FA5331P Fuji Electric holdings CO.,Ltd, FA5331P Datasheet

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FA5331P

Manufacturer Part Number
FA5331P
Description
Manufacturer
Fuji Electric holdings CO.,Ltd
Datasheet

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Part Number
Manufacturer
Quantity
Price
Part Number:
FA5331P
Manufacturer:
FUJI/富士电机
Quantity:
20 000
FA5331P(M)/FA5332P(M)
FA5331P(M)/FA5332P(M)
FA5331P(M) and FA5332P(M) are control ICs for a power
factor correction system. These ICs use the average current
control system to ensure stable operation. With this system, a
power factor of 99% or better can be achieved.
FA5331P(M) is a 1st generation IC and FA5332P(M) is 2nd
generation IC which light-load characteristics are improved.
• Drive circuit for connecting a power MOS-FET(Io = 1.5A)
• Pulse-by-pulse overcurrent and overvoltage limiting function
• Output ON/OFF control function by external signals
• External synchronizing signal terminal for synchronous
• Undervoltage malfunction prevention function
• Low standby current (90 A typical) for simple start-up circuit
• 16-pin package (DIP/SOP)
• 2% accuracy reference voltage for setting DC output and
• When there is a possibility of light-load operation,
1
operation with other circuits
overvoltage protection [FA5332P(M) only]
FA5332P(M) is suitable.
Description
Features
Block diagram
Pin
No.
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
Pin
symbol
IFB
IIN–
VDET
OVP
VFB
VIN–
GND
OUT
VC
VCC
CS
ON/OFF
REF
SYNC
CT
IDET
Description
Current error amplifier output
Inverting input to current error amplifier
Multiplier input
Overvoltage protection input
Voltage error amplifier output
Inverting input to voltage error amplifier
Ground
Output
Power supply to output circuit
Power supply
Soft-start
Output ON/OFF control input
Reference voltage
Oscillator synchronization input
Oscillator timing capacitor and resistor
Non-inverting input to current error amplifier
FA5331P
FA5332P
SOP-16
DIP-16
16
Dimensions, mm
2.54
16
1
1
2.54
0.71
0.81
0.40
16
1
0.25
0.25
0.1
10.06
19.2
19.4
1.27
8
9
1.5
1.3
0.2
0.48
0.5
For Power Factor Correction
8
8
9
9
0.1
0.1
0.7
7.62
7.6
Bipolar IC

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FA5331P Summary of contents

Page 1

... These ICs use the average current control system to ensure stable operation. With this system, a power factor of 99% or better can be achieved. FA5331P( 1st generation IC and FA5332P(M) is 2nd generation IC which light-load characteristics are improved. Features • Drive circuit for connecting a power MOS-FET(Io = 1.5A) • ...

Page 2

... FA5331P(M) Min 1.48 I –500 – load 3.5 OE+ V OE– =0V OE+ OE FA5331P(M)/FA5332P(M) Notes: Derating factor Ta > 6.8mW/ C (on PC board Derating factor Ta > 5.2mW/ C (on PC board FA5332P(M) Unit Typ. Max. Min. Typ. Max kHz ...

Page 3

... V 0 2.0 MVDET V 1.5 3.5 MVFB I V =0V –65 M IIN– K –1.0 Symbol Test condition FA5331P(M) Min. Typ. Max. Min MAX Symbol Test condition FA5331P(M) Min. Typ. Max. Min =100mA 1.3 1 =–100mA 15.5 16 =18V load r 300 t No load r 200 Symbol ...

Page 4

... I ON/OFF terminal THON voltage=3.5V ON/OFF terminal V voltage= THONOFF Symbol Test condition FA5331P(M) Min. V 14.3 THUON I 7.6 THUOFF V UHYS Symbol Test condition FA5331P(M) Min =14V CCST CC I CCOP I Pin 12=0V CCOFF FA5331P(M)/FA5332P(M) FA5332P(M) Unit Typ. Max. Min. Typ. Max. 1.64 1.72 1.617 1.650 1.683 V – ...

Page 5

... FA5331P(M)/FA5332P(M) Description of each circuit 1. Oscillator section This section outputs sawtooth waves oscillating between 0.15 and 3.55V using the capacitor charge and discharge characteristics. Figure 1 shows how to connect the required external components to this circuit. The oscillation frequency is determined by the C and R values. The relationship ...

Page 6

... Fig. 6 1.25 – (Ve –1.55) • Vs .................................... (8) As Fig. 3 shows Vm is internally connected to pin 2 (IIN–) of the current error amplifier A2 through a 10k resistor. (See the characteristic curve, page 66 for the input and output characteristics of the multiplier.) FA5331P(M)/FA5332P(M) MUL ...

Page 7

... FA5331P(M)/FA5332P(M) 6. ON/OFF control input circuit Figure 7 shows the ON/OFF control input circuit. If pin 12 is set to the high level (enable), this IC outputs pulses from the OUT pin. If pin 12 is set to the low level (disable), the internal bias power (reference voltage) goes off and the IC current consumption becomes about 1/10 that of its ON state ...

Page 8

... Io: Output current : 2 fo (fo: Input power frequency 60Hz Smoothing capacitor value Therefore, the peak-to-peak value of the output ripple voltage Vrp is given by: Io Vrp = ..................................................... (17 Using formula (17), determine the necessary C value. FA5331P(M)/FA5332P(M) DB1 Vcc REG FA5331/FA5332 7 Fig ...

Page 9

... FA5331P(M)/FA5332P(M) 4. No-load operation The following condition should be meet to prevent from overvoltage and audible noise during no-load or light-load operation. For FA5331 (Fig.10) 0.85• OFST 3 (3.5•10 –0.26•R )•12 n where, = 42+0.26•R n and, R 100 n and don’t connect. X •You must not connect R ...

Page 10

... Output duty cycle vs. CS terminal voltage (V FA5332 200 100 FA5332 –40 – ON/OFF control terminal current vs. CS ON/OFF control terminal voltage FA5331P(M)/FA5332P(M) C =330pF T C =470pF T C =680pF T 100 Vcc=18V C =470pF T R =22k 100 60 T [˚ ...

Page 11

... FA5331P(M)/FA5332P(M) IIN– terminal voltage vs. VDET terminal voltage Multiplier I/O FA5331 IDET terminal voltage vs. IIN– terminal voltage Normal operation FA5331 0 –0.5 –1.0 –1.5 0 0.5 1.0 IIN– terminal voltage [V] H-level output voltage (V ) vs. OH output source current (I ) SOURCE 11 FA5332 1.4 1.2 1.0 0.8 0.6 0.4 0 0.4 0.8 V terminal voltage [V] DET ...

Page 12

... CC Normal operation FA5332 –1.08 –1.09 –1.1 –1.11 –1.12 –1.13 –40 –20 FA5332 1.67 1.66 1.65 1.64 1.63 1.62 1.61 –20 –40 ) Supply current ( OFF mode FA5331P(M)/FA5332P(M) Vcc=18V 100 [˚C] a Vcc=18V 100 60 T [˚ vs. supply voltage ( ...

Page 13

... FA5331P(M)/FA5332P(M) Application circuit Example of FA5331 application circuit Example of FA5332 application circuit Parts tolerances characteristics are not defined in the circuit design sample shown above. When designing an actual circuit for a product, you must determine parts tolerances and characteristics for safe and economical operation. ...

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