C/spi interface, Electrical characteristics (continued) – Rainbow Electronics MAX1386 User Manual

Page 5

Advertising
background image

MAX1385/MAX1386

Dual RF LDMOS Bias Controllers

with I

2

C/SPI Interface

_______________________________________________________________________________________

5

ELECTRICAL CHARACTERISTICS (continued)

(GATEV

DD

= +5.5V for the MAX1385, GATEV

DD

= +11V for the MAX1386, AV

DD

= DV

DD

= +5V, external V

REFADC

= +2.5V, external V

REF-

DAC

= +2.5V, C

REF

= 0.1µF, unless otherwise noted. T

A

= -40°C to +85°C, unless otherwise noted. Typical values are at T

A

= +25°C.)

PARAMETER

SYMBOL

CONDITIONS

MIN

TYP

MAX

UNITS

Capacitive Bypass at REF

270

nF

Power-Supply Rejection Ratio

PSRR

AV

DD

= +5V ±5%

70

dB

EXTERNAL REFERENCE

REFADC Input Voltage Range

V

REFADC

Limited code test

1.0

AV

DD

V

V

REF

= 2.5V, f

SAMPLE

= 174ksps

60

80

REFADC Input Current

I

REFADC

Acquisition/between conversions

±0.01

±1

µA

REFDAC Input Voltage Range

V

REFDAC

(Note 9)

0.5

2.5

V

REFDAC Input Current

Static current when no DAC calibration

0.1

µA

GATE-DRIVER COARSE-DAC DC ACCURACY

Resolution

N

CDAC

8

Bits

Integral Nonlinearity

INL

CDAC

Measured at GATE; fine DAC set at full scale

±0.15

±1

LSB

Differential Nonlinearity

DNL

CDAC

Guaranteed monotonic

±0.05

±0.5

LSB

GATE-DRIVER FINE-DAC DC ACCURACY

Resolution

N

FDAC

10

Bits

Integral Nonlinearity

INL

FDAC

Measured at GATE; coarse DAC set at full
scale

±0.25

±4

LSB

Differential Nonlinearity

DNL

FDAC

Guaranteed monotonic

±0.1

±1

LSB

POWER SUPPLIES (Note 10)

Analog Supply Voltage

AV

DD

4.75

5.25

V

Digital Supply Voltage

DV

DD

2.7

AV

DD

+ 0.3

V

Gate-Drive Supply Voltage

V

GATEVDD

4.75

11.00

V

Analog Supply Current

I

AVDD

AV

DD

= 5V

3.2

4

mA

Digital Supply Current

I

DVDD

DV

DD

= 2.7V to 5.25V

3.1

4.3

mA

GATEV

DD

Supply Current

I

GATEVDD

3

4.5

7

mA

I

AVDD

0.1

2

I

DVDD

0.1

2

Shutdown Current (Note 11)

I

PD

I

VDDGATE

0.1

2

µA

Advertising