BQ27Z746YAHR — Texas Instruments Single-Cell Impedance Track Fuel Gauge with Integrated Protection and SHA-256 Authentication

Texas Instruments BQ27Z746YAHR is a single-cell pack-side Impedance Track fuel gauge with integrated protection, high-side FET drive, SHA-256 authentication, 16-bit current/voltage measurement, I²C communication, and very low-power storage modes. Sense-resistor value, protection thresholds, FET topology, and authentication provisioning are key system-level selection points.

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Texas Instruments

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Key Selection Information

Selection Parameter Confirmed Information
Battery Configuration 1-series Li-Ion / Li-Polymer pack
Gauging Method Impedance Track technology
Protection Integrated voltage/current protection with high-side protection FET drive
Authentication SHA-256 responder
Current Measurement 16-bit coulomb-counting ADC; 1 mΩ to 20 mΩ external sense resistor range
Host Interface I²C up to 400 kHz
Low-Power Modes 20 µA SLEEP, 10 µA SHIP, 5 µA SHELF, 0.2 µA SHUTDOWN stated typical features
Exact Package / Packing DSBGA (YAH), 15 balls; 3000-piece large tape and reel

Product Overview

BQ27Z746YAHR combines single-cell fuel gauging, pack protection, authentication, and FET control in one compact DSBGA device. Its Impedance Track algorithm models battery behavior and adapts gauging for aging, temperature, and rate effects, while the protection subsystem monitors voltage, current, temperature, and short-circuit conditions.

This is a pack-management device rather than only a state-of-charge monitor. The same design must coordinate sense-resistor placement, CHG/DSG gate-drive behavior, protection thresholds, thermistor measurement, and authentication provisioning. Selection therefore depends on whether the battery pack is intended to own these safety and security functions internally.

BQ27Z746 supports both high-side and low-side current sensing for a 1S pack. The coulomb counter accepts a 1 mΩ to 20 mΩ external sense-resistor range; resistor value determines measurement signal magnitude and power loss and must be matched to the pack current range.

For related devices, see HKEQGOO’s Battery Management category.

BQ27Z746YAHR product view

Technical Specifications

Parameter Verified Information
Manufacturer Texas Instruments
Exact MPN BQ27Z746YAHR
Cell Count 1 series cell
Fuel-Gauge Algorithm Impedance Track
Authentication SHA-256
Coulomb Counter 16-bit integrating ADC, 3.74 µV stated resolution
General ADC 16-bit delta-sigma ADC, 38 µV stated resolution
Sense Resistor 1 mΩ to 20 mΩ recommended range
Temperature Measurement Internal sensor plus 10 kΩ NTC support
Interface I²C compatible, 400 kHz
Protection OVP, UVP, OCC, OCD, SCD plus firmware temperature protection
FET Drive High-side N-channel protection FET drivers
Supply Range VDD 2.0 V to 5.5 V recommended
Package DSBGA (YAH), 15 balls, 1.69 mm × 2.57 mm nominal body
Manufacturer Status Active / Production
Part Marking BQ27Z746

Functional Highlights

Gauging and protection share the same current-sense path

The coulomb counter measures the differential voltage across SRP and SRN while the protection logic also uses current information to evaluate overcurrent and short-circuit events. The sense resistor is therefore a joint gauging/protection component. Reducing resistance lowers dissipation but also reduces signal amplitude; increasing it improves signal level while increasing I²R loss.

High-side FET drive supports a smart-pack protection architecture

The device controls protection FETs while maintaining a pack-based communication and measurement architecture. FET ratings, gate network, pack connector arrangement, and fault-recovery policy should be reviewed as one system rather than as separate gauge and protector blocks.

Authentication belongs to the manufacturing flow

SHA-256 capability can be used to authenticate a battery pack, but the security benefit depends on provisioning, host challenge/response implementation, key handling, and manufacturing controls. Adding the device does not by itself create an authenticated pack unless those processes are implemented correctly.

Design Considerations

  • Select the shunt from both measurement resolution and pack loss. The 1 mΩ to 20 mΩ range spans very different voltage drop and dissipation at high current.
  • Choose high-side or low-side current sensing before laying out the pack. The approaches change common-mode and connector/reference routing.
  • Coordinate protection thresholds with cell and FET ratings. Voltage, current, short-circuit and temperature settings must match actual pack components.
  • Treat authentication keys as production assets. Device capability is only one part of a secure pack-authentication system.
  • Use the low-power modes deliberately. SLEEP, SHIP, SHELF and SHUTDOWN serve different storage and runtime goals.

Product Status and Exact Order Code

Manufacturer status: Active / Production

Texas Instruments lists BQ27Z746YAHR in the 15-ball DSBGA YAH package with a 3000-piece large tape-and-reel carrier, Level-1-260C-UNLIM MSL classification, an operating-temperature listing of −40°C to +85°C, and part marking BQ27Z746.

Related Engineering Resources

Quality & Verification Support

Third-party inspection or testing can be arranged according to customer requirements. Testing fees are borne by the buyer. Additional verification requirements can be discussed before shipment. After an order is placed, physical product, label, packaging, and Date Code photos may be provided where appropriate.

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Package

DSBGA-15