参数资料
型号: A6264KLPTR-T
厂商: Allegro Microsystems Inc
文件页数: 11/16页
文件大小: 0K
描述: IC LED DVR STOP/TAIL 16-TSSOP
标准包装: 1
系列: *
类型: 汽车用,高亮度(HBLED)
输出数: 4
拓扑: 恒定电流,线性(LDO),PWM
频率: *
效率: *
电流 - 输出 / 通道: 100mA
输出电压: *
电源电压: 6 V ~ 50 V
内部开关:
工作温度: -40°C ~ 125°C
封装/外壳: 16-TSSOP(0.173",4.40mm)裸露焊盘
包装: 标准包装
供应商设备封装: 16-TSSOP-EP
其它名称: 620-1364-6
A6264
Automotive Stop/Tail LED Array Driver
increases from 14 to 17 V. Without the thermal foldback feature
the temperature would continue to increase up to the thermal
shutdown temperature as shown by the dashed line. The solid line
shows the effect of the thermal foldback function in limiting the
temperature rise.
Figures 5 and 6 show the thermal effects where the thermal
resistance from the silicon to the ambient temperature is 40°C/W.
Thermal performance can be enhanced further by using a signifi-
cant amount of thermal vias as described below.
Thermal Dissipation
The amount of heat that can pass from the silicon of the A6264
to the surrounding ambient environment depends on the thermal
resistance of the structures connected to the A6264. The thermal
resistance, R θ JA , is a measure of the temperature rise created by
power dissipation and is usually measured in degrees Celsius per
watt (°C/W).
The temperature rise, Δ T, is calculated from the power dissipated,
P D , and the thermal resistance, R θ JA , as:
? For minimum supply voltage the limiting factor is the maximum
drop-out voltage of the regulator, where the difference between
the load voltage and the supply is insufficient for the regulator
to maintain control over the output current.
Minimum Supply Limit: Regulator Saturation Voltage
The supply voltage, V IN , is always the sum of the voltage drop
across the high-side regulator, V REG , and the forward voltage of
the LEDs in the string, V LED , as shown in figure 3.
V LED is constant for a given current and does not vary with
supply voltage. Therefore V REG provides the variable difference
between V LED and V IN . V REG has a minimum value below which
the regulator can no longer be guaranteed to maintain the output
current within the specified accuracy. This level is defined as the
regulator drop-out voltage, V DO .
The minimum supply voltage, below which the LED current does
not meet the specified accuracy, is therefore determined by the
sum of the minimum drop-out voltage, V DO , and the forward
voltage of the LEDs in the string, V LED . The supply voltage must
always be greater than this value and the minimum specified sup-
Δ T = P D × R θ JA
(11)
A thermal resistance from silicon to ambient, R θ JA , of approxi-
mately 30°C/W (LP package) or 34°C/W (LY package) can be
achieved by mounting the A6264 on a standard FR4 double-sided
printed circuit board (PCB) with a copper area of a few square
inches on each side of the board under the A6264. Multiple
thermal vias, as shown in figure 7, help to conduct the heat from
the exposed pad of the A6264 to the copper on each side of the
board. The thermal resistance can be reduced by using a metal
substrate or by adding a heatsink.
Supply Voltage Limits
In many applications, especially in automotive systems, the avail-
able supply voltage can vary over a two-to-one range, or greater
when double battery or load dump conditions are taken into con-
sideration. In such systems is it necessary to design the applica-
tion circuit such that the system meets the required performance
targets over a specified voltage range.
To determine this range when using the A6264 there are two
limiting conditions:
? For maximum supply voltage the limiting factor is the power
that can be dissipated from the regulator without exceeding the
temperature at which the thermal foldback starts to reduce the
output current below an acceptable level.
Figure 7. Board via layout for thermal dissipation: (top) LP package
(bottom) LY package.
Allegro MicroSystems, LLC
115 Northeast Cutoff
Worcester, Massachusetts 01615-0036 U.S.A.
1.508.853.5000; www.allegromicro.com
11
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