Features
- Buck-boost NVDC charger for 1-, 2-, 3-, or 4-cell Li-ion batteries
- Input voltage range 3.2V to 23.4V (no dead zone)
- System output voltage 2.4V to 18.304V
- Autonomous charging option (automatic end of charging)
- System power monitor PSYS output, IMVP compliant
- Up to 1MHz switching frequency
- Adapter current and battery current monitor (AMON/BMON)
- PROCHOT# open-drain output, IMVP compliant
- Allows trickle charging of a depleted battery
- Ideal diode control in Turbo mode
- Reverse buck, boost, and buck-boost operation from battery
- Two-level adapter current limit available
- Battery Ship mode option
- SMBus and auto-increment I2C compatible
- 4mm x 4mm 32 Ld TQFN package
Description
The ISL9238 is a buck-boost Narrow Output Voltage DC (NVDC) charger. The ISL9238 provides the NVDC charging, system bus regulation and protection features for tablet, Ultrabook, notebook, power bank, and any USB-C interface platform. The advanced Renesas R3™ Technology provides high light-load efficiency and fast transient response. In Charging mode, the ISL9238 takes input power from a wide range of DC power sources (such as conventional AC/DC charger adapters, USB PD ports, and travel adapters) and safely charges battery packs with up to 4-series cell Li-ion batteries. As a NVDC topology charger, it also regulates the system output to a narrow DC range for stable system bus voltage. The system power can be provided from the adapter, battery, or a combination of both. The ISL9238 can operate with only a battery, only an adapter, or both connected. For Intel IMVP8 compliant systems the ISL9238 includes System Power monitor (PSYS) functionality, which provides an analog signal representing total platform power. The PSYS output connects to a wide range of IMVP8 core regulators to provide an IMVP8 compliant power domain function. The ISL9238 supports reverse buck, boost, or buck-boost operation to input port from 2- to 4-cell batteries. The ISL9238 has serial communication using SMBus/I2C that allows programming of many critical parameters to deliver a customized solution.
Parameters
| Attributes | Value |
|---|---|
| Topology [Rail 1] | Buck-Boost |
| Input Voltage (Min) (V) | 3.2 |
| Input Voltage (Max) (V) | 23.4 |
| Input Current Limit Accuracy (% (±)) | 2 |
| Battery Charge Voltage | 2.4 to 18.304 |
| Charging Voltage Accuracy (Max) (±%) | -1.1, 0.5 |
| Battery Charge Voltage Adjustment | 8mV steps |
| Charge Current Limit Accuracy | ±2 (4A, CSOP - CSON = 60mV) |
| Trickle Charge Current Range | 64mA, 128mA, 256mA, or 512mA |
| Switching Frequency Range (Typical) (kHz) | 635 - 1000 |
Package Options
| Pkg. Type | Pkg. Dimensions (mm) | Lead Count (#) | Pitch (mm) |
|---|---|---|---|
| TQFN | 4.0 x 4.0 x 0.70 | 32 | 0.4 |
Applications
- 1 to 4-cell tablets
- Ultrabooks
- Notebooks
- Power banks
- Any USB-C interface portable device requiring batteries
| Part Number | Status | Samples | Stock | RoHS | Package | Budgetary Price (USD) | Lead Count (#) | Carrier Type | Moisture Sensitivity Level (MSL) | Charging Voltage Accuracy (Max) (±%) | Pb (Lead) Free | Pb Free Category | Temp. Range (°C) | Country of Assembly | Country of Wafer Fabrication |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| ISL9238HRTZ | Active | Available | In Stock | RoHS:EN | VFQFPN | 1ku | $3.5 | 32# | Tray | 3 | 0.5±% | Yes | Pb-Free 100% Matte Tin Plate w/Anneal-e3 | -10 to +100°C | MALAYSIA, TAIWAN | TAIWAN |
| ISL9238HRTZ-T | Active | Available | In Stock | RoHS:EN | VFQFPN | 1ku | $3.5 | 32# | Reel | 3 | 0.5±% | Yes | Pb-Free 100% Matte Tin Plate w/Anneal-e3 | -10 to +100°C | MALAYSIA, TAIWAN | TAIWAN |
| ISL9238HRTZ-T7A | Active | Available | In Stock | RoHS:EN | VFQFPN | 1ku | $7.82 | 32# | Reel | 3 | 0.5±% | Yes | Pb-Free 100% Matte Tin Plate w/Anneal-e3 | -10 to +100°C | MALAYSIA, TAIWAN | TAIWAN |
| ISL9238HRTZ-TK | Active | Available | In Stock | RoHS:EN | VFQFPN | 1ku | $3.5 | 32# | Reel | 3 | 0.5±% | Yes | Pb-Free 100% Matte Tin Plate w/Anneal-e3 | -10 to +100°C | MALAYSIA, TAIWAN | TAIWAN |
| ISL9238IRTZ | Active | Available | In Stock | RoHS:EN | VFQFPN | 1ku | $3.89 | 32# | Tray | 3 | -1.1±% | Yes | Pb-Free 100% Matte Tin Plate w/Anneal-e3 | -40 to +100°C | MALAYSIA, TAIWAN | TAIWAN |
| ISL9238IRTZ-T | Active | Available | In Stock | RoHS:EN | VFQFPN | 1ku | $3.89 | 32# | Reel | 3 | -1.1±% | Yes | Pb-Free 100% Matte Tin Plate w/Anneal-e3 | -40 to +100°C | MALAYSIA, TAIWAN | TAIWAN |
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- Product AdvisoryPDF 232 KB Mar 06, 2026
- Product Change NoticePDF 169 KB Nov 17, 2022
- Product Change NoticePDF 179 KB Nov 19, 2021
- Product Change NoticePDF 326 KB May 21, 2021
- Product Change NoticePDF 158 KB PCN21005 Jan 25, 2021
- White PaperThe introduction of USB-C has transformed power delivery in laptops and mobile devices, combining power and data transfer in one port. As USB-C adoption grows, designers must rethink traditional power architectures. This paper explores charging topologies that deliver efficiency, flexibility, and compact design, using a buck-boost approach optimized for modern devices.
- Product Change NoticePDF 280 KB PCN18012 Jun 01, 2018
- White PaperPDF 320 KB new-architecture-for-usb-type-c-applications Feb 09, 2018USB Type-C enables reversible, high-power charging and data transfer through a single connector. As device makers adopt USB-C, performance demands on voltage regulators increase. This paper introduces a simplified power architecture using Renesas’ buck-boost regulator and battery charger, enabling flexible, programmable USB-C power solutions for both hosts and adapters.
- Product Change NoticePDF 226 KB PCN17048A Nov 30, 2017
- Product Change NoticePDF 222 KB PCN17048 Oct 06, 2017
- Product AdvisoryPDF 358 KB PA17043 Sep 08, 2017
- Application NotePDF 397 KB an1684 Jan 19, 2004AI-generated Summary: The document outlines important legal disclaimers and usage guidelines for semiconductor products. It emphasizes user responsibility for product design and safety, disclaims liability for damages, and clarifies no intellectual property licenses are granted. Products are categorized by quality grades with specific application recommendations. Users must comply with laws, avoid unauthorized modifications, and ensure safe use within specified conditions. Contact details for Renesas Electronics sales offices worldwide are provided.
- Application NotePDF 509 KB an1681 Jan 19, 2004AI-generated Summary: The document explains grounding techniques for PCB layouts using a dual op amp example on a single-layer copper board. It compares three grounding schemes: a center spine ground trace, an outer ground plane, and a split/star ground plane, highlighting the benefits of single-point grounding to minimize noise and antenna effects. It emphasizes following current paths, minimizing loop lengths, and ensuring close forward and return paths to reduce interference. The document also includes disclaimers on product use, quality grades, safety, and legal compliance.
Recommended Documents (2)
Datasheets (2)
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- White PaperThe introduction of USB-C has transformed power delivery in laptops and mobile devices, combining power and data transfer in one port. As USB-C adoption grows, designers must rethink traditional power architectures. This paper explores charging topologies that deliver efficiency, flexibility, and compact design, using a buck-boost approach optimized for modern devices.
- White PaperPDF 320 KB new-architecture-for-usb-type-c-applications Feb 09, 2018USB Type-C enables reversible, high-power charging and data transfer through a single connector. As device makers adopt USB-C, performance demands on voltage regulators increase. This paper introduces a simplified power architecture using Renesas’ buck-boost regulator and battery charger, enabling flexible, programmable USB-C power solutions for both hosts and adapters.
- Application NotePDF 397 KB an1684 Jan 19, 2004AI-generated Summary: The document outlines important legal disclaimers and usage guidelines for semiconductor products. It emphasizes user responsibility for product design and safety, disclaims liability for damages, and clarifies no intellectual property licenses are granted. Products are categorized by quality grades with specific application recommendations. Users must comply with laws, avoid unauthorized modifications, and ensure safe use within specified conditions. Contact details for Renesas Electronics sales offices worldwide are provided.
- Application NotePDF 509 KB an1681 Jan 19, 2004AI-generated Summary: The document explains grounding techniques for PCB layouts using a dual op amp example on a single-layer copper board. It compares three grounding schemes: a center spine ground trace, an outer ground plane, and a split/star ground plane, highlighting the benefits of single-point grounding to minimize noise and antenna effects. It emphasizes following current paths, minimizing loop lengths, and ensuring close forward and return paths to reduce interference. The document also includes disclaimers on product use, quality grades, safety, and legal compliance.
Application Notes & White Papers (4)
- Product AdvisoryPDF 232 KB Mar 06, 2026
- Product Change NoticePDF 169 KB Nov 17, 2022
- Product Change NoticePDF 179 KB Nov 19, 2021
- Product Change NoticePDF 326 KB May 21, 2021
- Product Change NoticePDF 158 KB PCN21005 Jan 25, 2021View More (9)
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Renesas Boards & Kits
Buck-Boost Narrow VDC Battery Charger with SMBus Interface and USB OTG Evaluation Board
The ISL9238EVAL1Z evaluation board is designed to demonstrate the performance of the ISL9238 buck-boost Narrow Output Voltage DC (NVDC) charger. The default value numbers of the battery in series, the switching frequency and the adapter current limit charging function can be programmed by the... Read More
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- Model-Based Development PlatformOffers electrochemical battery models designed to run on Renesas battery management solution platforms, enabling more accurate state estimation and improved overall battery performance.Provided By: BattGenie
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- Model-Based Development PlatformOffers electrochemical battery models designed to run on Renesas battery management solution platforms, enabling more accurate state estimation and improved overall battery performance.Provided By: BattGenie
Partner Solutions (1)
Introducing the industry's first buck-boost battery charger supporting USB Type-C® connectors. The single-chip ISL9237 reduces BOM costs by up to 40% and extends battery life for ultrabooks, tablets, and power banks.
This product training presentation of the ISL9237 and ISL9238 buck-boost battery charger solutions will give you a brief overview of the device feature set and performances. These products can operate in buck, buck-boost, and boost mode to maintain an accurate output voltage and support USB On-The-Go (OTG) with 5V reverse buck mode from the ISL9237, and full range 5V to 20V OTG from ISL9238.
Learn how to set up the ISL9237 evaluation board and connect the EVB to the GUI interface. Add an electrical load and measure output voltage and phase voltages without the need for a Li-Ion battery or emulator.
Support Communities
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Units in inductor ripple current calculation in ISL9238
Hello While calculatiing the induction ripple currrent in ISL9238, don't know which units would be in the output of the formula. Is it A? I am using uH in L and Khz in Fsw Thanks
Apr 19, 2026 -
If someone help to provide the ISL9237 storage time?
Our company have a batch of ISL9237. Their data code is 2205 and I want to confirm if it still can be used? And they still unopened. Thanks!
Mar 20, 2025 -
Please provide link to PDC-IMGGEN to compile ROM file for R9A02G011
I'd like to use the R9A02G011 (USB Power Delivery Controller) and ISL9238C (NVDC Buck-Boost battery charger) in my next project. To configure chip as I understand i need to use PDC-IMGGEN, where to find it? I'd like to use the R9A02G011 and ISL9238C in my next ...
Oct 16, 2024
Knowledge Base
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How does the Autonomous Charging and End-of-Charge operate on the ISL9238?
Question: How does the Autonomous Charging and End-of-Charge operate? Answer: Autonomous charging option is programmed through PROG pin resistor. End-of-charge auto control based on charging current and charging voltage, no SMBus communication needed. Safety timer is also implemented to stop charging. Go to Japanese
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When the ISL9238 is used in USB OTG mode, is it possible to modify the current sense resistor to allow the circuit to source 8A?
Question: When the ISL9238 is used in USB OTG mode, is it possible to modify the current sense resistor to allow the circuit to source 8A? Answer: The software settable limit in the device is set for 4.096A when the sense resistor is 20mohm. The resistor can be changed ...
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What is two-level adapter current limit?
Question: What is two-level adapter current limit? I see this term listed on your ISL9238 datasheet. Answer: Turbo event usually does not last very long. It is often no longer than milliseconds, a time length during which the adapter can supply current higher than its DC rating. The ISL9238 ...