The KA4558 stands out as a multifaceted dual operational amplifier, cherished for its ability to minimize noise at the input stage. This quality renders it remarkably versatile, finding utility across a broad spectrum of applications. Its monolithic design underpins its reliability and performance uniformity across various environments, from sophisticated audio systems to precise instrumentation setups.
• Large Common Mode and Differential Voltage Range: The KA4558 features an expansive voltage range for both common-mode and differential-mode inputs. This capability allows the amplifier to process signals with varying voltage levels effectively, making it suitable for a wide range of applications, from audio processing to industrial controls.
• Parameter Tracking Over Temperature Range: The device maintains consistent performance across a wide temperature range, ensuring reliability in environments with fluctuating or extreme temperatures. This temperature stability is essential for maintaining accuracy and performance in critical applications.
• Gain and Phase Match Between Amplifiers: The KA4558 is designed with matched gain and phase characteristics between its two internal amplifiers. This feature ensures balanced performance, making it ideal for applications requiring precise signal processing, such as stereo audio systems and differential signal amplification.
• Internally Frequency-Compensated: The KA4558 comes with built-in frequency compensation, simplifying circuit design by eliminating the need for external compensation components. This feature enhances the IC's ease of use and reduces the complexity of the overall system design.
• No Frequency Compensation Required: Thanks to its internal compensation, the KA4558 does not require external components for frequency stability. This reduces design effort and minimizes the risk of instability in high-gain or complex circuits.
• No Latch-Up: The device is engineered to prevent latch-up, a condition where the IC becomes stuck in a high-current state due to voltage spikes or other disturbances. This protection enhances the amplifier’s robustness and ensures reliable operation in demanding environments.
The KA4558 is an adaptable operational amplifier with significant uses in signal processing and industrial sectors, primarily due to its dependable amplification abilities. The amplifier's appeal in these fields is a result of its unique qualities and expanding range of specialized applications.
In the diverse world of signal processing, the KA4558 is distinguished by its capacity to offer stable performance across different setups. Its dual-channel design efficiently manages audio and visual signals. Sound engineering professionals regularly choose this operational amplifier for its low noise output, which preserves the purity of audio signals. It smoothly integrates into circuits to reduce distortion, becoming a favored component in systems aimed at enhancing audio quality.
In the industrial landscape, the KA4558 is prized for its sturdy dependability. It holds a pivotal position in sensor signal conditioning, where precise readings are crucial. Engineers have consistently leaned on the KA4558 for its adeptness at amplifying fragile sensor signals within industrial machinery. By substantially reducing signal loss, this operational amplifier aids the smooth functioning of automated equipment and controls.
• NE3552
• JRC4558
The KA4558 from ON Semiconductor presents an impressive array of technical properties, catering to a variety of applications within audio and communication devices. The table below is the technical specifications, attributes, and parameters ON Semiconductor KA4558.
Type |
Parameter |
Lifecycle Status |
LIFETIME (Last Updated: 1 day ago) |
Mount |
Through Hole |
Mounting Type |
Through Hole |
Package / Case |
8-DIP (0.300, 7.62mm) |
Number of Pins |
8 |
Weight |
851mg |
Number of Elements |
2 |
Operating Temperature |
0°C~70°C |
Packaging |
Tube |
Published |
2001 |
JESD-609 Code |
e3 |
Pbfree Code |
yes |
Part Status |
Last Time Buy |
Moisture Sensitivity Level (MSL) |
1 (Unlimited) |
Number of Terminations |
8 |
ECCN Code |
EAR99 |
Terminal Finish |
Tin (Sn) |
Terminal Position |
DUAL |
Number of Functions |
2 |
Supply Voltage |
15V |
Base Part Number |
KA4558 |
Operating Supply Voltage |
44V |
Power Supplies |
+-15V |
Operating Supply Current |
3.5mA |
Nominal Supply Current |
5.8mA |
Power Dissipation |
400mW |
Slew Rate |
1.2V/μs |
Architecture |
VOLTAGE-FEEDBACK |
Amplifier Type |
General Purpose |
Common Mode Rejection Ratio |
70 dB |
Current - Input Bias |
30nA |
Input Offset Voltage (Vos) |
6mV |
Neg Supply Voltage-Nom (Vsup) |
-15V |
Unity Gain BW-Nom |
3000 kHz |
Voltage Gain |
106.02dB |
Average Bias Current-Max (IIB) |
0.5μA |
Power Supply Rejection Ratio (PSRR) |
76dB |
Low-Offset |
NO |
Frequency Compensation |
YES |
Voltage - Input Offset |
2mV |
Max Dual Supply Voltage |
22V |
Bias Current-Max (IIB) @25C |
0.5μA |
Height |
3.4mm |
Length |
9.6mm |
Width |
6.4mm |
Radiation Hardening |
No |
RoHS Status |
ROHS3 Compliant |
Lead Free |
Lead Free |
Parameter |
KA4558 |
LF353N
|
LM2904WN
|
LM258N
|
KF353
|
Manufacturer |
ON Semiconductor |
ON Semiconductor |
STMicroelectronics |
ON Semiconductor |
ON Semiconductor |
Package / Case |
8-DIP (0.300, 7.62mm) |
8-DIP (0.300, 7.62mm) |
8-DIP (0.300, 7.62mm) |
8-DIP (0.300, 7.62mm) |
8-DIP (0.300, 7.62mm) |
Number of Pins |
8 |
8 |
8 |
8 |
8 |
Slew Rate |
1.2V/μs |
13V/μs |
0.3V/μs |
0.6V/μs |
13V/μs |
Input Offset Voltage |
6mV |
10mV |
5mV |
7mV |
10mV |
Power Supply Rejection Ratio (PSRR) |
76dB |
70dB |
65dB |
- |
70dB |
Common Mode Rejection Ratio (CMRR) |
70dB |
70dB |
70dB |
70dB |
70dB |
Supply Voltage |
15V |
15V |
5V |
5V |
15V |
Max Dual Supply Voltage |
22V |
18V |
- |
- |
18V |
ON Semiconductor (Nasdaq: ON) has taken a leading role in promoting energy-efficient technology. Their impact spans automotive, communications, computing, consumer electronics, and industrial equipment sectors. As industries strive to meet environmental standards and satisfy consumer expectations, ON Semiconductor's solutions become increasingly valuable. They enhance energy efficiency, contributing to lower energy consumption and operational costs—an endeavor that resonates strongly in an era focused on climate change.
2024-11-16
2024-11-16
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