參數(shù)資料
型號(hào): TDA8385
廠商: NXP SEMICONDUCTORS
元件分類: 模擬信號(hào)調(diào)理
英文描述: Control circuit for a Self-Oscillating Power Supply SOPS
中文描述: SPECIALTY ANALOG CIRCUIT, PDIP16
封裝: PLASTIC, DIP-16
文件頁(yè)數(shù): 8/21頁(yè)
文件大?。?/td> 199K
代理商: TDA8385
March 1994
9
Philips Semiconductors
Preliminary specification
Control circuit for a Self-Oscillating
Power Supply (SOPS)
TDA8385
Pulse width modulator (Block IV)
The pulse width modulator compares
the control voltage V
r
with the
sawtooth voltage V
sim
. If V
sim
>
V
r
output sub-section 8 is HIGH the LED
is switched on and then the switching
transistor is switched off. In this way
the output voltage is controlled.
E
XAMPLE
If the load decreases, V
O
increases
and therefore V
r
decreases. This
causes the LED to start conducting
prematurely, which implies that the
switching transistor is turned off
sooner. The consequence is that the
collector peak current decreases and
hence less energy is stored in the
transformer and V
O
will decrease.
LED control (Block V)
If either output of sub-section 8 or
output of sub-section 16 are HIGH the
LED is conductive. In order to
improve the start-up behaviour of the
power supply, the demagnetization
signal of sub-section 12 will only
activate the LED driver if flip-flop (13)
has previously been set. The set
signal is generated in the following
three ways.
1.
Pulse width modulator
(sub-section 8)
2.
Comparator (18)
3.
V
P(min)
detector
Set signal (2.) and (3.) are added as
extra security to guarantee a
demagnetization pulse in the event of
the switching transistor not having
enough base current. In that situation
e.g. at start-up, no comparator signal,
set signal (3.) is generated by
sub-section 8.
LED driver (Block VI)
The LED driver (pin 2) is blocked if the
supply voltage V
P
is in the
initialization phase (see Fig.4). The
output stage is a push-pull stage,
which can sink 5 mA and source
10 mA.
Slow-start circuit (Block VII)
The slow-start circuit is active at
start-up, over voltage protection or
after an overload (short-circuited),
and stand-by mode. The voltage V
ss
and therefore the voltage V
mv
and the
peak current I
c
slowly increase at
start-up.
By means of sub-section 27 the slow
start voltage V
ss
is clamped to the
voltage V
fb
. If the feedback voltage is
reduced, e.g. as overload, the
slow-start capacitor is discharged to
the level of V
fb
. In this way a slow
start-up is also guaranteed after an
overload, short-circuit situation or
after a stand-by mode. The circuit of
sub-section 27 is not active during an
over voltage protection.
When the supply voltage V
P
is below
the reset-level of 5.2 V
(sub-section 28) the slow-start
capacitor is quickly discharged.
The slow-start input (pin 7) can also
be used for I
c(max)
setting by
connecting a resistor to this pin.
Over voltage protection
(Block VIII)
The operation of the over voltage
protection circuit is, in the event of the
IC being SOPS-supplied, quite
different from when the IC is
externally supplied.
O
PERATION WHEN THE
IC
IS
EXTERNALLY SUPPLIED
When the voltage on pin 8 exceeds
2.5 V the slow-start capacitor is
slowly discharged. During discharge
the LED is permanently conducting.
Discharge is stopped when V
ss
is
below 115 mV. Flip-flop (23) will then
be reset and the circuit is ready again
for a new slow-start procedure.
During an over voltage sub-section 27
is not active so that the output voltage
V
O
cannot influence the slow-start
discharge procedure.
O
PERATION WHEN
IC
IS
SOPS-
SUPPLIED
(
SEE FIGS
9
AND
10)
When the voltage on pin 8 exceeds
2.5 V the slow-start capacitor is
slowly discharged. During discharge
of C
ss
the supply capacitor C
P
is also
discharged. Because the capacitors
C
P
and C
ss
have almost the same
value and the supply current I
P
(
15 mA) is much larger than the slow
discharge current (
50
μ
A), the LED
will be switched off by means of the
V
P(min)
detection circuit (5.2 V). At that
moment the switching transistor will
be switched on again until the 7.5 V
level is reached. During this
hysteresis interval the slow-charge
capacitor is quickly discharged. At the
7.5 V level the LED will be switched
on again because flip-flop (23) output
is still HIGH.
The same procedure will be repeated
several times until the slow-start
capacitor reaches the 115 mV reset
level. At that moment the slow-start
procedure is started again.
If there is still an over voltage the
procedure will be repeated.
Figure 10 is a detailed exposure of
Fig.11.
相關(guān)PDF資料
PDF描述
TDA8395 SECAM decoder
TDA8440 Switch for CTV receivers
TDA8442 I2C-bus interface for colour decoders
TDA8443A I2C-bus controlled YUV/RGB switch
TDA8446 Fast RGB/YC switch for digital decoding
相關(guān)代理商/技術(shù)參數(shù)
參數(shù)描述
TDA8390 制造商:PHILIPS 制造商全稱:NXP Semiconductors 功能描述:PAL DECODER AND RGB MATRIX
TDA8391 制造商:PHILIPS 制造商全稱:NXP Semiconductors 功能描述:One-chip PAL decoder and RGB matrix
TDA8395 制造商:PHILIPS 制造商全稱:NXP Semiconductors 功能描述:SECAM decoder
TDA8395P 制造商:Panasonic Industrial Company 功能描述:IC
TDA8395T/N3,112 功能描述:IC DECODER SECAM 20-SOIC RoHS:是 類別:集成電路 (IC) >> 接口 - 編碼器,解碼器,轉(zhuǎn)換器 系列:- 產(chǎn)品變化通告:Development Systems Discontinuation 26/Apr/2011 標(biāo)準(zhǔn)包裝:1 系列:- 類型:編碼器 應(yīng)用:DVB-S.2 系統(tǒng) 電壓 - 電源,模擬:- 電壓 - 電源,數(shù)字:- 安裝類型:- 封裝/外殼:模塊 供應(yīng)商設(shè)備封裝:模塊 包裝:散裝 其它名稱:Q4645799