4/16
Symbol Parameter Test Conditions Min. Typ. Max. Unit
DYNAMIC CHARACTERISTICS
(cont’d)
f Switching frequency 85 100 115 KHz
f
V
i
Voltage stability of
switching frequency
V
i
= 9V to 46V 0.5 %
f
T
j
Temperature stability of
switching frequency
T
j
= 0
°
C to 125
°
C1%
f
max
Maximum operating
switching frequency
V
o
= V
ref
I
o
= 1A 120 150 KHz
T
sd
Thermal shutdown
junction temperature
150
°
C
DC CHARACTERISTICS
I
7Q
Quiescent drain current 100% duty cycle
pins 2 and 14 open
V
i
= 46V
30 40 mA
0% duty cycle 15 20 mA
-I
2L
Output leakage current 0% duty cycle 1 mA
SOFT START
I
15SO
Source current 100 140 180
µ
A
I
15SI
Sink current 50 70 120
µ
A
ERROR AMPLIFIER
V
11H
High level output voltage V
10
= 4.7V I
11
= 100
µ
A 3.5 V
V
11L
Low level output voltage V
10
= 5.3V I
11
= 100
µ
A 0.5V
I
11SI
Sink output current V
10
= 5.3V 100 150
µ
A
-I
11SO
Source output current V
10
= 4.7V 100 150
µ
A
I
10
Input bias current V
10
= 5.2V 2 10
µ
A
G
v
DC open loop gain V
11
= 1V to 3V 46 55 dB
OSCILLATOR
-I
14
Oscillator source current 5 mA
ELECTRICAL CHARACTERISTICS
(continued)
L4962
CIRCUIT OPERATION
(refer to the block diagram)
The L4962 is a monolithic stepdown switching regu-
lator providing output voltages from 5.1V to 40V and
delivering 1.5A.
The regulation loop consists of a sawtooth oscilla-
tor, error amplifier, comparator and the output
stage. An error signal is produced by comparing the
output voltage with a precise 5.1V on-chip refer-
ence (zener zap trimmed to
±
2%).
This error signal is then compared with the sawtooth
signal to generate the fixed frequency pulse width
modulated pulses which drive the output stage.
The gain and frequency stability of the loop can be
adjusted by an external RC network connected to
pin 11. Closing the loop directly gives an output
voltage of 5.1V. Higher voltages are obtained by
inserting a voltage divider.
Output overcurrents at switch on are prevented by
the soft start function. The error amplifier output is
initially clamped by the external capacitor C
ss
and
allowed to rise, linearly, as this capacitor is charged
by a constant current source. Output overload pro-
tection is provided in the form of a current limiter.
The load current is sensed by an internal metal
resistor connected to a comparator. When the load
current exceeds a preset threshold this comparator
sets a flip flop which disables the output stage and
discharges the soft start capacitor. A second com-
parator resets the flip flop when the voltage across
the soft start capacitor has fallen to 0.4V.
The output stage is thus re-enabled and the output
voltage rises under control of the soft start network.
If the overload condition is still present the limiter
will trigger again when the threshold current is
reached. The average short circuit current is limited
to a safe value by the dead time introduced by the
soft start network. The thermal overload circuit dis-
ables circuit operation when the junction tempera-
ture reaches about 150
°
C and has hysteresis to
prevent unstable conditions.
Figure 1. Soft start waveforms
Figure 2. Current limiter waveforms
5/16
L4962
6/16
Figure 4. Quiescent drain
current vs. supply voltage (0%
duty cycle)
Figure 5. Quiescent drain
current vs. supply voltage
(100% duty cycle)
Figure 6. Quiescent drain
current vs. junction tem-
perature (0% duty cycle)
Figure 3. Test and application circuit (Powerdip)
1) D
1
: BYW98 or 3A Schottky diode, 45V of VRRM;
2) L
1
: CORE TYPE - MAGNETICS 58120 - A2 MPP
N
°
TURNS 45, WIRE GAUGE: 0.8mm (20 AWG)
3) C
6
, C
7
: ROE, EKR 220
µ
F 40V
L4962

L4962EH/A

Mfr. #:
Manufacturer:
STMicroelectronics
Description:
Switching Voltage Regulators 5.0 to 40V Step-Down
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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