ATF35143 Agilent(Hewlett-Packard), ATF35143 Datasheet - Page 2

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ATF35143

Manufacturer Part Number
ATF35143
Description
Low Noise Pseudomorphic HEMT in a Surface Mount Plastic Package
Manufacturer
Agilent(Hewlett-Packard)
Datasheet

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ATF-35143 Absolute Maximum Ratings
Notes:
6. Under large signal conditions, V
200
160
120
Figure 1. Typical Pulsed I-V Curves
(V
Figure 3. NF @ 2 GHz, 2 V, 15 mA.
LSL=0.2, Nominal=0.37, USL=0.7
120
100
80
40
Symbol
swing positive and the drain current may
exceed I
acceptable as long as the maximum P
and P
80
60
40
20
0
GS
P
0.2
0
P
T
V
T
0
V
V
in max
= -0.2 V per step)
I
STG
GD
DS
diss
DS
GS
CH
jc
-3 Std
in max
0.3
dss
. These conditions are
ratings are not exceeded.
2
0.4
NF (dB)
Drain - Source Voltage
Gate - Source Voltage
Gate Drain Voltage
Drain Current
Total Power Dissipation
RF Input Power
Channel Temperature
Storage Temperature
Thermal Resistance
V
+3 Std
DS
4
(V)
0.5
Parameter
0.6
6
+0.6 V
–0.6 V
GS
0 V
may
[2]
0.7
diss
8
[6]
Cpk = 3.7
Std = 0.03
.
[2]
[5]
[2]
7. Distribution data sample size is 450
[2]
[4]
samples taken from 9 different wafers.
Future wafers allocated to this product
may have nominal values anywhere
within the upper and lower spec limits.
Product Consistency Distribution Charts
Units
dBm
mW
mA
C/W
V
V
V
C
C
120
100
[1]
160
120
Figure 2. OIP3 @ 2 GHz, 2 V, 15 mA.
LSL=19.0, Nominal=20.9, USL=23.0
80
60
40
20
Figure 4. Gain @ 2 GHz, 2 V, 15 mA.
LSL=16.5, Nominal=18.0, USL=19.5
80
40
0
0
19
16
2
-3 Std
Maximum
Absolute
-65 to 160
20
17
I
dss
300
160
310
5.5
14
-5
-5
-3 Std
OIP3 (dBm)
[3]
GAIN (dB)
21
18
+3 Std
22
+3 Std
19
Notes:
1. Operation of this device above any one
2. Assumes DC quiesent conditions.
3. V
4. Source lead temperature is 25 C.
5. Thermal resistance measured using
8.
23
of these parameters may cause
permanent damage.
Derate 3.2 mW/ C for T
150 C Liquid Crystal Measurement
method.
Measurements made on production test
board. This circuit represents a trade-off
between an optimal noise match and a
realizeable match based on production test
requirements. Circuit losses have been de-
embedded from actual measurements.
GS
24
20
= 0 V
Cpk = 1.73
Std = 0.35
Cpk = 2.75
Std = 0.17
[7, 8]
L
> 67 C.

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