ISL60002
Common Electrical Specifications ISL60002 -10, -11, -12, -18, -20, and -25
Operating Conditions: V IN = 3.0V, I OUT = 0mA, C OUT = 0.001μF, T A = -40 to +85°C, unless otherwise specified. Boldface limits apply over the operating
temperature range, -40°C to +85°C
MIN
(Note
MAX
(Note
SYMBOL
PARAMETER
CONDITIONS
TYP
UNITS
TC V OUT
Output Voltage Temperature
Coefficient (Note 11)
20
ppm/°C
I IN
Supply Current
350
900
nA
Δ V OUT / Δ V IN
Δ V OUT / Δ I OUT
Δ V OUT / Δ T A
Δ V OUT / Δ t
I SC
V N
Line Regulation
Load Regulation
Thermal Hysteresis (Note 12)
Long Term Stability (Note 13)
Short Circuit Current (to GND)
(Note 14)
Output Voltage Noise
+2.7V ≤ V IN ≤ +5.5V
0mA ≤ I SOURCE ≤ 7mA
-7mA ≤ I SINK ≤ 0mA
Δ T A = +125°C
T A = +25°C; First 1khrs
T A = +25°C
0.1Hz ≤ f ≤ 10Hz
80
25
50
100
50
50
30
250
100
150
μV/V
μV/mA
μV/mA
ppm
ppm
mA
μV P-P
NOTES:
10. Compliance to datasheet limits is assured by one or more methods: production test, characterization and/or design.
11. Over the specified temperature range. Temperature coefficient is measured by the box method whereby the change in V OUT is divided by the
temperature range: (-40°C to +85°C = +125°C, or -40°C to +105°C = +145°C for the ISL60002-33).
12. Thermal Hysteresis is the change in V OUT measured @ T A = +25°C after temperature cycling over a specified range, Δ T A , V OUT is read initially at
T A = +25°C for the device under test. The device is temperature cycled and a second V OUT measurement is taken at +25°C. The difference between
the initial V OUT reading and the second V OUT reading is then expressed in ppm. For Δ T A = +125°C, the device under is cycled from +25°C to +85°C
to -40°C to +25°C, and for Δ T A = +145°C, the device under is cycled from +25°C to +105°C to -40°C to +25°C
13. Long term drift is logarithmic in nature and diminishes over time. Drift after the first 1000 hours will be approximately 10ppm.
14. Short Circuit Current (to V CC ) for ISL60002-25 at V IN = 5.0V and +25°C is typically around 30mA. Shorting V OUT to V CC is not recommended due to
risk of resetting the part.
9
FN8082.19
January 16, 2014
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