LTC6401-26
7
640126f
FREQUENCY (MHz)
NOISE FIGURE (dB)
INPUT REFERRED NOISE VOLTAGE
(nV/Hz)
9
8
640126 G07
5
7
6
2.0
1.5
0
1.0
0.5
1000
10 100
EN
NOISE FIGURE
TIME (ns)
0
OUTPUT VOLTAGE (V)
1.25
1.30
8
640126 G08
1.20
1.15
2
4
6
10
1.35
–OUT
+OUT
R
L
= 87.5Ω PER OUTPUT
TEST CIRCUIT B
TIME (ns)
0
OUTPUT VOLTAGE (V)
1.5
2.0
2.5
16
640126 G09
1.0
0.5
0
4
8
12
20
–OUT
+OUT
R
L
= 87.5Ω PER OUTPUT
TEST CIRCUIT B
TIME (ns)
0
OUTPUT VOLTAGE (V)
1.5
2.0
2.5
200
640126 G10
1.0
0.5
0
50
100
150
250
–OUT
R
L
= 87.5Ω PER OUTPUT
TEST CIRCUIT B
+OUT
TIME (ns)
0
SETTLING (%)
1
3
5
4
640126 G11
–1
–3
0
2
4
–2
–4
–5
1
2
3
5
R
L
= 87.5Ω PER OUTPUT
TEST CIRCUIT B
FREQUENCY (MHz)
0
–40
–50
–60
–70
–80
–90
–100
–110
150
640126 G12
50 100
200
HARMONIC DISTORTION (dBc)
HD2 NO R
L
HD2 R
L
= 200Ω
HD3 NO R
L
HD3 R
L
= 200Ω
DIFFERENTIAL INPUT
V
OUT
= 2V
P-P
TYPICAL PERFORMANCE CHARACTERISTICS
Overdriven Transient Response
1% Settling Time for
2V Output Step Harmonic Distortion vs Frequency
Noise Figure and Input Referred
Noise Voltage vs Frequency Small Signal Transient Response
Large Signal Transient Response
LTC6401-26
8
640126f
FREQUENCY (MHz)
0
–40
–50
–60
–70
–80
–90
–100
–110
150
640126 G13
50 100
200
THIRD ORDER IMD (dBc)
NO R
L
R
L
= 200Ω
DIFFERENTIAL INPUT
V
OUT
= 2V
P-P
COMPOSITE
FREQUENCY (MHz)
0
–40
–50
–60
–70
–80
–90
–100
–110
150
640126 G14
50 100
200
HARMONIC DISTORTION (dBc)
HD2 NO R
L
HD2 R
L
= 200Ω
HD3 NO R
L
HD3 R
L
= 200Ω
SINGLE-ENDED INPUT
V
OUT
= 2V
P-P
FREQUENCY (MHz)
0
–40
–50
–60
–70
–80
–90
–100
–110
150
640126 G15
50 100
200
THIRD ORDER IMD (dBc)
NO R
L
R
L
= 200Ω
SINGLE-ENDED INPUT
V
OUT
= 2V
P-P
COMPOSITE
FREQUENCY (MHz)
0
16.0
OUTPUT 1dB COMPRESSION POINT (dBm)
16.5
17.0
17.5
18.0
18.5
19.0
50 100 150 200
640126 G16
DIFFERENTIAL INPUT
R
L
= 375Ω
TEST CIRCUIT A
(NOTE 7)
FREQUENCY (MHz)
0
0
OUTPUT IP3 (dBm)
10
20
30
40
50
60
50 100 150 200
640126 G17
NO R
L
R
L
= 200Ω
DIFFERENTIAL INPUT
(NOTE 7)
TIME (ns)
–100
VOLTAGE (V)
I
CC
(mA)
1.0
1.5
2.0
200
400
640126 G18
0.5
00
–0.5
0 100 300
2.5
3.0
3.5
20
30
40
10
–10
50
60
70
500
R
L
= 87.5Ω PER OUTPUT
+OUT
–OUT
I
CC
ENABLE
TIME (ns)
–100
VOLTAGE (V)
I
CC
(mA)
1.0
1.5
2.0
200
400
640126 G19
0.5
00
–0.5
0 100 300
2.5
3.0
3.5
20
30
40
10
–10
50
60
70
500
R
L
= 87.5Ω PER OUTPUT
+OUT
–OUT
I
CC
ENABLE
TYPICAL PERFORMANCE CHARACTERISTICS
Third Order Intermodulation
Distortion vs Frequency Harmonic Distortion vs Frequency
Third Order Intermodulation
Distortion vs Frequency
Output 1dB Compression Point vs
Frequency
Equivalent Output Third Order
Intercept Point vs Frequency
Turn-On Time Turn-Off Time
LTC6401-26
9
640126f
BLOCK DIAGRAM
PIN FUNCTIONS
V
+
(Pins 1, 3, 10): Positive Power Supply (Normally tied
to 3V or 3.3V). All three pins must be tied to the same
voltage. Bypass each pin with 1000pF and 0.1μF capaci-
tors as close to the pins as possible.
V
OCM
(Pin 2): This pin sets the output common mode
voltage. An 0.1μF external bypass capacitor is recom-
mended.
V
(Pins 4, 9, 12, 17): Negative Power Supply. All four
pins must be connected to same voltage/ground.
–OUT, +OUT (Pins 5, 8): Unfi ltered Outputs. These pins
have series 12.5Ω resistors R
OUT
.
–OUTF, +OUTF (Pins 6, 7): Filtered Outputs. These pins
have 50Ω series resistors and a 2.7pF shunt capacitor.
E
N
A
B
L
E (Pin 11): This pin is a logic input referenced to
V
EE
. If low, the part is enabled. If high, the part is disabled
and draws very low standby current while the internal op
amp has high output impedance.
+IN (Pins 13, 14): Positive Input. Pins 13 and 14 are
internally shorted together.
–IN (Pins 15, 16): Negative Input. Pins 15 and 16 are
internally shorted together.
Exposed Pad (Pin 17): V
. The Exposed Pad must be
connected to same voltage/ground as pins 4, 9, 12.
13
640126 BD
1
V
+
2
V
OCM
14
7
15
+OUT
+OUTF
–OUTF
–OUT
+IN
IN+ OUT–
IN– OUT+
+IN
–IN
–IN
516
R
G
25Ω
R
OUT
12.5Ω
R
F
500Ω
R
G
25Ω
2k
R
F
500Ω
6
4
V
3
V
+
12
V
11
ENABLE
9
V
10
V
+
COMMON
MODE CONTROL
BIAS CONTROL
8
R
OUT
12.5Ω
R
FILT
50Ω
R
FILT
50Ω
C
FILT
2.7pF
5.3pF

LTC6401IUD-26#TRPBF

Mfr. #:
Manufacturer:
Analog Devices Inc.
Description:
High Speed Operational Amplifiers 3GHz Low Noise/Low Distortion Differential Amp
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union

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