Sirenza Microdevices SNA-286 is a GaAs monolithic broad-
band amplifier (MMIC) housed in a low-cost surface-mount-
able plastic package. At 1950 MHz, this amplifier provides
15.5dB of gain and +14dBm of P1dB power when biased at
50mA.
The use of an external resistor allows for bias flexibility and
stability. These unconditionally stable amplifiers are designed
for use as general purpose 50 ohm gain blocks.
Also available in chip form (SNA-200), its small size (0.33mm
x 0.33mm) and gold metallization make it an ideal choice for
use in hybrid circuits.
Output Power vs. Frequency
16
15
SNA-286
DC-6.0 GHz, Cascadable
GaAs MMIC Amplifier
Product Features
Patented, Reliable GaAsHBT Technology
Cascadable 50 Ohm Gain Block
15dB Gain, +14dBm P1dB
1.5:1 Input and Output VSWR
Operates From Single Supply
Low Cost Surface Mount Plastic Package
Applications
PA Driver Amplifier
Cellular, PCS, GSM, UMTS
IF Amplifier
Wireless Data, Satellite
Units
dB
dB
dB
dB
GHz
dBm
dBm
dB
dBm
14
13
12
0.1
0.5
1
1.5
2
3
4
6
GHz
Sy mbol
G
P
G
F
BW3dB
P
1dB
Parameter
Small Signal Pow er Gain
Gain Flatness
3dB Bandw idth
Output Pow er at 1dB Compression
Frequency
850 M Hz
1950 M Hz
2400 M Hz
0.1-6 GHz
Min.
14.4
Ty p.
16.0
15.5
15.0
+/-
1.3
Max.
17.6
4.5
1950 M
Hz
1950 M
Hz
1950 M
Hz
0.1-6 GHz
0.1-6 GHz
3.
3
1
4.0
O
IP
3
NF
VSWR
ISOL
V
D
Output
Third Order Intercept Point
Noise Figure
Input / Output
Reverse Isolation
29.0
5.7
1.5:1
-
dB
V
20
3.8
50
-0.001
8
4.
3
Device Operating Voltage
Device Operating Current
Device
Gain
Temperature Coefficient
I
D
dG/dT
mA
dB
/°C
°C/W
45
55
R
TH
, j-l
Thermal Resistance (junction to lead)
340
Test Conditions:
V
S
= 8 V
R
BIAS
= 82 Ohms
I
D
= 50 mA Typ.
T
L
= 25ºC
OIP
3
Tone Spacing = 1 MHz, Pout per tone = 0 dBm
Z
S
= Z
L
= 50 Ohms
The information provided herein is believed to be reliable at press time. Sirenza Microdevices assumes no responsibility for inaccuracies or omissions. Sirenza Microdevices assumes no responsibility for the use of
this information, and all such information shall be entirely at the users own risk. Prices and specifications are subject to change without notice. No patent rights or licenses to any of the circuits described herein are
implied or granted to any third party. Sirenza Microdevices does not authorize or warrant any Sirenza Microdevices product for use in life-support devices and/or systems. Copyright 2001 Sirenza Microdevices, Inc..
All worldwide rights reserved.
522 Almanor Ave., Sunnyvale, CA 94085
Phone: (800) SMI-MMIC
1
http://www.sirenza.com
EDS-102431 Rev A
Preliminary
SNA-286 DC-6.0 GHz Cascadable MMIC Amplifier
Typical Performance at 25° C (Vds = 3.8V, Ids = 50mA)
|S11| vs. Frequency
0
-5
-10
|S21| vs. Frequency
16
14
dB
-15
-20
-25
-30
0.1
0.5
1
1.5
2
3
4
6
dB
12
10
0.1
0.5
1
1.5
2
3
4
6
GHz
GHz
|S12| vs. Frequency
0
-5
|S22| vs. Frequency
0
-5
-10
dB
-10
-15
dB
-15
-20
-25
-20
0.1
0.5
1
1.5
2
3
4
6
-30
0.1
0.5
1
1.5
2
3
4
6
GHz
GHz
Noise Figure vs. Frequency
7
6.5
28
27
TOIP vs. Frequency
dB
6
5.5
5
0.1
0.5
1
1.5
2
3
4
6
dBm
26
25
24
0.1
0.5
1
1.5
2
3
4
6
GHz
GHz
Absolute Maximum Ratings
Parameter
Max.
Device Current
(I
D
)
Max.
Device
Voltage (V
D
)
Max.
RF Input Pow er
Max.
Junction Temp
. (T
J
)
Operating Temp
. Range (T
L
)
Absolute Limit
75
mA
6V
+10 dBm
+
150
°C
-40°C to +85°C
+150°C
Max.
Storage Temp
.
Operation of this device beyond any one of these limits may
cause permanent damage. For reliable continous operation,
the device voltage and current must not exceed the maximum
operating values specified in the table on page one.
Bias Conditions should also satisfy the follow ing expression:
I
D
V
D
< (T
J
- T
L
) / R
TH
, j-l
522 Almanor Ave., Sunnyvale, CA 94085
Phone: (800) SMI-MMIC
2
http://www.sirenza.com
EDS-102431 Rev A
Preliminary
SNA-286 DC-6.0 GHz Cascadable MMIC Amplifier
Application Circuit Element Values
Typical Application Circuit
R
BIAS
1 uF
1000
pF
Reference
Designator
Frequency (Mhz)
500
850
1950
2400
3500
C
B
220 pF
100 pF
68 nH
100 pF
68 pF
33 nH
68 pF
22 pF
22 nH
56 pF
22 pF
18 nH
39 pF
15 pF
15 nH
C
D
L
C
C
D
L
C
RF in
C
B
1
4
SNA-286
Recommended Bias Resistor Values for I
D
=50mA
3
C
B
RF out
Supply Voltage(V
S
)
R
BIAS
6V
43
8V
82
10 V
120
12 V
160
2
Note: R
BIAS
provides DC bias stability over temperature.
V
S
R
BIAS
1 uF
1000 pF
Mounting Instructions
1. Use a large ground pad area under device pins 2
and 4 with many plated through-holes as shown.
L
C
S2
C
D
C
B
C
B
2. We recommend 1 or 2 ounce copper. Measurements
for this data sheet were made on a 31 mil thick FR-4
board with 1 ounce copper on both sides.
Pin #
Function
RF IN
Description
RF input pin. This pin requires the use
of an external DC blocking capacitor
chosen for the frequency of operation.
Connection to ground. For optimum RF
performance, use via holes as close to
ground leads as possible to reduce lead
inductance.
Part Identification Marking
The part will be marked with an S2 designator on
The voltages at both ends of capacitor C114 are different, the left end is 3.3V and the right end is 3.0V. Can this circuit be turned on? The signal transmitted is a high-frequency signal....
First of all, I would like to thank EEWORLD and GD for giving me the opportunity to experience the GD32L233C-START development board kit that opens the energy - saving " core " era .
First of all, let...
Discuss the blind spot monitoring of large trucks, future technology development and application, and future technology trends, and provide efficient technical solutions for automobile driving safety....
[align=left][align=left][color=#000][font=Simsun][size=3]In 2007, I went to a small company for an interview with 2 years of work experience. After the written test, the other party was very impressed...
In recent years, with the increasing demand for manufacturing and automated production management, industrial barcode scanners have gradually become an indispensable part of the industrial manufact...[Details]
A vacuum eutectic furnace is a critical piece of equipment used in the manufacturing and processing of various materials, particularly in the fields of microelectronics and nanotechnology. One of t...[Details]
As more and more consumers purchase new energy vehicles, the safety of electric vehicles has become a major concern. This has been particularly prominent following a series of electric vehicle fire...[Details]
We are entering a new era where people are increasingly affordably equipped with more electronic gadgets. Electronics have become essential to our lives. For example, the average consumer now owns ...[Details]
White light LEDs are voltage-sensitive devices. In actual operation, their upper limit is 20mA. However, the current often increases due to various reasons during use. If no protective measures are...[Details]
The Automotive Testing and Quality Assurance Expo (ATE 2025) will open on August 27th. At the expo, Rohde & Schwarz (R&S) will showcase six automotive testing solutions, themed "Intelligently Drivi...[Details]
Recently, South Korean robotics giant WIRobotics launched its first general-purpose humanoid robot, ALLEX, at the Robotics Innovation Center (RIH) at the Korea University of Science and Technology....[Details]
According to foreign media reports, Nissan Motor has recently reached a cooperation with US battery technology company LiCAP Technologies to jointly promote the research and development of next-gen...[Details]
For today's new energy vehicles, they have different configurations from fuel vehicles, and some configurations have also become a selling point for manufacturers. Compared with traditional vehicle...[Details]
Definitions of VR
, AR, and MR:
What is Virtual Reality?
Virtual Reality (VR), also known as "spiritual realm" or "illusion," is a high-tech technology that has emerged in recent ye...[Details]
Driven by business opportunities such as access to new markets and government initiatives like the Belt and Road Initiative, global expansion has become a significant trend for Chinese companies. C...[Details]
Introduction: Traditionally, lead-acid batteries have primarily been used to provide backup power and power regulation based on location. In typical applications, the battery's actual use (discharg...[Details]
Generally not, but there are exceptions. For example, a torque motor controller with three-phase output voltage imbalance can cause current imbalance, similar to a phase loss. However, only two pha...[Details]
Recently, I received a request to use OK1028A-C to output PWM square wave. However, I found that there was no relevant instructions on the OK1028 platform, so I started writing this article.
A...[Details]
Munich, Germany, August 19, 2025 –
Infineon Technologies AG, a global semiconductor leader in power systems and the Internet of Things, announced today that its AIROC™ CYW20829 Bluetooth® low e...[Details]