ISL88042IRTHFZ-TK Intersil, ISL88042IRTHFZ-TK Datasheet - Page 6

IC SUPERVISOR VMON QUAD 8-TDFN

ISL88042IRTHFZ-TK

Manufacturer Part Number
ISL88042IRTHFZ-TK
Description
IC SUPERVISOR VMON QUAD 8-TDFN
Manufacturer
Intersil
Type
Multi-Voltage Supervisorr
Datasheet

Specifications of ISL88042IRTHFZ-TK

Number Of Voltages Monitored
4
Output
Open Drain or Open Collector
Reset
Active Low
Reset Timeout
40 ms Minimum
Voltage - Threshold
3.09V, 4.6V, Adj, Adj
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
8-TDFN Exposed Pad
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
The ISL88042EVAL1Z and Applications
The ISL88042EVAL1Z supports all variants of the ISL88042
devices, enabling evaluation of basic functional operation and
common application implementations. Figure 10 illustrates the
ISL88042EVAL1Z in schematic and photographic forms. The
ISL88042EVAL1Z is populated with the ISL88042IRTEEZ
(V
With adequate bias on the two preset and the two adjustable
monitor inputs the RST output will release to pull high
indicating that all supplies are compliant for a minimum of
t
V2MON nominal thresholds are as previously noted with the
voltage thresholds being monitored by V3MON and V4MON
being left open for programming via the non populated
resistor dividers.
Typical Performance Curves
POR
DD
. For the ISL88042EVAL1Z as shipped, the V
FIGURE 4. VDD and V2MON Vth vs TEMPERATURE
V
3.20
3.15
3.10
3.05
3.00
2.95
2.90
2.85
2.80
2.75
2.70
120
105
100
115
110
TH1
95
90
85
80
-40
and V2MON V
ISL88042IRTJJ V2MON
-40
ISL88042IRTHF V2MON
ISL88042IRTEE V2MON
ISL88042IRTEE VDD
ISL88042IRTJJ VDD
FIGURE 6. t
-20
-20
ISL88042IRTHF VDD
0
0
TEMPERATURE (°C)
TEMPERATURE (°)
por
TH2
25
vs TEMPERATURE
25
6
= 2.90V).
50
50
85
85
100
100
125
DD
125
and
4.60
4.59
4.58
4.57
4.56
4.55
4.54
4.53
ISL88042
Special Application Considerations
Using good decoupling practices on bias and other
monitoring inputs will prevent transients (i.e. due to switching
noises and short duration droops in the supply voltage) from
causing unwanted resets.
In unusually noisy environments or situations where
unwanted signals may be injected into the adjustable VMON
inputs, lowering the node impedance and/or positioning a
small valued filter capacitor as close to the pin as possible
can increase noise immunity.
Although the internal ISL88042 threshold references are
guaranteed over the full temp range, accuracy errors due to
external component tolerances and distribution losses will
occur. High tolerance resistors and layout for extreme
accuracy and critical performance must be considered.
FIGURE 5. V3MON and V4MON Vth vs TEMPERATURE
610
605
600
595
590
585
580
575
570
FIGURE 7. BIAS CURRENT vs TEMPERATURE
16
14
12
10
8
6
4
2
0
-40
-40
ISL88042IRTJJ V3MON
ISL88042IRTHF ISL88042IRTEE V3MON
ISL88042IRTJJ V4MON
V2MON = 3.3V
ISL88042IRTHF ISL88042IRTEE V4MON
-20
-20
0
0
TEMPERATURE (°C)
TEMPERATURE (°C)
25
25
50
50
85
85
VDD = 5V
100
100
July 26, 2010
125
125
FN6655.2

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