LT6604CUFF-10#PBF Linear Technology, LT6604CUFF-10#PBF Datasheet - Page 6

IC AMP DIFF LN DUAL 34-QFN

LT6604CUFF-10#PBF

Manufacturer Part Number
LT6604CUFF-10#PBF
Description
IC AMP DIFF LN DUAL 34-QFN
Manufacturer
Linear Technology
Datasheet

Specifications of LT6604CUFF-10#PBF

Amplifier Type
Differential
Number Of Circuits
2
Output Type
Differential
Current - Input Bias
40µA
Voltage - Input Offset
8000µV
Current - Supply
36mA
Voltage - Supply, Single/dual (±)
3 V ~ 11 V, ±1.5 V ~ 5.5 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
34-QFN
No. Of Amplifiers
2
Input Offset Voltage
35mV
Bandwidth
10MHz
Supply Voltage Range
3V To 11V
Supply Current
36mA
Amplifier Case Style
QFN
No. Of Pins
34
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Output / Channel
-
-3db Bandwidth
-
Slew Rate
-
Gain Bandwidth Product
-

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
LT6604CUFF-10#PBFLT6604CUFF-10
Manufacturer:
LT
Quantity:
10 000
LT6604-10
TYPICAL PERFORMANCE CHARACTERISTICS
6
–100
–100
–100
–120
–140
–40
–50
–90
–40
–50
–60
–70
–80
–90
–60
–70
–80
–20
–40
–60
–80
0.1
–3
0
Distortion vs Input Common Mode
Level, 0.5V
R
Distortion vs Signal Level
V
T
Channel Separation
vs Frequency (Note 9)
V
V
R
EACH OUTPUT
GAIN = 1
A
S
L
IN
S
L
= 25°C, Gain = 1
= 800Ω at Each Output, T
= 3V, R
= 5V
= 800Ω AT
= 2V
INPUT COMMON MODE VOLTAGE
–2
2ND HARMONIC,
5MHz INPUT
3RD HARMONIC,
5MHz INPUT
2ND HARMONIC,
1MHz INPUT
3RD HARMONIC,
1MHZ INPUT
1
P-P
2ND HARMONIC,
V
3RD HARMONIC,
V
2ND HARMONIC,
V
3RD HARMONIC,
V
RELATIVE TO V
S
S
S
S
INPUT LEVEL (V
L
–1
FREQUENCY (MHz)
= 3V
= 3V
= 5V
= 5V
1
P-P
= 800Ω at Each Output,
2
, 1MHz Input, 4x Gain,
0
3
MID
P-P
1
10
(V)
)
4
A
2
660410 G12
660410 G09
660410 G15
= 25°C
100
3
5
–100
–110
–100
–40
–50
–60
–70
–80
–90
–40
–50
–90
–60
–70
–80
40
38
36
34
32
30
28
26
24
0
–1
2
Distortion vs Signal Level
V
T
Single Channel Supply Current
vs Total Supply Voltage
Distortion vs Output Common
Mode Level, 2V
1x Gain, T
A
S
= 25°C, Gain = 1
= ±5V, R
3
2ND HARMONIC,
5MHz INPUT
3RD HARMONIC,
5MHz INPUT
2ND HARMONIC,
1MHz INPUT
3RD HARMONIC,
1MHZ INPUT
–0.5
1
TOTAL SUPPLY VOLTAGE (V)
(V
4
OCM
T
T
T
INPUT LEVEL (V
A
A
A
A
0
L
= –40°C
= 85°C
= 25°C
= 25°C
– V
5
= 800Ω at Each Output,
2
MID
P-P
0.5
6
) VOLTAGE (V)
1MHz Input,
3
7
P-P
1
)
8
4
1.5
660410 G10
660410 G13
660410 G16
9
10
5
2
DIFFERENTIAL
200mV/DIV
50mV/DIV
INPUT
V
–100
OUT
2ND HARMONIC, V
3RD HARMONIC, V
2ND HARMONIC, V
3RD HARMONIC, V
2ND HARMONIC, V
3RD HARMONIC, V
–40
–50
–90
–60
–70
–80
+
–3
Distortion vs Input Common Mode
Level, 2V
R
Transient Response,
Differential Gain = 1
L
= 800Ω at Each Output, T
2ND HARMONIC,
V
3RD HARMONIC,
V
2ND HARMONIC,
V
3RD HARMONIC,
V
INPUT COMMON MODE VOLTAGE
–2
S
S
S
S
= 3V
= 3V
= 5V
= 5V
RELATIVE TO V
P-P
S
S
S
S
S
S
–1
= 3V
= 3V
= 5V
= 5V
= ±5V
= ±5V
, 1MHz Input, 1x Gain,
100ns/DIV
0
MID
1
(V)
A
2
660410 G11
660410 G14
660410fb
= 25°C
3

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