Customization: | Available |
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Accuracy Grade: | 0.1deg |
IP Rating: | IP67 |
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INS500-A0 (B0) fiber-optic integrated navigation system is based on high-precision closed-loop fiber-optic gyroscope, accelerometer and high-end GNSS receiving board, and is realized through multi-sensor fusion and navigation calculation algorithm. It provides high-precision attitude, speed, position and other information to meet the requirements of high-precision measurement and control. Its main application fields include:
The INS500-A0 (B0) optical fiber integrated navigation system is divided into two configurations, INS500-A0 (B0) A0 and INS500-A0 (B0) B0. The electrical, structure and interface are completely the same, but the accuracy is different.
It is realized by multi-sensor fusion and navigation calculation algorithm, and provides high precision navigation attitude, speed,degree, position and other information to meet the requirements of high-precision measurement and control.
Typical applications:
Large uav reference inertial navigation, marine compass, self-propelled gun orientation, vehicle-mounted positioning and orientation, high precision mobile measurement, high precision stable platfor.
Project | Test conditions | A0 indicator | B0 indicator | |
Positioning accuracy | GNSS Valid, Single Point | 1.2m(RMS) | 1.2m(RMS) | |
GNSS Valid, RTK | 2cm+1ppm(RMS) | 2cm+1ppm(RMS) | ||
Position hold (GNSS failure) | 1.5nm/h(50%CEP), 5nm/2h(50%CEP) |
0.8nm/h(CEP), 3.0nm/3h(CEP) |
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Heading accuracy | Self-seeking north | 0.1 ° × sec (Lati), Lati is latitude (RMS), 10 min | 0.06 ° × sec (Lati), 5min alignment of stationary base; 0.03 ° × sec (Lati), 10 min alignment of stationary base; Where Lati denotes the latitude (RMS). |
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Heading keeping (GNSS failure) | 0.05°/h(RMS), 0.1°/2h(RMS) |
0.02°/h(RMS), 0.05°/3h(RMS) |
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Attitude accuracy | GNSS is valid | 0.03°(RMS) | 0.01°(RMS) | |
Attitude hold (GNSS failure) | 0.02°/h(RMS), 0.06°/2h(RMS) |
0.01°/h(RMS), 0.03°/3h(RMS) |
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Speed accuracy | GNSS valid, single point L1/L2 | 0.1m/s(RMS) | 0.1m/s(RMS) | |
Speed hold (GNSS failure) | 2m/s/h(RMS), 5m/s/2h(RMS) |
0.8m/s/h(RMS), 3m/s/3h(RMS) |
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Fiber optical Gyroscope |
Measuring range | ±400°/s | ±400°/s | |
Zero bias stability | ≤0.02°/h | ≤0.01°/h | ||
Quartz flexibility Accelerometer |
Measuring range | ±20g | ±20g | |
Zero bias stability | ≤ 50 µg (10 s average) | ≤ 20 µg (10 s average) | ||
Communication interface | RS422 | Route 6 Baud rate 9.6 kbps ~ 921.6 kbps, default 115.2k bps Frequency up to 1000Hz (raw data), default 200Hz |
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RS232 | Route 1 Baud rate 9.6 kbps ~ 921.6 kbps, default 115.2k bps Frequency up to 1000Hz (raw data), default 200Hz |
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Electrical characteristics | Voltage | 24~36VDC | ||
Power consumption | ≤30W | |||
Structural characteristics | Size | 199mm×180mm×219.5mm | ||
Weight | 6.5kg | ≤ 7.5kg (non-aviation) ≤ 6.5kg (optional for aviation) |
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Use environment | Operating temperature | -40ºC~+60ºC | ||
Storage temperature | -45ºC~+65ºC | |||
Vibration with shock absorption) | 5~2000Hz,6.06g | |||
Shock (with shock absorption) | 30g,11ms | |||
Reliability | Life span | > 15 years | ||
Continuous working time | >24h |
Shenzhen Firepower Control Technology Co., Ltd, was established in 2013 and registered in Shenzhen, The company is high-tech enterprise dedicated to R&D and production of quartz accelerometer, FOG, IMU, INS, Angle testing equipment and other products. The company has invested in and built multiple automated production lines in various locations such as Xi'an, Shenzhen, and Zhuhai. These production lines cover the manufacturing of fiber optic gyroscopes, MEMS inertial navigation systems, quartz accelerometers, electronic countermeasure communication products, and inertial simulation equipment. As an independent innovation-oriented high-tech enterprise, Firepower possesses China's leading production conditions for inertial navigation and electronic countermeasure products. The company always prioritizes scientific research and technological innovation, as well as self-reliance and control. It is committed to developing a series of autonomous navigation products with independent intellectual property rights, which are widely applied in the autonomous navigation perception fields of unmanned aerial vehicles, vehicles, and ships. With its self-developed array algorithm as the core technology, the company has developed a series of inertial navigation products that can provide users' carriers with key information such as current position, three-dimensional attitude, and speed, thereby achieving precise autonomous navigation control.
Q: What is your lead time?
A: Stock: 5-15 days in general. No stock: 15-30 days after samples confirmed. Or please contact us by email for specific lead time based on your order quantities.
Q: How does your factory do regarding quality control?
A: Quality is priority. We always attach great importance to quality control from the very beginning to the end:
1) We produce product according agreed technical requirements strictly;
2) We do full tests according to test methology;
3) We have a professional QA/QC team to ensure the quality.
Q: Do you accept OEM or ODM order?
A: Yes, we are professional manufacturer and we are capable for providing both OEM and ODM service by customer's needs.
Q: What are the terms of delivery?
A: We can accept EXW, FOB, CIF, etc. You can choose one which is the most convenient for you.
Q: What is the payment way?
A: TT, L/C, Pay later, West Union, Online Bank Payment.
Q: What is warranty?
A: Standardly 12 months and negotiable for longer warranty.
Q: What is the packing quality?
A: For sample order, we use carton box with sponge, and batch order, we use wooden box.
Q: What is final price?
A: For standard product, price is as in the price table; For customized product, price by checking with sales, so as to different quantity needs.
Q: How to choose product?
A: We are professional manufacturer, we could provide standard product on shelf, or products by customer's specific requirements:
1) Choose from MadeinChnia platform or website;
2) Customer raise some certain different technical requirements based on standard products;
3) Customer provide specific and comprehensive technical requirements to sales to evaluate;
4) Customer explain application to sales to provide suitable products;