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IXFH13N50.PDF
; R GS= 1 MW 500 V (TAB) V GS Continuous ±20 V V GSM Transient ±30 V ID25 TC= 25°C 13 A I T = 25°C, pulse width limited by T 52 A TO-204 AA (IXFM) DM C JM I T = 25°C 13 A AR C E T = 25°C 18 mJ AR C dv/dt I £ I , di/dt £ 100 A/ms, £ V , 5 V/ns S
in „Betriebsstrom des MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IXFH13N50.PDF
; R GS= 1 MW 500 V (TAB) V GS Continuous ±20 V V GSM Transient ±30 V ID25 TC= 25°C 13 A I T = 25°C, pulse width limited by T 52 A TO-204 AA (IXFM) DM C JM I T = 25°C 13 A AR C E T = 25°C 18 mJ AR C dv/dt I £ I , di/dt £ 100 A/ms, £ V , 5 V/ns S
in „Wie heiß wird mein MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IXFH13N50.PDF
; R GS= 1 MW 500 V (TAB) V GS Continuous ±20 V V GSM Transient ±30 V ID25 TC= 25°C 13 A I T = 25°C, pulse width limited by T 52 A TO-204 AA (IXFM) DM C JM I T = 25°C 13 A AR C E T = 25°C 18 mJ AR C dv/dt I £ I , di/dt £ 100 A/ms, £ V , 5 V/ns S
in „Puls weiten modulation“ · Analoge Elektronik und Schaltungstechnik ·
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CS4272_F1.pdf
VD 9 20 VA VL 10 19 AINB- M0 11 18 AINB+ M1 12 17 AINA+ I2S/LJ 13 16 AINA- RST 14 15 VCOM DS593F1 7 CS4272 Pin Name # Pin Description XTO Crystal Connections (Input/Output) - I/O pins for an external crystal
in „darf der Chip so warm werden?“ · Mikrocontroller und Digitale Elektronik ·
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16F648a_40044F.pdf
1 21 RA7/OSC1/CLKIN PIC16F627A/628A/648A NC 2 20 RA6/OSC2/CLKOUT VSS 3 PIC16F627A/628A 19 V DD 0 NC 4 18 NC 1 2 3 4 5 6 7 8 9 1 VSS 5 PIC16F648A 17 V DD NC 6 16 RB7/T1OSI/PGD RB0/INT 7 0 2 3 4 15 RB6/T1OSO/T1CKI/PGC F 1 2 P S S 1 8 9 1 1 1 1 1 E P
in „16f627A schaltet RA5 u RA6 nicht“ · Mikrocontroller und Digitale Elektronik ·
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Explanation_of_Data_Sheet_Parameters__INF.pdf
. . . . 24 3.17 Durchlassspannung V . . . . . 24 3.17 Forward Voltage V . . . . . . . . 24 SD SD 3.18 Gate Ladung Q G . . . . . . . . . . 3.18 Gate Charge Q G . . . . . . . . . . . . 24 3.19 Gate-Source Ladung Q GS . . . . 24 3.19 Gate-Source Charge Q GS . . . . . 24 3.20 Gate-Drain Ladung Q . . . .
in „Sperrstrom BJT vs. MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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TPS_40210.pdf
VMC DCM operation at 1-A load. 50 180 18 IN 40 135 30 Gain Phase 90 )s ) 18 VIN e B 20 12 IN 12 VIN 45 g ( 10 9 VIN 0 D a 9 VIN (e G 0 –45 s h –10 –90 P –20 –135 –30 –180 10 100 1 k 10 k 100 k 1 M Frequency (Hz) Fig. 13. Control-to-output Bode
in „Problem mit dem Hochsetzsteller (TPS 40210)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Atmega16_3x_DS18S20.c
#include <avr/io.h> #include <avr/interrupt.h> #define F_CPU 8000000 //-> bereits unter Project->Configuration Options-> als 8000000 definiert #include <util/delay.h> #include <inttypes.h> #include <stdint.h> #define TRUE 1 #define FALSE 0 // Anchlussbelegung: An welchen Pins h?ngt der DS1820 bzw die LED Anzeige #define W1_PIN PC0 //PC0 Pin soll der W1_PIN sein - in diesem Fall ist es der DataPin vom DS1820 #define W1_IN PINC //Pin abfragen #define W1_OUT PORTC //Ausg?nge ansteuern #define W1_DDR DDRC //Datenrichtung jeweils festlegen - je nach dem ob Daten zum DS gesedent, oder vom DS empfangen
in „Thermomixer noch einmal neu - dieses mal nur ein MEGA16“ · Mikrocontroller und Digitale Elektronik ·
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CS5532-34-BS_F3.pdf
dB Filter Instrumentation Amplifier Gain Rate (Sps) Frequency (Hz) x64 x32 x16 x8 x4 x2 x1 7.5 1.94 20 21 22 23 23 23 23 15 3.88 20 21 22 22 22 22 22 30 7.75 19 20 21 22 22 22 22 60 15.5 19 20 21 21 21 21 21 120 31 18 19 20 21 21 21 21 240 62 17 17 18 18 18 18 18 480 122 17 17 17 17 17 17 17 960 230 16
in „CS5534 Referenzspannung“ · Analoge Elektronik und Schaltungstechnik ·
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AQ_Rly_Dm_lcd_lan_1_wire_18_11_12.pdf
; // the first ROM byte indicates which chip switch (addr[0]) { case 0x10: Serial.println(" Chip = DS18S20"); // or old DS1820 type_s = 1; break; case 0x28: Serial.println(" Chip = DS18B20"); type_s = 0; break; Seite 5 AQ_Rly_Dm_lcd_lan_1_wire_18_11_12.txt case 0x22: Serial.println(" Chip = DS1822"); type_s = 0; break; default: Serial.println("Device is not a DS18x20 family device."); return; } ds.reset(); ds.select(addr); ds.write(0x44,1); // start conversion, with parasite power on at the end delay(1000
in „Aquariumcontroller: hängt sich auf / stürzt ab / friert ein - Hilfe!“ · Mikrocontroller und Digitale Elektronik ·
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DS75160__161__162_GPIB-Transceiver.pdf
In-Line Package TL/F/5804–1 Top View Order Number DS75160AN or DS75160AWM See NS Package Number M20B or N20A TL/F/5804–16 TRI-STATE is a registered trademark of National Semiconductor Corporation.61AN or DS75161AWM É See NS Package Number M20B or N20B
in „PM2528 als Scannermultimeter mit GPIB“ · Mikrocontroller und Digitale Elektronik ·
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70599B.pdf
’s quality system for the design and manufacture of development systems is ISO 9001:2000 certified. DS70599B-page ii Preliminary 2009 Microchip Technology Inc. MRF24J40MB 2.4 GHz IEEE Std. 802.15.4™20dBmRF
in „AVR32UC3B mit Funkmodul MRF24J40MB“ · Mikrocontroller und Digitale Elektronik ·
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LDO.pdf
Ordering information Table 7. Order code Part number Marking Order code Output voltage (V) LL12 LDL1117S12R 1.185 LL15 LDL1117S15R 1.5 LL18 LDL1117S18R 1.8 LDL1117 LL25 LDL1117S25R 2.5 LL30 LDL1117S30R 3.0 LL33 LDL1117S33R 3.3 LL50 LDL1117S50R 5.0 DS12022 - Rev 6 page 18/23 LDL1117 Revision history Table
in „STM32 - 5V tolerante Pins bei Startup“ · Mikrocontroller und Digitale Elektronik ·
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Designing_a_digital_compass.pdf
spreadsheet, or a plotting freeware program which can be found on the Web. © 2005 Microchip Technology Inc. DS00996A-page 3 AN996 FIRMWARE Note: The source code and any application examples described in this application The firmware for this application is written in C using Microchip’s MPLAB C18 C Compiler.
in „Kompassmodul HDMM01 von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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rtc.pdf
Circuits and Pin Configurations appear atS1392U-33 -40°C to +85°C 10 µSOP DS1392 rr-33 end of the data sheet. DS1393U-18 -40°C to +85°C 10 µSOP DS1393 rr-18 DS1393U-3 -40°C to +85°C 10 µSOP DS1393 rr-3 DS1393U-33 -40°C to +85°C 10 µSOP DS1393
in „ein Uhrenquartz für AVR und RTC???“ · Mikrocontroller und Digitale Elektronik ·
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DS_DA221.pdf
...................................................................................................20 Table 18.ACC_X_LSB register....................................................................................................................................20 Table 19.ACC_X_MSB register..........
in „Seltsames Verhalten eines Beschleunigungssensors“ · Mikrocontroller und Digitale Elektronik ·
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Transistoren_cht.pdf
B IR IRF9Z34N -55 0.1 -17 56 TO-220AB IR IRF9Z34S -60 0.14 18 88 D2PAK 2SJ401 A IR IRFBC10LC 600 10 1.2 36 TO-220AB 2SK3067 B IR IRFBC20 600 4.4 2.2 50 TO-220AB 2SK3067 B IR IRFBC20L 600 4.4 2.2 50 TO-262 2SK2865 B IR IRFBC20S 600 4.4 2.2 50 D2PAK 2SK2865
in „Frage Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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Power_MOSET_Cross_reference.pdf
B IR IRF9Z34N -55 0.1 -17 56 TO-220AB IR IRF9Z34S -60 0.14 18 88 D2PAK 2SJ401 A IR IRFBC10LC 600 10 1.2 36 TO-220AB 2SK3067 B IR IRFBC20 600 4.4 2.2 50 TO-220AB 2SK3067 B IR IRFBC20L 600 4.4 2.2 50 TO-262 2SK2865 B IR IRFBC20S 600 4.4 2.2 50 D2PAK 2SK2865
in „Schaltregler Fragen“ · Analoge Elektronik und Schaltungstechnik ·
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PT4115E.pdf
80% 2LEDs H ( 700 e70% c c n 600 y60% e 500 C50% q t r 400 u40% F 1LED D30% 1LED h 300 4LEDs i 5LEDs 20% w 200 2LEDs 6LEDs 10% S 100 3LEDs 7LEDs 0% 0 8 10 12 14 16 18 20 22 24 26 28 30 8 10 12 14 16 18 20 22 24 26 28 30 SupplyVoltage Vin(V) Supply Voltage Vin(V) 8% Output Current L=100uH Rcs=0.33ohm n
in „LED 20-50mA mit verlustarmer und winziger Lösung an 24V DC/= betreiben“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PT4115E-datasheet.pdf
80% 2LEDs H ( 700 e70% c c n 600 y60% e 500 C50% q t r 400 u40% F 1LED D30% 1LED h 300 4LEDs i 5LEDs 20% w 200 2LEDs 6LEDs 10% S 100 3LEDs 7LEDs 0% 0 8 10 12 14 16 18 20 22 24 26 28 30 8 10 12 14 16 18 20 22 24 26 28 30 SupplyVoltage Vin(V) Supply Voltage Vin(V) 8% Output Current L=100uH Rcs=0.33ohm n
in „Problem bei LEDKSQ“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
blynk.txt
xxxxxxxxxxxxxxxxxxxxxxxxxx"; char pass[] = "xxxxxxxxxxxxxxxxxxxxxxxxxx"; BlynkTimer timer; // This function sends Arduino's up time every second to Virtual Pin (5). // In the app, Widget's reading frequency should be set to PUSH. This means // that you define how often to send data to Blynk App. void sendSensor() { DS18B20.requestTemperatures(); float t = DS18B20.getTempCByIndex(0); Serial.print(t); Serial.println("ºC"); if (isnan(t)) { Serial.println("Failed to read from DS18B20 sensor!"); Serial.print(t); Serial.println("ºC"); return; } // You can send
in „Messwert wird vom esp32 nicht übertragen.“ · Mikrocontroller und Digitale Elektronik ·
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ssd1803_2_0.pdf
Width 6-dot Font Width A3 A2 A1 A0 D7 D6 D5 D4 D3 D2 D1 D0 D7 D6 D5 D4 D3 D2 D1 D0 0 0 0 0 B1 B0 X S1 S2 S3 S4 S5 B1 B0 S1 S2 S3 S4 S5 S6 0 0 0 1 B1 B0 X S6 S7 S8 S9 S10 B1 B0 S7 S8 S9 S10 S11 S12 0 0 1 0 B1 B0 X S11 S12 S13 S14 S15 B1 B0 S13 S14 S15 S16 S17 S18 0 0 1 1 B1 B0 X S16 S17 S18 S19 S20 B1 B0 S19 S20 S21 S22 S23 S24 0 1 0 0 B1 B0 X S21 S22 S23 S24 S25 B1 B0 S25 S26 S27 S28 S29 S30 0 1 0 1 B1 B0 X S26 S27 S28 S29 S30 B1 B0 S31 S32 S33 S34 S35 S36 0 1 1 0 B1 B0 X S31 S32 S33 S34 S35 B1 B0 S37
in „DIP203 LCD mit TMS320F28335 per SPI“ · Mikrocontroller und Digitale Elektronik ·
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BSP308.pdf
GS ID Page 6 1999-09-22 Preliminary data BSP308 Drain-source on-resistance Gate threshold voltage R DS(on) = f (T)j V GS(th) = f (T j parameter : I = D.7 , V GS = 10 V parameter: V GS = V DS , D = 20 µA BSP308 0.12 3.0 V 0.10 2.4 ) 0.09 ) 2.2 98% ( ( S 0.08 S 2.0 D G typ R 0.07 V 1.8 0.06 98% 1.6 1.4
in „Suche Depletion Mode Fet, n-Kanal, low Rds on oder Alternative“ · Analoge Elektronik und Schaltungstechnik ·
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PIC18F46J11_39932D.pdf
(PORTB and PORTC) • Programmable Reference Clock Output Generator 2011 Microchip Technology Inc. DS39932D-page 3 PIC18F46J11 FAMILY ) e s l ) MSSP h r m y t b s i M T ( t e P PIC18F/LF(1) s r ( b p s e - P R M / r S P U C Device i o r ( a i i 1 P S / ™ t p p P T T P P o A m P T 8 C E w 2C B m e M C
in „PIC18F46J11 und RTC. Quarz nötig? Anfängerfrage Übersicht verloren ;-(“ · Mikrocontroller und Digitale Elektronik ·
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CCP_Tricks.pdf
. c) A prescaler of 8 will cause an overflow at a time greater than 0.2 seconds. 8 x 32.8 ms = 0.25s DS41214A-page 18 © 2003 Microchip Technology Inc. Tips ‘n Tricks Step #2: Calculate CCPR1 (CCPR1L and CCPR1H) to shorten the time-out to exactly 0.2 seconds a) CCPR1 = Interval Time/(Tosc*4*prescaler
in „Lüfter über PWM, Bauteilauswahl?!?“ · Mikrocontroller und Digitale Elektronik ·
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LM78LXX.pdf
specified,IN = 10V Symbol Parameter Conditions Min Typ Max Units VO Output Voltage 4.8 5 5.2 V 7V ≤ VIN ≤ 20V 1 mA ≤ IO≤ 40 mA 4.75 5.25 (Note 3) 1 mA ≤ IO≤ 70 mA 4.75 5.25 (Note 3) V Line Regulation 7V ≤ V ≤ 20V 18 75 mV O IN 8V ≤ VIN ≤ 20V 10 54 VO Load Regulation 1 mA ≤ IO≤ 100 mA 20 60 1 mA ≤ I ≤ 40 mA
in „Hilfe bei Berechnung des zul. Ausgangsstroms beim Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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LM1086.pdf
Switching Supplies R n Constant Current Regulator e n Microprocessor Supply g u a Connection Diagrams o s TO-220 TO-263 DS100948-2 Top View DS100948-4 Top View Basic Functional Diagram, Adjustable Version Application Circuit DS100948-65 DS100948-52 1.2V to 15V Adjustable Regulator © 2001 National Semiconductor
in „Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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BUK7514-55A.pdf
f(V )GS conditions: V DS = 25 V; parameter T j RDS(ON)/mOhm 30 30 5.5 6.0 gfs/S 28 25 26 24 20 22 15 20 6.5 18 7.0 10 16 7.5 14 8.0 5 12 10.0 10 0 5 10 15 20 25 30 35 40 45 50 0 20 40 60 80 100 ID/A ID/A Fig.6. Typical on-state
in „Wärmewiderstandsberechnung FET“ · Analoge Elektronik und Schaltungstechnik ·
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BUK_7514-55.pdf
f(V )GS conditions: V DS = 25 V; parameter T j RDS(ON)/mOhm 30 30 5.5 6.0 gfs/S 28 25 26 24 20 22 15 20 6.5 18 7.0 10 16 7.5 14 8.0 5 12 10.0 10 0 5 10 15 20 25 30 35 40 45 50 0 20 40 60 80 100 ID/A ID/A Fig.6. Typical on-state
in „Brauche Hilfe bei Motoransteuerung“ · Mikrocontroller und Digitale Elektronik ·
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xminilab-manual.pdf
................................................................................................. 18 3. Logic Analyzer and Protocol Sniffer ........................................................................................... 19 DS-Xminilab-1.6 - February, 2012 Page | 4 Xminilab User’s Manual
in „USART - xmodem (Xminilab) - Bildübertragung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xminilab-manual.pdf
................................................................................................. 18 3. Logic Analyzer and Protocol Sniffer ........................................................................................... 19 DS-Xminilab-1.6 - February, 2012 Page | 4 Xminilab User’s Manual
in „ATXmega32 flashen mit ATMEL Flip (Xminilab)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LuefterProject.asm
: push r17 push r18 ldi r17,cDS1621_Write ldi r18,cDS1621_StartConvert rcall DS1621_sendStart rcall DS1621_sendStop pop r18 pop r17 ret ;===================================================== ;Name: DS1621_writeTemperatureHigh
in „AT90s2313 + ds1621 (liest nur Schrott)“ · Mikrocontroller und Digitale Elektronik ·
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dm9161-ds-f05_091008.pdf
Turn Around Data Idle Write Read 7.2.10ManagementInterface-WriteFrameStructure MDC MDIO Write 32 "1"s 0 1 0 1 A4 A3 A0 R4 R3 R0 1 0 D15 D14 D1 D0 Idle Preamble SFD Op Code PHY Address Register Address Turn Around Data Idle Write Figure7-5 20 Final Version: DM9161-DS-F05 September 10, 2008 DM9161 10/100MbpsFastEthernetPhysicalLayer
in „Beschaltung VICOM DM9161CEP“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP320412-bitA-DConverterDatasheet.pdf
FIGURE 2-17: Differential Nonlinearity (DNL) vs. Temperature. (DNL) vs. Temperature (V = 2.7V). DD 4 20 3 V = V = 2.7 V 18 DD REF )16 B2 FSAMPLE= 50 ksps B S L14 V DD= VREF= 5V (1 r12 FSAMPLE= 100 ksps o o r0 r10 E-1 t 8 i s VDD = VREF= 2.7V a-2 V = V = 5 V f 6 FSAMPLE= 50 ksps G DD REF O 4 -3 FSAMPLE=
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PIC18FXX80_to_PIC18FXXK80_Migration_Guide.pdf
the power consumption to an absolute minimum. same manner, the way they use address masks are TABLE 20: I C™ COMPARISONS different. Feature Description PIC18FXX80 PIC18FXXK80 MSSP MODULE PMD 7-Bit Address No Yes Disabling the MSSP module by clearing the SSPEN bit Masking Mode disables the module’s functionality
in „Umstieg von PIC18F4620 auf PIC18F46K20“ · Mikrocontroller und Digitale Elektronik ·
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PDF
si1539cd.pdf
Transfer Characteristics 0.80 40 Ω 0.60 30 ( F C iss c ( a VGS = 4.5 V e i n e i - 0.40 VGS = 10 V a 20 n p - C n - C oss S C D 0.20 10 R Crss 0.00 0 0 0.5 1 1.5 2 0 6 12 18 24 30 VDS - Drain-to-Source Voltage (V) D - Drain Current (A) Capacitance On-Resistance vs. Drain Current and Gate Voltage 10 1.8
in „7-Segment Display (elektromagnetisch) Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PLC-LOX.txt
/* UDP syntax: signals: DS18B20 1wire sensor packet: rail1 1w 2864fc3008082 25.44 DS2438 1wire sensor packet: rail1 1w 2612c3102004f 25.44 1.23 0.12 digital input state: rail1 di1 1 analog input state: rail1 ai1 250 commands:
in „1 Wire auf 2 GPIO pins“ · Mikrocontroller und Digitale Elektronik ·
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ESP32Radio.pdf
U5 GND IN4 OUT4 C C3 D C7 1 9V 1 C G J5 L 2 TDA7439DS 10 2 S Eigene:TDA7439DS DIAGNOSTIC 330n 2 100n k 1 k 6 SVR S18 0 R20 0 V BO-R 13 100n C41 7 SP_R GND 1 1 22 12 100n C45 St-By 10k STANDBY SDA BI-R 2 PWGND 8 2 3 21 SCL MO-R 11 22n C35 R L 4 9 Q7 BSS138 20 10 18n C42 t t R SGND DGND MI-R O O C55 C56 J8 GND T-R 19 5,6n C36 þÿ47µ50V þÿ10µ25V J18 P P AudioJack3 n n SK409 1 S TDA7439DS R IN 470n C21 3 IN1-R MUXO-R 9 o o 2 R 470n C16 2 S S IN2-R T 470n C22
in „TDA7439DS Störgeräusche und ein kochender TDA7377“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tester2.asm
*****************temp lesen in abhängigkeit der adr**************** ds18_wm:rcall ds_reset rcall skip_rom ;rcall match_rom rcall s1_64bit rcall convert_t rcall ds_reset rcall skip_rom ;rcall match_rom rcall s1_64bit rcall read_scratchpad rcall ausgabe3 ret ;************
in „ds1820 befehle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SCHEMATIC1___PAGE1.pdf
30 TP4 A4 42 A5 A5 9 A3 D3 17 D4 A5 9 A3 D3 17 D12 A5 9 A3 DQ3 17 D4 TP6 29 TP5 A5 43 A6 A6 8 A4 D4 18 D5 A6 8 A4 D4 18 D13 A6 8 A4 DQ4 18 D5 TP7 28 TP6 A6 44 A7 A7 7 A5 D5 19 D6 A7 7 A5 D5 19 D14 A7 7 A5 DQ5 19 D6 NOTE: D3 is pulled down for 27 TP7 A7 45 6 A6 D6 20 6 A6 D6 20 6 A6 DQ6 20 A19 to configure
in „Schaltung mit 68332“ · Mikrocontroller und Digitale Elektronik ·
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LM334.pdf
Reference Driver 2 4 L M 3 4 DS005697-17 DS005697-18 Ramp Generator DS005697-19 9 www.national.com 4 3 Typical Applications (Continued) L 4 3 1.2V Reference Operates on 10 µA and 2V 1.2V Regulator with 1.8V Minimum Input 2 M / 3 1 M L DS005697-20 *Select ratio of R1 to R2 to obtain zero temperature drift DS005697-7 *Select ratio of R1 to R2 for zero temperature drift Zener Biasing Alternate Trimming Technique Buffer for Photoconductive
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BLF188XR_BLF188XRS.pdf
aaa-009590 28 80 66 G p ηD PL (dB) (%) (dBm) 64 26 64 ldeal L (2) 62 (1) Gp P 24 48 L 60 22 32 ηD 58 20 16 56 18 0 54 0 320 640 960 P (W) 1600 28 30 32 34 36 38 40 42 L Pi(dBm) V = 50 V; I = 40 mA; f = 108 MHz; t = 100 s; V = 50 V; I = 40 mA; f = 108 MHz; t = 100 s; DS Dq p DS Dq p = 20 %. = 20 %
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LD7536R.pdf
( ) y H 66 n ( u 21 y q n r u 64 e q d 19 r M F n 62 e 17 r G 60 15 11 12 14 16 18 20 22 24 25 11 12 14 16 18 20 22 24 25 Vcc (V) Vcc (V) Fig. 6 Green Mode Frequencyvs. Vcc Fig. 5 Frequency vs. Vcc 7 Leadtrend Technology Corporation www.leadtrend.com.tw LD7536R-DS-01a December 2011 LD7536R 85 0.90 80 0.88 ) ) ( 75 ( 0.86 t ) u o x (S a 70 C0.84 M V 65 0.82 60 0.80 -40 0 40 80 120 125 -40 0 40 80 120 125 Temperature (°C) Temperature (°C) Fig. 7 Max Duty vs. Temperature Fig. 8 V CS (off) vs. Temperature s t e 18 35 15 30 12 ) V A (
in „DENON DN-508MX Netzteil defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BF998.pdf
-S gate 2-source cut-off voltage VG1-S = 0; DS= 8 V; D = 20 A 1.5 V DSS drain-source current VG2-S = 4 V; DS= 8 V; G1-S = 0; note 12 18 mA G1-SS gate 1 cut-off current VG2-S = VDS= 0; VG1-S= 5 V
in „Schaltung mit BF998“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
benchmark.c
= // PIC24@40MIPS = // dsPIC@30MIPS = 128.26µs // ATMEGA@16MIPS = 657µs // LPC2103@60MIPS = 46.93µs pa8 = a; for (i=0; i<256; i++) { *pa8++=0x11; } // copy 256 single bytes // PIC18@10MIPS = // PIC24@40MIPS = 96.20µs // dsPIC@30MIPS = 188.10µs // ATMEGA@16MIPS = 914µs // LPC2103@60MIPS = 64.02s pa8 = a; pb8 = b; for (i=0; i<256; i++) { *pa8++=*pb8++; } // clear 128 16bit words // PIC18@10MIPS = // PIC24@40MIPS = 48.20µs // dsPIC@30MIPS = 64.26µs // ATMEGA@16MIPS = 329µs // LPC2103@60MIPS =
in „LPC2103 63MIPS?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mcp6004.pdf
to +5.5V, V SS = GND, V CM = V DD /2, V OUT ≈ V DD /2, R L 10 kΩ to V DD /2, and C = L0 pF. 22% 100 s 1225 Samples c 20% VCM= VSS n 18% e 16% B u ( 90 c 14% R O 12% R PSRR (V = V ) f M CM SS o 10% , g 8% R t R 80 n 6% P c 4% CMRR (V CM= -0.3V to +5.3V) e P 2% 0% 70 - - - - - - - 0 1 2 3 4 5 6 7 -50 -
in „Nichtinvertierender Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ds18x20.c
################################################################################ /* Library to use ds18x20 with ATMEL Atmega family. For short ds18x20 wires there is no need for an external pullup resistor. If the wire length exceeds one meter you should use a 4.7k pullup resistor on the data line. This
in „LCD Anzeige und DS18B20“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GU256X16-333A_1.pdf
GND 7 D4 8 GND 9 D310GND 39 1 11 D2 12 GND 13 D1 14 GND ・・・ …… ・・・ ・・・ …… ・・・ 15 D0 16 GND 17 *WR 18 GND 40 2 19 C/*D 20 GND (CN1) 21 *RD 22 GND 23 *CS 24 GND 25 FRP 26 VCC1(+5V) 27 *BL 28 VCC1(+5V) 29 DS2 30 VCC1(+5V) 31 DS1 32 VCC1(+5V) Type of connector: 33 DS0 34 *RESET FCN-604Q040-G/S (Fujitsu)
in „[V] Riesiges VFD Grafikdisplay mit 256x16 Pixeln von Noritake“ · Markt ·
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PDF
GU256X16-333A_1.pdf
GND 7 D4 8 GND 9 D310GND 39 1 11 D2 12 GND 13 D1 14 GND ・・・ …… ・・・ ・・・ …… ・・・ 15 D0 16 GND 17 *WR 18 GND 40 2 19 C/*D 20 GND (CN1) 21 *RD 22 GND 23 *CS 24 GND 25 FRP 26 VCC1(+5V) 27 *BL 28 VCC1(+5V) 29 DS2 30 VCC1(+5V) 31 DS1 32 VCC1(+5V) Type of connector: 33 DS0 34 *RESET FCN-604Q040-G/S (Fujitsu)
in „{V] Verkaufe MEGA VFD Grafikdisplay von Noritake“ · Markt ·
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PDF
datasheet.pdf
D 100 µs Z D = thJC 100 (o) 10 1 DS R 1 ms 10 -1 D = 0.50 10 ms 0.20 0 10 0.10 0.05 10 -2 0.02 DC single pulse 0.01 10-1 0 1 2 10 -3 -7 -6 -5 -4 -3 -2 -1 0 10 10 V 10 10 10 10 10 10 10 10 s 10 V t DS p Semiconductor Group 5 07/96 BUZ 72