TS393
Micropower Dual CMOS Voltage Comparators
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Extremely low supply current:
9µa typ/comp.
Wide single supply range
2.7V to 16V
or dual
supplies (±1.35V to ±8V)
Extremely low input bias current:
1pA typ.
Extremely low input offset current:
1pA typ.
Input common-mode voltage range includes
GND
High input impedance: 10
12
Ω
typ
Fast response time: 2.5µs typ. for 5mV
overdrive
Pin-to-pin and functionally compatible with
bipolar LM393
P
TSSOP8
(Thin Shrink Small Outline Package)
D
SO-8
(Plastic Micropackage)
N
DIP8
(Plastic Package)
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Description
The TS393 is a micropower CMOS dual voltage
comparator with extremely low consumption of
9µA typ / comparator (20 times less than bipolar
LM339). Similar performances are offered by the
quad micropower comparator TS3702 with a
push-pull CMOS output.
Thus response times remain similar to the LM393.
Pin Connection (top view)
Output 1
Inverting Input 1
Non-inverting Input 1
V
CC
-
1
2
3
4
-
+
-
+
8
7
6
5
V
CC
+
Output 2
Inverting Input 2
Non-inverting Input 2
Order Codes
Part Number
TS393CN
TS393CD/CDT
TS393MD/MDT
TS393IN
TS393ID/IDT
TS393IPT
TS393IYD/IYDT
-40°C, +125°C
Temperature
Range
0°C, +70°C
-55°C, +125°C
Package
DIP84
SO-8
SO-8
DIP8
SO-8
TSSOP8
(Thin Shrink Outline
Package)
SO-8 (automotive grade
level)
Packaging
Tube
Tube or Tape & Reel
Tube or Tape & Reel
Tube
Tube or Tape & Reel
Tape & Reel
Tube or Tape & Reel
Marking
TS393CN
S399C
S393M
TS393IN
S393I
S393I
S393IY
-40°C, +125°C
August 2005
Rev 2
1/9
www.st.com
9
Absolute Maximum Ratings
TS393
1
Absolute Maximum Ratings
Table 1.
Symbol
V
CC +
V
id
V
i
V
o
I
o
I
F
Key parameters and their absolute maximum ratings
Parameter
Supply Voltage
(1)
Differential Input Voltage
(2)
Input Voltage
(3)
Output Voltage
Output Current
Forward Current in ESD Protection Diodes on
Inputs
(4)
Power Dissipation
(5)
DIP8
SO8
TSSOP8
Storage Temperature Range
HBM: Human Body Model
(6)
Value
18
±18
18
18
20
50
1250
710
625
-65 to +150
50
40
1
Unit
V
V
V
V
mA
mA
p
d
T
stg
mW
°C
V
V
kV
ESD
MM: Machine Model
(7)
CDM: Charged Device Model
1. All voltage values, except differential voltage, are with respect to network ground terminal.
2. Differential voltages are the non-inverting input terminal with respect to the inverting input terminal.
3. Excursions of input voltages may exceed the power supply level. As long as the common mode voltage
[V
icm
=(V
in+
+ V
in-
)/2] remains within the specified range, the comparator will provide a stable output state.
However, the maximum current through the ESD diodes (IF) of the input stage must strictly be observed.
4. Guaranteed by design.
5. Pd is calculated with T
amb
= +25°C, T
j
= +150°C and R
thja
= 80 °C/W for DIP14 package
= 150 °C/W for SO14 package
= 175°C/W for TSSOP14 package
6. Human body model, 100pF discharged through a 1.5kΩ resistor into pin of device.
7. Machine model ESD, a 200pF cap is charged to the specified voltage, then discharged directly into the IC with
no external series resistor (internal resistor < 5Ω), into pin to pin of device.
Table 2.
Symbol
V
CC+
V
icm
Operating conditions
Parameter
Supply Voltage
TS393C,I
TS393M
Common Mode Input Voltage Range
Operating Free-Air Temperature range
TS393C
TS393I
TS393M
Value
2.7 to 16
4 to 16
0 to V
CC+
-1.5
0 to +70
-40 to +125
-55 to +125
Unit
V
V
T
oper
°C
2/9
TS393
Typical Application Schematics
2
Typical Application Schematics
Figure 1.
Schematic diagram (for 1/2 TS393)
V
CC
+
T
1
T
2
T
9
T
10
T
17
R
1
Input -
T
3
T
4
T
11
T
12
Input +
T
18
Output
T
20
T
8
T
13
T
19
T
5
T
6
T
7
T
14
T
15
T
16
V
CC
-
3/9
Electrical Characteristics
TS393
3
Electrical Characteristics
Table 3.
Symbol
Input Offset Voltage
(1)
V
ic
= 1.5V
T
min
.
≤
T
amb
≤
T
max.
Input Offset Current
(2)
V
ic
= 1.5V
T
min
.
≤
T
amb
≤
T
max.
Input Bias Current
2)
V
ic
= 1.5V
T
min
.
≤
T
amb
≤
T
max.
Input Common Mode Voltage Range
T
min
.
≤
T
amb
≤
T
max
Common-mode Rejection Ratio
V
ic
= V
icm min.
Supply Voltage Rejection Ratio
V
CC+
= 3V to 5V
High Level Output Current
V
id
= +1V, V
OH
= 3V
T
min
.
≤
T
amb
≤
T
max.
Low Level Output Voltage
V
id
= -1V, I
OL
= +6mA
T
min
.
≤
T
amb
≤
T
max.
Supply Current (each comparator)
No load - Outputs low
T
min
.
≤
T
amb
≤
T
max.
Response Time Low to High
V
ic
= 0V, f = 10kHz, R
L
= 5.1kΩ, C
L
= 50pF, Overdrive = 5mV
TTL Input
Response Time High to Low
V
ic
= 0V, f = 10kHz, R
L
= 5.1kΩ, C
L
= 50pF, Overdrive = 5mV
TTL Input
70
dB
0
0
V
CC+
= 3V, V
CC-
= 0V, T
amb
= 25°C (unless otherwise specified)
Parameter
Min.
Typ.
Max.
Unit
V
io
5
6.5
mV
I
io
1
300
pA
I
ib
1
600
V
CC+
-1.2
V
CC+
-1.5
70
pA
V
icm
V
CMR
dB
SVR
I
OH
2
40
1000
nA
V
OL
400
550
800
mV
I
CC
9
20
25
µA
t
PLH
1.5
0.7
2.5
0.08
µs
t
PHL
µs
1. The specified offset voltage is the maximum value required to drive the output up to 2.5V or down to 0.3V.
2. Maximum values including unavoidable inaccuracies of the industrial test.
4/9
TS393
Table 4.
Symbol
Electrical Characteristics
V
CC+
= 5V, V
CC-
= 0V, T
amb
= 25°C (unless otherwise specified)
Parameter
Input Offset Voltage
(1)
V
io
V
ic
= 2.5V, V
cc+
= 5V to 10V
T
min
.
≤
T
amb
≤
T
max.
Input Offset Current
(2)
V
ic
= 2.5V
T
min
.
≤
T
amb
≤
T
max.
Input Bias Current
2)
V
ic
= 2.5V
T
min
.
≤
T
amb
≤
T
max.
Input Common Mode Voltage Range
T
min
.
≤
T
amb
≤
T
max
Common-mode Rejection Ratio
V
ic
= 0V
Supply Voltage Rejection Ratio
V
CC+
= +5V to +10V
High Level Output Voltage
V
id
= 1V, V
OH
= +5V
T
min
.
≤
T
amb
≤
T
max.
Low Level Output Voltage
V
id
= -1V, I
OL
= 6mA
T
min
.
≤
T
amb
≤
T
max.
Supply Current (each comparator)
No load - Outputs low
T
min
.
≤
T
amb
≤
T
max.
Response Time Low to High
V
ic
= 0V, f = 10kHz, R
L
= 5.1kΩ, C
L
= 50pF,
Overdrive = 5mV
Overdrive = 10mV
Overdrive = 20mV
Overdrive = 40mV
TTL Input
Response Time High to Low
V
ic
= 0V, f = 10kHz, R
L
= 5.1kΩ, C
L
= 50pF,
Overdrive = 5mV
Overdrive = 10mV
Overdrive = 20mV
Overdrive = 40mV
TTL Input
Fall time
f = 10kHz, C
L
= 50pF, R
L
= 5.1kΩ, Overdrive 50mV
0
0
1.4
5
6.5
mV
Min.
Typ.
Max.
Unit
I
io
1
300
pA
I
ib
1
600
V
CC+
-1.2
V
CC+
-1.5
71
pA
V
icm
V
CMR
dB
SVR
80
dB
I
OH
2
40
1000
nA
V
OL
260
400
650
20
25
mV
I
CC
10
µA
t
PLH
1.5
1.2
1.0
0.8
0.7
µs
t
PHL
2.5
1.9
1.2
0.8
0.08
µs
t
f
25
as
1. The specified offset voltage is the maximum value required to drive the output up to 4.5V or down to 0.3V.
2. Maximum values including unavoidable inaccuracies of the industrial test.
5/9