MEANWELL HLP-80H

HLP-80H
80W Single Output Switching Power Supply
series
Features :
Universal AC input / Full range (up to 305VAC)
Built-in active PFC function, PF>0.96
Protections: Short circuit / Over current / Over voltage / Over temperature
Cooling by free air convection
Output constant current level adjustable
100% full load burn-in test
Three in one dimming function (1~10Vdc or PWM signal or resistance)
Suitable for built in LED lighting system
Suitable for dry / damp location
3 years warranty
M
M
SELV
SPECIFICATION
MODEL
HLP-80H-12 HLP-80H-15 HLP-80H-20 HLP-80H-24 HLP-80H-30 HLP-80H-36 HLP-80H-42 HLP-80H-48 HLP-80H-54
12V
DC VOLTAGE
CONSTANT CURRENT REGION Note.4 7.2 ~12V
OUTPUT
30V
36V
42V
48V
54V
21.6 ~ 36V
25.2 ~ 42V
28.8 ~ 48V
32.4 ~ 54V
5A
5A
4A
3.4A
2.3A
1.95A
1.7A
1.5A
RATED POWER
60W
75W
80W
81.6W
81W
82.8W
81.9W
81.6W
81W
150mVp-p
150mVp-p
150mVp-p
200mVp-p
200mVp-p
200mVp-p
200mVp-p
200mVp-p
RIPPLE & NOISE (max.) Note.2 150mVp-p
VOLTAGE TOLERANCE Note.3
2.5%
2.0%
1.0%
1.0%
1.0%
1.0%
1.0%
1.0%
1.0%
LINE REGULATION
0.5%
0.5%
0.5%
0.5%
0.5%
0.5%
0.5%
0.5%
0.5%
1.5%
1.0%
2.0%
Note.6 2000ms, 200ms / 115VAC at full load
0.5%
0.5%
0.5%
0.5%
0.5%
0.5%
16ms at full load
HOLD UP TIME (Typ.)
VOLTAGE RANGE
Note.5 90 ~ 305VAC
1000ms, 200ms / 230VAC at full load
230VAC /115VAC
127 ~ 431VDC
FREQUENCY RANGE
47 ~ 63Hz
POWER FACTOR (Typ.)
PF>0.96/115VAC, PF>0.96/230VAC, PF>0.94/277VAC at full load (Please refer to "Power Factor Characteristic" curve)
EFFICIENCY (Typ.)
87.5%
89.5%
88.5%
0.85A / 115VAC
0.425A / 230VAC
COLD START 70A/230VAC
AC CURRENT (Typ.)
INRUSH CURRENT(Typ.)
OVER CURRENT
90%
90%
0.4A / 277VAC
90%
90%
Note.4
PROTECTION OVER VOLTAGE
Protection type : Constant current limiting, recovers automatically after fault condition is removed
47 ~ 53V
34 ~ 38V
14 ~ 17V
18 ~ 21V
28 ~ 34V
41 ~ 46V
23 ~ 27V
WORKING TEMP.
-40 ~ +70
WORKING HUMIDITY
ENVIRONMENT STORAGE TEMP., HUMIDITY
TEMP. COEFFICIENT
(Refer to "Derating Curve")
-40 ~ +80
0.03%/
, 10 ~ 95% RH
(0 ~ 50
)
10 ~ 500Hz, 2G 12min./1cycle, period for 72min. each along X, Y, Z axes
SAFETY STANDARDS
UL8750, EN61347-1, EN61347-2-13 approved ; Design refer to UL60950-1, TUV EN60950-1
WITHSTAND VOLTAGE
I/P-O/P:3.75KVAC
SAFETY & ISOLATION RESISTANCE
EMC
EMC EMISSION
PACKING
59 ~ 65V
20 ~ 95% RH non-condensing
VIBRATION
DIMENSION
54 ~ 60V
Protection type : Shut down o/p voltage, re-power on to recover
95
10 (RTH2)
Protection type : Shut down o/p voltage, re-power on to recover
MTBF
90%
95 ~ 108%
OVER TEMPERATURE
EMC IMMUNITY
90%
<0.75mA / 277VAC
LEAKAGE CURRENT
NOTE
24V
14.4 ~ 24V
RATED CURRENT
SETUP, RISE TIME
OTHERS
20V
12 ~ 20V
18 ~ 30V
2.7A
LOAD REGULATION
INPUT
15V
9 ~ 15V
I/P-FG:1.88KVAC
O/P-FG:0.5KVAC
I/P-O/P, I/P-FG, O/P-FG:100M Ohms / 500VDC / 25 / 70% RH
Compliance to EN55015, EN61000-3-2 Class C ( 60% load, 12V model
65% load) ; EN61000-3-3
Compliance to EN61000-4-2,3,4,5,6,8,11, EN61547, EN55024, light industry level (surge 4KV), criteria A
316.2Khrs min. MIL-HDBK-217F (25 )
167*53*29.5mm (L*W*H)
0.27Kg; 36pcs/11.2Kg/0.67CUFT
1. All parameters NOT specially mentioned are measured at 230VAC input, rated load and 25 of ambient temperature.
2. Ripple & noise are measured at 20MHz of bandwidth by using a 12" twisted pair-wire terminated with a 0.1uf & 47uf parallel capacitor.
3. Tolerance : includes set up tolerance, line regulation and load regulation.
4. Constant current operation region is within 60% ~100% rated output voltage. This is the suitable operation region for LED related applications, but please
reconfirm special electrical requirements for some specific system design.
5. Derating may be needed under low input voltages. Please check the static characteristics for more details.
6. Length of set up time is measured at cold first start. Turning ON/OFF the power supply may lead to increase of the set up time.
7. The power supply is considered as a component that will be operated in combination with final equipment. Since EMC performance will be affected by the
complete installation, the final equipment manufacturers must re-qualify EMC Directive on the complete installation again.
8. Heat Sink HS1,HS2 can not be shorted.
File Name:HLP-80H-SPEC 2011-07-28
HLP-80H
80W Single Output Switching Power Supply
Mechanical Specification
series
Unit:mm
167
159.5
5
3.5
HS2
CN2
43
6
5
4 CN1
3
2
1
FS1
T3.15A/300V
/350V
6
5
4
3
2
1
SVR1
4-
SVR2
3.5
3max.
29.5max.
53
HS1
AC Input Connector (CN1) : JST B6P-VH or equivalent
Pin No.
1
2,4,5
3
6
Assignment
AC/L
No Pin
AC/N
FG
DC Output Connector (CN2) : JST B6P-VH or equivalent
Mating Housing
Terminal
JST VHR
or equivalent
JST SVH-21T-P1.1
or equivalent
Pin No.
1
2
3,4
5,6
Assignment
DIM+(VR1)
DIM-(VR2)
+V
-V
Mating Housing
Terminal
JST VHR
or equivalent
JST SVH-21T-P1.1
or equivalent
HS1,HS2 can not be shorted
Block Diagram
fosc : 100KHz
EMI FILTER
&
RECTIFIERS
I/P
RECTIFIERS
&
FILTER
POWER
SWITCHING
PFC
CIRCUIT
+V
-V
DIM+
DIM-
O.L.P.
O.T.P.
FG
O.L.P.
DETECTION
CIRCUIT
PWM & PFC
CONTROL
O.V.P.
Derating Curve
Static Characteristics
100
100
90
80
80
230VAC
Input only
70
60
LOAD (%)
50
40
20
-40
-25
-10
0
15
30
50
AMBIENT TEMPERATURE ( )
60
70
(HORIZONTAL)
60
50
40
90
100
125
135
145
155 165
175
180
200
230
305
INPUT VOLTAGE (V) 60Hz
File Name:HLP-80H-SPEC 2011-07-28
80W Single Output Switching Power Supply
HLP-80H
series
Power Factor Characteristic
Constant Current Mode
1
0 .9 9
0 .9 8
0 .9 7
277VAC
PF
0 .9 6
230VAC
115VAC
0 .9 5
0 .9 4
0 .9 3
0 .9 2
50%
60%
70%
80%
90%
100%
(80W)
LOAD
EFFICIENCY vs LOAD (48V Model)
HLP-80H series possess superior working efficiency that up to 90% can be reached in field applications.
94
92
90
EFFICIENCY (%)
88
86
84
82
277VAC
80
230VAC
78
115VAC
76
74
72
70
10%
20%
30%
40%
50%
60%
70% 80%
90% 100%
LOAD
DRIVING METHODS OF LED MODULE
There are two major kinds of LED drive method "direct drive" and "with LED driver".
A typical LED power supply may either work in "constant voltage mode (CV) or constant current mode (CC)" to drive the LEDs.
Mean Well's LED power supply with CV+ CC characteristic can be operated at both CV mode (with LED driver, at area (A) and CC mode (direct drive, at area (B).
(B)
Constant
Current area
Vo(%)
100
(A) Constant
Voltage area
60
(max.)
(C)
Hiccup
Protection
50
95
Io (%)
Typical LED power supply I-V curve
File Name:HLP-80H-SPEC 2011-07-28
HLP-80H
80W Single Output Switching Power Supply
series
DIMMING OPERATION
FG
-V
-V
+V
+V
DIMDIM+
AC/N
AC/L
Built-in 3 in 1 dimming function, output constant current level can be adjusted through output connector by 1~10VDC, PWM signal, or connecting
a resistance between DIM+ and DIM-.
Please DO NOT connect "DIM-" to "-V".
Reference resistance value for output current adjustment (Typical)
OPEN
10K
20K
30K
40K
50K
70K
80K
90K
Single driver
60K
100K
Resistance
Multiple
drivers
value
(N=driver quantity for synchronized 10K
/N 20K /N 30K /N 40K /N 50K /N 60K /N 70K /N 80K /N 90K /N 100K /N
-----
dimming operation)
Percentage of rated current
10%
20%
30%
40%
50%
60%
70%
80%
90%
100%
102%~108%
OPEN
1 ~ 10V dimming function for output current adjustment (Typical)
Dimming value
1V
2V
3V
4V
5V
6V
7V
8V
9V
10V
Percentage of rated current
10%
20%
30%
40%
50%
60%
70%
80%
90%
100% 102%~108%
10V PWM signal for output current adjustment (Typical): Frequency range :100HZ ~ 3KHz
Duty value
10%
20%
30%
40%
50%
60%
70%
80%
90%
100%
Percentage of rated current
10%
20%
30%
40%
50%
60%
70%
80%
90%
100% 102%~108%
OPEN
Using the built-in dimming function can't turn the lighting fixture totally dark. Please refer to the connection method below to achieve 0% brightness
of the lighting fixture connecting to the LED power supply unit.
Dimming connection diagram for turning the lighting fixture ON/OFF :
N
FG
L
Switch
Relay
Adjuster
0~100K Ohms resistance
1~10V DC Voltage
10V PWM Signal
Green/
Yellow
Brown
Blue
AC/L
AC/N
HLP-80H
DIM+
DIMV(-)
V(+)
Blue
White
Black
Red
LED Lighting Fixture
Using a switch and relay can turn ON/OFF the lighting fixture.
1.Output constant current level can be adjusted through output cable by connecting a resistance or 1~10Vdc or 10V PWM signal between DIM+ and DIM-.
2.The LED lighting fixture can be turned ON/OFF by the switch.
File Name:HLP-80H-SPEC 2011-07-28