SSC-7737731200-1212-C1 ERAVANT | Alldatasheet
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Technical content
SSC-7737731200-1212-C1 Rev. 1.0 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. E-Band Transceiver Copyright © 2014 by SAGE Millimeter, Inc. Description: Model SSC-7737731200-1212-C1 is an E-Band transceiver. The transceiver has a minimum transmit output power of -30 dBm across the frequency range of 76 to 78 GHz with an IF input power of 0 dBm in the frequency range of 550 to 950 MHz. The typical receive conversion loss is -12 dB with a typical RF input power of -20 dBm in the frequency range of 76 to 78 GHz and a IF output frequency range of 550 to 950 MHz. The required LO power and frequency range are +5 dB and 19.0 to
19.5 GHz typically for both the transmit and receive
functions. The LO port is equipped with a female K connector, the IF ports are both female SMA connectors and the RF port is a WR-12 waveguide with a UG-387/U flange. Although the module is offered in a monostatic version, bi-static version is available per request. Features: Compact Size High Performance Low Cost Fully Integrated Module Applications: Radar Target Systems Communication Systems Radar Systems Electrical Specifications: Parameter Minimum Typical Maximum TX RF Output Frequency 76 GHz 78 GHz TX RF Output Power -30 dBm TX IF Input Frequency 550 MHz 950 MHz TX IF Input Power 0 dBm RX RF Input Frequency 76 GHz 78 GHz RX RF Input Power -20 dBm +3 dBm RX IF Output Frequency 550 MHz 950 MHz RX Conversion Loss -12 dB LO Frequency 19.0 GHz 19.5 GHz LO Input Power +5 dBm TX Mixer DC Voltage Supply +5VDC +6 VDC TX Mixer Current Supply 2.0 mA 2.5 mA RX Mixer DC Voltage Supply +5 VDC +6 VDC RX Mixer Current Supply 2.0 mA 2.5 mA LO DC Voltage Supply +6 VDC LO Current Supply 300 mA
SSC-7737731200-1212-C1 Rev. 1.0 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. E-Band Transceiver Copyright © 2014 by SAGE Millimeter, Inc. Mechanical Specifications: Item Specification RF Port WR-12 Waveguide with UG-387/U Flange TX IF Port SMA(F) RX IF Port SMA(F) LO Port K(F) Bias Solder Pin Weight 1.5 Oz Finishing Gold Plated Outline SE-EC-ITS Block Diagram: IF1 (RX) TX/RX IF2 (TX) Σx4LO
SSC-7737731200-1212-C1 Rev. 1.0 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. E-Band Transceiver Copyright © 2014 by SAGE Millimeter, Inc. -30 -25 -20 -15 -10 550 600 650 700 750 800 850 900 950 RF Power Out (dBm) IF Frequency (GHz) Typical TX Output Power vs. IF Frequency LO Multiplier Bias: +6 VDC/300 mA, Mixer Bias: +2.9 VDC/2 mA LO Input Power: +5 dBm, IF Input Power: 0 dBm LO = 18.875 GHz LO = 19.125 GHz LO = 19.375 GHz LO = 19.625 GHz LO = 19.875 GHz LO = 20.125 GHz -14 -12 -10 550 600 650 700 750 800 850 900 950 Conversion Loss (dB) IF Frequency (GHz) Typical RX Conversion Loss vs. IF Frequency LO Multiplier Bias: +6 VDC/300 mA, Mixer Bias: +2.9 VDC/2 mA LO Input Power: +5 dBm, RF Input Power: -20 dBm RF = 75 GHz RF = 76 GHz RF = 77 GHz RF = 78 GHz RF = 79 GHz RF = 80 GHz
SSC-7737731200-1212-C1 Rev. 1.0 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. E-Band Transceiver Copyright © 2014 by SAGE Millimeter, Inc. Mechanical Outline: (Unless otherwise specified, all dimensions are in inches) Note: All data are presented using a limited sample lot. Actual data may vary unit to unit. All testing was performed under +25 ˚C case temperature. SAGE Millimeter, Inc. reserves the right to change the information presented without notice. Other mechanical configurations are available under different model number. Caution: Exceeding absolute maximum ratings shown will damage the device. The device is static sensitive. Always follow ESD rules when working with the device. Any foreign objects into the waveguide will cause performance degradation and possible device damage. The case temperature of the device shall never exceed +50˚C. Use proper Heatsink or fan if necessary.