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PDF
AN3675.pdf
secret, it is necessary to first load a known value as secret. With the help of this known secret, 32 bytes of the data to be included in the computation of the new secret need to be written to one of the four memory pages. Next a partial secret should be written to the DS2432 scratchpad buffer memory
in „Kopierschutz für (Entwicklungs-) Bibliotheken - Diplomarbeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM386_Low_Voltage_Audio_Power_Amplifier.pdf
Peak-to-Peak Output Voltage vs Supply Voltage (Referred to the Output) Swing vs Supply Voltage vs Frequency DS006976-5 DS006976-13 DS006976-12 Voltage Gain vs Frequency Distortion vs Frequency Distortion vs Output Power DS006976-14 DS006976-15 DS006976-16 Device Dissipation vs Output Device Dissipation vs Output
in „Elektretmikrofon und LM 386N-1 als Verstärker“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm386.pdf
Peak-to-Peak Output Voltage vs Supply Voltage (Referred to the Output) Swing vs Supply Voltage vs Frequency DS006976-5 DS006976-13 DS006976-12 Voltage Gain vs Frequency Distortion vs Frequency Distortion vs Output Power DS006976-14 DS006976-15 DS006976-16 Device Dissipation vs Output Device Dissipation vs Output
in „Spannanungsverstärkung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RT8298E-02.pdf
Dimensions Qg characteristics results in lower power losses. Drain- Supplier (mm) source on-resistance (R DS(ON)) should be as small as Zenithtek ZPWM 10 x 10 x 4 possible, less than 30mΩ is desirable. Lower R 6 x 6 x 3 DS(ON) results in higher efficiency. WE 74477 10 x 10 x 4 TAIYOYUDEN NR8040 8 x 10 x 4 Table
in „Schaltregler - maximaler Spulenstrom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RT8298E-02.pdf
Dimensions Qg characteristics results in lower power losses. Drain- Supplier (mm) source on-resistance (R DS(ON)) should be as small as Zenithtek ZPWM 10 x 10 x 4 possible, less than 30mΩ is desirable. Lower R 6 x 6 x 3 DS(ON) results in higher efficiency. WE 74477 10 x 10 x 4 TAIYOYUDEN NR8040 8 x 10 x 4 Table
in „Wahl des SynchrongleichrichterMOSFETs für Buck Converter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RT8298E-02.pdf
Dimensions Qg characteristics results in lower power losses. Drain- Supplier (mm) source on-resistance (R DS(ON)) should be as small as Zenithtek ZPWM 10 x 10 x 4 possible, less than 30mΩ is desirable. Lower R 6 x 6 x 3 DS(ON) results in higher efficiency. WE 74477 10 x 10 x 4 TAIYOYUDEN NR8040 8 x 10 x 4 Table
in „Woher Eingangsschwingung am Buck“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS2761.pdf
DS2761BE/T&R D2761EB DS2761BE on Tape-and-Reel DS2761AE-025 2761A25 TSSOP, 25mW Sense Resistor, 4.275V VOV DS2761BE-025 2761B25 TSSOP, 25mW Sense Resistor, 4.35V VOV DS2761AE-025/T&R 2761A25 DS2761AE-025
in „Akkustand mit AVR feststellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1803a.pdf
set HS2 to “High”. (refer to Table 9-5) DH’ = 1 RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS: Display shift per line enable this instruction selects shifting line to be shifted according to each line mode in display shift right/left instruction. DS1, DS2, DS3 and DS4 indicate
in „Probleme mit EADOGM204-4 und ATMEGA32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1803a_2_0.pdf
set HS2 to “High”. (refer to Table 9-5) DH’ = 1 RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS: Display shift per line enable this instruction selects shifting line to be shifted according to each line mode in display shift right/left instruction. DS1, DS2, DS3 and DS4 indicate
in „Display DOGM-204A/SSD1803A mit I2C - ROM Auswahl“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0074.pdf
to right, Shift R/L = "0" : shift to left. (when DH = "1") Determine the line for display shift . DS1 = "1/0": 1st line display shift enable/disable Shift 1 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS2 = "1/0": 2nd line display shift Enable enable/disable 39 s DS3 = "1/0": 3rd line display shift enable/disable DS4
in „Informationen gesucht: 3,3V Display HB24208 für AVR32 / NGW100“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UM1052_PMSM_singledual_FOC_SDK_v3.3.pdf
UM1052 User manual STM32F05xx/STM32F100xx/STM32F103xx/STM32F2xx/ STM32F4xx PMSM single/dual FOC SDK v3.3 Introduction This manual describes the Motor Control Software Development Kit (generically called software library) designed for and to be used with STM32F05xx, STM32F100xx, STM32F103xx, STM32F2xx or STM32F4xx microcontrollers. The software library implements the Field Oriented Control (FOC) drive of 3-phase Permanent Magnet Synchronous Motors (PMSM),
in „BLDC Sinuskommutierung Ansteuerung H-Brücke“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Freq-Spannungswandler.pdf
Output vs Temperature 2 9 7 DS007942-40 DS007942-41 DS007942-42 Normalized Tachometer Tachometer Currents I 2 Tachometer Currents I 2 Output vs Temperature and I3vs Supply Voltage and I3vs Temperature DS007942-43 DS007942-44 DS007942
in „LM2907/17 Frequenz-Spannungswandler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Freq-Spannungswandler.pdf
Output vs Temperature 2 9 7 DS007942-40 DS007942-41 DS007942-42 Normalized Tachometer Tachometer Currents I 2 Tachometer Currents I 2 Output vs Temperature and I3vs Supply Voltage and I3vs Temperature DS007942-43 DS007942-44 DS007942
in „Frequenz Spannungswandler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NSC.pdf
Output vs Temperature 2 9 7 DS007942-40 DS007942-41 DS007942-42 Normalized Tachometer Tachometer Currents I 2 Tachometer Currents I 2 Output vs Temperature and I3vs Supply Voltage and I3vs Temperature DS007942-43 DS007942-44 DS007942
in „Frequenz Spannungswandler Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SP601_RevC_annotated_master_ucf_8-28-09.ucf
#NET "FMC_LA31_N" LOC = "V6"; ## G34 on J1 #NET "FMC_LA31_P" LOC = "T6"; ## G33 on J1 #NET "FMC_LA32_N" LOC = "V15"; ## H38 on J1 #NET "FMC_LA32_P" LOC = "U15"; ## H37 on J1 #NET "FMC_LA33_N" LOC = "N9"; ## G37 on J1 #NET "FMC_LA33_P" LOC = "M10"; ## G36 on J1 #NET "FMC_PRSNT_M2C_L" LOC = "U13"; ##
in „Ethernet GMII“ · FPGA, VHDL & Co. ·
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PDF
MSP430F5438IPZ.pdf
16h 32-bit operand 1 – multiply accumulate low word MAC32L 18h 32-bit operand 1 – multiply accumulate high word MAC32H 1Ah 32-bit operand 1 – signed multiply accumulate low word MACS32L 1Ch 32-bit operand 1 – signed multiply accumulate high word MACS32H 1Eh 32-bit operand 2 – low word OP2L 20h 32-bit operand 2 – high word OP2H 22h 32 × 32 result 0 – least significant word RES0 24h 32 × 32 result 1 RES1 26h 32 × 32 result 2 RES2 28h 32 × 32 result 3
in „Strombelastbarkeit MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVRnDxBoard.pdf
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 JP5 PC5 24 PC5 PE5
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PDF
LM2991.pdf
Output Voltage DS011260-13 DS011260-14 DS011260-15 Output Noise Voltage Quiescent Current Maximum Output Current DS011260-16 DS011260-17 DS011260-18 Line Transient Response Load Transient Response Maximum Output Current DS011260-19 DS011260-20 DS011260-21 Ripple Rejection Output Impedance ON /OFF Control Voltage DS011260-22 DS011260-23 DS011260-24 www.national.com 4 L M Typical Performance Characteristics (Continued) 9
in „Negative Low Dropout Adjustable Regulator gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irlml6401.pdf
Charge ––– 2.6 3.9 V GS= -5.0V d(on) Turn-On Delay Time ––– 11 ––– V DD = -6.0V ns tr Rise Time ––– 32 ––– ID= -1.0A d(off) Turn-Off Delay Time ––– 250 ––– RD= 6.0Ω f Fall Time ––– 210 ––– RG= 89Ω Ciss Input Capacitance ––– 830 ––– V GS= 0V Coss Output Capacitance ––– 180 ––– pF V DS= -10V Crss Reverse
in „CMOS Transistoren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRLML6401.pdf
Charge ––– 2.6 3.9 V GS= -5.0V d(on) Turn-On Delay Time ––– 11 ––– V DD = -6.0V ns tr Rise Time ––– 32 ––– ID= -1.0A d(off) Turn-Off Delay Time ––– 250 ––– RD= 6.0Ω f Fall Time ––– 210 ––– RG= 89Ω Ciss Input Capacitance ––– 830 ––– V GS= 0V Coss Output Capacitance ––– 180 ––– pF V DS= -10V Crss Reverse
in „parasitäres Glimmen beim LED-Muxing. Transistoren? Einstreuungen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRLML6401.pdf
Charge ––– 2.6 3.9 V GS= -5.0V d(on) Turn-On Delay Time ––– 11 ––– V DD = -6.0V ns tr Rise Time ––– 32 ––– ID= -1.0A d(off) Turn-Off Delay Time ––– 250 ––– RD= 6.0Ω f Fall Time ––– 210 ––– RG= 89Ω Ciss Input Capacitance ––– 830 ––– V GS= 0V Coss Output Capacitance ––– 180 ––– pF V DS= -10V Crss Reverse
in „LED Multiplexer glimmt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP6562.pdf
\0YQH:,0:KNQH3N0NH'\7[,S\YD RKS7HSQKO J\SQ,H'H6$ P7[:K,6 EFGIF(%; © 2009 Microchip Technology Inc. DS22139B-page 27 MCP6561/1R/1U/2/4 "HDG3OVWL3F6P2V#P2&@VXQ3LLV7U6LPRGVW32$3%GV1#X0VN#X7W% \@6G, H70NQ\0&HYN0S377\,N0O[S [6\0Z7[:K,6Y00O'\[Y\0Y\\0NQ\0RKS7HSQKO01[S [6K,60VO\SK8KS[NKH,0'HS[N\Z0[N0 QNNO+22
in „Schmitttrigger mit MCP6562 unklare Abweichung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP2021.pdf
2012 Microchip Technology Inc. DS22298A-page 31 MCP2021A/2A N NOTE 1 E1 1 2 3 D E A2 A L A1 c e b1 eB b DS22298A-page 32 2012 Microchip Technology Inc. MCP2021A/2A Note: For the most current package drawings, please see the Microchip
in „MCP2021 -> Welcher ESD Level wird erreicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
owaf.c
8(); } void OneWire_CheckPresence(void) /* 128µs */ { if(PIN_IN_STATE(OWAF_PIN)) { /* 128µs = 64 * 32 * 62,5ns */ //OCR0 = 40;//32 //T0_PRESCALER_64(); /* 416µs = 26 * 256 * 62,5ns */ OCR0 = 30; T0_PRESCALER_256(); mu8_SlaveAck = 1u; } else { sequence_fpa[0] = C_NULL_PTR; sequence_fpp = sequence_fpa;
in „1 Wire manche Teilnehmer antworten nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP6V11U_OpAmp.pdf
E+01 0.1 1.E+ 2 1.E+03 1.E+04 1.E+05 1.E+06 100 1k 10k 100k Frequency (Hz) Frequency (Hz) FIGURE 2-32: Closed-Loop Output FIGURE 2-34: Maximum Output Voltage Impedance vs. Frequency with V DD = 5.5V. Swing vs. Frequency. 2012-2014 Microchip Technology Inc. DS20005124B-page 13 MCP6V11/1U/2/4 Note: Unless
in „OpAmps: Maximale Widerstandswerte“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS_SJDP120R085_rev1.3.pdf
Parameter Symbol Conditions Unit Min Typ Max Off Characteristics Drain-Source Blocking Voltage BV DS VGS = -15 V, D = 600 µA 1200 - - V V DS= 1200 V, V GS < -15 V, - 10 - Tj = 25 C Total Drain Leakage Current DSS µA V DS= 1200 V, V GS < -15 V, Tj= 150 C - 100 - VGS = -15 V, VDS = 0V - -0.1 -0.3 Total
in „Siliziumkarbid-JFETS“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
temp_str.c
((TWCR & (1<<TWSTO))); #if defined(ARDUINO) #if ARDUINO >= 100 //check busy Wire.beginTransmission(DS1307_ID); printIIC(STATUS_REGISTER); Wire.endTransmission(); Wire.requestFrom( ( DS1307_ID ), 1); // request Status Register 1 Byte if ((readIIC() & 0x00ff) & (1<<BSY)) // auf busy pruefen mit 0x00ff
in „RTC DS3231 - Temperatur Daten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP1703_MIC.pdf
\VWRXV,LNUZRLNR GNN0+22:::<&\,PV,G\0<,V&20L,.LF\WF © 2009 Microchip Technology Inc. DS22049D-page 23 MCP1703 #HDG3OVWL3F6P2V%U3LV&L36’VJ>VDG3OVW32(3)GV$\@+V*V'+/+,-$VQQV1>O.V0%&JN J>6G± VPRNGUR&VYNR,3PPUWNR0L,.LFURZPL:\WFY0R0XULYURYUURNGURO\,PV,G\0R1L,.LF\WFR60U,\8\,LN\VWRXV,LNUZRLNR GNN0
in „Was ist das für ein IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF3205Z.pdf
Capacitance ––– 310 ––– pF ƒ = 1.0MHz Coss Output Capacitance ––– 1940 ––– V = 0V, V = 1.0V, ƒ = 1.0MHz GS DS Coss Output Capacitance ––– 430 ––– VGS= 0V, V DS= 44V, ƒ = 1.0MHz Cosseff. Effective Output Capacitance ––– 640 ––– VGS= 0V, VDS= 0V to 44V f Source-Drain Ratings and Characteristics Parameter Min.
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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PDF
si1539cd.pdf
= - 250 µA V DS GS D P-Ch - 1.2 - 2.5 N-Ch ± 100 Gate-Body Leakage GSS VDS = 0 V,GS = ± 20 V nA P-Ch ± 100 V = 30 V, V = 0 V DS GS N-Ch 1 VDS = - 30 V,GS= 0 V P-Ch - 1 Zero Gate Voltage Drain Current DSS µA VDS = 30 V,GS = 0 V,JT = 55 °C N-Ch 10 V DS= - 30 V,GS = 0 V,JT = 55 °C P-Ch - 10 V =5 V, V = 10 V b I DS GS N-Ch 2 A On-State Drain Current D(on) V = -5 V, V = - 10 V P-Ch - 1 DS GS VGS = 10 V,DI = 0.6 A N-Ch 0.323 0.388 b VGS= - 10 V,DI =
in „7-Segment Display (elektromagnetisch) Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mcp6004.pdf
www.microchip.com/cn) to receive the most current information on our products. 2003 Microchip Technology Inc. DS21733D-page 21 MCP6001/2/4 NOTES: DS21733D-page 22 2003 Microchip Technology Inc. Note the following details of the code protection feature on Microchip devices: • Microchip products meet the specification
in „Nichtinvertierender Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
nrf24l01_drv.c
include "rf_defines.h" #define RF_CONFIG_MASK ((0 << NRF24L01_MASK_RX_DR) | (1 << NRF24L01_MASK_TX_DS) | (1 << NRF24L01_MASK_MAX_RT) \ | (1 << NRF24L01_EN_CRC) | (0 << NRF24L01_CRCO)) #define PAYLOAD_SIZE 32 // Hängt von Groesse des Structs ab #define RF_CHANNEL 50 // Kanal 75 für uns #define TX_CHANNEL
in „[STM32F4xx] NRF24L01+ Funkmodul Source Code“ · Projekte & Code ·
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Datei
nrf24l01_drv.c
include "rf_defines.h" #define RF_CONFIG_MASK ((0 << NRF24L01_MASK_RX_DR) | (1 << NRF24L01_MASK_TX_DS) | (1 << NRF24L01_MASK_MAX_RT) \ | (1 << NRF24L01_EN_CRC) | (1 << NRF24L01_CRCO)) #define PAYLOAD_SIZE 32 // Hängt von Groesse des Structs ab #define RF_CHANNEL 50 // Kanal 75 für uns #define TX_CHANNEL
in „Basteltip: STM32F103 DIP40 Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bootloaderV2.a51
for first serial else DBIT 1 endif bReqError: DBIT 1 ; 1 on request Errors dseg at 0x21 wValueLo: ds 1 ; 0x21 BootKey: ds 8 ; 0x22 Marker0: ds 1 ; 0x2A rlen: ds 1 ; 0x2B reqlen: ds 1 ; 0x2C cmdbuffer: ds 64 ; 0x2D ds 2 ; 0x6d spare bRequest: ds 1 ; 0x6F SnSum: ds 1 ; 0x70 DescAddr: ds 2 ; 0x71 CAddr: ds 2 ; 0x73 Marker1: ds 1 STACK: xseg at 0 EP0_BUFFER: ds 8 ; 0x0000 the control endpoint ds 4 ; spare EP2_OUT_BUFFER: ds 64 ; 0x000C bulk out EP2_IN_BUFFER: ds 64 ; 0x004C bulk in cseg at StartAddress
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6203.pdf
Normalized Quiescent Current vs. Frequency Figure 3: Typical Normalized I S vs. VS Figure 4: Typical R DS (ON)vs. V S V ref 5/20 L6201 - L6202 - L6203 Figure 5: Normalized R DS (ON)at 25 C vs. Temperature Typical Values Figure 6a: Typical Diode Behaviour in Synchro- Figure 6b: Typical Diode Behaviour in
in „Schrittmotorsteuerung verbessern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cd00000089-1795323.pdf
Normalized Quiescent Current vs. Frequency Figure 3: Typical Normalized I S vs. VS Figure 4: Typical R DS (ON)vs. V S V ref 5/20 L6201 - L6202 - L6203 Figure 5: Normalized R DS (ON)at 25 C vs. Temperature Typical Values Figure 6a: Typical Diode Behaviour in Synchro- Figure 6b: Typical Diode Behaviour in
in „[V] Motortreiber 2x L6203 Multivatt11 und 5x Siemens TLE4205“ · Markt ·
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PDF
cd00000089-1795323.pdf
Normalized Quiescent Current vs. Frequency Figure 3: Typical Normalized I S vs. VS Figure 4: Typical R DS (ON)vs. V S V ref 5/20 L6201 - L6202 - L6203 Figure 5: Normalized R DS (ON)at 25 C vs. Temperature Typical Values Figure 6a: Typical Diode Behaviour in Synchro- Figure 6b: Typical Diode Behaviour in
in „[V] 2St. DMOS Full Bridge L6203 Multiwatt 11 Gehäuse“ · Markt ·
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PDF
93LC46.pdf
, implicitly or otherwise, under any intellectual Analog-for-the-Digital Age, Application Maestro, dsPICDEM, property rights. dsPICDEM.net, dsPICworks, ECAN, ECONOMONITOR, FanSense, FlexROM, fuzzyLAB, In-Circuit Serial Programming, ICSP, ICEPIC, Migratable Memory, MPASM, MPLIB, MPLINK, MPSIM, PICkit,
in „Probleme mit SPI EEPROM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BSP308.pdf
Unit min. typ. max. Dynamic Characteristics Transconductance gfs 6.1 8.8 - S V ≥2*I *R , I = 3.9 A DS D DS(on)max D Input capacitance Ciss - 400 500 pF VGS = 0 V, DS = 25 V, f = 1 MHz Output capacitance Coss - 160 200 VGS = 0 V, DS = 25 V, f = 1 MHz Reverse transfer capacitance Crss - 70 90 VGS = 0 V
in „Suche Depletion Mode Fet, n-Kanal, low Rds on oder Alternative“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS1643-DS1643P.pdf
mil Extended) Disconnected to Retain Freshness Until Power is Applied for the First Time 1 34 N.C. DS1643 Only (DIP Module) N.C. 2 33 N.C. Standard JEDEC Byte-Wide 8K x 8 RAM N.C. 3 DS1643P 32 N.C. Pinout PFO 4 31 N.C. VCC 5 30 A11 UL Recognized WE 7 28 A10 DS1643P Only (PowerCap Module Board) OE
in „parallele SRAM Bausteine (nennt man das so ?) in Bascom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CY3272_Schematic.pdf
www.cypress.com File: 1-Top.SchDoc * 1 2 3 4 5 6 1 2 3 4 5 6 A A VDD R5 402 C1 C2 VDD VDD 0.1uF 1.0nF C7 C8 DS5 22pF 22pF BLUE GND GND PWR R2 P2 2 U1 2.10k C3 2 28 20 0.01uF VDD 1 Y2 GND VCC RXCOMP+ 21 Y1 MOUNTING HOLES B 32.768kHz RXCOMP- 4 B 1 15 XTAL_OUT RSVD 25 3 VCC 1 C4 13 XTAL_IN RSVD 24 GND OUT EN 2 0.01uF
in „Power Line bzw. Power LAN im Selbstbau“ · Haus & Smart Home ·
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Datei
rtc.c
#ifdef RTC_T_LINE uint32_t rtc_previousMillis=millis(); volatile uint16_t uint16_rtc_show_upd_flag=0; volatile uint16_t uint16_rtc_temp_update_time=0; char *strTemperaturRTC(int8_t temp_offset) { // am DS3231 die Temperatur
in „arduino oder GCC Programmierung“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan Dual Slim FDD Adapter v1.1
Dual Slim FDD Adapter v1.1 (C) RBSC 2022 CN3 1 DCHG 2 INDEX 3 NC1 4 DS1 5 NC2 6 DS0 7 INDEX 8 READY 9 INDEX 10 MOTON 11 DS0 12 DIR 13 DS1 14 STEP 15 DS2 16 UD 17 MOTON 18 UGATE 18 DIR 19 STEP 20 STEP 20 TK0 21 WD 22 WD 22 APBOT 23 WD 24 WGATE 24 WGATE 25 2KGND 26 SIDESEL 27 TRK0 28 WPROT 28 WPROT 29 RD 30 RD 31 SIDESEL 32 SIDESEL 33 READY 34 READY FDD_CONN PIN1 bis PIN26 +5V GND CN4 1 bis 4 PWR GND
in „Pinbelegung 3,5" Floppy mit FPC26“ · PC Hard- und Software · · Schaltpläne
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Bild
CAD-Ansicht eines Leiterplatten-Layouts mit Bestückungsdaten
100uF/16V C15 16 C16 10uF C17 15pF C18 1k C19 1mF C20 200 C21 20m C22 22uF C24 22uF/16V C25 25MHz C26 32.768kHz C3 475 C30 47uF C31 47uF/6.3V C32 6 Layers C33 690 C34 75 C52 C54 C44 C19 C18 C20 C16 C15 100uF/10V 100uF/10V 8X02N DS26LU32 DS26LU32
in „Altium Designer - Assistent zur manuellen Bauteilbestückung“ · Platinen · · Layouts
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PDF
LM2594HVM-5.0_Datenblatt.pdf
Also see section on Open Core Inductors. The inductors listed in the selection chart include ferrite DS012439-32 E-core construction for Schott, ferrite bobbin core for Renco FIGURE 17. Post Ripple Filter Waveform and Coilcraft, and powdered iron toroid for Pulse Engineer- ing. Exceeding an inductor’s
in „Idee für ein ||transportables|| Handyladegerät“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CYStech_MTB09N03H8.pdf
70 RepetitiveAvalanche Energy @ L=0.05mH EAR 15 *2 mJ TC=25℃ 60 Total Power Dissipation TC=100℃ PD 32 W Operating Junction and Storage Temperature Range Tj, Tstg -55~+175 °C 100% UIS testing in conditioD=15V, L=0.1mH, G=10V, =25A, Rated DS=25V N-CH Thermal Data Parameter Symbol Value Unit Thermal Resistance
in „[S] CYStech MOSFETs“ · Markt ·
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Datei
TS_iP152_C0802_4BIT_44780-a.h
Flüssigkristallanzeige P0llin C0802-04 4 Datenleitungen // MSP430F1611 // ----------------- // | XIN|- 32,768kHz // | | // Taster rot--|RST (58) XOUT|- 32,768kHz // 8 Mhz X2IN- | // | // 8 MHz X2OUT- | P1.0..P1.7| Daten FKA usw.davon 1.7 bis 1.4 für 4Bit-daten genutzt // | | // | P3.0| CS1 SPI frei (28) // UTXD0 |P3.4 P3.1|-> Daten Ausgang I2C DS32C35 (29) // URXD0 |P3.5 P3.2|<- Data In (SOMI0) I2C DS32C35 (30) // UTXD1 |P3.6 P3.3|-> (UCLK) I2C DS32C35 (31) // URXD1 |P3.7 // // | P4.0-P4.7| (36)..(43) //(44)SD-CS |P5.0 P2.7| SD Karte Einsteckkontrolle
in „LCD im 4-Bit Modus an nur einem Port betreiben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TS_iP158_C0802_4BIT_44780_P1f-2.h
Flüssigkristallanzeige Pollin C0802-04 4 Datenleitungen // MSP430F1611 // ----------------- // | XIN|- 32,768kHz // | | // Taster rot--|RST (58) XOUT|- 32,768kHz // 8 Mhz X2IN- | // | // 8 MHz X2OUT- | P1.0..P1.7| Daten FKA usw.davon 1.7 bis 1.4 für 4Bit-daten genutzt // | | // | P3.0| CS1 SPI frei (28) // UTXD0 |P3.4 P3.1|-> Daten Ausgang I2C DS32C35 (29) // URXD0 |P3.5 P3.2|<- Data In (SOMI0) I2C DS32C35 (30) // UTXD1 |P3.6 P3.3|-> (UCLK) I2C DS32C35 (31) // URXD1 |P3.7 // // | P4.0-P4.7| (36)..(43) //(44)SD-CS |P5.0 P2.7| SD Karte Einsteckkontrolle
in „LCD im 4-Bit Modus an nur einem Port betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mtouch_ug.pdf
Application Maestro, CodeGuard, devices in life support and/or safety applications is entirely at dsPICDEM, dsPICDEM.net, dsPICworks, dsSPEAK, ECAN, the buyer’s risk, and the buyer agrees to defend, indemnify and ECONOMONITOR, FanSense, In-Circuit Serial hold harmless Microchip from any and all damages
in „Näherungsschalter durch 1mm Aluminium“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Display_Controller.pdf
350 V1 349 V2 348 V3 347 V4 . . 345~346 VR 344 VDD 342~343 OSC1 341 VSS 340 INTRS 31 COM0 339 VDD 32 COMS1 338 VEXT 337 VSS 33 SEG0 336 REF 335 VDD 326~334 T8~T0 320~325 VOUT_IN 314~319 VOUT_OUT 313 VDD 312 DS1 311 DS0 310 MF0 8 309 MF1 308 MF2 2 307 TA 21 V0 306 Mode 20 V1 5 300~305 VSS 19 V2 C C .
in „LCD Controler mit Spannungsregulier-Eingängen“ · Mikrocontroller und Digitale Elektronik ·