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ALM-11136 Datasheet(PDF) 1 Page - AVAGO TECHNOLOGIES LIMITED |
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ALM-11136 Datasheet(HTML) 1 Page - AVAGO TECHNOLOGIES LIMITED |
1 / 12 page ALM-11136 870 MHz – 915 MHz Low Noise, High Linearity Amplifier Module with Fail-Safe Bypass Feature Data Sheet Description Avago Technologies’ ALM-11136 is an easy-to-use GaAs MMIC Tower Mount Amplifier (TMA) LNA Module with low IL bypass path.The module has low noise and high linearity achieved through the use of Avago Technologies’ propri- etary 0.25 mm GaAs Enhancement-mode pHEMT process. All matching components are fully integrated within the module and the 50 ohm RF input and output pins are already internally AC-coupled. This makes the ALM-11136 extremely easy to use as the only external parts are DC supply bypass capacitors. For optimum performance at other bands, ALM-11036 (776-870 MHz), ALM-11236 (1710-1850 MHz) and ALM-11336 (1850-1980) are recom- mended. All ALM-11x36 share the same package and pin out configuration. Pin Configuration and Package Marking 7.0 x 10.0 x 1.5 mm3 36-lead MCOB Features • Very Low Noise Figure • Low Bypass IL • Good Return Loss • Fail-safe Bypass mode • High linearity performance • High isolation @LNA mode • Flat gain • GaAs E-pHEMT Technology • Single 5 V power supply • Compact MCOB package 7.0 x 10.0 x 1.5 mm3 • MSL2a Specifications 915 MHz; 5 V, 92 mA (Typical) • 15.4 dB Gain • ≥ 18 dB RL • 0.76 dB Noise Figure • 22 dBm IIP3 • 4.5 dBm Input Power at 1dB gain compression • 0.85 dB Bypass IL • ≥ 18 dB Bypass RL • ≥ 50 dB isolation @LNA mode Applications • Tower Mount Amplifier (TMA) • Cellular Infrastructure Note: Package marking provides orientation and identification “11136” = Device Part Number “WWYY” = Work week and Year of manufacture “XXXX” = Last 4 digit of Lot number Attention: Observe precautions for handling electrostatic sensitive devices. ESD Machine Model = 350 V ESD Human Body Model = 1500 V Refer to Avago Application Note A004R: Electrostatic Discharge, Damage and Control. Pin Connection 4 RF_IN 23 RF_OUT 28 EXT_P2 30 EXT_P1 33 Vdd Others GND 26 1 2 3 4 5 6 7 8 25 24 23 22 21 20 19 |
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