參數(shù)資料
型號: 6300
廠商: Linear Technology Corporation
英文描述: 500mA, 200MHz X DSL LINE DRIVER IN 16-LEAD SSOP PACKAGE
中文描述: 500mA的,200MHz的X的DSL線路驅(qū)動器,采用16引線SSOP封裝
文件頁數(shù): 9/16頁
文件大?。?/td> 237K
代理商: 6300
9
LT6300
APPLICATIOU
modes. These modes can be useful for overall system
power management when full power transmissions are
not necessary.
W
U
U
Shutdown and Recovery
The ultimate power saving action on a completely idle port
is to fully shut down the line driver by pulling the SHDN pin
to within 0.4V of the SHDNREF potential. As shown in
Figure 5 complete shutdown occurs in less than 10
μ
s and,
more importantly, complete recovery from the shut down
state to full operation occurs in less than 2
μ
s. The biasing
circuitry in the LT6300 reacts very quickly to bring the
amplifiers back to normal operation.
Power Dissipation and Heat Management
xDSL applications require the line driver to dissipate a
significant amount of power and heat compared to other
components in the system. The large peak to RMS varia-
tions of DMT and CAP ADSL signals require high supply
voltages to prevent clipping, and the use of a step-up
transformer to couple the signal to the telephone line can
require high peak current levels. These requirements
result in the driver package having to dissipate significant
amounts of power. Several multiport cards inserted into
a rack in an enclosed central office box can add up to
many, many watts of power dissipation in an elevated
ambient temperature environment. The LT6300 has built-
in thermal shutdown cir
cuitry that will protect the ampli-
fiers if operated at excessive temperatures, however data
transmissions will be seriously impaired. It is important in
the design of the PCB and card enclosure to take measures
to spread the heat developed in the driver away to the
ambient environment to prevent thermal shutdown (which
occurs when the junction temperature of the LT6300
exceeds 165
°
C).
Estimating Line Driver Power Dissipation
Figure 6 is a typical ADSL application shown for the
purpose of estimating the power dissipation in the line
driver. Due to the complex nature of the DMT signal,
V
SHDNREF = 0V
AMPLIFIER
OUTPUT
6300 F05
Figure 5. Shutdown and Recovery Timing
Figure 6. Estimating Line Driver Power Dissipation
6300 F06
+
B
–IN
+
A
+IN
12V
20mA DC
SHDN
–12V
–2V
RMS
17.4
24.9k – SETS I
Q
PER AMPLIFIER = 10mA
1:1.7
110
1000pF
110
1k
1k
17.4
SHDNREF
100
3.16V
RMS
I
LOAD
= 57mA
RMS
2V
RMS
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