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SXA2145686P2A Datasheet
Note: ( 1 ) VBR measured after It aoolied for 300 us.. It = sauare wave oulse or eauivalent. ( 2 ) VF = 3.5 Vmax.. IF = 100 Amos. ( 6.8 Volts thru 91 Volts l VF = 5.0 Vmax., F = 100 Amps. ( 100 Volts thru 440 Volts ) per l/2 square or equivalent sine wave PW = 8.3 ms, dutV c\tcle = 4 pulses per minute maximum.
SXA2145686P2A Price

Conventional Lig hting Common lo lo /d.p VF IR
Part No. Color Typ Min Typ IF Typ Max Typ Typ IF Max VR
LN536YAMY Amber Anode 800 300 300 10 2.0 2.8 590 30 10 10 5
LN536YKMY Amber Cathode 800 300 300 10 2.0 2.8 590 30 10 10 5
Unit cd d ca:d mA V V nm nm mA ccA V


SXA2145686P2A on stock

70C 10V 6V 500 _ 450 VGS:
E 60ri < E 400 10V
50c E 350 4V
0 300
8 400 4V 0 250
30C .: 200
200 l 3V 0 150 8 ioo o 3V
10C r - 50
0 10 20 30 40 50 60 70 80 90 100 VDS - Drain Source Voltage (Volts) Output Characteristics o 0 5 10 15 20 25 VDS - Drain Source Voltage (Volts) Saturation Characteristics
t+uu
18
16 < E 300 VDS-
14 I C 10V
12 g 10 Ij ID- o 1. 200 (-) l
8 8 o 250mA C a j|
C 4 o z 100mA 50mA - 100 C o o J
~ 0 1 2 3 4 5 6 7 8 9 10 VGs-Gate Source Voltage (Volts) Voltage Saturation Characteristics 0 1 2 3 4 5 6 7 8 9 10 VGs-Gate Source Voltage (Volts) Transfer Characteristics
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u- 100 E200,
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8 75 157 r
C L 0 10rj I
o 0s8 |
0 25 jI 5n l t
Coss i- | |
r f
0 10 20 30 40 50 VDs-Drain Source Voltage (Volts) Capacitance v drain-source voltage 0 100 200 300 400 500 ID- Drain Current (mA) Transconductance v drjin,_," * 1rL _ lJ


Data slicer DS2 can overcome this compromise once the signal level is high enough to enable its operation. DS2 is a "dB-below- peak" slicer. The peak detector charges rapidly to the peak value of each data pulse, and decays slowly in between data pulses (1:1000 ratio). The slicer trip point can be set from o t0 120 mV below this peak value with a resistor between RREF and THLD2. A threshold of 60 mV is the most common setting, which equates to "6 dB below peak" when RFAl and RFA2 are running a 50%-50% duty cycle. Slicing at the "6 dB-below-peak" point reduces the signal amplitude to data pulse-width variation, allowing a lower 3 dB filter bandwidth to be used for improved sensitivity.