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1997 Oct 27

4

Philips Semiconductors

Product specification

Vertical deflection power amplifier for
monitors

TDA4860

PINNING

SYMBOL

PIN

DESCRIPTION

V

P1

1

supply voltage 1

INP1

2

input 1 of differential input amplifier

INP2

3

input 2 of differential input amplifier

V

P2

4

supply voltage 2 for vertical output
stage

V-OUT

5

vertical output

SUB

6

substrate

FLB

7

flyback generator output

V

P3

8

flyback supply voltage 3

PCO

9

pulse circuit output

Fig.2  Pin configuration.

handbook, halfpage

TDA4860

MHA593

1

2

3

4

5

6

7

8

9

VP1

VP2

VP3

INP1

INP2

SUB

PCO

FLB

V-OUT

FUNCTIONAL DESCRIPTION

Differential input amplifier

The differential sawtooth input signal (coming from a ramp
output of the TDA4850 for example) is fed to the input
pins 2 and 3. The non-inverted signal is attached to pin 3.
The vertical feedback signal is superimposed on the
inverted input signal on pin 2.

Vertical shift is applied at the inputs in a power-less way
(see Fig.1).

Flyback generator

Signals for the flyback generator and the pulse circuit are
generated in the flyback driver stage. The flyback output
consists of a Darlington transistor and a flyback diode.
The flyback generator can operate in two modes:

1. An external supply voltage is applied for the short

flyback time, thus the power dissipation is minimum
(see Fig.1).

2. The flyback voltage is generated by doubling the

supply voltage (see Fig.5). The 100

µ

F capacitor C2

between pins 4 and 7 is charged up to V

P1

 during

scan, using the external diode and the resistor R2.
The cathode of the capacitor C2 is connected to the
positive rail during flyback. Thus, the flyback voltage is
twice the supply voltage.

Vertical output

The vertical output stage is a quasi-complementary
class-B amplifier with a high linearity. The output contains
SOAR (short-circuit protection) and thermal protection.
The output current on pin 5 is reduced for a short time
(to let the temperature decrease to T

j

< 150

°

C), when the

junction temperature (T

j

) exceeds 160

°

C.

Deflection GUARD

Pin 9 will go HIGH if the junction temperature goes to high
(see Fig.3). A pulse signal with 50% duty cycle is output on
pin 9, if the deflection coil is open-circuit. A flyback pulse
signal is output at normal conditions.

Further watching can be achieved by means of an external
GUARD circuit as shown in Fig.4. The 22

µ

F capacitor is

charged during flyback time (V

5

> V

8

) at normal conditions.

In case of failures, the capacitor is discharged and the
GUARD output goes HIGH.

GUARD output level (see Fig.4):

LOW for normal conditions

HIGH for deflection coil short-circuit respectively
open-circuit

HIGH when there are neither input or output signals.

Summary of Contents for TDA4860

Page 1: ...DATA SHEET Product specification Supersedes data of 1996 Nov 26 File under Integrated Circuits IC02 1997 Oct 27 INTEGRATED CIRCUITS TDA4860 Vertical deflection power amplifier for monitors ...

Page 2: ...ltage stabilizer GENERAL DESCRIPTION The TDA4860 is a vertical power amplifier for differential input signals suitable for colour monitor TV systems with deflection frequencies up to 160 Hz QUICK REFERENCE DATA Measurements referenced to substrate pin 6 ORDERING INFORMATION SYMBOL PARAMETER MIN TYP MAX UNIT VP1 supply voltage pin 1 9 30 V VP2 supply voltage pin 4 9 60 V VP3 flyback supply voltage ...

Page 3: ... Tj max 105 C Tyoke 75 C Pyoke 1 2 W PIC 1 8 W Ptot 3 0 W tp FLB typically 250 µs Attention the heatsink of the IC must be isolated against ground the cooling fin is connected to pin 6 handbook full pagewidth MHA591 yoke 470 µF 0 1 µF 470 µF 470 µF 1 MΩ 150 kΩ 270 Ω 4 3 Ω 10 kΩ 1 8 kΩ BAX13 8 1 V 52 V R1 1 Ω 1 8 kΩ 5 6 Ω VP2 VP3 8 7 6 5 4 3 2 1 9 PCO RPCO VN VP1 V OUT SUB FLB DIFFERENTIAL INPUT AM...

Page 4: ...e is applied for the short flyback time thus the power dissipation is minimum see Fig 1 2 The flyback voltage is generated by doubling the supply voltage see Fig 5 The 100 µF capacitor C2 between pins 4 and 7 is charged up to VP1 during scan using the external diode and the resistor R2 The cathode of the capacitor C2 is connected to the positive rail during flyback Thus the flyback voltage is twic...

Page 5: ...nd Rth c h 0 5 K W using silicon grease with Rth h a 22 2 K W 10 0 5 K W 11 7 K W SYMBOL PARAMETER CONDITIONS MIN MAX UNIT VP1 supply voltage pin 1 40 V VP2 supply voltage pin 4 60 V VP3 supply voltage pin 8 60 V V2 3 9 voltage on pins 2 3 and 9 VP1 V V5 7 voltage on pins 5 and 7 60 V I4 current on pin 4 1 A I5 M output current on pin 5 peak value note 1 1 3 A I7 M flyback current on pin 7 peak va...

Page 6: ...escent current without input signal 100 nA Flyback generator V7 output voltage upper value I7 1 A VP3 2 2 V I7 M flyback output current maximum value pin 7 1 A V1 5 threshold voltage to switch flyback on off threshold 1 4 V tp FLB flyback pulse time see Figs 1 and 3 250 µs Vertical output see Fig 3 V5 output voltage upper value I5 1 A VP2 2 3 VP2 2 V lower value I5 1 A 1 5 1 7 V I5 M vertical outp...

Page 7: ...ertical timing handbook full pagewidth t t t t t t input signal on pin 2 input signal on pin 3 output signal on pin 5 INP1 INP2 V OUT output signal on pin 9 for thermal protection active output signal on pin 9 for normal condition output signal on pin 9 for deflection unit open circuit tpFLB 250 µs tp9 50 MEH361 PCO PCO PCO ...

Page 8: ...9 BAX13 vertical output signal Fig 5 Application for flyback voltage generation by doubling the supply voltage handbook full pagewidth MHA592 yoke 470 µF 0 1 µF 5 25 mH C2 100 µF 470 µF 1 MΩ 150 kΩ 270 Ω 10 kΩ 1 8 kΩ BAX13 7 8 V R1 1 Ω 1 8 kΩ 5 6 Ω R2 240 Ω VP2 VP3 8 7 6 5 4 3 2 1 9 PCO RPCO VN VP1 V OUT SUB FLB DIFFERENTIAL INPUT AMPLIFIER VOLTAGE STABILIZER VERTICAL DRIVER from TDA4850 V shift 9...

Page 9: ...Semiconductors Product specification Vertical deflection power amplifier for monitors TDA4860 Fig 6 Internal circuitry handbook full pagewidth MEH266 V OUT INP2 INP1 cooling fin 1 2 3 6 5 7 8 9 4 SUB PCO VP3 VP2 VP1 TDA4860 ...

Page 10: ...0 A4 15 8 15 4 1 40 1 14 0 67 0 50 1 40 1 14 0 48 0 38 21 8 21 4 21 4 20 7 6 48 6 20 3 4 3 2 2 54 1 0 5 9 5 7 4 4 4 2 3 9 3 4 15 1 14 9 Q 1 75 1 55 DIMENSIONS mm are the original dimensions Note 1 Plastic or metal protrusions of 0 25 mm maximum per side are not included 2 75 2 50 SOT110 1 92 11 17 95 02 25 0 5 10 mm scale 0 25 w D E A A c A2 3 A4 q 1 q 2 L Q w M b b1 b2 D1 P q 1 Z e 1 9 P seating ...

Page 11: ...ackage below the seating plane or not more than 2 mm above it If the temperature of the soldering iron bit is less than 300 C it may remain in contact for up to 10 seconds If the bit temperature is between 300 and 400 C contact may be up to 5 seconds DEFINITIONS LIFE SUPPORT APPLICATIONS These products are not designed for use in life support appliances devices or systems where malfunction of thes...

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