TI BQ35100PWR
| Manufacturer | |
| MPN | BQ35100PWR |
| LCSC Part # | C469863 |
| Packaging | TSSOP-14 |
| Customer # | |
| Key Attributes | Lithium Primary Battery Fuel Gauge and End-Of-Service Monitor |
| Datasheet |
Products Specifications
Show similar products (0) >| Type | Description | |
|---|---|---|
| Category | Integrated Circuits (ICs)/Power Management (PMIC)/Battery Management | |
| Manufacturer | TI | |
| Packaging | TSSOP-14 | |
| Features | - | |
| Operating Temperature | -40℃~+85℃ | |
| Quiescent Current | 50nA | |
| 0V Battery Charge | Not supported | |
| Operating Voltage | 2.7V~4.5V | |
| Type of Battery | Lithium Battery | |
| The Chip Type | Monitoring IC | |
| Interface | I2C | |
| Balance Current | - | |
| Charge Current - Max | - |
Additional Information
| Type | Details |
|---|---|
| Minimum | 1 |
| Multiple | 1 |
| Standard Packaging | 2000 |
| Sales Unit | Piece |
| EDA Models | EasyEDA Model |
Introduction
The BQ35100 Battery Fuel Gauge and End-OfService Monitor provides highly configurable fuel gauging for non-rechargeable (primary) lithium batteries without requiring a forced discharge of the battery. Built so that optimization is not necessary to achieve accurate gauging, the BQ35100 device uses patented TI gauging algorithms to support the option to seamlessly replace an old battery with a new one. The BQ35100 device provides accurate results with ultra-low average power consumption where less than 2 μA can be achieved through host control via the GAUGE ENABLE (GE) pin. The device is only required to be powered long enough, at a system-determined update frequency, to gather data and to make calculations to support the selected algorithm. A typical system may need to only be updated once every 8 hours as the gauge is not required to be powered to measure all discharge activity. The fuel gauging functions use voltage, current, and temperature measurements to provide state-of-health (SOH) data and end-of-service (EOS) warning information where the host can read the gathered data through a 400-kHz I²C bus. An ALERT output, based on a variety of configurable status and data options, is also available to interrupt the host.
Features
- Fuel gauge and battery diagnostics for flow meter applications predict end-of-service or early battery failure
- Supports lithium thionyl chloride (Li·SOCl₂) and lithium manganese dioxide (Li - MnO₂) chemistry batteries
- Accurate voltage, temperature, current, and coulomb counter measurements that report battery health and service life
- State-of-health (SOH) algorithm for Li - MnO₂, End-of-service (EOS) algorithm for Li·SOCl₂, Coulomb accumulation (ACC) algorithm for all battery types
- Ultra-low average power consumption to maximize battery run time. Gauge enabled through host-controlled periodic updates. State-of-health (SOH) ~0.06 μA, End-of-service (EOS) ~0.35 μA, Coulomb accumulation (ACC) diagnostic updates ~0.3 μA
- System interaction capabilities: I²C host communication, providing battery parameter and status access. Configurable host interrupt. Battery information data logging options for in operation diagnostics and failure analysis. SHA-1 authentication to help prevent counterfeit battery use
Applications
- Used in primary battery systems and suitable for dynamic load and large ambient temperature change applications
- Smart meters and flow meters
- Door access control
- Smoke and gas leak detectors
- Building automation
- IoT, including sensor nodes
- Asset tracking
- Battery status reporting and diagnostics with early failure detection for flow meter systems
- Extends battery runtime with accurate battery gauging for smoke detector, sensor node, and asset tracker applications
| Qty | Unit Price | Total Amount |
|---|---|---|
| 1+ | $ 3.201 | $ 3.20 |
| 10+ | $ 2.7131 | $ 27.13 |
| 30+ | $ 2.3309 | $ 69.93 |
| 100+ | $ 2.0186 | $ 201.86 |
| 500+ | $ 1.8771 | $ 938.55 |
| 1,000+ | $ 1.8152 | $ 1815.20 |
Standard Packaging2000/Full Reel | ||
Products Specifications
Show similar products (0) >| Type | Description | |
|---|---|---|
| Category | Integrated Circuits (ICs)/Power Management (PMIC)/Battery Management | |
| Manufacturer | TI | |
| Packaging | TSSOP-14 | |
| Features | - | |
| Operating Temperature | -40℃~+85℃ | |
| Quiescent Current | 50nA | |
| 0V Battery Charge | Not supported | |
| Operating Voltage | 2.7V~4.5V | |
| Type of Battery | Lithium Battery | |
| The Chip Type | Monitoring IC | |
| Interface | I2C | |
| Balance Current | - | |
| Charge Current - Max | - |
Additional Information
| Type | Details |
|---|---|
| Minimum | 1 |
| Multiple | 1 |
| Standard Packaging | 2000 |
| Sales Unit | Piece |
| EDA Models | EasyEDA Model |
Introduction
The BQ35100 Battery Fuel Gauge and End-OfService Monitor provides highly configurable fuel gauging for non-rechargeable (primary) lithium batteries without requiring a forced discharge of the battery. Built so that optimization is not necessary to achieve accurate gauging, the BQ35100 device uses patented TI gauging algorithms to support the option to seamlessly replace an old battery with a new one. The BQ35100 device provides accurate results with ultra-low average power consumption where less than 2 μA can be achieved through host control via the GAUGE ENABLE (GE) pin. The device is only required to be powered long enough, at a system-determined update frequency, to gather data and to make calculations to support the selected algorithm. A typical system may need to only be updated once every 8 hours as the gauge is not required to be powered to measure all discharge activity. The fuel gauging functions use voltage, current, and temperature measurements to provide state-of-health (SOH) data and end-of-service (EOS) warning information where the host can read the gathered data through a 400-kHz I²C bus. An ALERT output, based on a variety of configurable status and data options, is also available to interrupt the host.
Features
- Fuel gauge and battery diagnostics for flow meter applications predict end-of-service or early battery failure
- Supports lithium thionyl chloride (Li·SOCl₂) and lithium manganese dioxide (Li - MnO₂) chemistry batteries
- Accurate voltage, temperature, current, and coulomb counter measurements that report battery health and service life
- State-of-health (SOH) algorithm for Li - MnO₂, End-of-service (EOS) algorithm for Li·SOCl₂, Coulomb accumulation (ACC) algorithm for all battery types
- Ultra-low average power consumption to maximize battery run time. Gauge enabled through host-controlled periodic updates. State-of-health (SOH) ~0.06 μA, End-of-service (EOS) ~0.35 μA, Coulomb accumulation (ACC) diagnostic updates ~0.3 μA
- System interaction capabilities: I²C host communication, providing battery parameter and status access. Configurable host interrupt. Battery information data logging options for in operation diagnostics and failure analysis. SHA-1 authentication to help prevent counterfeit battery use
Applications
- Used in primary battery systems and suitable for dynamic load and large ambient temperature change applications
- Smart meters and flow meters
- Door access control
- Smoke and gas leak detectors
- Building automation
- IoT, including sensor nodes
- Asset tracking
- Battery status reporting and diagnostics with early failure detection for flow meter systems
- Extends battery runtime with accurate battery gauging for smoke detector, sensor node, and asset tracker applications
Compliance & Export Codes
| Type | Details |
|---|---|
| RoHS | |
| ECCN | EAR99 |
| CNHTS | 8542399000 |
| USHTS | 8542390001 |
| TARIC | 8542399000 |
| CAHTS | 8542390000 |
| BRHTS | 85423999 |
| INHTS | 85423900 |
| MXHTS | 8542.39.99 |
| Type | Details |
|---|---|
| RoHS | |
| ECCN | EAR99 |
| CNHTS | 8542399000 |
| USHTS | 8542390001 |
| TARIC | 8542399000 |
| Type | Details |
|---|---|
| CAHTS | 8542390000 |
| BRHTS | 85423999 |
| INHTS | 85423900 |
| MXHTS | 8542.39.99 |



