PAM2810AG [DIODES]
LED Driver;型号: | PAM2810AG |
厂家: | DIODES INCORPORATED |
描述: | LED Driver 驱动 光电二极管 接口集成电路 |
文件: | 总11页 (文件大小:289K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
A Product Line of
Diodes Incorporated
PAM2810
4-CHANNEL PROGRAMMABLE LED CURRENT
Description
Pin Assignments
The PAM2810 provides 4 regulated current sinks, capable of sinking
up to 40mA current to accommodate 4 white LEDs. It requires no
charge pump, has no noise and EMI, and significantly improves the
efficiency in Li bettery range.
LED brightness can be controlled by PWM techniques. The constant
current sink is set with an external sense resistor.
Alternatively, a PWM signal applied to the EN pin can vary the
anticipated brightness of the LED. The device is in shut down mode
when the EN input is logic low.
The PAM2810 is available in SOT23-8 and DFN2mmx2mm
packages.
Features
•
•
•
•
•
•
•
•
•
•
Cost Effective LED Driver
Support up to 4 White LEDs
Output Current up to 40mA per LED
Low Dropout Voltage
Ultra Low Quiescent Supply Current: 65 A (typ)
No Noise and EMI
Shutdown Current Less than 1 A
Over Temperature Protection
Small Packages : SOT23-8 and DFN2mmx2mm
Pb-free Package
Applications
•
•
•
White LED for LCD Display Backlights
White LED Keypad Backlights
1-Cell Li-Ion Battery-operated Equipment Including:
PDAs
Hand-Held PCs
Cellular Phone
Typical Applications Circuit
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© Diodes Incorporated
PAM2810
Document number: DSxxxxx Rev. 1 - 1
A Product Line of
Diodes Incorporated
PAM2810
Typical Applications Circuit (cont.)
Pin Description
Pin Number
Pin
Name
Function
DFN2x2
SOT23-8
4
3
2
1
5
6
7
8
Input Voltage
Ground
VIN
1
GND
EN
2
3
4
5
6
7
8
Enable, Allow PWM Brightness Control, Active High
LED Current Adjustment Pin
LED4 Cathode Terminal
ISET
LED4
LED3
LED2
LED1
LED3 Cathode Terminal
LED2 Cathode Terminal
LED1 Cathode Terminal
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PAM2810
Document number: DSxxxxx Rev. 1 - 1
A Product Line of
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PAM2810
Block Diagram
Absolute Maximum Ratings (@TA = +25°C, unless otherwise specified.)
These are stress ratings only and functional operation is not implied. Exposure to absolute maximum ratings for prolonged time periods may
affect device reliability. All voltages are with respect to ground.
Parameter
Input Voltage Range
Rating
-0.3 to +6.0
-0.3 to (VIN +0.3)/6V
150
Unit
V
PWM Pin Voltage
Maximum Junction Temperature
Storage Temperature
-65 to +150
300, 5sec
°C
Soldering Temperature
Recommended Operating Conditions (@TA = +25°C, unless otherwise specified.)
Parameter
Rating
2.7 to 5.5
-40 to +125
-40 to +85
Unit
Input Voltage Range
V
Junction Temperature Range
Ambient Temperature Range
°C
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© Diodes Incorporated
PAM2810
Document number: DSxxxxx Rev. 1 - 1
A Product Line of
Diodes Incorporated
PAM2810
Thermal Information
Parameter
Symbol
Package
SOT23-8
DFN2x2-8
SOT23-8
DFN2x2-8
Max
Unit
250
80
Thermal Resistance (Junction to Ambient)
θJA
°C/W
130
30
Thermal Resistance (Junction to Case)
θJC
Electrical Characteristics (@TA = +25°C, VIN = 3.6V, RSET = 5.1kΩ, VLEDX = 0.5V, unless otherwise specified.)
Parameter
Input Voltage Range
Symbol
VIN
Test Conditions
Min
Typ
Max
Units
V
Vf = VLED
(Note 1)
3.6
5.5
40
Output Current
mA
%
ILEDX
VDD = 5V
Current Matching Between Any Two
Outputs
±5
ILED-MATCH
Current Sink Dropout
0.25
V
V
VDROPOUT
VSET
LEDX/ISET
IQ
ISHDN
VHI
RSET = 3kΩ, ILEDX = 40mA
ISET PIN Voltage
1.22
100
65
Output Current to Current Set Ratio
Quiescent Supply Current
Shutdown Supply Current
EN Input Logic High
I
80
1
µA
µA
V
RSET = 10MΩ, with no loads
EN = Logic Low
0.1
1.4
EN Input Logic Low
0.4
1
V
VLO
V(EN) = 1.5V
V(EN) = 0V
0.1
0.1
µA
µA
EN Pin Current
IEN
1
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© Diodes Incorporated
PAM2810
Document number: DSxxxxx Rev. 1 - 1
A Product Line of
Diodes Incorporated
PAM2810
Typical Performance Characteristics (@TA = +25°C, VIN = 3.6V, RSET = 5.1kΩ, VLEDX = 0.5V, unless otherwise specified.)
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© Diodes Incorporated
PAM2810
Document number: DSxxxxx Rev. 1 - 1
A Product Line of
Diodes Incorporated
PAM2810
Application Information
The PAM2810 is a 4-channel programmable white-LED driver. The matched current regulators each have a 100:1 ratio between the LEDx
outputs and the ISET current. The PAM2810 is capable of supplying 40mA per channel with the proper selection of the external RSET resistor,
with a total of 160mA output current available. LED brightness control of PAM2810 can be achieved with a PWM signal.
Output Current Capability
The PAM2810 is capable of providing up to 40mA per LED under an input voltage of 2.7V to 5.5V. An external resistor is used to set the output
current, as approximated with the following equation:
= 100 * (1.22V /
)
ILEDX
RSET
In order that the output currents could be regulated properly, the LEDx pin voltage(VLEDX) must be larger than the dropout voltage of the current
sink(VDROPOUT). To ensure the desired current is obtained, apply the following equation to determine the minimum input voltage:
−
=
≥
VIN VDIODE VLEDX VDROPOUT
V
DIODE is the diode forward voltage, and some typical value of VDROPOUT can be found from the following table.
Table 1. ILED, RSET and VDROPOUT
ILED
RSET
12.7kΩ
6.2kΩ
4.3kΩ
3.2kΩ
VDROPOUT
40mV
10mA
20mA
30mA
40mA
80mV
120mV
150mV
PWM Brightness Control
Brightness control can be realized by applying a PWM signal to the EN pin. The constant current is set by the external resistor selected using the
RSET equation. The LED brightness is proportional to the duty cycle (D) of the PWM signal. The PWM frequency (f) should be limited to
accommodate the start-up time (50µs) of the device.
D * (1/f) >50µs
Table 2. PWM Frequency and Duty Cycle
Duty-Cycle
Request
Frequency
Cycle
0.5
>
100Hz
10ms
100
5
>
1kHz
2kHz
4kHz
8kHz
10kHz
1ms
100
10
>
500µs
250µs
125µs
100µs
100
20
>
100
40
>
100
50
>
100
The maximum PWM frequency can be selected according to the table above.
If the PWM frequency is much less than 100Hz, flickering may be seen in the LEDs. For the PAM2810, zero duty cycle will turn off the LEDs and
a 50% duty cycle will result in an average ILED being half of the programmed LED current. For example, if RSET is set to program 20mA, a 50%
duty cycle will result in an average ILED of 10mA. RSET should be chosen not to exceed the maximum current capability of the device.
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PAM2810
Document number: DSxxxxx Rev. 1 - 1
A Product Line of
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PAM2810
Application Information (cont.)
Shutdown
When the EN pin is logic low, the PAM2810 will be in shutdown mode. While disabled, the PAM2810 typically draws 0.1µA current form the
power supply. There is no internal pull-up or pull-down on the EN pin.
Over Temperature Protection
The PAM2810 equips over temperature protection. When the junction temperature (TJ) exceeds +150°C, the current source turns off
automatically. The device will turn on again after the IC’s TJ cools down under +125°C. Operating at absolute maximum temperature is not
recommended.
Parallel LEDx Outputs for Increased Current Drive
Output pins LED1 to LED4 may be connected together in any combination to sink higher current through fewer LEDs. For example in Figure 1,
outputs LED1 and LED2 are connected together to drive one LED while LED3 and LED4 are connected together to drive a second LED.
Figure 1. Two Parallel Conneted LEDs
With this configuration, two parallel current sinks of equal value both provide current to each LED. If the current sink provides 10mA each, every
LED can be drived with 20mA and gets double brightness. Other combinations of parallel outputs can be implemented similarly, such as in
Figure 2.
Figure 2. One Parallel Connected LED
Connecting outputs in parallel does not affect internal operation of the PAM2810 and has no impact on the electrical characteristics.
If less than four LEDs connected, the left pin can be floating or connected to GND, as shown in Typical Application Circuit on Page 2.Connecting
to GND is recommended. The current calculating method is the same as the RSET equation mentioned.
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PAM2810
Document number: DSxxxxx Rev. 1 - 1
A Product Line of
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PAM2810
Application Information (cont.)
Power Dissipation
The maximum allowable power dissipation that the package is capable of handling can be determined as follows:
= ( )/ θJA
−
RDMAX TJ(MAX) TA
Where TJ(MAX) is the maximum junction temperature, TA is the ambient temperature, and θJA is the junction-to-ambient thermal resistance of the
specified package. The DFN 2x2 package has a θJA of 80°C/W and the SOT23-8 250°C/W. This value of θJA is highly dependant upon the layout
of the PCB. The actual power dissipated by the PAM2810 follows the equation:
= (
*
) − N(
*
)
PDISS
VIN
I
IN
VDIODE ILEDX
Where N equals the number of active outputs, VDIODE is the LED forward voltage, and ILEDX is the current supplied to the LEDx.
Input Capacitor Selection
The PAM2810 is designed to work under a stable input voltage. To ensure the stability of input, it may be necessary to add a small input
capacitor to help filter out any noise that probably appears on the line. Surface-mount multi-layer ceramic capacitors are recommended, which
are small and inexpensive. A capacitance of 0.1µF is typically sufficient.
Ordering Information
Part Number
PAM2810AG
PAM2810BA
Marking
EJXYW
EJXYW
Package Type
DFN 2x2-8
SOT23-8
Standard Package
3000 Units/Tape&Reel
3000 Units/Tape&Reel
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© Diodes Incorporated
PAM2810
Document number: DSxxxxx Rev. 1 - 1
A Product Line of
Diodes Incorporated
PAM2810
Marking Information
Package Outline Dimensions (All dimensions in mm.)
SOT23-8
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PAM2810
Document number: DSxxxxx Rev. 1 - 1
A Product Line of
Diodes Incorporated
PAM2810
Package Outline Dimensions (cont.) (All dimensions in mm.)
DFN 2x2
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© Diodes Incorporated
PAM2810
Document number: DSxxxxx Rev. 1 - 1
A Product Line of
Diodes Incorporated
PAM2810
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final and determinative format released by Diodes Incorporated.
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Copyright © 2012, Diodes Incorporated
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© Diodes Incorporated
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Document number: DSxxxxx Rev. 1 - 1
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