LT6604-15
4
660415fa
PARAMETER
CONDITIONS
MIN
TYP
MAX
UNITS
Differential Offset Drift
10
μV/°C
Input Common Mode Voltage (Note 3)
Differential Input = 500mVP-P, RIN = 133Ω
VS = 3V
VS = 5V
VS = ±5V
l
0
–2.5
1.5
3
1
V
Output Common Mode Voltage (Note 5)
Differential Output = 2VP-P, VMID at Midsupply, Common
Mode Voltage at VOCM
VS = 3V
VS = 5V
VS = ±5V
l
1
1.5
–1
1.5
3
2
V
Output Common Mode Offset
(with Respect to VOCM)
VS = 3V
VS = 5V
VS = ±5V
l
–35
–40
–55
5
–10
40
35
mV
Common Mode Rejection Ratio
64
dB
Voltage at VMID
VS = 3V
VS = 5V
l
2.45
2.50
1.5
2.56
V
VMID Input Resistance
l
4.3
5.7
7.7
kΩ
VOCM Bias Current
VOCM = VMID = VS/2
VS = 3V
VS = 5V
l
–10
–2
μA
Power Supply Current (per Channel)
VS = 3V, VS = 5V
VS = 3V
VS = 5V
VS = ±5V
l
35
34
38
39
44
45
48
mA
Power Supply Voltage
l
311
V
ELECTRICAL CHARACTERISTICS The l denotes specications that apply over the full operating temperature
range, otherwise specications are at TA = 25°C. Unless otherwise specied VS = 5V (V+ = 5V, V– = 0V), RIN = 536Ω, and RLOAD = 1k.
Note 1: Stresses beyond those listed under Absolute Maximum Ratings
may cause permanent damage to the device. Exposure to any Absolute
Maximum Rating condition for extended periods may affect device
reliability and lifetime.
Note 2: This is the temperature coefcient of the internal feedback
resistors assuming a temperature independent external resistor (RIN).
Note 3: The input common mode voltage is the average of the voltages
applied to the external resistors (RIN). Specication guaranteed for RIN ≥
100Ω.
Note 4: Distortion is measured differentially using a differential stimulus.
The input common mode voltage, the voltage at VOCM, and the voltage at
VMID are equal to one half of the total power supply voltage.
Note 5: Output common mode voltage is the average of the +OUT and
–OUT voltages. The output common mode voltage is equal to VOCM.
Note 6: The LT6604C-15 is guaranteed functional over the operating
temperature range –40°C to 85°C.
Note 7: The LT6604C-15 is guaranteed to meet 0°C to 70°C specications
and is designed, characterized and expected to meet the extended
temperature limits, but is not tested at –40°C and 85°C. The LT6604I-15 is
guaranteed to meet specied performance from –40°C to 85°C.
Note 8: Input pins (+IN, –IN, VOCM and VMID) are protected by steering
diodes to either supply. If the inputs should exceed either supply voltage,
the input current should be limited to less than 10mA. In addition, the
inputs +IN, –IN are protected by a pair of back-to-back diodes. If the
differential input voltage exceeds 1.4V, the input current should be limited
to less than 10mA.
Note 9: Channel separation (the inverse of crosstalk) is measured by
driving a signal into one input, while terminating the other input. Channel
separation is the ratio of the resulting output signal at the driven channel
to the output at the channel that is not driven.