Limiting values, Thermal characteristics, Characteristics – Philips TDA9964 User Manual

Page 6: Tda9964, Thermal characteristics 10. characteristics, Philips semiconductors

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Philips Semiconductors

TDA9964

12-bit, 3.0 V, 30 Msps analog-to-digital interface for CCD cameras

Objective specification

Rev. 03 — 16 January 2001

6 of 23

9397 750 07918

© Philips Electronics N.V. 2001. All rights reserved.

8.

Limiting values

[1]

The supply voltages V

CCA

, V

CCD

and V

CCO

may have any value between

0.3 and +7.0 V provided that the supply voltage difference

V

CC

remains as indicated.

9.

Thermal characteristics

10. Characteristics

Table 4:

Limiting values

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

Symbol

Parameter

Conditions

Min

Max

Unit

V

CCA

analog supply voltage

[1]

0.3

+7.0

V

V

CCD

digital supply voltage

[1]

0.3

+7.0

V

V

CCO

digital outputs supply voltage

[1]

0.3

+7.0

V

V

CC

supply voltage difference:

between V

CCA

and V

CCD

0.5

+0.5

V

between V

CCA

and V

CCO

0.5

+1.2

V

between V

CCD

and V

CCO

0.5

+1.2

V

V

i

input voltage

referenced to AGND

0.3

+7.0

V

I

o

data output current

±

10

mA

T

stg

storage temperature

55

+150

°

C

T

amb

ambient temperature

20

+75

°

C

T

j

junction temperature

150

°

C

Table 5:

Thermal characteristics

Symbol

Parameter

Conditions

Value

Unit

R

th(j-a)

thermal resistance from junction to ambient in free air

76

K/W

Table 6:

Characteristics

V

CCA

= V

CCD

= 3.0 V; V

CCO

= 2.7 V; f

pix

= 30 MHz; T

amb

= 25

°

C; unless otherwise specified.

Symbol

Parameter

Conditions

Min

Typ

Max

Unit

Supplies

V

CCA

analog supply voltage

2.7

3.0

3.6

V

V

CCD

digital supply voltage

2.7

3.0

3.6

V

V

CCO

digital outputs supply voltage

2.5

2.7

3.6

V

I

CCA

analog supply current

all clamps active

60

mA

I

CCD

digital supply current

3

mA

I

CCO

digital outputs supply current

C

L

= 10 pF on all data

outputs; input ramp
response time is 800

µ

s

1

mA

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