Electrical characteristics (continued) – Rainbow Electronics MAX1495 User Manual

Page 3

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MAX1491/MAX1493/MAX1495

3.5- and 4.5-Digit, Single-Chip

ADCs with LCD Drivers

_______________________________________________________________________________________

3

ELECTRICAL CHARACTERISTICS (continued)

(AV

DD

= DV

DD

= +2.7V to +5.25V, GND = 0, V

REF+

- V

REF-

= 2.048V (external reference), C

NEG

= 0.1µF. All specifications are T

MIN

to T

MAX

, unless otherwise noted. Typical values are at +25°C, unless otherwise noted.)

PARAMETER

SYMBOL

CONDITIONS

MIN

TYP

MAX

UNITS

LOW-BATTERY VOLTAGE MONITOR (LOWBATT)

LOWBATT Trip Threshold

2.048

V

LOWBATT Leakage Current

10

pA

Hysteresis

20

mV

INTERNAL REFERENCE (REF- = GND, INTREF = DV

DD

, bypass REF+ to GND with 4.7µF capacitors)

REF Output Voltage

V

REF

AV

DD

= 5V, T

A

= +25

°C

2.007

2.048

2.089

V

REF Output Short-Circuit Current

T

A

= +25

°C

1

mA

REF Output Temperature
Coefficient

TC

VREF

AV

DD

= 5V

40

ppm/

°C

Load Regulation

I

SOURCE

= 0µA to 300µA,

I

SINK

= 0µA to 30µA, T

A

= +25

°C (Note 6)

6

mV/µA

Line Regulation

50

µV/V

0.1Hz to 10Hz

25

Noise Voltage

10Hz to 10kHz

400

µVp-p

EXTERNAL REFERENCE (INTREF = GND, bypass REF+ and REF- to GND with 0.1µF or greater capacitors)

Differential (V

REF+

- V

REF-

)

2.048

REF Input Voltage

Absolute GND referenced

-2.2

+2.2

V

Normal-Mode 50Hz and 60Hz
Rejection (Simultaneously)

50Hz and 60Hz ±2%

100

dB

Common-Mode 50Hz and 60Hz
Rejection (Simultaneously)

CMR

For 50Hz ±2% and 60Hz ±2%,
R

SOURCE

< 10k

150

dB

Common-Mode Rejection

CMR

At DC

100

dB

Input Leakage Current

T

A

= +25

°C

10

nA

Input Capacitance

10

pF

Dynamic Input Current

(Note 5)

-20

+20

nA

CHARGE PUMP

Output Voltage

V

NEG

-2.6

-2.42

-2.3

V

DIGITAL INPUTS (INTREF, RANGE, PEAK, HOLD, DPSET1, DPSET2, DPON)

Input Current

I

IN

V

IN

= 0 or DV

DD

-10

+10

µA

Input Low Voltage

V

INL

0.3 x

DV

DD

V

Input High Voltage

V

INH

0.7 x

DV

DD

V

Input Hysteresis

V

HYS

DV

DD

= 3.0V

200

mV

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