Description
Key features
IO ports:
Every channel individual RF input
External reference frequency input (TCXO)
USB 3.0 output
On-board reference frequency sources:
10 MHz 0.28ppm high-stability TCXO
Additional modules:
1 to 4 RF splitter
2 to 4 RF splitter
4-channel RF preselector
Comprehensive software and manual:
GUI for NT1065 registers access (Windows 7/8/8.1/10 and Linux Ubuntu 16.04 compatible)
GUI for USB3 data capture
Configuration examples
Complete NT1065 user guide
Database of reference design
Related Documents
NT1065_USB3_documentation_v1.41.zip
NT1065_additional_modules_v1.08.pdf
NT1065_dump_files
RF_Splitter_1_to_5_v1.7.pdf
Related Products
4-Channels RF FE IC, 2 PLLs or 1 PLL
GPS/GLONASS/Galileo/BeiDou/NavIC/QZSS
L1/L2/L3/L5/E1/E5/E6/B1/B2/B3
10x10mm QFN88 package
Status: mass production
Datasheet of NT1065 Compare with other ICs
The NT1065 chip has reached the end of its production cycle, and the compatible pin-to-pin replacement is now the NT1068 chip. More information can be found at: NT1068
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NT1065_FMC2 is a FPGA Mezzanine Card intended to demonstrate performance and capabilities of NT1065: 4-channel GPS/GLONASS/Galileo/BeiDou/NavIC/ QZSS L1, L2, L3, L5, E1, E5a, E5b, E6, B1, B2, B3 band RF Front End. All outputs and controls are routed to FMC connector, which allows to mount FPGA Mezzanine Card to any compatible FPGA to build your system prototype with the platform you got used to work with.
NT1065_FMC description
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NT1065_EVK2 is an evaluation platform for performance and capabilities demonstration of NT1065: 4-channel GPS/GLONASS/Galileo/BeiDou/NavIC/QZSS L1, L2, L3, L5, E1, E5a, E5b, E6, B1, B2, B3 band RF Front End. It is suitable the most for in-lab examining with measurement equipment like spectrum analyzer, oscilloscope, network analyzer and etc, but also it has connectors for wiring to external development platforms.
NT1065_EVK description
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The antenna part adopts the multi-feed design scheme to realize the coincidence of the phase center and the geometric center to minimize the influence of the antenna on the surveying deviation.
The high gain of antenna element and wide beam width provide the effect of receiving a signal with a low elevation angle, and can still receive the satellite normally in some cases with serious occlusion.
It can effectively reduce the influence of multipath on the surveying accuracy.
Waterproof and anti UV covers, increasing the reliability for long term field work of antennas.
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