_NCS0 C288 GNDOSC BFCS/NCS0 M9 C325 10PF H17 SDCS/NCS1 T6 SDCS 100NF XOUT32 NCS2 R7 NCS2
in „SD-RAM aus PC für AT91RM9200 (ARM9)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC2945.pdf
REGISTER A2 = 0 V EE –48V INPUT VOUT RSNS 0.02Ω Wide Range Dual Supply Monitor with Single LTC2945 D1 BAT54 RSNS1 SUPPLY B 0.02Ω 4.5V TO 80V R TO RIN1 R IN2 SNS 1k 1k 0.02Ω LOAD SUPPLY A 4.5V TO 80V D2 SENSE + SENSE – BAT54 V –INF –INS +IN C3 DD R V+ SHUNT* 0.1μF LTC2945 C1 LTC6102 INTVCC SCL 2 0.1μF V C2
in „U/I/P Metrer für Netzteile“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2945f.pdf
REGISTER A2 = 0 V EE –48V INPUT VOUT RSNS 0.02Ω Wide Range Dual Supply Monitor with Single LTC2945 D1 BAT54 RSNS1 SUPPLY B 0.02Ω 4.5V TO 80V R TO RIN1 R IN2 SNS 1k 1k 0.02Ω LOAD SUPPLY A 4.5V TO 80V D2 SENSE + SENSE – BAT54 V –INF –INS +IN C3 DD R V+ SHUNT* 0.1μF LTC2945 C1 LTC6102 INTVCC SCL 2 0.1μF V C2
in „I2C mit Bascom Fehlersuche bei LTC2945“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3999fa-1.pdf
0.08A R2 2.2µF 100k OVLO/DC 16V LT3999 RDC D1B RT SWB 3999 TA05 ILIM/SS RT RBIAS GND D1, D2: VISHAY BAT54C 12.1k CSS 40.3k 49.9kS T1: COOPER BUSSMANN CTX02-19065R 1MHz 0.1µF RELATED PARTS PART NUMBER DESCRIPTION COMMENTS LT3439 Slew Rate Controlled Ultralow Noise 1A Isolated DC/DC V IN: 2.7V to 17.5V,QI
in „Halbbruecke Fragen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DELL_VOSTRO_3300__WIstron_Winery13_MB_DIS_.pdf
-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 ·
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PDF
harman_kardon_hkts200-230_hkts210-230_sub.pdf
100nF 0S S 4 X P4N G 4 C NCG V 0 O OPO P 0 0 C I 0 0 0 0 0 1 ZD1 100k C I I I 0 C P C 0 P P P P P 22K BAT54S P Z 0 P P P P 0 0 P J2 R23 P P P P ZD2 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 P3J203 P0R2301P0R2302 P0D10A P0D10K LD1 1 1 1 2 2 2 2 2 2 2 2 2 2 3 3 3 P5J205 2 0 2.7V 0 2 D1 2 D 2 2 +3.3V P0J204 R 0 R24 P
in „Überspannung Herman Kardon Subwoofer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
grasshopper_schematic.pdf
R R4 e W [1] SW1 1 3 r P C109 2 SWITCH 4 1u 2 1 3 GND GND U S B [1] PWRLED +3.3V R26 B 100k B D4 BAT54S [2] RESETN_AP7000 R55 R GND 6R 10K 67 R4 S1 R4 D [2,3] RESETN 1 3 [1] LED1 R G 2 SWITCH 4 67 LED1 green 1u6 100n R4 D [1] LED2 R G 27 LED2 green R4 D [1] LED3 R G GND GND 37 LED3 green R4 D [1] LED4
in „Grasshopper Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
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
in „Mit STM32F4 einen Laser ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F407ZG-board-schematic.pdf
Open 1 120R GND A2 0R(NA) A4 9 10 0 C C C C C C C C C C C C C VCAP_1 PA14/JTCK-SWCLK 110 R124 0R BAT54C L 2 F F F F F F F F F F F F F 2.2uF/C39V PA15/JTDI/SPI3_NSS/I2S3_WS/TIM2_CH1_ETR/SPI1_NSSTDI/I2S3_WS STCN75DS(TSSOP8) A5 11 12 R n n n n n n n n n n n n n 106 VCAP_2 A6 13 14 5 5 5 5 5 0 0 0 0 0 0
in „8Mbit/s Manchester Code codieren und decodieren mit STM32F407“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F407ZG-board-schematic.pdf
Open 1 120R GND A2 0R(NA) A4 9 10 0 C C C C C C C C C C C C C VCAP_1 PA14/JTCK-SWCLK 110 R124 0R BAT54C L 2 F F F F F F F F F F F F F 2.2uF/C39V PA15/JTDI/SPI3_NSS/I2S3_WS/TIM2_CH1_ETR/SPI1_NSSTDI/I2S3_WS STCN75DS(TSSOP8) A5 11 12 R n n n n n n n n n n n n n 106 VCAP_2 A6 13 14 5 5 5 5 5 0 0 0 0 0 0
in „Problem: SPI Remap am STM32F407ZG“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MP1584.pdf
bootstrap diode can be a low reactance (X L of capacitor comes to dominate, cost one such as IN4148 or BAT54. so that the ESL of input/output capacitor determines the input/output ripple voltage at 5V higher switching frequency. As a result of that, high frequency ceramic capacitor is strongly recommended
in „COMP PIN MP1584“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mp1584.pdf
bootstrap diode can be a low reactance (X L of capacitor comes to dominate, cost one such as IN4148 or BAT54. so that the ESL of input/output capacitor determines the input/output ripple voltage at 5V higher switching frequency. As a result of that, high frequency ceramic capacitor is strongly recommended
in „Spannungsregelung mit MP1584 und MP2307“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MP1584.pdf
bootstrap diode can be a low reactance (X L of capacitor comes to dominate, cost one such as IN4148 or BAT54. so that the ESL of input/output capacitor determines the input/output ripple voltage at 5V higher switching frequency. As a result of that, high frequency ceramic capacitor is strongly recommended
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PDF
mp1584.pdf
bootstrap diode can be a low reactance (X L of capacitor comes to dominate, cost one such as IN4148 or BAT54. so that the ESL of input/output capacitor determines the input/output ripple voltage at 5V higher switching frequency. As a result of that, high frequency ceramic capacitor is strongly recommended
in „Step Down - Stabil 5V 3A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RT8298E-02.pdf
aresistivevoltagedividercanbeplacedbetween ratio is higher than 65% .The bootstrap diode can be a low cost one such as IN4148 or BAT54. The external 5V theinputvoltageandgroundandconnectedtotheENpin to adjust enable threshold, as shown in Figure 5. For can be a 5V fixed input from system or a 5V output of the example, the setting
in „Schaltregler - maximaler Spulenstrom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RT8298E-02.pdf
aresistivevoltagedividercanbeplacedbetween ratio is higher than 65% .The bootstrap diode can be a low cost one such as IN4148 or BAT54. The external 5V theinputvoltageandgroundandconnectedtotheENpin to adjust enable threshold, as shown in Figure 5. For can be a 5V fixed input from system or a 5V output of the example, the setting
in „Wahl des SynchrongleichrichterMOSFETs für Buck Converter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RT8298E-02.pdf
aresistivevoltagedividercanbeplacedbetween ratio is higher than 65% .The bootstrap diode can be a low cost one such as IN4148 or BAT54. The external 5V theinputvoltageandgroundandconnectedtotheENpin to adjust enable threshold, as shown in Figure 5. For can be a 5V fixed input from system or a 5V output of the example, the setting
in „Woher Eingangsschwingung am Buck“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FK743M5-XIH6.pdf
PIMC U10N1 0.1uF PC2_C R1 PI3 A4 PI 4 NDC I_D5 - PI44 VREF- B1 VB TT 相比3.3V,在满足CPU供电的同时,尽量降低LDO的压差, BAT54C_KL3 PC2 NL 03 PIMCU10R1 PC2_C PI4 PI MCU10A NL 5 NLD MI0VSYN C 0 PI5 VBAT PIMCU10B1 PC3_C PIMCU10R2 PC3_C PI5 PI MCU10A 3I DC I_VSYNC - PI5 PIMC U10E1 NC 可以大大降低芯片的发热和功耗 O? PI MCU10A 2I66 NDC I_D6
in „STM32H743 mit 32MByte externem SDRAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mp1584.pdf
bootstrap diode can be a low reactance (X L of capacitor comes to dominate, cost one such as IN4148 or BAT54. so that the ESL of input/output capacitor determines the input/output ripple voltage at 5V higher switching frequency. As a result of that, high frequency ceramic capacitor is strongly recommended
in „Empfehlung Step Down Converter IC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTC6802-1.pdf
SCKI TP0610K VREG 100nF SDO 249Ω 4.99k LTC6802-1 GND_HOST ACSL-6410 ISOLATED V LOGIC 1μF 470pF 20k BAT54S BAT54S VCC1 IN1 1μF 6• •1 OUT1 GND1 33nF VCC2 IN2 4 3 OUT2 GND2 10k V− PE68386 LTC1693-2 68021 F19 Figure 19. Providing an Isolated High-Speed Data Interface 68021f 32 LTC6802-1 APPLICATIONS INFORMATION
in „SPI: kein SCK bei Receive - Warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Linear_Current_Sense_AN105.pdf
RANGE 619k INDICATOR (LOAD > 1.2A) 1 1 HIGH CURRENT RANGE OUT LTC6101 LTC6101 250mV/A 7.5k VLOGIC BAT54C LOW CURRENT RANGE OUT 2.5V/A R5 (V +5V) ≤ V ≤ 60V 7.5k LOGIC IN 6101 F03b 0 ≤ LOAD ≤ 10A Using two current sense amplifiers with two values of rents, less than 1.2 Amps, than with higher currents.
in „'High Side' Strom Messen - Geht das so ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN105.pdf
RANGE 619k INDICATOR (LOAD > 1.2A) 1 1 HIGH CURRENT RANGE OUT LTC6101 LTC6101 250mV/A 7.5k VLOGIC BAT54C LOW CURRENT RANGE OUT 2.5V/A R5 (V +5V) ≤ V ≤ 60V 7.5k LOGIC IN 6101 F03b 0 ≤ LOAD ≤ 10A Using two current sense amplifiers with two values of rents, less than 1.2 Amps, than with higher currents.
in „High-Side Strommessung AVR (Shunt)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1933fe.pdf
0.47μF on some minimum load current to get the boost circuit capacitorandasmallSchottkydiode(suchastheBAT-54). For lower output voltages the boost diode can be tied to runningproperly.Thisminimumloadwilldependoninput andoutputvoltages,andonthearrangementoftheboost the input (Figure 2b). The circuit in Figure
in „Kann ich eine BAS85 problemslos an Stelle einer 1N4148 verwenden?“ · Mikrocontroller und Digitale Elektronik ·
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Artikel
Standardbauelemente
Sperrspannung, trr<50ns bzw 75ns 3A, 50..1000V R D BAT46 0,10 Kleinsignal-Schottky-Diode 150mA D,R D BAT54(A/C/S) 0,04 sehr schnelle Kleinsignal-(Doppel-)Schottky-Diode 200mA R,D,I D SB120..SB160 0,13 Schottky-Diode 1A 20-60V R,I D 1N5817..1N5819 0,15 Schottky-Diode, sehr ähnlich zu SB120-140 1A 20/30/40V
Artikel ·
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PDF
1933fe.pdf
0.47μF on some minimum load current to get the boost circuit capacitorandasmallSchottkydiode(suchastheBAT-54). For lower output voltages the boost diode can be tied to runningproperly.Thisminimumloadwilldependoninput andoutputvoltages,andonthearrangementoftheboost the input (Figure 2b). The circuit in Figure
in „LT Spice ein IC von Texas Insturments einbinden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
rf__0_4_schem.pdf
100uF GND GND GND 2.6V when off PID201 OPT0r Button PIP1019 CD1 70 25V OPT1 PIP1021 PMEG6010CEH R0 BAT54A OPT2 PIP1022 D0 CR10 SCL SCL PIP1023 4.7K SDA SDA PIP1024 B R2 GND PIP1025 B P_DAH MCU 3V Supply PIP1026 GND GND GND J2J2 P_DIT VCC_3V Soft controlled 5V Supply PIJ20T 32 VCC_5V Soft controlled 8V
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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 SRN
in „Li-Ion - Charger & Balancing“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Values.txt
S202S11 8 S14K275 8 PORTC 8 NE5532N 8 LSP11 8 LM358D 8 IV9 8 IRF7314 8 IRF510 8 green 8 ca. 6W 8 BAT54C 8 820 8 680 8 68 8 58R 8 50r 8 47 8 390R 8 3.3nF 8 22R 8 22P 8 200n 8 170 8 12 MHz 8 1,2K 8 10µH 8 0.1 7 TPSQPAD1-20Y 7 TPSPAD1-13Y 7 TLE2062 7 PORTB 7 NEB21R 7 MKDSN1,5/2-5,08 7 MAX232ECWE 7 LCD
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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Datei
Devices.txt
BC847ASMD 1 BC808-NPN-SOT23-BEC 1 BC637-NPN-TO92-BCE 1 BC557C 1 BC548C-NPN-TO92-EBC 1 BC307 1 BC12 1 BAT54C 1 BAT49 1 BAS216 1 BAS16 1 B82131 1 B2,54 1 AWF 1 AVR_XMEGA_A3_ 1 AVR-JTAG-10 1 ATTINY28 1 ATTINY26P 1 ATTINY24 1 ATTINY2313-20P 1 ATMEGA8-16P 1 ATMEGA8 1 ATMEGA640-16AU 1 ATMEGA48-20A 1 ATMEGA32U4
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
semtech-sc4503.pdf
SHDN/SS FB 17.8k C1 GND R2 C3 2 0.1µF 49.9k 4.7µF 56nF D7 OUT3 -8.5V (10mA) C10 D6 1µF D2 - D7 : BAT54S L1 : Sumida CDC5D23B-4R7M C2: Murata GRM21BR61C475K C1: Murata GRM188R61A105K Figure 13(a). Triple-Output TFT Power Supply with Soft-Start CH4 CH1 CH2 CH3 400µs/div 40µs/div CH1 : OUT1 Voltage, 5V
in „Welcher Schaltregler ist das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT91SAM7A3-EK.pdf
10V PB16 C 100NF DO NOT CONNECT 3V3 J22 AND J23 AT THE 2 5V C33 100NF CR3 SAME TIME GND_ADC 3V3 3 BAT54 J6 MN9B 8 1 10K 3.3K TLC2272A C34 10 uF 10V LIN0 R19 R20 S21 1 + 5 2 J3 CR1 MN10 PB17 7 1 GF1B 7 4 6 R21 1K 3 VS TXD USART0 R28 1K - C35 2 1 TXD0 S22 PA3 100NF CR2 RXD RXD0 S23 PA2 4 GF1B + C37 RTS0
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PDF
Lenovo_Z50-70_NM-A273_ACLUA_MB_Rev0.3_schematic_.pdf
SP_PLLVDD 1 2 LV1 SYS_PEX_RST_MON# 3 N15SGT@ f +1.05VGS 150mA 7 1 7 1 6 1 6 1 PBY160808T-181Y-N_2P BAT54AWT1G_SOT323-3 1 CV15 1 CV16 . CV17 . CV18 OPT@ GC6@ 2 2 _ _ 0 2 0 2 4 2 8 2 U OPT@ U OPT@ _ OPT@ _ OPT@ 1 2 RV39 0 0 . 2 N15VGM@ 0_0402_5% n 4 2 1 2 RV38 change to BAT54A for cost down OPT@ 10M_0402
in „Laptop defekt: Kommunikation EC - PCH - CPU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VAR-DT6CUSTOMBOARD_SCH_V1_1_Doc_V1_2.pdf
NC2 VCC 3 J11 R106 NC R111 D106 BASE_PER_3V3 ISL12057 - RTC 1 2 I2C3_SCL 3,4,6,7 1 6 CANL1 1.47K 1% BAT54C 3 1 2 4 3 CAN1_TX 4 TXD CANL 7 CANH1 BAT_IN 2 1 XI 3 CSI1_DATA_EN 5 3 4 6 I2C3_SDA 3,4,6,7 3 CAN1_RX RXD CANH 2 3 CSI1_DATA5 7 5 6 8 CSI1_PIXCLK 3 5 2 120R 1% FB100 U109 3 CSI1_DATA6 9 7 8 10 CSI1
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PDF
LT3475.pdf
use a small Schottky diode (such as the it to start. The plots show the worst case, where V IN is BAT-54).Forloweroutputvoltages,theboostdiodecanbe ramping very slowly. tiedtotheinput(Figure4b).ThecircuitinFigure4aismore Programming LED Current efficientbecausetheBOOSTpincurrentcomesfromalower voltage
in „3W Luxeon Led energiesparend dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
butterfly.pdf
AT45DB041B-SC-2.5 U201 4Mb ATMEL * 1 ATMEGA169V-1MC U100 ATMEL * 1 AVR BUTTERFLY A0301.3.1000.A PCB500 * 1 BAT54C D400 PHILIPS * 1 BAT74 D300 PHILIPS * 1 BC847B Q200 PHILIPS NOT MOUNTED 1 BC847BPN Q300 PHILIPS * 1 BLM-21A102S L100 MUR * 1 BZX399-C1V8 D200 PHILIPS * 1 CR-2450 BT400 3V MAXELL * 1 H4042-DL U200
in „AVR Butterfly, was benötigt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lt3502.pdf
Highperformanceelectrolyticcapacitorscanbeusedfor the output capacitor. Low ESR is important, so choose BAT54)inparallelwiththeinternaldiodetoreduceV D.The one that is intended for use in switching regulators. The followingequationscanbeusedtocalculateandminimize boost capacitance in μF: ESR should be specified
in „Bitte um Kontrolle des Layout - LT3502A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DCL9G_ds300.pdf
same driver I/O XFCE PIN topology. A Xilinx XC2C256 Coolrunner-II CPLD generates the output signals. BAT54 Each signal is routed to an external NC7SZ125 high-speed CMOS buffer (Figure 22). Series-damping resistors (30Ω) reduce reflections. Weak pull-up resistors (20 kΩ) maintain DS300_23_120904 Figure 24
in „USBprog CPLD Starterkit Wie bauen?“ · FPGA, VHDL & Co. ·
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PDF
LM3410.pdf
Diode 0.43Vf, Schotky, 1.0A,R20V Diodes Inc DFLS120L D2, D3 Dual Small Signal Schotky Diodes Inc BAT54CT L1, L2 3.3µH 3A Coilcraft MOS6020-332 R1 665 mΩ, 1% Vishay CRCW0805R665F R3 100kΩ, 1% Vishay CRCW08051003F HB/OLED 3.4Vf, 350mA TT Electronics/Optek OVSPWBCR44 29 www.national.com Q 0 4 Physical
in „Feedback Spannung vom LM3410“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Lenovo_schematic.pdf
+_C R32 1 2 470_0402_5% @ HDMI_TX1-_C R33 1 2 470_0402_5% @ 2 Q22 HDMI_TX1+_C R34 1 2 470_0402_5% BAT54S-7-F_SOT23-3 1 D 3S R35 G2 Q12 D4 1 LP2301ALT1G_SOT23-3 HDMI_TX2-_C R37 1 2 470_0402_5% 1M_0402_5% 1 1 2 G C34 HDMI_TX2+_C R38 1 2 470_0402_5% 2 2 .1U_0402_10V6-K {4} HDMI_HPD 3S D1 {46} SUSP 2 1 R39
in „Pin Belegung bei dem Chip“ · Mikrocontroller und Digitale Elektronik ·
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PDF
philips_chassis_qfu2.1e_la.pdf
3 0 RES - 1 7102 9106 5 9101 F001 6 F002 F010 1 5 7 3109 4 6101 8 SDI SDI-BUF AMBI-TEMP 9 100R 3 BAT54 COL % 2 LMV321AP5X 10 0 p 0 0 0 1 11 F004 1 1 1 0 1 K K 7 1 12 AMBI-TEMP 2 2 1 3 3 S 0 1 1 13 R 13 3 8 14 F003 SCKI - 1 15 F005 SDI 16 9104 17 18 9 +3V3 20 1 9102 +12V 9103 +3V3 2102 100n +3V3AL 7101
in „Netzteil Philips LED TV reparieren??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Data_Schottky___HF_Dioden.pdf
, good linearity detector up to 3 GHz BAT 17 0,50 0,45 0,40 10 30 0.32 high current up to 200 mA BAT 54 0,25 0,20 0,18 R.F. elettronica di Rota F.www.rfmicrowave.it info@rfmicrowave.it tel ++39.02.99 48 75 15 fax ++39.02.99 48 92 76 continue , SMD SCHOTTKY DIODES ( HOT - CARRIER ) pag A 7 price € each
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PDF
P82B715.pdf
the amplitude of the negative undershoot. If required, fitting additional Schottky diodes such as BAT54A at Sx/Sy may be used to further ensure any undershoot at these pins does not cause conduction of the diodes inside other ICs connected to Sx/Sy. 10. Characteristics Table 5. Characteristics T = 25
in „Arduino I2C Probleme Sonsoren werden manchmal nicht gefunden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm3478.pdf
REVISED FEBRUARY 2013 www.ti.com Other Application Circuits Figure 37. Typical Flyback Circuit D2 BAT54C-7-F C R SL RBYP SEN 604: 10: VIN= from 5V to 0.5V 10 nF + CIN CC2 2 x 10 PF, 0.47 PF L1 16V I R SEN VIN R 3.3 PH C CC FA MBRS130LT3 VOUT= 9V, 20 mA 100: 1 PF 71.5 k: COMP FA/SD D1 COUT LM3478 Q1 3
in „Frage zu Datenblatt LM3478“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
14_hoofdstuk14.pdf
- tiespanningen. Om deze te hoge spanning op de ingangspin te voorkomen wordt gebruik gemaakt van BAT54S dioden. Dit zijn dubbele schottky barrier diodes met een spanningsval van ongeveer 300mV tot 400mV. De bovenste schottky zal geleiden wanneer de spanning op de datalijn ho- ger is dan 3V3 + Vf zodat
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4P018-00_03_G2_Aurora_Mb_COG_Driver_Interface_Timing_for_small_size_20150727.pdf
R3 PWM: 100~300KHz, 100n/16V/X7R 100K/5% 50% duty cycle, 3 R4 VCOM C17 1VGL R5 100K/5% square wave BAT54SW D1 2 3 Q4 BSS84W Connect to Timing Controller GPIOBORDER_CONTROL 1 VCC 2 BORDER_CONTROL : Square Pulse Note.1 when power on Note: 1. Hardware setting for different size: R1 Q3,Q4,R3,R4,R5 D2 1.44
in „Probleme mit Breakoutboard für 2" Pervasive Display“ · Mikrocontroller und Digitale Elektronik ·