Limiting values, Thermal characteristics, Characteristics – Philips TDA8559T User Manual

Page 10: Tda8559t, Philips semiconductors

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TDA8559_3

© Koninklijke Philips Electronics N.V. 2006. All rights reserved.

Product data sheets

Rev. 03 — 15 May 2006

10 of 36

Philips Semiconductors

TDA8559T

Low-voltage stereo headphone amplifier

10. Limiting values

11. Thermal characteristics

12. Characteristics

Table 5.

Limiting values

In accordance with the Absolute Maximum Rating System (IEC 60134).

Symbol

Parameter

Conditions

Min

Max

Unit

V

P2(max)

maximum supply voltage (pin 15)

-

30

V

V

P1(max)

maximum supply voltage (pin 16)

-

18

V

V

i(max)

maximum input voltage

-

18

V

I

ORM

peak output current

repetitive

-

150

mA

P

tot

total power dissipation

-

1.19

W

T

amb

ambient temperature

40

+85

°

C

T

stg

storage temperature

55

+150

°

C

T

vj

virtual junction temperature

-

150

°

C

t

sc

short-circuiting time

V

P

< 10 V

-

1

h

Table 6.

Thermal characteristics

Symbol

Parameter

Conditions

Typ

Unit

R

th(j-a)

thermal resistance from junction to ambient

in free air

105

K/W

Table 7.

Characteristics

V

P

= 3 V; T

amb

= 25

°

C; f

i

= 1 kHz; unless otherwise specified.

Symbol

Parameter

Conditions

Min

Typ

Max

Unit

DC characteristics

V

P

operating supply voltage

[1]

1.9

3

30

V

I

q(tot)

total quiescent current

open load

-

2.75

4

mA

I

stb

standby supply current

open load

-

-

10

µ

A

V

1

Standby mode voltage

standby

0

-

0.5

V

operating

1.5

-

18

V

V

7

Mute mode voltage

mute

0

-

0.5

V

operating

1.5

-

18

V

I

bias

input bias current

-

100

300

nA

Single-ended stereo application (R

L

= 32

)

P

o

output power

THD = 10 %

30

35

-

mW

THD

total harmonic distortion

P

o

= 20 mW; f

i

= 1 kHz

[2]

-

0.075

0.15

%

P

o

= 20 mW; f

i

= 10 kHz

[2]

-

0.1

-

%

G

v

voltage gain

25

26

27

dB

f

ss

small signal roll-off
frequency

1 dB

-

750

-

kHz

α

cs

channel separation

R

s

= 5 k

40

-

-

dB

∆

G

v

channel unbalance

-

-

1

dB

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