Product Details
23g 2X2 MIMO Point To Multiple Point Wireless SOC Development Board
Introduction
The FDM-680X is a compact 2x2 200MW MIMO IP PtMP Wireless SOC
Development Board, designed for long-range communication and
high-data-volume airborne missions. For ultra-long-range
applications, higher power configurations, such as a 10W MIMO
model, are also available.
This system leverages FPGA architecture and supports multi-waveform
capabilities, ultra-wideband operation, and high-speed frequency
hopping in a star topology. It is capable of transmitting both data
and video across point-to-point, point-to-multipoint, and
multipoint-to-multipoint network configurations, making it ideal
for flexible and scalable communication solutions.
52*46*2.9mm size makes it the smallest OEM wideband radio module
and ideal candidate for system integration into small unmanned
systems to perform in challenging environments, like indoor
inspection of buildings or tunnels.
Advantages of Wireless SOC
Up to 100Mbps throughput Enhanced GPS performance 200MW total output power Low latency – under 15ms for video and data Optional AES128 encryption Low power consumption, typically 5Watt Range NLOS – >1km and single hop >10km air to ground Adjustable Total Output Power (-40dbm~+25dBm) Up to 64 nodes on a single frequency network Data rate upto be 100Mbps MIMO 2X2 wireless video transmitter and receiver Two versions on the transmission distance: 20km, 50km and
150km(with external PA) Designed for integration into disparate unmanned systems and
sensors
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Specification of Wireless SOC
Functions | Description | Details |
PCB Size | 46.58±0 .15mm 52.00±0.15mm 2.90±0.10mm |
RF | Frequency | 1.4Ghz: 1420-1530MHz |
600Mhz: 566-678MHz |
RF Power Level | 23dBm±2(1.4Ghz) |
23dBm±2(600MHz) |
Sensitivity | 1Mbps | 1.4Ghz(14700 frequency point) 20MHz: -102dBm 10MHz: -100dBm 5Mhz: -96dBm |
600Mhz(6200 frequency point) 20Mhz: -102dBm 10MHz: -100dBm 5MHz: -96dBm |
5Mbps | 1.4Ghz(14700 frequency point) 20MHz: -95dBm 10MHz: -87dBm 5Mhz: -85dBm |
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600Mhz(6200 frequency point) 20MHz: -95dBm 10MHz: -87dBm 5MHz: -85dBm |
Interface | UART | 3 |
HSIC | USB 2.0 High Speed |
USB | USB 2.0 High Speed |
I2C | 2 |
GPIO | 23 |
JTAG | 0 |
Antenna | 2 |
Power | VSYS | 3.7V~4.35V(4V is suggested) |
D1V8A | 1.8V Power Output |
D2V85A | 2.85V Power Output |
VCC_D3V3 | 3.3V Power Output |
5V_FEM | Powering the RF PA chip |
Master-slave node | Central Node Configuration | Any node in the network can be configured as the master node. |
Data Rate | All nodes share uplink and downlink system capacity data rate |
Capacity | Supports the number of network nodes N≥2 and up to 64 service nodes
or 63 IDLE state nodes. |
Communication Mode | Any node in the network can be configured as the master node. |
All nodes share uplink and downlink system capacity data rate |
Access | Support multiple slave nodes to access the network simultaneously. |
Data Rate | All slave nodes and master nodes share the working bandwidth in one direction. Concurrent upstream and downstream
(20Mhz, not less than 100Mbps) |
Connection Status | All nodes in the network remain connected at all times. |
Power Control | Adaptive adjust transmit power. |
Boot up | Both master node and slave nodes support preset |
Fixed Power | Fixed power configuration(modify master node only) |
Fixed Frequency | Locking frequency configuration |
Company Profile
WHO WE ARE?
IWAVE is headquartered in Shanghai. It is a high-tech
entrepreneurial company and has been engaged in the production and
R&D of mobile communications and application technology for 16
years. IWAVE focuses on the research and product development of
wireless communication technologies such as 4G, 5G (under
research), and MESH. It has established a mature product technology
system and successfully developed a series of products including
4G/5G core network and 4G/5G wireless private network series base
stations. As well as MESH wireless ad hoc network products, etc.
IWAVE communication system is designed based on LTE technology
standards. We have improved on the original LTE terminal technical
standards stipulated by 3GPP, such as physical layer and air
interface protocols, to make it more suitable for network
transmission without central base station control.
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The original standard LTE network requires the participation and
control of base stations and core networks in addition to
terminals. Now each node of our star topology network devices and
MESH network devices is a terminal node. These nodes are lighter
and retain many advantages of the original LTE technology. For
example, it has the same architecture, physical layer and subframe
as LTE. It also has LTE’s other advantages such as wide coverage,
high spectrum utilization, high sensitivity, high bandwidth, low
latency, and dynamic power control.
Compared with normal wireless link, such as wireless bridge or
other devices based on wifi standard, the LTE technology has a
subframe structure, the uplink and downlink data rate is not same.
This characteristic enable the wireless link products' application
more flexible. Because the uplink and downlink data rate can be
adjusted based on real service requirements.
In addition to the self-developed product series, IWAVE also has
the ability to integrate upstream and downstream product resources
in the industry. For example, based on self-developed 4G/5G
industry products, IWAVE integrates wireless terminal products and
industry application platforms, thereby providing terminals - base
stations - core networks - End-to-end customized products and
industry solutions for industry application platforms. IWAVE
focuses on serving domestic and foreign industry partners, such as
special industry communications fields such as park ports, energy
and chemicals, public security, special operations, and emergency
rescue.
 | IWAVE is also a manufacture in China that develops, designs and
produces industrial-grade fast deployment wireless communication
devices, solution, software, OEM modules and LTE wireless
communication devices for robotic systems, unmanned aerial vehicles
(UAVs), unmanned ground vehicles (UGVs) , connected teams,
government defense and other type communication systems. IWAVE products provide fast deployment, high throughput, strong
NLOS ability, ultra long range communication to mobile users with
no reliance on fixed infrastructure. IWAVE keeps close touch with our military Government advisors and
different field end users to constantly improve the product quality
and performance.
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HY IWAVE TEAM DETERMINED TO FOCUSE ON COMMUNICATIONS INDUSTRY?
The year 2008 was a disastrous year for China. In 2008, we suffer
from snowstorm in southern China, 5.12 Wenchuan earthquake, 9.20
Shenzhen fire accident, flood, etc. The disaster not only make us
more united but also made us realize high technology is life.
During emergency rescue, advanced high technology can save more
lives. Especially the communication system which is closely related
to the success or failure of the entire rescue. Because disaster
always destroy all the infrastructure, which make the rescue more
difficult. At end of 2008, We begin to focus on developing the rapid
deployment emergency communication system. Based on 14years of
accumulated technology and experiences, we lead localization
through reliability of equipment with strong NLOS ability, ultra
long range and stable working performance in the UAV, robotics,
vehicles wireless communication market. And we mainly supply the
fast deployment communication system to army, government agencies
and industries.
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