LEO Satellite-Borne Phased Array Payloads

Engineered for Low Earth Orbit (LEO) constellations. Our space-borne active phased arrays feature highly integrated Tile-Type AoB (Antenna-on-Board) packaging and high-efficiency solid-state RF power networks to deliver agile, high-density SATCOM telemetry.

Spaceflight Reality Check

Tile-Type AoB Packaging

Low-profile active packaging integrated with highly reliable vertical interconnection technology to survive launch vibrations.

In-Orbit Flight Heritage

Backed by over 20 successful in-orbit flight verifications, ensuring vacuum-level reliability and extreme radiation tolerance.

SWaP-C Optimization

Aggressively downscaled form factors (profiles down to 32.6mm thickness) to maximize payload capacity for CubeSats and SmallSats.

High-Order Modulation

Precision RF linearity engineered to cleanly support high-speed telemetry schemes including 16QAM, 8PSK, and QPSK data downlinks.

LEO Ka-band 4-beam active phased array antenna Ka-Band Satellite Payload

Ka band 4-beam Phased Array

MULTI-BEAM SATCOM

Space-grade Ka-band active beam steering array. Integrates high-efficiency Solid-State Power Amplifier (SSPA) nodes to empower high-density multi-beam remote sensing and space communication constellations.

Aerospace Engineer's Take

Generating 4 independent tracking beams allows a single LEO payload to maintain simultaneous links with multiple ground stations or companion satellites, vastly increasing network throughput.

Band
Tx: 17.7-21.2GHz Rx: 27.5~31GHz
AEIRP
48 dBW
G/T
5dB/k
Tx Power consumption
450W
Tx Weight
8kg
Rx Power consumption
120W
Rx Weight
4.5kg
Beam Scanning
≥56°
AR
≤4dB
SLL
≥16dBc
LEO Ka-band 8-beam active antenna array Ka-Band Satellite Payload

Ka band 8-beam Phased Array

HIGH-CAPACITY SATCOM

High-capacity satellite payload subsystem utilizing exceptionally linear solid-state power amplifier architectures. Engineered to guarantee signal integrity for mainstream high-order modulation tracking.

Aerospace Engineer's Take

Strict RF linearity constraints make this 8-beam array fully capable of handling complex 1.2/1.5 Gbps (16QAM), 900 Mbps (8PSK), and 600 Mbps (QPSK) broadband telemetry downlinks from orbit.

Band
Tx: 17.7~21.2GHz Rx: 27.5~31GHz
AEIRP
51 dBW
G/T
6.3dB/k
Tx Power consumption
620W
Tx Weight
9.4kg
Rx Power consumption
186.1W
Rx Weight
7.5kg
Beam Scanning
≥56°
AR
≤4dB
SLL
≥16dBc
LEO Satellite-Borne X-Band Data Transmission Phased Array X-Band Telemetry Payload

LEO Satellite-Borne X-Band Data Transmission Phased Array

ULTRA LOW-PROFILE

Ultra-compact, low-profile active array pairing high-efficiency GaN amplification with proprietary Tile-Type AoB packaging and vertical interconnections. Features over 20 proven in-orbit flight verifications for high-speed downlink telemetry.

Aerospace Engineer's Take

At merely 32.6mm thick and weighing under 1.7kg, this X-band transmitter dominates SWaP-C metrics for modern SmallSats and CubeSats. It provides robust 400MHz bandwidth coverage for Earth observation data dumps.

No. Item Indicator Remarks
1Center FrequencyX Band
2Bandwidth≥400MHz
3PolarizationType A: LHCP
Type B: RHCP
2 Types Available
4HPWB≥16°
5Beam ScanningPhi 0~360° Theta ≥67.5°
6Input Power-10±1dBmFlexible
7EIRP≥27.0dBW @Theta≤67.5"
8AR≤1.8dB @Theta≤67.5
10Weight (kg) (Per Unit)≤1.7kgUltra-Lightweight
11Power Consumption (Per Unit)<90WHighly Efficient
12Size170mm×170mm×32.6mmTile-Type AoB
13Power Supply42VCompatible with 28V
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