LT6604CUFF-2.5#PBF Linear Technology, LT6604CUFF-2.5#PBF Datasheet - Page 3

IC AMP DIFF LN DUAL 34-QFN

LT6604CUFF-2.5#PBF

Manufacturer Part Number
LT6604CUFF-2.5#PBF
Description
IC AMP DIFF LN DUAL 34-QFN
Manufacturer
Linear Technology
Datasheet

Specifications of LT6604CUFF-2.5#PBF

Amplifier Type
Differential
Number Of Circuits
2
Output Type
Differential
Current - Input Bias
15µA
Voltage - Input Offset
5000µV
Current - Supply
28mA
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
2.5MHz
Supply Voltage Range
3V To 11V
Supply Current
28mA
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-2.5#PBFLT6604CUFF-2.5
Manufacturer:
LT
Quantity:
10 000
Company:
Part Number:
LT6604CUFF-2.5#PBF
Manufacturer:
LINEAR/凌特
Quantity:
20 000
Company:
Part Number:
LT6604CUFF-2.5#PBFLT6604CUFF-2.5#TRPBF
Manufacturer:
ST
Quantity:
42 000
ELECTRICAL CHARACTERISTICS
temperature range, otherwise specifi cations are at T
R
PARAMETER
Matching of Filter Gain, V
Matching of Filter Phase, V
Filter Gain Either Channel, V
Matching of Filter Gain, V
Matching of Filter Phase, V
Filter Gain Either Channel, V
Filter Gain, R
Filter Gain Temperature Coeffi cient (Note 2) f
Noise
Distortion (Note 4)
Channel Separation (Note 9)
Differential Output Swing
LOAD
= 1k.
IN
= 402Ω
S
S
S
S
= 3V
= 5V
S
S
= 3V
= 5V
= 5V
= ±5V
CONDITIONS
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
Noise BW = 10kHz to 2.5MHz, R
V
V
Measured Between OUT
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
= 260kHz, V
V
V
V
2nd Harmonic
3rd Harmonic
V
V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 2V
= 0.5V
= 1V
= 2V
S
S
S
S
S
= 3V
= 5V
= ±5V
= 5V
= 3V
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
P-P
RMS
P-P
P-P
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
, f
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
A
IN
IN
IN
= DC to 260kHz
= 700kHz (Gain Relative to 260kHz)
= 1.9MHz (Gain Relative to 260kHz)
= 2.2MHz (Gain Relative to 260kHz)
= 2.5MHz (Gain Relative to 260kHz)
= 7.5MHz (Gain Relative to 260kHz)
= 12.5MHz (Gain Relative to 260kHz)
= 700kHz
= 1.9MHz
= 2.2MHz
= DC to 260kHz
= 700kHz (Gain Relative to 260kHz)
= 1.9MHz (Gain Relative to 260kHz)
= 2.2MHz (Gain Relative to 260kHz)
= 2.5MHz (Gain Relative to 260kHz)
= 7.5MHz (Gain Relative to 260kHz)
= 12.5MHz (Gain Relative to 260kHz)
= DC to 260kHz
= 700kHz (Gain Relative to 260kHz)
= 1.9MHz (Gain Relative to 260kHz)
= 2.2MHz (Gain Relative to 260kHz)
= 2.5MHz (Gain Relative to 260kHz)
= 7.5MHz (Gain Relative to 260kHz)
= 12.5MHz (Gain Relative to 260kHz)
= 700kHz
= 1.9MHz
= 2.2MHz
= DC to 260kHz
= 1MHz
= 25°C. Unless otherwise specifi ed V
= 1MHz, R
= DC to 260kHz
= 2V
The
P-P
+
and OUT
l
L
denotes the specifi cations which apply over the full operating
= 800Ω
IN
= 1580Ω
, V
OCM
Shorted to V
MID
S
= 5V (V
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
l
–0.15
+
–0.5
–0.2
–0.6
–2.1
–0.6
11.3
11.3
11.2
MIN
8.8
5.1
= 5V, V
0.005
0.005
–119
0.04
0.02
0.03
0.05
0.15
0.05
–0.1
–0.9
0.04
0.02
0.03
0.05
0.15
0.05
–0.1
11.8
11.8
11.7
TYP
–34
–51
780
= 0V), R
0.2
0.6
0.8
0.2
0.1
0.2
0.6
0.8
9.3
5.5
LT6604-2.5
51
92
88
0
IN
MAX
– 31
12.3
12.3
12.2
0.4
0.1
0.3
0.4
0.6
1.1
2.8
1.5
3.5
4.5
0.4
0.1
0.6
0.5
0.4
0.1
0.3
0.4
0.6
1.1
2.8
1.5
3.5
4.5
0.4
0
= 1580Ω, and
V
V
ppm/°C
P-P_DIFF
P-P_DIFF
μV
660425fa
UNITS
3
RMS
dBc
dBc
deg
deg
deg
deg
deg
deg
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB

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