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PDF TSX3704 Data sheet ( Hoja de datos )

Número de pieza TSX3704
Descripción Micropower quad CMOS voltage comparators
Fabricantes STMicroelectronics 
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No Preview Available ! TSX3704 Hoja de datos, Descripción, Manual

TSX3704
Micropower quad CMOS voltage comparators
Datasheet - production data
Features
Low supply current: 5 µA typ. per
comparator
Wide single supply range 2.7 V to 16 V or
dual supplies (±1.35 V to ±8 V)
Extremely low input bias current: 1 pA typ.
Input common-mode voltage range includes
ground
Push-pull output
High input impedance: 1012 Ω typ
Fast response time: 2.7 µs typ. for 5 mV
overdrive
ESD tolerance: 4 kV HBM, 200 V MM
Related products
Pin-to-pin and functionally compatible with
the dual CMOS TS3704 comparators
See TSX339 for open drain output
Applications
Automotive
Industrial
Description
The TSX3704 is a micropower CMOS quad
voltage comparator which exhibits a very low
current consumption of 5 µA typical per
comparator. This device was designed as the
improvement of the TS3704: it shows a lower
current consumption, a better input offset voltage,
and an enhanced ESD tolerance. The TSX3704
is fully specified over a wide temperature range
and is proposed in automotive grade for the
TSSOP14 package. It is fully compatible with the
TS3704 CMOS comparator and is available with
similar packages. The new tiny package, QFN16
3x3, is also proposed for the TSX3704 thus
allowing even more integration on applications.
February 2016
DocID028620 Rev 2
This is information on a product in full production.
1/22
www.st.com

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TSX3704 pdf
TSX3704
Absolute maximum ratings and operating
conditions
3 Absolute maximum ratings and operating conditions
Symbol
VCC+
Vid
Vin
Vo
Io
IF
Tj
Tstg
Rthja
ESD
Table 1: Absolute maximum ratings (AMR)
Parameter
Supply voltage (1)
Differential input voltage (2)
Input voltage
Output voltage
Output current
Forward current in ESD protection diodes on inputs (3)
Maximum junction temperature
Storage temperature range
Thermal resistance junction to ambient (4)
SO14
TSSOP14
HBM: human body model (5)
MM: machine model (6)
CDM: charged device model (7)
QFN16 3x3
Latch-up immunity
Value
18
±18
-0.3 to18
18
20
50
150
-65 to 150
105
100
39
4000
200
1500
200
Unit
V
mA
°C
°C/W
V
mA
Notes:
(1)All voltage values, except the 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)Guaranteed by design
(4)Short-circuits can cause excessive heating and destructive dissipation. Values are typical
(5)According to JEDEC standard JESD22-A114F
(6)According to JEDEC standard JESD22-A115A
(7)According to ANSI/ESD STM5.3.1
Symbol
VCC+
Vicm (1)
Toper
Table 2: Operating conditions
Parameter
Supply voltage
Common mode input voltage range
Tmin Tamb Tmax
Operating free-air temperature range
Value
2.7 to 16
0 to (VCC+) - 1.5
0 to (VCC+) - 2
-40 to 125
Unit
V
°C
Notes:
(1)The output state is guaranteed as long as one input remains with this common mode input voltage range, and
the other input remains between -0.3 V and 16 V (meaning that one input can be driven above VCC+).
DocID028620 Rev 2
5/22

5 Page





TSX3704 arduino
TSX3704
Figure 9: Output voltage drop vs. output sink current,
VCC = 5 V
Electrical characteristic curves
Figure 10: Output voltage drop vs. output sink current,
VCC = 12 V
Figure 11: Input offset voltage distribution, VCC = 5 V
Figure 12: Input current vs input voltage, VCC = 5 V
1E-3
1E-4
1E-5
1E-6
1E-7
1E-8
1E-9
1E-10
1E-11
1E-12
1E-13
1E-14
0
V = 5V
CC
24
T = 85oC
T = 125oC
T = 25oC
6 8 10 12 14 16
Vin (V)
Figure 13: Propagation delay tPLH vs. input signal
overdrive, VCC = 5 V
Figure 14: Propagation delay tPHL vs. input signal
overdrive, VCC = 5 V
DocID028620 Rev 2
11/22

11 Page







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