ml2280 Microsemi Corporation, ml2280 Datasheet - Page 5

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ml2280

Manufacturer Part Number
ml2280
Description
Serial 8-bit Converters
Manufacturer
Microsemi Corporation
Datasheet

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ELECTRICAL CHARACTERISTICS
AC ELECTRICAL CHARACTERISTICS
Note 1: When the input voltage (V
Note 2: 0°C to 70°C and –40°C to 85°C operating temperature range devices are 100% tested with temperature limits guaranteed by 100% testing, sampling, or by
Note 3: Typicals are parametric norm at 25°C.
Note 4: Parameter guaranteed and 100% tested.
Note 5: Parameter guaranteed. Parameters not 100% tested are not in outgoing quality level calculation.
Note 6: Total unadjusted error includes offset, full-scale, linearity, multiplexer and sample-and-hold errors.
Note 7: For V
Note 8: Leakage current is measured with the clock not switching.
Note 9: A 40% to 60% clock duty cycle range insures proper operation at all clock frequencies. In the case that an available clock has a duty cycle outside of these limits,
Note 10: Since data, MSB first, is the output of the comparator used in the successive approximation loop, an additional delay is built in (see Block Diagram) to allow for
Note 11: Because of multiplexer addressing, test conditions for the ML2283 is V
SYMBOL
f
t
t
SNR
THD
IMD
t
t
t
t
t
t
C
C
CLK
ACQ
C
SET-UP
HOLD
PD1
PD0
1H
0H
IN
OUT
,
,
25mA or less.
correlation with worst-case test conditions.
analog input voltages one diode drop below ground or one diode drop greater than the V
analog inputs (5V) can cause this input diode to conduct—especially at elevated temperatures, and cause errors for analog inputs near full-scale. The spec allows
50mV forward bias of either diode. This means that as long as the analog V
be correct. To achieve an absolute 0V to 5V input voltage range will therefore require a minimum supply voltage of 4.950V
tolerance and loading.
the minimum time the clock is high or the minimum time the clock is low must be at least 300ns. The maximum time the clock can be high or low is 60µs.
comparator response time..
IN
Clock Frequency
Sample-and-Hold Acquisition
Conversion Time
Signal to Noise Ratio
ML2280
Total Harmonic Distortion
ML2280
Intermodulation Distortion
ML2280
Clock Duty Cycle
CS Falling Edge or Data Input (Note 4)
Valid to CLK Rising Edge
Data Input Valid after
CLK Rising Edge
CLK Falling Edge to Output
Data Valid
Rising Edge of CS to Data
Output and SARS Hi-Z
Capacitance of Logic Input
Capacitance of Logic Outputs
– • V
IN
+ the digital output code will be 0000 0000. Two on-chip diodes are tied to each analog input (see Block Diagram) which will forward conduct for
PARAMETER
IN
) at any pin exceeds the power supply rails (V
(Note 4)
Not including MUX adddressing time
V
(f
nonfundamental components up to 1/2
of f
V
(f
3, 4, 5 harmonics relative to fundamental
(Note 11)
V
f
(f
(f
(f
(Notes 4, 9)
(Note 4)
C
Data MSB first
Data LSB first
C
test circuits) (Note 5)
C
B
SAMPLING
SAMPLING
SAMPLING
A
A
IN
IN
IN
L
L
L
= 39.8kHz, 2.5V Sine, f
= 10pF, R
= 100pF, R
SAMPLING
– f
– 2f
= 100pF (Note 4 & 10)
= f
= 40kHz, 5V sine. f
= 40kHz, 5V sine. f
B
A
), (2f
B
) relative to fundamental (Note 11)
+ f
(Continued)
B
A
. f
120kHz). IMD is (f
120kHz). Noise is sum of all
120kHz). THD is sum of 2,
L
(Note 11)
+ f
A
L
= 10k (see high impedance
CONDITIONS
= 40kHz, 2.5V sine.
B
= 2k (Note 5)
), (2f
IN
= 30kHz, 5V sine (f
A
IN
IN
– f
CLK
CLK
< GND < or V
CLK
or V
B
), (f
= 1.333MHz
= 1.333MHz
REF
= 1.333MHz
A
A
does not exceed the supply voltage by more than 50mV, the output code will
+ 2f
+ f
CC
B
IN
B
),
SAMPLING
supply. Be careful, during testing at low V
),
> V
CC
) the absolute value of current at that pin should be limited to
89kHz)
MIN
130
10
40
80
ML2280, ML2283
NOTE 3
TYP
–60
–60
DC
1/2
47
50
80
90
40
8
5
5
over temperature variations, initial
CC
levels (4.5V), as high level
MAX
1333
110
200
160
60
90
UNITS
1/f
1/f
kHz
dB
dB
dB
pF
pF
%
ns
ns
ns
ns
ns
ns
CLK
CLK
5

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