CS4124YN16 ON Semiconductor, CS4124YN16 Datasheet - Page 8

IC CTRLR PWM FET HI SIDE 16DIP

CS4124YN16

Manufacturer Part Number
CS4124YN16
Description
IC CTRLR PWM FET HI SIDE 16DIP
Manufacturer
ON Semiconductor
Datasheet

Specifications of CS4124YN16

Pwm Type
Controller
Number Of Outputs
1
Frequency - Max
25kHz
Duty Cycle
100%
Voltage - Supply
4 V ~ 26 V
Buck
No
Boost
Yes
Flyback
No
Inverting
No
Doubler
No
Divider
No
Cuk
No
Isolated
No
Operating Temperature
-40°C ~ 125°C
Package / Case
16-DIP (0.300", 7.62mm)
Frequency-max
25kHz
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
CS4124YN16OS

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
CS4124YN16
Manufacturer:
MOTOROLA
Quantity:
9
Part Number:
CS4124YN16
Manufacturer:
ON Semiconductor
Quantity:
48
reset and the IC reverts back to run mode until another fault
occurs. If a number of faults occur in a given period of time,
the IC “times out” and disables the MOSFET for a long
period of time to let it cool off. This is accomplished by
charging the C
condition occurs. If a cycle goes by with no overcurrent fault
occurring, an even smaller amount of charge will be
removed from C
eventually C
will be set. The fault latch will not be reset until C
discharges to 0.6 V. This action will continue indefinitely if
the fault persists.
where:
Boost Switch Mode Power Supply
which charges the gate of the external high–side MOSFET
to greater than 5.0 V above V
voltage boost. They are Boost, PMP and SNI. The PMP lead
is the collector of a darlington tied NPN power transistor.
This device charges the inductor during its on time. The
boost lead is the input to chip from the external reservoir
capacitor. The SNI lead is the emitter of the power NPN and
is connected externally to the R
start of a cycle an R–S flip flop is set the internal power NPN
transistor is turned on and energy begins to build up in the
The off time and on time are set by the following:
The CS4124 has an integrated boost mode power supply
The power supply is controlled by the oscillator. At the
I AVG + (295.5 mA
I AVG + (300 mA
FLT
Off Time + C FLT
On Time + C FLT
FLT
will charge up to 2.4 V and the fault latch
DC + PWM Duty Cycle
FLT
capacitor each time an over current
. If enough faults occur together,
DC) * [4.5 mA
CC
SNI
DC) * 4.5 mA
. Three leads are used for
2.4V * 0.6V
2.4V * 0.6V
resistor.
4.5 mA
I AVG
(1 * DC)]
http://onsemi.com
FLT
CS4124
8
inductor. The R
inductor by tripping a comparator when the voltage across
the resistor is 450 mV. The flip flop is reset and the inductor
delivers its stored energy to the load. The ripple voltage
(V
snubber circuit, made up of a series resistor and capacitor, is
required to dampen the ringing of the inductor. A value of
4.0
and the battery. This will clamp the boost lead to a specified
value above the battery to prevent damage to the IC. A 9.0
volt zener diode is recommended.
Sleep State
when CTL lead is brought to less than 0.5 V. All functions
are disabled in this mode, except for the regulator.
Inhibit
set and the external MOSFET will be turned off for the
remainder of the oscillator cycle. The latch is then reset at the
start of the next cycle.
Overvoltage Shutdown
event. This is a real time fault event and does not set the
internal latch and therefore is independent of the oscillator
timing (i.e. asynchronous). There is 325 mV (typical) of
hysteresis on the overvoltage function. There is no
undervoltage lockout. The device will shutdown gracefully
once it runs out of headroom.
Reverse Battery
A series diode is required between the battery and the V
lead for reverse battery.
Load Dump
the current into the IC during 40 V peak transient conditions.
A zener diode is needed between the boost output voltage
This device will enter into a low current mode (< 275 A)
When the inhibit is greater than 2.5 V the internal latch is
The IC will disable the output during an overvoltage
The CS4124 will not survive a reverse battery condition.
A 10
RIPPLE
is recommended for R
) at the Boost lead is controlled by C
resistor, (RS) is placed in series with V
SNI
resistor sets the peak current of the
SNI
.
CC
BOOST
to limit
. A
CC

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