GPS301 - 3 Way GPS / GNSS Signal Splitter
IP67 Outdoor, N Type, 1-2 GHz, 50 Ohm, Passive
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Product Overview
- GPS L1 - L5, GLONASS, Galileo splitter
- Low Insertion Loss (0.3 dB avg)
- High Port-to-Port Isolation (30 dB avg)
- Excellent VSWR (1.10 : 1 avg)
- 15 VDC & 75 mA max on DC block port
- Outdoor Weatherproof Construction
- Tri Alloy Type N Female (Jack) Low PIM
Frequency Range |
Insertion Loss above 4.77 dB |
Amplitude Balance |
Phase Balance |
Isolation | Input VSWR |
Output VSWR |
---|---|---|---|---|---|---|
1000-2000 MHz | 0.7 dB max | 0.2 dB max | 3° max | 18 dB min | 1.30 : 1 max | 1.25 : 1 max |
Mechanical Specifications | |
---|---|
Circuit Design | Wilkinson; 1 DC pass, 2 DC block w/ 200Ω internal load |
Connectors | N Female, 50 Ohm Coaxial |
Connector Body | Brass, Tri-Alloy Plate |
Connector Pin | Phosphor Bronze, Gold Plate |
Connector Insulator | PTFE, Virgin Electrical Grade |
Housing | Aluminum, Clear Chem Film |
Operating Temp | -65°C to +85°C |
Weight | 480 Grams |
3 Way Power Divider RF Input Ratings | ||
---|---|---|
Into Matched Load VSWR's |
In-Phase | 180° Out-of-Phase |
1.2 : 1 | 20 Watts | 20 Watts |
2.0 : 1 | 20 Watts | 10 Watts |
∞ | 10 Watts | 1 Watt |
3 Way Power Combiner RF Input Ratings | ||
Input Signals | In-Phase | 180° Out-of-Phase |
Coherent | 3 X 6.67 Watts | 3 X 0.33 Watts |
Non-Coherent | 3 X 0.67 Watts |
GPS301 Features & Benefits
Overview
GPS301 is a three way, passive GPS signal splitter ideal for splitting a GPS antenna signal between three (3) receivers while providing a DC current path to power a remotely located active GPS antenna from one receiver while blocking the DC path from the others. Furnished with N type female connectors all ports. A special feature of this unit is the 200 ohm internal load which provides a current drain for the GPS receivers not powering the active antenna. Some GPS receivers incorrectly sense an antenna fault when there is no current draw. The 200 ohm internal loads provide for a simulated antenna current drain which prevents receiver faulting. Max voltage rating at the DC blocked ports is 15 VDC; maximum current rating is 75 mA. Max voltage rating at the DC pass port is 50 VDC; max current rating is 1000 mA.
Electrical
The heart of the unit is a precision designed and etched Wilkinson type microstrip circuit on a low loss, high frequency, dielectric substrate. Electrical performance is highlighted by 0.7 dB max insertion loss (above the 4.77 dB power split), 18 dB min isolation, 1.30:1 max input VSWR and 1.25:1 max output port VSWR. Equal power split and symmetry is displayed by 0.2 dB amplitude balance and 3 degrees phase balance. Narrow band performance in L1 and L2 GPS bands will be even better. See 3 way GPS splitter test sweeps for details. DC blocks and 200 ohm internal loads are specially designed to be RF transparent with negligable effect on performance.
Mechanical
Mechanical features include precision CNC, brass, 50 ohm N type female coaxial connectors with tri alloy plating to insure tarnish resistance and low PIM operation. Connector pins are gold-plated phosphor bronze for reliability and low contact resistance. Virgin electrical grade PTFE support insulators captivate the contact pins enabling trouble free coaxial connector mating. Long term operation and superior shielding is assured by the rugged CNC machined aluminum housing with clear chemical film finish. Secure mounting is provided by two 0.125" diameter (3.18 mm) through holes. RoHS construction includes no-lead solder and a finish free of hexavalent chromium.
Physical
Housing dimensions are 3.28" wide by 3.28" deep by 1.00" high (83.3 x 83.3 x 25.4 mm). The N-type female (jack) connectors extend 0.65" (16.5 mm) from the housing. Operating temperature range is from -65°C to +85°C. Weight is 480 grams. See 3 way N type GPS splitter outline drawing for more information.
Applications
Model GP301 is a 3-way, passive, type N, GNSS splitter covering all frequencies from 1000 to 2000 MHz with best-in-class performance for GPS L1, L2, L3, L4, L5, GLONASS and Galileo global navigation satellite positioning systems.