SLM-20T
SLM-20T is High Linearity Low Noise Amplifier Module manufactured by Sirenza Microdevices.
Description
Sirenza Microdevices SLM-20T amplifier is a low noise amplifier module operating in the 1700-2000 MHz frequency band. This device has been optimized to serve high linearity base station applications where a high intercept point is required with low noise figure. The SLM-20T uses PHEMT device technology and internal bias circuitry to yield a high performance product with proven reliability. Internal RF matching is also included on both the input and output to provide an easy to implement, 50 Ohm circuit block. No additional external ponents are required. Optimized performance over narrower bands is available for custom specified orders. Contact the sales team for information.
1.2 1
NF (d B)
Preliminary
1700-2000 MHz High Linearity Low Noise Amplifier Module
NF, S11 vs. Frequency
0 -5
S11 (d B)
Product Features
Very Low Noise Figure: 0.9 d B High OIP3: +30 d Bm at 1.9 GHz Custom Specified Product Options Available 50 W I/O Match, No External ponents Single Supply Operation, Self Biased Robust 2000V ESD (HBM), Class 2
0.8 0.6 0.4 0.2 0 1.7 1.8 1.9 2 2.1 2.2
Frequency (GHz) NF S11
-10 -15 -20 -25 -30
PCS, DCS1800, CDMA, W-CDMA receivers
U nits GHz d B Min. 1.7 Ty p. Max. 2.0
Sy mbol Fo S 21 S11 S 22 NF OIP3 P 1d B S 12
Parameters: Test C onditions: Z0 = 50 Ohms, Vdd = 5V, Ta = 25°C , Ty p data shown for 1.9 GH z Frequency Range Gai n Input Return Loss Output Return Loss Noi se Fi gure (f = 1.9 GHz)
15.1 -18 -15 0.9 30 17.7 -20 5
16.5 d B d B
Output Thi rd Order Intercept Poi nt (Pout/Tone = 0 d Bm, Tone spaci ng = 1 MHz) Output Power at 1d B C ompressi on
Reverse Isolati on
V dd
Idd w w th 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...