LTC4210-2CS6#PBF Linear Technology, LTC4210-2CS6#PBF Datasheet - Page 12

no-image

LTC4210-2CS6#PBF

Manufacturer Part Number
LTC4210-2CS6#PBF
Description
Manufacturer
Linear Technology
Datasheet

Specifications of LTC4210-2CS6#PBF

Linear Misc Type
Positive Low Voltage
Family Name
LTC4210-2
Package Type
TSOT-23
Operating Supply Voltage (min)
2.7V
Operating Supply Voltage (max)
16.5V
Operating Temperature (min)
0C
Operating Temperature (max)
70C
Operating Temperature Classification
Commercial
Product Height (mm)
0.9mm
Product Length (mm)
2.9mm
Mounting
Surface Mount
Pin Count
6
Lead Free Status / RoHS Status
Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
LTC4210-2CS6#PBFLTC4210-2CS6
Manufacturer:
LINEAR
Quantity:
5 321
Company:
Part Number:
LTC4210-2CS6#PBFLTC4210-2CS6
Manufacturer:
LT
Quantity:
10 000
Company:
Part Number:
LTC4210-2CS6#PBFLTC4210-2CS6#TRPBF
Manufacturer:
LT凌特厂
Quantity:
20 000
Company:
Part Number:
LTC4210-2CS6#PBFLTC4210-2CS6#TRPBF
Quantity:
250
APPLICATIO S I FOR ATIO
LTC4210-1/LTC4210-2
The current through R
components; I
(C
The capacitive load typically dominates.
For a successful start-up without current limit, I
I
Due to the voltage follower configuration, the V
rate approximately tracks V
At time point 6, V
up continues until it reaches a maximum voltage. This
maximum voltage is determined either by the charge
pump or the internal clamp.
Start-Up Cycle With Current Limit
If the duration of the current limit is brief during start-up
(Figure 4) and it did not last beyond the circuit breaker
function time out, the GATE behaves the same as in start-
up without current limit except for the time interval be-
tween time point 5A and time point 5B. The servo amplifier
limits I
Equations 8 and 9 are applicable but with a lower GATE and
V
Gate Start-Up Time
The start-up time without current limit is given by:
12
LIMIT
OUT
LOAD
I
I
I
t
t
RSENSE
RSENSE
RSENSE
STARTUP
STARTUP
V
:
ramp rate.
OUT
) and I
T
RSENSE
= I
LOAD
I
I
CLOAD
C
CLOAD
LIMIT
by decreasing the I
C
LOAD
CLOAD
C
C
LOAD
GATE
GATE
OUT
due to the noncapacitive load elements.
U
+ I
is approximately V
R
due to the total load capacitance
LOAD
50
I
SENSE
V
GATE
SENSE
V
V
TH
mV
V
I
TH
U
GATE
GATE
OUT
T
T
GATE
< I
V
LIMIT
can be divided into two
IN
C
:
GATE
GATE
C
I
I
W
GATE
LOAD
GATE
current (<10 A).
IN
I
GATE
V
but GATE ramp-
IN
I
LIMIT
U
OUT
RSENSE
ramp
(10)
(7)
(8)
(9)
<
During current limiting, the second term in Equation 10 is
partly modified from C
V
For successful completion of current limit start-up cycle
there must be a net current to charge C
current limit duration must be less than t
second term in equation 11 has to fulfill equation 12.
I
V
RSENSE
IN
V
TIMER
V
GATE
V
OUT
t
C
V
/I
ON
STARTUP
IN
CLOAD
LOAD
>2.5V
RESET
MODE
>1.3V
. The start-up time is now given by:
I
1
RSENSE
Figure 4. Operating Sequence with
Current Limiting at Start-Up Cycle
2
C
C
GATE
GATE
V
INITIAL
5 A
CYCLE
IN
I
LOAD
I
I
3 4 5
GATE
GATE
V
V
REGULATED AT 50mV/R
TH
TH
GATE
COMP2
COMP1
100 A
10 A
START-UP
t
CYCLE
V
C
CBDELAY
C
TH
• V
5A
LOAD
LOAD
<10 A
60 A
IN
5B 6
/I
GATE
10 A
2 A
I
I
NORMAL
RSENSE
CLOAD
SENSE
CYCLE
V
IN
LOAD
CBDELAY
to C
V
7
100 A
IN
and the
DISCHARGE
BY LOAD
LOAD
I
LOAD
4210 F04
. The
421012f
(12)
(11)

Related parts for LTC4210-2CS6#PBF