Antenna ASNG-2
The Antenna ASNG-2 is an active geodesic antenna designed for use with GLONASS/GPS surveying equipment, featuring rear radiation cut-off.
Key figurescomparable across the catalogue
- Mass
- 1.5 kg
- Largest dimension
- 178 mm
- Design life
- 3 years
- Lead time
- 3 months
- TRL
- 9
Normalised to common units so this product can be compared with others in its category. The supplier's own wording is below.
As published by the supplier
- Purpose
- As part of the GLONASS / GPS surveying equipment. Work through space navigation systems (SNS).
- Year of release
- 2017
- Design life
- 3 years
- Lead time
- 3 months
- Flight qualification of the product
- No
- Possibility to adapt the product to customer requirements
- Yes
- Frequency range
- 1571-1610 MHz
- Output vswr in the frequency range
- 1.5
- Gain
- 35.0 dB
- Lna noise ratio
- 3.0 dB
- Dimensions
- 91.5khØ178
- Supply voltage
- 3.3; 5.0
- Consumption current, ma, no more
- 30 at 3.3 V 35 at 5.0 V
- Operating temperature
- from -50 to +55 °C
- Weight according to technical specifications
- 1.5 kg
- Letter
- O
About
The Antenna ASNG-2 is an active geodesic antenna specifically designed to function as part of GLONASS/GPS surveying equipment. Its primary purpose is to work through space navigation systems (SNS). The antenna was released in 2017 and comes with a guaranteed service life of 3 years. The estimated production and delivery time is 3 months. While the product is not flight-qualified, it offers the possibility of adaptation to meet specific customer requirements. It features a frequency range of 1571-1610 MHz, an output VSWR of 1.5, and a gain of 35.0 dB. The Low Noise Amplifier (LNA) noise ratio is 3.0 dB. It operates on supply voltages of 3.3V or 5.0V, with consumption currents of no more than 30 mA at 3.3V and 35 mA at 5.0V, respectively. The operating temperature range is from -50°C to +55°C. The antenna’s dimensions are 91.5 x Ø178 mm and it weighs 1.5 kg.
Documentation
No public datasheet yet — request the datasheet / ICD from the supplier.