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 non-standard 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/
422412fa
2
LTC4224-1/LTC4224-2
ELECTRICAL CHARACTERISTICS
SYMBOL
Supplies
V
CC
I
CC
V
CC(UVL)
V
CCLO
I
CCLO
V
CCLO(UVL)
External Gate Drive
ΔV
GATE
I
GATE(UP)
I
GATE(DN)
I
GATE(FPD)
Current Limit
ΔV
SENSE(CB)
I
SENSE
Inputs and Outputs
V
ON(TH)
ΔV
ON(HYST)
I
ON(IN)
V
OL
Delay
t
CB
t
PHL(SENSE)
t
PLH(GATE)
t
PLH(UVL)
t
D(UV)
t
D(COOL)
t
BLANK
Circuit Breaker Delay
Sense Voltage, (V
CCn
– SENSEn) High to
GATE Low
ONn
Low or Input Supply High to GATEn
High Prop Delay
V
CCn
Low to GATEn Low Prop Delay
UV Turn-On Delay
Auto-Retry Cooling Delay
Start-Up Circuit Breaker Blanking Delay
V
CC
Out of UV
Note 3
ΔV
SENSE
= 200mV, C
GATE
= 10nF
l
l
l
l
l
l
l
The
l
denotes the specifications which apply over the full operating
temperature range. T
A
= 25°C, V
CC1
= 5V, V
CC2
= 3.3V, unless otherwise noted.
PARAMETER
V
CC
Supply Range
V
CC
Supply Current
V
CC
Undervoltage Lockout
V
CCLO
Supply Range
V
CCLO
Supply Current
V
CCLO
Undervoltage Lockout
Gate Drive
(V
GATEn
– V
CC
)
Gate Pull-Up Current
Gate Pull-Down Current
Gate Fast Pull-Down Current
Circuit Breaker Trip Sense Voltage
(V
CCn
– SENSEn)
SENSE Input Current
ONn
Threshold Voltage
ONn
Hysteresis
ONn
Pull-Up Current
Output Low Voltage (FAULT)
V
ONn
= 1V
I
FAULT
= 3mA
V
SENSE1
= 5V, V
SENSE2
= 3.3V
V
ONn
Rising
V
CCLO
Falling
I
GATEn
= 0μA, –1μA
Gate Drive On, V
GATEn
= 1V
V
ONn
= 1V, V
GATEn
= 10V
Fast Turn-Off, V
GATEn
= 10V
V
CC
Rising
V
CCLO
= Min (V
CC1
, V
CC2
),
V
CC
≥ 2.7V
CONDITIONS
V
CC
= Max (V
CC1
, V
CC2
)
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
MIN
2.7
TYP
MAX
6
UNITS
V
mA
V
V
μA
V
V
μA
mA
mA
mV
μA
V
mV
μA
V
ms
μs
ms
μs
ms
s
ms
1.4
2.2
1
40
0.76
4.5
–7
0.5
50
22.5
0.8
5.5
–10
1.5
125
25
40
0.76
15
–5
0.8
30
–10
0.2
2.5
5
0.4
5
10
8
80
2
2.5
160
4
5
2.4
3
2.65
6
100
0.84
7
–13
3
200
27.5
100
0.84
50
–15
0.4
7.5
1
15
16
240
6
7.5
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
reliability and lifetime.
Note 2:
All currents into device pins are positive; all currents out of device
pins are negative. All voltages are referenced to GND unless otherwise
specified.
Note 3:
LTC4224-2 only.
Note 4:
The greater of V
CC1
and V
CC2
is the internal supply voltage (V
CC
).
An internal clamp limits the GATE pin to a minimum 5V above V
CC
. Driving
this pin beyond the clamp may damage the device.
422412fa
3
LTC4224-1/LTC4224-2
TYPICAL PERFORMANCE CHARACTERISTICS
Specifications are T
A
= 25°C, V
CC1
= 5V, V
CC2
= 3.3V, unless otherwise specified.
I
CC
vs V
CC
1.5
26.0
25.5
25.0
V
CB
(mV)
I
CC
(mA)
24.5
24.0
1.1
23.5
23.0
5.1
t
CB
(ms)
1
2
3
V
CC
(V)
422412 G01
422412 G02
Circuit Breaker Trip Voltage
vs V
CC
5.5
Circuit Breaker Delay vs V
CC
1.4
5.4
1.3
5.3
1.2
5.2
1.0
2.5
3
3.5
4.5
4
V
CC
(V)
5
5.5
6
4
5
6
5.0
2.5
3
3.5
4
4.5
V
CC
(V)
5
5.5
6
422412 G03
Gate Drive vs I
GATE
6
5
4
ΔV
GATE
(V)
ΔV
GATE
(V)
3
2
1
0
5.65
5.60
5.55
5.50
5.45
5.40
Gate Drive vs Temperature
GATE NORMAL PULL-DOWN CURRENT (mA)
2.0
Gate Pull-Down Current
vs Gate Voltage
1.8
1.6
1.4
1.2
0
–2
–4
–6
–8
I
GATE
(μA)
–10
–12
422412 G04
5.35
–50
1.0
–25
0
25
50
TEMPERATURE (°C)
75
100
422412 G05
8
9
10
11
V
GATE
(V)
12
13
422412 G06
Gate Fast Pull-Down Current
vs Gate Voltage
150
GATE FAST PULL-DOWN CURRENT (mA)
ACTIVE CURRENT LIMIT DELAY (μs)
1.5
Active Current Limit Delay
vs Sense Voltage
500
FAULT
Voltage
vs
FAULT
Sink Current
140
1.2
400
T = 90°C
V
OL
(mV)
130
0.9
300
T = 25°C
200
T = –60°C
120
0.6
110
0.3
100
100
8
9
10
11
V
GATE
(V)
12
13
422412 G07
0.0
25
50
75
100
125
SENSE VOLTAGE (mV)
150
422412 G08
0
0
1
2
3
I
FAULT
(mA)
4
5
422412 G09
422412fa
4
LTC4224-1/LTC4224-2
PIN FUNCTIONS
SENSE1, SENSE2 (Pins 1,10):
Current Sense Input. Con-
nect this pin to an external sense resistor. The current limit
circuit controls GATEn to limit the voltage between V
CCn
and SENSEn to 25mV. An Electronic Circuit Breaker (ECB)
is active during current limiting and trips after 5ms. To
disable current limit, connect this pin to V
CCn
.
V
CC1
, V
CC2
(Pins 2, 9):
Supply Voltage and Current Sense
Input. An undervoltage lockout circuit disables the part
until V
CC
, the higher of V
CC1
and V
CC2
, exceeds 2.4V. The
lower supply is disabled until it exceeds 0.8V.
GATE1, GATE2 (Pins 3, 8):
Gate Drive for External N-channel
MOSFET. A charge pump sources 10μA from GATE to turn
on the external MOSFET. An internal clamp limits the gate
voltage to 5.5V above the higher of V
CC1
and V
CC2
. During
turn-off, a 1.5mA pulldown current discharges GATE to
ground. During short-circuits, a 125mA pulldown current
is activated to discharge GATE to ground.
FAULT
(Pin 4):
Fault Status Output. Open-drain output
that is normally pulled high to V
CC1
or V
CC2
by an exter-
nal resistor. It is pulled low when the ECB trips due to an
overcurrent condition at either supply. This pin may be
left open if unused.
ON1, ON2
(Pins 5, 6):
On Control Input. A falling edge
turns on the external N-channel MOSFET and a rising edge
turns it off. A low to high transition on this pin resets an
ECB fault for the corresponding channel. Internally pulled
If you are a team and you feel that others are not doing well but you can do better and they are the main force, what should you do?I am still a student, but I feel depressed when I see these things. ...
Hey guys, I just learned C language for microcontrollers. Excuse me, I use microcontroller to control LED, how to achieve step by step through sound control? I use LM358 dual op amp circuit, as long a...
[font=Helvetica]Thank you for your attention and support to the forum. Here we have selected the netizens who made outstanding contributions to the forum in May. E gold coins (equivalent to RMB) can b...
Emergency hand-held lamps powered by 6V maintenance-free batteries are widely used in rural areas. The charger used is a transformer step-down and single diode half-wave rectifier, and the charging...[Details]
The rapid development of the Internet has realized high-speed information transmission and resource sharing, greatly facilitating people's lives. Embedded systems are widely used in various electr...[Details]
Remote keyless entry (RKE) systems have become popular with users, with more than 80% of new cars in North America and more than 70% in Europe equipped with RKE systems. In addition to the obvious ...[Details]
introduction
Solar cells and LED lighting are typical applications of new energy and energy-saving and efficient technologies. Solar LED lighting uses solar cells to convert solar energy...[Details]
When choosing a laptop battery, you should consider several factors, such as power, appearance, and quality.
Regarding power, we often see that a manufacturer uses values such as the number ...[Details]
A standard cell
is an electrochemical
cell
used as a voltage reference standard in many electrical standards laboratories
. If properly maintained, standard cells are very stable. The ...[Details]
1. Introduction to CIF Board
Fieldbus integration based on PC system
Whether it is a master or a slave, fieldbus has won unanimous praise in the field of PC-based automation. For more...[Details]
0 Introduction
In order to improve the automation control of shortwave transmitters, so that they can automatically process from far to near, the technicians here use the ICS system to complete the ...[Details]
Fruit planting is an important part of China's agricultural development, and fruit tree pest control operations are becoming more and more important. At present, the overall level of pesticide applica...[Details]
Among the uses of electrical energy, lighting accounts for a considerable proportion. Compared with the earlier ordinary incandescent lamps, the fluorescent lamps and energy-saving lamps we commonl...[Details]
Portable power applications are broad and varied. Products range from wireless sensor nodes with average power consumption of only a few microwatts to in-vehicle medical or data acquisition systems...[Details]
Movpower is a portable power bank. It can charge most mobile phones and digital products, such as digital cameras, PDAs, and mobile phones such as Apple, iPod, Blackberry, Motorola, Samsung, Nokia,...[Details]
The future energy storage hotspot is not coal or iron ore, but lithium. This lightest metal in nature may be the heaviest resource in the future energy landscape. China launched an ambitious electr...[Details]
In industry, voltage 0…5 (10) V or current 0 (4)…20 mA is usually used as a method for analog signal transmission, which is also a method often used by programmable controllers. So what are the dif...[Details]
1 Introduction
At present, advocating health has become the focus of people's attention, and the emergence of treadmills has become more and more popular. People can exercise at home or in the ...[Details]