HA3-5020-5 Intersil, HA3-5020-5 Datasheet - Page 7

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HA3-5020-5

Manufacturer Part Number
HA3-5020-5
Description
IC OPAMP VIDEO CFA 100MHZ 8-DIP
Manufacturer
Intersil
Datasheet

Specifications of HA3-5020-5

Applications
Current Feedback
Number Of Circuits
1
-3db Bandwidth
100MHz
Slew Rate
1100 V/µs
Current - Supply
7.5mA
Current - Output / Channel
31.7mA
Voltage - Supply, Single/dual (±)
±4.5 V ~ 18 V
Mounting Type
Through Hole
Package / Case
8-DIP (0.300", 7.62mm)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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Electrical Specifications
NOTES:
10. V
12. Measured with a VM700A video tester using a NTC-7 composite VITS.
13. See “Typical Performance Curves” for more information.
14. V
15. R
16. V
17. FPBW =
18. V
19. V
20. V
11. V
-3dB Bandwidth (Note 14)
Settling Time to 1%
Settling Time to 0.25%
INTERSIL VALUE ADDED SPECIFICATIONS
Input Noise Voltage (Note 14)
+Input Noise Current (Note 14)
-Input Noise Current (Note 14)
Input Common Mode Range
Output Current, Short Circuit
Output Current, Disabled (Note 14)
Output Disable Time (Notes 14, 20)
Output Enable Time (Notes 14, 21)
Supply Voltage Range
Output Capacitance, Disabled (Note 19)
VIDEO CHARACTERISTICS
Differential Gain (Notes 13, 14)
Differential Phase (Notes 13, 14)
Gain Flatness
2. Suggested V
3. R
4. V
5. V
6.
7. R
8. This parameter is not tested. The limits are guaranteed based on lab characterization, and reflect lot-to-lot variation.
9. V
connected to V+. Since -I
adjustment is determined by the value of R
considered disabled when -10mV ≤ V
disabled when the supply current has decreased by at least 0.5mA.
considered disabled when -10mV ≤ V
IN
OUT
IN
IN
IN
CM
OUT
IN
IN
IN
L
L
L
FPBW
= 100Ω, V
= 100Ω, V
= 100Ω. V
= 0V. This is the maximum current that can be pulled out of the Disable pin with the HA-5020 remaining enabled. The HA-5020 is considered
= +10V, Disable = +15V to 0V. Measured from the 50% point of Disable to V
= +10V, Disable = 0V to +15V. Measured from the 50% point of Disable to V
= 0V, Force V
= 0V, Force V
= +2V, Disable = +5V to 0V. Measured from the 50% point of Disable to V
= +2V, Disable = 0V to +5V. Measured from the 50% point of Disable to V
= ±2.5V. At -40°C product is tested at V
switches from -10V to +10V, or from +10V to -10V. Specification is from the 25% to 75% points.
switches from -2V to +2V, or from +2V to -2V. Specification is from the 25% to 75% points.
Slew Rate
-------------------------- - ; V
2πV
=
Slew Rate
-------------------------- - ; V
2πV
OS
IN
OUT
IN
PEAK
= 10V. This is the minimum current which must be pulled out of the Disable pin in order to disable the output. The output is
= 2.5V. This is the minimum current which must be pulled out of the Disable pin in order to disable the output. The output is
Adjust Circuit: The inverting input current (-I
PARAMETER
PEAK
OUT
OUT
= 1V. Measured from 10% to 90% points for rise/fall times; from 50% points of input and output for propagation delay.
from 0V to ±10V, t
from 0V to ±2.5V, t
PEAK
BIAS
PEAK
7
= 2V
flows through the feedback resistor (R
V+ = +5V, V- = -5V, R
Parameters are not tested. The limits are guaranteed based on lab characterizations, and reflect
lot-to-lot variation. (Continued)
= 10V.
.
OUT
OUT
R
R
≤ +10mV.
≤ +10mV.
= t
F
= t
CM
(∆V
F
F
= 50ns.
= 50ns.
OS
= ±2.25V because short test duration does not allow self heating.
= ∆-I
V
2V Output Step
2V Output Step
R
R
F
f = 1kHz
f = 1kHz
f = 1kHz
V
DISABLE = 0V,
V
DISABLE = 0V
To 5MHz
IN
OUT
OUT
L
L
TEST CONDITIONS
= 1kΩ, A
= 150Ω
= 150Ω
= ±2.5V, V
BIAS
= ±2.5V, V
= 100mV
BIAS
*R
HA-5020
V
F
) can be adjusted with an external 10kΩ pot between pins 1 and 5, wiper
).
= +1, R
OUT
F
), the result is an adjustment in offset voltage. The amount of offset voltage
IN
= 0V
= 0V
L
= 400Ω, C
OUT
OUT
OUT
OUT
TEMP.
(°C)
Full
Full
Full
= 0V.
= 2V.
25
25
25
25
25
25
25
25
25
25
25
25
25
= 0V.
= 10V.
L
≤10pF, Unless Otherwise Specified.
±2.5V
MIN
±40
±5
-
-
-
-
-
-
-
-
-
-
-
-
-
TYP
0.03
0.03
130
±60
4.5
2.5
0.1
65
75
25
40
40
6
-
-
MAX
±15
2
-
-
-
-
-
-
-
-
-
-
-
-
-
-
June 5, 2006
nV/√Hz
pA/√Hz
pA/√Hz
UNITS
MHz
FN2845.11
mA
µA
µs
pF
dB
ns
ns
ns
%
V
V
°

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