User Manual for ADVATEK models including: R4D-S, PixLite R4D-S Pixel Receiver, PixLite R4D-S, Pixel Receiver, Receiver

PixLite R4D-S User Manual 20250606

Advatek Lighting

PDFPixLite R4D-S User Manual

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PixLite R4D-S User Manual 20250606
PixLite R4D-S User Manual
Hardware Rev 1.3

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-1PixLite R4D-S User Manual V20250606

1 - Table of Contents

1 - Table of Contents

2

2 - Introduction

3

3 - Safety Notes

4

4 - Physical Installation

5

4.1 - Installation Requirements

5

4.2 - Flat Surface Mount

5

4.3 - DIN Rail Mount

7

5 - Electrical Connections

10

5.1 - Supplying Power

10

5.2 - Output Fuses

10

5.3 - Data Input

11

5.4 - Connecting Pixel LEDs

12

6 - Operation

13

6.1 - Start-up

13

6.2 - Indicator LEDs

13

6.3 - Outputs

14

7 - Specifications

15

7.1 - Operating Specifications

15

7.2 - Mechanical Specifications

15

7.3 - Fault Protection

16

8 - Troubleshooting

17

8.1 - No Power LED

17

8.2 - No Pixel Control

17

8.3 - Other Issues

17

9 - Disclaimer

18

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2 - Introduction
This is the user manual for the PixLite R4D-S pixel receiver .
The PixLite R4D-S is designed to receive differential long distance signals of up to 300m (1000') from a PixLite T8/T16 transmitter unit, and convert these input signals back into a pixel-ready signal for output directly to pixels. The PixLite R4D-S features 4 data-only pixel outputs, each having both a dedicated fuse and 'fuse good' LED indicator.
The PixLite R4D-S features a sleek, compact design and 4 holes for ease of surface mounting as well as an optional DIN rail mounting kit. It also features industrial grade protection on all inputs and outputs, making it the ideal option for reliable commercial and industrial applications.
This manual covers physical aspects of the PixLite R4D-S receiver and its essential setup steps only. Separate user manuals are available for the transmitter units. Other manuals may be downloaded from here: www.advateklighting.com/downloads

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3 - Safety Notes
This LED pixel receiver should be installed by someone with proper technical knowledge only. Installation of the device and/or replacement of pixel output fuses should not be attempted without such knowledge.
Specification and certification markings are located on the base of the device.

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4 - Physical Installation
IMPORTANT NOTICE The device warranty applies only when installed and operated in accordance with these Installation Instructions and when operated in accordance with the limits defined in the specifications.
4.1 - Installation Requirements
The unit MUST be installed according to the mounting methods described below.
DO NOT fasten to objects that generate heat, such as a power supply.
DO NOT install or store the device exposed to direct sunlight.
This device is suitable for indoor installation only.
Where the product has the conformal coating option, the device may be installed outdoors inside a weatherproof enclosure.
Ensure device ambient temperatures do not exceed the limits detailed in the specifications section.
4.2 - Flat Surface Mount
Assemble the unit onto the mounting surface using four screws of a type suitable for the mounting surface (not supplied). The screws should be a pan head type, 3mm in thread diameter and at least 15mm long, as shown in Figure 1 below.

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Figure 1: Receiver Assembled to Flat Surface

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4.3 - DIN Rail Mount
The receiver can be mounted to a DIN rail using the optional mounting kit (part number MNT0101).
1. Align the receiver's mounting holes with the outermost mounting holes on each bracket. Using the four supplied M3, 12mm long screws, assemble the receiver to the mounting brackets, as shown in Figure 2 below.
Figure 2: Receiver Assembled to Bracket

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2. Align the lower edge of the bracket with the lower edge of the DIN rail (1), and push the receiver down so it clicks onto the DIN rail (2), as shown in Figure 3 below.
Figure 3: Receiver Assembled to DIN Rail

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3. To remove the receiver from the DIN rail, pull the receiver horizontally, toward its power connector (1) while rotating the receiver up and off the rail (2), as shown in Figure 4 below.
Figure 4: Removal of Receiver from DIN Rail

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5 - Electrical Connections
5.1 - Supplying Power
Power is applied to the PixLite R4D-S via the large lever clamp connector. The levers should be lifted up for wire insertion and then clamped back down, providing a highly robust and secure connection. Ensure the wire's insulation is stripped back 11-12mm, so that the clamp does not rest on the insulation when closing the connector. Polarity for the connector is clearly marked on the lid, as shown in Figure 5 below. The type of wire required for supply connection is 4.0mm2, 10AWG, VW1.
Figure 5: Location of Power Input

5.2 - Output Fuses
Each individual output is protected by a mini blade fuse. The PixLite R4D-S comes with 7.5A fuses by default. You may use any value of fuse, up to and including 7.5A, depending on your specific application. Individual outputs should not exceed 7.5A and the total current should not exceed 30A.
If a fuse needs replacing, a suitable replacement fuse is of type "F7.5A E 32V". An additional spare fuse is also provided for quick replacement which can be accessed by opening the lid, as shown in Figure 6 below.

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Figure 6: Internal View of the PixLite R4D-S

Logic power is automatically regulated from the power input. Simply connect your DC power supply in accordance with specifications listed in Section 7.1 to the power input.
5.3 - Data Input
Data from the transmitter is connected via the RJ45 port located on the front panel of the unit, as shown in Figure 7 below.
Figure 7: Position of Data Input

Receivers are connected to the transmitter via the RJ45 jacks on the rear panel of the PixLite transmitter. Each jack is labelled with its output number. These ports are not Ethernet network ports, and should not be connected to any networking equipment. They are specifically designed to

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connect a PixLite transmitter with a PixLite receiver. The cable used should be twisted pair cable with nominal 100 Ohm characteristic impedance (e.g. Cat 5 or Cat 6 cable), and can be up to 300 meters in length.
There are various system topologies that can be achieved by pairing a specific transmitter with a specific receiver. Not all permutations can be connected. The pairings that are supported by this device are shown in Figure 8 below.
Figure 8: Connecting Receivers to Transmitter

5.4 - Connecting Pixel LEDs
The pixel lights are connected directly via the 4 pluggable screw terminal connectors on the rear of the unit. Each connector is labelled with its output channel number (1-4) and on the top of the lid the pin-out is clearly marked. Simply wire your lights into each screw terminal and then plug them into the mating sockets.
Since the PixLite R4D-S product has data only outputs (no pixel clock lines), it takes advantage of the transmitter's Expanded Mode. In expanded mode, the clock signals are re-purposed for data signals instead. This means the receiver effectively has twice as many pixel outputs than the PixLite R2 (4), but half as many pixels per output can be run.
The cable length between the output and the first pixel should not exceed 15m.
Figure 9: Pixel Output Pinout

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6 - Operation
6.1 - Start-up
When power is applied to the receiver, the green power LED in the bottom right-hand corner on the front panel should be illuminated, as shown in Figure 10 below.
Figure 10: Position of the Power LED
If pixels have been correctly connected to the outputs and the data cable is connected to the transmitter and valid data is being sent, you should see the pixels turn on.
6.2 - Indicator LEDs
Each fuse is paired with a green LED which indicates the condition of the fuse. If the fuse is good, the LED will be on. If the fuse has been blown or is not connected, the LED will be off. This feature offers a quick method for determining the state of each fuse, however in environments where these LEDs are needed to be turned off, a switch is located underneath the spare fuse that will turn off this feature. If the switch is pushed to the right, it is off, and all indicator LEDs and the power LED will always be off. This switch is shown in Figure 11 below.

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Figure 11: Position of Indicator LEDs and Switch

6.3 - Outputs
The number of pixels per output is configured in the transmitter device and may vary depending on the pixel capacity of the specific device.
The refresh rate of the pixels will depend on the operating frequency of the specific pixel chip type. Refer to the user manual of the PixLite Transmitter device for more information about this topic as the Transmitter will be responsible for the refresh rate of this receiver.

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7 - Specifications

7.1 - Operating Specifications

The table below specifies the recommended operating conditions for a PixLite R4D-S receiver. For a full list of specifications, refer to the product datasheet.

Parameter Input Voltage Range
Max Current Max Logic Current Consumption @ 5V
Ambient Operating Temperature Storage Temperature
Maximum Current Per Pixel Output

Value/Range 5-24 30 150
-20 to +55 -20 to +55
7.5

Units V DC
A mA °C °C A

7.2 - Mechanical Specifications

The PixLite R4D-S receiver has dimensions as below.

Dimension Length Width Height Weight

Metric 95mm 78mm 33mm 0.2kg

Imperial 3.7" 3.1" 1.3"
0.4lbs

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Figure 12: Receiver Mechanical Specifications

7.3 - Fault Protection
The PixLite R4D-S features notable protection from potential damage due to various types of faults. This makes the device extremely robust and reliably able to withstand installation and operation even in harsh environments.
ESD protection is present on all data input lines and on all pixel output lines.
The data input port is protected against faults of up to +/- 48V between signal and common. All pixel output lines are protected against faults of up to +/- 24V.
The PixLite R4D-S itself is protected against damage from reversed polarity power input. However it does not provide external reverse polarity protection for any loads that you may have connected to the pixel outputs.

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8 - Troubleshooting
8.1 - No Power LED
Ensure that your power supply is supplying correct voltage. Additionally, ensure that it can supply enough current to drive the lights that are connected. You should also try disconnecting the pixel outputs and see if the receiver then turns on.
8.2 - No Pixel Control
Check that the correct pixel IC type has been configured on the transmitter unit. Also check the physical wiring and pinout of the pixels, as well as the output fuses. Ensure that the green 'fuse good' indicator LEDs under the lid compartment are all visible (one per output channel). If any are off, replace any blown output fuses as required.
8.3 - Other Issues
For the latest information, and industry advice, you can refer to our online guides here: www.advateklighting.com/blog/guides
You'll find information on management and configuration of the device, including its internal SHOWTime feature set in the PixLite Mk3 Management Guide: www.advateklighting.com/downloads/user-manuals/pixlite-mk3-management-guide
For any other questions, you can reach out to our support team at the link below: www.advateklighting.com/contact support@advateklighting.com

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9 - Disclaimer

If you require support or warranty, please refer to Section 8.3 for information on creating a support ticket. You must be issued with a return authorization by Advatek support staff before returning any product.
This device is only suitable for use in accordance with the specifications. This device is only suitable for use in an indoor environment which is protected from the weather unless a conformal coating option has been selected. In case of products protected by conformal coating, the device can be used outdoors, provided it is protected from the weather using an enclosure suitable for the environment.
The PixLite R4D-S receiver is supplied with a 5-year limited warranty and a repair/replacement guarantee. Please see the terms and conditions on our website for more information.
The PixLite R4D- S has been tested against and independently certified as compliant with the standards and directives listed in the table below.

Audio/Video and ICTE - Safety Requirements

Radiated Emissions

Immunity for ITE EN 55024

Electrostatic Discharge Radiated Immunity
Power Frequency Magnetic Field Immunity Restriction of Hazardous Substances

UL 62368-1 EN 55032 & FCC
Part 15 EN 61000-4-2 EN 61000-4-3 EN 61000-4-8
RoHS 3

Through testing to the above standards, the PixLite R4D-S has the certifications and marks listed in the table below.

Certification ETL Listing (UL 662368-1)
CE FCC ICES3 RCM UKCA

Relevant Country North America and Canada
Europe North America
Canada Australia and New Zealand
United Kingdom

Warning: Changes or modifications to this unit not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment.
Note: This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to

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radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at their own expense.
This product has been manufactured by:
Advatek Lighting Pty Ltd U1, 3-5 Gilda Court Mulgrave, 3170 VIC, AUSTRALIA

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References

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