CAUTION: Do not operate at or near the maximum ratings listed for extended periods of time. Exposure to such conditions may adversely impact product
reliability and result in failures not covered by warranty.
IMPORTANT NOTE: All parameters having Min/Max specifications are guaranteed. Typ values are for information purposes only. Unless otherwise noted, all tests are
at the specified temperature and are pulsed tests, therefore: T
J
= T
C
= T
A
Electrical Specifications
PARAMETER
V
S
+ = +5V, V
S
- = -5V, T
A
= +25°C, V
IN
= 0V, R
LD
= 200, C
LD
= 1pF, Unless Otherwise Specified.
CONDITIONS
MIN
(Note 4)
TYP
MAX
(Note 4)
UNIT
DESCRIPTION
AC PERFORMANCE
BW
BW
SR
-3dB Bandwidth
±0.1dB Bandwidth
Slew Rate - EL5173
Slew Rate - EL5373
t
STL
OS
t
OVR
V
REF
BW (-3dB)
V
REF
SR+
V
REF
SR-
V
N
HD2
HD2
HD3
HD3
dG
d
e
S
Settling Time to 0.1%
Overshoot
Output Overdrive Recovery Time
V
REF
-3dB Bandwidth
V
REF
Slew Rate - Rise
V
REF
Slew Rate - Fall
Input Voltage Noise
Second Harmonic Distortion
Second Harmonic Distortion
Third Harmonic Distortion
Third Harmonic Distortion
Differential Gain at 3.58MHz
Differential Phase at 3.58MHz
Channel Separation - for EL5373 only
A
V
=1, C
LD
= 2.7pF
V
OUT
= 2V
P-P
, 20% to 80%
V
OUT
= 2V
P-P
, 20% to 80%
f = 10kHz
V
OUT
= 2V
P-P
, 5MHz
V
OUT
= 2V
P-P
, 20MHz
V
OUT
= 2V
P-P
, 5MHz
V
OUT
= 2V
P-P
, 20MHz
R
LD
= 300, A
V
= 2
R
LD
= 300, A
V
= 2
at 1MHz
V
OUT
= 2V
P-P
, 20% to 80%
V
OUT
= 2V
P-P
, 20% to 80%
V
OUT
= 2V
P-P
V
ODP-P
= 2V
750
900
450
60
900
1100
10
10
10
190
200
125
25
84
71
62
53
0.05
0.08
90
MHz
MHz
V/µs
V/µs
ns
%
ns
MHz
V/µs
V/µs
nV/Hz
dBc
dBc
dBc
dBc
%
°
dB
INPUT CHARACTERISTICS
V
OS
I
IN
Input Referred Offset Voltage
Input Bias Current (V
IN
, V
INB
)
EL5173
EL5373
I
REF
INput Bias Current at REF
V
REF
= +3.2V
V
REF
= -3.2V
Gain
R
IN
C
IN
DMIR
Gain Accuracy
Differential Input Resistance
Differential Input Capacitance
Differential Mode Input Range
±2
V
IN
= ±1V
-21
-21
1
-1
1.97
1.99
150
1
±2.3
±3
-11
-13
±30
-5
-5
5
+1
2.01
mV
µA
µA
µA
µA
V
k
pF
V
FN7312 Rev 10.00
August 25, 2015
Page 3 of 15
EL5173, EL5373
Electrical Specifications
PARAMETER
CMIR+
CMIR-
V
REFIN
+
V
REFIN
-
V
REFOS
CMRR
V
S
+ = +5V, V
S
- = -5V, T
A
= +25°C, V
IN
= 0V, R
LD
= 200, C
LD
= 1pF, Unless Otherwise Specified. (Continued)
CONDITIONS
MIN
(Note 4)
3.1
TYP
3.4
-4.5
V
IN
+ = V
IN
- = 0V
V
IN
+ = V
IN
- = 0V
-100
V
IN
= ±2.5V
60
3.3
3.7
-3.3
50
80
-3
+100
-4.2
MAX
(Note 4)
UNIT
V
V
V
V
mV
dB
DESCRIPTION
Common Mode Positive Input Range at
V
IN
+, V
IN
-
Common Mode Negative Input Range at
V
IN
+, V
IN
-
Reference Input - Positive
Reference Input - Negative
Output Offset Relative to V
REF
Input Common Mode Rejection Ratio
OUTPUT CHARACTERISTICS
V
OUT
(EL5173)
V
OUT
(EL5373)
I
OUT
(Max)
Positive Output Voltage Swing
Negative Output Voltage Swing
Positive Output Voltage Swing
Negative Output Voltage Swing
Maximum Output Current
R
L
= 10(EL5173)
R
L
= 10(EL5373)
R
OUT
Output Impedance
±45
±40
R
LD
= 200
3.7
R
LD
= 200
3.3
3.67
-3.3
4
-3.7
±55
±50
60
-3.4
-3
V
V
V
V
mA
mA
m
SUPPLY
V
SUPPLY
I
S(ON)
I
S(OFF)
+ (EL5173)
I
S(OFF)
- (EL5173)
I
S(OFF)
+ (EL5373)
I
S(OFF)
- (EL5373)
PSRR
ENABLE
t
EN
t
DS
V
IH
V
IL
I
IH-EN
I
IL-EN
Enable Time
Disable Time
EN Pin Voltage for Power-Up
EN Pin Voltage for Shut-Down
EN Pin Input Current High - Per Channel
EN Pin Input Current Low - Per Channel
At V
EN
= 5V
At V
EN
= 0V
-5
V
S
+ - 0.5
40
-2.5
60
100
1.2
V
S
+ - 1.5
ns
µs
V
V
µA
µA
Supply Operating Range
Power Supply Current - Per Channel
Positive Power Supply Current - Disabled
Negative Power Supply Current - Disabled
Positive Power Supply Current - Disabled
Negative Power Supply Current - Disabled
Power Supply Rejection Ratio
V
S
from ±4.5V to ±5.5V
EN pin tied to 4.8V
EN pin tied to 4.8V
V
S
+ to V
S
-
4.75
9
60
-150
0.5
-150
60
12
80
-120
2
-120
73
11
14
100
-90
10
-90
V
mA
µA
µA
µA
µA
dB
NOTE:
4. Parameters with MIN and/or MAX limits are 100% tested at +25°C, unless otherwise specified. Temperature limits established by characterization
Wireless data transmission is widely used in vehicle monitoring, remote control, telemetry, small wireless network, wireless meter reading, access control system, community paging, industrial data acq...
I want to make a charging circuit to charge 1860 batteries using a TYPEC interface. Since there are many types of chargers, I want to implement a charging circuit that can adapt to a wide range of vol...
[size=4][color=#000000][font=Arial]F28x CCS plug-in programming steps[/font] [font=Arial]Step 1: Select a project. This project should be debugged and can run normally under CCS debugging. [/font] [fo...
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]
Power management solutions for today's portable application processors are becoming increasingly integrated. Total power consumption, standby and sleep current consumption affect battery size, bill...[Details]
1 Introduction
As an emerging microfabrication technology, micro-electromechanical system (MEMS) technology has begun to be applied in various fields. It can integrate functions such as inform...[Details]
In the previous series, we have listed some basic knowledge of C language in Tables 1 to 3. We hope that beginners can strengthen their memory of the above tables and gradually learn to use them wh...[Details]
Vertical cavity surface emitting lasers (VCSELs) are gradually replacing traditional edge emitting lasers, especially in low bandwidth and short-distance communication systems where cost factors ar...[Details]
I. Introduction
Since RS232 has a short communication distance (only 15 meters according to EAT/TAI-232 standard), and can only perform point-to-point communication, it cannot directly f...[Details]
Flooded Batteries
This battery developed in Germany can be used to power flashlights, strobe lights and toys as long as it is filled with water. This battery can be stored for 50 years and can...[Details]
Digital array radar (DAR) uses digital beam forming (DBF) in both receiving and transmitting modes to achieve flexible distribution and reception of RF signal power in the airspace, obtain excellent t...[Details]
TC9012F is a universal CMOS large-scale integrated circuit for infrared remote control signal transmission, suitable for remote control of TV, VTR, laser player and other equipment. In the market, ...[Details]
Introduction
Liquid crystal, as a display device, is widely used in low-power products such as instruments, meters, and electronic equipment with its unique advantages. In the past, the displ...[Details]
Continuity test
A variety of devices need to be checked for continuity, including cable assemblies, printed circuit boards, and connectors to ensure that these components have the expected contin...[Details]
Abstract: With the development and construction of BeiDou II system, China will shift from the situation dominated by GPS to the situation dominated by BeiDou II global navigation system independen...[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]
To understand how and why OLED power supply affects display image quality, you must first understand OLED display technology and power supply requirements. This article will explain the latest OLED...[Details]
introduction
Incandescent bulbs can emit a variety of light, but in specific applications, only green, red, and yellow light are usually needed - such as traffic lights. If an incand...[Details]