EVAL-ADM1063TQEBZ Analog Devices Inc, EVAL-ADM1063TQEBZ Datasheet - Page 5

BOARD EVALUATION FOR ADM1063TQ

EVAL-ADM1063TQEBZ

Manufacturer Part Number
EVAL-ADM1063TQEBZ
Description
BOARD EVALUATION FOR ADM1063TQ
Manufacturer
Analog Devices Inc

Specifications of EVAL-ADM1063TQEBZ

Main Purpose
Power Management, Power Supply Supervisor/Tracker/Sequencer
Embedded
No
Utilized Ic / Part
ADM1063
Primary Attributes
10 Channel Supervisor / Sequencer, 6 Voltage Output DACs
Secondary Attributes
GUI Programmable via SMBus (via USB)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Parameter
TEMPERATURE SENSOR
REFERENCE OUTPUT
PROGRAMMABLE DRIVER OUTPUTS
DIGITAL INPUTS (VXx, A0, A1)
SERIAL BUS DIGITAL INPUTS (SDA, SCL)
Conversion Time
Offset Error
Input Noise
Local Sensor Accuracy
Local Sensor Supply Voltage Coefficient
Remote Sensor Accuracy
Remote Sensor Supply Voltage Coefficient
Remote Sensor Current Source
Temperature for Code 0x800
Temperature for Code 0xC00
Temperature Resolution per Code
Reference Output Voltage
Load Regulation
Minimum Load Capacitance
PSRR
High Voltage (Charge Pump) Mode
Standard (Digital Output) Mode
Three-State Output Leakage Current
Oscillator Frequency
Input High Voltage, V
Input Low Voltage, V
Input High Current, I
Input Low Current, I
Input Capacitance
Programmable Pull-Down Current,
Input High Voltage, V
Input Low Voltage, V
Output Low Voltage, V
(PDO1 to PDO6)
Output Impedance
V
I
(PDO1 to PDO10)
V
V
I
I
R
I
I
OUTAVG
OL
SINK
SOURCE
PULL-DOWN
OH
OH
OL
PULL-UP
3
3
(VPx)
3
IL
IL
IH
IL
2
IH
IH
OL
3
Min
2.043
1
11
10.5
2.4
V
0
19
90
2.0
−1
2.0
PU
− 0.3
Typ
0.44
84
0.25
−1.7
±3
−3
200
12
0
128
0.125
2.048
−0.25
0.25
60
500
12.5
12
20
20
100
5
20
±3
Rev. B | Page 5 of 32
Max
±2
2.053
14
13.5
4.5
0.50
20
60
29
2
10
110
0.8
1
0.8
0.4
Unit
ms
ms
LSB
LSB rms
°C
°C/V
°C
°C
μA
μA
°C
°C
°C
V
mV
mV
μF
dB
V
V
μA
V
V
V
V
mA
mA
mA
μA
kHz
V
V
μA
μA
pF
μA
V
V
V
Test Conditions/Comments
One conversion on one channel
All 12 channels selected, 16× averaging enabled
V
Direct input (no attenuator)
VDDCAP = 4.75 V
VDDCAP = 4.75 V
High level
Low level
VDDCAP = 4.75 V
VDDCAP = 4.75 V
No load
Sourcing current, I
Sinking current, I
Capacitor required for decoupling, stability
DC
I
I
2 V < V
V
V
V
I
Maximum sink current per PDOx pin
Maximum total sink for all PDOx pins
Internal pull-up
Current load on any VPx pull-ups, that is, total source
current available through any number of PDOx pull-
up switches configured onto any one VPx pin
V
All on-chip time delays derived from this clock
Maximum V
Maximum V
V
V
VDDCAP = 4.75 V, T
required
I
OH
OH
OL
OUT
REFIN
PU
PU
PU
PDO
IN
IN
= 20 mA
= 0 μA
= 1 μA
= 5.5 V
= 0 V
(pull-up to VDDCAP or VPx) = 2.7 V, I
to VPx = 6.0 V, I
≤ 2.7 V, I
= −3.0 mA
= 14.4 V
= 2.048 V
OH
< 7 V
OH
IN
IN
= 5.5 V
= 5.5 V
= 0.5 mA
DACxMAX
DACxMAX
OH
A
= 25°C if known logic state is
= 0 mA
= 100 μA
= −100 μA
OH
ADM1063
= 0.5 mA

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