AMMP-6441-TR1G

7
Typical Scattering Parameters
[1]
, (T
A
= 25°C, V
d
=5 V, I
D
= 0.45A, Z
in
= Z
out
= 50 )
Freq
S11 S11 S11 S21 S21 S21 S12 S12 S12 S22 S22 S22
[dB] Mag. Ang. [dB] Mag. Ang. [dB] Mag. Ang. [dB] Mag. Ang.
20 -1.44 0.85 -29.26 -37.16 0.01 65.56 -63.28 6.86E-04 -177.94 -1.19 0.87 18.22
21 -1.63 0.83 -120.63 -29.23 0.03 -99.35 -54.49 1.89E-03 -40.70 -1.24 0.87 -78.33
22 -2.17 0.78 156.73 -28.37 0.04 118.06 -48.78 3.64E-03 -139.74 -1.40 0.85 -163.84
23 -2.54 0.75 82.21 -28.13 0.04 5.08 -43.64 6.58E-03 121.50 -1.70 0.82 118.20
24 -2.57 0.74 8.22 -25.49 0.05 -99.30 -46.26 4.87E-03 9.57 -2.03 0.79 42.54
25 -2.37 0.76 -72.68 -22.13 0.08 153.82 -48.56 3.73E-03 -50.55 -2.09 0.79 -37.40
26 -2.20 0.78 -157.58 -18.74 0.12 51.99 -49.99 3.17E-03 -95.33 -1.78 0.81 -125.00
27 -2.63 0.74 119.20 -15.74 0.16 -57.08 -47.44 4.24E-03 -162.87 -1.98 0.80 144.30
28 -3.60 0.66 38.52 -12.05 0.25 -151.97 -46.99 4.47E-03 129.19 -2.76 0.73 58.95
29 -4.45 0.60 -49.91 -9.02 0.35 103.37 -44.13 6.22E-03 52.66 -4.18 0.62 -26.18
30 -4.16 0.62 -146.99 -3.43 0.67 7.49 -42.45 7.54E-03 -34.31 -4.71 0.58 -119.60
31 -3.33 0.68 125.31 1.38 1.17 -104.04 -44.38 6.04E-03 -132.01 -4.83 0.57 145.56
32 -3.33 0.68 49.43 6.37 2.08 144.41 -48.04 3.96E-03 153.99 -6.19 0.49 64.25
33 -4.98 0.56 -26.60 11.65 3.83 27.95 -46.59 4.68E-03 77.28 -10.13 0.31 -4.65
34 -11.74 0.26 -113.03 17.79 7.75 -106.88 -49.08 3.51E-03 -10.06 -15.14 0.18 -19.11
35 -30.25 0.03 24.52 21.45 11.82 106.76 -55.81 1.62E-03 -98.22 -14.40 0.19 -72.40
36 -17.57 0.13 -87.74 23.79 15.47 -40.53 -60.09 9.90E-04 -129.51 -18.76 0.12 -108.00
37 -13.79 0.20 -164.97 23.65 15.22 162.26 -59.53 1.06E-03 -76.94 -17.05 0.14 132.26
38 -14.61 0.19 77.57 21.23 11.52 23.42 -59.27 1.09E-03 -175.64 -13.57 0.21 -1.64
39 -16.58 0.15 -61.70 19.06 8.98 -108.07 -51.41 2.69E-03 134.13 -9.87 0.32 -82.52
40 -17.09 0.14 -137.82 18.71 8.62 124.45 -52.74 2.31E-03 42.42 -9.66 0.33 -154.98
41 -9.75 0.33 131.82 16.44 6.64 -23.69 -67.37 4.28E-04 -5.49 -13.64 0.21 144.48
42 -9.63 0.33 43.60 12.18 4.07 -148.68 -54.05 1.98E-03 -18.28 -12.48 0.24 130.71
43 -15.69 0.16 -22.56 10.60 3.39 91.90 -51.44 2.68E-03 -84.16 -9.78 0.32 63.32
44 -10.14 0.31 -72.86 10.82 3.47 -51.05 -51.69 2.60E-03 -171.27 -9.37 0.34 -28.63
45 -9.64 0.33 -173.38 6.05 2.01 143.60 -46.06 4.98E-03 101.90 -8.56 0.37 -145.17
46 -10.16 0.31 117.40 -2.18 0.78 -7.04 -41.86 8.08E-03 -1.64 -7.06 0.44 107.01
47 -9.25 0.34 39.30 -12.11 0.25 -134.88 -38.15 1.24E-02 -106.69 -6.70 0.46 14.48
48 -9.23 0.35 -51.59 -20.73 0.09 124.23 -35.98 1.59E-02 164.73 -6.62 0.47 -69.34
49 -7.92 0.40 -143.04 -26.43 0.05 41.29 -31.88 2.55E-02 81.22 -6.92 0.45 -152.30
50 -7.21 0.44 132.95 -28.47 0.04 -47.16 -31.37 2.70E-02 -21.85 -7.65 0.41 127.63
Note:
1. Data obtained from 2.4-mm connecter based modules, and this data is including connecter loss, and board loss. The measurement reference plane
is at the RF connectors.
8
Biasing and Operation.
Recommended quiescent DC bias condition for optimum
power and linearity performances is Vd=5 volts with
Vg (-1V) set for Id=450 mA. Minor improvements in
performance are possible depending on the application.
The drain bias voltage range is 3 to 5V. A single DC gate
supply connected to Vg will bias all gain stages. Muting
can be accomplished by setting Vg to the pinch-o
voltage Vp (-2V).
A typical DC biasing connection is shown in Figure 17.
Vg and Vd can be biased from either side. The RF input
port is connected internally to ground; therefore, an input
decoupling capacitor is needed if the preceding output
stage has DC present. The RF output is DC decoupled
internally. No ground wired are needed since ground
connections are made with plated through-holes to the
backside of the device.
RF Input RF Output
Vd
Vg
100 pF 0.1 PF 100 pF 0.1 PF
100 pF 0.1 PF
1
2
3
7
6
5
4
8
Notes:
1. Vd may be biased
from either side.
2. Vg may be biased
from either side.
Figure 17. Schematic and recommended assemble example
Note: No RF performance degradation is seen due to ESD up to 150V
HBM and 40V MM. The DC characteristics in general show increased
leakage at higher ESD discharge voltages. The user is reminded that this
device is ESD sensitive and needs to be handled with all necessary ESD
protocols.
For product information and a complete list of distributors, please go to our web site: www.avagotech.com
Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and other countries.
Data subject to change. Copyright © 2005-2011 Avago Technologies. All rights reserved.
AV02-1908EN - June 21, 2011
AMMP-64xx Part Number Ordering Information
Part Number
Devices Per
Container
Container
AMMP-6441-BLKG 10 Antistatic bag
AMMP-6441-TR1G 100 7” Reel
AMMP-6441-TR2G 500 7” Reel
Package Dimension, PCB Layout and Tape and Reel information
Please refer to Avago Technologies Application Note 5520, AMxP-xxxx production Assembly Process (Land Pattern A).
Names and Contents of the Toxic and Hazardous Substances or Elements in the Products
Part Name
Lead
(Pb)
(Pb)
Mercury
(Hg)
Hg
Cadmium
(Cd)
Cd
Hexavalent
(Cr(VI))
Cr(VI)
Polybrominated
biphenyl (PBB)
PBB
Polybrominated
diphenylether (PBDE)
PBDE
100pF capacitor
: indicates that the content of the toxic and hazardous substance in all the homogeneous materials of the part is
below the concentration limit requirement as described in SJ/T 11363-2006.
: indicates that the content of the toxic and hazardous substance in at least one homogeneous material of the part
exceeds the concentration limit requirement as described in SJ/T 11363-2006.
(The enterprise may further explain the technical reasons for the “x” indicated portion in the table in accordance with
the actual situations.)
SJ/T 11363-2006
SJ/T 11363-2006
“×”
Note: EU RoHS compliant under exemption clause of “lead in electronic ceramic parts (e.g. piezoelectronic devices)”
Toxic and Hazardous Substances or Elements

AMMP-6441-TR1G

Mfr. #:
Manufacturer:
Broadcom / Avago
Description:
RF Amplifier 36-40 GHz Power Amp
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union

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