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7708 Datasheet(PDF) 11 Page - Power Integrations, Inc.

No. de pieza 7708
Descripción Electrónicos  Combined Two-Switch Forward and Flyback Power Supply Controllers with Integrated High-Voltage MOSFETs
PDF  42 Pages
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Fabricante Electrónico  POWERINT [Power Integrations, Inc.]
Página de inicio  http://www.powerint.com
Logo POWERINT - Power Integrations, Inc.

7708 Datasheet(HTML) 11 Page - Power Integrations, Inc.

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Rev. B 04/15
11
TFS7701-7708
www.power.com
Main Reset Overvoltage Detection
There is also an overvoltage threshold for the RESET pin. When
triggered, the RESET overvoltage will shutdown only the main,
leaving the standby in operation.
Standby Power General Introduction
The standby is a wide range power supply, typically a flyback
converter, operating over a wide input range (85-265 VAC) and
delivering up to 20 W continuous output power. The standby
power supply provides two functions in most high-power
applications. It provides a direct secondary output but also
provide bias power to other primary-side devices (in particular
typically a PFC boost converter).
The HiperTFS-2 standby retains most features of the TinySwitch-III,
such as auto-restart, thermal shutdown, multi-level current limit
ON/OFF control, etc. The HiperTFS-2 standby controller has a
few differences versus TinySwitch-III:
1. There are 4 current limits that are selected via the ENABLE
pin (rather than by using different BYPASS pin capacitors as
in TinySwitch-III). There are 4 user selectable current limits
500, 550, 650, 750 mA design for secondary standby
output power of 10, 12.5, 15 and 20 W.
2. Secondary OVP latching shutdown. This is triggered via a
current in excess of the BYPASS pin latching shutdown
threshold (I
BP(SD) = 15 mA).
3. Dedicated LINE-SENSE pin for line-voltage detection providing
absolute UV and OV ON/OFF thresholds (unlike TinySwitch-4
which detects input voltage only during restart). Also higher
accuracy for UV(ON) threshold.
4. Current limit is compensated as a function of input voltage
to maintain a flat overload characteristic versus input voltage.
In a high-power system, the standby power supply is the first
power supply to begin operating. The main converter cannot
begin working until the standby is in operation. Likewise the
main converter will shutdown at a higher-voltage than the standby
and thus the standby is always the last power supply to shutdown.
Standby On-Chip Current Limit with External Selection
During start-up, the FEEDBACK pin and ENABLE pin are both
used to select internal current limits for the main and standby
converters respectively. The detection period occurs at the
initial start-up of the device (just after BYPASS pin voltage of
4.7 V is achieved), and before the main or standby MOSFETs
start switching. This is done to minimize noise interference.
The ENABLE pin works in a similar way to the FEEDBACK pin
selection. The ENABLE pin is clamped to 1 V during selection,
during the detection period. Thus the selection resistor values
are the same for the ENABLE pin and the FEEDBACK pin. The
ENABLE pin internal current selection is chosen according to
the above table.
Figure 10. Main and Standby Start-Up.
I EN
(Threshold)
I
LIMIT (Standby)
R EN (Select)
(1%)
0 - 5
mA
L1
500
mA
Open
k
W
5 - 12
mA
L2
550
mA
511
k
W
12 - 24
mA
L3
650
mA
232
K
W
24 - 48
mA
L4
750
mA
107
k
W
Table 4.
ENABLE Pin Standby Current Limit Selection.
VIN
Supply Start-Up Sequence
Standby
Output
Main
Output
VBP
60 ms
385 V
336 V
100 V
30 V
2-20 ms
6.0 V
4.7 V
5.7 V
PI-6776-021513
Figure 11. L and R Pin Duty Limit Mode.
VIN
Standby
Output
Main
Output
385 V
300 V
212 V
40 V
PI-6974-022813
tHOLDUP
≥ 20 ms
Typically turned off by
secondary supervisor
circuit, once regulation
below limit
t1 t2
t3
t4
RL
RR
To VIN
To Clamp
Reset Circuit
R
L



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