BA9743AFV-E2 Rohm Semiconductor, BA9743AFV-E2 Datasheet - Page 10

IC CTRLR REG 2CH SW SSOP-B16

BA9743AFV-E2

Manufacturer Part Number
BA9743AFV-E2
Description
IC CTRLR REG 2CH SW SSOP-B16
Manufacturer
Rohm Semiconductor
Type
Step-Down (Buck), Step-Up (Boost), Invertingr
Datasheets

Specifications of BA9743AFV-E2

Internal Switch(s)
No
Synchronous Rectifier
No
Number Of Outputs
2
Current - Output
100mA
Frequency - Switching
10kHz ~ 800kHz
Voltage - Input
3.6 ~ 35 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
16-SSOP
Power - Output
450mW
Primary Input Voltage
35V
No. Of Outputs
2
Output Voltage
35V
Output Current
100mA
Voltage Regulator Case Style
SSOP
No. Of Pins
16
Operating Temperature Range
-40°C To +85°C
Svhc
No SVHC
Mounting Style
SMD/SMT
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Voltage - Output
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
BA9743AFV-E2
BA9743AFV-E2TR

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4) SCP Comp ( Timer-latch type short-circuit prevention circuit )
5) PWM Comp 1/2 DEAD TIME (Rest period adjustment circuit / Dead time)
6) PWM Comp 1/2 SS (Soft start function)
7) Handling of pins of unused channel
When the output voltage malfunctions because of a short circuit, this function is used to turn OFF the output transistor forcedly, in order to
protect the system. If the output voltage drops in realtion to the set voltage level, an error will be amplified through the Err Amp and the
voltage at the FB1/FB2 pins will reach the low voltage side. If SCP Comp sets the voltage below the threshold level for either the FB1 or
FB2, (i.e., 1.05Vtype for the BA9741F/FS / BA9743AFV or 0.25Vtype for the BA9744FV), the short prevention circuit will be activated to
start the charging of the capacitor of SCP pin. When VIT=1.64Vtyp for the BA9741F/FS / BA9743AFV or VIT=1.18Vtyp for the BA9744FV
is achieved, the output transistor will turn OF F.
The time is set by the capacitor (Cscp) connected to the SCP pin (pin 15) .
The time T
In order to stop the function of the short prevention circuit, short-circuit the SC P pin to GND .
This function can be set by dividing the resistance of DT1 and DT2 pins (pins 6 and 11) between V
comparing the dead time voltage input and the error voltage from the Err Amp with the triangular wave, the output drive transistors are
turned ON/OFF.
When Dead time voltage>Error voltage, the output duty is determined by the dead time voltage.
The dead time voltage VDT is obtained by the expression shown below.
Note: If the oscillation frequency is at a high level, the upper/lower limits (Vt0/Vt100) of the triangular wave will be shifted in the direction in
which the amplitude is developed.
By connecting the resistors R1 and R2, and
the capacitor CD T to D T pins (pins 6 and 11),
as shown in figure on the right, the soft start
function is enabled.
If channel 1 is only used, the unused channel should be handled as shown above.
(BA9741F/FS/BA9743AFV)
When VDT=1.48Vtyp: Duty 100%
When VDT=1.97Vtyp: Duty 0%
(Provided, however, that fosc=10kHz)
VDT = V
SCP
For example, in the case of the BA9743AFV, assuming that C
is obtained by the formula shown below:
REF
BA9741F/FS, BA9743AFV
T
T
SCP
.
SCP
R1 + R2
=
=
R2
1.64 - 0.05
V
Fig.36
IT
2.5μ
I
+V
SCP
STB
. Cscp
× 0.1μ = 63.6mS
When VDT=0.49Vtyp: Duty 100%
When VDT=1.01Vtyp: Duty 0%
(Provided, however, that fosc=10kHz )
(BA9744FV)

SCP
=0.1μ F, V
Fig.35
IT
=1.64 V, V
REF
STB
and GND. With PWM Comp,
=0.05V and I
BA9744FV
Fig.37
SCP
=2.5μA.
Vcc

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