.............................70 cd/LED typ. 2.0 V LED to LED Intensity Matching ...........1.8:1.0 max. A0, A1 0.8 V LED to LED Hue Matching at V =5 V CC TAS TAH (Green only) ..................................... 2 nm max. Note 1: Peak luminous intensity values can be calculated 2.0 V D0-D6 0.8 V by
Soldering Tips for WP 80, WSP 80, FE 75 and MPR 80 Order No. Model Description Width A Thickness B max.LengthL Price (€) 005 44 494 99 LT 1SC Chisel tip, single packaged 0,4 mm 0,15 mm 15,0 mm 4,25 005 44 494 00 LT 1SC Chisel tip, bulk 0,4 mm 0,15 mm 15,0 mm 3,95 005 44 437 99 LT H Chisel tip, single
T S - -40~+85 oC •Electrical and optical characteristics (T =25 C) o c Parameter Symbol Min. Typ. Max. Unit Conditions Peak wavelength λ 630 635 640 nm Po=5mW Threshold current Ith - 24 30 mA Operating current Iop - 33 40 mA Po=5mW Operating voltage Vop - 2.2 2.5 V Po=5mW η Differential efficiency 0.4
Given Parameters: V = Regulated Output Voltage (3.3 V, 5.0 V, 12 V or 15 V) V = 5.0 V out out V in(max)= Maximum Input Voltage Vin(max)= 15 V ILoad(max) = Maximum Load Current Load(max) = 3.0 A 1. Controller IC Selection 1. Controller IC Selection According to the required input voltage, output voltage
Given Parameters: V = Regulated Output Voltage (3.3 V, 5.0 V, 12 V or 15 V) V = 5.0 V out out V in(max)= Maximum Input Voltage Vin(max)= 15 V ILoad(max) = Maximum Load Current Load(max) = 3.0 A 1. Controller IC Selection 1. Controller IC Selection According to the required input voltage, output voltage
electrical characteristics (terminals 1 and 3 short circuited) Symbol Parameter Test conditions Min. Typ. Max. Unit I(1) Reverse leakage current Tj= 25 °C V = 70 V 5 µA R T = 125 °C R 5 mA j Tj= 25 °C 10 40 µA V R 100 V Tj= 125 °C 10 40 mA Tj= 25 °C I = 5 A 550 T = 125 °C F 455 j Tj= 25 °C 660 730 V F(2) Forward
Megafunctions in this data book or go to the Altera world- wide web site at http://www.altera.com. 660 Altera Corporation MAX+PLUS II Programmable Logic Development System & Software Data Sheet OpenCore Feature MegaCoreorAMPPmegafunctionscanbepreviewedbeforelicensingvia the MAX+PLUS II OpenCore feature
Operating Storage Type No. Window size active area voltage dissipation temperature temperature 1 V R Max. P Topr Tstg material * (mm) (mm) (mm )2 (V) (mW) (°C) (°C) S5971 φ1.2 1.1 S5972 ➀ /K φ0.8 0.5 S5973 TO-18 20 50 -40 to +100 -55 to +125 S5973-01 ➁/L φ0.4 0.12 S5973-02 ➂ /K Electrical and optical characteristics
Version:2.0 Electrical Optical Characteristics (Tc=25°C) Parameter Symbol Condition Emitting Min. Typ. Max. Units color S — 4450 — Luminous Flux φv lm W — 6300 — S 33 35 37 Forward Voltage Vf V W 33 35 37 If=1800mA S 2600 2670 2740 Correlated Colour CCT K Temperature W 6600 6900 7200 S — 115 — Viewing Angle
to ensure crimped contact formation is consistent. Rev G2 5 of 11 114-2025 Up and Down Alignment 3° Max Datum Line 3° Max Side-to-Side Alignment 3° Max Datum Line 3° Max Figure 4 3.5. TensileInspection Crimped contacts should hold the wire firmly and have a pull-test tensile value meeting the values given
(F = 20 mA, t p 20 ms) Centroid Wavelength (typ. 940 (±10) nm centroid (F = 20 mA, t p 20 ms) (max.)) Spectral bandwidth at 50% of I max (typ.) 42 nm (F = 20 mA, t p 20 ms) Half angle (typ.) ± 60 ° Rise and fall time of e (typ.) tr f 16 ns (10% and 90% of I ) e max (F = 100 mA, t p 16 µs,
(F = 20 mA, t p 20 ms) Centroid Wavelength (typ. 940 (±10) nm centroid (F = 20 mA, t p 20 ms) (max.)) Spectral bandwidth at 50% of I max (typ.) 42 nm (F = 20 mA, t p 20 ms) Half angle (typ.) ± 60 ° Rise and fall time of e (typ.) tr f 16 ns (10% and 90% of I ) e max (F = 100 mA, t p 16 µs,
Equation 12, which are given in Equation 13 and Equation 14: V CM (MIN) AVSS + 0.2 V + ½ Gain · IN (MAX) (13) V CM (MAX) AVDD – 0.2 V – ½ Gain · VIN (MAX) (14) In order to calculate the minimum and maximum common-mode voltage limits, the maximum differential input voltage (VIN (MAX) that occurs in the
hmmmm... http://de.wikipedia.org/wiki/Redox-Flow-Batterie max 50Wh/l Elektrolyt Nehmen wir mal 1kg/l und sehr sparsame 5kWh/100km: 1kg Elektrolyt pro km Reichweite.
Fisker hat seine Autos für 77.000 bis 100.000 USD verkauft und die Firma hatte umgerechnet Kosten von 660.000 USD pro verkauftem Fahrzeug!
C and 130 °C stamped on in white Short response times UL approval for Tref130 °C to UL 1434 with V max= 220 V and VR= 220 V (file number E69802) UL approval for Tref120 °C to UL 1434 with Dimensions (mm) V max= 230 V and VR= 220 V Type Tref wmax h max ∅d (file number E69802) °C UL approval for Tref80
100 A 2.0 V 4 AT28BV16 AT28BV16 AC Read Characteristics AT28BV16-25 AT28BV16-30 Symbol Parameter Min Max Min Max Units tACC Address to Output Delay 250 300 ns tCE(1) CE to Output Delay 250 300 ns (2) tOE OE to Output Delay 100 100 ns (3)(4) tDF CE or OE High to Output Float 0 55 0 55 ns t Output Hold from
intern verbauten Tüten sind mit 220 mAh > bedruckt, ich nenne das Betrug. Sei froh, dass nicht 660 draufstand.
itm/133623136478 Hast schon mal die Spannung nachgemessen? Wann hat ein LIPO 9V? Eine Zelle hat max Nennspannung von 3,8V auch mal nach Typ 3,7 V. Die mal 2 sind 7,4 oder 7,6V Nennspannung. Die Ladeschlußspannung 4,2 bzw 4,35V. Wo da jetzt die 9 V herkommen sollen ist mir ein Rätsel. Einfach nur
m S y m b o l Rated Values R e m a rk s H eater V oltage VH 5.0±0.2V AC or DC C ircuit Voltage VC Max. 24V AC or DC *PS 15mW Load Resistance RL Variable *PS 15mW Electrical Characteristics: Item Symbol Condition Specification Sensor Resistance Rs Ethanol at 300ppm/Air 1k ~ 10k Change Ratio of Rs (Ethanol
the optical path. The HOA1405 series .680(17.27 contains plastic molded components. For additional .660(16.76 component information see SEP8505 and SDP8405. .130(3.30) K .20(5.08) .120(3.05) A TESTSURFACE Housing material is polyester. Housings are soluble in .025(0.64) .610(15.49) .015(0.39) .590(14.97
the optical path. The HOA1405 series .680(17.27 contains plastic molded components. For additional .660(16.76 component information see SEP8505 and SDP8405. .130(3.30) K .20(5.08) .120(3.05) A TESTSURFACE Housing material is polyester. Housings are soluble in .025(0.64) .610(15.49) .015(0.39) .590(14.97
the optical path. The HOA1405 series .680(17.27 contains plastic molded components. For additional .660(16.76 component information see SEP8505 and SDP8405. .130(3.30) K .20(5.08) .120(3.05) A TESTSURFACE Housing material is polyester. Housings are soluble in .025(0.64) .610(15.49) .015(0.39) .590(14.97
Product specification NPN general purpose transistors BC546; BC547 FEATURES PINNING • Low current (max. 100 mA) PIN DESCRIPTION • Low voltage (max. 65 V). 1 emitter 2 base APPLICATIONS 3 collector • General purpose switching and amplification. DESCRIPTION handbook, 2alfpage 3 3 NPN transistor in a TO
Peter D. schrieb im Beitrag #5491842: > Die Kennlinien in den Datenblättern gehen > immer nur bis max 0V Gitterspannung. Es ist daher unsinnig, eine > spezielle Treiberstufe für Gitterstrombetrieb zu konstruieren. Sinnig ist es eine spezielle Treiberstufe gegen Gitterstrombetrieb zu konstruieren
meiner vorangegangenen Erläuterung hast du jetzt nicht verstanden? An g2 liegen fast 500 V statt der max. erlaubten 425 V an. Was daran ist jetzt innerhalb der Spezifikation? Der AÜ ist für die verwendete Ub mit 3,4k statt der 6,0k ebenfalls unpassend. > und es ein guter Verstärker werden soll Das
CD 4053 Für CD kann auch stehen HBF , HEF etc Betriebsspannungen dieser IC gehen von 5 Volt bis max 15 V Dreifach Umschslter bedeutet, daß hier 3 voneinander unabhägige Umschalter in einem Gehäuse vorhanden sind Ein Umschalter würde also hier eine Leitung Y zwischen den Anschlüssen Y 0 und
/3' und 5 1/3'). Laut Datenblatt sind Aliquoten unrein. a=220Hz * 1912 / 638 = 659,3 Hz statt 660. Schwebung 0,7 Hz. ais=220*1912/1804=233,17 Hz * 1804 / 602 = 698,74 Hz statt 699,51, Schwebung 0,77 Hz usw. Selbstverständlich keine Terzaliquoten, da sie nach solchem Prinzip völlig unbrauchbar
ist jedoch eine Quarzfrequenz von 12 MHZ nötig. Das kommt in etwa hin, bei 10,7 MHz wäre ich auf max. 7 kHz gekommen, hab mich dann aber auf 6 kHz beschränkt. Für 8 kHz Bandbreite würde ich lieber ein Filter zukaufen, zumal bei meinen 10,7 MHz verfügbar. Die Schmalband-FM-Filter sind leider schon zu
der AD9834 (c) läuft nun auch mit 75MHz Quarzoszillator, damit liegt dann die Ausgangsfrequenz bei max. 30 Mhz. Zwei Module habe ich am laufen. - http://www.qrpforum.de/index.php?page=Thread&threadID=6976
// start by showing upper left of big bitmap or centering if the display is big int16_t xf = max(0, (mw - bitmapSize) / 2) << 4; int16_t yf = max(0, (mh - bitmapSize) / 2) << 4; // scroll speed in 1/16th int16_t xfc = 6; int16_t yfc = 3; // scroll down and right by moving upper left
// start by showing upper left of big bitmap or centering if the display is big int16_t xf = max(0, (MW - bitmapSize) / 2) << 4; int16_t yf = max(0, (MH - bitmapSize) / 2) << 4; // scroll speed in 1/16th int16_t xfc = 6; int16_t yfc = 3; // scroll down and right by moving upper left
PROTRUSION 0.15 (0.006). 8 5. ALLVERTICAL SURFACES 5˚TYPICAL DRAFT. 1 INCHES MILLIMETERS S DIM MIN MAX MIN MAX A 0.415 0.425 10.54 10.79 B 0.415 0.425 10.54 10.79 C 0.212 0.230 5.38 5.84 N D 0.038 0.042 0.96 1.07 G 0.100 BSC 2.54 BSC H 0.002 0.010 0.05 0.25 H J 0.009 0.011 0.23 0.28 C K 0.061 0.071 1.55
NCP1397A/B, NCV1397A/B ELECTRICAL CHARACTERISTICS (continued) (For typical values T = 25°C, for min/max values T = −40°C to +125°C, Max T = 1= 12 V unless otherwise noted) J J J CC Symbol Rating Pin Min Typ Max Unit TIMERS I Timer capacitor charge current during feedback fault or when 3 150 175 190 mA
given voltage, and a maximum current available, it is easy to determine the maximum paper feed speed (MaxPFS), as indicated on the above chart. Then if the two others parameters are not limiting this speed this will also be the printing speed (MaxPS). MaxPFS gives a time (by inverting) called SLT (scanning
VAC breakdow3 Between open contact 350 Vrms (500 V DC) voltage* Between contact and coil 1,000 Vrms Max. switching power 33 VA, 20 W 4 Rating Max. switching voltage 110 V AC, 30 V DC Operate time* (at nominal voltage) Max. 3 ms (Approx. 1 ms) Release time(without diode)* 4 (resistive) Max. switching current
VAC breakdow3 Between open contact 350 Vrms (500 V DC) voltage* Between contact and coil 1,000 Vrms Max. switching power 33 VA, 20 W 4 Rating Max. switching voltage 110 V AC, 30 V DC Operate time* (at nominal voltage) Max. 3 ms (Approx. 1 ms) Release time(without diode)* 4 (resistive) Max. switching current
- ab 16. h ausbezahlt ohne Zuschlag, kein Freizeitausgleich möglich - geregelte Heimarbeit mögl., max. 8h/T abrechenbar - Reisezeit wird grundsätzlich nicht vergütet
Zusatzleist. : Gleitzeitkonto, Überstunden können abgebaut werden, Überstunden über Gleitzeitkonto Max Grenze werden mit 25% Zuschlag gezahlt, Kantine, VWL, Parkhaus, sehr flexible Arbeitszeiten (pos und neg)
. max. AC Characteristics Transition frequency f - 250 - MHz T IC = 10 mA, V CE = 5 V, f = 100 MHz Collector-base capacitance Ccb - 0.95 - pF V = 10 V, f = 1 MHz CB Emitter-base capacitance Ceb - 9 - VEB
Typ. Max. Units Conditions V Drain-to-Source Breakdown Voltage -55 ––– ––– V V = 0V, I = -250µA (BR)DSS GS D V (BR)DSST J Breakdown Voltage Temp. Coefficient ––– -52 ––– mV/°C Reference to 25°C, ID= -1mA ––
Thermal Data Symbol Parameter D PAK TO-220 TO-220FP TO-3 Unit R thj-casehermal Resistance Junction-case Max 3 3 5 4 °C/W Rthj-ambThermal Resistance Junction-ambienMax 62.5 50 60 35 °C/W Figure 2: Connection Diagram (top view) TO-220 TO-220FP 2 D PAK TO-3 2/18 L7900 SERIES Table 3: Order Codes 2 TO-220 TO-
1 mm apart from the package). 2. Recommended Operating Conditions Characteristics Symbol Min Typ. Max Unit Supply Voltage V 4.75 5.0 5.25 V CC High Level Input Voltage V IH 2.0 ― VCC V Low Level Input Voltage VIL 0 ― 0.8 V Handling precaution: The LEDs used in this product contain GaAs (Gallium Arsenide
to 85BC ELECTRO-OPTICAL CHARACTERISTICS : ( Ta = 25 BC ) TEST SYMBOL PARAMETER CONDITION MIN. TYP. MAX. UNIT VF Forward Voltage , Per Segment(DP)IF= 40mA 9.0(1.8) 11.0(2.2V IR Reverse Current , Per Segment(DP)RV=20 (10)V 100 mA lP Peak Emission Wavelength IF= 20mA 660 nm lD Dominant Wavelength IF= 20mA
minutes' application of rated voltage at 20°C TemperatureCharacteristics Z+105°C / Z+20°C 1.25 (100kHz) (Max.ImpedanceRatio) Z –55°C / Z+20°C 1.25 The specifications listed at right shall be met when the Capacitance change Within ± 20% of the initial capacitance va3)e ( tan δ 150% or less than the initial