參數(shù)資料
型號: AM26LV31D
廠商: Texas Instruments, Inc.
英文描述: LOW-VOLTAGE HIGH-SPEED QUADRUPLE DIFFERENTIAL LINE DRIVER
中文描述: 低壓高速翻兩番差分線路驅動
文件頁數(shù): 4/8頁
文件大小: 113K
代理商: AM26LV31D
AM26LV31
LOW-VOLTAGE HIGH-SPEED
QUADRUPLE DIFFERENTIAL LINE DRIVER
SLLS201E – MAY 1995 – REVISED DECEMBER 1999
4
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
electrical characteristics over recommended operating supply-voltage and free-air temperature
ranges (unless otherwise noted)
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNIT
VIK
VOH
VOL
|VOD|
VOC
Input clamp voltage
II = –18 mA
VIH = 2 V,
VIL = 0.8 V,
–1.5
V
High-level output voltage
IOH = –12 mA
IOH = 12 mA
1.85
2.3
V
Low-level output voltage
Differential output voltage
0.8
1.05
V
0.95
1.5
V
Common-mode output voltage
RL= 100
RL = 100
1.3
1.55
1.8
V
|VOC|
Change in magnitude of
common-mode output voltage
±
0.2
V
IO
Output current with power off
VO = –0.25 V or 6 V,
VCC = 0
±
100
μ
A
IOZ
Off-state (high-impedance state)
output current
VO = –0.25 V or 6 V,
G = 0.8 V or G = 2 V
±
100
μ
A
IIH
IIL
IOS
ICC
Cpd
All typical values are at VCC = 3.3 V and TA = 25
°
C.
|VOD| and
|VOC| are the changes in magnitude of VOD and VOC, respectively, that occur when the input is changed from a high level to a low
level.
§Cpd determines the no-load dynamic current consumption. IS = Cpd
×
VCC
×
f + ICC
High-level input current
VCC = 0 or 3 V,
VCC = 3.6 V,
VCC = 3.6 V,
VI = VCC or GND,
No load
VI = 5.5 V
VI = 0
VO = 0
No load
10
μ
A
μ
A
Low-level input current
–10
Short-circuit output current
–200
mA
Supply current (all drivers)
Power dissipation capacitance (all drivers)§
100
μ
A
160
pF
switching characteristics, V
CC
= 3.3 V, T
A
= 25
°
C
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNIT
ns
tPLH
tPHL
tt
SR
Propagation delay time, low- to high-level output
4
8
12
Propagation delay time, high- to low-level output
See Figure 2
4
8
12
ns
Transition time (tr or tf)
Slew rate, single-ended output voltage
3
ns
See Note 3 and Figure 2
0.3
1
V/ns
tPZH
tPZL
tPHZ
tPLZ
tsk(p)
tsk(o)
tsk(lim)
NOTES:
Output-enable time to high level
See Figure 3
10
20
ns
Output-enable time to low level
See Figure 4
10
20
ns
Output-disable time from high level
See Figure 3
10
20
ns
Output-disable time from low level
See Figure 4
10
20
ns
Pulse skew
f = 32 MHz,
See Note 4
0.5
1.5
ns
Skew limit
f = 32 MHz,
See Note 5
1.5
ns
Skew limit (device to device)
f = 32 MHz,
See Note 6
3
ns
3. Slew rate is defined by:
90% V
OH
SR
V
OL
10% V
OH
V
OL
t
r
, the differential slew rate of V
OD
is 2
SR.
4. Pulse skew is defined as the |tPLH – tPHL| of each channel of the same device.
5. Skew limit is the difference between any two outputs of the same device switching in the same direction.
6. Skew limit (device to device) is the maximum difference in propagation delay times between any two channels of any two devices.
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