NCP5604AAGEVB ON Semiconductor, NCP5604AAGEVB Datasheet - Page 10

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NCP5604AAGEVB

Manufacturer Part Number
NCP5604AAGEVB
Description
EVAL BOARD FOR NCP5604AAG
Manufacturer
ON Semiconductor
Datasheets

Specifications of NCP5604AAGEVB

Design Resources
NCP5604A EVB BOM NCP5604AAGEVB Gerber Files NCP5604 EVB Schematic NCP5604 Demo Brd BOM
Current - Output / Channel
100mA
Outputs And Type
4, Non-Isolated
Voltage - Output
4.8 ~ 6 V
Features
On-Off Switch
Voltage - Input
2.85 ~ 5.5 V
Utilized Ic / Part
NCP5604
Core Chip
NCP5604
Development Tool Type
Hardware - Eval/Demo Board
Leaded Process Compatible
Yes
Mcu Supported Families
NCP5604A
Peak Reflow Compatible (260 C)
Yes
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With/related Products
NCP5604AAG
Other names
NCP5604AAGEVBOS
Vout and ground, but the current through such network will
not be regulated by the NCP5604A chip (see Figure 10).
On top of that, the total current out of the Vout pin shall be
limited to 100 mA.
DIMMING
100% duty cycle, but the output current is pulsed since the
system is continuously switched ON/OFF. There is no need
for extra passive component, the clock being provided by
an I/O port from the MCU (see Figure 11).
GND
GND
CONTROL
Figure 9. Using the NCP5604B to Drive a Three LED
Finally, an external network can be connected across
The dimming can be achieved by two means:
The digital PWM is straightforward, yielding a zero to
Use a digital PWM signal to control the EN pin
Use an analog signal to control the reference current
IREF pin.
4.7uF/6.3V
Figure 10. Extra Load Connected to Vout
GND
C4
12
8
7
6
5
100k
R1
Vbat
C5
1
2
3
4
9
VBAT
EN
IREF
AGND
PGND
1 mF/6.3 V
U1
NCP5604B
220 nF/10 V
Layout
C3
D3
VOUT
C2N
C1N
C2P
C1P
LWY87S
D2
LWY87S
14
13
11
10
12
LWY87S
D1
NCP5604A, NCP5604B
220 nF/10 V
220 nF/10 V
C2
C1
GND
http://onsemi.com
C5
GND
10
circuit has been properly started. On the other hand, with
a 1% to 99% span, the circuit supports a large Duty Cycle
to accommodate any range of dimming. The waveforms
given in Figure 12 illustrate the NCP5604A behavior
during the 50 kHz PWM operation. The same mechanism
applies for the NCP5604B version.
technique can be built with two extra components (one
resistor + one NMOS), the net advantage being a
continuous output current once the operating point has
been stabilized (see Figure 13). The absolute output
current tolerance depends upon the precision of the two
external resistors, the R
negligible in front of the resistor value. The example given,
Figure 13 yields a 1.0 mA output current when Q1 is OFF,
Input PWM Signal Frequency:
100 Hz to 200 kHz
The PWM frequency can be up to 200 kHz once the
Besides the popular PWM mode, a simple analog
Figure 11. Basic Digital PWM Dimming Control
Figure 12. PWM Modulation Span: 1% to 99%
PWM
GND
GND
DS(on)
1
2 2
3
4
9
VBAT
EN
IREF
AGND
PGND
of the NMOS being
VOUT
C2N
C3N
C2P
C3P

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