ISL21080-EVALZ Intersil, ISL21080-EVALZ Datasheet - Page 8

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ISL21080-EVALZ

Manufacturer Part Number
ISL21080-EVALZ
Description
EVAL BOARD FOR ISL21080
Manufacturer
Intersil
Datasheet

Specifications of ISL21080-EVALZ

Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Electrical Specifications
NOTES:
10. Thermal Hysteresis is the change of V
11. Long term drift is logarithmic in nature and diminishes over time. Drift after the first 1000 hours will be approximately
12. Parameters with MIN and/or MAX limits are 100% tested at +25°C, unless otherwise specified. Temperature limits established
V
V
TC V
V
I
ΔV
ΔV
I
t
e
V
ΔV
ΔV
9. Over the specified temperature range. Temperature coefficient is measured by the box method whereby the change in V
Typical Performance Characteristics Curves
PARAMETER
R
IN
SC
N
OUT
OA
IN
N
OUT
OUT
OUT
OUT
divided by the temperature range; in this case, -40°C to +85°C = +125°C.
is read initially at T
taken at +25°C. The difference between the initial V
T
10ppm/√1khrs.
by characterization and are not production tested.
A
OUT
= +125°C, the device under test is cycled from +25°C to +85°C to -40°C to +25°C.
/ΔI
/ΔT
/Δt
0.6
0.5
0.4
0.3
0.2
0.1
/ΔV
0
2.0
OUT
A
IN
FIGURE 2. I
2.4
Output Voltage
V
Output Voltage Temperature Coefficient
(Note 9)
Input Voltage Range
Supply Current
Line Regulation
Load Regulation
Short Circuit Current
Turn-on Settling Time
Ripple Rejection
Output Voltage Noise
Broadband Voltage Noise
Noise Density
Thermal Hysteresis (Note 10)
Long Term Stability (Note 11)
OUT
HIGH
2.8
Accuracy @ T
A
= +25°C for the device under test. The device is temperature cycled and a second V
3.2
IN
DESCRIPTION
LOW
vs V
8
V
3.6
IN
A
IN
(V)
(ISL21080-50 V
specified. Boldface limits apply over the operating temperature range, -40°C to
+85°C.
= +25°C (Notes 7, 8)
4.0
, 3 UNITS
OUT
4.4
TYP
measured @ T
4.8
OUT
5.2
OUT
= 5.0V) V
ISL21080
5.5 V < V
Sourcing: 0mA ≤ I
Sinking: -10mA ≤ I
T
V
f = 120Hz
0.1Hz ≤ f ≤ 10Hz
10Hz ≤ f ≤ 1kHz
f = 1kHz
ΔT
T
A
A
OUT
A
A
= +25°C, V
= +25°C
reading and the second V
= +165°C
= +25°C after temperature cycling over a specified range, ΔT
= ±0.1% with no load
CONDITIONS
IN
IN
= 6.5V, T
< 8.0V
OUT
OUT
FIGURE 3. I
0.6
0.5
0.4
0.3
0.2
0.1
OUT
tied to GND
0
2.0
A
≤ 10mA
= -40°C to +85°C, I
≤ 0mA
2.4
OUT
+85°C
2.8
IN
T
(Note 12) TYP
V
reading is then expressed in ppm. For Δ
A
OUT
= +25°C unless otherwise specified.
vs V
MIN
-0.2
5.5
3.2
= 0.9V, V
IN
-40°C
V
3.6
OVER-TEMPERATURE
IN
OUT
100
5.0
-40
1.1
0.5
80
10
20
80
30
52
50
(V)
4
IN
4.0
= 0, unless otherwise
= 3.0V, I
(Note 12)
OUT
+25°C
4.4
MAX
+0.2
350
100
350
8.0
1.5
50
measurement is
4.8
OUT
May 25, 2010
5.2
= 0mA,
ppm/°C
FN6934.4
µV/√Hz
µV/mA
µV/mA
µV
A
UNIT
µV
µV/V
ppm
ppm
. V
OUT
mA
ms
µA
dB
%
V
V
RMS
P-P
OUT
is

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