HMMC-5032 Avago Technologies US Inc., HMMC-5032 Datasheet

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HMMC-5032

Manufacturer Part Number
HMMC-5032
Description
Manufacturer
Avago Technologies US Inc.
Type
Power Amplifierr
Datasheet

Specifications of HMMC-5032

Number Of Channels
1
Frequency (max)
32GHz
Output Power
22dBm
Power Supply Requirement
Single
Single Supply Voltage (min)
2V
Single Supply Voltage (typ)
4.5V
Single Supply Voltage (max)
5V
Dual Supply Voltage (min)
Not RequiredV
Dual Supply Voltage (typ)
Not RequiredV
Dual Supply Voltage (max)
Not RequiredV
Supply Current
320@4.5VmA
Operating Temperature Classification
Industrial
Operating Temp Range
-55C to 95C
Lead Free Status / Rohs Status
Compliant
Avago HMMC-5032
17.7 – 32 GHz Amplifier
Data Sheet
Description
The HMMC-5032 is a MMIC power amplifier designed
for use in wireless transmitters that operate within
the 17.7 GHz to 32 GHz range. It provides 22 dBm of
output power and 8 dB of small-signal gain from a small
easy-to-use device. The HMMC-5032 was designed to
be driven by the HMMC-5040 (20–40 GHz) or the
HMMC-5618 (5.9–20 GHz) MMIC amplifier for linear
transmit applications. This device has input and out-
put matching circuitry for use in 50 ohm environments.
Absolute Maximum Ratings
Symbol
V
V
Det. Bias
I
P
T
T
T
T
Notes:
1. Absolute maximum ratings for continuous operation unless otherwise noted.
2. Refer to DC Specifications/Physical Properties table for derating information.
DD
ch
A
st
max
D1
G1
in
, V
, V
D2
G2
Parameters/Conditions
Drain Supply Voltages
Gate Supply Voltages
Applied Detector Bias
(Optional)
Total Drain Current
RF Input Power
Channel Temperature
Backside Ambient Temp.
Storage Temperature
Max. Assembly Temperature
[2]
[1]
Chip Size:
Chip Size Tolerance:
Chip Thickness:
Units
V
V
V
mA
dBm
°C
°C
°C
°C
Min.
-3.0
-55
-65
Max.
5
0.5
5
460
23
170
+95
+170
300
1.4 x 0.78 mm (55.1 x 30.7 mils)
±10 µm (±0.4 mils)
127 ± 15 µm (5.0 ± 0.6 mils)
Features
• 22 dBm output P
• 8 dB gain
• 50Ω input/output matching
• Small size
• Bias: 4.5 volts, 250 mA
(-1dB)

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HMMC-5032 Summary of contents

Page 1

... Chip Size: Chip Size Tolerance: Chip Thickness: Description The HMMC-5032 is a MMIC power amplifier designed for use in wireless transmitters that operate within the 17.7 GHz to 32 GHz range. It provides 22 dBm of output power and small-signal gain from a small easy-to-use device. The HMMC-5032 was designed to be driven by the HMMC-5040 (20– ...

Page 2

... MTTF > Notes: 1. Backside ambient operating temperature Thermal resistance (in °C/Watt channel temperature T(°C) can be estimated using the equation: θ(T) = θ 3. Derate MTTF by a factor of two for every 8°C above T HMMC-5032 RF Specifications 25° Symbol Parameters/Conditions BW Operating Bandwidth Gain Small Signal Gain ∆ ...

Page 3

... Applications The HMMC-5032 MMIC is a broad- band power amplifier designed for use in transmitters that operate in various frequency bands between 17.7 GHz and 32 GHz. It can be attached to the output of the HMMC-5040 (20 –40 GHz) or the HMMC-5618 (5.9 – 20 GHz) MMIC amplifier, increasing the power handling capability of transmitters requiring linear operation ...

Page 4

... HMMC-5032 Typical Performance Characteristics 250 mA, DET Bias = Open Spec Range 17.7 – 31.5 GHz 10 8 Gain 6 4 Isolation FREQUENCY (GHz) Figure 2. Gain and Isolation vs. Frequency 4 250 mA, Freq GHz sat -1dB 190 220 250 280 310 I (mA) DD Figure 5. Output Power vs. Total Drain Current. ...

Page 5

... G2 Figure 10. HMMC-5032 Bonding Pad Locations. (Dimensions are in micrometers) ≥ 800 pF V 225–300 mA DD ≥100 pF HMMC-5040 RF Input ≥100 Figure 11. Assembly diagram illustrating the HMMC-5032 cascaded with the HMMC-5040 for 20–32 GHz applications Det. Bias D2 810 1305 790 RF Output 335 80 1060 1205 1390 Det ...

Page 6

... V 115 mA DD ≥100 pF HMMC-5618 RF Input ≥100 pF Figure 12. Assembly diagram illustrating the HMMC-5032 cascaded with the HMMC-5618 for 17.7– 20 GHz applications 250 mA DD ≥100 pF HMMC-5032 RF Output V GG ...

Page 7

This data sheet contains a variety of typical and guaranteed performance data. The information supplied should not be interpreted as a complete list of circuit specifications. In this data sheet the term typical refers to the 50th percentile performance. For ...

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