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PDF
Heizleiterlegierungen-Handbuch-GER.pdf
800 900 1000 1100 1200 1300 C t 1,00 1,00 1,01 1,01 1,02 1,03 1,04 1,05 1,06 1,07 1,07 1,07 1,08 1,08 C t 1,00 1,00 1,01 1,01 1,02 1,03 1,04 1,05 1,06 1,07 1,07 1,07 1,08 1,08 Die Werte für KANTHAL DT erhält
in „Heizelement aus Widerstandsdraht herstellen.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MMBV432LT1-D_1_.pdf
E R N 50 E I F A O 350 P R C 30 U D f = 1.0 MHz F 250 I T = 25°C Q , 20 A T = 25°C T A C 150 f = 100 MHz 10 50 1 2 3 5 7 10 0 2 4 6 8 10 VR, REVERSE VOLTAGE (VOLTS) VR, REVERSE VOLTAGE (VOLTS) Figure 1. Diode Capacitance Figure 2. Figure of Merit versus Voltage
in „Bauteil identifizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8575.pdf
the Acrobat reader. white to force landscape pages to be ... 1 o P 9 , R i 9 l e p p a m S r w e 7 t t m h e o 1 n 6 u - t b r t s / O e x p SCL a n d e SDA r S 0 1 0 0 A2 A1 A0 1 A P07 P06 P05 P04 P03 P02 P01 P00A P17 P10 A P07 P00 A P17 P10 1 P o r R/W acknowledge acknowledge acknowledge acknowledge
in „Vieleeeele Eingänge, viele Ausgänge.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8575.pdf
the Acrobat reader. white to force landscape pages to be ... 1 o P 9 , R i 9 l e p p a m S r w e 7 t t m h e o 1 n 6 u - t b r t s / O e x p SCL a n d e SDA r S 0 1 0 0 A2 A1 A0 1 A P07 P06 P05 P04 P03 P02 P01 P00A P17 P10 A P07 P00 A P17 P10 1 P o r R/W acknowledge acknowledge acknowledge acknowledge
in „Lichtsteuerung über i2c - ULN2803A - S12-100“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MPX5700.pdf
Function: 4.5 V = V *(0.0012858*P+0.04) – Error 4.0 V = 5.0 Vdc S 3.5 Temperature = 0 to 85°C ) Typical t 3.0 p u 2.5 Maximum Minimum O 2.0 1.5 1.0 0.5 0 0 100 200 300 400 500 600 700 800 Differential Pressure (kPa) Figure 2. Output versus Pressure Differential Fluoro Silicone Stainless Steel Fluoro Silicone
in „Druckschalter Kompressorsteuerung für Weller Entlötstation WDD81V mit MPX5700 Drucksensor 0-7bar“ · Projekte & Code ·
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NUD4001.pdf
2. Vsensevs. Junction Temperature vs. External Resistor (Rext 1.200 0.500 ) 0.450 W1.000 ( 0.400 O T0.800 )0.350 P W S o0.300 I0.600 n D c0.250 R D0.200 E0.400 P O 0.150 P ,0.200 0.100 P 0.050 0.000 0.000 25 35 45 55 65 75 85 95 105 115 125 0 5 10 15 20 25 30 V (V) TA, AMBIENT TEMPERATURE (°C) in Figure
in „LED-Leuchtmittel reparieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bc559.pdf
Emitter–Base Voltage VEBO –5.0 Vdc Collector Current — Continuous I –100 mAdc C Total Device DissipatioA @ T = 25⋅C PD 625 mW Derate above 25⋅C 5.0 mW/⋅C Total Device Dissipation @ T = 25⋅C P 1.5 Watt C D Derate above 25⋅C 12 mW/⋅C Operating and Storage Junction T , T –55 to +150 ⋅C J stg Temperature Range
in „Transistorfrage: mit Masse 12V leiten?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Article_Linear_Power_MOSFETs.pdf
thermal grease cavities, etc.) ������ may cause a local decrease in thermal conductivity, or in Fig.4.AtT equals90 C,theIXTK22N100LFBSOAshowsitsSOApointat other words, an increase in local temperature, with “local” C VDSquals800VandI equalD0.3Awith240-Wcapability. meaning a specific spot on the die. Third
in „Stromsenke / el. Last“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD623.pdf
) – 0.15 +0.01 (+V S – 0.15 +0.01 (+V S – 0.15 V DYNAMIC RESPONSE Small Signal –3 dB Bandwidth G=1 800 800 800 kHz G=10 100 100 100 kHz G=100 10 10 10 kHz G=1000 2 2 2 kHz SlewRate 0.3 0.3 0.3 V/ s Settling Time to 0.01% V S+5 V G=1 Step Size: 3.5 V 30 30 30 s G=10 Step Size: 4 V, V CM=1.8 V 20 20 20
in „Op - Messbereich - Strom - ACS 750LCA-050“ · Mikrocontroller und Digitale Elektronik ·
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PDF
9x.23_light-power.pdf
devil to photograph: low (e.g., the PVI5033’s 5 A output would take some 5ms to light (so it doesn’t twirl), wait for it to stop jiggling (and in a favorable switch a classic power MOSFET like the IRF520N, with orientation), and (worst of all) its shiny surface reflects everything its total gate charge
in „Differenztastkopf 200Mhz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TOFC100-xx.pdf
with Fiber-Optic Connectors TOTX196 TORX196 Up to 1000 PCF (200/300) TOCP100Q - BTOCP100X - B DC to 6 800 ±55 5± 0.25 – 40 to 85 - (4) Up to 800 H PCF(200/230) CF-1071 Series (2) TOTX196 TORX198 Up to 1000 PCF (200/300) TOCP100Q - BTOCP100X - B DC to 6 800 ±55 5± 0.25 – 40 to 85 Up to 800 H PCF(200/230)
in „TosLink als einfacher Datenlink“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSA0089278.pdf
= 10ms 100 A current for unidirectional types Tj initialambT T Storage temperature range - 65 to + 175 ⋅C stg Tj Maximum junction temperature 150 ⋅C T L Maximum lead temperature for soldering during 10 s. 260 ⋅C Note 1 : For a surge greater than the maximum values
in „welche Diode ist das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
device_list_hilo_all03_v9-12.pdf
*Am29LV008B *Am29LV008T *Am29LV200B *Am29LV200T *Am29LV400B *Am29LV400T *Am29LV800B *Am29LV800T Am9864 <<ASAHI-KASEI>> AK28C64 <<ATMEL>> AT28C/HC64B AT28C010 AT28C04 AT28C1024 AT28C16/T/HC16/L AT28C17 AT28C256/HC256/L AT28C64
in „PROM programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S9018.pdf
,IB=1mA 0.5 V Base-emitter saturation voltage VBE(sat) C =10mA,IB=1mA 1.42 V Transition frequency fT VCE5V,IC=50mA,f=400MHz 800 MHz CLASSIFICATION OF h FE RANK D E F G H I J RANGE 28-45 39-60 54-80 72-108 97-146 132-198 180-270 A,Jun,2011 Typical Characteristics S9018 Static Characteristic h FE C 10
in „Suche Infos zum Eigenbau eines Dip Meter“ · HF, Funk und Felder ·
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PDF
STP15N80K5.pdf
states Symbol Parameter Test conditions Min. Typ. Max. Unit Drain-source breakdown V (BR)DSS D = 1 mA 800 V voltage (VGS= 0) Zero gate voltage drain VDS = 800 V 1 µA IDSS current (V = 0) GS VDS = 800 V, Tc=125 °C 50 µA I Gate body leakage current V = ± 20 V ±10 µA GSS (VDS = 0) GS V GS(th) Gate threshold
in „1500V 8A mit MOSFET schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
dfs06.pdf
B102 F(AV) 50 V, 100 V, 200 V, 400 V, 600 V, E3 suffix meets JESD 201 class 1A whisker test V RRM 800 V, 1000 V Polarity: as marked on body FSM 50 A R 5 μA VFat F = 1.0 A 1.1 V TJmax. 150 °C Package DFS Circuit configuration Quad MAXIMUM RATINGS (T = 25 °C Anless otherwise noted) PARAMETER
in „Miele Trockner ELP305 Ladekondensator defekt“ · Haus & Smart Home ·
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PDF
ZAD-11_.pdf
LO=+4 dBm LO=+7 dBm LO=+10 dBm LO=+4 dBm LO=+7 dBm LO=+10 dBm d9.0 70 ( )60 S d L8.0 (50 N O I7.0 T40 S L30 E6.0 O V I20 N5.0 C 10 4.0 0 0 400 800 1200 1600 2000 0 400 800 1200 1600 2000 FREQUENCY (MHz) FREQUENCY (MHz) ZAD-11+ ZAD-11+ L-I ISOLATION RF VSWR 100 6.0 90 LO=+4 dBm LO=+7 dBm LO=+10 dBm LO=+4 dBm LO=+7 dBm LO=+10 dBm ) 80 5.0 d 70 ( 60 4.0 O W T 50 S L 40 V3.0 O 30 I 20 2.0 10 0 1.0 0 400 800 1200 1600 2000 0 400 800 1200 1600 2000 FREQUENCY (MHz) FREQUENCY (MHz) ZAD-11+ ZAD-11+ LO VSWR IF VSWR 6.0 5.0 LO=+4 dBm LO=+7 dBm LO=+10 dBm LO=+4 dBm
in „Wie soll ich meinen Mixer halten?“ · HF, Funk und Felder ·
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PDF
Firmware_buglist_2.06.3.pdf
dotted line” or “off”. 12. In FFT mode “Full span” is higher than Nyquist (sample rate /2 ) Example: 800ns/DIV, sample rate is 200MSs, full span 125MHz. Easy to fix by enabling from 800ns/DIV to 20ns/DIV 1GSs sampling (when 4k memory or FFT enabled) 13. AC trigger indicator and line wrong. Set ch1, signal
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps2020_1_.pdf
IO(OUT)(2 A/div) V = 5 V I I I(IN) O(OUT) O(OUT) RL= 1.2 Ω TA= 25°C 0 100 200 300 400 500 600 700 800 900 1000 0 100 200 300 400 500 600 700 800 900 1000 t − Time − µs t − Time − µs Figure 18. 1.2-Ω Load Connected to an Enabled Figure 19. 1.2-Ω Load Connected to an Enabled TPS2022 Device TPS2023 Device
in „DC/DC als Sicherung für AT90USB <-> PC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet__HIG__-_BTM41x_Modules-1590941.pdf
Centre: http://ews-support.lairdtech.com Email: wireless.support@lairdtech.com Phone: Americas: +1-800-492-2320 Option 2 Europe: +44-1628-858-940 Hong Kong: +852 2923 0610 Web: http://www.lairdtech.com/bluetooth Embedded Wireless Solutions 23 Laird Technologies Support Center: Americas: +1-800-492-2320
in „[V] Bluetooth Module 2x BTM411 Class2 und 1xBTM331A“ · Markt ·
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PDF
LM2585.pdf
DS012515-12 DS012515-13 Connection Diagrams Bent, Staggered Leads Bent, Staggered Leads 5-Lead TO-220 (T) 5-Lead TO-220 (T) Top View Side View DS012515-14 DS012515-15 Order Number LM2585T-3.3, LM2585T-5.0, LM2585T-12 or LM2585T-ADJ See NS Package Number T05D 5-Lead TO-263 (S) 5-Lead TO-263 (S) Top View
in „12V + 12V = 24V ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BM3451-BYDMicroelectronics.pdf
voltage voltage voltage [DET1] [VREL1 [VDET2] [VREL2] [VOC1] [VOC2] [VSHORT] [VOVCC] [VBAL] BM3451VJDC-T28A 4.300V 4.200V 2.500V 2.700V 0.100V 0.400V 0.800V -0.100V 4.120V BM3451SMDC-T28A 4.225V 4.125V 2.800V 3.000V 0.100V 0.400V 0.800V -0.100V 4.050V BM3451HEDC-T28A 3.850V 3.750V 2.000V 2.500V 0.100V 0.400V 0.800V -0.100V 3.590V BM3451VJDC-T20A 4.300V 4.200V 2.500V 2.700V 0.100V 0.400V 0.800V -0.100V - BM3451SMDC-T20A 4.225V 4.125V 2.800V 3.000V 0.100V 0.400V 0.800V -0.100V - BM3451HEDC-T20A 3.850V 3.750V 2.000V
in „ST µC Identifikation“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BM3451_BMS.pdf
voltage voltage voltage [DET1] [VREL1 [VDET2] [VREL2] [VOC1] [VOC2] [VSHORT] [VOVCC] [VBAL] BM3451VJDC-T28A 4.300V 4.200V 2.500V 2.700V 0.100V 0.400V 0.800V -0.100V 4.120V BM3451SMDC-T28A 4.225V 4.125V 2.800V 3.000V 0.100V 0.400V 0.800V -0.100V 4.050V BM3451HEDC-T28A 3.850V 3.750V 2.000V 2.500V 0.100V 0.400V 0.800V -0.100V 3.590V BM3451VJDC-T20A 4.300V 4.200V 2.500V 2.700V 0.100V 0.400V 0.800V -0.100V - BM3451SMDC-T20A 4.225V 4.125V 2.800V 3.000V 0.100V 0.400V 0.800V -0.100V - BM3451HEDC-T20A 3.850V 3.750V 2.000V
in „Balancer IC Li-Ionen Akku“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
78f9116.pdf
(T = -40 to +85 C,°V DD = 1.8 to 5.5 V) (i) Three-wire serial I/O mode (SCK20...Internal clock output) Parameter Symbol Conditions MIN. TYP. MAX. Unit SCK20 cycle time tCY1 VDD= 2.7 to 5.5 V 800 ns 3 200
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PDF
BSS138-D.PDF
1) 0.22 A – Pulsed 0.88 P Maximum Power Dissipation (Note 1) 0.36 W D Derate Above 25°C 2.8 mW/°C T , T Operating and Storage Junction Temperature Range J STG −55 to +150 °C T Maximum Lead Temperature for Soldering 300 °C L Purposes, 1/16” from Case for 10 Seconds Thermal Characteristics RθJA Thermal
in „Wer kann Helfen versehentlicher Kurzschluss. Wer kennt dieses Bauteil?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
hw_hmc5843_datasheet.pdf
Data Ready – Test Point 20 SDA Serial Data – I2C Master/Slave Data Table 1: Pin Configurations S D C T T L A L 1 0 P P 1 2 3 4 5 SDA 20 6 OFFP DRDY 19 7 OFFN Z AVDD 18 Y 8 NC AGND 17 9 SETP VREN 16 10 SETN X 15 14 13 12 11 V E 1 D V D T N D D C D D HMC5843 – bottom view www.honeywell.com 3 HMC5843 PACKAGE
in „HMC5843-eval“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MGA31189.pdf
°C -40°C )21.0 -14 d B i20.5 L-16 G I 20.0 -18 19.5 -20 19.0 -22 600 700 800 900 1000 1100 1200 600 700 800 900 1000 1100 1200 Frequency(MHz) Frequency(MHz) Figure18.GainvsFrequencyandTemperature Figure19.IRLvsFrequencyandTemperature -5 -26.0 -26.5 -10 -27.0 -15 ) ) d-27.5 ( n R-20 t-28.0 O s-28.5 -25 I 85°C -29.0 85°C -30 25°C 25°C -40°C -29.5 -40°C -35600 700 800 900 1000 1100 1200 -30.0600 700 800 900 1000 1100 1200 Frequency(MHz) Frequency(MHz) Figure20.ORLvsFrequencyandTemperature
in „RF-Amplifier ausserhalb von Spezifikation benutzen“ · HF, Funk und Felder ·
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PDF
maxim_481_483_491.pdf
Low (MAX481) B - A = 2V X SWITCHING CHARACTERISTICS—MAX483, MAX487/MAX488/MAX489 A (V = 5V ±5%, T = T to T , unless otherwise noted.) (Notes 1, 2) CC A MIN MAX M PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS – tPLH Figures 6 and 8, R = 54Ω, 250 800 2000 7 Driver Input to Output C = C = 100pFDIFF ns 8 tPHL L1 L2 250 800 2000 4 Driver Output Skew to Output t Figures 6 and 8,DIFF= 54Ω, 100 800 ns SKEW CL1= C L2= 100pF X A Driver Rise or Fall Time tR Ft Figures 6 and 8,DIFF= 54Ω, 250 2000 ns CL1= C L2=
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PDF
MAX485.pdf
Low (MAX481) B - A = 2V X SWITCHING CHARACTERISTICS—MAX483, MAX487/MAX488/MAX489 A (V = 5V ±5%, T = T to T , unless otherwise noted.) (Notes 1, 2) CC A MIN MAX M PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS – tPLH Figures 6 and 8, R = 54Ω, 250 800 2000 7 Driver Input to Output C = C = 100pFDIFF ns 8 tPHL L1 L2 250 800 2000 4 Driver Output Skew to Output t Figures 6 and 8,DIFF= 54Ω, 100 800 ns SKEW CL1= C L2= 100pF X A Driver Rise or Fall Time tR Ft Figures 6 and 8,DIFF= 54Ω, 250 2000 ns CL1= C L2=
in „Kommunikation mit PC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NSQA6V8AW5T2-D.pdf
Maximum T 260 °C NSQA12VAW5T2 SC−88A 3000/Tape & Reel 10 Seconds Duration L NSQA12VAW5T2G SC−88A 3000/Tape & Reel IEC ^1000−4−2 (ESD) Contact $8.0 kV (Pb−Free) Stresses exceeding Maximum Ratings may damage the
in „Suche: SMD Code 6H1, vermutlich 4-fach ESD Diode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1082.pdf
= 25°C LOAD POWDERED OR MOLY- 76 V = –20V 70 CURRENT IRON PERMALLOY IN 73 60 100mA T38 250 H T38 200 H ) 200mA T50 250 H T38 150 H % VIN= –40V H Y 70 ( 50 400mA T60 250 H T50 150 H N C 600mA T60 250 H T50 200 H I 67 E 40 I VIN= –60V Q 800mA T80 350 H T80 350 H E 64 R 30 1082 GA F 61
in „Boost Converter 2MHz 50V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM710.PDF
Input Offset Voltage R S 200 , V CM = 0V, TA = 25˚C 0.6 2.0 1.6 5.0 mV Input Offset Current V =1.4V, T = 25˚C 0.75 3.0 1.8 5.0 µA OUT A Input Bias Current TA = 25˚C 13 20 16 25 µA Voltage Gain TA = 25˚C 1250 1700 1000 1500 Output Resistance T = 25˚C 200 200 A Output Sink Current V OUT =0, TA =25˚C V IN
in „Hameg HM103-2 triggert nicht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
mso5202d.txt
device 0:10. Freeing init memory: 128K /etc/init.d/rcS: line 17: EmbedSky_wdg: not found insmod: can't read '/lib/cfbcopyarea.ko': No such file or directory insmod: can't read '/lib/cfbfillrect.ko': No such file or directory insmod: can't read '/lib/cfbimgblt.ko': No such file or directory insmod: can't
in „Tekway/Hantek/Voltcraft MSO“ · Mikrocontroller und Digitale Elektronik ·
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Datei
system_stm32f4xx.c
2 first functions listed above, since SystemCoreClock variable is updated automatically. */ uint32_t SystemCoreClock = 16000000; const uint8_t AHBPrescTable[16] = {0, 0, 0, 0, 0, 0, 0, 0, 1, 2, 3, 4, 6, 7, 8, 9}; const uint8_t APBPrescTable[8] = {0, 0, 0, 0, 1, 2, 3, 4}; /** * @} */ /** @addtogroup
in „STM32 Clock Configuration“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD8544_1.pdf
connected together. R0 to R47 LCD row driver outputs LCD1 LCD2 C0 to C83 LCD column driver outputs 6.1.6 T1, T2, T3 AND T4: TEST PADS VSS1, VSS2 ground T1, T3 and T4 must be connected to V SS , T2 is to be left VDD1 , DD2 supply voltage open. Not accessible to user. VLCD1, VLCD2 LCD supply voltage T1 test
in „(Dieser Beitrag wurde geloescht)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcd8544.pdf
connected together. R0 to R47 LCD row driver outputs LCD1 LCD2 C0 to C83 LCD column driver outputs 6.1.6 T1, T2, T3 AND T4: TEST PADS VSS1, VSS2 ground T1, T3 and T4 must be connected to V SS , T2 is to be left VDD1 , DD2 supply voltage open. Not accessible to user. VLCD1, VLCD2 LCD supply voltage T1 test
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PDF
PCD8544_1.pdf
connected together. R0 to R47 LCD row driver outputs LCD1 LCD2 C0 to C83 LCD column driver outputs 6.1.6 T1, T2, T3 AND T4: TEST PADS VSS1, VSS2 ground T1, T3 and T4 must be connected to V SS , T2 is to be left VDD1 , DD2 supply voltage open. Not accessible to user. VLCD1, VLCD2 LCD supply voltage T1 test
in „MSP430F2013 steuert Nokia-3310-Display an“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD8544_-_3310_Display_Controler.pdf
connected together. R0 to R47 LCD row driver outputs LCD1 LCD2 C0 to C83 LCD column driver outputs 6.1.6 T1, T2, T3 AND T4: TEST PADS VSS1, VSS2 ground T1, T3 and T4 must be connected to V SS , T2 is to be left VDD1 , DD2 supply voltage open. Not accessible to user. VLCD1, VLCD2 LCD supply voltage T1 test
in „Atmega8 Nokia 3310 Display und AVR-Studio“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5510LCD_datasheet.pdf
connected together. R0 to R47 LCD row driver outputs LCD1 LCD2 C0 to C83 LCD column driver outputs 6.1.6 T1, T2, T3 AND T4: TEST PADS VSS1, VSS2 ground T1, T3 and T4 must be connected to V SS , T2 is to be left VDD1 , DD2 supply voltage open. Not accessible to user. VLCD1, VLCD2 LCD supply voltage T1 test
in „Probleme mit Taktversorgung auf Steckbrett“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5510LCD_datasheet.pdf
connected together. R0 to R47 LCD row driver outputs LCD1 LCD2 C0 to C83 LCD column driver outputs 6.1.6 T1, T2, T3 AND T4: TEST PADS VSS1, VSS2 ground T1, T3 and T4 must be connected to V SS , T2 is to be left VDD1 , DD2 supply voltage open. Not accessible to user. VLCD1, VLCD2 LCD supply voltage T1 test
in „[PIC]Probleme bei SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD8544_-_3310_Display_Controler.pdf
connected together. R0 to R47 LCD row driver outputs LCD1 LCD2 C0 to C83 LCD column driver outputs 6.1.6 T1, T2, T3 AND T4: TEST PADS VSS1, VSS2 ground T1, T3 and T4 must be connected to V SS , T2 is to be left VDD1 , DD2 supply voltage open. Not accessible to user. VLCD1, VLCD2 LCD supply voltage T1 test
in „Display Nokia 5110“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5110.pdf
connected together. R0 to R47 LCD row driver outputs LCD1 LCD2 C0 to C83 LCD column driver outputs 6.1.6 T1, T2, T3 AND T4: TEST PADS VSS1, VSS2 ground T1, T3 and T4 must be connected to V SS , T2 is to be left VDD1 , DD2 supply voltage open. Not accessible to user. VLCD1, VLCD2 LCD supply voltage T1 test
in „Nokia 5110 ansteuern für newbie“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADNS2051.pdf
. HEIGHT 500 1.0 450 0.9 400 Y 0.8 V H350 Z S 0.7 N300 DOF N I DOF O0.6 E250 S P RECOMMENDED E 0.5 T200 OPERATING E 0.4 N150 REGION I U WHITE PAPER T 0.3 C100 MANILA FOLDER L 50 BURL FORMICA E 0.2 R 0 DARK WALNUT 0.1 BLACK COPY 0 -51.3 1.5 1.7 1.9 2.1 2.3 2.5 2.7 2.9 3.1 3.3 3.5 400 500 600 700 800
in „Maussensor ADNS 2051 Bild auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MS5611-01BA03.pdf
41 -4000 8500 TEMP =20°C+dT*TEMPSENS=2000+ dT *C6 /2 = 20.07 °C Calculate temperature c ompenensated pressure [3] OFF Offset at actual temperature signed int 64 41 -8589672450 12884705280 2420281617 OFF =OFF T1CO*dT =C2 *2 +(C4*dT)/2 7 Sensitivity at actual temperature SENS 15 8 signed int 64 41 -4294836225 6442352640 1315097036 SENS =SENS +T1S*dT=C1 * 2 +(C3 *dT)/ 2 Temperature compensated pressure (10…1200mbar with 100009 P
in „MSP430 Launchpad und MS5611 Sensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA5051A_-_PowerLine.pdf
Philips Semiconductors Product specification Home automation modem TDA5051A handbook, full pagewidth t t TX OUT W(burst) W(burst)(min) VO(DC) su h 0 tW(DI)(min) DATA W(DI) IN (1) (2) (3) MGK837 (1) t > t . W(DI) W(DI)(min) 1 (2) W(DI)(min)tsu+ f---- cr (3) W(DI)(min)tsu wrong operation. Fig.8 Relationship
in „Probleme mit PLC-Modem-Chip TDA5051“ · Haus & Smart Home ·
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PDF
TDA5051A.pdf
Philips Semiconductors Product specification Home automation modem TDA5051A handbook, full pagewidth t t TX OUT W(burst) W(burst)(min) VO(DC) su h 0 tW(DI)(min) DATA W(DI) IN (1) (2) (3) MGK837 (1) t > t . W(DI) W(DI)(min) 1 (2) W(DI)(min)tsu+ f---- cr (3) W(DI)(min)tsu wrong operation. Fig.8 Relationship
in „µC Kommunikation (Signale) über Gleichspannung modulieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
QEX_07-08-99.pdf
, 13" #18; 32: 8T, 12" #18; 25: 5T, 8.3" #18; 20: 4T, 7" #18 20: 4T, 5" #18 27T, 32" #20 24T, 29" #22 20T, 26" #20 16T, 21" #18 16T,16" #20 L2 (µH), F2 (MHz) 14.17, 3.60 4.72, 7.085 4.596, 14.287 2.11, 21.1 0.9228, 28.84 XL (Ω) @ F2 (MHz), Qu 321, 210 210, 240 413, 80 280, 150 167, 200 Core (Color) & A L T94-2 (Red), 8.4 T94-6 (Yel), 7.0 T94-6 (Yel), 7.0 T94-17 (Blu/Yel), 2.9 T80-17 (Blu/Yel), 2.2 Turns, Length & AWG 40T, 45", #22 26T, 29", #20 24T, 28" #21 25T, 29", #20 18T, 20" #18 L3 (µH), F3 (MHz)
in „Suche Infos zum Eigenbau Preselector“ · HF, Funk und Felder ·
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Datei
tft-lcd-controller-Overview-OpenCores.html
name TX18D16VM1CAA <br> - Effective Display Area (H)152.4 x (V)91.44 [mm] <br> - Display Dots (H)(800x3) x (V)480 [dots] <br> - (Display Pixels) (H 800 x V 480) [pixels] <br> - Pixel Pitch (H)0.1905 x (V)0.1905 [mm] <br> - Color Pixel Arrangement R+G+B Vertical Stripe <br> - Display Mode Transmissive
in „Universal LCD+Input Modul mit MachXO2“ · FPGA, VHDL & Co. ·
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PDF
C5353-Toshiba.pdf
Excellent switching times: tr= 0.7 μs (max), f = 0.5 μs (max) • High collectors breakdown voltage: V CEO = 800 V Absolute Maximum Ratings (Tc = 25°C) Characteristics Symbol Rating Unit Collector-base voltage V 900 V CBO Collector-emitter voltage VCEO 800 V Emitter-base voltage VEBO 7 V DC C 3 Collector current
in „WAN NIEN Netzteil Bauteilkunde :)“ · Analoge Elektronik und Schaltungstechnik ·
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stth20002tv.pdf
CHARACTERISTICS (per diode) Symbol Parameter Test conditions Min. Typ Max. Unit R * Reverse leakage current T j 25°C V R V RRM 100 µA Tj= 125°C 80 800 VF** Forward voltage drop Tj= 25°C IF= 100A 1.05 V IF= 200A 1.20 Tj= 150°C IF= 100A 0.75 0.85 IF= 200A 1.05 Pulse test: * tp = 5δm< 2% ** tp = 38δ < 2% 2 To evaluate
in „Warum mehrere Dioden parallel“ · Analoge Elektronik und Schaltungstechnik ·