AIMTEC AMLDL-RZ Up to 700ma | led driver Datasheet

Series AMLDL-RZ
Up to 700mA | LED Driver
FEATURES:
•
•
•
•
Step Down DC/DC LED driver
Constant current output
Wide (4:1) input voltage range
High efficiency up to 95%
•
•
•
•
Models
Single output
Model
Input Voltage
(V)
Output Voltage
(V)
Maximum Rated
Current (mA)
AMLDL-3050-RZ
AMLDL-3060-RZ
AMLDL-3070-RZ
7-30
7-30
7-30
2-28
2-28
2-28
500
600
700
Operating Temperature range -40ºC to +71ºC
Open and Short LED Protection
PWM/Digital and Analog Voltage dimming
Remote ON/OFF Control
Max
Capacitive
Load (uF)
Efficiency (%)
Package Type
95
95
95
DIP14
DIP14
DIP14
47
47
47
NOTE: All specifications in this datasheet are measured at an ambient temperature of 25°C, humidity<75%, nominal input voltage and at
rated output load unless otherwise specified.
Input Specifications
Parameters
Voltage range
Filter
Absolute Maximum Rating
Peak Input Voltage time
DC/DC ON (Leave open if not used)
DC/DC OFF
Maximum Remote pin drive current
Quiescent Current in Shutdown mode
On/Off Control (Digital Control)
Minimum Switch ON/OFF time
On/Off Control (Analog Dimming Control)
(Leave open if not used)
Drive with DC Voltage
Output current adjustment*
Control Voltage Range limits
Maximum Analog pin drive current
Output Specifications
Parameters
Current accuracy
Output Voltage range
Short Circuit protection
Output no load Protection
Max load capacitance
Temperature coefficient
Ripple & Noise
General Specifications
Parameters
Switching frequency
Operating temperature
Storage temperature
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Nominal
Typical
24
7-30
Capacitor
Vadj = 1.25V
Vin = 30V, Vadj <0.15
ON –Open or 0.3V<Vadj<1.25
OFF(shutdown) – Vadj<0.15
Max PWM Frequency 1KHz
200
Input voltage range
Maximum
Units
40
500
VDC
ms
1
0.25
mA
mA
ns
0.3-1.25
VDC
0.3V < VADJ<1.25V to adjust output current from 25% to 100%
Vin-Vout<20
ON – 0.3< Vadj <1.25V
OFF – Vadj< 0.15
Vadj = 1.25V
25-100
1
Conditions
Typical
Maximum
±10
V input = 30V
2-28
Regulated at the rated current for each model
Continuously
47
Ta = -40 to +85°C
±0.05
20MHz Bandwidth
450
Conditions
100% load
Typical
70 - 450
-40 to +71
-40 to +125
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VDC
Maximum
%
mA
Units
%
VDC
µF
%/oC
mV p-p
Units
KHz
o
C
o
C
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Series AMLDL-RZ
Up to 700mA | LED Driver
General Specifications (continued)
Parameters
Maximum case temperature
Thermal Impedance
Cooling
Humidity
Case material
Weight
Dimensions (L x W x H)
MTBF
Maximum Soldering Temperature
NOTES:
Conditions
Typical
Free air convection
+40
Free air convection
Maximum
105
Units
o
o
C
C/W
95
% RH
Non-Conductive Black Plastic (UL94-V0 rated)
2.6
g
0.80 x 0.40 x 0.27 inches
20.32 x 10.16 x 6.88 mm
>1, 600,000 hrs (MIL-HDBK-217 F at +25 oC)
o
1.5mm from case for 10sec.
260
C
1.Reversed polarity at the input power will damage the driver. The input ground must not be connected to the negative output.
2.Leave the pin VADJ opened if not used , grounding VADJ will shut the driver off, connecting VADJ to +Vin will damage the driver.
3.Maximum output open voltage is equal to input voltage
Safety Specifications
Parameters
Standards
Designed to meet EN 60960-1
Pin Out Specifications
Pin
1
2
7
8
14
Single
- V Input
Vadj
- V Output
+ V Output
+ V Input
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F 051e R12.E
- DC Supply
PWM/ON/OFF or not used
LED Cathode connection
LED Anode connection
+ DC Supply
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Series AMLDL-RZ
Up to 700mA | LED Driver
Dimensions
15.24
(0.60)
2.54
(0.10)
10.16
(0.40)
1 2
7
Bottom View
14
8
5.08
(0.20)
20.32
(0.80)
0.50
(0.02)
3.05
(0.12)
6.88
(0.27)
Printed Face
Application circuit examples:
+Vout
+Vout
+
AMLDL-RZ
-Vin
1
+
1st LED
AMLDL-RZ
-Vout
-Vin
-Vout
1
1
1st LED
1
1
Last LED
Last LED
Analogue DIM
PWM Dim/ON/OFF
Analogue DIM
PWM Dim/ON/OFF
AC In
5Vac
to 21Vac
0.1uF
optional
1
+Vin
100uF to
330uF
+
+Vout
AMLDL-RZ
-
1
-Vout
-Vin
AC In
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VADJ
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1st LED
1
Last LED
Analogue DIM
PWM Dim/ON/OFF
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Series AMLDL-RZ
Up to 700mA | LED Driver
Output Current Adjustment by External DC Control Voltage:
The nominal output current is given by:
Vadj
Ioutnom = Iout
1.25
+Vout
VADJ
0.3 -1.25V
1
AMLDL-RZ
1st LED
-Vout
-Vin
1
Last LED
GND
Vctrl
+5v
R1
30K
+Vin
10K
+Vout
VADJ
R2
10K
1
AMLDL-RZ
1st LED
VADJ
-Vout
-Vin
+Vout
10K
1
TL431
10K
1
VADJ =
R2
R1 + R2
AMLDL-RZ
-Vin
1
1st LED
-Vout
1
X Vctrl
Resistive Dimming Control
A simplified dimming control can be achieved using a variable resistor connected between VADJ and GND. Capacitor CADJ
is optional, it is installed to limit AC mains interference and high frequency noise. The recommended value of CADJ is
0.22µF.
The nominal output current is given by:
+Vout
Ioutnom= Iout x Radj
VADJ
Radj + 200K
NOTE: Typical error is ±10% with resistive dimming control
CADJ
RADJ
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AMLDL-RZ
-Vin
1
1st LED
-Vout
1
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Series AMLDL-RZ
Up to 700mA | LED Driver
Output Current Adjustment by PWM Control:
Driving VADJ Directly
A Pulse Width Modulated (PWM) signal with a duty cycle of DPWM can be applied directly to VADJ pin as shown below.
The output current is given by:
Ioutnom = Iout x DPWM [for 0.01<DPWM<1]
1.25V
+Vout
PWM
VADJ
AMLDL-RZ
-Vin
0V
1st LED
1
-Vout
Last LED
1
GND
Driving VADJ Via Open Collector Transistor
The VADJ can also be driven via an open collector transistor as shown below.
The diode and resistor serve to suppress any possible high amplitude negative voltage spikes to the VADJ input resulting
from the collector to emitter capacitance of the transistor. Any negative voltage spikes will cause errors in output current
and/or unstable driver operation.
+Vout
1.25V
VADJ
PWM
10K
0V
AMLDL-RZ
-Vin
1
1st LED
-Vout
Last LED
1
1
GND
Driving the VADJ from a Microcontroller
The VADJ can be driven from an open drain output of a microcontroller as shown below. The diode and resistor serve to
suppress any possible high amplitude negative voltage spikes to the VADJ input resulting from the drain to source
capacitance of the FET. Any negative voltage spikes will cause errors in output current and/or unstable driver operation.
+Vout
VADJ
MCU
10K
AMLDL-RZ
-Vin
1
1st LED
-Vout
Last LED
1
1
GND
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Series AMLDL-RZ
Up to 700mA | LED Driver
Output Current Adjustment by PWM Control (Dimming):
A PWM signal must have a frequency of greater than 100Hz to prevent any visible flicker.
AMSR-7805-Z
+Vin
10uF
35V
-Vin
+
+
-
-
100nF
+ 10uF
- 16V
470
7
1
1
VR
100K
6
2
-
4
Vcc
Reset
-
100nF
Discharge
1N4148
+
+
8
Threshold
Out
Trigger
CRT_V
GND
100nF
NE 555
3.3K
2SD11782K
3
PMW
AMLDL-RZ
Pin 2 (VADJ)
1
1N4148
210
5
+
1
-
AMLDL-RZ
Pin 1
100nF
Output Current Adjustment by PWM Control (Flash):
+Vin
Vin
AMSR-7805-Z
10uF
35V
+
+
-
-
100nF
+
+ 10uF
- 16V
VR
100K
7
2K
6
2
8
Vcc
100nF
Reset
Threshold
Out
Trigger
GND
- 16V
NE 555
F 051e R12.E
-
Discharge
+ 10uF
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4
1
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CRT_V
3.3K
2SD11782K
3
1
210
5
+
-
100nF
1N4148
PMW
AMLDL-RZ
Pin2 (VADJ)
AMLDL-RZ
Pin 1
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Series AMLDL-RZ
Up to 700mA | LED Driver
Thermal Feedback Circuit
+Vin
R1
4.7K
BZX284C6V2
1
R3
10K
Thermistor
B 3900
R2
10K
+Vin
VADJ
AMLDL-RZ
10K
Q1
-Vin
+Vout
1
1st LED
-Vout
Last LED
1
1
GND
Thermally Connected
The selection of components for the thermal feedback circuit is depends on the choice of R2 and R3 and the effectiveness of
the LED heatsink. To optimize the LED brightness control at high temperatures, the LEDs must have a sufficient thermal
extraction path, if not the reduction in drive current will not be optimal.
The thermal control threshold points are set by adjusting R2. Three values (33K, 22K, and 10K) were tested. These values
were chosen to provide thermal break points of approximately 25ºC, 40ºC, and 60ºC.
Note, that the LED drive current will not continually dim to zero – the thermal controls applying DC control to that VADJ pin
has a dimming ratio from maximum current of approximately 5:1.
Once the reduced DC level drops below the shutdown threshold of around 200mV, the LED drive current will fall to zero and
the LEDs will be off.
The slope of the current reduction is determined by the beta value of the thermistor. The larger the Beta value the sharper
will be the resultant current control response. The slope of the current reduction is also affected by Q1’s base emitter voltage
variation with temperature.
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Series AMLDL-RZ
Up to 700mA | LED Driver
Output Current Adjustment By External DC Control Voltage:
1N4148
6.2K
VADJ
1.25V
+Vout
AMLDL-RZ
1
10K
-Vin
1
1st LED
-Vout
Last LED
1
GND
1N4148
6.2K
VADJ
1.25V
+Vout
AMLDL-RZ
1
10K
-Vin
1
1st LED
-Vout
Last LED
1
GND
1N4148
VADJ
1.25V
+Vout
AMLDL-RZ
1
+5V ~ +Vin
6.2K
10K
-Vin
1
1st LED
-Vout
Last LED
1
GND
4.7K
1N4148
TL431
OUT: 0 ~ 2.5V
10K
6.2K
+Vout
AMLDL-RZ
1
1
VADJ
1.25V
10K
-Vin
1
1st LED
-Vout
Last LED
1
GND
GND
1N4148
6.2K
VADJ
1.25V
+Vout
AMLDL-RZ
1
10K
-Vin
1
1st LED
-Vout
Last LED
1
GND
1N4148
6.2K
VADJ
1.25V
+Vout
AMLDL-RZ
1
10K
-Vin
1
1st LED
-Vout
Last LED
1
GND
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Series AMLDL-RZ
Up to 700mA | LED Driver
Typical Characteristics: AMLDL-3050-RZ
Operating Frequency vs Input Voltage
(Forward Voltage = 3.5V per LED)
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Series AMLDL-RZ
Up to 700mA | LED Driver
AMLDL-3050-RZ
Efficiency vs Vin
(Forward Voltage = 3.5V per LED)
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Series AMLDL-RZ
Up to 700mA | LED Driver
AMLDL-3050-RZ
Output Current Vs VADJ
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Series AMLDL-RZ
Up to 700mA | LED Driver
Typical Characteristics: AMLDL-3060Z
Operating Frequency vs Input Voltage
(Forward Voltage = 3.5V per LED)
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Series AMLDL-RZ
Up to 700mA | LED Driver
AMLDL-3060Z
Efficiency vs Vin
(Forward Voltage = 3.5V per LED)
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Up to 700mA | LED Driver
AMLDL-3060Z
Output Current Vs VADJ
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Series AMLDL-RZ
Up to 700mA | LED Driver
Typical Characteristics: AMLDL-3070Z
Operating Frequency vs Input Voltage
(Forward Voltage = 3.5V per LED)
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Series AMLDL-RZ
Up to 700mA | LED Driver
AMLDL-3070Z
Efficiency vs Vin
(Forward Voltage = 3.5V per LED)
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Series AMLDL-RZ
Up to 700mA | LED Driver
AMLDL-3070Z
Output Current Vs VADJ
NOTE: 1. Datasheets are updated as needed and as such, specifications are subject to change without notice. Once printed or downloaded, datasheets are no longer
controlled by Aimtec; refer to www.aimtec.com for the most current product specifications. 2. Product labels shown, including safety agency certifications on labels, may
vary based on the date manufactured. 3. Mechanical drawings and specifications are for reference only. 4. All specifications are measured at an ambient temperature
of 25°C, humidity<75%, nominal input voltage and at rated output load unless otherwise specified. 5. Aimtec may not have conducted destructive testing or chemical
analysis on all internal components and chemicals at the time of publishing this document. CAS numbers and other limited information are considered proprietary and
may not be available for release. 6. This product is not designed for use in critical life support systems, equipment used in hazardous environments, nuclear control
systems or other such applications which necessitate specific safety and regulatory standards other the ones listed in this datasheet. 7. Warranty is in accordance with
Aimtec’s standard Terms of Sale available at www.aimtec.com.
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