Datasheet

LDAC Clock
Feed-Through
V - 500 V/div
OUT
m
LDAC - Trigger Pulse
5 V/div
Time (2 s/div)m
From Code 801h to 800h
V - 500 V/div
OUT
m
LDAC - Trigger Pulse
5 V/div
From Code 800h to 801h
Time (2 s/div)m
LDAC Clock
Feed-Through
Time (2 s/div)m
V - 2 mV/div
OUT
LDAC Clock
Feed-Through
From Code 200h to 201h
LDAC - Trigger Pulse
5 V/div
LDAC Clock
Feed-Through
LDAC - Trigger Pulse
5 V/div
From Code 201h to 200h
Time (2 s/div)m
V - 2 mV/div
OUT
Time (2 s/div)m
V - 5 mV/div
OUT
LDAC Clock
Feed-Through
From Code 80h to 81h
LDAC - Trigger Pulse
5 V/div
Time (2 s/div)m
V - 5 mV/div
OUT
LDAC Clock
Feed-Through
From Code 81h to 801h
LDAC - Trigger Pulse
5 V/div
DAC5578
DAC6578
DAC7578
www.ti.com
SBAS496A MARCH 2010REVISED AUGUST 2010
TYPICAL CHARACTERISTICS: DAC at AV
DD
= 5.5 V (continued)
At T
A
= 25°C, external reference used, DAC output not loaded, and all DAC codes in straight binary data format, DAC7578
graphs shown (unless otherwise noted).
GLITCH ENERGY: GLITCH ENERGY:
5V, 12-BIT, 1LSB STEP, RISING EDGE 5V, 12-BIT, 1LSB STEP, FALLING EDGE
Figure 49. Figure 50.
GLITCH ENERGY: GLITCH ENERGY:
5V, 10-BIT, 1LSB STEP, RISING EDGE 5V, 10-BIT, 1LSB STEP, FALLING EDGE
Figure 51. Figure 52.
GLITCH ENERGY: GLITCH ENERGY:
5V, 8-BIT, 1LSB STEP, RISING EDGE 5V, 8-BIT, 1LSB STEP, FALLING EDGE
Figure 53. Figure 54.
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