Datasheet
MAX6035
High-Supply-Voltage, Precision
Voltage Reference in SOT23
_______________________________________________________________________________________ 5
ELECTRICAL CHARACTERISTICS—MAX6035_AUR50 (5.0V) (continued)
(V
IN
= 5V, I
OUT
= 0, T
A
= T
MIN
to T
MAX
, unless otherwise noted. Typical values are at T
A
= +25°C.) (Note 2)
PARAMETER
SYMBOL
CONDITIONS
MIN TYP MAX
UNITS
Sourcing:
0 ≤ I
OUT
≤ 10mA
50 135
T
A
= +25°C
Sinking:
-2mA ≤ I
OUT
≤ 0mA
90 215
Sourcing:
0 ≤ I
OUT
≤ 10mA
160
Load Regulation (Note 4)
∆V
OUT
/
∆I
OUT
T
A
= -40°C to +125°C
Sinking:
-2mA ≤ I
OUT
≤ 0mA
300
µV/mA
Shorted to GND 27
OUT Short-Circuit Current I
SC
Shorted to IN -4
mA
I
OUT
= 10µA 1.9
Dropout Voltage (Note 7)
V
IN
- V
OUT
I
OUT
= 10mA
2.25
V
Thermal Hysteresis (Note 5)
∆V
OU T
/cycl e 135
ppm
Long-Term Stability
∆V
OUT
/time
1000hr at +25°C
160
ppm/
1000hr
DYNAMIC CHARACTERISTICS
f = 0.1Hz to 10Hz 68
µV
P-P
Output Noise Voltage e
n
f = 10Hz to 1kHz 48
µV
RMS
Ripple Rejection
∆V
OUT
/∆V
IN
V
IN
= 15V ±100mV, f = 120Hz 72 dB
C
OUT
= 50pF
140
Turn-On Settling Time t
R
To V
OUT
= 0.1% of final
value
C
OUT
= 1µF
300
µs
Capacitive-Load Stability
(Note 6)
C
OUT
05µF
INPUT CHARACTERISTICS
Supply Voltage Range V
IN
Inferred by line regulation and dropout voltage 6.9 33 V
Quiescent Current Supply I
IN
80 100 µA
Change in Supply Current
∆I
IN
/∆V
IN
6.9V ≤ V
IN
≤ 33V 0.4 0.7
µA/V
Note 2: All devices are 100% production tested at T
A
= +25°C and are guaranteed by design for T
A
= T
MIN
to T
MAX
, as specified.
Note 3: Temperature Coefficient is measured by the “box” method, i.e., the maximum ∆V
OUT
is divided by the maximum ∆T.
Note 4: Line and load regulation are measured with pulses and do not include output voltage fluctuation due to die-temperature
changes.
Note 5: Thermal Hysteresis is defined as the change in the output voltage at T
A
= +25°C before and after cycling the device from
T
MAX
to T
MIN
.
Note 6: Guaranteed by design.
Note 7: Although the source current is guaranteed to be 10mA, exercise caution to ensure that the package’s absolute power dissi-
pation rating is not exceeded.