MGA-43228-TR1G Avago Technologies US Inc., MGA-43228-TR1G Datasheet

no-image

MGA-43228-TR1G

Manufacturer Part Number
MGA-43228-TR1G
Description
29dBm Linear PA 2.3-2.5GHz
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of MGA-43228-TR1G

Current - Supply
500mA
Frequency
2.3GHz ~ 2.5GHz
Gain
38.5dB
Noise Figure
2.1dB
P1db
35.5dBm
Package / Case
28-VFQFN Exposed Pad
Rf Type
802.16 WiMAX
Test Frequency
2.4GHz
Voltage - Supply
5V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MGA-43228-TR1G
Manufacturer:
AVAGO
Quantity:
1 000
Description
Avago Technologies’ MGA-43228 is a power amplifier for
use in the (2.3-2.5)GHz band. High linear output power
at 5V is achieved through the use of Avago Technologies’
proprietary 0.25um GaAs Enhancement-mode pHEMT
process. It is housed in a miniature 5.0mm x 5.0mm x
0.85mm 28-lead QFN package. It also includes shutdown
and switchable gain functions. A detector is also included
on-chip. The compact footprint coupled with high gain
and high efficiency make the MGA-43228 an ideal choice
as a power amplifier for IEEE 802.16 (WiMAX) and WLL
applications.
Component Image
5.0 x 5.0 x 0.85 mm
Notes:
Package marking provides orientation and identification
”43228” = Device part number
”YYWW” = Year and work week
”XXXX” = Assembly lot number
Functional Block Diagram
RFin
MGA-43228
(2.3–2.5) GHz 29dBm High Linearity Wireless Data Power Amplifier
Data Sheet
43228
YYWW
XXXX
Vdd1
Vbyp Vc1 Vc2 Vc3 Vbias
3
Gain switch and
28-lead QFN Package (Top View)
bias circuitry
Vdd2
Vbyp
RFin
Vdd3
Vdet
Gnd
RFout
RFout
RFout
RFout
Features
x High gain: 38.5dB
x High linearity performance: 29.2dBm at 5V supply (2.5%
x High efficiency: 16.1%
x Built-in detector and shutdown switches
x Switchable gain: 23.6dB attenuation using one single
x ETSI spectral mask compliant at 29dBm output power
x GaAs E-pHEMT Technology
x Low cost small package size: 5.0 x 5.0 x 0.85 mm
x MSL-2a and lead-free
x Usable at 3.3V supply for lower supply voltage
Specifications
2.4GHz; Vdd = Vbias = 5.0V, Vc = 2.1V (R2 = 1.2k:, R3 =
300:, R4 = 1.2k: as shown in Figure 36), Iqtotal = 500mA
(typ), IEEE 802.16e 64-QAM OFDMA, ¾ FEC rate
x 38.5 dB Gain
x 29.2 dBm Linear Pout (2.5% EVM)
x 16.1% PAE @ Linear Pout
x 2.6V Vdet @ Linear Pout
x 23.6 dB Switchable Gain Attenuation
x 25PA Shutdown Current
Applications
x High linearity amplifier for IEEE 802.16 fixed terminal
x WLL amplifier
Note:
1. Enhancement mode technology employs positive Vgs, thereby
EVM, 64-QAM ¾ FEC rate OFDMA, 10MHz bandwidth)
CMOS compatible switch pin
applications
amplifier
eliminating the need of negative gate voltage associated with
conventional depletion mode devices.
[1]
3

Related parts for MGA-43228-TR1G

MGA-43228-TR1G Summary of contents

Page 1

... QFN package. It also includes shutdown and switchable gain functions. A detector is also included on-chip. The compact footprint coupled with high gain and high efficiency make the MGA-43228 an ideal choice as a power amplifier for IEEE 802.16 (WiMAX) and WLL applications. ...

Page 2

Absolute Maximum Rating T =25°C A Symbol Parameter Vdd, Vbias Supply voltages, bias supply voltage Vc Control Voltage Input Power in,max [3] P Total Power Dissipation diss T Junction Temperature j,MAX T Storage Temperature STG Electrical ...

Page 3

Product Consistency Distribution Charts LSL 28 29 Figure 1. Pout_5V; LSL = 27.7dBm, Nominal = 29.2dBm LSL Figure 3. Gain; LSL = 35.0dB, Nominal = 38.5dB Note: 1. Distribution data sample size is 2000 ...

Page 4

... Unless otherwise stated, all modulated signal measurements are made with IEEE 802.16e format as stated in the notes to Figure 36. MGA-43228 typical over-temperature performance at Vdd = Vbias = 5.0V 2.1V (R2 = 1.2k 300 1.2k: as shown in Figure 36), Vbyp = 0V unless otherwise stated S22 -10 -15 S11 -20 -25 1.8 1.9 2.0 2.1 2.2 2.3 2.4 2.5 2.6 2.7 2.8 2.9 3.0 Frequency/GHz Figure 5 ...

Page 5

... MGA-43228 typical over-temperature performance at Vdd = Vbias = 5.0V 2.1V (R2 = 1.2k 300 1.2k: as shown in Figure 36), Vbyp = 0V unless otherwise stated. 5.0 85°C 4.5 25°C 4.0 -40°C 3.5 3.0 2.5 2.0 1.5 1.0 0.5 0 Pout/dBm Figure 11. Over-temperature EVM vs Pout @ 2.5GHz 3.0 2.8 85°C 2.6 25°C 2.4 -40° ...

Page 6

... MGA-43228 typical over-temperature performance at Vdd = Vbias = 5.0V 2.1V (R2 = 1.2k 300 1.2k: as shown in Figure 36), Vbyp = 0V unless otherwise stated. -25 -20 -15 - Frequency offset/MHz Figure 17. Over-temperature ETSI SEM at 29dBm Pout @ 2.3GHz -25 -20 -15 - Frequency offset/MHz Figure 19. Over-temperature ETSI SEM at 29dBm Pout @ 2.5GHz 6 ETSI 85°C 25°C -40°C ...

Page 7

... MGA-43228 typical over-temperature performance at Vdd = Vbias = 3.3V 2.1V (R2 = 1.2k 300 1.2k: as shown in Figure 36), Vbyp = 0V unless otherwise stated S22 -5 -10 -15 S11 -20 -25 2.0 2.1 2.2 2.3 2.4 2.5 2.6 2.7 2.8 2.9 3.0 3.1 3.2 Frequency/GHz Figure 20. Small-signal performance in high gain mode, Vbyp = 0V 5.0 85° ...

Page 8

... MGA-43228 typical over-temperature performance at Vdd = Vbias = 3.3V 2.1V (R2 = 1.2k 300 1.2k: as shown in Figure 36), Vbyp = 0V unless otherwise stated. 5.0 85°C 4.5 25°C 4.0 -40°C 3.5 3.0 2.5 2.0 1.5 1.0 0.5 0 Pout/dBm Figure 26. Over-temperature EVM vs Pout @ 2.5GHz 2.0 85°C 1.8 25°C 1.6 -40° ...

Page 9

... MGA-43228 typical over-temperature performance at Vdd = Vbias = 3.3V 2.1V (R2 = 1.2k 300 1.2k: as shown in Figure 36), Vbyp = 0V unless otherwise stated. -25 -20 -15 - Frequency offset/MHz Figure 32. Over-temperature ETSI SEM at 26.5dBm Pout @ 2.3GHz -25 -20 -15 - Frequency offset/MHz Figure 34. Over-temperature ETSI SEM at 26.5dBm Pout @ 2.5GHz 9 ETSI 85°C 25°C -40°C ...

Page 10

S-Parameter (Vdd = Vbias = 5.0V 2.1V Freq S11 S11 (GHz) (dB) (ang) 0.1 -5.50 174.42 0.2 -5.05 164.05 0.3 -4.91 151.92 0.4 -5.02 139.67 0.5 -5.40 126.61 0.6 -6.01 112.67 0.7 -6.81 96.78 0.8 -7.93 78.07 ...

Page 11

Freq S11 S11 (GHz) (dB) (ang) 4.1 -2.91 -145.17 4.2 -2.44 -156.10 4.3 -2.09 -166.12 4.4 -1.81 -175.20 4.5 -1.59 176.43 4.6 -1.42 168.84 4.7 -1.27 161.84 4.8 -1.16 155.37 4.9 -1.07 149.38 5.0 -0.96 144.61 5.1 -0.86 140.77 5.2 ...

Page 12

S-Parameter (Vdd = Vbias = 3.3V 2.1V Freq S11 S11 (GHz) (dB) (ang) 0.1 -5.14 174.57 0.2 -4.79 164.86 0.3 -4.72 153.26 0.4 -4.68 141.95 0.5 -5.15 129.13 0.6 -5.79 114.39 0.7 -6.57 97.67 0.8 -7.59 77.64 ...

Page 13

Freq S11 S11 (GHz) (dB) (ang) 4.1 -2.59 -149.03 4.2 -2.06 -159.71 4.3 -1.67 -169.08 4.4 -1.39 -177.35 4.5 -1.17 175.37 4.6 -1.02 168.83 4.7 -0.90 162.92 4.8 -0.81 157.57 4.9 -0.73 152.62 5.0 -0.68 147.95 5.1 -0.64 143.58 5.2 ...

Page 14

... C20 C16 C18 MGA-43228 (B) Vbyp Vc 0V (normal gain) +2.1V +5V (low gain) Pins pointing out of the page (Unit is on top Figure 35. Demonstration board application circuit for MGA-43228 module 14 Vdd3 +5V C9 C10 C11 C8 C12 RFOUT C27a C28 C27b R1 RO4350 C21 DK 3.48 C22 H 10mil W 0 ...

Page 15

Application Schematic Figure 36. Application schematic in demonstration board Notes normal gain mode operation, Vbyp = 0V. Vc1, Vc2 and Vc3 are bias pins that are used to set the bias conditions to the 3 internal gain stages ...

Page 16

PCB Land Pattern and Stencil Outline 0.300 0.250 0.250 0.600 3.600 PCB Land Pattern (Top View) 0.250 0.250 C'fer 0.300 X 45° 0.675 1.520 3.240 Combined PCB Land Pattern and Stencil Outline 16 0.250 ø 0.300 C'fer 0.300 X 45° ...

Page 17

... Note : 1. All dimensions are in milimeters 2. Dimensions are inclusive of plating 3. Dimensions are exclusive of mold flash and metal burr. Part Number Ordering Information Part # Qty MGA-43228-BLKG 100 MGA-43228-TR1G 1000 17 0.203 Ref 0.000-0.05 0.85±0.05 Side View PIN #1 IDENTIFICATION CHAMFER 0.400 X 45° 0.40±0.050 3.60± ...

Page 18

Device Orientation REEL USER FEED DIRECTION COVER TAPE Tape Dimensions 18 USER FEED DIRECTION 43228 43228 YYWW YYWW CARRIER XXXX XXXX TAPE TOP VIEW 43228 YYWW XXXX END VIEW ...

Page 19

Reel Dimensions (7” reel) SEE DETAIL "X" RECYCLE LOGO FRONT VIEW R10.65 R5.2 Slot hole ‘b’ EMBOSSED RIBS RAISED: 0.25mm, WIDTH: 1.25mm BACK VIEW For product information and a complete list of distributors, please go to our web site: Avago, ...

Related keywords