ACPL-C790-500E Avago Technologies US Inc., ACPL-C790-500E Datasheet - Page 6

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ACPL-C790-500E

Manufacturer Part Number
ACPL-C790-500E
Description
Precision Iso-Amp, T/R+IEC+LF
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of ACPL-C790-500E

Amplifier Type
Isolation
Number Of Circuits
1
Output Type
Differential
-3db Bandwidth
200kHz
Current - Input Bias
100nA
Voltage - Input Offset
600µV
Current - Supply
13mA
Current - Output / Channel
11mA
Voltage - Supply, Single/dual (±)
4.5 V ~ 5.5 V
Operating Temperature
-40°C ~ 105°C
Mounting Type
Surface Mount
Package / Case
8-SOIC (0.268", 6.807mm Width)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Slew Rate
-
Gain Bandwidth Product
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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Table 7. Electrical Specifications
Unless otherwise noted, T
V
6
Parameter
DC CHARACTERISTICS
Input Offset Voltage
Magnitude of Input Offset
Change vs. Temperature
Gain (ACPL-C79B, ±0.5%)
Gain (ACPL-C79A, ±1%)
Gain (ACPL-C790, ±3%)
Magnitude of Gain
Change vs. Temperature
Nonlinearity over ±200 mV
Input Voltage
Magnitude of NL
Change vs. Temperature
Nonlinearity over ±100 mV
Input Voltage
INPUTS AND OUTPUTS
Full-Scale Differential
Voltage Input Range
Input Bias Current
Magnitude of I
Temperature
Equivalent Input Impedance
Output Common-Mode Voltage
Output Voltage Range
Output Short-Circuit Current
Output Resistance
Input DC Common-Mode
Rejection Ratio
AC CHARACTERISTICS
Signal-to-Noise Ratio
Signal-to-(Noise + Distortion)
Ratio
Small-Signal Bandwidth (-3 dB)
Input to Output
Propagation Delay
Output Rise/Fall Time (10%-90%)
Common Mode Transient
Immunity
Power Supply Rejection
POWER SUPPLIES
Input Side Supply Current
Output Side Supply Current
IN
– = 0 V (single-ended connection).
IN+
200
Change vs.
10%-10%
50%-50%
90%-90%
A
= –40°C to +105°C, V
Symbol
V
|dV
G0
G1
G3
dG/dT
NL
dNL
NL
FSR
I
dI
R
V
OVR
|I
R
CMRR
SNR
SNDR
f
t
t
t
t
CMTI
PSR
I
I
IN+
DD1
DD2
–3 dB
PD10
PD50
PD90
R/F
OSC
IN
OUT
OS
OCM
IN+
200
100
OS
200
|
/dT
/dT
IN
A
/dT
A
A
|
A
Min.
–1
8.16
8.12
7.95
–1
140
10
DD1
Typ.
0.6
3
8.2
8.2
8.2
–0.00041
0.05
0.0003
0.004
0.02
±300
–0.1
–0.05
22
1.23
0 to 2.5
11
21
76
60
56
200
1.6
2
2.6
1.7
15
–78
13
7
6.8
= 4.5 V to 5.5 V, V
[1]
Max.
2
10
8.24
8.28
8.44
0.13
0.06
2.3
2.6
3.3
18.5
12
11
DD2
Unit
mV
PV/°C
V/V
V/V
V/V
V/V/°C
%
%/°C
%/°C
%
mV
PA
nA/°C
k:
V
V
mA
:
dB
dB
dB
kHz
Ps
Ps
Ps
Ps
kV/Ps
dB
mA
mA
mA
= 3 V to 5.5 V, V
Test Conditions/Notes
T
T
absolute value
T
T
T
T
Note 3
V
T
T
T
V
T
V
V
V
V
V
V
V
V
Note 2
V
Note 7
V
Note 8
200 mV/Ps step input
200 mV/Ps step input
200 mV/Ps step input
Step input
V
1 Vpp 1 kHz sine wave ripple on V
differential output; Note 9
V
5 V supply
3.3 V supply
A
A
A
A
A
A
A
A
A
A
IN+
IN+
IN
IN+
IN+
OUT+
OUT+
OUT+
DD2
OUT+
IN+
IN+
CM
IN+
= 25°C
= –40°C to +105°C;
= 25°C; Note 2
= 25°C; Note 2
= 25°C; Note 2
= –40°C to +105°C;
= 25°C; Note 2
= –40°C to +85°C
= +85°C to +105°C
= 25°C; Note 2
= V
= 1 kV, T
= –200 mV to +200 mV,
= –100 mV to +100 mV,
= 0 V, V
or V
= 300 mVpp 10 kHz sine wave;
= 300 mVpp 10 kHz sine wave;
= 400 mV; see Note 10
or V
or V
or V
or V
IN+
IN–
– V
OUT–
OUT–
OUT–
OUT–
IN
, single-ended
IN–
A
+ = –200 mV to +200 mV, and
IN–
= 25°C; Note 2
; Note 6
; Note 4
, shorted to GND2 or
= 0 V; Note 5
; Note 4
DD1
,
Fig.
3, 4
5
6, 7
6, 7
6, 7
8
9, 10
11
11
9, 10, 11
12
13
14
12
15, 16
15, 16
17, 18
19
19
19
19
20
20
20

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