ISL97682, ISL97683, ISL97684
VIN
O/P
SHORT
LX
OVP
VOUT
IMAX
I LIMIT
LOGIC
FET
DRIVER
VSC
VIN
VSET/2
REG
THRM
SHDN
T2
REF
TEMP
CH4
OTP
SENSOR
T1
VSET
+
-
Q 1 VSET
+
-
Q 4
PWM1/OC1/SC1
PWM4/OC4/SC4
PHASE SHIFT
AND LOGIC
CONTROL
FIGURE 25. SIMPLIFIED FAULT PROTECTIONS
TABLE 3. PROTECTIONS TABLE
CASE
1
FAILURE MODE
CH1 Short Circuit
DETECTION MODE
Over-Temperature
FAILED CHANNEL ACTION
CH1 ON and burns power
GOOD CHANNELS ACTION
CH2 through CH4 Normal
V OUT REGULATED
BY
Highest VF of CH2
Protection limit (OTP) not
triggered and CH1 < 4.4V
through CH4
2
CH1 Short Circuit
OTP triggered but VCH1 < All channels switched off until power-cycled.
4.4V
Highest VF of CH2
through CH4
3
CH1 Short Circuit
OTP not triggered but
CH1 faults out after 6 PWM cycle
CH2 through CH4 Normal
Highest VF of CH2
CH1 > 4.4V
(7-18 in direct PWM) time-out
through CH4
4
CH1 Open Circuit
with infinite
OTP not triggered and
CH1 < 4.4V
V OUT will ramp to OVP. CH1 will
time-out after 6 PWM cycles (7-18
CH2 through CH4 Normal
Highest VF of CH2
through CH4
resistance
in direct PWM) and switch off. V OUT
will drop to normal level.
5
CH1 LED Open
Circuit but has
paralleled Zener
OTP not triggered and
CH1 < 4.4V
CH1 remains ON and has highest
VF, thus V OUT increases
CH2 through CH4 ON, Q2 through VF of CH1
Q4 burn power
6
CH1 LED Open
OTP triggered but CH1 <
CH1 goes off
Same as CH1
VF of CH1
Circuit but has
paralleled Zener
4.4V
7
CH1 LED Open
Circuit but has
paralleled Zener
OTP not triggered but
CHx > 4.4V
CH1 remains ON and has highest
VF, thus V OUT increases.
V OUT increases then CH-X
switches OFF after 6 PWM cycles.
This is an unwanted shut off and
VF of CH1
can be prevented by setting OVP
at an appropriate level.
8
Channel-to-Channel
Δ VF too high
OTP triggered but CHx <
4.4V
All channels switched off until chip cooled
Highest VF of CH1
through CH4
9
Output LED stack
voltage too high
V OUT > V OVP
14
Driven with normal current. Any channel that has insufficient headroom Highest VF of CH1
will fault out after 6 PWM cycle (7-18 in direct PWM) time-out. through CH4
FN7689.1
May 16, 2012
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