APGRD004 Microchip Technology, APGRD004 Datasheet - Page 3

REF DESIGN MOD AUTO AMBNT LIGHT

APGRD004

Manufacturer Part Number
APGRD004
Description
REF DESIGN MOD AUTO AMBNT LIGHT
Manufacturer
Microchip Technology
Datasheets

Specifications of APGRD004

Main Purpose
Lighting, RGB LED Controller
Embedded
Yes, MCU, 8-Bit
Utilized Ic / Part
MCP2021, PIC12F615
Primary Attributes
4 Tiny Boards, Each Have: RGB LED, LIN Transceiver, Voltage Regulator, MCU
Secondary Attributes
LIN Commands are Interpreted to Control 16,383 Colors and 1,023 Dimming Levels
Silicon Manufacturer
Microchip
Silicon Core Number
APGDT001
Kit Contents
4 Ambient Lighting Modules, Documentation
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
APGRD004
Manufacturer:
MICROCHIP
Quantity:
12 000
LED Lighting
LEDs are no longer used just for providing the pretty red and
green indicator lights on electronic equipment. Advances
in technology have allowed LEDs to be used as practical
sources of illumination. The primary benefits of LEDs are
long life, durability and efficiency. When driven properly, a
power LED can last tens of thousands of hours without a
degradation of light output. The typical efficacy of a power
LED, measured in lumens per watt, is 40-80. This is several
times greater than incandescent light sources and is only
exceeded by fluorescent light sources. Since the LED is a
solid-state device, it can withstand shock and vibration that
would damage a filament bulb.
LED Applications
The benefits of LED lighting are helpful in many types of
lighting applications:
www.microchip.com/lighting
Common SMPS Topologies Useful for LED Lighting
LED Lighting Solutions
Charge Pump
Buck
Boost
SEPIC
Buck-Boost
Flyback
Regulator
Topology
 Architectural emergency exit lighting
 Architectural color effect lighting
 Industrial and outdoor lighting
 Traffic and railway signals
 Automotive brake lights
 Dot matrix signs and video displays
 LCD display backlighting
 Personal flashlights
 Medical instrument and tool lighting
 Digital camera flash and video light
Automotive and aircraft cabin lighting
Automotive and aircraft instrument panel lighting
-V
V
V
OUT
OUT
OUT
Relationship
Depends on
transformer
V
V
V
IN
IN
IN
< V
< V
< V
to V
> V
< V
IN
IN
IN
OUT
OUT
OUT
< V
< V
< V
OUT
OUT
OUT
Complexity
Medium
Medium
Medium
Medium
Medium
Low
Efficient LED Control
LEDs must be driven with a source of constant current. Most
LEDs have a specified current level that will achieve the
maximum brightness for that LED without premature failures.
An LED could be driven with a linear voltage regulator
configured as a constant current source. However, this
approach is not practical for higher power LEDs due to power
dissipation in the regulator circuit. A switch-mode power
supply (SMPS) provides a much more efficient solution to
drive the LED.
An LED will have a forward voltage drop across its terminals
for a given current drive level. The power supply voltage and
the LED forward voltage characteristics determine the SMPS
topology that is required. Multiple LEDs can be connected
in series to increase the forward voltage drop at the chosen
drive current level.
The SMPS circuit topologies adopted to regulate current
in LED lighting applications are the same used to control
voltage in a power supply application. Each type of SMPS
topology has its advantages and disadvantages as presented
in the table below.
This design guide presents two types of LED driver solutions.
First, an analog driver IC can be used independently or
together with a MCU for added intelligence. Second, the LED
drive function can be integrated into the MCU application.
Literature on the Web
Component
AN1114 – Switch Mode Power Supply (SMPS)
Topologies (Part I), DS01114
AN1207 – Switch Mode Power Supply (SMPS)
Topologies (Part II), DS01207
Medium
Medium
Medium
Medium
Medium
Count
High
– Limited I
– No inductors
– Chopped I
– High side drive
– Extra parts needed to isolate
– Smooth I
– Multiple outputs
– Two inductors
– Single inductor
– Up to four switches
– Transformer can provide electrical
– Multiple outputs possible
output from input
isolation
LED Lighting Solutions Design Guide
OUT
IN
IN
Comments
range
3

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