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318N Receiver specifications: Frequency 433.92 MHz Reception Frequency 52 Ohm Input Power 12-28 AC/DC Current Draw 15 Ma Decoding Digital 52bit Channels 2 Relay contact Normally Open 0.5 A 50VAC Dimensions 3.8 x 1.6 x 0.9 APOLLO / NICE Receiver - 2 Channel, NICE - 433Mhz - Superior Range -- $54.00
320N Transmitter specifications: Frequency 433.92 MHz Estimated Range 500ft - 650ft Coding Digital 52bit Dimensions 2.8 x 1.6 x 0.6
APOLLO / NICE Remote Control -2 Button -2 Channel Nice Transmitter -- $21.00
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Era One 433.92 MHz rolling code transmitters with management of Identity Codes and Certificates, self-learning and built-in proximity receiver; with 72 bit O-Code encoding, also compatible with Nice Flor encoding receivers. Evolved: uses data processing and recognition systems that increase its degree of security and deliver a threefold reduction in automation response times. Easy memorization using a transmitter already programmed in the receiver, thanks to the enabling code between the two 2 Button transmitter: ON2E
APOLLO / NICE Remote Control - 2 Button - 2 Channel Nice Transmitter -- $27.95
APOLLO / NICE Remote Control -4 Button - 4 Channel Nice Transmitter -- $37.50
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Specify color in ordering instruction box at checkout
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Inti 433.92 MHz rolling code transmitters with management of Identity Codes and Certificates, self-learning and built-in proximity receiver; with 72 bit O-Code encoding, also compatible with Nice Flor encoding receivers.
Evolved: uses data processing and recognition systems that increase its degree of security and deliver a threefold reduction in automation response times. Easy memorization using a transmitter already programmed in the receiver, thanks to the enabling code between the two
Available colors: INTI2/A - Black ---- INTI2B/A - Blue INTI2G/A - Green ---- INTI2L/A - Lilac INTI2R/A - Red ---- INTI2Y/A - Yellow APOLLO / NICE Remote Control - 2 Button -2 Channel Nice Transmitter -- $21.95
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Apollo Automatic 10 Amp Battery Charger #406 A state-of-the-art charger for boats and RVs with deep-cycle batteries Circuit-controlled and fully automatic mean never worrying about overcharging Also good for onshore charging needs Can also be switched to manual mode for special uses. For conventional 12V batteries 10 amp fast charge for everyday charging needs. Charges a deep-cycle battery in 7 to 11 hours and an automotive battery in 3 to 5 hours. Fully automatic, will not overcharge batteries -- Manual operation Maintains charge LED full charge indicator Reverse hookup safeguard Convenient carrying handle CSA-certified Apollo Automatic 10 Amp Charger (100+ cycles per day) -- $96.43
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Deep Cycle Product Specifications Dimensions: Height (in.):9.4 Item Weight (lbs.):49 Length (in.):12.5 Width (in.):6.7 Design & Construction: Battery Design:Lead-Acid Maintenance:Maintenance Free Positive Terminal Side:Right Terminal Post Location:TopT Deep Cycle 75 Amp Hrs.-- $262.64
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PS-12330 12 Volt 33 Amp Hrs.
Features: Absorbent Glass Mat (AGM) technology for superior performance. Valve regulated, spill-proof construction. Power/volume ratio yielding unrivaled energy density. Rugged ABS plastic case and cover Approved for transport by air. D.O.T., I.A.T.A., F.A.A. and C.A.B. certified. U.L. recognized under file number MH 20845. PS-12330 12 Volt 33 Amp Hrs.-- $148.01
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Apollo Solar Panel (5 Watts) DUTY CYCLES: The first thing to consider in a solar application is the number of cycles per day that the gate is going to be expected to operate. Once the number of cycles is determined, use the following equation to find the solar requirements of a basic Apollo gate operator including the standard receiver. This is a conservative equation estimating that for every 5 watts of solar a minimum of 10 cycles of power will be put into the battery.
Cycles / 2 = Watts of Solar
Example: if 35 cycles per day are needed… 35 / 2 = 17.5 watts A minimum of 17.5 watts would be needed to handle the duty cycles of this system. APOLLO Solar Panel - 5 Watt with Mounting Bracket -- $99.95
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Apollo Solar Panel (10 Watts)
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Apollo Solar Panel (20 Watts) DUTY CYCLES: The first thing to consider in a solar application is the number of cycles per day that the gate is going to be expected to operate. Once the number of cycles is determined, use the following equation to find the solar requirements of a basic Apollo gate operator including the standard receiver. This is a conservative equation estimating that for every 5 watts of solar a minimum of 10 cycles of power will be put into the battery.
Cycles / 2 = Watts of Solar
Example: if 35 cycles per day are needed… 35 / 2 = 17.5 watts A minimum of 17.5 watts would be needed to handle the duty cycles of this system. APOLLO Solar Panel - 20 Watt with Mounting Bracket -- $346.83
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