OUT .................................................................. 50mA
OUT Short-Circuit Duration (V
+
≤ 5.5V) ........Continuous
Power Dissipation .............................................. 500mW
Operating Temperature Range
Commercial..............................................0°C to 70°C
Industrial ............................................ – 40°C to 85°C
Storage Temperature Range
PDIP, SO ............................................–65°C to 150°C
DFN....................................................–65°C to 150°C
Lead Temperature Range (Soldering, 10 sec)
PDIP, SO ...........................................................300°C
pin conFiguraTion
TOP VIEW
OUT B 1
OUT A 2
V
+
3
IN A
–
4
IN A
+
5
IN B
–
6
IN B
+
7
REF 8
N PACKAGE
16-LEAD PDIP
16 OUT C
15 OUT D
14 GND/HYST
†
13 IN D
+
12 IN D
–
11 IN C
+
10 IN C
–
9
V
–
TOP VIEW
OUT B
OUT A
V
+
IN A
–
IN A
+
IN B
–
IN B
+
REF
1
2
3
4
5
6
7
8
17
16 OUT C
15 OUT D
14 GND/HYST
†
13 IN D
+
12 IN D
–
11 IN C
+
10 IN C
–
9
V
–
S PACKAGE
16-LEAD PLASTIC SO
T
JMAX
= 150°C,
θ
JA
= 90°C/ W (N)
T
JMAX
= 150°C,
θ
JA
= 150°C/ W (S)
†
PIN 14 IS GND FOR THE LTC1443
†
PIN 14 IS HYST FOR THE LTC1444 AND LTC1445
DHD16 PACKAGE
16-LEAD (5mm
×
4mm) PLASTIC DFN
T
JMAX
= 125°C,
θ
JA
= 41.7°C/ W
EXPOSED PAD (PIN 17) INTERNALLY CONNECTED TO V
–
†
PIN 14 IS GND FOR THE LTC1443
†
PIN 14 IS HYST FOR THE LTC1444 AND LTC1445
144345fe
2
LTC1443/LTC1444/LTC1445
orDer inForMaTion
LEAD FREE FINISH
LTC1443CN#PBF
LTC1443CS#PBF
LTC1443IN#PBF
LTC1443IS#PBF
LTC1444CN#PBF
LTC1444CS#PBF
LTC1444IN#PBF
LTC1444IS#PBF
LTC1445CN#PBF
LTC1445CS#PBF
LTC1445IN#PBF
LTC1445IS#PBF
LTC1443CDHD#PBF
LTC1443IDHD#PBF
LTC1444CDHD#PBF
LTC1444IDHD#PBF
LTC1445CDHD#PBF
LTC1445IDHD#PBF
TAPE AND REEL
LTC1443CN#TRPBF
LTC1443CS#TRPBF
LTC1443IN#TRPBF
LTC1443IS#TRPBF
LTC1444CN#TRPBF
LTC1444CS#TRPBF
LTC1444IN#TRPBF
LTC1444IS#TRPBF
LTC1445CN#TRPBF
LTC1445CS#TRPBF
LTC1445IN#TRPBF
LTC1445IS#TRPBF
LTC1443CDHD#TRPBF
LTC1443IDHD#TRPBF
LTC1444CDHD#TRPBF
LTC1444IDHD#TRPBF
LTC1445CDHD#TRPBF
LTC1445IDHD#TRPBF
PART MARKING*
LTC1443CN
LTC1443CS
LTC1443IN
LTC1443IS
LTC1444CN
LTC1444CS
LTC1444IN
LTC1444IS
LTC1445CN
LTC1445CS
LTC1445IN
LTC1445IS
1443
1443
1444
1444
1445
1445
PACKAGE DESCRIPTION
16-Lead PDIP
16-Lead Plastic SO
16-Lead PDIP
16-Lead Plastic SO
16-Lead PDIP
16-Lead Plastic SO
16-Lead PDIP
16-Lead Plastic SO
16-Lead PDIP
16-Lead Plastic SO
16-Lead PDIP
16-Lead Plastic SO
16-Lead (5mm × 4mm) Plastic DFN
16-Lead (5mm × 4mm) Plastic DFN
16-Lead (5mm × 4mm) Plastic DFN
16-Lead (5mm × 4mm) Plastic DFN
16-Lead (5mm × 4mm) Plastic DFN
16-Lead (5mm × 4mm) Plastic DFN
SPECIFIED
TEMPERATURE RANGE
0°C to 70°C
0°C to 70°C
–40°C to 85°C
–40°C to 85°C
0°C to 70°C
0°C to 70°C
–40°C to 85°C
–40°C to 85°C
0°C to 70°C
0°C to 70°C
–40°C to 85°C
–40°C to 85°C
0°C to 70°C
–40°C to 85°C
0°C to 70°C
–40°C to 85°C
0°C to 70°C
–40°C to 85°C
Consult LTC Marketing for parts specified with wider operating temperature ranges. *The temperature grade is identified by a label on the shipping container.
Consult LTC Marketing for information on nonstandard lead based finish parts.
For more information on lead free part marking, go to:
http://www.linear.com/leadfree/
For more information on tape and reel specifications, go to:
http://www.linear.com/tapeandreel/
elecTrical characTerisTics
SYMBOL
Power Supply
V
+
I
CC
Comparator
V
OS
I
IN
V
CM
CMRR
PSRR
Noise
V
HYST
t
PD
PARAMETER
Supply Voltage Range
Supply Current
The
l
denotes the specifications which apply over the full operating
temperature range, otherwise specifications are at T
A
= 25°C. V
+
= 5V, V
–
= GND = 0V, unless otherwise noted.
CONDITIONS
l
MIN
2.0
TYP
MAX
11.0
8.5
UNITS
V
µA
HYST = REF (LTC1444/LTC1445)
V
CM
= 2.5V
V
IN+
= V
IN–
= 2.5V
LTC1444/LTC1445
V
–
to (V
+
– 1.3V)
V
+
= 2V to 11V
100Hz to 100kHz
LTC1444, LTC1445
Overdrive = 10mV, C
OUT
= 100pF
Overdrive = 100mV, C
OUT
= 100pF
l
l
l
l
IN
+
= IN
–
= 80mV
l
5.5
Comparator Input Offset Voltage
Input Leakage Current (IN
+
, IN
–
)
Input Leakage Current (HYST)
Comparator Input Common Mode Range
Common Mode Rejection Ratio
Power Supply Rejection Ratio
Voltage Noise
Hysteresis Input Voltage Range
Propagation Delay
±3.0
±0.01
±0.02
V
–
0.1
0.1
20
±10.0
±1.0
±1.0
V
+
– 1.3V
1.0
1.0
REF
l
REF – 50mV
12
4
mV
nA
nA
V
mV/V
mV/V
µV
RMS
V
µs
µs
144345fe
3
LTC1443/LTC1444/LTC1445
elecTrical characTerisTics
SYMBOL
V
OH
V
OL
Reference
V
REF
PARAMETER
Output High Voltage
Output Low Voltage
The
l
denotes the specifications which apply over the full operating
temperature range, otherwise specifications are at T
A
= 25°C. V
+
= 5V, V
–
= GND = 0V, unless otherwise noted.
CONDITIONS
I
O
= – 15mA; LTC1443/LTC1445
I
O
= 1.8mA; LTC1443
I
O
= 1.8mA; LTC1444/LTC1445
No Load, LTC1443
No Load, LTC1444/
LTC1445
C Temp Range
I Temp Range
C Temp Range
I Temp Range
MIN
l
l
l
TYP
V
+
– 0.4V
UNITS
V
GND + 0.4V
V
V
–
+ 0.4V
V
1.194
1.200
1.233
1.239
V
V
V
V
µA
µA
µA
µV
RMS
MAX
Reference Voltage
l
l
l
l
l
l
I
SOURCE
I
SINK
Noise
Reference Output Source Current
Reference Output Sink Current
Voltage Noise
∆V
REF
≤ 1mV
∆V
REF
≤ 2.5mV
∆V
REF
≤ 5mV
100Hz to 100kHz
1.170
1.164
1.209
1.203
100
10
10
1.182
1.221
200
15
15
100
The
l
denotes the specifications which apply over the full operating temperature range, otherwise specifications are at T
A
= 25°C.
V
+
= 3V, V
–
= GND = 0V, unless otherwise noted.
SYMBOL
Power Supply
V
+
I
CC
Comparator
V
OS
I
IN
V
CM
CMRR
PSRR
Noise
V
HYST
t
PD
V
OH
V
OL
Reference
V
REF
PARAMETER
Supply Voltage Range
Supply Current
Comparator Input Offset Voltage
Input Leakage Current (IN
+
, IN
–
)
Input Leakage Current (HYST)
Comparator Input Common Mode Range
Common Mode Rejection Ratio
Power Supply Rejection Ratio
Voltage Noise
Hysteresis Input Voltage Range
Propagation Delay
Output High Voltage
Output Low Voltage
CONDITIONS
l
MIN
2.0
TYP
MAX
11.0
8
±10.0
±1.0
±1.0
+
– 1.3V
V
1.0
1.0
UNITS
V
µA
IN
+
= IN
–
= 80mV, HYST = REF
V
CM
= 1.5V
V
IN+
= V
IN–
= 1.5V
LTC1444/LTC1445
V
–
to (V
+
– 1.3V)
V
+
= 2V to 11V
100Hz to 100kHz
LTC1444, LTC1445
Overdrive = 10mV, C
OUT
= 100pF
Overdrive = 100mV, C
OUT
= 100pF
I
O
= – 10mA; LTC1443/LTC1445
I
O
= 0.8mA; LTC1443
I
O
= 0.8mA; LTC1444/LTC1445
No Load, LTC1443
No Load, LTC1444/
LTC1445
C Temp Range
I Temp Range
C Temp Range
I Temp Range
l
5
±3.0
±0.01
±0.02
l
l
l
l
l
l
l
l
mV
nA
nA
–
V
V
0.1
mV/V
0.1
mV/V
100
µV
RMS
REF – 50mV
REF
V
14
µs
5
µs
V
+
– 0.4V
V
GND + 0.4V
V
–
+ 0.4V
V
V
1.170
1.164
1.209
1.203
60
10
10
1.182
1.221
120
15
15
100
1.194
1.200
1.233
1.239
V
V
V
V
µA
µA
µA
µV
RMS
Reference Voltage
l
l
l
l
l
l
I
SOURCE
I
SINK
Noise
Reference Output Source Current
Reference Output Sink Current
Noise Voltage
∆V
REF
≤ 1mV
∆V
REF
≤ 2.5mV
∆V
REF
≤ 5mV
100Hz to 100kHz
Note 1:
Stresses beyond those listed under Absolute Maximum Ratings
may cause permanent damage to the device. Exposure to any Absolute
Maximum Rating condition for extended periods may affect device
In the application using RAS dial-up, the following problem occurs when loading the coredll.lib library: #pragma comment(lib,"coredll.lib")//coredll.lib has been copied to the project file directory. ...
It's urgent. I finally downloaded the mass production tool of Tsinghua Unigroup USB flash drive, but it shows that the chip information is not found. I used ChipGenius_3.0 (USB device chip model detec...
TAB1 DW 1,2,3,4 CONT EQU 5 TAB2 DB 'ABCDEF' MOV BX,OFFSET TAB1 ADD BX,CONT MOV AX,WORD PTR[BX] Suppose the segment address of TAB1 is 1000H and the offset address is 0010H, then (AX) =? It would be be...
[i=s]This post was last edited by paulhyde on 2014-9-15 03:45[/i] Various versions of keil: [url]http://yunpan.cn/QbU3vfkbdYCcD[/url] keil arm 5.0 [url]http://yunpan.cn/QbU3eM4jeYt3t[/url] Recently ke...
I recently encountered a difficult problem: using the pulse capture function of TIMERA to capture signals, generate an interrupt to set the ADC12SC bit, so that AD starts sampling, and an interrupt wi...
Tesla and BYD, vying for dominance in the global electric vehicle market, are reportedly considering adopting Samsung's AMOLED (active-matrix organic light-emitting diode) technology for their next...[Details]
introduction
With the development of digital and network technologies, broadcasting technology has become increasingly diversified, with the most significant trend being the transition from an...[Details]
Some time ago, I attended the 4th Energy Chemistry Forum of the Chinese Chemical Society and learned about high-energy-density and high-safety batteries. I would like to summarize and share this wi...[Details]
Is pure electric vehicles a false proposition for long-distance driving? At least from my personal perspective, based on current technological and infrastructure standards, I believe so. Below, I'l...[Details]
Topics: Bring Your Own Device (BYOD) trends; the impact of using employees' own mobile devices to control access to work facilities and equipment on information security; and ways to securely imple...[Details]
The structure of an LCD TV primarily consists of the LCD display module, power module, driver module (primarily including the main driver board and tuner board), and keypad module. LCD display modu...[Details]
On August 21st, Zhiyuan Robotics revealed at its first partner conference that it expects shipments to reach thousands of units this year and tens of thousands next year. The company hopes to reach...[Details]
Smartphones have become essential digital devices, and the growing number of smartphone-centric applications is enriching people's lives. As users, they desire a better app experience and a wider r...[Details]
Learned the following information.
Customer product: industrial computer motherboard
Glue application area: CPU/BGA filling
Glue color requirements: black or t...[Details]
Previously, Positive Motion Technology shared with you the firmware upgrade of motion controller, ZBasic program development, ZPLC program development, communication with touch screen and input/out...[Details]
With the support and encouragement of national policies, some Internet car manufacturers have also joined the new energy vehicle manufacturing industry. From the perspective of new car manufacturer...[Details]
introduction
In recent years, multi-touch has emerged as a new alternative to traditional human-computer interaction. It eliminates the need for keyboards and mice, enabling simultaneous inter...[Details]
With the prevalence of online conferencing, live streaming, and voice communication in gaming, high-quality audio input devices are becoming increasingly important. To this end, XMOS, an expert in ...[Details]
Since the beginning of the 21st century, with the rapid development of my country's urban and rural economies and the improvement of people's living standards, more and more people have begun to ow...[Details]