Applications information, Outputs, Static and dynamic performance definitions – Rainbow Electronics MAX5183 User Manual

Page 11

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MAX5180/MAX5183

Dual, 10-Bit, 40MHz, Current/Voltage

Simultaneous-Output DACs

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11

Outputs

The MAX5180 outputs are designed to supply full-scale
output currents of 1mA into 400

Ω loads in parallel with

a capacitive load of 5pF. The MAX5183 features inte-
grated 400

Ω resistors that restore the array currents to

proportional, differential voltages of 400mV. These dif-
ferential output voltages can then be used to drive a
balun transformer or a low-distortion, high-speed oper-
ational amplifier to convert the differential voltage into a
single-ended voltage.

Applications Information

Static and Dynamic Performance

Definitions

Integral Nonlinearity

Integral nonlinearity (INL) (Figure 5a) is the deviation of
the values on an actual transfer function from either a
best-straight-line fit (closest approximation to the actual

transfer curve) or a line drawn between the endpoints
of the transfer function once offset and gain errors have
been nullified. For a DAC, the deviations are measured
every single step.

Differential Nonlinearity

Differential nonlinearity (DNL) (Figure 5b) is the differ-
ence between an actual step height and the ideal value
of 1LSB. A DNL error specification of less than 1LSB
guarantees no missing codes and a monotonic transfer
function.

Offset Error

Offset error (Figure 5c) is the difference between the
ideal and the actual offset point. For a DAC, the offset
point is the step value when the digital input is zero.
This error affects all codes by the same amount and
can usually be compensated by trimming.

Figure 5a. Integral Nonlinearity

Figure 5b. Differential Nonlinearity

Figure 5c. Offset Error

Figure 5d. Gain Error

0

2

1

4

3

7

6

5

000

010

001

011

100

101

110

AT STEP
011 (1/2 LSB )

AT STEP
001 (1/4 LSB )

111

DIGITAL INPUT CODE

ANALOG OUTPUT VALUE

0

2

1

4

3

6

5

000

010

001

011

100

101

DIFFERENTIAL LINEARITY
ERROR (-1/4 LSB)

DIFFERENTIAL
LINEARITY ERROR (+1/4 LSB)

1 LSB

1 LSB

DIGITAL INPUT CODE

ANALOG OUTPUT VALUE

0

2

1

3

000

010

001

011

ACTUAL

DIAGRAM

IDEAL DIAGRAM

ACTUAL
OFFSET
POINT

OFFSET ERROR
(+1 1/4 LSB)

IDEAL OFFSET
POINT

DIGITAL INPUT CODE

ANALOG OUTPUT VALUE

0

5

4

6

7

000

101

100

110

111

IDEAL DIAGRAM

GAIN ERROR

(-1 1/4 LSB)

IDEAL FULL-SCALE OUTPUT

ACTUAL

FULL-SCALE

OUTPUT

DIGITAL INPUT CODE

ANALOG OUTPUT VALUE

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