LTC1992 Family
22
1992fb
TYPICAL PERFORMANCE CHARACTERISTICS
Applicable to the LTC1992-10 only.
Single-Ended Input Large-Signal
Step Response
Single-Ended Input Large-Signal
Step Response
Power Supply Rejection Ratio
vs Frequency (Note 7)
Differential Input Small-Signal
Step Response
Differential Input Small-Signal
Step Response Output Balance vs Frequency
Differential Input Large-Signal
Step Response
Differential Input Large-Signal
Step Response
Common Mode Rejection Ratio
vs Frequency (Note 7)
2μs/DIV
1992 G112
+V
S
= 2.5V
–V
S
= –2.5V
V
OCM
= 0V
+V
IN
= ±150mV
–V
IN
= 150mV
C
LOAD
= 0pF
V
OUTDIFF
(1V/DIV)
0V
±
20μs/DIV
V
OUTDIFF
(1V/DIV)
1992 G113
+V
S
= 2.5V
–V
S
= –2.5V
V
OCM
= 0V
+V
IN
= ±150mV
–V
IN
= 150mV
C
LOAD
= 10000pF
C
LOAD
= 1000pF
0V
±
FREQUENCY (Hz)
30
CMRR (dB)
90
100
20
10
80
50
70
60
40
100 10k 100k 1M
1992 G114
0
1k
ΔV
AMPCM
ΔV
AMPDIFF
2μs/DIV
1992 G115
+V
S
= 5V
–V
S
= 0V
V
OCM
= 2.5V
+V
IN
= 0V TO 400mV
–V
IN
= 200mV
C
LOAD
= 0pF
V
OUTDIFF
(1V/DIV)
2.5V
20μs/DIV
V
OUTDIFF
(1V/DIV)
1992 G116
+V
S
= 5V
–V
S
= 0V
V
OCM
= 2.5V
+V
IN
= 0V TO 400mV
–V
IN
= 200mV
C
LOAD
= 10000pF
C
LOAD
= 1000pF
2.5V
FREQUENCY (Hz)
10
40
PSRR (dB)
50
60
70
80
100 10k 100k1k 1M
1992 G117
30
20
10
0
90
100
+V
S
–V
S
ΔV
S
ΔV
AMPDIFF
10μs/DIV
1992 G118
+V
S
= 2.5V
–V
S
= –2.5V
V
OCM
= 0V
+V
IN
= ±5mV
–V
IN
= 5mV
C
LOAD
= 0pF
V
OUTDIFF
(50mV/DIV)
0V
±
100μs/DIV
V
OUTDIFF
(50mV/DIV)
1992 G119
+V
S
= 2.5V
–V
S
= –2.5V
V
OCM
= 0V
+V
IN
= ±5mV
–V
IN
= 5mV
C
LOAD
= 10000pF
C
LOAD
= 1000pF
0V
±
FREQUENCY (Hz)
110
–60
OUTPUT BALANCE (dB)
100 1k 10k 100k 1M
1992 G120
–40
–20
0
–80
–100
–120
ΔV
OUTCM
ΔV
OUTDIFF
LTC1992 Family
23
1992fb
TYPICAL PERFORMANCE CHARACTERISTICS
Applicable to the LTC1992-10 only.
Single-Ended Input Small-Signal
Step Response
Single-Ended Input Small-Signal
Step Response
Differential Noise Voltage Density
vs Frequency
THD + Noise vs Frequency THD + Noise vs Amplitude
10μs/DIV
1992 G121
+V
S
= 5V
–V
S
= 0V
V
OCM
= 2.5V
+V
IN
= 0V TO 20mV
–V
IN
= 10mV
C
LOAD
= 0pF
V
OUTDIFF
(50mV/DIV)
2.5V
100μs/DIV
V
OUTDIFF
(50mV/DIV)
1992 G122
+V
S
= 5V
–V
S
= 0V
V
OCM
= 2.5V
+V
IN
= 0V TO 20mV
–V
IN
= 10mV
C
LOAD
= 10000pF
C
LOAD
= 1000pF
2.5V
FREQUENCY (Hz)
100 1000 10000
1922 G123
10
INPUT REFERRED NOISE (nV√Hz)
1000
100
10
FREQUENCY (Hz)
100
–100
THD + NOISE (dB)
–60
–50
–40
1k 10k 50k
1992 G124
–70
–80
–90
V
OUT
= 1V
P-PDIFF
V
OUT
= 2V
P-PDIFF
V
OUT
= 5V
P-PDIFF
500kHz MEASUREMENT BANDWIDTH
+V
S
= 5V
–V
S
= –5V
V
OCM
= 0V
INPUT SIGNAL AMPLITUDE (V
P-PDIFF
)
0.1
–100
THD + NOISE (dB)
–90
–80
–70
–60
–40
12
1992 G125
–50
50kHz
20kHz
10kHz
5kHz
2kHz
1kHz
LTC1992 Family
24
1992fb
PIN FUNCTIONS
–IN, +IN (Pins 1, 8): Inverting and Noninverting Inputs
of the Amplifier. For the LTC1992 part, these pins are
connected directly to the amplifiers P-channel MOSFET
input devices. The fixed gain LTC1992-X parts have preci-
sion, on-chip gain setting resistors. The input resistors
are nominally 30k for the LTC1992-1, LTC1992-2 and
LTC1992-5 parts. The input resistors are nominally 15k
for the LTC1992-10 part.
V
OCM
(Pin 2): Output Common Mode Voltage Set Pin.
The voltage on this pin sets the output signal’s common
mode voltage level. The output common mode level is set
independent of the input common mode level. This is a
high impedance input and must be connected to a known
and controlled voltage. It must never be left floating.
+V
S
, –V
S
(Pins 3, 6): The +V
S
and –V
S
power supply pins
should be bypassed with 0.1μF capacitors to an adequate ana-
log ground or ground plane. The bypass capacitors should
be located as closely as possible to the supply pins.
+OUT, –OUT (Pins 4, 5): The Positive and Negative
Outputs of the Amplifier. These rail-to-rail outputs are
designed to drive capacitive loads as high as 10,000pF.
V
MID
(Pin 7): Mid-Supply Reference. This pin is connected
to an on-chip resistive voltage divider to provide a mid-
supply reference. This provides a convenient way to set
the output common mode level at half-supply. If used for
this purpose, Pin 2 will be shorted to Pin 7, Pin 7 should
be bypassed with a 0.1μF capacitor to ground. If this refer-
ence voltage is not used, leave the pin floating.
BLOCK DIAGRAMS
(1992)
+
1
7
2
6
3
8
5
4
+
200k
200k
+V
S
–V
S
V
+
V
30k
30k
A1
+
+
+
A2
+OUT
1992 BD
–IN
V
MID
V
OCM
+IN
–OUT
+V
S
–V
S
+V
S
–V
S

LTC1992-2HMS8#TRPBF

Mfr. #:
Manufacturer:
Analog Devices Inc.
Description:
Differential Amplifiers L Pwr, Fully Diff In/Out Amp/Drvr Fam
Lifecycle:
New from this manufacturer.
Delivery:
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