Description
Stonex S9II RTK GNSS GPS 220 Channels with Trimble Version Mainboard
Warranty: | One Year | Brand Name: | Stonex |
---|---|---|---|
Model Number: | S9II | Keywords: | RTK GNSS Receiver |
Channels: | 220 | GPS: | L1 C/A,L2E,L2C,L5 |
Highlight: |
bluetooth rtk gps receiver, trimble gnss receiver |
Detail Specification:
Stonex S9II RTK GNSS GPS 220 Channels with Trimble Version Mainboard
Stonex S9 II second generation is the most advanced model of RTK GNSS receiver available from Stonex. It has been designed to meet the different requests of every surveyors and applications. S9 GNSS board is able to collect a very high number of channels available for double frequency GPS and Glonass, already predisposed also for Galileo and Compass, allowing you to track more than 70 satellite at same time, so increasing accuracy and precision of your survey. It is one of the fastest and low noise board available on market. The main feature of the second generation S9 is the integration of a transmitting and receiving UHF radio together with a GSM/GPRS modem in the same instrument, this allows to be a flexible system for every surveying conditions. It has moreover an advanced class 2 Bluetooth device and internal battery, so the surveyor only needs the handheld to start its job. A big storage capacity of 8 Gb allows long data collecting, a USB cable allows easy download of data on a Pc.
Model | S9II Pro 990 with Trimble main board | ||
Satellite system | Beidou+GPS+GLONASS+ Galileo | ||
Track features | Channel | 220 | |
GPS | L1 C/A,L2E,L2C,L5 | ||
GLONASS | L1 C/A, L1P, L2 C/A(GLONASS M), L2P | ||
BDS | B1,B2 | ||
GIOVE-A | L1 BOC, E5A, E5B, E5AltBOC1 | ||
GIOVE-B | L1 CBOC, E5A, E5B, E5AltBOC1 | ||
SBAS | WASS,MSAS,ENGOS,QZSS | ||
Performance indicators | Static measurement of plane precision. | ±(2.5mm + 1ppm)RMS | |
Static measurement elevation accuracy. | ±(5mm + 1ppm)RMS | ||
RTK measures plane precision. | ±(10mm + 1ppm)RMS | ||
RTK measures elevation accuracy. | ±(20mm + 1ppm)RMS | ||
SBASPositioning (typical) | Plane precision <1m 3DRMS | ||
Elevation accuracy <5m 3DRMS | |||
Initialization time | <10s | ||
Initialization reliability | >99.99% | ||
Environmental indicators | Working temperature | – 30℃~+65℃ | |
Storage temperature | – 40℃~+80℃ | ||
Waterproof and dustproof | IP67 | ||
drop | Resistance to 2 m drop (concrete hard ground) | ||
Waterproof | Immersing 1 meter in water (30 minutes) | ||
humidity | 100% condensation resistance | ||
Memory and data | Internal Storage | Onboard 4G SD card expansion, maximum support 32G. | |
differential output | RTCM2.3,RTCM3.0,RTCM3.X,CMR,CMR+ | ||
GNSS antenna performance | The internal integrated quad-feeder microstrip antenna, zero-phase center, built-in multipath suppression plate. | ||
Wireless communications |
bluetooth | built-in,V2.0 Class2 | |
Network communication | Built-in WCDMA 3.5G network communication module;Customizable CDMA2000 3G network communication. | ||
Communication protocol | TrimTalk is interchangeable with international brand radio and can be customized with domestic hosts. | ||
UHF radio | Built-in transceiver | 0.5W/2W | |
outer launch | 5W/35W | ||
Working frequency | 410-470MHZ | ||
Physical and power characteristics. | size | φ19cm×9.9cm | |
Weight | 1.2kg | ||
Battery capacity | Single block 3400mAh | ||
keys | 2 | ||
service time | 6 hours | ||
industrial-grade controller P9 | operating system | Windows Mobile 6.5 | |
Hardware platform | AM335X frequency 1GHz | ||
onboard memory | RAM:512MB DDR3 onboard memory 4G | ||
Display | 3.7 inches Blanwiew TFT,480*640VGA resolution ratio | ||
Battery | 7.2V/3400mAH | ||
Waterproof and dustproof | IP67 | ||
Working temperature | – 30℃~+60℃ | ||
Storage temperature | – 30℃~+70℃ | ||
drop | Resistance to 2 m drop (concrete hard ground) | ||
camera | 5 megapixel autofocus. | ||
communication | Wi-Fi bluetooth /USB OTG/3.5G |
We can use the different international express company, usually, our first choice is DHL. if you have specified requirement , please inform us before the order.
EQiblybunda –
with the Balanset-1A Device
Getting the Equipment Ready
vibration sensors, optical speed sensor, magnetic base, software package, and included accessories.
Set up the instrument and connect it to your computer via USB. Verify that the software is correctly installed.
Setting Up the Sensors
Attach the vibration sensors firmly to the machine casing in areas with the highest vibration amplitude, usually close to the bearing supports.
Position the laser tachometer (phase angle sensor) so that it is aimed at the rotor. Attach reflective tape to the rotor for accurate phase angle reading.
Software Startup
Open the Balanset application on your PC.
Configure the software for either single-plane or two-plane balancing, based on the rotor’s characteristics and the desired outcome.
Operate the rotor at its intended working speed.
The program will record the vibration amplitude, rpm, and phase, providing a baseline measurement of the existing imbalance.
Trial Weight Installation
Stop the rotor and attach a trial weight at a specific location on the rotor. The weight’s mass can be specified within the software (e.g., in grams).
Restart the rotor, and the software will record the changes in vibration level and phase angle.
Computing the Compensating Weight
Based on the measured data, the software automatically calculates the correction weight parameters: mass and installation angle.
The calculated values are presented on-screen in both numerical and graphical formats.
Mounting the Compensating Weight
Install the correction weight on the rotor according to the software’s calculations.
Periodic checks can be performed to ensure the balancing procedure is effectively reducing the vibration.
Verification and Balancing Completion
With the compensating weight attached, operate the rotor and assess the level of any residual vibration.
If the vibration level is within acceptable limits (according to ISO 1940), the balancing is complete.
Should the vibration still be excessive, repeat the balancing steps, making further adjustments to the corrective weight as needed.
Generating a Documentation of the Balancing Results
All balancing results are logged and archived within the software, from which you can produce a printable report summarizing the vibration levels, compensating weight, and its installation position.
Concluding Steps and Verification
Verify the secure attachment of all balancing weights and measurement sensors.
Confirm that the rotor spins freely and quietly, without any unusual sounds or vibrations.
In cases where the rotor is integrated into a more complex system, ensure the correct operation and interaction of all related components.
This process allows for precise imbalance correction, reducing vibration and extending equipment life.
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Our website about Mining rotor balancing
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