參數(shù)資料
型號(hào): MAX4507EPN
廠商: MAXIM INTEGRATED PRODUCTS INC
元件分類(lèi): 運(yùn)動(dòng)控制電子
英文描述: Fault-Protected, High-Voltage Signal-Line Protectors
中文描述: OCTAL 1-CHANNEL, SGL POLE SGL THROW SWITCH, PDIP18
封裝: PLASTIC, DIP-18
文件頁(yè)數(shù): 10/12頁(yè)
文件大小: 393K
代理商: MAX4507EPN
M
As seen in Figure 7, the signal input can now be put
into pin 1 of the MAX4506 (new common output for sys-
tem), and outputs can be taken at MAX4508 pins 4 to
7, and 9 to 12. This is the classic demultiplexer opera-
tion. This system now has full protection on both of the
multiplexers’ inputs and outputs.
Measuring Path Resistance
Measuring path resistance requires special techniques,
since path resistance varies dramatically with the IN
and OUT voltages relative to the supply voltages.
Conventional ohmmeters should not be used for the fol-
lowing two reasons: 1) the applied voltage and currents
are usually not predictable, and 2) the true resistance is
a function of the applied voltage, which is dramatically
altered by the ohmmeter itself. Autoranging ohmmeters
are particularly unreliable.
Figure 8 shows a circuit that can give reliable results.
This circuit uses a 100mV voltage source, a low-volt-
age-drop ammeter as the measuring circuit, and an
adjustable supply to sweep the analog voltage across
its entire range. The ammeter must have a voltage drop
of less than one millivolt (up to the maximum test cur-
rent) for accurate results. A Keithley model 617 elec-
trometer has a suitable ammeter circuit, appropriate
ranges, and a built-in voltage source designed for this
type of measurement. Find the path resistance by set-
ting the analog voltage, measuring the current, and cal-
culating the path resistance. Repeat the procedure at
each analog and supply voltage.
Note:
It is important to use a voltage source of 100mV
or less. As shown in Figure 8, this voltage and the V
IN
voltage form the V
OUT
voltage. Using higher voltages
could cause OUT to go into a fault condition prematurely.
High-Voltage Surge Suppression
These devices are not high-voltage arresters, nor are
they substitutes for surge suppressors. However, the
MAX4506/MAX4507 can fill a vital gap in systems that
use these forms of protection (Figure 9). Although surge
suppressors are extremely fast shunt elements, they
have very soft current knees. Their clamp voltage must
be chosen well above the normal signal levels, because
they have excessive leakage currents as the analog
signal approaches the knee. This leakage current can
interfere with normal operation when signal levels are
low or impedance is high. If the clamp voltage is too
high, the input can be damaged.
Connecting a MAX4506/MAX4507 after a surge sup-
pressor allows the surge-suppressor voltage to be set
above the supply voltage (but within the overvoltage
limits), dramatically reducing leakage effects (Figure 9).
During a surge, the surge suppressor clamps the input
voltage roughly to the ±10V supplies.
Fault-Protected, High-Voltage
Signal-Line Protectors
10
______________________________________________________________________________________
MAX4506
V
OUT
V
IN
IN1
V-
V+
V+
100mV
PATH RESISTANCE = 100mv/A
ADJUSTABLE
ANALOG
VOLTAGE
8
4
OUT1
A
MAX4506
IN3
V-
SURGE SUPPRESSORS
-15V
-10V
V+
+10V
3
4
5
OUT3
IN2
2
6
OUT2
IN1
1
7
OUT1
8
OP AMP
Figure 8. Path-Resistance Measuring Circuit
Figure 9. Surge-Suppression Circuit
相關(guān)PDF資料
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