Emergency PHM Series. Emergency PowerHUBB Node - Master/Control/Tunable White. Dimensional Data. Ordering Information (Example: PHM4PC EM)

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Emergency PHM Series Emergency PowerHUBB Node - Master/Control/Tunable White Project Name NETWORK Catalog No. Date Product Features The Hubbell Control Solutions' (HCS) PowerHUBB node provides power distribution architecture and data connectivity to create a fully functioning Power over Ethernet (PoE) lighting control system. PowerHUBB emergency network nodes (-EM) are a key component to installing a Power over Ethernet emergency lighting system. These nodes are UL 924- FTBR listed for use as emergency LED drivers. When combined with a central emergency power source such as a generator, inverter or Uninterrupted-Power- Supply (UPS*) they provide a code compliant emergency lighting solution. During normal operation these nodes offer full range dimming and control of the LED fixtures and automatically switch into emergency lighting mode when normal building power is lost. In addition to the emergency lighting functionality, PowerHUBB Master Nodes also act as an intelligent hub for the PoE lighting network. Master Nodes receive data and power from the PoE network switch. These nodes then pass along the power and data downstream to any daisy-chained Satellite node(s). Connected nodes/luminaires are automatically discovered by the Gateway, expediting commissioning and administering immediate feedback. Each Master node is DHCP-enabled and will automatically receive an IP address from the local network to simplify installation and setup. *Emergency power source equipment must be UL 924 listed and adequately sized to provide minimum 90-minute runtime based on lighting load. Compliance and Certification Replaces standard electronic AC driver in luminaire Capable of Tunable White utilizing a 2-channel LED Board Programmed for optimized performance of LED Bi-directional communication Node is discovered immediately by Gateway software Low voltage inputs for control devices Provides dimming function down to 1% Direct connection to PSE device (PoE switch or midspan) DHCP-enabled Suitable for indoor applications Class 2 electrical device Plenum Rated UL924 listed Made in the USA Dimensional Data 1.00" [25.4] 4.54" [115.37] 3.54" [89.97].18 [4.66] 2.85" [72.44] Ordering Information (Example: PHM4PC1070 1 -EM).18" [4.66] 4.06" [103.17] PH SERIES PowerHUBB M TYPE Master OUTPUT 4 Four PC PORTS Power and Control PROGRAMMED VALUE (ma) XXX02 3-EM ma 1True values are dependent on LED Board and lumen package desired to be coordinated prior to ordering. 2Please replace XXX0 with desired ma programmed value in increments of 10. Total ma value for all channels is to be defined in the Programmed Value (ma). 3 For fixtures requiring a split ma value across multiple channels for a tunable white application, please define upon ordering. 1

Wiring Diagrams PHx4PC-xxxx-EM PowerHUBB 4 Channel Node with optional use of two channels for tunable white applications utilizing an occupancy sensor, daylight sensor and a low voltage, 4 button switch station. PHx4PC-xxxx-EM PowerHUBB 4 Channel Node with optional use of two channels for tunable white applications utilizing an occupancy sensor, daylight sensor and a low voltage, 3 button, RJ45 enabled switch station. 2

PowerHUBB Emergency Architecture 1. Placement of PowerHUBB node is based on fixture manufacturer design. 2. Emergency fixtures are to be placed according to emergency egress requirements. 3. The Gateway is required to receive normal power. Emergency mode is activated when the Gateway experiences loss of normal power or upon loss of network connectivity. a. The Gateway sends a pulse down the communication line every 10 seconds to Emergency nodes signaling normal power is being used and to perform normal functionality. b. When the Gateway pulse is no longer being sent every 10 seconds, the nodes ignore programming and go to emergency output ignoring any commands until the pulse is restored. 4. Optional Emergency Satellite nodes are to be connected via PHN port, daisy chained off the Master node. 5. The location on the network of the "Emergency" PoE switch is up to the user/designer preference. 6. The Uninterrupted Power Supply, (UPS) is to be UL924 listed and sized accordingly to provide power and duration dictated by code for emergency loads connected to the dedicated PoE switch. 3

Operating Window Figure 1 shows the recommended output voltage and current ranges from the PowerHUBB Master and Satellite Nodes based on the specified node ambient temperatures. Driver performance cannot guarantee outside the operating window. 54 48 Operating Window Vout (Vdc) vs. Output Current (ma) Vout (Vdc) 42 36 30 24 18 50 C Ambient 60 C Ambient 12 6 0 0 200 400 600 800 1000 1200 1400 1600 1800 Iout (ma) Operating Window Vout (VDC) vs, Output Current (ma) Fig. 1 Driver Efficiency vs. Load Level Figure 2 shows typical driver efficiency values for the full range of supported load voltages 100% Typical Efficiency vs. Load Level 95% 90% Efficiency 85% 80% 75% 70% 50% 60% 70% 80% 90% 100% Load Level 12V Load 18V Load 24V Load 36V Load 48V Load Typical Efficiency vs. Load Level Fig. 2 4

Output Current vs. Load Voltage Figure 3 shows the maximum recommended output current settings based on load voltage and ambient temperature. 1900 Maximum Output Current vs. Load Voltage Output Current (ma) 1800 1700 1600 1500 1400 1300 1200 50 C Ambient 60 C Ambient 70 C Ambient 1100 1000 6 12 18 24 30 36 42 48 54 Load Voltage (VDC) Maximum Output Current vs Load Voltage Fig. 3 Output Power vs. Load Voltage Figure 4 shows the maximum recommended output power level based on load voltage and ambient temperature. 60 55 50 Maximum Output Power vs. Load Voltage Output Power (W) 45 40 35 30 25 20 15 10 50 C Ambient 60 C Ambient 70 C Ambient 53W Limit 6 12 18 24 30 36 42 48 54 Load Voltage (VDC) Maximum Output Power vs. Load Voltage Fig. 4 5

Remote Mounting Emergency PowerHUBB Node - Master/Control/Tunable White Applications that call for remote mounting of the PowerHUBB nodes separate from the LED luminaire are acceptable. Please follow the maximum wiring distances listed in the table below when selecting an appropriate wire gauge. OUTPUT CURRENT (ma) Remote Mounting General Specifications AWG WIRE SIZES 12 14 16 18 20 22 350 900 566 356 224 141 89 500 630 396 249 157 99 62 700 450 283 178 112 70 44 100 315 198 125 78 49 31 1100 286 180 113 71 45 28 1400 225 141 89 56 35 22 1750 180 113 71 45 28 18 Max allowed distance between node and LED module in feet (Based on 1V drop) Electrical LED Driver Outputs Sensor I/O Connections Wall Switch Connections PoE Interface: Input: Peak operating power: IEEE 802.3at-2009 PD Type 2, Class 4, Compliant Input with LLDP extensions for negotiating power above 30W using 4 pairs 57VDC 60W Nominal standby power: 2.0W PoE input connection: BUS connections: Device type: Output channel: Driver design: Dimming: Output voltage range: Rated output power: Protection: Connections: Power supply: Occupancy sensor input: Analog sensor Inputs: Relay Control Outputs: Connections: Switch inputs: Pilot light outputs: Connections: Unshielded female RJ45 jack for use with Cat5e/6 cable to PSE device Unshielded female RJ45 jack for use with Cat5e/6 cable to PowerHUBB Master or Satellite node Class 2 electrical device Flexible configuration options for up to (4) individual white fixtures, up to (2) tunablewhite fixtures or (1) RGB/RGBW color fixture Constant current LED driver design, programmable in 10mA increments from 100mA to 1750mA (Refer to Fig. 1) Full range 1% to 100% dimming control in 1% increments via CCR, PWM or Hybrid mode 24VDC - 48VDC @1.4A 53W each channel, 53W max total Short circuit and open circuit protection Screw terminals; accept 14-26 AWG conductors. Tightening torque: 2.0-3.5 in-lbs. (0.35-0.4 Nm) One +24VDC terminal for powering external sensors, 500mA total capacity OCC-1 for dry-contact sensor signals and OCC-2 for 24VDC Active-Hi sensor signals Four 0-10VDC analog sensor inputs Two relay control outputs for actuating (1) latching relay or (2) electromechanical relays (24VDC coils) Screw terminals accept 16-26 AWG conductors. Tightening torque: 2.0-2.2 in-lbs. (0.23-0.25 Nm) Five momentary dry contact push button inputs Five pilot light outputs, rated for 24VDC@7.5mA each Screw terminals accept 16-26 AWG conductors. Tightening torque: 2.0-2.2 in-lbs. (0.23-0.25 Nm) 6

General Specifications Environment Mounting Dimensions-Overall Dimensions- Mounting Tabs Removed Color Safety & EMC Rated Lifetime Origin Warranty For indoor use only IP Rating IP20 Sound Rating <24dB Class A Maximum case temperature: 185 F (85 C) Operating temperature: 32 F to 158 F (0 C to 70 C) Operating humidity: 10% to 80% RH non-condensing Storage temperature: -4 F to 185 F (-20 C to 85 C) Storage humidity: 5% to 95% RH non-condensing Mounts inside Fixture can be mounted remotely. (see remote mounting chart) 4.54 (115mm) L x 2.87 (73mm) W x 1.10 (28mm) H 3.54 (90mm) L x 2.87 (73mm) W x 1.10 (28mm) H Black UL 2108, CAN/CSA C22.2 No. 9 UL 1598C, CAN/CSA C22.2 No. 250.0-08, CSA B-79A Safety standards: UL 2043, Suitable for Use in Air Handling Spaces (Plenum Rated) UL 924, CAN/CSA C.22.2 No. 141-15-Emergency Lighting EMC emissions: Compliance to EN 55015:2013 EMC immunity: Compliance to EN 61547:2009 FCC: Compliance to Title 47 Part 15 Subpart B Section 15.109 EU: RoHS Compliant 50,000+ hours Made in the USA Five year limited 7