参数资料
型号: TLE6711G
厂商: INFINEON TECHNOLOGIES AG
元件分类: 电源管理
英文描述: 1-CHANNEL POWER SUPPLY MANAGEMENT CKT, PDSO14
封装: PLASTIC, SOP-14
文件页数: 5/25页
文件大小: 963K
代理商: TLE6711G
TLE 6711
Circuit Description
Data Sheet
13
Rev. 3.4, 2007-08-16
4.3.1
Boost Status Output OVL
For supervision of the Boost output voltage an open drain DMOS output is used. The output is high impedance in
normal operation and low during the warning.
The OVL goes LOW if the PWM comparator output (see Figure 8) remains HIGH for clock time period. This occurs
when the Error-Signal falls below the minimum value of the Error-Ramp, this mean that Boost voltage falls below
a certain threshold voltage.
The OVL output used as a warning for insufficient Boost voltage.
4.4
Buck Converter
A stabilized logic supply voltage (typ. 5 V) for general purpose is realized in the system by a buck converter. An
external buck-inductance
L
BU is PWM switched by a high side DMOS power transistor with the programmed
frequency (pin R).
The buck regulator supply is given by the boost converter output
V
BOOST, in case of a battery power-down the
stored energy of the boost converter capacitor is used.
Like the boost converter, the buck converter uses the temperature compensated bandgap reference voltage
(typ. 2.8 V) for its regulation loop.
This reference voltage is connected to the non-inverting input of the error amplifier and an internal voltage divider
supplies the inverting input. Therefore the output voltage
V
CC is fixed due to the internal resistor ratio to typ. 5.0 V.
The output of the error amplifier goes to the inverting input of the PWM comparator as well as to the buck
compensation output BUC.
When the error amplifier output voltage exceeds the sawtooth voltage the output power MOS-transistor is switched
on. So the duration of the output transistor conduction phase depends on the
V
CC level. A logic signal PWM with
variable pulse width is generated.
Figure 10
Buck Converter Block Diagram
AEB02947
-
+
=
thOV
V
VCC3
R
39.7k
VCC4
10.3k
R
GND
BUC
Pin 6
Pin 7
CC
V
1.2 V
V
CC
2.8 V
V
-
+
VCC1
VCC2
28k
R
22k
R
GND
=
REF
CC
V
Error
AMP
R
Prot1
200
COMP
PWM
+
-
Error-
Signal
r
tt
f tr
max
V
min
V
t
Pin 1
R
V
high
low
V
t t
rf tr
t
Error-
Ramp
Oscillator
Schmitt-trigger 1
H when
Error-Signal
<
Error-Ramp
&
R
S
Q
L when
> 175 C
j
T
Clock
Error-FF
NOR 1
1
H when
OV at VCC
L when
Overcurrent
Output Stage
OFF when H
OV
COMP
&
S
NAND 2
&
Q
&
R
PWM-FF
1
INV
OFF
ON
Gate
Driver
Power
D-MOS
Boost
Driver
Supply
BDS
Pin 10
Pin 8
BUO
COMP
UV
+
-
H when
UV at Boost
V
=
GND
thUV
4 V
V
GND
H =
OC
COMP
+
-
=
18 mV
thOC
V
L when
Overcurrent
Pin 9
Boost
V
R
18 m
Sense
GND
Ramp
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