LT1224 Linear Technology, LT1224 Datasheet - Page 7

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LT1224

Manufacturer Part Number
LT1224
Description
Very High Speed Operational Amplifier
Manufacturer
Linear Technology
Datasheet

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A
Capacitive Loading
The LT1224 is stable with all capacitive loads. This is
accomplished by sensing the load induced output pole and
adding compensation at the amplifier gain node. As the
capacitive load increases, both the bandwidth and phase
margin decrease so there will be peaking in the frequency
domain and in the transient response. The photo of the
small-signal response with 1000pF load shows 50% peak-
ing. The large-signal response with a 10,000pF load shows
the output slew rate being limited by the short-circuit
current.
The LT1224 can drive coaxial cable directly, but for best
pulse fidelity the cable should be doubly terminated with
a resistor in series with the output.
TYPICAL
PPLICATI
V
IN
A
V
= – 1, C
–38dB AT 10MHz
SMALL SIGNAL OVERSHOOT = 10%
619
R1
1MHz, 2nd Order Butterworth Filter
L
A
= 1000pF
O
PPLICATI
C1
500pF
U
619
825
R2
R3
S
I FOR ATIO
U
Information furnished by Linear Technology Corporation is believed to be accurate and reliable.
However, no responsibility is assumed for its use. Linear Technology Corporation makes no represen-
tation that the interconnection of circuits as described herein will not infringe on existing patent rights.
C2
100pF
O
+
LT1224
A
U
V
W
= 1, C
S
L
= 10,000pF
LT1224 • TA08
U
V
LT1224 • TA06
OUT
DAC Current-to-Voltage Converter
The wide bandwidth, high slew rate and fast settling time
of the LT1224 make it well-suited for current-to-voltage
conversion after current output D/A converters. A typical
application is shown on the first page of this data sheet
with a DAC-08 type converter with a full-scale output of
2mA. A compensation capacitor is used across the feed-
back resistor to null the pole at the inverting input caused
by the DAC output capacitance. The combination of the
LT1224 and DAC settles to 40mV in 140ns for both a 0V
to 10V step and for a 10V to 0V step.
A
TRIM R5 FOR GAIN
TRIM R1 FOR COMMON-MODE REJECTION
BW = 430kHz
V
=
10k
R1
V
R4
R3
V
IN
IN
+
[
R2
1k
1 +
Two Op Amp Instrumentation Amplifier
1
2
+
LT1224
+
(
R2
R1
LT1224
R1
1k
+
R2
1k
R3
R4
)
Cable Driving
+
220
R2 + R3
R5
R5
75
R3
R3
1k
]
= 102
75 CABLE
+
LT1224
10k
R4
R4
75
LT1224 • TA07
LT1224
V
LT1224 • TA09
OUT
7
V
OUT

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