ammp-6442 Avago Technologies, ammp-6442 Datasheet - Page 2

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ammp-6442

Manufacturer Part Number
ammp-6442
Description
37- 40 Ghz, 1w Linear Power Amplifier In Smt Package
Manufacturer
Avago Technologies
Datasheet

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Absolute Maximum Ratings
Note:
1. Operation in excess of any one of these conditions may result in permanent damage to this device.
2. Combinations of supply voltage, drain current, input power, and output power shall not exceed P
3. These ratings apply to each individual FET
4. The operating channel temperature will directly affect the device MTTF. For maximum life, it is recommended that junction temperatures be
DC Specifications/ Physical Properties
Note:
1. Assume AnPb soldering to an evaluation RF module at 90.5°C base plate temperatures.
RF Specifications
T
Note:
1. Small/Large -signal data measured in packaged form on a 2.4mm connecter based evaluation board at T
2. This final package part performance is verified by a functional test correlated to actual performance at one or more frequencies.
3. Pre-assembly into package performance verified 100% on-wafer published specifications at Frequencies=37 and 40GHz
4. The Gain and P1dB tested at 37 and 40GHz guaranteed with measurement accuracy ± 1.5 dB for gain and ±1.6dB for P1dB.
2
Symbol
V
V
P
P
T
T
T
Symbol
I
V
T
T
Symbol
Freq
Gain
P
IM3
RL
RL
Isolation
A
d(q)
ch
stg
ch
max
d
g
D
in
g
ch-bs
-1dB
= 25°C, V
in
out
maintained at the lowest possible levels.
dd
= 5.0 V, I
Parameters
Positive Supply Voltage
Gate Supply Voltage
Power Dissipation
CW Input Power[2]
Operating Channel Temp.
Storage Case Temp.
Maximum Assembly Temp (30 sec max)
Parameters and Test Conditions
Quiescent Drain Supply Current
(V
Gate Supply Operating Voltage
(I
Thermal Resistance
(Channel-to-Base Plate)
Channel Temperature
Parameters and Test Conditions
Operational Frequency
Small-signal Gain
Output Power at 1dB
Relative third Order Inter-modulation Level
'f = 20MHz, Po = +18dBm, SCL
Input Return Loss
Output Return Loss
Reverse Isolation
[1,2,3, and 4]
d(q)
d
= 5 V, V
= 700 (mA))
dq
= 0.7 A, V
g
[1,2,3, and 4]
set for I
[3, 4]
[2,3]
d(q)
g
(4)
[1]
= -1V, Z
Typical)
[2]
Gain Compression
[4,5]
o
= 50 :
Unit
mA
V
°C/W
°C
Units
GHz
dB
dBm
dBc
dB
dB
dB
Min
-1.3
Minimum
37
20
28
D
.
Unit
V
V
W
dBm
°C
°C
°C
A
= 25°C.
Typ
700
-1
12
150
Typical
23
30
36
8
8
45
Max
5.5
-2 to 0
6
20
+150
-65 to +155
+260
Max
-0.7
Maximum
40

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