Ee figure 27 fo, Ee figure 28 a, Figure 29 f – Analog Devices AD9912 User Manual

Page 14: Ee figure 27 f, Ee figure 29 f, Ee figure 28 f, Ad9912

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AD9912

Rev. D | Page 14 of 40

06763-

021

0

200

400

600

800

FREQUENCY (MHz)

650

600

550

500

450

A

MPL

IT

U

D

E (m

V)

NOM SKEW 25°C, 1.8V SUPPLY
WORST CASE (SLOW SKEW 90°C, 1.7V SUPPLY)

Figure 27. HSTL Output Driver Single-Ended Peak-to-Peak Amplitude vs.

Toggle Rate (100 Ω Across Differential Pair)

06763-

022

0

10

20

30

40

FREQUENCY (MHz)

2.5

2.0

1.5

1.0

0.5

0

A

MPL

IT

U

D

E (V)

NOM SKEW 25°C, 1.8V SUPPLY (20pF)
WORST CASE (SLOW SKEW 90°C,
1.7V SUPPLY (20pF))

Figure 28. CMOS Output Driver Peak-to-Peak Amplitude vs. Toggle Rate

(AVDD3 = 1.8 V) with 20 pF Load

06763-

023

0

50

100

150

FREQUENCY (MHz)

3.5

3.0

2.5

2.0

1.5

1.0

0.5

0

A

MPL

IT

U

D

E (V)

NOM SKEW 25°C, 1.8V SUPPLY (20pF)
WORST CASE (SLOW SKEW 90°C,
3.0V SUPPLY (20pF))

Figure 29. CMOS Output Driver Peak-to-Peak Amplitude vs. Toggle Rate

(AVDD3 = 3.3 V) with 20 pF Load

06763-

024

0

0.5

1.0

1.5

2.0

2.5

TIME (ns)

0.4

0.6

0.2

0

–0.2

–0.4

–0.6

A

MPL

IT

U

D

E (V)

FREQUENCY = 600MHz

t

RISE

(20%

→80%) = 104ps

t

FALL

(80%

→20%) = 107ps

V p-p = 1.17V DIFF.
DUTY CYCLE = 50%

Figure 30. Typical HSTL Output Waveform, Nominal Conditions,

DC-Coupled, Differential Probe Across 100 Ω load

06763-

025

0

20

40

60

80

100

TIME (ns)

1.8

1.6

1.4

1.2

1.0

0.8

0.6

0.4

0.2

0

–0.2

A

MPL

IT

U

D

E (V)

FREQUENCY = 20MHz

t

RISE

(20%

→80%) = 5.5ns

t

FALL

(80%

→20%) = 5.9ns

V p-p = 1.8V
DUTY CYCLE = 53%

Figure 31. Typical CMOS Output Driver Waveform (@ 1.8 V),

Nominal Conditions, Estimated Capacitance = 5 pF

06763-

026

0

10

20

30

40

50

TIME (ns)

3.3

2.8

2.3

1.8

1.3

0.8

0.3

–0.2

A

MPL

IT

U

D

E (V)

FREQUENCY = 40MHz

t

RISE

(20%

→80%) = 2.25ns

t

FALL

(80%

→20%) = 2.6ns

V p-p = 3.3V
DUTY CYCLE = 52%

Figure 32. CMOS Output Driver Waveform (@ 3.3 V),

Nominal Conditions, Estimated Capacitance = 5 pF

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