MAX152EVKIT-DIP Maxim Integrated Products, MAX152EVKIT-DIP Datasheet - Page 4

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MAX152EVKIT-DIP

Manufacturer Part Number
MAX152EVKIT-DIP
Description
EVALUATION KIT FOR MAX152/153
Manufacturer
Maxim Integrated Products
Datasheets

Specifications of MAX152EVKIT-DIP

Number Of Adc's
1
Number Of Bits
8
Sampling Rate (per Second)
400k
Data Interface
Parallel
Inputs Per Adc
1 Single Ended
Input Range
±VREF
Power (typ) @ Conditions
4.5mW @ 400kSPS
Voltage Supply Source
Dual ±
Operating Temperature
0°C ~ 70°C
Utilized Ic / Part
MAX152, MAX153
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
TIMING CHARACTERISTICS
(Unipolar input range, V
+3V, 8-Bit ADC with 1µA Power-Down
Note 6: Input control signals are specified with t r = t f = 5ns, 10% to 90% of +3.0V, and timed from a voltage level of 1.3V. Timing
Note 7: See Figure 1 for load circuit. Parameter defined as the time required for the output to cross 0.66V or 2.0V.
Note 8: See Figure 2 for load circuit. Parameter defined as the time required for the data lines to change 0.5V.
4
Conversion Time
(WR-RD Mode)
Conversion Time
(RD Mode)
Power-Up Time
CS to RD,WR
Setup Time
CS to RD,WR
Hold Time
CS to RDY
Delay
Data Access Time
(RD Mode) (Note 7)
RD to INT Delay
(RD Mode)
Data Hold Time
(Note 8)
Delay Time Between
Conversions
WR Pulse Width
Delay Time Between
WR and RD Pulses
RD Pulse Width
Data Access Time
(Note 7)
RD to INT Delay
WR to INT Delay
RD Pulse Width
Data Access Time
(Note 7)
WR to INT Delay
Data Access Time
After INT (Note 7)
_________________________________________________________________________________________
_______________________________________________________________________________________
PARAMETER
delays get shorter at higher supply voltages. See the Converson Time vs. Supply Voltage graph in the Typical Operating
Characteristics to extrapolate timing delays at other power-supply voltages.
DD
SYMBOL
t
t
t
t
t
READ1
READ2
t
t
t
= 3V, V
t
t
t
t
t
ACC0
ACC1
ACC2
IHWR
CWR
INTH
t
t
CRD
t
CSS
CSH
RDY
t
INTL
WR
t
t
DH
RD
UP
t
ID
RI
P
SS
t
C
C
R
C
C
WR-RD mode,
determined by t
(Figure 6)
WR-RD mode,
t
(Figure 6)
C
WR-RD mode,
t
determined by t
(Figure 5)
WR-RD mode,
t
(Figure 5)
Stand-alone mode,
C
Stand-alone mode,
C
RD
RD
= 0V, T
RD
RD
L
L
L
L
L
L
L
L
CONDITIONS
= 5.1kΩ to V
= 100pF
= 100pF
= 50pF,
= 100pF
= 50pF
= 50pF
< t
= 50pF
< t
< t
> t
INTL
INTL
INTL
INTL
A
, C
, C
= +25°C, unless otherwise noted.) (Note 6)
,
,
L
L
= 100pF
= 100pF
DD
ACC2
ACC1
MIN
450
400
180
0.6
0.8
0
0
ALL GRADES
T
A
TYP
= +25°C
100
0.7
MAX
+100
t
1.45
100
160
100
400
300
180
180
100
CRD
1.8
2.0
0.9
10
T
A
0.66
MIN
600
500
220
MAX152C/E
0.9
= T
0
0
MIN
to T
MAX
+130
2.06
t
120
170
130
500
340
220
200
130
2.3
1.2
CRD
1.6
10
MAX
T
A
MIN
700
600
250
0.8
1.0
= T
MAX152M
0
0
MIN
to T
MAX
+150
t
140
180
150
600
400
250
240
150
2.4
2.6
1.4
CRD
1.8
10
MAX
UNITS
µs
µs
µs
ns
ns
ns
ns
ns
ns
ns
µs
µs
ns
ns
ns
µs
ns
ns
ns
ns

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