CAUTION: Stresses above those listed in “Absolute Maximum Ratings” may cause permanent damage to the device. This is a stress only rating and operation
of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied.
Electrical Specifications
Test Conditions: V
SUPPLY
=
±5V;
C
H
= Internal = 15pF, Digital Input: V
IL
= +0.0V (Sample), V
IH
= 4.0V
(Hold). Non-Inverting Unity Gain Configuration (Output Tied to -Input), C
L
= 5pF, Unless Otherwise
Specified
HA5352I
PARAMETERS
INPUT CHARACTERISTICS
Input Voltage Range
Input Resistance (Note 2)
Input Capacitance
Input Offset Voltage
TEMP
MIN
TYP
MAX
UNITS
Full
+25
o
C
+25
o
C
+25
o
C
Full
-2.5
100
-
-2
-3.0
-
-
-1.5
-2.5
60
-
500
-
-
-
15
2.5
-
-
80
+2.5
-
5
2
3.0
-
5
+1.5
+2.5
-
V
kΩ
pF
mV
mV
µV/
o
C
µA
µA
V
dB
Offset Voltage Temperature Coefficient
Bias Current
Offset Current
Common Mode Range
Common Mode Rejection (±2.5V
DC
, Note 3)
TRANSFER CHARACTERISTICS
Large Signal Voltage Gain
(±2.5V
OUT
)
Full
Full
Full
Full
Full
+25
o
C
Full
95
85
-
108
-
40
-
-
-
dB
dB
MHz
Unity Gain -3dB Bandwidth
TRANSIENT RESPONSE
Rise Time (200mV Step)
Overshoot (200mV Step)
Slew Rate (5V Step)
DIGITAL INPUT CHARACTERISTICS
Input Voltage (High)
V
IH
+25
o
C
+25
o
C
+25
o
C
Full
-
0
88
8.5
-
105
-
30
-
ns
%
V/µs
+25
o
C,
+85
o
C
-40
o
C
2.1
-
5.0
V
2.4
0
-
-
5.0
0.8
V
V
Input Voltage (Low)
V
IL
Full
3-46
Specifications HA5352
Electrical Specifications
Test Conditions: V
SUPPLY
=
±5V;
C
H
= Internal = 15pF, Digital Input: V
IL
= +0.0V (Sample), V
IH
= 4.0V
(Hold). Non-Inverting Unity Gain Configuration (Output Tied to -Input), C
L
= 5pF, Unless Otherwise
Specified
(Continued)
HA5352I
PARAMETERS
Input Current (V
IL
= 0V)
Input Current (V
IH
= 5V)
OUTPUT CHARACTERISTICS
Output Voltage (R
L
= 510Ω)
Output Current (R
L
= 100Ω)
Full
+25
o
C,
+85
o
C
-40
o
C
Full Power Bandwidth (5V
P-P
, A
V
= +1, -3dB)
Output Resistance - Hold Mode
TOTAL OUTPUT NOISE, D.C. TO 10MHz
Sample Mode
Hold Mode
SAMPLE MODE DISTORTION CHARACTERISTICS
Total Harmonic Distortion
V
IN
= 4.5V
P-P
, F
IN
= 100kHz
V
IN
= 5V
P-P
, F
IN
= 1MHz
V
IN
= 1V
P-P
, F
IN
= 10MHz
Signal to Noise Ratio
(RMS Signal to RMS Noise)
Crosstalk
V
IN
= 4.5V
P-P
, F
IN
= 100kHz
+25
o
C
+25
o
C
+25
o
C
+25
o
C
-
-
-
-
-80
-74
-57
73
-76
-69
-52
-
dBc
dBc
dBc
dB
+25
o
C
+25
o
C
-
-
325
325
-
-
µVrms
µVrms
Full
+25
o
C
-3
20
-
25
+3
-
V
mA
I
IL
I
IH
TEMP
Full
Full
MIN
-1
-1
TYP
-
-
MAX
+1
+1
UNITS
µA
µA
15
-
-
-
13
0.02
-
-
-
mA
MHz
Ω
V
IN
= 5V
P-P
, F
IN
= 10MHz
+25
o
C
-
75
-
dB
HOLD MODE DISTORTION CHARACTERISTICS (50% Duty Cycle S/H)
Total Harmonic Distortion
V
IN
= 4.5V
P-P
, F
IN
= 100kHz, F
S
≅
100kHz
V
IN
= 5V
P-P
, F
IN
= 1MHz, F
S
≅
1MHz
V
IN
= 1V
P-P
, F
IN
= 10MHz, F
S
≅
1MHz
Signal to Noise Ratio
(RMS Signal to RMS Noise)
V
IN
= 4.5V
P-P
, F
IN
=100kHz, F
S
≅
100kHz
+25
o
C
+25
o
C
+25
o
C
+25
o
C
-
-
-
-
-78
-72
-51
70
-74
-67
-47
-
dBc
dBc
dBc
dB
SAMPLE AND HOLD CHARACTERISTICS
Acquisition Time
0V to 2.0V Step to
±1mV
0V to 2.0V Step to 0.01% (±200µV)
-2.5V to +2.5V Step to 0.01% (±500µV)
+25
o
C
+25
o
C
+25
o
C
-
-
-
53
64
90
-
70
100
ns
ns
ns
3-47
Specifications HA5352
Electrical Specifications
Test Conditions: V
SUPPLY
=
±5V;
C
H
= Internal = 15pF, Digital Input: V
IL
= +0.0V (Sample), V
IH
= 4.0V
(Hold). Non-Inverting Unity Gain Configuration (Output Tied to -Input), C
L
= 5pF, Unless Otherwise
Specified
(Continued)
HA5352I
PARAMETERS
Droop Rate
TEMP
+25
o
C
Full
Hold Step Error (V
IL
= 0V, V
IH
= 4.0V, t
R
= 5ns)
Hold Mode Settling Time (to
±1mV)
Hold Mode Feedthrough (5V
P-P
, 500kHz, Sine)
EADT (Effective Aperture Delay Time)
Aperture Time (Note 2)
Aperture Uncertainty
Aperture Match
POWER SUPPLY CHARACTERISTICS
Supply Current (per Amp)
Total Supply Current
PSRR (+V or -V, 10% Delta)
NOTES:
1. Absolute maximum ratings are limiting values, applied individually, beyond which the serviceability of the circuit may be impaired. Func-
tional operation under any of these conditions is not necessarily implied.
2. Derived from Computer Simulation only, not tested.
3. +CMRR is measured from 0V to +2.5V, -CMRR is measured from 0V to -2.5V.