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GPS Chipset/Module (eRide Inc.) |
OPUS One Chipset
eRide Opus One is a GPS/A-GPS receiver baseband processor with novel decoding algorithms. It is capable of working indoors and decoding low sensitivity signals down to -157dBm.
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GPS BB/RF
- Sensitivity: -157dBm
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TTFF[*1]: <4 sec (Outdoor , Open Sky)
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Accuracy: < 7m outdoor, <30 m indoor(50% CEP[*2])
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Size:BB: 7.0×7.0×0.8 mm, QFN48
RF: 5.0×5.0×0.8mm, QFN32
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OPUS III Chipset
Opus III is eRide's latest generation of GPS/AGPS receiver baseband processor. It is capable of working indoors by acquiring and tracking low sensitivity signals down to -161 dBm.
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GPS BB/RF
- Sensitivity: -161dBm (Maximum sensitivity in industry)
- TTFF[*1]: <1 sec (Outdoor, Open Sky)
- Accuracy: 2.5 m outdoor, 10 m indoor (50% CEP[*2])
- Size: BB: 7.0×7.0×0.8mm, QFN48
RF: 5.0×5.0×0.75mm, QFN28
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OPUS III ez Chipset
Opus III ez is eRide's latest generation of GPS/AGPS receiver baseband processor. Embedded ARM Core enables to calculate Navigation data by OPUS III ez Chipset itself. It is capable of working indoors by acquiring and tracking low sensitivity signals down to -161 dBm.
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GPS BB/RF
- ARM7 Core embedded
- Sensitivity: -161dBm (Maximum sensitivity in industry)
- TTFF[*1]: <1 sec (Outdoor, Open Sky)
- Accuracy: 2.5 m outdoor, 10 m indoor (50% CEP[*2])
- Size: BB: 7.0×7.0×1.2mm, TFBGA157
RF: 5.0×5.0×0.75mm, QFN28
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compactRide module
compactRide is a compact high-sensitivity, low-power GPS/AGPS module that integrates eRide's OPUS One hardware measurement platform (MP) into a single, compact and easy to integrate SMD device. Combined with eRide's powerful navigation software running on a host microprocessor, the module offers a complete high performance GPS receiver
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OPUS One receiver/baseband integrated module
- Host-based module
- Optimized RF and electrical design
- Sensitivity:-157dBm
- TTFF[*1]: <4 sec (Outdoor , Open Sky)
- Accuracy: < 7m outdoor, <30 m indoor(50% CEP[*2])
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Size: 18.5×14.0×2.5mm
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Cost efficient Offering
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miniRide module
miniRide is a miniature high-sensitivity, low-power GPS/AGPS module that integrates eRide's OPUS One hardware measurement platform (MP) into a single, compact and easy to integrate SMD device. Combined with eRide's powerful navigation software running on a host microprocessor, the module offers a complete high performance GPS receiver.
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OPUS One receiver/baseband integrated module.
- Host-based module
- Optimized RF and electrical design
- Sensitivity: -157dBm
- TFF[*1]: <4 sec (Outdoor , Open Sky)
- Accuracy: < 7m outdoor, <30 m indoor(50% CEP[*2])
- Size: 10.9×9.1×1.4mm
- Most size efficient offering
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nanoRide module
nanoRide provides unparalleled performance by combining a OPUS III hardware measurement platform (MP) with powerful navigation software running on a host microprocessor. The solution delivers fast, accurate positioning data ideal for wireless applications and handheld system in challenging locations like indoor environments and deep urban canyons.
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OPUS III receiver/baseband integrated module
- Host-based module
- Optimized RF and electrical design
- Sensitivity: -161dBm
- TTFF[*1]: <1 sec (Outdoor, Open Sky)
- Accuracy: 2.5 m outdoor, 10 m indoor (50% CEP.[*2])
- Size: 9.1×6.5×1.2mm
- Most compact offering
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Ideal for PDA and Cell Phones
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ezRide-22 module
ezRidel-22 is a high-sensitivity, complete GPS/AGPS receiver module that includes OPUS III ez hardware Position, Velocity, Time platform (PVT) in which navigation software and ARM7 Core are embedded. It is most efficient integration and time to market. It includes OPUS III ez Chipset. It delivers fast, accurate positioning data in challenging locations like indoor environments and deep urban canyons.
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OPUS III receiver/baseband, ARM7 integrated module
- GPS Navigation software integrated complete GPS/AGPS receiver
- Optimized RF and electrical design
- Sensitivity: -161dBm
- TTFF[*1]: <1 sec (Outdoor, Open Sky)
- Accuracy: 2.5 m outdoor, 10 m indoor (50% CEP[*2])
- Size: 22.0×22.0×3.0mm
- Most efficient integration and time to market
- Ideal of small volume opportunities
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[*1] TTFF: Time To First Fix
[*2] CEP: Circular Error Probable