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Sheet1.pdf
8U2U C S ' 1 2 3 4 5 6 7 83U3 C S' 1 2 3 4 5 6 7 8U4U4 C S ' 1 2 3 4 5 6 7 8U5U PIU107PB6 (XTAL1/TOSC1) PC5 (ADADC6CLPIU1019 VCC R3R33 D105105 V Q Q Q Q Q Q Q Q Q Q74HCT4094 V Q Q Q Q Q Q Q Q Q Q4HCT4094 V
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Sheet12.pdf
8U2U C S ' 1 2 3 4 5 6 7 83U3 C S' 1 2 3 4 5 6 7 8U4U4 C S ' 1 2 3 4 5 6 7 8U5U PIU107PB6 (XTAL1/TOSC1) PC5 (ADADC6CLPIU1019 VCC R3R33 D105105 V Q Q Q Q Q Q Q Q Q Q74HCT4094 V Q Q Q Q Q Q Q Q Q Q4HCT4094 V
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inhalt.pdf
ADC0802, ADC0803 S E M I C O N D U C T O R ADC0804 8-Bit P Compatible A/D Converters December 1993 Features Description • 80C48 and 80C80/85 Bus Compatible - No Interfacing The ADC0802 family are CMOS 8-Bit successive approxi-
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KS0713.pdf
to 3.6V, Ta = -40 to +85°C) Item Signal Symbol Min. Typ. Max. Unit Remark Address setup time RS tAS80 13 - - ns Address hold time tAH80 17 System cycle time RS tCY80 400 - - ns Pulse width (WR) RW_WR tPW80 (W) 55 - - ns Pulse width (RD) E_RD tPW80 (R) 125 - - ns Data setup time tDS80 35 DB7 - - ns Data hold time to tDH80 13 Read access time tACC80 - 125 Output disable time DB0 tOD80 10 - 90 ns C L= 100 pF 54 KS071 3 65 COM / 1 32 SEG DRIVER &
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UC1701.pdf
38 MP Specifications UC1701 X 65x132 STN Controller-Drivers AC C HARACTERISTICS CD tAS80 AH80 CS0 CS1 CSSA80 CY80 tCSH80 tPWR80,PWW80 HPW80 WR0 WR1 DS80 tDH80 Write D[7:0] t t ACC80 OD80 Read D[7:0] F IGURE11: Parallel Bus Timing Characteristics (for 8080 MCU) (2.5V
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AIO486.PDF
Anzahl Auflösung Font Speicher Puffer Seiten Hex Modus Farben Zeichen Min. Start 100 5E APA 256/256K 80x25 640x400 8x16 512K1 A0000 1 101 5F APA 256/256K 80x30 640x480 8x16 512K A0000 1 102 58/6A APA 16/256K 100x75 800x600 8x8 256K A0000 1 103 5C APA 256/256K 100x75 800x600 8x8 512K A0000 1 104 5D APA
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AIO486.PDF
Anzahl Auflösung Font Speicher Puffer Seiten Hex Modus Farben Zeichen Min. Start 100 5E APA 256/256K 80x25 640x400 8x16 512K1 A0000 1 101 5F APA 256/256K 80x30 640x480 8x16 512K A0000 1 102 58/6A APA 16/256K 100x75 800x600 8x8 256K A0000 1 103 5C APA 256/256K 100x75 800x600 8x8 512K A0000 1 104 5D APA
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TPS73133.pdf
50 TPS73133 0 0.01 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 −50 −25 0 25 50 75 100 125 VOUT (V) Temperature ( C) Figure 11. Figure 12. CURRENT LIMIT vs V IN CURRENT LIMIT vs TEMPERATURE 500 500 450 450 ) 400 ) 400 A A ( ( i 350 i 350 i i t t e 300 e 300 u u C 250 C 250 200 200 150 150 1.5 2.0 2.5 3.0 3.5 4.0 4.5
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PDF
DRV8711.pdf
DRV8711 DRV8711 SLVSC40H –JUNE 2013–REVISED MAY 2020 www.ti.com 6.8 Typical Characteristics 17.5 240 –40 C 25°C 17.0 200 85°C 160 A16.5 A m ( ( Q120 V M I 16.0 IV 80 15.5 –40 C 25°C 40 85°C 15.0 0 8 12 16 20 24 28 32 36 40 44 48 52 8 12 16 20 24 28 32 36 40 44 48 52 VVM (V) C005 VVM (V) C006 Figure 3. Operating
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PDF
Datasheet_DRV8711.pdf
DRV8711 DRV8711 SLVSC40H –JUNE 2013–REVISED MAY 2020 www.ti.com 6.8 Typical Characteristics 17.5 240 –40 C 25°C 17.0 200 85°C 160 A16.5 A m ( ( Q120 V M I 16.0 IV 80 15.5 –40 C 25°C 40 85°C 15.0 0 8 12 16 20 24 28 32 36 40 44 48 52 8 12 16 20 24 28 32 36 40 44 48 52 VVM (V) C005 VVM (V) C006 Figure 3. Operating
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pcm1716.pdf
Quantizer FIGURE 9. 8-Level Delta-Sigma Modulator. CLOCK JITTER 0 125 –20 120 –40 B 115 B –60 ( 110 ( g d –80 a 105 i R p –100 i 100 A a –120 y 95 D –140 90 –160 85 –180 80 0 1 2 3 4 5 6 7 8 0 100 200 300 400 500 600 Frequency (S ) Jitter (ps) FIGURE 10. Quantization Noise Spectrum. FIGURE 11. Jitter Sensitivity
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MC28G03G.pdf
voltage Vled - 5.0 VDC Current of LED ILED 0 120 mA Note 1. FLM,M,CL1,CL2,DISP,D0~D7. Note 2. Ta=25°C Note 3. Make certain you are grounded when handling LCM. 5.2 Environmental Absolute Maximum Ratings Storage Operating Item MIN. MAX. MIN. MAX. Remark Ambient Temperature -20°C 80°C -10°C 70°C Note1,2
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PDF
ISL6753.pdf
+ R1 CSD10060G 300 - 400 4.7k 13, 14 P4 5% Np 11, 12 RETURN VDC 7,8 C13 7,8 CR6 2512 0.1uF Ns CSD10060G 1 1 Q9 Q10 2 2 6, 7 R2 ZXTDB2M832 ZXTDB2M832 L1 4.7k 4 4 9, 10 2 PB2020.103 C18 + R28 5% 3 3 1,C 2512 1uF C19 C20 + C21
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upd65.pdf
output voltageOL[V] High-level output voltageOH [V] IOLvsV OL (KI/) (TA = 25 °C,VDD= 3.0V) 500 450 ] A 400 [ I 350 t e 300 u c u 250 t o 200 e e 150 - o 100 L 50 0 1 2 3 Low-level output voltageOL[V] Data Sheet U14380EJ2V0DS00 52 PD64A, 65 13. APPLIED CIRCUIT EXAMPLE Example of
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bq24725.pdf
ChargeCurrent()=0x0xxxH 54 60 66 mV V measure voltage drop across current ChargeCurrent()=0x1000H – 0x17C0H 80 90 100 mV OCP_RISE sensing resistor ChargeCurrent()=0x1800 H– 0x1FC0H 110 120 130 mV CHARGE UNDER CURRENT COMPARATOR (CHG_UCP) VUCP_FALL Charge undercurrent falling threshold VSRPfalling towardSRN
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_Elmos__981_03.pdf
Operation Conditions Description Condition Symbol Min Typ Max Unit Ambient temperature T -25 25 85 °C amb External storage capacitance4) C ST 270 330 1000 µF CSTquivalent series resistance R ESR,CST 0.1 1 Ω CSToltage capability V CST 35 V Parallel ceramic capacitance VST to GND C 80 100 120 nF CER,ST
in „Exposed Pad anschließen? (ATSAMD20E18A-MU und ELMOS E981.03)“ · Mikrocontroller und Digitale Elektronik ·
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4620.pdf
900h Bank 9 GPR FFh 9FFh = 1010 00h A00h Bank 10 GPR FFh AFFh B00h = 1011 Bank 11 00h GPR FFh BFFh C00h = 1100 Bank 12 00h GPR FFh CFFh = 1101 00h D00h Bank 13 GPR FFh DFFh = 1110 00h E00h Bank 14 GPR FFh EFFh F00h = 1111 00h GPR F7Fh Bank 15 F80h FFh SFR FFFh DS39626B-page 60 Preliminary 2004 Microchip
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tps2552.pdf
unless otherwise noted) PARAMETER TEST CONDITIONS (1) MIN TYP MAX UNIT POWER SWITCH DBV package, T J 25°C 85 95 DBV package, –40°C ≤T ≤J25°C 135 rDS(on)Static drain-source on-state resistance DRV package, J = 25°C 100 115 mΩ DRV package, –40°C ≤T ≤J05°C 140 DRV package, –40°C ≤T ≤125°C 150 J V = 6.5 V 1.1
in „Problem mit FSUSB30 als USB-Schalter“ · Mikrocontroller und Digitale Elektronik ·
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CW1051AL.pdf
Application Circuits For 5 cell connect in series(CMOS, Active H) P+ R6 R1 VC5 VDD C1 R2 VC4 C2 R3 C6 VC3 C3 CW1051 R4 VC2 C4 R5 VC1 C5 VSS CO P- Recommended parameter SYMBOL TYPICAL RANGE UNIT R1,R2,R3,R4,R5 1000 200~2000 R6 200 200~1000 C1,C2,C3,C4,C5 0.1 0.1~0.22 F C6 0.1 0.1
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Preisliste_2008-09_Stand_Aug08.pdf
150506 CapAnalogon,m2,2,7 G(5')ppp(5')G, trimethyliert ❄ 250 nmol 298,00 C300C105 191060 TransforMax EPI300 chemisch kompetente E. coli ❄ ❄ 10 x 50 μl 148,00 C32010 150501 CapAnalogon,G(5')ppp(5')G,unmethyliert ❄ 500 nmol 46,00 C400CH10 191310 CopyCutter EPI 400 chemisch kompetente E.coli ❄ ❄ 10 x 50 μl 129,00 C400EL10 191305 CopyCutter EPI 400 elektrokompetente E.coli ❄ ❄ 10 x 50 μl 169,00 C50110 150508 ARCA CapAnalogon,3'-O- Methyl-m7 G(5')ppp(5')m7 G ❄ 500 nmol 98,00 C61025 150505 CapAnalogon,m7G(5')ppp(5
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AN50005.pdf
13 September 2021 8 / 41 Nexperia AN50005 Paralleling power MOSFETs in high power applications V DS ID VGS(pl) V GS(th) VGS Q GS2 Q GS1 Q Q GS GD Q G(tot) 003aaa508 Fig. 7. Gate charge waveform definitions The total spread, as per data sheet, isG(tot) 39 nC or ∆QG(tot),rel40 %. In order to introduce
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PDF
ucc37324.pdf
(RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) UCC37323DG4 ACTIVE SOIC D 8 75 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) UCC37323DGN ACTIVE MSOP- DGN 8 80 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM Power no Sb/Br) PAD UCC37323DGNG4
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PDF
LM1815.pdf
Order Number LM1815M or LM1815N See NS Package Number M14A or N14A © 2005 National Semiconductor CorpoDS007893 www.national.com 5 8 1 Absolute Maximum Ratings (Note 1) Storage Temperature Range −65˚C ≤ TJ ≤ +150˚C M Junction Temperature +150˚C L If Military/Aerospace specified devices are required, please
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PDF
LM1815.pdf
Order Number LM1815M or LM1815N See NS Package Number M14A or N14A © 2005 National Semiconductor CorpoDS007893 www.national.com 5 8 1 Absolute Maximum Ratings (Note 1) Storage Temperature Range −65˚C ≤ TJ ≤ +150˚C M Junction Temperature +150˚C L If Military/Aerospace specified devices are required, please
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ST7567A_V1.2a.pdf
VSS1 VSS1 VDD3 VDD2 d l VDD2 VDD2 VDD1 o VDD1 D7 VSSL D6 G D5 D4 D3 D2 D1 (1805.5,-72.) D0 VDDH ERD 80 SEG128 232 233 RW R 20 SEG130 234 235 A0 236 SEG131 RSTB C OM1 238 23 COM3 VDDH 15 15 C OM5 23 COM 7 2 CSB 1 CL 244 24 20 80 COM21 246 24 2 CO M23 8 15 2 10 22 6S1 10 MM MM CC CC Figure 1 Chip Outline
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AR0130_DS_D.pdf
QuantumEfficiency–MonochromeSensor 90 80 ) 70 ( y n 60 c f E 50 u n u Q 40 30 20 10 0 350 450 550 650 750 850 950 1050 1150 Wavelength (nm) PDF:1596224327/Source:6660323313 . AR0130DS -Rev.DPub.3/12EN 34 ©2011AptinaImagingCorporation.Allrightsreserved
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LTC3490.pdf
(°C) VCTRL IN(V) VIN(V) 3490 G03 3490 G01 3490 G02 3490fa 3 LTC3490 W U TYPICAL PERFOR A CE CHARACTERISTICS ILED vs VLED Efficiency vs LED 360 100 358 VIN= 2.4V 90 VIN= 2.4V 356 80 354 70 VIN= 1.2V ( A352 C 60 D350 E 50 I348 I 40 E 346 30 344 20 342 10 340 0 2.8 3 3.2 3.4 3.6 3.8 4 0 100 200 300 400 V LED(V) LED (mA) 3490 G04 3490 G05 U U U PI FU CTIO S CELLS (Pin 1): A logic input to set the low-battery
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rd70hvf1c.pdf
120 6 c P 100 O ) T 80 ( 4 A d I 60 I S D L 40 2 E N 20 A C 0 0 0 40 80 120 160 200 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 AMBIENT TEMPERATURE Ta(°C) Vgs(V) Vds vs. Ciss CHARACTERISTICS Vds-Ids CHARACTERISTICS
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mp2307.pdf
Analog IC Technology” are Registered Trademarks of Monolithic Power Systems, Inc. TYPICAL APPLICATION C5 10nF Efficiency vs INPUT Load Current 4.75V to 23V 100 VIN= 5V 95 V = 12V 2 1 90 IN 7 IN BS 3 OUTPUT % 85 EN SW 3.3V Y MP2307 3A C 80 VIN= 23V 8 SS FB 5 I 75 GND COMP I 70 4 6 F E 65 3.9nF 60 55 500.1
in „Spannungsregelung mit MP1584 und MP2307“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mp2307.pdf
Analog IC Technology” are Registered Trademarks of Monolithic Power Systems, Inc. TYPICAL APPLICATION C5 10nF Efficiency vs INPUT Load Current 4.75V to 23V 100 VIN= 5V 95 V = 12V 2 1 90 IN 7 IN BS 3 OUTPUT % 85 EN SW 3.3V Y MP2307 3A C 80 VIN= 23V 8 SS FB 5 I 75 GND COMP I 70 4 6 F E 65 3.9nF 60 55 500.1
in „Step Down - Stabil 5V 3A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mp2307.pdf
Analog IC Technology” are Registered Trademarks of Monolithic Power Systems, Inc. TYPICAL APPLICATION C5 10nF Efficiency vs INPUT Load Current 4.75V to 23V 100 VIN= 5V 95 V = 12V 2 1 90 IN 7 IN BS 3 OUTPUT % 85 EN SW 3.3V Y MP2307 3A C 80 VIN= 23V 8 SS FB 5 I 75 GND COMP I 70 4 6 F E 65 3.9nF 60 55 500.1
in „Empfehlung Step Down Converter IC“ · Analoge Elektronik und Schaltungstechnik ·
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preis2024.pdf
Fluke 8060 A Digitalmultimeter ISO 56,70 6208 Fluke 8062 A Digitalmultimeter ISO 56,70 6209 Fluke 80i-1010 Strommesszange ISO 56,70 6212 Fluke 80i-400 Strommesszange ISO 56,70 6210 Fluke 80i-410 Strommesszange ISO 56,70 6211 Fluke 80i-500s AC Current Probe ISO 56,70 8086 Fluke 80i1000s AC-Stromzange ISO 56,70 7673 Fluke 80k-40 HV-Probe ISO 47,05 6213 58 Calpro • Losserstr. 4 • 48527 Nordhorn • T 05921-723100 • u 05921-723101 C ALPRO Kalibrierpreisliste 2024 Hersteller Typ Bezeichnung Art Preis [c] Art.Nr. Fluke 80k-6 HV-Probe
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bq24618.pdf
conduction loss. Usually MOSFET r increases by 50% with a 100ºC junction DS(on) temperature rise. The second term represents the switching loss. The MOSFET turnon and turnoff times are given by: Q SW Q SW on = , off = on Ioff where • Qsw is the switching charge.
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PDF
MAX186-MAX188.pdf
Input Capacitance (Note 6) 16 pF INTERNAL REFERENCE (MAX186 only, reference buffer enabled) T = +25°C VREF Output Voltage A 4.076 4.096 4.116 V VREF Short-Circuit Current 30 mA MAX186_C ±30 ±50 MAX186A, MAX186B, VREF Tempco MAX186C MAX186_E ±30 ±60 ppm/°C MAX186_M ±30 ±80 MAX186D ±30 Load Regulation
in „Allgemeine Frage zu ADC Spezifikationen“ · Mikrocontroller und Digitale Elektronik ·
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39662c.pdf
displayed while they are occurring bit 0 Reserved: Write as 0 © 2008 Microchip Technology Inc. Preliminary DS39662C-page 9 ENC28J60 NOTES: DS39662C-page 10 Preliminary © 2008 Microchip Technology Inc. ENC28J60 3.0 MEMORY ORGANIZATION The Ethernet buffer contains transmit and receive memory used by the Ethernet
in „Webserver mit XC167“ · Mikrocontroller und Digitale Elektronik ·
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SL560.pdf
with frequency for 1dB gain compression (typical) SL560 TYPICAL APPLICATIONS +6V 1.8 50 10n TA= +25°C OUTPUT V = (a) 3V CC (b) 6V 3 4 5 1.6 (c) 9V 2 6 R (a) 10n W 1 8 7 V T1.4 U P INPUT 10n I (b) 1.2 (c) Gain 14dB Bandwidth 220MHz (P = 1mW, 50 ) OUT 200MHz (P OUT = 5mW, 50 ) 10 100 200 400 Input SWR
in „Vergleichstyp zu SL560C“ · Mikrocontroller und Digitale Elektronik ·
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VND830LSP.pdf
Iin=1mA 700 o Vcc=13V 7.6 b s600 Rl=6.5Ohm 7.4 500 7.2 - O 7 ) 400 6.8 ( s 300 6.6 c t 200 6.4 u 6.2 o d 100 6 -50 -25 0 25 r50 75 100 125 150 175 0 P Tc (°C) -50 -25 0 25 Tc (ºC)5 100 125 150 175 t e Figure 11. le Overvoltage shutdown Figure 12. Turn-off voltage slope
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PDF
pcm1796.pdf
signal Fast 20 + 0.1 B 300 ns Standard 20 + 0.1 B 1000 t(SDA-F) Fall time of SDA signal Fast 20 + 0.1 C 300 ns B Standard 4 µs t(P-SU) Setup time for stop condition Fast 600 ns C (B) Capacitive load for SDA and SCL line 400 pF t(SP) Pulse duration of suppressed spike Fast 50 ns V NH Noise margin at high
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PDF
ad420_datasheet.pdf
Units Parameter Label Limit Units Data Clock Period tCK 300 ns min Asynchronous Clock Period tACK 400 ns min Data Clock Low Time tCL 80 ns min Asynchronous Clock Low Time tACL 50 ns min Data Clock High Time tCH 80 ns min Asynchronous Clock High Time tACH 150 ns min Data Stable Width tDW 125 ns min Data
in „Suche AD420 in SMD Format“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MP2354DS.pdf
Voltage (VIN .........................4.75V to 23V Operating Temperature .............–40°C to +85°C (3) Thermal Resistance θ JA θJC SOIC8....................................105..... 50... °C/W Part Number* Package Temperature Notes: 1) Exceeding these ratings may damage the device. MP2354DS SOIC8 –40°C to +85°C 2) The device is not guaranteed to function outside of its For Tape & Reel, add suffix –Z (eg. MP2354DS–Z) operating conditions. *For Lead Free, add suffix –LF (eg. MP2354DS–LF–Z) 3) Measured
in „[S] Step Down Converter MP2354DS (für Fritzbox 7170)“ · Markt ·
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PDF
OP184_284_484.pdf
VOS 175 μV −40°C ≤T A +125°C 375 μV 1 OffsetVoltage, OP484E Grade VOS 150 μV −40°C ≤T A +125°C 300 μV OffsetVoltage, OP484F Grade1 V 250 μV OS −40°C ≤T A +125°C 500 μV Input Bias Current I 80 450 nA B −40°C ≤T A +125
in „Bestellbezeichnung OP184ESZ / OP184FSZ“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC57T01G.pdf
°C 5.5mA Frequency fL 40 (60) 80 kHz Ta=25°C Lamp Current IL 5.0 5.5 6.0 mA Ta=25°C Starting Voltage VS - (350) - Vrms Ta=0°C CCFL Life time - 10000 20000 - Hour Ta=25°C Note (1) Starting discharge voltage
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PDF
LCD_MC57T01G.pdf
°C 5.5mA Frequency fL 40 (60) 80 kHz Ta=25°C Lamp Current IL 5.0 5.5 6.0 mA Ta=25°C Starting Voltage VS - (350) - Vrms Ta=0°C CCFL Life time - 10000 20000 - Hour Ta=25°C Note (1) Starting discharge voltage
in „Farb LCD 320x240“ · Markt ·
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ver968de.pdf
nung und der Netzfrequenz übereinstimmen. Der Anschluss Beispiel für eine Netzanschlussspannung 3 AC 400 V, 50 Hz erfolgt dabei über sechs Schraubenverbindungen (Standardaus- (siehe Abbildung 2) Sternschaltung Dreieckschaltung 230 / 400 Vd / Y 14.5 / 8.5 A 400 / 690 V d / Y 8.5 / 4.9 A S1 4.0 KW cos v
in „Drehstromkompressor an 230V via FU“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
D15G14E_14_030526.pdf
(4) VCR ON V c1.25V, Io=|0.1|mA - 400 2400 Ω SEGn Ta=25°C COMn LCDpowersupplyoutput impedance(1) OUT 1/5 bias, C=1.0µF, - 200 400 Ω VOUT LCDpowersupplyoutput impedance(2) V2 Ta=25°C - 2000 4000 Ω V2 LCDpowersupplyoutput
in „Nokia LCD 3510“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DATASHEET_ADG333A-AD-EN.pdf
IINLor INH ±0.005 µA typ V IN0 V or V DD ±0.5 µA max DYNAMIC CHARACTERISTICS 2 tON 90 ns typ R L 300 Ω, C L 35 pF; 175 ns max V S ±10 V; Figure 17 tOFF 80 ns typ R L 300 Ω, C L 35 pF; 145 ns max V S ±10 V; Figure 17 Break-Before-Make Delay, t OPEN 10 ns min R L 300 Ω, C L 35 pF; V S +5 V; Figure 18 Charge
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LP3947.pdf
Maximum Ratings results from substituting the Absolute Maximum junction temperatJre, 150˚CA for T , 80˚C fJA T , and 37˚C/W for θ . More power can be dissipated safely at ambient temperatures below 80˚C. Less power can be dissipated safely at ambient temperatures above 80˚C. The Absolute Maximum power
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PDF
tinyswitchvb.pdf
j Note 6 di/dt = 80 mA/µs TNY255 255 280 310 T j 25 °C Initial Current See Figure 17 0.65 x Limit INIT Tj= 25 °C LIMIT(MIN) mA TNY253 Leading Edge t Tj= 25 °C TNY254 170 240 ns Blanking Time LEB TNY255 170 215 T = 25 °C
in „Konstanstrom aus Netsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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version_1p3_assembler.lst
R5,R1B0 ;BYTE TO OUTPUT 3228: 0C73 80 07 SJMP SQ 3229: ; 3230: 0C75 B4 AA 09 SP8: CJNE A,#T_CR,SX 3231: 0C78 D1 D7 ACALL GCI1 ;EAT THE TOKEN 3232: 0C7A 7D 0D MOV R5,#CR 3233: ; 3234: 0C7C 12 07 11 SQ: CALL TEROT 3235: 0C7F 80 BE SJMP
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slyt309.pdf
Figure 4. When VL1a Q1 is on, energy is being stored in L1a from (V < V ) VIN the input and in L1b from C . When Q1 turns IN OUT P off, L1a’s current continues to flow through VIN C Pand D1, and into C OUT and the load. Both VL1a C and C get recharged so that they can (V > V ) VOUT OUT P IN OUT provide the
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