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TLC393M Fiches technique(PDF) 7 Page - Texas Instruments

No de pièce TLC393M
Description  DUAL MICROPOWER LinCMOSE VOLTAGE COMPARATOR
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Fabricant  TI [Texas Instruments]
Site Internet  http://www.ti.com
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TLC193, TLC393
DUAL MICROPOWER LinCMOS
™ VOLTAGE COMPARATOR
SLCS115D – DECEMBER 1986 – REVISED JANUARY 1999
7
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
switching characteristics, VDD = 5 V, TA = 25°C (see Figure 3)
PARAMETER
TEST CONDITIONS
TLC393C, TLC393I
TLC393Q, TLC193M,
TLC393M
UNIT
MIN
TYP
MAX
Overdrive = 2 mV
4.5
f10 kH
Overdrive = 5 mV
2.5
tPLH
Propagation delay time, low-to-high-level output
f = 10 kHz,
CL =15 pF
Overdrive = 10 mV
1.7
µs
CL = 15 F
Overdrive = 20 mV
1.2
Overdrive = 40 mV
1.1
VI = 1.4-V step at IN +
1.1
Overdrive = 2 mV
3.6
f10 kH
Overdrive = 5 mV
2.1
tPHL
Propagation delay time, high-to-low-level output
f = 10 kHz,
CL =15 pF
Overdrive = 10 mV
1.3
µs
CL = 15 F
Overdrive = 20 mV
0.85
Overdrive = 40 mV
0.55
VI = 1.4-V step at IN +
0.10
tf
Fall time, output
f = 10 kHz,
CL = 15 pF
Overdrive = 50 mV
22
ns
PARAMETER MEASUREMENT INFORMATION
The TLC393 contains a digital output stage which, if held in the linear region of the transfer curve, can cause
damage to the device. Conventional operational amplifier/comparator testing incorporates the use of a servo
loop that is designed to force the device output to a level within this linear region. Since the servo-loop method
of testing cannot be used, the following alternatives for testing parameters such as input offset voltage,
common-mode rejection ratio, etc., are suggested.
To verify that the input offset voltage falls within the limits specified, the limit value is applied to the input as shown
in Figure 1(a). With the noninverting input positive with respect to the inverting input, the output should be high.
With the input polarity reversed, the output should be low.
A similar test can be made to verify the input offset voltage at the common-mode extremes. The supply voltages
can be slewed as shown in Figure 1(b) for the VICR test, rather than changing the input voltages, to provide
greater accuracy.
+
5 V
Applied VIO
Limit
VO
+
1 V
Applied VIO
Limit
VO
– 4 V
(a) VIO WITH VIC = 0 V
(b) VIO WITH VIC = 4 V
5.1 k
5.1 k
Figure 1. Method for Verifying That Input Offset Voltage Is Within Specified Limits


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