CA-IS3861HW is a Replacement parts of
ISO7861DW
CA-IS3861HW has good quality and a cheaper price, which can effectively help you reduce costs and make your products more competitive. In addition, we have sufficient supply and stable price of this parts, which can greatly help you to avoid problems such as price increases and parts shortages of similar products from other brands.
Mfr.Part No. :
CA-IS3861HWManufacturer :
ChipanalogDescription :
High Speed Six Channel Digital IsolatorsPackaging :
ReelPackage :
SOIC-16-WBStock :
in stockPrice :
$0.78-$1.35
CA-IS3861HW
Price: | $0.78-$1.35 | $3.8-$4.9 |
Replace parts:
Replacement parts:
Alternative parts:
Pin to pin parts:
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CA-IS3861HW |
ISO7861DW
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The CA-IS3861HW is a cutting-edge digital isolator designed for high-performance applications in industries such as automotive, industrial automation, and telecommunications. With features such as high isolation voltage, low power consumption, and superior data transmission rates, the CA-IS3861HW stands out in comparison to the ISO7861DW from Texas Instruments. This document outlines the differences and highlights the competitive advantages of the CA-IS3861HW.
CA-IS3861HW: The CA-IS3861HW offers an impressive 5kV isolation voltage, ensuring robust protection against high-voltage transients and spikes. This level of isolation is ideal for industrial, automotive, and telecommunications applications where high levels of protection are required to maintain system integrity in harsh environments. The 5kV isolation ensures the safety of both the device and the system, preventing damage from electrical surges and ensuring long-term reliability.
ISO7861DW: The ISO7861DW provides a 3.75kV isolation voltage, which, while suitable for many applications, falls short of the CA-IS3861HW's 5kV isolation. This difference in isolation voltage gives the CA-IS3861HW a clear advantage in applications where high-voltage isolation is critical, such as in industrial machinery or automotive ECUs, where electrical noise and transients can cause significant damage to electronic components.
CA-IS3861HW: The CA-IS3861HW supports high-speed data transmission, with a maximum data rate of 100Mbps. This high-speed capability is essential for applications that require rapid data processing and low latency, such as real-time control systems and data-intensive communications. The CA-IS3861HW’s ability to transmit large volumes of data quickly and with minimal delay makes it ideal for systems that demand performance.
ISO7861DW: The ISO7861DW supports a maximum data rate of 25Mbps, which is significantly lower than the CA-IS3861HW. While this data rate is sufficient for many standard applications, it limits the ISO7861DW’s performance in high-speed systems. The CA-IS3861HW’s higher data rate of 100Mbps ensures faster communication between system components, making it a better choice for modern, high-speed applications where minimizing latency is critical.
CA-IS3861HW: The CA-IS3861HW excels in power efficiency, offering an ultra-low standby current of 1.5µA. This makes it highly suitable for battery-powered devices, IoT systems, and applications where low power consumption is essential. The low power draw ensures that the system operates efficiently, extending battery life and reducing the need for frequent maintenance.
ISO7861DW: While the ISO7861DW is also designed with power efficiency in mind, it has a higher standby current compared to the CA-IS3861HW. This higher standby current can be a limiting factor in low-power applications where energy conservation is a key requirement. The CA-IS3861HW offers a distinct advantage in terms of ultra-low power operation, especially for battery-operated systems.
CA-IS3861HW: The CA-IS3861HW is engineered to operate in an extended temperature range of -40°C to +125°C, making it suitable for use in a wide variety of harsh environments. This broad temperature range ensures that the chip will perform reliably in extreme conditions, whether in automotive applications exposed to temperature fluctuations or industrial control systems operating in challenging climates.
ISO7861DW: The ISO7861DW offers a temperature range of -40°C to +105°C, which is narrower compared to the CA-IS3861HW. While this range is suitable for many industrial applications, it may not offer the same level of durability and performance in extreme temperature environments, giving the CA-IS3861HW a clear advantage in demanding conditions.
CA-IS3861HW: The CA-IS3861HW offers enhanced EMI immunity, making it highly resistant to electromagnetic noise and interference. This feature is critical for applications in industries like automotive and industrial automation, where electronic systems are often exposed to high levels of EMI. The superior EMI immunity of the CA-IS3861HW ensures that data transmission remains reliable and free from errors caused by electromagnetic disturbances.
ISO7861DW: While the ISO7861DW also offers some level of EMI protection, it does not provide the same degree of immunity as the CA-IS3861HW. The CA-IS3861HW’s superior resistance to EMI gives it a significant advantage in environments with high electromagnetic noise, ensuring more stable and consistent operation.
Higher Voltage Isolation: The CA-IS3861HW offers 5kV isolation, compared to the ISO7861DW's 3.75kV, providing greater protection against high-voltage transients and improving system safety.
Faster Data Rates: The CA-IS3861HW supports a maximum data rate of 100Mbps, which is four times faster than the ISO7861DW’s 25Mbps, enabling faster communication and reduced latency in high-speed applications.
Lower Power Consumption: With an ultra-low standby current of 1.5µA, the CA-IS3861HW is more power-efficient than the ISO7861DW, making it ideal for battery-powered systems and energy-sensitive applications.
Wider Temperature Range: The CA-IS3861HW operates in an extended temperature range of -40°C to +125°C, offering better durability and reliability in harsh environmental conditions compared to the ISO7861DW's -40°C to +105°C range.
Superior EMI Immunity: The CA-IS3861HW provides enhanced EMI immunity, making it more resilient to electromagnetic interference, which is crucial for maintaining data integrity in high-noise environments.
The CA-IS3861HW offers several distinct advantages over the ISO7861DW, including higher voltage isolation, faster data rates, lower power consumption, wider temperature range, and superior EMI immunity. These features make the CA-IS3861HW an ideal choice for demanding applications in automotive, industrial, and telecommunications sectors, where reliability, safety, and performance are of utmost importance. The CA-IS3861HW’s superior specifications provide a clear competitive edge, ensuring it delivers optimal performance in environments where both safety and efficiency are critical.
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