Integrated Device Technology Data Acquisition System Basis Chip ZSSC1751EA3R

Description
The ZSSC1751 is a System Basis Chip ( SBC ) with a dual-channel ADC for battery sensing/management in automotive, industrial, and medical systems. The ZSSC1751 features an SPI interface and an integrated LIN 2.1 transceiver. One of the two input channels measures the battery current IBAT via the voltage drop at the external shunt resistor. The second channel measures the battery voltage VBAT and the temperature. By simultaneously measuring VBAT and IBAT , it is possible to determine dynamically the internal resistance of the battery, Rdi, which is correlated with the state-of-health ( SOH ) of the battery. By integrating IBAT , it is possible to determine the state-of-charge ( SOC ) and the state-of-function ( SOF ) of the battery. During Sleep Mode, the system makes periodic measurements to monitor the discharge of the battery. Measurement cycles are controlled by user software and include various wake-up conditions. The ZSSC1751 is optimized for ultra-low power consumption drawing only 60μA or less in this mode. The related product ZSSC1750 offers the same functionality with an additional LIN interface feature.
Datasheet
Description
The ZSSC1751 is a System Basis Chip ( SBC ) with a dual-channel ADC for battery sensing/management in automotive, industrial, and medical systems. The ZSSC1751 features an SPI interface and an integrated LIN 2.1 transceiver. One of the two input channels measures the battery current IBAT via the voltage drop at the external shunt resistor. The second channel measures the battery voltage VBAT and the temperature. By simultaneously measuring VBAT and IBAT , it is possible to determine dynamically the internal resistance of the battery, Rdi, which is correlated with the state-of-health ( SOH ) of the battery. By integrating IBAT , it is possible to determine the state-of-charge ( SOC ) and the state-of-function ( SOF ) of the battery. During Sleep Mode, the system makes periodic measurements to monitor the discharge of the battery. Measurement cycles are controlled by user software and include various wake-up conditions. The ZSSC1751 is optimized for ultra-low power consumption drawing only 60μA or less in this mode. The related product ZSSC1750 offers the same functionality with an additional LIN interface feature.
Datasheet

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Data Acquisition System Basis Chip - ZSSC1751EA3R - Integrated Device Technology
San Jose, CA, USA
Data Acquisition System Basis Chip
ZSSC1751EA3R
Data Acquisition System Basis Chip ZSSC1751EA3R
The ZSSC1751 is a System Basis Chip ( SBC ) with a dual-channel ADC for battery sensing/management in automotive, industrial, and medical systems. The ZSSC1751 features an SPI interface and an integrated LIN 2.1 transceiver. One of the two input channels measures the battery current IBAT via the voltage drop at the external shunt resistor. The second channel measures the battery voltage VBAT and the temperature. By simultaneously measuring VBAT and IBAT , it is possible to determine dynamically the internal resistance of the battery, Rdi, which is correlated with the state-of-health ( SOH ) of the battery. By integrating IBAT , it is possible to determine the state-of-charge ( SOC ) and the state-of-function ( SOF ) of the battery. During Sleep Mode, the system makes periodic measurements to monitor the discharge of the battery. Measurement cycles are controlled by user software and include various wake-up conditions. The ZSSC1751 is optimized for ultra-low power consumption drawing only 60μA or less in this mode. The related product ZSSC1750 offers the same functionality with an additional LIN interface feature.

The ZSSC1751 is a System Basis Chip ( SBC ) with a dual-channel ADC for battery sensing/management in automotive, industrial, and medical systems. The ZSSC1751 features an SPI interface and an integrated LIN 2.1 transceiver. One of the two input channels measures the battery current IBAT via the voltage drop at the external shunt resistor. The second channel measures the battery voltage VBAT and the temperature. By simultaneously measuring VBAT and IBAT , it is possible to determine dynamically the internal resistance of the battery, Rdi, which is correlated with the state-of-health ( SOH ) of the battery. By integrating IBAT , it is possible to determine the state-of-charge ( SOC ) and the state-of-function ( SOF ) of the battery. During Sleep Mode, the system makes periodic measurements to monitor the discharge of the battery. Measurement cycles are controlled by user software and include various wake-up conditions. The ZSSC1751 is optimized for ultra-low power consumption drawing only 60μA or less in this mode.
The related product ZSSC1750 offers the same functionality with an additional LIN interface feature.

Supplier's Site Datasheet

Technical Specifications

  Integrated Device Technology
Product Category Sensor Chips
Product Number ZSSC1751EA3R
Product Name Data Acquisition System Basis Chip
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