Datasheet

-
+
2.5V
C
F
R
F
D
PHOTO
C
D
C
CM
-2.5V
2.5V
V
OUT
LMP7717
LMP7717, LMP7718
www.ti.com
SNOSAY7H MARCH 2007REVISED MARCH 2013
Figure 60. LMP7715 Response Gain = +1
With no increase in power consumption the decompensated op amp offers faster speed than the compensated
equivalent part . These examples used R
F
= 2 k. This value is high enough to be easily driven by the
LMP7717/LMP7718, yet small enough to minimize the effects from the parasitic capacitance of both the PCB and
the op amp.
NOTE
When using the LMP7717/LMP7718, proper high frequency PCB layout must be followed.
The GBW of these parts is 88 MHz, making the PCB layout significantly more critical than
when using the compensated counterparts which have a GBW of 17 MHz.
TRANSIMPEDANCE AMPLIFIER
An excellent application for either the LMP7717 or the LMP7718 is as a transimpedance amplifier. With a GBW
product of 88 MHz these parts are ideal for high speed data transmission by light. The circuit shown on the front
page of the datasheet is the circuit used to test the LMP7717/LMP7718 as transimpedance amplifiers. The only
change is that V
B
is tied to the V
CC
of the part, thus the direction of the diode is reversed from the circuit shown
on the front page.
Very high speed components were used in testing to check the limits of the LMP7717/LMP7718 in a
transimpedance configuration. The photodiode part number is PIN-HR040 from OSI Optoelectronics. The diode
capacitance for this part is only about 7 pF for the 2.5V bias used (V
CC
to virtual ground). The rise time for this
diode is 1 nsec. A laser diode was used for the light source. Laser diodes have on and off times under 5 nsec.
The speed of the selected optical components allowed an accurate evaluation of the LMP7717 as a
transimpedance amplifier. TIs evaluation board for decompensated op amps, PN 551013271-001 A, was used
and only minor modifications were necessary and no traces had to be cut.
Figure 61. Transimpedance Amplifier
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