SBL-3333733030-2828-E1 ERAVANT | Alldatasheet

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Technical content

SBL-3333733030-2828-E1 Advanced www.sagemillimeter.com | 3043 Kashiwa Street, Torrance, CA 90505 Phone: 424-757-0168 | Fax: 424-757-0188 | Email: sales@sagemillimeter.com Page | 1 SAGE Millimeter, Inc. Ka-Band Low Noise Amplifier, 33 to 37 GHz, 30 dB Gain, 3 dB NF Copyright © 2019 by SAGE Millimeter, Inc. Description: Model SBL-3333733030-2828-E1 is a low noise amplifier with a typical small signal gain of 30 dB and a nominal noise figure of 3 dB across the frequency range of 33 to 37 GHz. The input and output port configurations are both WR-28 Uni-Guide™ waveguides. Other port configurations, such as K connectors, are also available under different model numbers. Features:

  • Full Waveguide Band Operation
  • State-of-the-Art Noise Figure
  • Good Gain Flatness Applications:
  • 5G Systems
  • Radar Systems
  • Communication Systems
  • Low Noise Receivers Electrical Specifications: Parameter Minimum Typical Maximum Frequency 33 GHz 37 GHz Gain 30 dB Noise Figure 3 dB P1dB +10 dBm Pin -15 dBm Input Return Loss 10 dB Output Return Loss 10 dB DC Voltage +8 VDC +16 VDC DC Supply Current 150 mA Specification Temperature +25 ˚C Operating Temperature 0 ˚C +50 ˚C Mechanical Specifications: Item Specification Input Port WR-28 Uni-Guide™ Waveguide with UG-599/U Compatible Flange Output Port WR-28 Uni-Guide™ Waveguide with UG-599/U Compatible Flange Bias Solder Pin Case Material Aluminum Finish Gold Plated Weight 2.0 Oz Outline BG-SA-2

SBL-3333733030-2828-E1 Advanced www.sagemillimeter.com | 3043 Kashiwa Street, Torrance, CA 90505 Phone: 424-757-0168 | Fax: 424-757-0188 | Email: sales@sagemillimeter.com Page | 2 SAGE Millimeter, Inc. Ka-Band Low Noise Amplifier, 33 to 37 GHz, 30 dB Gain, 3 dB NF Copyright © 2019 by SAGE Millimeter, Inc. -30 -20 -10 33 33.5 34 34.5 35 35.5 36 36.5 37 -30 -20 -10 Gain (dB) Frequency (GHz) Return Loss (dB) Typical Gain and Return Loss vs. Frequency Bias: +8 VDC/150 mA Gain Input Return Loss Output Return Loss 0.5 1.5 2.5 3.5 4.5 33 33.5 34 34.5 35 35.5 36 36.5 37 Noise Figure (dB) Frequency (GHz) Typical Noise Figure vs. Frequency Bias: +8 VDC/150 mA

SBL-3333733030-2828-E1 Advanced www.sagemillimeter.com | 3043 Kashiwa Street, Torrance, CA 90505 Phone: 424-757-0168 | Fax: 424-757-0188 | Email: sales@sagemillimeter.com Page | 3 SAGE Millimeter, Inc. Ka-Band Low Noise Amplifier, 33 to 37 GHz, 30 dB Gain, 3 dB NF Copyright © 2019 by SAGE Millimeter, Inc. Mechanical Outline: (Unless otherwise specified, all dimensions are in inches [millimeters]) Note:

  • All data presented is collected from a sample lot. Actual data may vary unit to unit.
  • All testing was performed under +25 ˚C case temperature.
  • The amplifier employs SAGE Millimeter’s trademarked and patent pending technology, Uni- Guide™, as its waveguide interfaces. The orientation of the input and the output waveguides can be specified through corresponding model numbers. For example, the model number for a horizontal output waveguide configuration would be SBL-3333733030-2828H-E1 instead of the default SBL-3333733030-2828-E1 which indicates vertical orientation output.
  • Other mechanical configurations are available under different model numbers.
  • SAGE Millimeter, Inc. reserves the right to change the information presented without notice. Caution:
  • Exceeding absolute maximum ratings shown will damage the device.
  • Exceeding the maximum bias voltage of +16 VDC will cause amplifier overheating and result the instability.
  • The device is static sensitive. Always follow ESD rules when working with the device.

SBL-3333733030-2828-E1 Advanced www.sagemillimeter.com | 3043 Kashiwa Street, Torrance, CA 90505 Phone: 424-757-0168 | Fax: 424-757-0188 | Email: sales@sagemillimeter.com Page | 4 SAGE Millimeter, Inc. Ka-Band Low Noise Amplifier, 33 to 37 GHz, 30 dB Gain, 3 dB NF Copyright © 2019 by SAGE Millimeter, Inc.

  • The case temperature of the device shall never exceed +50 ˚C. Use proper heatsink or fan if necessary.
  • Any foreign objects in the waveguide will cause performance degradation and may damage the device.