TS3021, TS3021A
Rail-to-rail 1.8 V high-speed comparator
Datasheet - production data
Related products
SOT23-5/SC70-5
TS3022 for a dual comparator with similar
performances
TS3011 for a high-speed comparator
Applications
Pin connections (top view)
OUT
Vcc-
IN+
1
2
+
3
-
4
IN-
5
Vcc+
Telecom
Instrumentation
Signal conditioning
High-speed sampling systems
Portable communication systems
Description
The TS3021 single comparator features high-
speed response time with rail-to-rail inputs. With
a supply voltage specified from 2 to 5 V, this
comparator can operate over a wide temperature
range: -40 °C to 125 °C.
The TS3021 comparator offers micropower
consumption as low as a few tens of
microamperes thus providing an excellent ratio of
power consumption current versus response
time.
The TS3021 includes push-pull outputs and is
available in small packages (SOT23-5 and
SC70-5).
Features
Propagation delay: 38 ns
Low current consumption: 73 µA
Rail-to-rail inputs
Push-pull outputs
Supply operation from 1.8 to 5 V
Wide temperature range: -40 °C to 125 °C
High ESD tolerance: 5 kV HBM, 300 V MM
Latch-up immunity: 200 mA
SMD packages
Automotive qualification
July 2016
DocID12485 Rev 8
1/20
www.st.com
This is information on a product in full production.
Contents
TS3021, TS3021A
Contents
1
2
3
4
Absolute maximum ratings and operating conditions ................. 3
Electrical characteristics ................................................................ 4
Electrical characteristic curves .................................................... 10
Package information ..................................................................... 15
4.1
4.2
SOT23-5 package information ........................................................ 16
SC70-5 (or SOT323-5) package information ................................... 17
5
6
Ordering information..................................................................... 18
Revision history ............................................................................ 19
2/20
DocID12485 Rev 8
TS3021, TS3021A
Absolute maximum
ratings and operating
conditions
1
Absolute maximum ratings and operating conditions
Table 1: Absolute maximum ratings (AMR)
Symbol
V
CC
V
ID
V
IN
R
thja
Parameter
Supply voltage, V
CC
= (V
CC+
) - (V
CC-
)
(1)
Differential input voltage
(2)
Input voltage range
Thermal resistance junction-to-ambient
(3)
SOT23-5
SC70-5
R
thjc
T
stg
T
j
T
LEAD
Thermal resistance junction-to-case
(3)
Storage temperature
Junction temperature
Lead temperature (soldering 10 s)
HBM: human body model
ESD
MM: machine model
(5)
CDM: charged device model
Latch-up immunity
Notes:
(1)
(2)
(6)
(4)
Value
5.5
±5
(V
CC-
) - 0.3 to (V
CC+
) + 0.3
250
205
Unit
V
°C/W
SOT23-5
SC70-5
81
172
-65 to 150
150
260
5000
300
1500
200
mA
V
°C
All voltage values, except the differential voltage are referenced to (V
CC-
)
The magnitude of the input and output voltages must never exceed the supply rail ±0.3 V
circuits can cause excessive heating. These values are typical
(3)
Short
(4)
Human
body model: a 100 pF capacitor is charged to the specified voltage, then discharged through a 1.5 kΩ
resistor between two pins of the device. This is done for all couples of connected pin combinations while the other
pins are floating.
(5)
Machine model: a 200 pF capacitor is charged to the specified voltage, then discharged directly between two
pins of the device with no external series resistor (internal resistor < 5 Ω). This is done for all couples of connected
pin combinations while the other pins are floating.
(6)
Charged device model: all pins and the package are charged together to the specified voltage and then
discharged directly to the ground through only one pin. This is done for all pins.
Table 2: Operating conditions
Symbol
V
CC
Supply voltage
Common mode input
voltage range
Parameter
0 °C < Tamb < 125 °C
-40 °C < Tamb < 125°C
-40 °C < Tamb < 85 °C
85 °C < Tamb < 125 °C
Value
1.8 to 5
2 to 5
V
(V
CC-
) - 0.2 to (V
CC+
) + 0.2
(V
CC-
) to (V
CC+
)
-40 to 125
°C
Unit
V
icm
T
oper
Operating temperature range
DocID12485 Rev 8
3/20
Electrical characteristics
TS3021, TS3021A
2
Symbol
Electrical characteristics
Table 3: Electrical characteristics at VCC = 2 V, Tamb = 25 ° C, and full Vicm range
(unless otherwise specified)
Parameter
Test conditions
(1)
TS3021A
V
IO
Input offset voltage
TS3021
-40 °C < Tamb < 125 °C, TS3021A
-40 °C < Tamb < 125 °C, TS3021
Min.
Typ.
0.5
0.5
Max.
2
6
4
7
3
1
20
20
100
86
160
300
73
90
115
84
105
125
9
10
1.88
1.80
60
100
150
67
58
73
38
48
40
49
8
9
60
75
60
ns
75
1.92
mA
µA
nA
µV/°C
mV
Unit
ΔV
io
/ΔT
I
IO
Input offset voltage drift
Input offset current
(2)
Input bias current
(2)
-40 °C < Tamb < 125 °C
Tamb
-40 °C < Tamb < 125 °C
Tamb
-40 °C < Tamb < 125 °C
No load, output high, Vicm = 0 V
No load, output high, Vicm = 0 V,
-40 °C < Tamb < 125 °C
No load, output low, Vicm = 0 V
No load, output low, Vicm = 0 V,
-40 °C < Tamb < 125 °C
I
IB
I
CC
Supply current
I
SC
Short-circuit current
Source
Sink
Isource = 1 mA
-40 °C < Tamb < 125 °C
Isink = 1 mA
-40 °C < Tamb < 125 °C
0 < Vicm < 2 V
∆Vcc = 2 to 5 V
Vicm = 0 V, f = 10 kHz,
CL = 50 pF, overdrive = 100 mV
Vicm = 0 V, f = 10 kHz,
CL = 50 pF, overdrive = 20 mV
Vicm = 0 V, f = 10 kHz,
CL = 50 pF, overdrive = 100 mV
Vicm = 0 V, f = 10 kHz,
CL = 50 pF, overdrive = 20 mV
f = 10 kHz, CL = 50 pF,
RL = 10 kΩ, overdrive = 100 mV
f = 10 kHz, CL = 50 pF,
RL = 10 kΩ, overdrive = 100 mV
V
OH
Output voltage high
V
V
OL
CMRR
SVR
Output voltage low
Common mode rejection
ratio
Supply voltage rejection
Propagation delay, low to
high output level
(3)
mV
dB
TP
LH
TP
HL
Propagation delay, high to
low output level
(4)
T
F
T
R
Fall time
Rise time
4/20
DocID12485 Rev 8
TS3021, TS3021A
Notes:
(1)
All
Electrical characteristics
values over the temperature range are guaranteed through correlation and simulation. No production test is performed at the
temperature range limits
(2)
Maximum
(3)
Response
(4)
values include unavoidable inaccuracies of the industrial tests
time is measured 10%/90% of the final output value with the following conditions: inverting input voltage (IN-) = Vicm
and non-inverting input voltage (IN+) moving from Vicm - 100 mV to Vicm + overdrive.
Response time is measured 10%/90% of the final output value with the following conditions: Inverting input voltage (IN-) = Vicm
and non-inverting input voltage (IN+) moving from Vicm + 100 mV to Vicm - overdrive.
DocID12485 Rev 8
5/20