better than 15 dB. This amplifier requires dual DC
supplies: 5 V (190 mA) and a low current
–5 V (<1 mA).
The MAAM-011109 integrates an ultra-broadband
bias choke, DC blocking and bypass capacitors.
Other features include a gate bias adjust pin to
change current setting for power or temperature, a
gain trim control pin that allows 15 dB of gain control
(0 to -1V), and a temperature compensated detector
pin that provides a DC voltage in relation to output
power.
The MAAM-011109 is ideally suited for any
application that requires 50 Ω gain from 10 MHz to
40 GHz. It is useful in applications where the
incoming signal varies over a broad bandwidth such
as laboratory, instrumentation, and defense
applications.
This device is housed in a leadless 5 X 5 X 1.3 mm
package that can be handled and placed with
standard pick and place assembly equipment. The
package base is a two layer laminate with overmold
fully compatible with PCB environment and wash
conditions. The module includes a GaAs MMIC that
is fully passivated for performance and reliability.
RF
IN
1
5
RF
OUT
2
3
4
V
E
N/C V
G
Pin Configuration
Pin No.
1
2
3
4
5
6
7
8
9
10
Pin Name
RF
IN
V
E
N/C
V
G
RF
OUT
V
D
B
C
V
DET
V
C
Paddle
3
Function
RF Input
-5 V Supply
No Connection
Gate Adjust (optional)
RF Output
+5 V Supply
V
D
Bypass (optional)
No Connection
Power Detector
Gain Control
Ground
3. The exposed pad centered on the package bottom must be
connected to RF and DC ground.
Ordering Information
1,2
Part Number
MAAM-011109
MAAM-011109-TR1000
MAAM-011109-001SMB
Package
bulk quantity
1000 piece reel
Sample board
* Restrictions on Hazardous Substances, European Union
Directive 2011/65/EU.
1
1. Reference Application Note M513 for reel size information.
2. All sample boards include 3 loose parts.
M/A-COM Technology Solutions Inc. (MACOM) and its affiliates reserve the right to make changes to the product(s) or information contained herein without notice.
Visit www.macomtech.com for additional data sheets and product information.
For further information and support please visit:
https://www.macomtech.com/content/customersupport
MAAM-011109
Wideband Amplifier
10 MHz - 40 GHz
Rev. V2
Electrical Specifications: T
A
= +25C, V
D
= +5 V, V
E
= -5 V, V
C
= Open, Z
IN
= Z
OUT
= 50 Ω
Parameter
Test Conditions
0.1 GHz
2 GHz
12 GHz
20 GHz
32 GHz
40 GHz
0.01 - 40 GHz
0.01 - 40 GHz
0.01 - 40 GHz
0.01 - 40 GHz
0.1 GHz
10 GHz
40 GHz
0.1 GHz
10 GHz
40 GHz
V
D
= +5 V, V
E
= -5 V
Units
Min.
—
11.0
10.0
10.0
8.0
—
—
—
—
—
—
Typ.
12.0
13.0
12.0
11.5
11.0
8.0
22
13
9
3.5
+18
+17
+13
+26
+24
+16
170
Max.
Gain
dB
—
Isolation
Input Return Loss
Output Return Loss
Noise Figure
P1dB
dB
dB
dB
dB
dBm
—
—
—
—
—
Output IP3
Bias Current
dBm
mA
—
—
—
—
Absolute Maximum Ratings
4,5,6
Parameter
Input Power
Drain Supply Voltage
Junction Temperature
7
Operating Temperature
Storage Temperature
Absolute Max.
+17 dBm
+8 Volts
+150°C
-40°C to +85°C
-65°C to +150°C
Handling Procedures
Please observe the following precautions to avoid
damage:
Static Sensitivity
Gallium Arsenide Integrated Circuits are sensitive
to electrostatic discharge (ESD) and can be
damaged by static electricity. Proper ESD control
techniques should be used when handling these
Class 1B devices.
4. Exceeding any one or combination of these limits may cause
permanent damage to this device.
5. MACOM does not recommend sustained operation near
these survivability limits.
6. Operating at nominal conditions with T
J
≤ 150°C will ensure
MTTF > 1 x 10
6
hours.
7. Junction Temperature (T
J
) = T
C
+
Ө
JC
* ((V * I) - (P
OUT
- P
IN
))
Typical thermal resistance (Ө
JC
) = 21°C/W
a) For T
C
= 25°C,
T
J
= 43°C @ 5 V, 190 mA, P
OUT
= 20 dBm, P
IN
= 7 dBm
b) For T
C
= 85°C,
T
J
= 103°C @ 5 V, 190 mA, P
OUT
= 20 dBm, P
IN
= 7 dBm
2
M/A-COM Technology Solutions Inc. (MACOM) and its affiliates reserve the right to make changes to the product(s) or information contained herein without notice.
Visit www.macomtech.com for additional data sheets and product information.
For further information and support please visit:
https://www.macomtech.com/content/customersupport
MAAM-011109
Wideband Amplifier
10 MHz - 40 GHz
Application Schematic
9
8
7
6
Rev. V2
Application Information for DC & pins
For proper MAAM-011109 operation a DC voltage
must be applied at the V
E
(-5 V) and V
D
(+5 V) pins
in that order.
The optional V
G
pin maybe used to
override the automatic V
E
bias network to hard set
the gate. Adjusting V
G
from -0.2 V to -0.6 V will
change the quiescent current. If V
G
is used, V
E
should be left unconnected.
The V
C
pin is typically left unconnected unless gain
control or output power limiting is desired. Please
refer to the ―Variable Gain/Limiting‖ section for
detailed usage.
The V
D
pin should be bypassed with at least 0.1 µF
for stability. For operation below 100 MHz a ferrite
bead (Murata BLM18BB471) must be inserted
between the V
D
pin and bypass capacitor. The V
G
and V
C
pins must also be bypassed with a 0.1 µF
capacitor if operating below 100 MHz.
The V
DET
pin is typically left unconnected unless a
voltage reference is desired that is correlated to the
output power. Please refer to the ―Internal Detector‖
section for detailed usage.
The B
C
pin is typically left unconnected unless gain
bandwidth and shape change is desired. Please
refer to an application note on this pin.
The input and output pins are internally DC blocked.
No more than +/- 12 V should ever be present on
these RF only pins.
The backside paddle of the MAAM-011109 should
be connected to ground with as many vias as
possible to maximize high frequency performance,
thermal dissipation, and stability.
5
1
Paddle
2 4
Recommended PCB Layout
Parts List
Component
C1
L1
Value
0.22 µF
470 Ω
Package
0201
0603
3
M/A-COM Technology Solutions Inc. (MACOM) and its affiliates reserve the right to make changes to the product(s) or information contained herein without notice.
Visit www.macomtech.com for additional data sheets and product information.
For further information and support please visit:
https://www.macomtech.com/content/customersupport
MAAM-011109
Wideband Amplifier
10 MHz - 40 GHz
Typical Performance Curves over Temperature
Gain
20
Rev. V2
Noise Figure
15
15
10
+25°C
-40°C
+85°C
10
5
5
+25°C
-40°C
+85°C
0
0
10
20
30
40
0
0
10
20
30
40
Frequency (GHz)
Frequency (GHz)
Input Return Loss
0
Output Return Loss
0
-10
+25°C
-40°C
+85°C
-10
-20
-20
+25°C
-40°C
+85°C
-30
0
10
20
30
40
-30
0
10
20
30
40
Frequency (GHz)
Frequency (GHz)
Output P1dB
30
+25°C
-40°C
+85°C
Output IP3
30
20
20
10
10
+25°C
-40°C
+85°C
0
0
10
20
30
40
0
0
10
20
30
40
Frequency (GHz)
Frequency (GHz)
4
M/A-COM Technology Solutions Inc. (MACOM) and its affiliates reserve the right to make changes to the product(s) or information contained herein without notice.
Visit www.macomtech.com for additional data sheets and product information.
For further information and support please visit:
https://www.macomtech.com/content/customersupport
MAAM-011109
Wideband Amplifier
10 MHz - 40 GHz
Typical Performance Curves vs. Voltage and Current
Gain
20
Rev. V2
Noise Figure
15
15
10
10
5
3.3 V, 150 mA
3.3 V, 190 mA
5 V, 150 mA
5 V, 190 mA
5
3.3 V, 150 mA
3.3 V, 190 mA
5 V, 150 mA
5 V, 190 mA
0
0
10
20
30
40
0
0
10
20
30
40
Frequency (GHz)
Frequency (GHz)
Input Return Loss
0
Output Return Loss
0
-10
3.3 V, 150 mA
3.3 V, 190 mA
5 V, 150 mA
5 V, 190 mA
-10
-20
-20
3.3 V, 150 mA
3.3 V, 190 mA
5 V, 150 mA
5 V, 190 mA
-30
0
10
20
30
40
-30
0
10
20
30
40
Frequency (GHz)
Frequency (GHz)
Output P1dB
30
3.3 V, 150 mA
3.3 V, 190 mA
5 V, 150 mA
5 V, 190 mA
Output IP3
30
20
20
10
10
3.3 V, 150 mA
3.3 V, 190 mA
5 V, 150 mA
5 V, 190 mA
0
0
10
20
30
40
0
0
10
20
30
40
Frequency (GHz)
Frequency (GHz)
5
M/A-COM Technology Solutions Inc. (MACOM) and its affiliates reserve the right to make changes to the product(s) or information contained herein without notice.
Visit www.macomtech.com for additional data sheets and product information.
[size=4][color=red]I like password locks, but after seeing many designs, few people mentioned the hardware design of password locks. Here I would like to discuss with experts: What is the design idea ...
How do I use Klipper99se? After I installed it, the Klipper99se toolbar did not appear in Protell99SE, and I couldn't find it in the menu. Please help!...
I called to look up information about electricity again. It's so annoying. I guess I can't finish one small thing on schedule. This morning I went downstairs to pay the water and electricity bill and ...
I want to terminate the process on the remote device. The device is connected and the process is visible, but I can't find a way to terminate the process....
An article on Leifeng.com, you can read it. Today, as the Internet of Things continues to develop, laptops and mobile phones are no longer the only way to access the Internet. Televisions, baby monito...
With the promotion of the construction of intelligent communities in the country, anti-theft systems have become essential equipment for intelligent communities. Especially in recent years, the urg...[Details]
1. Principle of displacement angle sensor
The angle sensor is used to detect angles. It has a hole in its body that fits the LEGO axle. When connected to the RCX, the angle sensor counts once ...[Details]
introduction
The emergence of high-performance, low-power embedded CPUs and high-reliability network operating systems has made it possible to implement applications with large amounts of comp...[Details]
We know that microcontroller development tools generally include real-time online emulators and programmers. Among them, online emulators are very good tools, but they are also more expensive...[Details]
1 Introduction
Water resources are the basic conditions for human survival and the lifeline of economic development. The reality shows that due to the global shortage of water resources and th...[Details]
On the afternoon of July 10, Beijing time, Taiwan's largest chip designer MediaTek expects its smartphone chip shipments to grow by double digits in the third quarter of this year, and the company is ...[Details]
We know that the inverter consists of two parts: the main circuit and the control circuit. Due to the nonlinearity of the main circuit (switching action), the inverter itself is a source of harmoni...[Details]
Corelink Semiconductor has launched the CL1100-based 5-7W E27 LED lighting driver system solution DB2. This driver module meets the requirements of small size (L×W×H=5.1cm×2.1cm×1.8cm), low standby...[Details]
Introduction
Nowadays, people pay more and more attention to the security alarm system, and people have higher and higher requirements for the functions and performance of the alarm. This paper prop...[Details]
Among the uses of electrical energy, lighting accounts for a considerable proportion. Compared with the earlier ordinary incandescent lamps, the fluorescent lamps and energy-saving lamps we commonl...[Details]
Movpower is a portable power bank. It can charge most mobile phones and digital products, such as digital cameras, PDAs, and mobile phones such as Apple, iPod, Blackberry, Motorola, Samsung, Nokia,...[Details]
1 Load Regulation
Changes in power supply load will cause changes in power supply output. When the load increases, the output decreases, and vice versa, when the load decreases, the output inc...[Details]
Nowadays, more and more people have digital cameras. The convenience and speed of digital cameras have gradually replaced film cameras and become the main tool for people's daily photography. The n...[Details]
Power supply is often the most easily overlooked link in the circuit design process. In fact, as an excellent design, power supply design should be very important, which greatly affects the perfor...[Details]
1 Introduction to the overall system solution
The hardware part is mainly used to amplify the sound. When the sound is loud enough, the signal can be introduced into the microcontroller for de...[Details]