SBL-2634033030-2828-E1 ERAVANT | Alldatasheet
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Technical content
SBL-2634033030-2828-E1 Rev 1.2 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. Low Noise Amplifier, 26.5 to 40 GHz, 30 dB Gain, 3 dB NF Copyright © 2018 by SAGE Millimeter, Inc. Description: Model SBL-2634033030-2828-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 26.5 to 40 GHz. The DC power requirement for the amplifier is +8 VDC/150 mA. The RF connectors are WR-28 Uni-Guide™ waveguides. Other port configurations, such as K connectors for either the input or output port, are also available under different model numbers. Features:
- Full Band Operation
- State-of-the-Art Noise Figure
- High Gain and Good Gain Flatness Applications:
- 5G Systems
- Radar Systems
- Communication Systems
- Low Noise Receivers Electrical Specifications: Parameter Minimum Typical Maximum Frequency 26.5 GHz 40 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 +15 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-2634033030-2828-E1 Rev 1.2 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. Low Noise Amplifier, 26.5 to 40 GHz, 30 dB Gain, 3 dB NF Copyright © 2018 by SAGE Millimeter, Inc. -30 -20 -10 -30 -20 -10 Return Loss (dB) Gain (dB) Frequency (GHz) 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 Noise Figure (dB) Frequency (GHz) Typical Noise Figure vs. Frequency Bias: +8 VDC/150 mA
SBL-2634033030-2828-E1 Rev 1.2 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. Low Noise Amplifier, 26.5 to 40 GHz, 30 dB Gain, 3 dB NF Copyright © 2018 by SAGE Millimeter, Inc. Mechanical Outline: (Unless otherwise specified, all dimensions are in inches [millimeters]) Pout (dBm) Frequency (GHz) Typical Output Power vs. Frequency Bias: +8 VDC/150 mA
SBL-2634033030-2828-E1 Rev 1.2 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. Low Noise Amplifier, 26.5 to 40 GHz, 30 dB Gain, 3 dB NF Copyright © 2018 by SAGE Millimeter, Inc. 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-2634033030-2828H-E1 instead of the default SBL-2634033030-2828-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.
- 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.