MAX9969BDCCQ+D Maxim Integrated, MAX9969BDCCQ+D Datasheet - Page 12

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MAX9969BDCCQ+D

Manufacturer Part Number
MAX9969BDCCQ+D
Description
Interface - Specialized
Manufacturer
Maxim Integrated
Series
MAX9969r
Datasheet

Specifications of MAX9969BDCCQ+D

Product Type
ATE Driver/Comparator
Maximum Operating Temperature
+ 70 C
Package / Case
TQFP-100 EP
Minimum Operating Temperature
0 C
ELECTRICAL CHARACTERISTICS (continued)
(V
+85°C, unless otherwise noted. All temperature coefficients are measured at T
Dual, Low-Power, 1200Mbps ATE
Driver/Comparator with 35mA Load
Figure 1. Drive-to-Term and Term-to-Drive Rise and Fall Times
12
Note 22: Unless otherwise noted, all propagation delays are measured at 40MHz, V
Note 23: At this pulse width, the output reaches at least 90% of its DC voltage swing. The pulse width is measured at the crossing
Note 24: V
Note 25: Relative to segmented interpolations between 200mV, 2V, 2.5V, and 3.5V.
Note 26: Measured from crossing of LDEN_ inputs to the 50% point of the output current change.
Note 27: V
CC
DHV_
DLV_
DTV_
= +9.75V, V
______________________________________________________________________________________
(A) DRIVE-TO-TERM RISE AND FALL TIME
(B) TERM-TO-DRIVE RISE AND FALL TIME
= 250ps, Z
V
points of the differential outputs.
transition and -0.5V to +2.5V transition (at 20mA). Settling time is measured from V
in specified tolerance.
CCO
DUT_
COM
_ = 2.5V. Measured from V
= 1V, R
= 200mV
90%
10%
EE
10%
90%
= -4.75V, V
S
= 50Ω, driver in term mode with V
S
P-P
= 50Ω, driving voltage = 1.55V to 0.45V transition and 0.45V to 1.55V transition (at 1mA) or +2.5V to -0.5V
. Overdrive = 100mV.
10%
90%
CCO_
90%
10%
t
t
t
t
DTF
DTR
TDR
TDF
DTV_
DHV_
DLV_
= +2.5V, SC1 = SC0 = 0, V
DUT_
crossing calibrated CHV_/CLV_ threshold to crossing point of differential outputs.
DTV_
= +0.5V. Comparator outputs are terminated with 50Ω to 1.25V and
CPHV_
= +7.2V, V
J
= +60°C to +100°C, unless otherwise noted.) (Note 1)
CPLV_
DUT_
= 0 to +1V, V
= -2.2V, V
DUT
_ = 1V to I
LDH
CHV_
_ = V
SINK
= V
LDL
/I
SOURCE
CLV_
_ = 0, V
= +0.5V, t
settling with-
GS
= 0, T
R
= t
J
=
F

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