GaAs Monolithic Designs; MMIC
Note:
This list does not include additional dies that were/are developed for specific customers under non-disclosure agreements which are in effect.
P/N
Product
| Description
| Die Layout |
S-UDC0024Vxx S-UDC0025Vxx
| Integrated wide band down converter 17-24.5GHz
| Fundamental balanced diode mixer driven by an integrated frequency tripling LO chain. 10dB conversion loss, input LO 5.3-7.5GHz @ +3 - +5dBm, IF=0.9-2.2GHz, RF=17-24.5GHz. (Tested)
| 3.7x2.5mm |
S-UDC0018Vxx S-UDC0019Vxx
| Integrated wide band up converter 17-24.5GHz
| Fundamental balanced diode mixer driven by an integrated frequency tripling LO chain. 10dB conversion loss, input LO 5.3-7.5FHz @ +3 - +5dBm, IF=0.9-2.2GHz, RF=17-24.5GHz. (Tested)
| 3.7x2.5mm |
S-UDC0028Vxx
| Application specific integrated down converter 17.7-20.7GHz
| An image reject fundamental diode mixer, driven by an integrated frequency doubling LO driver chain. Conversion loss better than 11dB including hybrid coupler, LO input 8.4-9.9GHz @ +5dBm (Tested)
4.5x2.6mm |
S-UC24-30 S-DC24-30
| Integrated wide band Up / Down Converter 24.5-30GHz
| A balance fundamental diode mixer driven by a frequency tripling LO chain. IF 0.9-3GHz RF 24.5-30GHz, LO 7.8-9GHz @ 0dBm, conversion loss 10dB. The integrated LNA has typical 4dB noise figure and 30dB gain. (Tested)
| 4.5x2.4mm |
S-LNA0036Vxx
| 3 stage LNA 17-24.5GHz
| 3 stage LNA, 0.25 m devices, gain > 24dB, NF < 4dB, RF frequency 17-24.5GHz, 10dB, return loss. (Tested)
| 3.5x1.3mm |
S-LNA0030Vxx
| 3 stage LNA 17.7-20.7GHz
| 3 stage LNA, 0.25 m devices, gain > 24dB, NF < 3.5dB, RF frequency 17.7-20.7GHz, 10dB return loss (Tested)
| 3.5x1.3mm |
S-PWR0037Vxx
| Power amp 22dBm 17-24.5GHz with BIT power detector
| 3 stage Power amplifier. 2x0.5mm 0.25 m output cells, +22dBm output power @1dBc, RF frequency 17-24.5GHz, 16dB small signal gain typical 10dB return loss. Power detector produces 100mV DC when output power is greater than 10dBm. (Tested)
| 3.3x2.1mm |
S-PWR1001Vxx
| Power amplifier 24.5-30GHz 20dBm with BIT detector
| 3 stage Power amplifier. 2x0.5mm 0.25 m output cells, +20dBm output power @1dBc, RF frequency 24.5-30Hz, 13dB small signal gain typical 10dB return loss. Power detector produces 100mV DC when output power is greater than 10dBm (Tested)
| 3.3x2.1mm |
S-PA24-30
| Balanced power amplifier 18dBm, 24-30GHz with BIT detector
| RF 24-30GHz, 18dBm output power, 2x0.5mm cells in a balanced configuration, 15dB output return loss (Tested)
| 3.1x2.4mm |
N/A
| S band Power Amplifier
| S band, 20W output power, 27dB gain (Tested)
| 2.5x3.3mm |
N/A
| X band power amplifier
| 2Stage, 2x600 m cell, X band, 32dBm output power, 18dB gain (Tested)
| 2.2x2mm |
N/A
| X band Multi-function chip
| T/R switching, buffers, LNA, 6bit attenuator, 6bit phase shifter, TTL control inputs (Tested)
| 5.7x3.7mm |
N/A
| X band Multi-function chip
| T/R switching, buffers, LNA, 6bit attenuator, 6bit phase shifter LNA and Tx driver (Tested)
| 5.7x3.4mm |
S-AMP1001Vxx
| 2 stage mid power driver
| RF 15-28GHz, 19dBm output power @1dBc, 10dB return loss, 15dB SSG (Tested)
| 2.4x1.3mm |
S-AMP0026Vxx
| C band buffer
| RF 5-10GHz, 10dB gain 10dB typical return loss (Tested)
| 0.9x0.9mm |
N/A
| Single stage amplifier
| RF 23-30GHz, gain 12dB (Tested)
1.7x1.1mm |
S-PWR0041V11
| Traveling wave amplifier
| DC-20GHz, gain 10dB, 12dB match (Tested)
| 2.5x1.5mm |
S-GTA0017Vxx
| Frequency Tripler
| Input 5-9GHz, conversion loss better than 8dB, 10dB return loss (Tested)
| 1.1x0.9mm |
S-GTA0027Vxx
| Frequency Doubler
| Input 8.4-9.9GHz,5dB conversion loss (Tested)
| 1.1x0.9mm |
N/A
| X band mixer
| Conversion loss <10dB, RF 8-12GHz, IF LPF @ 5GHz (Tested)
| 1.7x0.9mm |
N/A
| Ku band mixer
| Conversion loss <10dB, RF 14-18GHz, IF LPF @5GHz (Tested)
| 1.5x0.9mm |
S-UDC0034Vxx S-UDC0035Vxx
| K band mixer
| Balanced diode mixer, 10dB conversion loss, Up / Down converter, RF 17-24.5GHz IF 0.9-2.2GHz, Integrated IF LPF (Tested)
| 1.2x1.9mm |
N/A
| Ka band mixer
| Balanced diode mixer, 10dB conversion loss, Up / Down converter, RF 24.5-30GHz IF 0.9-2.2GHz, Integrated IF LPF (Tested)
| 1.5x1.5mm |
N/A
| IRM 17.7-20.7GHz
| Conversion loss < 11dB with hybrid coupler, RF 17.7-20.7GHz, IF 0.9-3GHz (Tested)
| 2.2x1.5mm |
N/A
| 6 bit phase shifter
| 6 bit, S band (Preliminary)
| 1.8x1.9mm |
N/A
| Ka Doppler sensor transmitter with integrated antenna
| VCO30 - 32 GHz 10dBm, AM, FM modulation (Tested)
| 2.2x1.6mm |
N/A
| Ka ant
| On chip, ~50deg EL, 60deg Az, 25GHz, 7% BW (Tested)
| 2.2x1.6mm |
N/A
| DC-16GHz 5.5 bit Digital Attenuator
| 6 bit, DC - 16GHz, IL 2.7dB, 0.5, 1, 2, 4, 8, 8 dB bits (Tested)
| 1.4x1.6mm |
N/A
| X-band 6 bit Digital Phase Shifter
| 6 bit, X-band digital phase shifter, 5.6deg LSB, monotonic (Tested)
| 1.4x1.6mm |
N/A
| S-IF coupler
| Monolithic IF quad coupler, 0.9-1.5GHz, Insertion loss ~4dB, phase match better than 2deg, 15dB typical return loss (Tested)
| 4.5x2.4mm |
N/A
| HPF
| HPF cutoff at 15GHz, pass band insertion loss < 2dB, stop band insertion loss > 20dB, return loss 10dB (Tested)
| 0.9x0.9mm |
| BPF
| Pass band 20 -30GHz, Pass band insertion loss 2dB, Stop band insertion loss >10dB, Return loss >10dB (Tested)
| 1.2x0.7mm |
S#GTA46V11
| LPF5 versions of Bessel like LPF
| Cut off frequencies : 2.55GHz, 2.7GHz 2.85GHz, 3GHz and 3.15GHz, better than 15dB match, Group delay < 3pSec up to 4GHz (Tested)
| 1.1x0.7mm |
S#GTA47V01
| Signal Shaper
| This custom made device incorporates diodes into an LPF in order to specially shape a signal prior to the Electro-Optic modulator driver
| 1.1x0.7mm |
N/A
| Digital level translator / inverter
| Translates TTL input logic levels to switch FET control levels: 0V / -2Vp (tested)
| 0.5x0.7mm /each |
N/A
| Wideband Detector
| X-Ka broadband detector Balanced, temperature compensated with optional bias (tested)
| 3.5x1mm |
N/A
| X-band Transfer switch DPDTx2
| X-band high isolation. 1GHz BW transfer switch (tested)
| 3.5x1mm |
N/A
| Distributed Amplifier
| BW 100MHz to 18GHz, 12dB gain, 14dBm p1dBc, RL in/out < -12dB, 1dB flatness, low current version (78mA @ 3.5V) (tested)
| 1.9x1.7mm |
| | |
Note:
This list does not include additional dies that were/are developed for specific customers under non-disclosure agreements which are in effect.
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