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ISL28107_09 Datasheet, PDF (5/22 Pages) Intersil Corporation – Precision Single and Dual Low Noise Operational Amplifiers
ISL28107, ISL28207
Electrical SpecificationsVS ±5V, VCM = 0, VO = 0V, TA = +25°C, unless otherwise noted. Boldface limits apply over
the operating temperature range, -40°C to +125°C. Temperature data established by
characterization. (Continued)
PARAMETER
DESCRIPTION
CONDITIONS
MIN
MAX
(Note 5) TYP (Note 5) UNIT
TCIOS
VCM
Input Offset Current Drift
TA = -40°C to +85°C
TA = -40°C to +125°C
Common Mode Input Voltage Guaranteed by CMRR test
Range
-0.9
-3.5
-3
0.19
0.26
0.9 pA/°C
3.5 pA/°C
3
V
CMRR
Common-Mode Rejection
Ratio
VCM = -3V to +3V
115
145
dB
PSRR
AVOL
VOH
Power Supply Rejection Ratio VS = ±2.25V to ±5V
Open-Loop Gain
VO = -3V to +3V, RL = 10kΩ to ground
Output Voltage High
RL = 10kΩ to ground
115
3,000
3.5
3.2
145
40,000
3.7
dB
V/mV
V
V
RL = 2kΩ to ground
3.3
3.55
V
3.1
V
VOL
Output Voltage Low
RL = 10kΩ to ground
-3.7
-3.5
V
-3.2
V
RL = 2kΩ to ground
-3.55
-3.3
V
-3.1
V
IS
Supply Current/Amplifier
RL = Open
0.21
0.29
mA
0.35
mA
ISC
Output Short-Circuit Current
AC SPECIFICATIONS
Note 3
± 40
mA
GBW
Gain Bandwidth Product
1
MHz
THD + N
Total Harmonic Distortion + 1kHz, G = 1, Vo = 2.5VRMS, RL = 2kΩ
Noise
0.0053
%
TRANSIENT RESPONSE
SR
Slew Rate
AV = 10, RL = 2kΩ
0.32
V/µs
tr, tf, Small
Signal
Rise Time
10% to 90% of VOUT
AV = 1, VOUT = 100mVP-P, Rf = 0Ω,
RL = 2kΩ to VCM
355
ns
Fall Time
90% to 10% of VOUT
AV = 1, VOUT = 100mVP-P, Rf = 0Ω,
RL = 2kΩ to VCM
370
ns
ts
Settling Time to 0.1%
AV = -1, VOUT = 4VP-P, Rf = Rg = 2kΩ,
4V Step; 10% to VOUT
RL = 2kΩ to VCM
12.4
µs
Settling Time to 0.01%
4V Step; 10% to VOUT
AV = -1, VOUT = 4VP-P, Rf = Rg = 2kΩ,
RL = 2kΩ to VCM
22
µs
NOTE:
5. Parameters with MIN and/or MAX limits are 100% tested at +25°C, unless otherwise specified. Temperature limits established
by characterization and are not production tested.
6. Output Short Circuit Current is the minimum current (source or sink) when the output is driven into the supply rails with
RL = 0Ω to ground.
5
FN6631.1
November 16, 2009