CA-IS1311BG
CA-IS1311BG is Reinforced Isolated Amplifier manufactured by Chipanalog.
- Part of the CA-IS1311G comparator family.
- Part of the CA-IS1311G comparator family.
Shanghai Chipanalog Microelectronics Co., Ltd.
CA-IS1311G, CA-IS1311BG
Version 1.06
CA-IS1311 5-k VRMS Reinforced Isolated Amplifier for Voltage Sensing
1 Key Features
- Input Voltage Range:
- 0.1 V to 2 V
- High Input Impedance: 1 GΩ (typ)
- Fixed Initial Gain: 1
- Low Input Offset and Drift:
±1.5 m V (max) at 25°C, ±15 μV/°C (max)
- Low Gain Error and Drift:
±0.3% (max) at 25°C, ±40 ppm/°C (max)
- 3.3-V or 5-V Operation for Both High- and Low-Side
- Wide Operating Temperature Range:
- 40°C to 125°C
- High CMTI: ±150 k V/µs (typ, CA-IS1311BG)
- Safety-Related Certifications
- VDE certification according to DIN EN IEC 6074717(VDE 0884-17):2021-10
- UL certification according to UL 1577
- CQC certification according to GB4943.1-2022
- TUV certification
- >40-year Life at Rated Working Voltage
2 Applications
- Industrial Motor Controls and Drives
- Isolated Switch Mode Supplies
- Uninterruptible Power Supplies
3 Description
The CA-IS1311 devices are high-precision reinforced isolated amplifiers and optimized for voltage sensing. Low offset and gain error and drift guarantee that measuring accuracy is maintained over the entire operating temperature range.
The CA-IS1311 devices utilize silicon oxide (Si O2) isolation barriers and support up to 5-k VRMS galvanic isolation per UL 1577. This technology separates high- and low-voltage domain to protect lower-voltage parts from damage and provides low emissions as well as strong anti-interference capability from magnetic changes. The high mon-mode transient immunity (CMTI) means that the CA-IS1311 devices transmit correct signals through isolation barriers and are suitable for industrial motor controls and drives which require high-voltage and high-power switching. The internal missing or undervoltage lockout (UVLO) of highside supply voltage detection functions contribute to fault diagnostics and system...