NCP5006SNT1G ON Semiconductor, NCP5006SNT1G Datasheet - Page 9

IC LED BOOST DRIVER SOT23-5

NCP5006SNT1G

Manufacturer Part Number
NCP5006SNT1G
Description
IC LED BOOST DRIVER SOT23-5
Manufacturer
ON Semiconductor
Type
Backlight, White LEDr
Datasheet

Specifications of NCP5006SNT1G

Constant Current
Yes
Topology
PWM, Step-Up (Boost)
Number Of Outputs
1
Internal Driver
Yes
Type - Primary
Backlight
Type - Secondary
White LED
Voltage - Supply
2.7 V ~ 5.5 V
Voltage - Output
24V
Mounting Type
Surface Mount
Package / Case
TSOT-23-5, TSOT-5, TSOP-5
Operating Temperature
-25°C ~ 85°C
Current - Output / Channel
50mA
Internal Switch(s)
Yes
Efficiency
90%
Number Of Segments
5
Operating Supply Voltage
2.7 V to 5.5 V
Maximum Power Dissipation
160 mW
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Minimum Operating Temperature
- 25 C
Led Driver Application
Keyboard Backlight, LED Displays
No. Of Outputs
1
Output Current
50mA
Output Voltage
24V
Input Voltage
2.7V To 5.5V
Dimming Control Type
PWM
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Frequency
-
Lead Free Status / Rohs Status
 Details
Other names
NCP5006SNT1G
NCP5006SNT1GOSTR

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
NCP5006SNT1G
Manufacturer:
ON
Quantity:
3 000
Part Number:
NCP5006SNT1G
Manufacturer:
ON/安森美
Quantity:
20 000
Company:
Part Number:
NCP5006SNT1G
Quantity:
30
Company:
Part Number:
NCP5006SNT1G
Quantity:
10
Output Load Drive
shall operate the NCP5006 in the continuous output current
mode. Such a mode is achieved by using and external
reservoir capacitor (see Table 1) across the LED.
diodes shall be within the maximum ratings specified for
these devices. Of course, pulsed operation can be achieved,
due to the EN signal Pin 4, to force high current into the
LED when necessary.
100
100
In order to optimize the built−in Boost capabilities, one
At this point, the peak current flowing into the LED
90
80
70
60
50
40
30
20
10
90
80
70
60
50
40
30
20
10
0
0
2.50
2.50
Figure 10. Overall Efficiency vs. Power Supply @
Figure 12. Overall Efficiency vs. Power Supply @
4 LED/15 mA
5 LED/4 mA
3 LED/15 mA
Yield = f(V
Yield = f(V
3.00
3.00
5 LED/15 mA
3 LED/4 mA
I
out
bat
I
bat
out
3.50
3.50
) @ I
) @ I
= 4.0 mA, L = 22 mH
= 15 mA, L = 22 mH
out
4 LED/4 mA
out
V
Vbat (V)
bat
4.00
4.00
= 4.0 mA/L
= 15 mA/L
(V)
2 LED/4 mA
TYPICAL OPERATING CHARACTERISTICS
4.50
4.50
2 LED/15 mA
out
out
= 22 mH
= 22 mH
5.00
5.00
http://onsemi.com
5.50
5.50
NCP5006
9
(see Figure 9), provides a rectification and filtering
function.
100
100
90
80
70
60
50
40
30
20
10
90
80
70
60
50
40
30
20
10
The Schottky diode D1, associated with capacitor C2
When a pulse−operating mode is acceptable:
A PWM mode control can be used to adjust the output
current range by means of a resistor and a capacitor
connected across FB pin. On the other hand, the
Schottky diode can be removed and replaced by at
least one LED diode, keeping in mind such LED shall
sustain the large pulsed peak current during the
operation.
0
0
2.50
2.50
Figure 11. Overall Efficiency vs. Power Supply @
Figure 13. Overall Efficiency vs. Power Supply @
4 LED/20 mA
2 LED/10 mA
3 LED/20 mA
Yield = f(V
Yield = f(V
3.00
3.00
4 LED/10 mA
5 LED/20 mA
I
out
I
bat
bat
out
3.50
3.50
) @ I
= 10 mA, L = 22 mH
) @ I
= 20 mA, L = 22 mH
5 LED/10 mA
out
out
V
Vbat (V)
bat
4.00
4.00
= 10 mA/L
= 20 mA/L
(V)
4.50
4.50
2 LED/20 mA
3 LED/10 mA
out
out
= 22 mH
= 22 mH
5.00
5.00
5.50
5.50

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