参数资料
型号: ISL97635IRZ-T
厂商: Intersil
文件页数: 14/28页
文件大小: 0K
描述: IC LED DRVR WHT/RGB BCKLGT 24QFN
标准包装: 6,000
拓扑: PWM,升压(升压)
输出数: 8
内部驱动器:
类型 - 主要: 车载,背光
类型 - 次要: RGB,白色 LED
频率: 600kHz,1.2MHz
电源电压: 6 V ~ 24 V
输出电压: 34.5V
安装类型: 表面贴装
封装/外壳: 24-VFQFN 裸露焊盘
供应商设备封装: 24-QFN 裸露焊盘(4x4)
包装: 带卷 (TR)
工作温度: -40°C ~ 85°C
ISL97635
charged to the required value at a low current limit and
prevents high input current for systems that have only a low
to medium output current requirement.
For systems with no master fault protection FET, the inrush
current will flow towards C OUT when VIN is applied and it is
determined by the ramp rate of VIN and the values of C OUT
and L.
Fault Protection and Monitoring
The ISL97635 features extensive protection functions to
cover all the perceivable failure conditions. The failure mode
of a LED can be either open circuit or as a short. The
behavior of an open circuited LED can additionally take the
form of either infinite resistance or, for some LEDs, a zener
diode, which is integrated into the device in parallel with the
now opened LED.
For basic LEDs (which do not have built-in zener diodes), an
open circuit failure of an LED will only result in the loss of
one channel of LEDs without affecting other channels.
Similarly, a short circuit condition on a channel that results in
that channel being turned off does not affect other channels
unless a similar fault is occurring. All LED faults are reported
via the SMBus interface to Register 0x02 (Fault/Status
register). The controller is able to determine which channels
have failed via Register 0x09 (Output Masking register). The
controller can also choose to use Register 0x09 to disable
faulty channels at start-up, resulting in only further faulty
channels being reported by Register 0x02.
Due to the lag in boost response to any load change at its
output, certain transient events (such as LED current steps
or significant step changes in LED duty cycle) can transiently
look like LED fault modes. The ISL97635 uses feedback
from the LEDs to determine when it is in a stable operating
region and prevents apparent faults during these transient
events from allowing any of the LED stacks to fault out. See
Table 1 for more details.
A fault condition that results in an input current that exceeds
short circuit threshold is 8V. The detection of this failure
mode can be disabled via Register 0x08 bit 1 if required.
Open Circuit Protection (OCP)
When one of the LEDs becomes open circuit, it can behave
as either an infinite resistance or a gradually increasing finite
resistance. The ISL97635 monitors the current in each
channel such that any string which reaches at least 75% of
the intended output current is considered “good”. Should the
current subsequently fall below 50% of the target, the
channel will be considered an “open circuit”. Furthermore,
should the boost output of the ISL97635 reach the OVP limit
or should the lower over-temperature threshold be reached,
all channels which are not “good” will immediately be
considered as “open circuit”. Detection of an “open circuit”
channel will result in a time-out before disabling of the
affected channel. This time-out is sped up when the device
is above the lower over-temperature threshold in an attempt
to prevent the upper over-temperature trip point from being
reached.
Some users employ some special types of LEDs that have
zener diode structure in parallel with the LED for ESD
enhancement, thus enabling open circuit operation. When this
type of LED goes open circuit, the effect is as if the LED
forward voltage has increased, but no lighting. Any affected
string will not be disabled, unless the failure results in the
boost OVP limit being reached, allowing all other LEDs in the
string to remain functional. Care should be taken in this case
that the boost OVP limit and SCP limit are set properly, so as
to make sure that multiple failures on one string do not cause
all other good channels to be faulted out. This is due to the
increased forward voltage of the faulty channel making all
other channel look as if they have LED shorts. See Table 1 for
details for responses to fault conditions.
Overvoltage Protection (OVP)
The integrated OVP circuit monitors the output voltage and
keeps the voltage at a safe level. The OVP threshold is set as
Equation 14:
the devices electrical limits will result in a shutdown of all
output channels. The control device logic will remain
functional such that the Fault/Status Register can be
OVP = 1.21V × ( R UPPER + R LOWER ) ? R LOWER
(EQ. 14)
interrogated by the system. The root cause of the failure will
be loaded to the volatile Fault/Status Register so that the
host processor can interrogate the data for failure
monitoring.
Short Circuit Protection (SCP)
The short circuit detection circuit monitors the voltage on
each channel and disables faulty channels which are
detected above the programmed short circuit threshold.
There are two selectable levels of short circuit threshold
(3.1V and 8.0V) that can be programmed through the
Configuration Register 0x08 bit 0. When an LED becomes
shorted, the action taken is described in Table 1. The default
14
These resistors should be large to minimize the power loss.
For example, a 1M Ω R UPPER and 39k Ω R LOWER sets OVP
to 32.2V. Large OVP resistors also allow C OUT discharges
slowly during the PWM Off-time.
Undervoltage Lockout
If the input voltage falls below the UVLO level of 2.45V, the
device will stop switching and be reset. Operation will restart
when the voltage comes back into the operating range.
Input Overcurrent Protection
During normal switching operation, the current through the
internal boost power FET is monitored. If the current
exceeds the current limit, the internal switch will be turned
FN6434.2
December 22, 2008
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