EasyManua.ls Logo

Atmel ATA6264 - Page 63

Atmel ATA6264
83 pages
Print Icon
To Next Page IconTo Next Page
To Next Page IconTo Next Page
To Previous Page IconTo Previous Page
To Previous Page IconTo Previous Page
Loading...
63
4929B–AUTO–01/07
ATA6264 [Preliminary]
Table 19-1. Electrical Characteristics AMUX (Analog Multiplexer for Voltage Measurements)
No. Parameters Test Conditions Pin Symbol Min Typ. Max. Unit Type*
18.1 Output offset error
Has to be calculated from the
values of the differential
measurement
UZP V
UZPoffset
–5 +15 mV A
18.2 Ratio V
K15
/V
UZP
For V
VPERI
= 5V (1.5V to 3V)
For V
VPERI
= 5V (> 3V to 25V)
UZP Ratio
6.05 ± 4%
6.05 ± 2.3%
A
A
18.2a Ratio V
K15
/V
UZP
For V
VPERI
= 3.3V (1.5V to 3V)
For V
VPERI
= 3.3V (> 3V to 25V)
UZP Ratio
9.12 ± 6%
9.12 ± 2.3%
A
A
18.3 Ratio V
K30
/V
UZP
For V
VPERI
= 5V (1.5V to 3V)
For V
VPERI
= 5V (> 3V to 25V)
UZP Ratio
6.04 ± 6%
6.04 ± 2.3%
A
A
18.3a Ratio V
K30
/V
UZP
For V
VPERI
= 3.3V (1.5V to 3V)
For V
VPERI
= 3.3V (> 3V to 25V)
UZP Ratio
9.11 ± 6%
9.11 ± 2.3%
A
A
18.4 Ratio V
EVZ
/V
UZP
For V
VPERI
= 5V UZP Ratio 9.9 ± 2.3% A
18.4a Ratio V
EVZ
/V
UZP
For V
VPERI
= 3.3V UZP Ratio 14.78 ± 2.6% A
18.5 Ratio V
SAT
/V
UZP
For V
VPERI
= 5V (1.5V to 3V)
For V
VPERI
= 5V (> 3V to 25V)
UZP Ratio
6.05 ± 6%
6.05 ± 2.3%
A
A
18.5a Ratio V
SAT
/V
UZP
For V
VPERI
= 3.3V (1.5V to 3V)
For V
VPERI
= 3.3V (> 3V to 25V)
UZP Ratio
9.12 ± 6%
9.12 ± 2.3%
A
A
18.6 Ratio V
VCORE
/V
UZP
For V
VPERI
= V
VCORE
= 5V UZP Ratio 2 ± 2.3% A
18.6a Ratio V
VCORE
/V
UZP
For V
VPERI
> V
VCORE
UZP Ratio 0.995 ± 1% A
18.7 Ratio V
ISENS
/V
UZP
V
VPERI
–0.2V V
ISENS
0.2V UZP Ratio 0.992 ± 1% A
18.8 Ratio V
K1
/V
UZP
For V
VPERI
= 5V (1.5V to 3V)
For V
VPERI
= 5V (> 3V to 25V)
UZP Ratio
6.06 ± 3.5%
6.06 ± 2.3%
A
A
18.8a Ratio V
K1
/V
UZP
For V
VPERI
= 3.3V (1.5V to 3V)
For V
VPERI
= 3.3V (> 3V to 25V)
UZP Ratio
9.16 ± 3.5%
9.16 ± 2.3%
A
A
18.9 Ratio V
K2
/V
UZP
For V
VPERI
= 5V (1.5V to 3V)
For V
VPERI
= 5V (> 3V to 25V)
UZP Ratio
6.06 ± 3.5%
6.06 ± 2.3%
A
A
18.9a Ratio V
K2
/V
UZP
For V
VPERI
= 3.3V (1.5V to 3V)
For V
VPERI
= 3.3V (> 3V to 25V)
UZP Ratio
9.16 ± 3.5%
9.16 ± 2.3%
A
A
18.10 Ratio V
IASG1
/V
UZP
For V
VPERI
= 5V UZP Ratio 10 ± 3% A
18.10a Ratio V
IASG1
/V
UZP
For V
VPERI
= 3.3V UZP Ratio 14.75 ± 3% A
18.11 Ratio V
IASG2
/V
UZP
For V
VPERI
= 5V (1.5V to 3V)
For V
VPERI
= 5V (> 3V to 25V)
UZP Ratio
6.04 ± 6%
6.04 ± 2.3%
A
A
18.11a Ratio V
IASG2
/V
UZP
For V
VPERI
= 3.3V (1.5V to 3V)
For V
VPERI
= 3.3V (> 3V to 25V)
UZP Ratio
9.11 ± 6%
9.11 ± 2.3%
A
A
18.12 Ratio V
IASG3
/V
UZP
For V
VPERI
= 5V (1.5V to 3V)
For V
VPERI
= 5V (> 3V to 25V)
UZP Ratio
6.04 ± 6%
6.04 ± 2.3%
A
A
18.12a Ratio V
IASG3
/V
UZP
For V
VPERI
= 3.3V (1.5V to 3V)
For V
VPERI
= 3.3V (> 3V to 25V)
UZP Ratio
9.11 ± 6%
9.11± 2.3%
A
A
18.13 Ratio V
IASG4
/V
UZP
For V
VPERI
= 5V (1.5V to 3V)
For V
VPERI
= 5V (> 3V to 25V)
UZP Ratio
6.04 ± 6%
6.04 ± 2.3%
A
A
18.13a Ratio V
IASG4
/V
UZP
For V
VPERI
= 3.3V (1.5V to 3V)
For V
VPERI
= 3.3V (> 3V to 25V)
UZP Ratio
9.11 ± 6%
9.11 ± 2.3%
A
A
18.14 Ratio V
IASG5
/V
UZP
UZP Ratio 0.995 ± 1% A
*) Type means: A = 100% tested, B = 100% correlation tested, C = Characterized on samples, D = Design parameter