TLV2393Y [TI]

DUAL DIFFERENTIAL COMPARATORS; 双差分比较仪
TLV2393Y
型号: TLV2393Y
厂家: TEXAS INSTRUMENTS    TEXAS INSTRUMENTS
描述:

DUAL DIFFERENTIAL COMPARATORS
双差分比较仪

比较器 放大器 放大器电路
文件: 总16页 (文件大小:255K)
中文:  中文翻译
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TLV1393, TLV1393Y, TLV2393, TLV2393Y  
DUAL DIFFERENTIAL COMPARATORS  
SLCS121A – AUGUST 1993 – REVISED APRIL 1994  
D, P, OR PW PACKAGE  
(TOP VIEW)  
Low-Voltage and Single-Supply Operation  
= 2 V to 7 V  
V
CC  
Common-Mode Voltage Range Includes  
Ground  
1OUT  
1IN–  
1IN+  
GND  
V
CC  
1
2
3
4
8
7
6
5
2OUT  
2IN–  
2IN+  
Fast Response Time  
450 ns Typ (TLV2393)  
Low Supply Current  
0.16 mA Typ (TLV1393)  
Fully Specified at 3-V and 5-V Supply  
Voltages  
description  
The TLV1393 and the TLV2393 are dual differential comparators built using a new Texas Instruments  
low-voltage, high-speed bipolar process. These devices have been specifically developed for low-voltage,  
single-supply applications. Their enhanced performance makes them excellent replacements for the LM393 in  
today’s improved 3-V and 5-V system designs.  
The TLV1393, with its typical supply current of only 0.16 mA, is ideal for low-power systems. Response time  
has also been improved to 0.7 µs. For higher-speed applications, the TLV2393 features excellent ac  
performance with a response time of just 0.45 µs, three times that of the LM393.  
Package availability for these devices includes the TSSOP (thin-shrink small-outline package). With a  
maximum thickness of 1.1 mm and a package area that is 25% smaller than the standard surface-mount  
package, the TSSOP is ideal for high-density circuits, particularly in hand-held and portable equipment.  
AVAILABLE OPTIONS  
PACKAGED DEVICES  
CHIP FORM  
T
A
SUPPLY CURRENT  
(TYP)  
RESPONSE TIME  
(TYP)  
SMALL OUTLINE PLASTIC DIP  
TSSOP  
(Y)  
(D)  
(P)  
(PW)  
0.16 mA  
1.1 mA  
0.7 µs  
0.45 µs  
TLV1393ID  
TLV2393ID  
TLV1393IP  
TLV2393IP  
TLV1393IPWLE  
TLV2393IPWLE  
TLV1393Y  
TLV2393Y  
40°C to 105°C  
The PW packages are only available left-ended taped and reeled (e.g., TLV1393IPWLE).  
symbol (each comparator)  
IN+  
IN–  
OUT  
Copyright 1994, Texas Instruments Incorporated  
PRODUCTION DATA information is current as of publication date.  
Products conform to specifications per the terms of Texas Instruments  
standard warranty. Production processing does not necessarily include  
testing of all parameters.  
1
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TLV1393, TLV1393Y, TLV2393, TLV2393Y  
DUAL DIFFERENTIAL COMPARATORS  
SLCS121A – AUGUST 1993 – REVISED APRIL 1994  
TLV1393, TLV1393Y equivalent schematic (each comparator)  
V
CC  
IN +  
IN –  
GND  
OUT  
COMPONENT COUNT  
Transistors  
Resistors  
Diodes  
44  
1
7
Epi-FET  
2
2
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TLV1393, TLV1393Y, TLV2393, TLV2393Y  
DUAL DIFFERENTIAL COMPARATORS  
SLCS121A – AUGUST 1993 – REVISED APRIL 1994  
TLV2393, TLV2393Y equivalent schematic (each comparator)  
V
CC  
IN +  
IN –  
GND  
OUT  
COMPONENT COUNT  
Transistors  
Resistors  
Diodes  
44  
1
7
Epi-FET  
2
3
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TLV1393, TLV1393Y, TLV2393, TLV2393Y  
DUAL DIFFERENTIAL COMPARATORS  
SLCS121A – AUGUST 1993 – REVISED APRIL 1994  
TLV1393Y chip information  
This chip, when properly assembled, displays characteristics similar to the TLV1393. Thermal compression or  
ultrasonic bonding may be used on the doped-aluminum bonding pads. Chips may be mounted with conductive  
epoxy or a gold-silicon preform.  
BONDING PAD ASSIGNMENTS  
V
CC  
(8)  
(3)  
(2)  
(7)  
(6)  
1IN+  
1IN–  
+
(1)  
1OUT  
(5)  
(6)  
+
2IN+  
2IN–  
(7)  
2OUT  
(4)  
GND  
(5)  
(8)  
(1)  
38  
CHIP THICKNESS: 13 TYPICAL  
BONDING PADS: 3.54 × 3.54 MINIMUM  
(4)  
(3)  
T max = 150°C  
J
TOLERANCES ARE ±10%.  
ALL DIMENSIONS ARE IN MILS.  
(2)  
PIN (4) IS INTERNALLY CONNECTED  
TO BACKSIDE OF CHIP.  
32  
4
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TLV1393, TLV1393Y, TLV2393, TLV2393Y  
DUAL DIFFERENTIAL COMPARATORS  
SLCS121A – AUGUST 1993 – REVISED APRIL 1994  
TLV2393Y chip information  
This chip, when properly assembled, displays characteristics similar to the TLV2393. Thermal compression or  
ultrasonic bonding may be used on the doped-aluminum bonding pads. Chips may be mounted with conductive  
epoxy or a gold-silicon preform.  
BONDING PAD ASSIGNMENTS  
V
CC  
(8)  
(3)  
(2)  
(7)  
(6)  
1IN+  
1IN–  
+
(1)  
1OUT  
(5)  
(6)  
+
2IN+  
2IN–  
(7)  
2OUT  
(4)  
GND  
(5)  
(8)  
(1)  
38  
CHIP THICKNESS: 15 TYPICAL  
BONDING PADS: 3.6 × 3.6 MINIMUM  
(4)  
(3)  
T max = 150°C  
J
TOLERANCES ARE ±10%.  
ALL DIMENSIONS ARE IN MILS.  
(2)  
PIN (4) IS INTERNALLY CONNECTED  
TO BACKSIDE OF CHIP.  
32  
5
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TLV1393, TLV1393Y, TLV2393, TLV2393Y  
DUAL DIFFERENTIAL COMPARATORS  
SLCS121A – AUGUST 1993 – REVISED APRIL 1994  
absolute maximum ratings over operating free-air temperature range (unless otherwise noted)  
Supply voltage, V  
(see Note 1) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7 V  
CC  
Differential input voltage, V (see Note 2) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7 V  
ID  
Input voltage, V (any input) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7 V  
I
Output voltage, V . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7 V  
O
Output current, I (each output) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 20 mA  
O
Duration of short-circuit current to GND (see Note 3) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . unlimited  
Continuous total dissipation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . See Dissipation Rating Table  
Operating free-air temperature range, T  
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 40°C to 105°C  
A
Storage temperature range . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 65°C to 150°C  
Lead temperature 1,6 mm (1/16 inch) from case for 10 seconds . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 260°C  
Stresses beyond those listed under “absolute maximum ratings” may cause permanent damage to the device. These are stress ratings only, and  
functional operation of the device at these or any other conditions beyond those indicated under “recommended operating conditions” is not  
implied. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability.  
NOTES: 1. All voltage values, except differential voltages, are with respect to the network GND.  
2. Differential voltages are at the noninverting input with respect to the inverting input.  
3. Short circuits from the outputs to V  
can cause excessive heating and eventual destruction of the chip.  
CC  
DISSIPATION RATING TABLE  
T
25°C  
DERATING FACTOR  
T
= 70°C  
T = 85°C  
A
A
A
PACKAGE  
POWER RATING  
ABOVE T = 25°C  
POWER RATING POWER RATING  
A
D
P
725 mW  
5.8 mW/°C  
8.0 mW/°C  
4.2 mW/°C  
464 mW  
640 mW  
336 mW  
377 mW  
520 mW  
273 mW  
1000 mW  
PW  
525 mW  
recommended operating conditions  
MIN  
2
MAX  
7
UNIT  
V
Supply voltage, V  
CC  
Operating free-air temperature, T  
40  
105  
°C  
A
6
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TLV1393, TLV1393Y, TLV2393, TLV2393Y  
DUAL DIFFERENTIAL COMPARATORS  
SLCS121A – AUGUST 1993 – REVISED APRIL 1994  
electrical characteristics, V  
= 3 V  
CC  
TLV1393  
PARAMETER  
TEST CONDITIONS  
UNIT  
T
A
MIN  
TYP  
1.5  
MAX  
25°C  
5
9
V
IO  
Input offset voltage  
V
O
= 1.4 V,  
V
IC  
= V min  
ICR  
mV  
Full range  
120  
0 to  
0 to  
25°C  
V
– 1.5  
CC  
0 to  
V
1.2  
CC  
V
V
Common-mode input voltage range  
V
ICR  
Full range  
V
–2  
CC  
Low-level output voltage  
Input offset current  
V
V
= –1 V,  
= 1.4 V  
I
= 500 µA  
Full range  
25°C  
120  
300  
50  
mV  
nA  
OL  
ID  
OL  
5
40  
0.1  
I
IO  
O
Full range  
25°C  
150  
–250  
400  
I
IB  
Input bias current  
V
O
= 1.4 V  
nA  
Full range  
25°C  
V
ID  
V
ID  
V
ID  
= 1 V,  
= 1 V,  
= –1 V,  
V
V
V
= 3 V  
= 5 V  
OH  
OH  
OL  
I
I
I
High-level output current  
Low-level output current  
High-level supply current  
nA  
OH  
Full range  
25°C  
100  
= 1.5 V  
500  
µA  
OL  
25°C  
160  
160  
250  
300  
250  
300  
V
= V  
= V  
CCH  
O
O
OH  
OL  
Full range  
25°C  
µA  
I
Low-level supply current  
V
CCL  
Full range  
Full range is 40°C to 105°C.  
switching characteristics, V  
= 3 V, C = 15 pF, T = 25°C  
L A  
CC  
TLV1393  
TYP  
PARAMETER  
TEST CONDITIONS  
100-mV input step with 5-mV overdrive, connected to 5 V through 5.1 kΩ  
UNIT  
MIN  
MAX  
R
Response time  
0.7  
µs  
L
7
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TLV1393, TLV1393Y, TLV2393, TLV2393Y  
DUAL DIFFERENTIAL COMPARATORS  
SLCS121A – AUGUST 1993 – REVISED APRIL 1994  
electrical characteristics, V  
= 5 V  
CC  
TLV1393  
TYP  
PARAMETER  
TEST CONDITIONS  
UNIT  
T
A
MIN  
MAX  
25°C  
1.5  
5
9
V
IO  
Input offset voltage  
V
O
= 1.4 V,  
V
IC  
= V min  
ICR  
mV  
Full range  
0 to  
0 to  
25°C  
V
– 1.5  
CC  
0 to  
V
1.2  
CC  
V
V
Common-mode input voltage range  
V
ICR  
Full range  
V
–2  
CC  
Low-level output voltage  
Input offset current  
V
V
= –1 V,  
= 1.4 V  
I
= 500 µA  
Full range  
25°C  
120  
300  
50  
mV  
nA  
OL  
ID  
OL  
5
I
IO  
O
Full range  
25°C  
150  
40  
0.1  
–250  
400  
I
IB  
Input bias current  
V
O
= 1.4 V  
nA  
Full range  
25°C  
V
ID  
V
ID  
V
ID  
= 1 V,  
= 1 V,  
= –1 V,  
V
V
V
= 3 V  
= 5 V  
OH  
OH  
OL  
I
I
I
High-level output current  
Low-level output current  
High-level supply current  
nA  
OH  
Full range  
25°C  
100  
= 1.5 V  
600  
µA  
OL  
25°C  
200  
200  
300  
350  
300  
350  
V
= V  
= V  
CCH  
O
O
OH  
OL  
Full range  
25°C  
µA  
I
Low-level supply current  
V
CCL  
Full range  
Full range is 40°C to 105°C.  
switching characteristics, V  
= 5 V, C = 15 pF, T = 25°C  
L A  
CC  
TLV1393  
TYP  
PARAMETER  
TEST CONDITIONS  
UNIT  
MIN  
MAX  
100-mV input step with 5-mV overdrive,  
TTL-level input step,  
R
R
connected to 5 V through 5.1 kΩ  
connected to 5 V through 5.1 kΩ  
0.65  
L
L
Response time  
µs  
0.18  
electrical characteristics, V  
= 3 V, T = 25°C  
A
CC  
TLV1393Y  
TYP  
PARAMETER  
TEST CONDITIONS  
UNIT  
MIN  
MAX  
V
V
Input offset voltage  
V
O
= 1.4 V,  
V
IC  
= V min  
ICR  
1.5  
5
mV  
V
IO  
0 to  
0 to  
Common-mode input voltage range  
ICR  
V
– 1.5  
V
1.2  
CC  
CC  
I
I
I
I
I
I
Input offset current  
V
O
V
O
V
ID  
V
ID  
V
O
V
O
= 1.4 V  
= 1.4 V  
= 1 V,  
5
50  
nA  
nA  
nA  
µA  
IO  
Input bias current  
40  
–250  
IB  
High-level output current  
Low-level output current  
High-level supply current  
Low-level supply current  
V
V
= 3 V  
0.1  
OH  
OL  
OH  
= –1 V,  
= 1.5 V  
500  
OL  
= V  
= V  
160  
160  
250  
250  
CCH  
CCL  
OH  
OL  
µA  
switching characteristics, V  
= 3 V, C = 15 pF, T = 25°C  
L A  
CC  
TLV1393Y  
TYP  
PARAMETER  
TEST CONDITIONS  
100-mV input step with 5-mV overdrive, connected to 5 V through 5.1 kΩ  
UNIT  
MIN  
MAX  
Response time  
R
0.7  
µs  
L
8
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TLV1393, TLV1393Y, TLV2393, TLV2393Y  
DUAL DIFFERENTIAL COMPARATORS  
SLCS121A – AUGUST 1993 – REVISED APRIL 1994  
electrical characteristics, V  
= 5 V, T = 25°C  
A
CC  
TLV1393Y  
PARAMETER  
TEST CONDITIONS  
UNIT  
MIN  
TYP  
1.5  
MAX  
V
V
Input offset voltage  
V
O
= 1.4 V,  
V
IC  
= V min  
ICR  
5
mV  
V
IO  
0 to  
0 to  
Common-mode input voltage range  
ICR  
V
– 1.5  
V
CC  
1.2  
CC  
I
I
I
I
I
I
Input offset current  
V
O
V
O
V
ID  
V
ID  
V
O
V
O
= 1.4 V  
= 1.4 V  
= 1 V,  
5
40  
0.1  
50  
nA  
nA  
nA  
µA  
IO  
Input bias current  
–250  
IB  
High-level output current  
Low-level output current  
High-level supply current  
Low-level supply current  
V
V
= 3 V  
OH  
OL  
OH  
= –1 V,  
= 1.5 V  
600  
OL  
= V  
= V  
200  
200  
300  
300  
CCH  
CCL  
OH  
OL  
µA  
switching characteristics, V  
= 5 V, C = 15 pF, T = 25°C  
L A  
CC  
TLV1393Y  
TYP  
PARAMETER  
TEST CONDITIONS  
UNIT  
MIN  
MAX  
100-mV input step with 5-mV overdrive,  
TTL-level input step,  
R
R
connected to 5 V through 5.1 kΩ  
connected to 5 V through 5.1 kΩ  
0.65  
L
L
Response time  
µs  
0.18  
9
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TLV1393, TLV1393Y, TLV2393, TLV2393Y  
DUAL DIFFERENTIAL COMPARATORS  
SLCS121A – AUGUST 1993 – REVISED APRIL 1994  
electrical characteristics, V  
= 3 V  
CC  
TLV2393  
TYP  
PARAMETER  
TEST CONDITIONS  
UNIT  
T
A
MIN  
MAX  
25°C  
1.5  
5
9
V
V
V
Input offset voltage  
V
= 1.4 V,  
V
= V min  
ICR  
mV  
IO  
O
IC  
Full range  
0 to  
0 to  
25°C  
V
– 1.5  
V
1.2  
CC  
0 to  
–2  
CC  
Common-mode input voltage range  
V
ICR  
OL  
Full range  
V
CC  
V
V
= –1 V,  
= –1 V,  
I
I
= 1 mA  
= 4 mA  
25°C  
Full range  
25°C  
80  
300  
700  
ID  
OL  
Low-level output voltage  
Input offset current  
Input bias current  
mV  
nA  
nA  
250  
5
ID  
OL  
50  
I
I
V
= 1.4 V  
= 1.4 V  
IO  
O
O
Full range  
25°C  
150  
–100  
0.1  
–250  
400  
V
IB  
Full range  
25°C  
V
ID  
V
ID  
V
ID  
= 1 V,  
= 1 V,  
= –1 V,  
V
OH  
V
OH  
V
OL  
= 3 V  
= 5 V  
I
I
I
High-level output current  
Low-level output current  
High-level supply current  
nA  
mA  
µA  
OH  
Full range  
25°C  
100  
= 1.5 V  
4
OL  
25°C  
450  
1.1  
600  
700  
1.3  
1.4  
V
= V  
= V  
CCH  
O
O
OH  
OL  
Full range  
25°C  
I
Low-level supply current  
V
mA  
CCL  
Full range  
Full range is 40°C to 105°C.  
switching characteristics, V  
= 3 V, C = 15 pF, T = 25°C  
L A  
CC  
TLV2393  
TYP  
PARAMETER  
TEST CONDITIONS  
100-mV input step with 5-mV overdrive, connected to 5 V through 5.1 kΩ  
UNIT  
MIN  
MAX  
R
Response time  
0.45  
1
µs  
L
10  
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TLV1393, TLV1393Y, TLV2393, TLV2393Y  
DUAL DIFFERENTIAL COMPARATORS  
SLCS121A – AUGUST 1993 – REVISED APRIL 1994  
electrical characteristics, V  
= 5 V  
CC  
TLV2393  
PARAMETER  
TEST CONDITIONS  
UNIT  
T
A
MIN  
TYP  
MAX  
25°C  
1.5  
5
9
V
V
V
Input offset voltage  
V
= 1.4 V,  
V
= V min  
ICR  
mV  
IO  
O
IC  
Full range  
0 to  
0 to  
25°C  
V
– 1.5  
V
1.2  
CC  
0 to  
–2  
CC  
Common-mode input voltage range  
V
ICR  
OL  
Full range  
V
CC  
V
V
= –1 V,  
= –1 V,  
I
I
= 1 mA  
= 4 mA  
25°C  
Full range  
25°C  
70  
300  
700  
ID  
OL  
Low-level output voltage  
Input offset current  
Input bias current  
mV  
nA  
nA  
200  
5
ID  
OL  
50  
I
I
V
= 1.4 V  
= 1.4 V  
IO  
O
O
Full range  
25°C  
150  
–100  
0.1  
–250  
400  
V
IB  
Full range  
25°C  
V
ID  
V
ID  
V
ID  
= 1 V,  
= 1 V,  
= –1 V,  
V
OH  
V
OH  
V
OL  
= 3 V  
= 5 V  
I
I
I
High-level output current  
Low-level output current  
High-level supply current  
nA  
mA  
µA  
OH  
Full range  
25°C  
100  
= 1.5 V  
6
OL  
25°C  
550  
1.2  
700  
800  
1.5  
1.6  
V
= V  
CCH  
O
O
OH  
OL  
Full range  
25°C  
I
Low-level supply current  
V
= V  
mA  
CCL  
Full range  
Full range is 40°C to 105°C.  
switching characteristics, V  
= 5 V, C = 15 pF, T = 25°C  
L A  
CC  
TLV2393  
TYP  
PARAMETER  
TEST CONDITIONS  
UNIT  
MIN  
MAX  
0.8  
100-mV input step with 5-mV overdrive,  
TTL-level input step,  
R
R
connected to 5 V through 5.1 kΩ  
connected to 5 V through 5.1 kΩ  
0.4  
L
L
Response time  
µs  
0.15  
0.3  
11  
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TLV1393, TLV1393Y, TLV2393, TLV2393Y  
DUAL DIFFERENTIAL COMPARATORS  
SLCS121A – AUGUST 1993 – REVISED APRIL 1994  
electrical characteristics, V  
= 3 V, T = 25°C  
A
CC  
TLV2393Y  
TYP  
PARAMETER  
TEST CONDITIONS  
UNIT  
MIN  
MAX  
V
V
V
Input offset voltage  
V
= 1.4 V,  
V
= V min  
ICR  
1.5  
5
mV  
V
IO  
O
IC  
0 to  
0 to  
Common-mode input voltage range  
ICR  
OL  
V
– 1.5  
V
1.2  
CC  
80  
CC  
Low-level output voltage  
Input offset current  
V
V
V
V
V
V
V
= –1 V,  
= 1.4 V  
= 1.4 V  
= 1 V,  
I
= 1 mA  
300  
50  
mV  
nA  
nA  
nA  
mA  
µA  
mA  
ID  
OL  
I
I
I
I
I
I
5
IO  
O
Input bias current  
–100  
0.1  
–250  
IB  
O
High-level output current  
Low-level output current  
High-level supply current  
Low-level supply current  
V
V
= 3 V  
OH  
OL  
ID  
ID  
O
OH  
= –1 V,  
= 1.5 V  
4
OL  
= V  
= V  
450  
1.1  
600  
1.3  
CCH  
CCL  
OH  
OL  
O
switching characteristics, V  
= 3 V, C = 15 pF, T = 25°C  
L A  
CC  
TLV2393Y  
PARAMETER  
TEST CONDITIONS  
100-mV input step with 5-mV overdrive, connected to 5 V through 5.1 kΩ  
UNIT  
MIN  
TYP  
MAX  
R
Response time  
0.45  
1
µs  
L
electrical characteristics, V  
= 5 V, T = 25°C  
A
CC  
TLV2393Y  
TYP  
PARAMETER  
TEST CONDITIONS  
UNIT  
MIN  
MAX  
V
V
V
Input offset voltage  
V
= 1.4 V,  
V
= V min  
ICR  
1.5  
5
mV  
V
IO  
O
IC  
0 to  
0 to  
Common-mode input voltage range  
ICR  
V
– 1.5  
V
1.2  
CC  
70  
CC  
Low-level output voltage  
Input offset current  
V
V
V
V
V
V
V
= –1 V,  
= 1.4 V  
= 1.4 V  
= 1 V,  
I
= 1 mA  
300  
50  
mV  
nA  
nA  
nA  
mA  
µA  
mA  
OL  
ID  
OL  
I
I
I
I
I
I
5
IO  
O
Input bias current  
–100  
0.1  
–250  
IB  
O
High-level output current  
Low-level output current  
High-level supply current  
Low-level supply current  
V
V
= 3 V  
OH  
OL  
ID  
ID  
O
OH  
= –1 V,  
= 1.5 V  
6
OL  
= V  
= V  
550  
1.2  
700  
1.5  
CCH  
CCL  
OH  
OL  
O
switching characteristics, V  
= 5 V, C = 15 pF, T = 25°C  
L A  
CC  
TLV2393Y  
PARAMETER  
TEST CONDITIONS  
UNIT  
MIN  
TYP  
0.4  
MAX  
0.8  
100-mV input step with 5-mV overdrive,  
TTL-level input step,  
R
R
connected to 5 V through 5.1 kΩ  
connected to 5 V through 5.1 kΩ  
L
L
Response time  
µs  
0.15  
0.3  
12  
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TLV1393, TLV1393Y, TLV2393, TLV2393Y  
DUAL DIFFERENTIAL COMPARATORS  
SLCS121A – AUGUST 1993 – REVISED APRIL 1994  
TYPICAL CHARACTERISTICS  
Table of Graphs  
FIGURE  
1, 3  
vs Low-to-high-level output response time  
vs High-to-low-level output response time  
vs Low-to-high-level output response time  
vs High-to-low-level output response time  
Input overdrives for TLV1393  
Input overdrives for TLV2393  
2, 4  
5, 7  
6, 8  
TLV1393 LOW-TO HIGH-LEVEL OUTPUT  
TLV1393 HIGH-TO LOW-LEVEL OUTPUT  
RESPONSE FOR VARIOUS INPUT OVERDRIVES  
RESPONSE FOR VARIOUS INPUT OVERDRIVES  
3
3
40 mV  
20 mV  
40 mV  
20 mV  
10 mV  
5 mV  
10 mV  
5 mV  
2 mV  
2 mV  
0
0
100  
0
V
T
A
= 3 V  
CC  
= 25° C  
100  
0
V
T
A
= 3 V  
= 25° C  
CC  
0
0.5  
1
1.5  
2
2.5  
0
0.2  
0.4  
0.6  
0.8  
High-to Low-Level Output Response Time – µs  
Low-to High-Level Output Response Time – µs  
Figure 1  
Figure 2  
13  
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TLV1393, TLV1393Y, TLV2393, TLV2393Y  
DUAL DIFFERENTIAL COMPARATORS  
SLCS121A – AUGUST 1993 – REVISED APRIL 1994  
TYPICAL CHARACTERISTICS  
TLV1393 LOW-TO HIGH-LEVEL OUTPUT  
TLV1393 HIGH-TO LOW-LEVEL OUTPUT  
RESPONSE FOR VARIOUS INPUT OVERDRIVES  
RESPONSE FOR VARIOUS INPUT OVERDRIVES  
5
5
40 mV  
20 mV  
40 mV  
20 mV  
10 mV  
5 mV  
10 mV  
5 mV  
2 mV  
2 mV  
0
0
100  
0
V
T
A
= 5 V  
CC  
= 25° C  
100  
0
V
T
A
= 5 V  
= 25° C  
CC  
0
0.5  
1
1.5  
2
2.5  
0
0.2  
0.4  
0.6  
0.8  
High-to Low-Level Output Response Time – µs  
Low-to High-Level Output Response Time – µs  
Figure 3  
Figure 4  
TLV2393 LOW-TO HIGH-LEVEL OUTPUT  
TLV2393 HIGH-TO LOW-LEVEL OUTPUT  
RESPONSE FOR VARIOUS INPUT OVERDRIVES  
RESPONSE FOR VARIOUS INPUT OVERDRIVES  
3
3
40 mV  
20 mV  
10 mV  
5 mV  
40 mV  
20 mV  
10 mV  
5 mV  
2 mV  
2 mV  
0
100  
0
0
100  
0
V
T
A
= 3 V  
CC  
= 25° C  
V
T
A
= 3 V  
= 25° C  
CC  
0
0.2  
0.4  
0.6  
0.8  
1
0
0.1  
0.2  
0.3  
0.4  
High-to Low-Level Output Response Time – µs  
Low-to High-Level Output Response Time – µs  
Figure 5  
Figure 6  
14  
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TLV1393, TLV1393Y, TLV2393, TLV2393Y  
DUAL DIFFERENTIAL COMPARATORS  
SLCS121A – AUGUST 1993 – REVISED APRIL 1994  
TYPICAL CHARACTERISTICS  
TLV2393 LOW-TO HIGH-LEVEL OUTPUT  
TLV2393 HIGH-TO LOW-LEVEL OUTPUT  
RESPONSE FOR VARIOUS INPUT OVERDRIVES  
RESPONSE FOR VARIOUS INPUT OVERDRIVES  
5
5
40 mV  
20 mV  
40 mV  
20 mV  
10 mV  
5 mV  
10 mV  
5 mV  
2 mV  
2 mV  
0
0
100  
0
V
T
A
= 5 V  
CC  
= 25° C  
100  
0
V
T
A
= 5 V  
= 25° C  
CC  
0
0.2  
0.4  
0.6  
0.8  
1
0
0.1  
0.2  
0.3  
0.4  
High-to Low-Level Output Response Time – µs  
Low-to High-Level Output Response Time – µs  
Figure 7  
Figure 8  
15  
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
IMPORTANT NOTICE  
Texas Instruments and its subsidiaries (TI) reserve the right to make changes to their products or to discontinue  
any product or service without notice, and advise customers to obtain the latest version of relevant information  
to verify, before placing orders, that information being relied on is current and complete. All products are sold  
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pertaining to warranty, patent infringement, and limitation of liability.  
TI warrants performance of its semiconductor products to the specifications applicable at the time of sale in  
accordance with TI’s standard warranty. Testing and other quality control techniques are utilized to the extent  
TI deems necessary to support this warranty. Specific testing of all parameters of each device is not necessarily  
performed, except those mandated by government requirements.  
CERTAIN APPLICATIONS USING SEMICONDUCTOR PRODUCTS MAY INVOLVE POTENTIAL RISKS OF  
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APPLICATIONS”). TI SEMICONDUCTOR PRODUCTS ARE NOT DESIGNED, AUTHORIZED, OR  
WARRANTED TO BE SUITABLE FOR USE IN LIFE-SUPPORT DEVICES OR SYSTEMS OR OTHER  
CRITICAL APPLICATIONS. INCLUSION OF TI PRODUCTS IN SUCH APPLICATIONS IS UNDERSTOOD TO  
BE FULLY AT THE CUSTOMER’S RISK.  
In order to minimize risks associated with the customer’s applications, adequate design and operating  
safeguards must be provided by the customer to minimize inherent or procedural hazards.  
TI assumes no liability for applications assistance or customer product design. TI does not warrant or represent  
that any license, either express or implied, is granted under any patent right, copyright, mask work right, or other  
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party’s products or services does not constitute TI’s approval, warranty or endorsement thereof.  
Copyright 1998, Texas Instruments Incorporated  

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