參數(shù)資料
型號(hào): LXT351
廠商: Intel Corp.
英文描述: T1/E1 Short Haul Transceiver with Crystal-less Jitter Attenuation
中文描述: 短途的T1/E1收發(fā)器與晶體抖動(dòng)衰減
文件頁(yè)數(shù): 33/46頁(yè)
文件大小: 1132K
代理商: LXT351
T1/E1 Short Haul Transceiver with Crystal-less Jitter Attenuation
LXT351
Datasheet
33
5.0
Test Specifications
Note:
Table 20
through
Table 31
and
Figure 12
through
Figure 21
represent the performance
specifications of the LXT350/351 and are guaranteed by test except, where noted, by design. The
minimum and maximum values listed in
Table 22
through
Table 31
are guaranteed over the
recommended operating conditions specified in
Table 21
.
Table 20. Absolute Maximum Ratings
Parameter
Sym
Min
Max
Unit
DC supply (reference to GND)
V
CC
, TV
CC
6.0
V
Input voltage, any pin
1
V
IN
GND - 0.3 V
V
CC
+ 0.3 V
V
Input current, any pin
2
I
IN
- 10
10
mA
Storage Temperature
T
STG
-65
150
°
C
Caution:
Exceeding these values may cause permanent damage.
Caution:
Functional operation under these conditions is not implied.
Caution:
Exposure to maximum rating conditions for extended periods may affect device reliability.
1. TVCC and VCC must not differ by more than 0.3 V during operation. TGND and GND must not differ by more than 0.3 V
during operation.
2. Transient currents of up to 100 mA will not cause SCR latch-up. TTIP, TRING, TVCC, and TGND can withstand continuous
currents of up to 100 mA.
Table 21. Recommended Operating Conditions
Parameter
Sym
Min
Typ
1
Max
Unit
Test Conditions
DC supply
2
V
CC
,TV
CC
4.75
5.0
5.25
V
Ambient operating temperature
T
A
- 40
25
85
°
C
Total power dissipation
3
T1
P
D
310
380
mW
100% mark density
P
D
225
295
mW
50% mark density
E1
P
D
275
330
mW
100% mark density
P
D
215
270
mW
50% mark density
1. Typical figures are at 25
°
C and are for design aid only; not guaranteed and not subject to production testing.
2. TVCC and VCC must not differ by more than 0.3 V.
3. Power dissipation while driving 75
load over operating range for T1 operation or 60
load for E1 operation. Includes
power dissipation on device and load. Digital levels are within 10% of the supply rails and digital outputs driving a 50 pF
capacitive load.
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