I just went through this exercise. You can use DC blocking on all ports and an 
injector, but they also have splitters where one port is a DC-pass and the rest 
are DC block. You use the pass port for a device you’re just always going to 
have hooked up. In my case, it’s the GPS module on a Raspberry Pi I use for an 
NTP server.

If it’s a GPS splitter, the DC block ports most likely also present 200 ohm DC 
loads. This lets auto-switching GPS receivers and modules “feel” the presence 
of the external antenna. Mine is an amplified splitter, with the amplifier also 
powered by the pass port. Gain in the distribution splitter is a good idea, but 
your remote antenna should also be an active one, otherwise by the time the 
signal gets down the long cable it’ll be down in the mud by the time it’s 
amplified.

> On Sep 28, 2015, at 3:32 AM, Martin A Flynn <mafl...@theflynn.org> wrote:
> 
> Hi folks,
> Need a bit of advise:   I have a project underway that requires multiple GPS 
> receivers.   They all provide 3V power to the antenna.    My existing antenna 
> is a generic KS-24019L112A (26dB) that needs 5V.    There's about 75' of 1/2 
> heliax between the receiver location and antenna.
> 
> Best fix I can come up with is using a re-purposed  Spectracom 8224* splitter 
>  with an external power supply for the antenna, and DC blocking at the 
> receiver ports.
> 
> Two questions
> 
> 1. Is there another vendor I should be looking at?
> 2. Do I need to add gain at the splitter (options are -8.5 dB or +18
>   dB).  Heliax chart says 2.771 dB loss per 100' @ 1.5 GHz, with
>   another dB loss in the connectors and protector.
> 
> Cheers,
> 
> Martin Flynn
> 
> *http://spectracom.com/ProductsServices/TimingSynchronization/GPSAntennasAccessories/8224GPSAntennaSplitter/tabid/147/Default.aspx
>  
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