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NL2432HC22.pdf
size 64.0 (H) × 85.0 (V) × 4.13 (D) mm (typ.) Weight 37 g (typ.) At transmissive mode 90:1 (typ., at IL= 18mA, with Touch panel) ✩ Contrast ratio At reflective mode ✩ 6:1 (typ., with Touch panel) Reflection ratio 8% (typ., with Touch panel) Response time 39ms (typ. Ton + Toff) 90 cd/m 2(typ., at IL=18mA
in „NL2432HC22 23b Display nutzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT25080A.pdf
AT25080A/160A/320A/640A Timing Diagrams Figure 3. Synchronous Data Timing (for Mode 0) t CS V IH CS V IL t t CSS CSH V IH t t SCK WH WL V IL t t SU H V IH SI VALID IN VIL tV HO tDIS VOH SO HI-Z HI-Z V OL Figure 4. WREN Timing Figure 5. WRDI Timing 11 3347I–SEEPR–1/05 Figure 6. RDSR Timing CS 0 1 2 3 4 5
in „Atmel 25080A - SPI - AT89C51RB2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lt1153.pdf
programmable over a wide range to accommodate a varietyofloadimpedances.Anactivehighshutdowninput O U A PP IL AT S isalsoprovidedandinterfacesdirectlytoaPTCthermistor for thermal circuit breaking. An open-drain output is Power Bus Circuit Breaker provided to report breaker status to the P. SCSI Termination Power
in „TPS61175 Overccurent Protection Mode“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TFT_Datenblatt.pdf
Temp. (Ċ) -40 ~ 95 View Angle 45/65/65/65 (Up/Down/Left/Right) Brightness (cd/m2) 200 Contrast Ratio 300 Response Time (msec) 35 Supply Voltage (VDC) 3.3 VDC for LCD 4 2. LCD Dimensions UNIT: mm 5 6 7 3. Absolute Maximum Rating VALUES ITEM SYMBOL UNIT REMARK MIN. MAX. Vcc -03. 5 V AV DD -0.5 12 V Power
in „LCD mit Gamma Voltage Pins“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mic3202.pdf
Switch Voltage Switch R DSON Switch Voltage vs. Switch Current vs. Switch Current vs. Switch Current 300 290 300 ) ) V250 ) V250 ( Ω285 ( E ( E G200 O G200 T D T L R280 L V150 H V150 H C H C I C I100 S275 I100 W W S 50 VLED 3.5V VLED 3.5V S 50 V LED 3.5V V = 12V VIN 12V V IN 12V IN 0 270 0 0.0 0.3 0.5
in „MIC3202 : welche empfohlene Schaltung ist geeignet?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mcp23008.pdf
D080 GPIO VOL — — 0.6 V OL = 8.5 mA,DD = 4.5V INT — — 0.6 V IL = 1.6 mA,DD = 4.5V SO, SDA — — 0.6 V IL = 3.0 mA,DD = 1.8V SDA — — 0.8 V IL = 3.0 mA,DD = 4.5V Output High-Voltage D090 GPIO, INT, SO VOH VDD – 0.7 — — V OH = -3.0 mA,DD = 4.5V VDD – 0.7 — — OH = -400
in „MCP23008 Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
d16311gc.pdf
Output Voltage V OH1 0.9 VDD V LED 1 LED , IH1 = 1 mA Low-Level Output Voltage VOL1 1 V LED 1 LED , IL1= 20 mA Low-Level Output Voltage VOL2 0.4 V DOUT, IL2= 4 mA High-Level Output Current IH21 3 mA VO = VDD 2 V, Seg to Seg12 High-Level Output Current IH22 15 mA VO = VDD 2 V, Grid to Grid , Seg 1/ Grid
in „Daten vom Vfd Controller Abfangen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DTZ_Logger_OPEN.ino
+= "&ul1="; Data += U_L1; Data += "&ul2="; Data += U_L2; Data += "&ul3="; Data += U_L3; Data += "&il1="; Data += I_L1; Data += "&il2="; Data += I_L2; Data += "&il3="; Data += I_L3; Data += "&frq="; Data += Frequency; Data += "&ip="; Data += WiFi.localIP().toString(); Data += "&dtzid="; sprintf(extractValue
in „DTZ541 mMe Datenlogger mit ESP (WEB-Sicht)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DTZ_Logger_OPEN.ino
+= "&ul1="; Data += U_L1; Data += "&ul2="; Data += U_L2; Data += "&ul3="; Data += U_L3; Data += "&il1="; Data += I_L1; Data += "&il2="; Data += I_L2; Data += "&il3="; Data += I_L3; Data += "&frq="; Data += Frequency; Data += "&ip="; Data += WiFi.localIP().toString(); Data += "&dtzid="; sprintf(extractValue
in „DTZ541 mMe Datenlogger mit ESP (WEB-Sicht)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DTZ_Logger_OPEN.ino
+= "&ul1="; Data += U_L1; Data += "&ul2="; Data += U_L2; Data += "&ul3="; Data += U_L3; Data += "&il1="; Data += I_L1; Data += "&il2="; Data += I_L2; Data += "&il3="; Data += I_L3; Data += "&frq="; Data += Frequency; Data += "&ip="; Data += WiFi.localIP().toString(); Data += "&dtzid="; sprintf(extractValue
in „Digitale Stromzähler auslesen und in DB speichern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC4052.pdf
current VI= VCC or GND 6.0 0 − − ±1.0 A 10.0 0 − − ±2.0 A I analog switch V = V or V ; S(OFF) I IH IL OFF-state current VS = VCC − VEE; see Fig.9 per channel 10.0 0 − − ±1.0 A all channels 10.0 0 − − ±2.0 A S(ON) analog switch VI= VIH or IL; 10.0 0 − − ±2.0 A ON-state current VS = VCC − VEE; see
in „Audiosignale mischen bzw. mehrere Töne überlagern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
uP1542-DS-F00A0.pdf
uP1542T/Q/V: 0.8V V REF component count, and fast transient response. Fixed Stand Alone Mode Operation 300kHz operation provides an optimal level of integration to reduce size and cost of the power supply. Simple Single-Loop Control Design This controller integrates internal MOSFET drivers that Voltage-Mode
in „Ersatz Mosfet für ein Defektes Nas System“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PSPICE_MITSCHRIFT_ALLES_SS20908.pdf
+03 3.228E+00 5.326E-02 -5.002E+01 -3.613E+02 20 2.000E+03 2.000E-01 3.300E-03 9.000E+01 -2.376E+02 21 2.100E+03 3.042E+00 5.018E-02 -1.625E+01 -3.603E+02 22 2.200E+03 1.645E+00 2.713E-02 -9.404E+01 -4.544E+02 23 2.300E+03 1.832E+00 3.022E-02 1.872E+01 -3.581E+02 24 2.400E
in „Pspice Simulation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MP9000_Series.pdf
country see caddock.com/contact/dist.html Fax: (951) 369-1151 © 2004 Caddock Electronics, Inc. 28_IL102.1004 Page 2 of 2 Thermal Resistance Model Package Resistance Power Max. RθJC Max. Temp. Dimensions Comments No. Min. Max. Rating Voltage Film J) to Case C) T MAX MP915 TO-126 Style 0.020 Ω 1.00 K
in „Impulsbelastung(Stromspitzen) von Widerständen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MP900-SERIES_ENG_TDS.pdf
country see caddock.com/contact/dist.html Fax: (951) 369-1151 © 2004 Caddock Electronics, Inc. 28_IL102.1004 Page 2 of 2 Thermal Resistance Model Package Resistance Power Max. RθJC Max. Temp. Dimensions Comments No. Min. Max. Rating Voltage Film J) to Case C) T MAX MP915 TO-126 Style 0.020 Ω 1.00 K
in „Suchstrategie Isolierter NPN Leistungstransistor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP3221.pdf
time T 4000 — — ns HIGH Clock low time T 4700 — — ns LOW SDA and SCL rise time TR — — 1000 ns From V IL V IHNote 1) SDA and SCL fall time TF — — 300 ns From V IL V IHNote 1) START condition hold time THD:STA 4000 — — ns START condition setup time T 4700 — — ns SU:STA Data input setup time TSU:DAT 250 —
in „Suche Bauteilbezeichnung 5-Pin SOT-23 mit "S1SD" Marking“ · Mikrocontroller und Digitale Elektronik ·
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24C16.pdf
and V max are reference only and are not tested. IL IH 3 AC Characteristics Applicable over recommended operating range from T = -40 CAto +85 C, V ° CC = +1.8V to +5.5V, CL = 1 TTL Gate and 100 pF (unless otherwise noted). 2.7-, 2.5-, 1.8-volt 5.0-volt
in „Erstellen eines 24C16 Eeproms in Multisim“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74ls154.pdf
Package Description x DM74LS154WM M24B 24-Lead Small Outline Integrated Circuit (SOIC), JEDEC MS-013, 0.300rWide DM74LS154N N24A 24-Lead Plastic Dual-In-Line Package (PDIP), JEDEC MS-010, 0.600 Wide Devices also available in Tape and Reel. Specify by appending the suffix letter “X” to the ordering code. Connection
in „Achtung, Newbie, LED-Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SLR2016.PDF
Package Dimensions in inches (mm) 0.100 (5.00)( 3 pl.) 0.012 (.3) (2.54) .002 (.05) 0.180 0.400 .015 0.300 .02 (4.57) (10.16 .38) (7.62 .51) 0.784 (19.91) 0.150 Part Number EIA Date Code (3.81) SLX2016 Intensity 0.200 SIEMENS XXYY Z Code (5.08) FEATURES Pin 1 (4.06 .51) • Very Close Multi-line Spacing, 0.4
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LS7060_LS7062.pdf
brought low ative transition of these pulses. for a minimum of 1µs. RESET must be high for a minimum of 300ns before next valid count can be recorded. LATCHES - LS7060 (LS7062) 32 bits of latch are provided for storage of counter data. All latch- TEST COUNT (LS7060) es are loaded when the LOAD input is brought
in „Suche Manual/Schaltplan CN3165 Voltcraft Universalzähler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1640586162378_1895.pdf
integrated circuit operates with an appreciable current, its junction temperature is elevated. IIN= IL + IG (1) It is important to quantify its thermal limits in order to PD= (V IN - V OUT L + V IN G (2) achieve acceptable performance and reliability. This Figure 7 shows the voltages and currents which
in „ESP32-C6 und LDO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4051.pdf
SS Figure 11. Channel Resistance (R ) Test Circuit ON TYPICAL RESISTANCE CHARACTERISTICS 350 350 ) 300 ) 300 S S H H ( 250 ( 250 E E N N T 200 T 200 I I E 150 E 150 T =125⋅C ” TA=125⋅C ” A O O , 100 , 100 25⋅C N 25⋅C N RO –55⋅C R –55⋅C 50 50 0 0 –10 –8.0 –6.0 –4.0 –2.0 0 0.2 4.0 6.0 8.0 10 –10 –8.0 –
in „V: MC14051BCP“ · Markt ·
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PDF
4051.pdf
SS Figure 11. Channel Resistance (R ) Test Circuit ON TYPICAL RESISTANCE CHARACTERISTICS 350 350 ) 300 ) 300 S S H H ( 250 ( 250 E E N N T 200 T 200 I I E 150 E 150 T =125⋅C ” TA=125⋅C ” A O O , 100 , 100 25⋅C N 25⋅C N RO –55⋅C R –55⋅C 50 50 0 0 –10 –8.0 –6.0 –4.0 –2.0 0 0.2 4.0 6.0 8.0 10 –10 –8.0 –
in „Einfache Multiplex Schaltung (Anfänger!)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sp14n001-z1.pdf
9.3 Internal Pin Connection SP14N001-Z1-5 Changed : Page 9-3/3 CFL I / F : Mitsumi M63M83 – 04 JAE IL-G-4S-S3C2-SA 7B64PS 2712- 12. DESIGNATION OF LOT MARK SP14N001-Z1-5 Added REV No. ITEM LOT No. Page 12-1/1 CFL I/F Connector : - Mitsumi M63M83 - 04 - CFL I/F Connector : A JAE IL-G-4S-S3C2-SA 7102T
in „Graphik Display (LCD) an AVR anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CLAA070VA02.pdf
- 178 -200 uA (c)Backlight Ta=25 ℃ ITEM SYMBOL MIN TYP MAX UNIT NOTE Lamp Voltage VL 504 560 616 V IL=6.0mA Lamp Current IL 5.5 6 6.5 mA *1) Lamp Frequency FI (50) - (60) kHz *3) Lamp life time LT 20,000 - - hr *2)*3)*4)IL=6.0moperation *2)*3)*4)IL=6.0moperation Turn on and off life - 100000 - - times
in „Wer kennt diesen Display-Fehler? (Typisch?)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LQ10D421.pdf
dimensions (D)11.0mm ˠ (D)11.5(MAX) 3 4.Input terminals ɾ Change used connector DF9BA-31P-1V ˠ DF9MA-31P-1V IL-310-31P-VF ɾ Change Corresponding connector delete “IL-310-31S-VF” ɾ Change Funciton of 29,30pin ʴ 5.0V power supplyˠ ʴ 3.3/5.0V power supply 4 Change “ʲNote3ʳ ʲNote4 ”ʳ 5.Absolute Maximum Ratings Change
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lt1208.pdf
capable of driving large capacitiveloadswhichmakethemusefulinbufferorcable O U driver applications. A PP IL AT S TheLT1208/LT1209aremembersofafamilyoffast,high Wideband Amplifiers performance amplifiers that employ Linear Technology Buffers Corporation’s advanced bipolar complementary Active Filters processing
in „Operations verstärker als Komparator verschlechterung der Slewrate?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
I2C_EEPROM_-_ST24C04.pdf
Clock Pulse Width High 600 ns tCLCH tLOW Clock Pulse Width Low 1300 ns tCH1CH2 tR Clock Rise Time 300 ns CL1CL2 tF Clock Fall Time 300 ns DH1DH2 2 tR SDA Rise Time 20 300 ns 2 tDL1DL2 tF SDA Fall Time 20 300 ns tDXCX tSU:DAT Data In Set Up Time 100 ns tCLDX tHD:DAT Data In Hold Time 0 ns tCLQX DH Data
in „I²C - EEPROM's (24C04 ...)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at29c010.pdf
0V to VCC 10 A 0° - 40°C 30 A ISB1 VCC Standby Current CMOS CE = V CC- 0.3V to CC Com. 100 A Ind. 300 A ISB2 VCC Standby Current TTL CE = 2.0V to VCC 3 mA ICC VCC Active Current f = 5 MHz; OUT = 0 mA 50 mA V IL Input Low Voltage 0.8 V V IH Input High Voltage 2.0 V V OL Output Low Voltage IOL= 2.1 mA
in „Beschaltung AT29C010 /Pulldowns?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP4151.pdf
1) ................................400 mW Soldering temperature of leads (10 seconds).............+300°C ESD protection on all pins ..................................≥ 4 kV (HBM), .......................................................................... ≥ 300V (MM) Maximum Junction Temperature (T )
in „Frage zum MCP4151 SPI Digital Poti?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
78f9116.pdf
P40-P45 V DD= 2.7 to 5.5 V 0.8VDD VDD V 0.9VDD VDD V V IH4 X1, X2 VDD - 0.1 VDD V Low-level input V IL1 P00-P03, P10, P11, P60-P63 V DD= 2.7 to 5.5 V 0 0.3V DD V voltage 0 0.1V DD V V IL2 P50-P53 V DD= 2.7 to 5.5 V 0 0.3V DD V 0 0.1V DD V V IL3 RESET, P20-P25, P40-P45 V DD= 2.7 to 5.5 V 0 0.2V DD V 0
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PDF
Bltn970.pdf
REQUIRED ON PIN 3 AND PIN 4. 150 EXTERNAL RESISTOR REQUIRED ON PIN 1. 561 Hillgrove Avenue • LaGrange, IL 60525 • Phone: 708.354.1040 • Fax: 708.354.2820 • www.grayhill.com Bulletin #970 Revised 03012004 Grayhill Optical Encoders Series 62P Low Cost, PC Mount WAVEFORM ANDTRUTHTABLE Standard Quadrature 2-
in „Drehimpulsgeber-Signale auswerten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sn75lvds82.pdf
SN75LVDS82 Load and Shift Timing Sequences EQUIVALENT INPUT AND OUTPUT SCHEMATIC DIAGRAMS V CC VCC 300 kΩ 300 kΩ 5 Ω D Output AnP AnM V CC 7 V 7 V 7 V SHTDN 50 Ω INPUT OUTPUT 7 V 300 kΩ INPUT 3 SN75LVDS82 SLLS259E–NOVEMBER 1996–REVISED JANUARY 2005 www.ti.com (1) ABSOLUTE MAXIMUM RATINGS over operating
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PDF
eeprom.pdf
Algorithms The X2816C supports a 16-byte page write operation, —No Overerase Problem typicallyprovidinga300 s/bytewritecycle,enablingthe • High Performance Advanced NMOS Technology entire memory to be written in less than 640ms. The • Fast Write Cycle Times X2816C also features DATA Polling, a system software
in „EEPROM mit SRAM ersetzen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
542-01945-0-Z86E04.pdf
Table 7. OTP ProgrammingTable Programming Modes VPP EPM CE OE PGM ADDR DATA VCC EPROM READ NU VH V IL VIL VIH ADDR Out 5.0V PROGRAM V V V V V ADDR In 6.4V H IH IL IH IL PROGRAM VERIFY VH VIH V IL VIL VIH ADDR Out 6.4V EPROM PROTECT VH VH V H VIH VIL NU NU 6.4V LOW NOISE SELECT V V V V V NU NU 6.4V H
in „Pollin Ladegerät WCFD0801500IFOON : Rückwärts Ingenieur gesucht !“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1302.pdf
nonvolatile (NV) GND 4 5 RST RAM for data storage § Serial I/O for minimum pin count DS1302 8-Pin DIP (300-mil) § 2.0V to 5.5V full operation § Uses less than 300nA at 2.0V VCC2 1 8 VCC1 § Burst mode for reading/writing successive X1 2 7 SCLK addresses in clock/RAM § 8-pin DIP or optional 8-pin SOICs for
in „genauer TIMER“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1302.pdf
nonvolatile (NV) GND 4 5 RST RAM for data storage § Serial I/O for minimum pin count DS1302 8-Pin DIP (300-mil) § 2.0V to 5.5V full operation § Uses less than 300nA at 2.0V VCC2 1 8 VCC1 § Burst mode for reading/writing successive X1 2 7 SCLK addresses in clock/RAM § 8-pin DIP or optional 8-pin SOICs for
in „RTC DS 1302“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lt3580.pdf
Voltage Range: 2.5V to 32V TheLT3580hasanadjustableoscillator,setbyaresistor n Low V CESAT Switch: 300mV at 1.5A (Typical) n from the RT pin to ground. Additionally, the LT3580 can Integrated Soft-Start Function besynchronizedtoanexternalclock.Thefreerunningor n Easily Configurable as a Boost or Inverting
in „Switcher CAD III Simulation - Schaltungsfehler ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2312_ENG.pdf
rDSON 25 30 35 mÿ NMOS on-resistance 30 40 50 uA Battery input standby current ISTB VIN =0VÿVBAT =3.7V IL1 LED display driving current IL2 3 5 10 mA IL3 Thermal shutdown temperature TOTP rising temperature 110 135 150 ÿ Thermal shutdown recovery temperature TOTP drop temperature 70 85 100 ÿ V1.0 http://www.injoinic.com
in „LiIon-Akku in LED-Tischlampe vergrößern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2312_ENG.pdf
rDSON 25 30 35 mÿ NMOS on-resistance 30 40 50 uA Battery input standby current ISTB VIN =0VÿVBAT =3.7V IL1 LED display driving current IL2 3 5 10 mA IL3 Thermal shutdown temperature TOTP rising temperature 110 135 150 ÿ Thermal shutdown recovery temperature TOTP drop temperature 70 85 100 ÿ V1.0 http://www.injoinic.com
in „Suche Schaltplan zu Laderegler IP2312“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
dac8512.pdf
2.4 V Input Leakage Current IIL 10 A SUPPLY CHARACTERISTICS Positive Supply Current IDD VIH= 2.4 V, IL= 0.8 V, No Load 1.5 2.5 mA V = 5 V, V = 0 V, No Load 0.5 1 mA DD IL Power Dissipation PDISS VIH= 2.4 V, IL= 0.8 V, No Load 7.5 12.5 mW VDD = 5 V, IL= 0 V, No Load 2.5 5 mW Power Supply Sensitivity PSS
in „µC soll Strom rausgeben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP41HVX1.pdf
Conditions Delay after TBORD — 10 20 µs device exits the reset state LV > V ) BOR Supply Current DDD — 45 300 µA Serial Interface Active, (Note 7) Write all 0’s to Volatile Wiper 0 (address 0h) V = 5.5V, CS = V , F = 5 MHz, L IL SCK V- = DGND — — 7 µA Serial Interface Inactive, V = 5.5V, SCK = V , CS = V ,
in „MCP41HVX READCMD falsch verstanden??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GL9540_ServiceManual.pdf
CcÈ Reference Mfr Part Number lffr s I 801-80400 Translstor s 2 801-75500 Traneletor Q2 2N4402 S 3 300-03030 Varfable QT,Q3 2N3903 s I 300-030s0 Variable' Resfstor R20,34, 35 RV205-208-100 s 1 300-20050 Reslstor R27 RVz05-208-500 S I Varfable Resfstor Rl7 RVl240W-100 Vfshay S 799-LLO76 Reelstor R33 L208
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PDF
74VCX163245.pdf
CL= 30 pF, V IH= VCC , IL= 0V 1.8 2.5 −0.25 Valley OL , A to B 1.8 3.3 −0.25 V 2.5 3.3 −0.6 VOLV Quiet Output Dynamic CL= 30 pF, V IH= VCC , IL= 0V 1.8 2.5 −0.6 Valley OL , B to A 1.8 3.3 −0.8 V 2.5 3.3 −0.8 VOHV Quiet Output Dynamic CL= 30 pF, V IH= VCC , IL= 0V 1.8 2.5 1.3 Valley OH , A to B 1.8 3.3 1.3 V 2.5 3.3 1.7 VOHV Quiet Output Dynamic CL= 30 pF, V IH= VCC , IL= 0V 1.8 2.5 1.7 Valley OH , B to A 1.8 3.3 2.0 V 2.5 3.3 2.0 Capacitance Symbol Parameter
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
isl78225.pdf
MODULATING VREF2 INPUT 11 FN7909.3 February 11, 2014 ISL78225 Operation Description IL1 + IL2 + IL3 Multiphase Power Conversion The technical challenges associated with producing a IL3 single-phase converter that is both cost-effective and thermally viable for high power applications have
in „Verdammtes Kompensationsnetzwerk“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS1337-DS1337C.pdf
Setup Time (Note 13) SU:DAT Standard mode 250 ns Rise Time of Both SDA and t Fast mode 20 + 0.1C B 300 ns SCL Signals (Note 14) R Standard mode 20 + 0.1C B 1000 Fall Time of Both SDA and t Fast mode 20 + 0.1C B 300 ns SCL Signals (Note 14) F Standard mode 20 + 0.1C B 300 Setup Time for STOP SU:STO Fast
in „[V] DALLAS RTCs : 10x DS1337S+ SO8 und 4x DS1337U+ 8 uSOP“ · Markt ·
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PDF
lmv7219.pdf
at the temperature extremes. Parameter Test Conditions Typ (1) Limit (2) Units VO Output Swing High IL= 4 mA, VCC −0.22 VCC −0.3 V ID= 500 mV VCC −0.4 V IL= 0.4 mA, VCC −0.02 V CC−0.05 min V ID= 500 mV V CC−0.15 Output Swing Low IL= −4 mA, 130 200 V ID= −500 mV 300 mV max IL= −0.4 mA, 15 50 V ID= −500
in „Operations verstärker als Komparator verschlechterung der Slewrate?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AT89C51.pdf
OH CC OH = -800 µA, VCC= 5V ±10% 2.4 V Output High-voltage VOH1 (Port 0 in External Bus Mode) OH = -300 µA 0.75 VCC V OH = -80 µA 0.9 VCC V IL Logical 0 Input Current (Ports 1,2,3) VIN 0.45V -50 µA Logical 1 to 0 Transition Current TL (Ports 1,2,3) VIN= 2V, VCC = 5V ±10% -650 µA I Input Leakage Current (Port 0, EA) 0.45 < V < V ±10 µA LI IN CC RRST Reset Pull-down Resistor 50 300 KΩ C Pin Capacitance Test Freq. = 1 MHz, T = 25°C 10 pF IO A Active Mode, 12 MHz 20 mA Power Supply Current Idle Mode, 12 MHz 5 mA CC (2) VCC = 6V 100 µA Power-down Mode VCC = 3V 40 µA Notes: 1. Under
in „Interner speicheraufbau eines 89C51 controllers“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DTZ_Logger_OPEN.ino
+= "&ul1="; Data += U_L1; Data += "&ul2="; Data += U_L2; Data += "&ul3="; Data += U_L3; Data += "&il1="; Data += I_L1; Data += "&il2="; Data += I_L2; Data += "&il3="; Data += I_L3; Data += "&frq="; Data += Frequency; Data += "&ip="; Data += WiFi.localIP().toString(); Data += "&dtzid="; sprintf(extractValue
in „Digitale Stromzähler auslesen und in DB speichern“ · Mikrocontroller und Digitale Elektronik ·
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TPS3820-50DBVRQ1G4.pdf
TYP MAX UNIT at VDD VDD = VIT−+ 0.2 V, DD = VIT–– 0.2 V 6 μs w Pulse width at MR VDD ≥ VIT−+ 0.2 V, IL= 0.3 × DD , IH= 0.7 × VDD 1 μs at WDI VDD ≥ VIT−+ 0.2 V, IL= 0.3 × DD , IH= 0.7 × VDD 100 ns 7.7 Switching Characteristics At R L 1 MΩ, C = 50LpF, and T = 25°C, Anless otherwise noted. PARAMETER TEST CONDITIONS MIN TYP MAX UNIT TPS3820-xx-Q1 V DD ≥ VIT− 0.2 V 112 200 300 ms tout Watchdog time out See Figure 1 TPS3823/4/8-xx-Q1 0.9 1.6 2.5 s TPS3820-xx-Q1 15 25 37 t Delay time V DD ≥ VIT− 0.2 V ms d TPS3823/4/5/8-xx-Q1 See Figure 1 120 200 300 V DD ≥ VIT− 0.2 V, MR to
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