atf-50189 Avago Technologies, atf-50189 Datasheet

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atf-50189

Manufacturer Part Number
atf-50189
Description
Atf-50189 Gaas Field Effect
Manufacturer
Avago Technologies
Datasheet

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ATF-50189
Enhancement Mode
SOT 89 Package
Data Sheet
Description
Avago Technologies’s ATF-50189 is a high linearity,
medium power, low noise E-pHEMT FET packaged in
a low cost surface mount SOT89
bination of low noise figure and high output IP3 at
the same bias point makes it ideal for receiver and
transmitter application. Its operating frequency range
is from 400 MHz to 3.9 GHz.
The ATF-50189 is ideally suited for Cellular/PCS and
WCDMA wireless infrastructure, WLAN, WLL and
MMDS application, and general purpose discrete
E-pHEMT amplifiers which require high linearity and
power. All devices are 100% RF and DC tested.
Notes:
1. Enhancement mode technology employs a single positive V
2. Refer to reliability datasheet for detailed MTTF data
3. Conform to JEDEC reference outline MO229 for DRP-N
4. Linearity Figure of Merit (LFOM) is OIP3 divided by DC bias power.
Pin Connections and Package Marking
Notes:
Package marking provides orientation and
identification:
“0G” = Device Code
“x” = Month code indicates the month of
D = Drain
S = Source
G = Gate
eliminating the need of negative gate voltage associated with
conventional depletion mode devices.
manufacture.
D
G
Bottom View
OGX
Top View
S
S
G
D
[1]
[3]
Pseudomorphic HEMT in
package. The com-
gs
,
Features
• High Linearity and P1dB
• Low Noise Figure
• Excellent uniformity in product specifications
• SOT 89 standard package
• Point MTTF > 300 years
• MSL-1 and lead-free
• Tape-and-Reel packaging option available
Specifications
2 GH, 4.5V, 280 mA (Typ.)
• 45 dBm Output IP3
• 29 dBm Output Power at 1dB gain compression
• 1.1 dB Noise Figure
• 15.5 dB Gain
• 62% PAE at P1dB
• LFOM
Applications
• Front-end LNA Q2 and Q3, Driver or Pre-driver Amplifier
• Driver Amplifier for WLAN, WLL/RLL and MMDS
• General purpose discrete E-pHEMT for other high linearity
ESD Machine Model (Class A)
ESD Human Body Model (Class 1C)
Refer to Avago Application Note A004R: Electrostatic Discharge
Damage and Control.
for Cellular/PCS and WCDMA wireless infrastructure
applications
applications
[4]
14 dB
Attention:
Observe precautions for handling electrostatic
sensitive devices.
[2]

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atf-50189 Summary of contents

Page 1

... Its operating frequency range is from 400 MHz to 3.9 GHz. The ATF-50189 is ideally suited for Cellular/PCS and WCDMA wireless infrastructure, WLAN, WLL and MMDS application, and general purpose discrete E-pHEMT amplifiers which require high linearity and power ...

Page 2

... ATF-50189 Absolute Maximum Ratings Symbol Parameter [2] V Drain–Source Voltage DS [2] V Gate–Source Voltage GS [2] V Gate Drain Voltage GD [2] I Drain Current DS I Gate Current GS [3] P Total Power Dissipation diss P RF Input Power in T Channel Temperature CH T Storage Temperature STG ATF-50189 Electrical Specifications T = 25° ...

Page 3

Input Matching Circuit Input DUT Γ_mag=0.80 Γ_ang=-136.6° (0.9 dB loss) Figure 1. Block diagram of the 2 GHz production test board used for NF, Gain, OIP3 , P1dB, PAE and ACLR measurements. This circuit achieves a trade-off between optimal OIP3, ...

Page 4

Gamma Load and Source at Optimum OIP3 and P1dB Tuning Conditions The device’s optimum OIP3 and P1dB measurements were determined using a load pull system at 4.5V, 280 mA quiesent bias. [1] Typical Gammas at Optimum OIP3 Freq Gamma Source ...

Page 5

... ATF-50189 Typical Performance Curves (at 25°C unless specified otherwise) Tuned for Optimal OIP3 4.5V, Ids = 280 mA, Operating Frequency = 2 GHz 3.5V 34 4.5V 5. 120 160 200 240 280 320 360 400 440 Ids (mA) Figure 7. OIP3 vs. Ids and Vds at 2 GHz. ...

Page 6

... ATF-50189 Typical Performance Curves, continued Tuned for Optimal OIP3 4.5V, Ids = 280 mA, Operating Frequency = 900 MHz 3.5V 4.5V 5. 120 160 200 240 280 320 360 400 440 Ids (mA) Figure 11. OIP3 vs. Ids and Vds at 900 MHz. 22.2 22 21.8 21.6 21.4 21.2 3.5V 4.5V 5.5V 21 20.8 120 160 200 240 280 320 360 400 ...

Page 7

... ATF-50189 Typical Performance Curves, continued Tuned for Optimal OIP3 4.5V, Ids = 280 mA, Over Temperature and Frequency -40°C 32 25°C 85° 0.5 1 1.5 2 2.5 3 3.5 4 FREQUENCY (GHz) Figure 15. OIP3 vs. Temperature and Frequency at optimum OIP3 -40°C 25°C 6 85°C ...

Page 8

... ATF-50189 Typical Performance Curves, continued Tuned for Optimal P1dB 4.5V, Ids = 280 mA, Operating Frequency = 2 GHz 3.5V 34 4.5V 5. 120 160 200 240 280 320 360 400 440 Ids (mA) Figure 19. OIP3 vs. Ids and Vds at 2 GHz. 15.4 15.2 15 14.8 14.6 14.4 14.2 3.5V 14 4.5V 5.5V 13.8 13.6 120 160 200 240 280 320 360 400 ...

Page 9

... ATF-50189 Typical Performance Curves, continued Tuned for Optimal P1dB 4.5V, Ids = 280 mA, Operating Frequency = 900 MHz 3.5V 32 4.5V 5. 120 160 200 240 280 320 360 400 440 Ids (mA) Figure 23. OIP3 vs. Ids and Vds at 900 MHz. 21 20.8 20.6 20.4 20.2 20 19.8 19.6 3.5V 4.5V 19.4 5.5V 19.2 19 120 160 200 240 280 320 360 400 ...

Page 10

... ATF-50189 Typical Performance Curves, continued Tuned for Optimal P1dB 4.5V, Ids = 280 mA, Over Temperature and Frequency -40°C 25°C 85° 0.5 1 1.5 2 2.5 3 3.5 4 FREQUENCY (GHz) Figure 27. OIP3 vs. Temperature and Frequency at optimum P1dB -40°C 25°C 6 85°C ...

Page 11

... ATF-50189 Typical Scattering Parameters at 25°C, V Freq GHz Mag. Ang. dB 0.1 0.923 -133.2 31.0 0.2 0.919 -158.7 25.6 0.3 0.919 -169.4 22.2 0.4 0.917 -176.1 19.7 0.5 0.916 178.5 17.7 0.6 0.916 174.5 16.2 0.7 0.917 170.9 14.9 0.8 0.918 167.5 13.9 0.9 0.920 164.1 12.9 1.0 0.921 161.0 12.1 1.1 0.922 159.6 11.7 1.2 0.922 158.1 11.3 1.3 0.922 155.4 10.6 1.4 0.919 152.6 9.9 1.5 0.918 150.2 9 ...

Page 12

... ATF-50189 Typical Scattering Parameters at 25°C, V Freq GHz Mag. Ang. dB 0.1 0.924 -131.8 31.0 0.2 0.918 -157.9 25.6 0.3 0.918 -168.9 22.2 0.4 0.917 -175.7 19.7 0.5 0.914 178.9 17.7 0.6 0.914 174.8 16.2 0.7 0.916 171.1 14.9 0.8 0.917 167.7 13.9 0.9 0.918 164.3 12.9 1 0.918 161.2 12.1 1.1 0.919 159.8 11.7 1.2 0.920 158.3 11.3 1.3 0.920 155.6 10.6 1.4 0.917 152.7 9.9 1.5 0.916 152.3 9 ...

Page 13

... ATF-50189 Typical Scattering Parameters at 25°C, V Freq GHz Mag. Ang. dB 0.1 0.935 -134.4 29.1 0.2 0.932 -159.5 23.6 0.3 0.932 -170.1 20.2 0.4 0.930 -176.6 17.7 0.5 0.930 178.1 15.7 0.6 0.931 174.2 14.2 0.7 0.933 170.6 12.9 0.8 0.933 167.2 11.9 0.9 0.935 163.9 10.9 1 0.936 160.7 10.1 1.1 0.937 159.3 9.7 1.2 0.938 157.8 9.3 1.3 0.936 155.1 8.6 1.4 0.933 152.3 7.9 1.5 0.933 151.1 7 ...

Page 14

... ATF-50189 Typical Scattering Parameters at 25°C, V Freq GHz Mag. Ang. dB 0.1 0.921 -132.3 31.4 0.2 0.916 -158.2 26.0 0.3 0.917 -169.1 22.6 0.4 0.915 -175.9 20.1 0.5 0.913 178.7 18.1 0.6 0.914 174.5 16.6 0.7 0.916 170.9 15.3 0.8 0.916 167.4 14.3 0.9 0.918 164.1 13.3 1 0.919 160.8 12.5 1.1 0.920 159.4 12.1 1.2 0.921 157.9 11.7 1.3 0.920 155.2 10.9 1.4 0.917 152.3 10.3 1.5 0.917 149.8 9 ...

Page 15

... ATF-50189 Typical Scattering Parameters at 25°C, V Freq GHz Mag. Ang. dB 0.1 0.922 -131.5 31.3 0.2 0.917 -157.7 25.9 0.3 0.916 -168.8 22.5 0.4 0.914 -175.7 20.1 0.5 0.912 178.8 18.1 0.6 0.913 174.7 16.5 0.7 0.915 171.0 15.3 0.8 0.916 167.6 14.2 0.9 0.918 164.1 13.3 1 0.918 161.0 12.4 1.1 0.919 159.5 12.1 1.2 0.920 158.0 11.7 1.3 0.920 155.3 10.9 1.4 0.917 152.4 10.2 1.5 0.917 150.0 9 ...

Page 16

... ATF-50189 Typical Scattering Parameters at 25°C, V Freq GHz Mag. Ang. dB 0.1 0.874 -133.9 31.3 0.2 0.902 -159.0 26.0 0.3 0.910 -169.6 22.7 0.4 0.911 -176.2 20.2 0.5 0.911 178.4 18.2 0.6 0.912 174.4 16.7 0.7 0.914 170.8 15.4 0.8 0.916 167.4 14.4 0.9 0.916 164.0 13.4 1 0.917 160.9 12.6 1.1 0.919 159.5 12.2 1.2 0.920 158.0 11.8 1.3 0.919 155.3 11.0 1.4 0.915 152.4 10.4 1.5 0.916 150.0 9 ...

Page 17

... ATF-50189 Typical Scattering Parameters at 25°C, V Freq GHz Mag. Ang. dB 0.1 0.926 -134.5 29.5 0.2 0.928 -159.6 24.1 0.3 0.930 -170.1 20.7 0.4 0.928 -176.7 18.2 0.5 0.927 178.0 16.2 0.6 0.929 174.0 14.7 0.7 0.930 170.4 13.4 0.8 0.932 167.0 12.4 0.9 0.933 163.6 11.5 1 0.934 160.4 10.6 1.1 0.935 159.0 10.2 1.2 0.936 157.5 9.8 1.3 0.935 154.7 9.1 1.4 0.932 151.9 8.4 1.5 0.931 149.4 7 ...

Page 18

... ATF-50189 Typical Scattering Parameters at 25°C, V Freq GHz Mag. Ang. dB 0.1 0.927 -132.6 30.4 0.2 0.922 -158.4 25.0 0.3 0.921 -169.2 21.6 0.4 0.919 -176.0 19.2 0.5 0.918 178.6 17.2 0.6 0.919 174.6 15.6 0.7 0.919 171.0 14.4 0.8 0.920 167.6 13.3 0.9 0.922 164.2 12.4 1 0.923 161.1 11.5 1.1 0.924 159.7 11.2 1.2 0.924 158.2 10.8 1.3 0.924 155.5 10.0 1.4 0.921 152.6 9.4 1.5 0.920 150.2 8 ...

Page 19

... ATF-50189 Typical Scattering Parameters at 25°C, V Freq GHz Mag. Ang. dB 0.1 0.925 -134.2 30.4 0.2 0.923 -159.4 25.0 0.3 0.924 -170.0 21.6 0.4 0.923 -176.6 19.1 0.5 0.922 178.1 17.1 0.6 0.923 174.1 15.6 0.7 0.924 170.5 14.3 0.8 0.925 167.1 13.3 0.9 0.927 163.6 12.3 1 0.928 160.5 11.5 1.1 0.929 159.1 11.1 1.2 0.929 157.6 10.7 1.3 0.929 154.8 10.0 1.4 0.925 152.0 9.3 1.5 0.926 149.5 8 ...

Page 20

... Device Models, PCB Layout and Stencil Device Refer to Avago’s Web Site: www.avagotech.com/view/rf Ordering Information Part Number No. of Devices ATF-50189-TR1 3000 ATF-50189-BLK 100 SOT 89 Package Dimensions COMMON DIMENSIONS Millimeters SYMBOL MIN. NOM. MAX. A 1.40 1.50 1.60 B 0.44 0.50 0.56 B1 0.36 0.42 0.48 C 0.35 0.40 0.44 D 4.40 4.50 4. ...

Page 21

... 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, Limited in the United States and other countries. Data subject to change. Copyright © 2007 Avago Technologies, Limited. All rights reserved. Obsoletes 5989-3790EN AV02-0049EN January 3, 2007 OGX ...

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