Special Purpose Amplifiers 100kHz 1500Vdc Hermetically sealed
5962-9755701HPC: Special Purpose Amplifiers 100kHz 1500Vdc Hermetically sealed
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Number of Channels : | Single | Common Mode Rejection Ratio (Min) : | 69 dB | ||
Available Set Gain : | 26.02 dB | Input Offset Voltage : | 5 mV | ||
Supply Current : | 15.5 mA | Maximum Operating Temperature : | + 125 C | ||
Minimum Operating Temperature : | - 55 C | Mounting Style : | Through Hole |
The 5962-9755701HPC is a high reliability DSCC SMD Class H isolation amplifier that provides accurate, electrically isolated and amplified representations of voltage and current. When used with a shunt resistor to monitor the motor phase current in a high speed motor drive, the 5962-9755701HPC will offer superior reliability compared with the traditional solutions such as current transformers and Hall-effect sensors. This 5962-9755701HPC consists of a sigma-delta analog-to-digital converter optically coupled to a digital-to-analog converter in a hermetically sealed 8-Pin ceramic DIP package with gold plated leads. Solder dipped leads and various lead form options are also available. See the datasheet for details.
The 5962-9755701HPC are capable of operation and storage over the full military temperature range and may also be purchased as commercial grade. The 5962-9755701HPC is manufactured and tested on a MIL-PRF-38534 cerified line and included in the DSCC Qualified Manufacturers List, QML-38534 for Hybrid Microcircuits.
Superior performance of 5962-9755701HPC in design critical specifications such as common-mode rejection, offset voltage, nonlinearity, and operating temperature make this product an excellent choice for designing reliable products such as motor controllers and inverters.
Common-mode rejection of 8 kV/micro-second makes the HCPL-7850/7851 suitable for noisy electrical environments such as those generated by the high switching rates of power IGBTs.
Low offset voltage of 5962-9755701HPC together with a low offset voltage temperature coefficient permits accurate use of auto-calibration techniques.
Gain tolerance of 5% with 0.1% nonlinearity further provide the performance necessary for accurate feedback and control.