ELG-75-C series. 75W Constant Current Mode LED Driver IP65 IP67. File Name:ELG-75-C-SPEC

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Transcription:

IP65 IP67 8 A Dx

SPECIFICATION MODEL RATED CURRENT RATED POWER Note.5 ELG75C350 350mA 74.9W ELG75C500 500mA 75W ELG75C700 700mA 74.9W ELG75C1050 1050mA 74.55W CONSTANT CURRENT REGION Note.2 107 ~ 214V 75 ~ 150V 53 ~ 107V 35 ~ 71V OPEN CIRCUIT VOLTAGE(max.) 224V 158V 114V 78V OUTPUT Adjustable for AType only (via builtin potentiometer) CURRENT ADJ. RANGE 175 ~ 350mA 250 ~ 500mA 350 ~ 700mA 525 ~ 1050mA CURRENT RIPPLE 5.0% max. @rated current CURRENT TOLERANCE ±5.0% SET UP TIME Note.4 500ms/115VAC,230VAC VOLTAGE RANGE Note.3 100 ~ 305VAC 142 ~ 431VDC (Please refer to "STATIC CHARACTERISTIC" section) FREQUENCY RANGE POWER FACTOR (Typ.) 47 ~ 63Hz PF 0.97/115VAC, PF 0.95/230VAC, PF 0.92/277VAC@full load (Please refer to "POWER FACTOR (PF) CHARACTERISTIC" section) THD< %(@load 50%/115VC,230VAC; @load 75%/277VAC) TOTAL HARMONIC DISTORTION INPUT (Please refer to TOTAL HARMONIC DISTORTION(THD) section) EFFICIENCY (Typ.) AC CURRENT (Typ.) 91% 0.7A / 115VAC 91% 0.45A / 230VAC 0.38A/277VAC INRUSH CURRENT(Typ.) MAX. No. of PSUs on 16A CIRCUIT BREAKER LEAKAGE CURRENT PROTECTION OVER VOLTAGE WORKING TEMP. WORKING HUMIDITY ENVIRONMENT STORAGE TEMP., HUMIDITY OTHERS NOTE NO LOAD / STANDBY POWER CONSUMPTION SHORT CIRCUIT OVER TEMPERATURE MAX. CASE TEMP. TEMP. COEFFICIENT VIBRATION MTBF DIMENSION PACKING COLD START 50A(twidth= 350μ s measured at 50% Ipeak)/230VAC; Per NEMA 410 5 units (circuit breaker of type B) / 8 units (circuit breaker of type C) at 230VAC <0.75mA / 277VAC No load power consumption <0.5W for Blank / A / Dx / D2Type Standby power consumption <0.5W for B / DAType Hiccup mode, recovers automatically after fault condition is removed 225 ~ 260V 160 ~ 190V 115 ~ 140V Shut down o/p voltage, repower on to recover Shut down o/p voltage, repower on to recover Tcase=40 ~ 85 (Please refer to OUTPUT LOAD vs TEMPERATURE section) Tcase=85 ~ 95% RH noncondensing 40 ~ 80, 10 ~ 95% RH ± 0.03%/ (0 ~ 60 ) 10 ~ 500Hz, 5G 12min./1cycle, period for 72min. each along X, Y, Z axes SAFETY STANDARDS Note.6 UL8750(type HL ), CSA C22.2 No. 250.1312; ENEC EN613471, EN61347213 independent, EN62384; IP65 or IP67 approved WITHSTAND VOLTAGE SAFETY & I/PO/P:3.75KVAC I/PFG:2.0KVAC O/PFG:1.5KVAC EMC ISOLATION RESISTANCE I/PO/P, I/PFG, O/PFG:100M Ohms / 500VDC / 25 / 70% RH EMC EMISSION Note.6 Compliance to EN55015,EN6100032 Class C (@load 50%) ; EN6100033 EMC IMMUNITY Compliance to EN6100042,3,4,5,6,8,11; EN61547, light industry level(surge immunity:lineearth:6kv,lineline:4kv) 305Khrs min. MILHDBK217F (25 ) 180* 63*35.5 mm (L*W*H) 0.7Kg;16pcs/12.2Kg/0.67CUFT 80 ~ 100V ELG75C1400 1400mA 75.6W 27 ~ 54V 61V 700 ~ 1400mA 64 ~ 79V

BLOCK DIAGRAM PFC fosc : 50~1KHz PWM fosc : 60~130KHz I/P EMI FILTER & RECTIFIERS PFC CIRCUIT O.T.P. O.L.P. POWER SWITCHING PWM & PFC CONTROL RECTIFIERS & FILTER O.L.P. DETECTION CIRCUIT V V DIM DIM (B Type) O.V.P. CASE GROUND DRIVING METHODS OF LED MODULE This series works in constant current mode to directly drive the LEDs. 100 Vo(%) 50 (min.) Hiccup Protection Constant Current area In the constant current region, the highest voltage at the output of the driver depends on the configuration of the end systems. Should there be any compatibility issues, please contact MEAN WELL. 50 100 Io(%) Typical output current normalized by rated current (%)

DIMMING OPERATION 3 in 1 dimming function (for BType) AC/N(Blue) AC/L(Brown) ELG75C DIM(Blue)* DIM(White)** V(Black) V(Red) Output constant current level can be adjusted by applying one of the three methodologies between DIM and DIM: 0 ~ 10VDC, or 10V PWM signal or resistance. Direct connecting to LEDs is suggested. It is not suitable to be used with additional drivers. Dimming source current from power supply: 100μA (typ.) * DIM for BType DA for DAType PROG for D2Type * *DIM for BType DA for DAType PROG for D2Type Output current (%) 100% 80% 70% 60% 50% 40% 30% % 10% 0% 0V 1V 2V 3V 4V 5V 6V 7V 8V 9V 10V Dimming input: Additive voltage Output current (%) 100% 80% 70% 60% 50% 40% 30% % 10% 0% 0% 10% % 30% 40% 50% 60% 70% 80% 100% Duty cycle of additive 10V PWM signal dimming input Applying additive resistance: V V DIM Applying additive 0 ~ 10VDC LED Strips V V DIM Additive Voltage DIM DO NOT connect "DIM to V" Applying additive 10V PWM signal (frequency range 100Hz ~ 3KHz): LED Strips V V DIM Additive PWM signal DIM DO NOT connect "DIM to V" DIM DO NOT connect "DIM to V" LED Strips Additive Resistance Note : 1. Min. dimming level is about 8% and the output current is not defined when 0%< Iout<8%. 2. The output current could drop down to 0% when dimming input is about 0kΩ or 0Vdc, or 10V PWM signal with 0% duty cycle. Output current (%) 100% 80% 70% 60% 50% 40% 30% % 10% 0% Short 10K/N K/N 30K/N 40K/N 50K/N 60K/N 70K/N 80K/N 90K/N 100K/N (N=driver quantity for synchronized dimming operation) Dimming input: Additive resistance

DALI Interface (primary side; for DAType) Apply DALI signal between DA and DA. DALI protocol comprises 16 groups and 64 addresses. First step is fixed at 8% of output. Smart timer dimming function (for DxxType by User definition) MEAN WELL Smart timer dimming primarily provides the adaptive proportion dimming profile for the output constant current level to perform up to 14 consecutive hours. 3 dimming profiles hereunder are defined accounting for the most frequently seen applications. If other options may be needed, please contact MEAN WELL for details. Ex : D01Type: the profile recommended for residential lighting Set up for D01Type in Smart timer dimming software program: Dimming Level(%) TIME** LEVEL** T1 T2 06:00 07:00 100% 70% T3 11:00 50% T4 70% Operating Time(HH:MM) **: TIME matches Operating Time in the diagram whereas LEVEL matches Dimming Level. Example: If a residential lighting application adopts D01Type, when turning on the power supply at 6:00pm, for instance: [1] The power supply will switch to the constant current level at 100% starting from 6:00pm. [2] The power supply will switch to the constant current level at 70% in turn, starting from 0:00am, which is 06:00 after the power supply turns on. [3] The power supply will switch to the constant current level at 50% in turn, starting from 1:00am, which is 07:00 after the power supply turns on. [4] The power supply will switch to the constant current level at 70% in turn, starting from 5:00am, which is 11:00 after the power supply turns on. The constant current level remains till 8:00am, which is 14:00 after the power supply turns on. Ex: D02Type: the profile recommended for street lighting Set up for D02Type in Smart timer dimming software program: Dimming Level(%) TIME** LEVEL** T1 01:00 50% T2 03:00 80% T3 T4 T5 8:00 11:00 100% 60% 80% Operating Time(HH:MM) **: TIME matches Operating Time in the diagram whereas LEVEL matches Dimming Level. Example: If a street lighting application adopts D02Type, when turning on the power supply at 5:00pm, for instance: [1] The power supply will switch to the constant current level at 50% starting from 5:00pm. [2] The power supply will switch to the constant current level at 80% in turn, starting from 6:00pm, which is 01:00 after the power supply turns on. [3] The power supply will switch to the constant current level at 100% in turn, starting from 8:00pm, which is 03:00 after the power supply turns on. [4] The power supply will switch to the constant current level at 60% in turn, starting from 1:00am, which is 08:00 after the power supply turns on. [5] The power supply will switch to the constant current level at 80% in turn, starting from 4:00am, which is 11:00 after the power supply turns on. The constant current level remains till 6:30am, which is 14:00 after the power supply turns on.

Ex: D03Type: the profile recommended for tunnel lighting Set up for D03Type in Smart timer dimming software program: Dimming Level(%) T1 T2 T3 TIME** 01:30 11:00 LEVEL** 70% 100% 70% Operating Time(HH:MM) **: TIME matches Operating Time in the diagram whereas LEVEL matches Dimming Level. Example: If a tunnel lighting application adopts D03Type, when turning on the power supply at 4:30pm, for instance: [1] The power supply will switch to the constant current level at 70% starting from 4:30pm. [2] The power supply will switch to the constant current level at 100% in turn, starting from 6:00pm, which is 01:30 after the power supply turns on. [3] The power supply will switch to the constant current level at 70% in turn, starting from 5:00am, which is 11:00 after the power supply turns on. The constant current level remains till 6:30am, which is 14:00 after the power supply turns on.

OUTPUT LOAD vs TEMPERATURE 100 100 80 60 230VAC input only 80 60 LOAD (%) 40 LOAD (%) 40 40 25 10 0 15 30 50 60 70 AMBIENT TEMPERATURE,Ta ( ) (HORIZONTAL) 40 25 0 45 55 65 75 85 Tcase ( ) (HORIZONTAL) STATIC CHARACTERISTIC POWER FACTOR (PF) CHARACTERISTIC LOAD (%) 100 90 80 70 60 50 40 100 1 140 160 180 0 240 250 260 270 280 305 INPUT VOLTAGE (V) 60Hz Derating is needed under low input voltage. PF Tcase at 75 1 0.98 0.96 0.94 0.92 0.9 0.88 0.86 0.84 0.82 0.8 50% 60% 70% 80% 100% LOAD 277V(75W) 230V(75W) 115V(60W) TOTAL HARMONIC DISTORTION (THD) EFFICIENCY vs LOAD possess superior working efficiency that up to 91% can be reached in field applications. 350mA Model,Tcase at 75 350mA Model, Tcase at 75 THD 18.00% 16.00% 14.00% 12.00% 10.00% 8.00% 6.00% 4.00% 2.00% 0.00% 50% 60% 70% 80% 100% 277V(75W) 230V(75W) 115V(60W) EFFICIENCY(%) 94 92 90 88 86 84 82 80 50% 60% 70% 80% 100% 277V(75W) 230V(75W) 115V(60W) LOAD LOAD

LIFE TIME 1 100 80 LIFETIME(Kh) 60 40 0 30 40 50 60 70 80 90 Tc a s e ( )

MECHANICAL SPECIFICATION BlankType CASE NO.: 243A Unit:mm 180 169 156 AC/N(Blue) AC/L(Brown) tc 85 45.8 63 V(Black) V(Red) 4ψ4.5 tc : Max. Case Temperature 35 35.5 AType 180 169 156 AC/N(Blue) AC/L(Brown) tc 85 45.8 63 V(Black) V(Red) 4ψ4.5 21 35 35.5 tc : Max. Case Temperature 44.25

B/DA/D2Type 180 169 156 AC/N(Blue) AC/L(Brown) 4ψ4.5 tc 85 tc : Max. Case Temperature 45.8 63 UL2517 22AWGx2C DIM(Blue)* DIM(White)** V(Black) V(Red) * DIM for BType DA for DAType PROG for D2Type * *DIM for BType DA for DAType PROG for D2Type 35 35.5 Note1: Please connect the case to FG for the complete EMC deliverance. Note2: Please contact MEAN WELL for input wiring option with FG. Installation Manual Please refer to : http://www.meanwell.com/webnet/search/installationsearch.html