CAUTION: Stresses above those listed in “Absolute Maximum Ratings” may cause permanent damage to the device. This is a stress only rating and operation
of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied.
NOTES:
1. Maximum power dissipation including output load, must be designed to maintain the junction temperature below 175
o
C for the ceramic
package, and below 150
o
C for the plastic packages.
2.
θ
JA
is measured with the component mounted on an evaluation PC board in free air.
Electrical Specifications
Test Conditions: V
SUPPLY
=
±
15V, Unless Otherwise Specified. Digital Inputs: V
IL
= +0.5V, V
IH
= +2.4.
Limits apply to each of the four channels, when addressed
TEST
CONDITIONS
TEMP.
(
o
C)
HA-2400/04
MIN
TYP
MAX
MIN
HA-2405
TYP
MAX
UNITS
PARAMETER
INPUT CHARACTERISTICS
Offset Voltage
25
Full
-
-
-
-
-
-
-
±9.0
4
-
50
-
5
-
30
-
9
11
200
400
50
100
-
-
-
-
-
-
-
-
-
±9.0
4
-
50
-
5
-
30
-
9
11
250
500
50
100
-
-
mV
mV
nA
nA
nA
nA
MΩ
V
Bias Current (Note 8)
25
Full
Offset Current (Note 8)
25
Full
Input Resistance (Note 8)
Common Mode Range
TRANSFER CHARACTERISTICS
Large Signal Voltage Gain
R
L
= 2kΩ
V
OUT
= 20V
P-P
Common Mode Rejection Ratio
Gain Bandwidth (Notes 3, 9)
Gain Bandwidth (Notes 4, 9)
Minimum Stable Gain
OUTPUT CHARACTERISTICS
Output Voltage Swing
Output Current
Full Power Bandwidth (Notes 3, 10)
Full Power Bandwidth (Notes 4, 10)
TRANSIENT RESPONSE
(Note 11)
Rise Time (Note 4)
Overshoot (Note 4)
Slew Rate (Note 3)
Slew Rate (Notes 4, 9)
V
OUT
= 200mV
PEAK
V
OUT
= 200mV
PEAK
V
OUT
= 10V
P-P
V
OUT
= 10V
P-P
V
OUT
= 20V
P-P
V
OUT
= 20V
P-P
R
L
= 2kΩ
(C
COMP
= 0)
V
CM
=
±5V
25
Full
25
Full
Full
25
25
50
25
80
20
4
10
150
-
100
40
8
-
-
-
-
-
-
-
50
25
74
20
4
10
150
-
100
40
8
-
-
-
-
-
-
-
kV/V
kV/V
dB
MHz
MHz
V/V
Full
25
25
25
±10.0
10
640
200
±12.0
20
950
250
-
-
-
-
±10.0
10
640
200
±12.0
20
950
250
-
-
-
-
V
mA
kHz
kHz
25
25
25
25
-
-
20
6
20
25
30
8
45
40
-
-
-
-
20
6
20
25
30
8
50
40
-
-
ns
%
V/µs
V/µs
3-162
HA-2400, HA-2404, HA-2405
Electrical Specifications
Test Conditions: V
SUPPLY
=
±
15V, Unless Otherwise Specified. Digital Inputs: V
IL
= +0.5V, V
IH
= +2.4.
Limits apply to each of the four channels, when addressed
(Continued)
TEST
CONDITIONS
V
OUT
= 10V
P-P
TEMP.
(
o
C)
25
HA-2400/04
MIN
-
TYP
1.5
MAX
2.5
MIN
-
HA-2405
TYP
1.5
MAX
2.5
UNITS
µs
PARAMETER
Settling Time (Notes 4, 5, 9)
CHANNEL SELECT CHARACTERISTICS
Digital Input Current
Digital Input Current
Output Delay (Notes 6, 9)
Crosstalk (Note 7)
POWER SUPPLY CHARACTERISTICS
Supply Current
Power Supply Rejection Ratio
NOTES:
3. A
V
= +10, C
COMP
= 0, R
L
= 2kΩ, C
L
= 50pF.
4. A
V
= +1, C
COMP
= 15pF, R
L
= 2kΩ, C
L
= 50pF.
5. To 0.1% of final value.
6. To 10% of final value; output then slews at normal rate to final value.
7. Unselected input to output; V
IN
=
±10V
DC
.
8. Unselected channels have approximately the same input parameters.
9. Guaranteed by design.
-
10. Full Power Bandwidth based on slew rate measurement using:
FPBW
= -------------------------- ;
V PEAK
=
5V
.
2πV PEAK
11. See Figure 13 for test circuit.
SR
V
IN
= 0V
V
IN
= +5.0V
Full
Full
25
25
-
-
-
-80
1
5
100
-110
1.5
-
250
-
-
-
-
-74
1
5
100
-110
1.5
-
250
-
mA
nA
ns
dB
25
V
S
=
±10V
to
±20V
Full
-
74
4.8
90
6.0
-
-
74
4.8
90
6.0
-
mA
dB
Schematic Diagram
HA-2400
IN+
Q
1
R
3
1.8K
Q
2
R
4
22.9K
ENABLE
Q
3
Q
5
Q
4
Q
27
Q
6
Q
7
Q
8
Q
9
R
35
1.6K
GND
R
6
2.0K
R
5
8.0K
R
14
10K
Q
20
Q
21
Q
19
VD
Q
22
Q
24
Q
23
Q
39
Q
40
Q
13
VC
Q
38
Q
41
Q
88
Q
89
Q
26
Q
32
Q
25
Q
33
VE
Q
28
R
2
2.4K
R
1
1.6K
R
12
1.6K
Q
29
R
13
0.8K
Q
30
Q
102
Q
34
R
18
2.0K
Q
31
Q
35
Q
103
Q
36
Q
37
R
35
0.75K
Q
86
R
30
Q
87
1.2K
C
1
9.0pF
V+
IN-
COMP
Q
82
Q
81
Q
84
Q
80
Q
83
R
33
4K
Q
92
Q
93
Q
94
Q
95
Q
97
Q
100
Q
85
R
34
1.6K
Q
98
Q
99
Q
101
R
32
34
OUT
R
31
36.5
Q
96
+V
CC
Q
79
Q
18
R
7
5.6K
Q
10
Q
11
Q
12
Q
14
Q
90
Q
91
Q17
VB
Q
15
R
8
R
10
4K R
10K
9
Q
16
1.5K
VA
R
11
10K
R
15
10K
R
16
10K
R
17
1.6K
Q
42
R19
1.6K
TO ADDITIONAL
INPUT STAGES
R
29
0.4K
-V
EE
D0
D1
Diagram Includes: One Input Stage, Decode Control, Bias Network, and Output Stage
3-163
HA-2400, HA-2404, HA-2405
Typical Applications
IN
1
2
3
4
5
6
7
8
+2
+
OUTPUT
AMP
+1
COMP
12
GND 13
DIGITAL
GROUND
IN
6
15pF
+15V
OUT
-15V
7
8
+
4
+
3
D0
DECODE/
CONTROL D1
ENABLE
D0
16
15
14
DIGITAL
CONTROL
1
2
3
4
5
+
4
+
3
DECODE/
CONTROL
D1
15
16
-
ENABLE 14
GND 13
COMP
S
H
DIGITAL
GROUND
C
+15V
OUT
-15V
+1
12
-
V+ 11
10
V- 9
+
-
2
OUTPUT
AMP
V+ 11
10
V- 9
2K
1K
I1
-
Sample Charging Rate
= ----
V
⁄
s
C
I2
-
Hold Drift Rate
= ----
V
⁄
s
C
Q
-V
Switch Pedestal Error
= ---
C
I
1
≈
150 x 10
-6
A
I
2
≈
200 x 10
-9
A at 25
o
C
≈
600 x 10
-9
A at -55
o
C
≈
100 x 10
-9
A at 125
o
C
Q
≈
2 x 10
-12
C
FIGURE 2. HA-2400 SAMPLE AND HOLD
500
500
FIGURE 1. HA-2400 AMPLIFIER, NONINVERTING
PROGRAMMABLE GAIN
For more examples, see Intersil Application Note AN514.
3-164
HA-2400, HA-2404, HA-2405
Typical Performance Curves
NORMALIZED VALUE REFERRED TO 25
o
C
140
120
100
CURRENT (nA)
80
60
40
10
5
0
-55
OFFSET CURRENT
BIAS CURRENT
1.2
1.1
BANDWIDTH
1.0
0.9
SLEW RATE
0.8
-55
-50
-25
0
25
50
TEMPERATURE (
o
C)
75
100
125
-50
-25
0
25
50
TEMPERATURE (
o
C)
75
100
125
FIGURE 3. INPUT BIAS CURRENT AND OFFSET CURRENT vs
Generally, the product manual of transistor manufacturers will have the maximum power dissipation Pcm of the transistor. When the transistor is working in a specific circuit, how can I determine its a...
They all use RMS-DC chips such as AD637. If the waveform is just a single sine wave, can this chip be omitted? Full-wave rectification and filtering can be used to output DC. The main reason is that A...
I would like to ask which hero has an Arm + Linux system. I want to learn Arm + Linux now, but I don’t know what to do. I want to find a system to try! ! ! ! Is there any kind-hearted person who can s...
[b]17. iperf - Network Performance Tool[/b][align=left][color=rgb(0, 0, 0)][font=Tahoma, Helvetica, SimSun, sans-serif][size=14px][b]iperf[/b] is a [b]network testing[/b] tool that can create [b]TCP[/...
Traditional broadcasting systems generally need to be operated manually at a fixed time, and can only realize one-way broadcasting with few functions. Traditional bell ringing equipment has a singl...[Details]
1. Circuit composition
The whole circuit consists of two parts:
1. Power saving control circuit
As shown in the figure below. Including delay circuit and drive circuit.
(1) Delay ci...[Details]
China's new energy vehicles are in a transition period from research and development to real industrial development. In 2012, with the intensive launch of new energy vehicle policy planning, the de...[Details]
1. Introduction
With the growth of parking demand, the scale of parking lots is becoming larger and larger. A lot of research has been done on intelligent parking lots in China, but most of th...[Details]
Converged processors meet scalability requirements
In current embedded system design, solutions based on MCU, DSP, FPGA and ASIC account for more than 90% of the market share. These solutions ...[Details]
The concept of state machine
State machine is an important concept in software programming. More important than this concept is its flexible application. In a clear and efficient program, ther...[Details]
introduction
MEMS is a high-tech that has flourished on the basis of integrated circuit production technology and dedicated micro-electromechanical processing methods. Pressure sensors develop...[Details]
Problems such as the depletion of natural resources, air pollution, traffic congestion, and rising fossil fuel prices have forced societies and individuals to seek alternative means of transportati...[Details]
Motors, especially those with brushes, generate a lot of noise. This noise must be dealt with if the appliance is to meet the requirements of EMC standards. The means to solve EMC are nothing more ...[Details]
LED lighting: Basic circuit design can be completed in as little as one day
Semiconductor manufacturers are also getting involved in the LED lighting business. The power circuit of LED req...[Details]
The rectified DC voltage is then converted back to AC using power electronics such as insulated gate bipolar transistors.
The output voltage is switched on and off at a high frequency, control...[Details]
Analysis of the three core aspects of digital TV transmission standards
According to the differences in regionality, transmission method and modulation method, the transmission method needs to...[Details]
The ARINC429 bus is one of the most commonly used communication buses between various subsystems of avionics. As the "skeleton" of modern avionics systems, once the bus system or the attached airbo...[Details]
LED is the abbreviation of the English word. Its main meanings are: LED = Light Emitting Diode, a solid-state semiconductor device that can convert electrical energy into visible light. It can dire...[Details]
Every time I go home and walk up the stairs, I am always scared. The corridor lights are often broken, and no one changes the bulbs, or they are not smart enough and need to be operated manually. E...[Details]