LT1800CS5#TRMPBF Linear Technology, LT1800CS5#TRMPBF Datasheet - Page 14

IC OPAMP R-RIN/OUT LP TSOT-23-5

LT1800CS5#TRMPBF

Manufacturer Part Number
LT1800CS5#TRMPBF
Description
IC OPAMP R-RIN/OUT LP TSOT-23-5
Manufacturer
Linear Technology
Datasheet

Specifications of LT1800CS5#TRMPBF

Amplifier Type
General Purpose
Number Of Circuits
1
Output Type
Rail-to-Rail
Slew Rate
23 V/µs
Gain Bandwidth Product
70MHz
Current - Input Bias
400nA
Voltage - Input Offset
1000µV
Current - Supply
1.8mA
Current - Output / Channel
50mA
Voltage - Supply, Single/dual (±)
2.3 V ~ 12.6 V, ±1.15 V ~ 6.3 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
TSOT-23-5, TSOT-5, TSOP-5
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
-3db Bandwidth
-
Other names
LT1800CS5#TRMPBFTR

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APPLICATIONS INFORMATION
LT1800
Feedback Components
When feedback resistors are used to set up gain, care must
be taken to ensure that the pole formed by the feedback
resistors and the total capacitance at the inverting input
does not degrade stability. For instance, the LT1800 in a
noninverting gain of 2, set up with two 5k resistors and
TYPICAL APPLICATIONS
Single Supply 1A Laser Driver Amplifi er
The circuit in the front page of this data sheet shows the
LT1800 used in a 1A laser driver application. One of the
reasons the LT1800 is well suited to this control task is
that its 2.3V operation ensures that it will be awake during
power-up and operated before the circuit can otherwise
cause signifi cant current to fl ow in the 2.1V threshold
laser diode. Driving the noninverting input of the LT1800
to a voltage V
current NPN transistor, FMMT619 and the laser diode.
A current equal to V
The LT1800 low offset voltage and low input bias current
allows it to control the current that fl ows through the laser
diode precisely. The overall circuit is a 1A per volt V-to-I
converter. Frequency compensation components R2 and
C1 are selected for fast but zero-overshoot time domain
response to avoid overcurrent conditions in the laser. The
14
0.1Ω
I
0A TO 1A
L
IN
Figure 2. Fast 1A Current Sense
V
f
UNCERTAINTY DUE TO V
–3dB
OUT
52.3Ω
52.3Ω
will control the turning on of the high
= 2 • I
= 4MHz
IN
/R1 fl ows through the laser diode.
L
+
LT1800
OS,
3V
I
1800 F02
B
< 4mA
1k
V
0V TO 2V
OUT
a capacitance of 5pF (part plus PC board) will probably
ring in transient response. The pole is formed at 12.7MHz
that will reduce phase margin by 32 degrees when the
crossover frequency of the amplifi er is around 20MHz. A
capacitor of 5pF or higher connected across the feedback
resistor will eliminate any ringing or oscillation.
time domain response of this circuit, measured at R1 and
given a 500mV 230ns input pulse, is also shown in the
graphic on the front page. While the circuit is capable
of 1A operation, the laser diode and the transistor are
thermally limited due to power dissipation, so they must
be operated at low duty cycles.
Fast 1A Current Sense Amplifi er
A simple, fast current sense amplifi er in Figure 2 is suitable
for quickly responding to out-of-range currents. The circuit
amplifi es the voltage across the 0.1Ω sense resistor by
a gain of 20, resulting in a conversion gain of 2V/A. The
–3dB bandwidth of the circuit is 4MHz, and the uncertainty
due to V
voltage is 60mV, corresponding to 30mA. The large-signal
response of the circuit is shown in Figure 3.
500mV/DIV
Figure 3. Current Sense Amplifi er Large-Signal Response
OS
0V
V
and I
S
= 3V
B
is less than 4mA. The minimum output
50ns/DIV
1800 F03
1800fa

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