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NLAS325(2002) データシートの表示(PDF) - ON Semiconductor

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NLAS325
(Rev.:2002)
ON-Semiconductor
ON Semiconductor ON-Semiconductor
NLAS325 Datasheet PDF : 12 Pages
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NLAS325
AC ELECTRICAL CHARACTERISTICS (Input tr = tf = 3.0 ns)
Guaranteed Maximum Limit
Symbol
Parameter
Test Conditions
VCC VIS *55_C to 25_C
t85_C
t125_C
(V) (V) Min Typ* Max Min Max Min Max Unit
tON
Turn–On Time
(Figures 11 and 12)
RL = 300 W, CL = 35 pF 2.5 2.0 5 23 35 5 38 5 41 ns
(Figures 4 and 5)
3.0 2.0 5 16 24 5 27 5 30
4.5 3.0 2 11 16 2 19 2 22
5.5 3.0 2 9 14 2 17 2 20
tOFF
Turn–Off Time
(Figures 11 and 12)
RL = 300 W, CL = 35 pF 2.5 2.0 1
(Figures 4 and 5)
3.0 2.0 1
4.5 3.0 1
5.5 3.0 1
7 12 1 15 1 18 ns
5 10 1 13 1 16
4
6
1
9
1 12
3
5
1
8
1 11
tBBM
Minimum Break–Before–Make VIS = 3.0 V (Figure 3)
2.5 2.0 1 12
1
1
ns
Time
RL = 300 W, CL = 35 pF 3.0 2.0 1 11
1
1
4.5 3.0 1 6
1
1
5.5 3.0 1 5
1
1
*Typical Characteristics are at 25_C.
CIN
CNO or CNC
CCOM
C(ON)
Maximum Input Capacitance, Select Input
Analog I/O (switch off)
Common I/O (switch off)
Feedthrough (switch on)
Typical @ 25, VCC = 5.0 V
8
pF
10
10
20
ADDITIONAL APPLICATION CHARACTERISTICS (Voltages Referenced to GND Unless Noted)
Symbol
BW
Parameter
Maximum On–Channel –3dB
Bandwidth or Minimum Frequency
Response (Figure 10)
Condition
VIN = 0 dBm
VIN centered between VCC and GND
(Figure 6)
VONL
Maximum Feedthrough On Loss
VIN = 0 dBm @ 100 kHz to 50 MHz
VIN centered between VCC and GND
(Figure 6)
VISO
Off–Channel Isolation (Figure 9)
f = 100 kHz; VIS = 1 V RMS
VIN centered between VCC and GND
(Figure 6)
Q
THD
VCT
Charge Injection Select Input to
Common I/O (Figure 14)
Total Harmonic Distortion THD +
Noise (Figure 13)
Channel–to–Channel Crosstalk
VIN = VCC to GND, FIS = 20 kHz
tr = tf = 3 ns
RIS = 0 W, CL = 1000 pF
Q = CL * DVOUT
(Figure 7)
FIS = 20 Hz to 100 kHz, RL = Rgen = 600 W, CL = 50 pF
VIS = 5.0 VPP sine wave
f = 100 kHz; VIS = 1 V RMS
VIN centered between VCC and GND
(Figure 6)
VCC Typical
V
25°C Unit
3.0
145
MHz
4.5
170
5.5
175
3.0
*2
dB
4.5
*2
5.5
*2
3.0
*93
dB
4.5
*93
5.5
*93
pC
3.0
1.5
5.5
3.0
%
5.5
0.1
dB
5.5
*90
3.0
*90
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