Features
- Bus voltage sense range: 0V to 60V
- Voltage gain error: 0.05%
- Current gain error: 0.05%
- Internal temperature sensor accuracy: +1.0°C
- High or low (RTN) side sensing
- Bidirectional current sensing
- Auxiliary low voltage channel
- ∆∑ADC, 16-bit native resolution
- Programmable averaging modes
- Internal 3.3V regulator
- Internal temperature sense
- Overvoltage/undervoltage and current fault monitoring with 500ns detection delay
- 8-bit voltage output DAC
- I2C/SMBus/PMBus interface that handles 1.2V supply
Description
The ISL28023 is a bidirectional high-side and low-side digital current sense and voltage monitor with a serial interface. The device monitors power supply current, voltage and provides the digital results along with calculated power. The ISL28023 provides tight accuracy of 0.05% for both voltage and current monitoring. The auxiliary input provides an additional power monitor function.
The VCC power can either be externally supplied or internally regulated, which allows the ISL28023 to handle a common-mode input voltage range from 0V to 60V. The wide range permits the device to handle telecom, automotive and industrial applications with minimal external circuitry.
An 8-bit voltage DAC enables a DC/DC converter output voltage margining. Fault indication includes a Bus Voltage window and overcurrent fast fault logic indication.
The ISL28023 serial interface is PMBus compatible and operates down to 1.2V voltage. It draws an average current of just 800µA and is available in the space saving 24 Ld QFN 4mmx4mm package. The part operates across the full industrial temperature range from -40°C to +125°C.
Parameters
| Attributes | Value |
|---|---|
| VS (Min) (V) | 3 |
| VS (Max) (V) | 5.5 |
| PSRR (db) | 127 |
| CMRR (dB) | 136 |
| Common Mode Input Range (V) | 12, 60 |
| Gain Error / Measurement Error (Max) | 0.25 |
| IS per Amp (mA) | 1.24 |
| Offset Voltage (Max) (mV) | 0.05 |
| Qualification Level | Standard |
Package Options
| Pkg. Type | Pkg. Dimensions (mm) | Lead Count (#) | Pitch (mm) |
|---|---|---|---|
| QFN | 4.0 x 4.0 x 0.90 | 24 | 0.5 |
Application Block Diagrams
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Additional Applications
- Data processing servers
- DC power distribution
- Telecom equipment
- Portable communication equipment
- DC/DC, AC/DC converters
- Many I2C DAC and ADC with alert applications
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| Part Number | Status | Samples | Stock | RoHS | Package | Budgetary Price (USD) | Lead Count (#) | Carrier Type | Moisture Sensitivity Level (MSL) | Common Mode Input Range (V) | Pb (Lead) Free | Pb Free Category | Temp. Range (°C) | Country of Assembly | Country of Wafer Fabrication |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| ISL28023FR12Z | Active | Available | In Stock | RoHS:EN | QFN | 1ku | $2.13 | 24# | Tube | 3 | 12 | Yes | Pb-Free 100% Matte Tin Plate w/Anneal-e3 | -40 to +125°C | MALAYSIA | TAIWAN |
| ISL28023FR12Z-T | Active | N/A | Out of Stock | RoHS:EN | QFN | 1ku | $2.13 | 24# | Reel | 3 | 12 | Yes | Pb-Free 100% Matte Tin Plate w/Anneal-e3 | -40 to +125°C | MALAYSIA | TAIWAN |
| ISL28023FR60Z | Active | N/A | In Stock | RoHS:EN | QFN | 1ku | $2.13 | 24# | Tube | 3 | 60 | Yes | Pb-Free 100% Matte Tin Plate w/Anneal-e3 | -40 to +125°C | MALAYSIA | TAIWAN |
| ISL28023FR60Z-T | Active | Available | Out of Stock | RoHS:EN | QFN | 1ku | $2.13 | 24# | Reel | 3 | 60 | Yes | Pb-Free 100% Matte Tin Plate w/Anneal-e3 | -40 to +125°C | MALAYSIA | TAIWAN |
| ISL28023FR60Z-T7A | Active | N/A | In Stock | RoHS:EN | QFN | 1ku | $3.3 | 24# | Reel | 3 | 60 | Yes | Pb-Free 100% Matte Tin Plate w/Anneal-e3 | -40 to +125°C | MALAYSIA | TAIWAN |
| ISL28023FR12Z-T7A | Obsolete | N/A | In Stock | RoHS:EN | QFN | 24# | Reel | 3 | 12 | Yes | Pb-Free 100% Matte Tin Plate w/Anneal-e3 | -40 to +125°C |
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- Manual - HardwarePDF 11.99 MB R15UH0010EU0106 Rev.1.06 May 29, 2024
- Application NotePDF 617 KB R13AN0020EU0100 Rev.1.00 Dec 18, 2023AI-generated Summary: Five essential amplifier circuits form the foundation of sensor signal conditioning: inverting amplifier, non-inverting amplifier, difference amplifier, two-op-amp instrumentation amplifier, and three-op-amp instrumentation amplifier. These circuits enable signal amplification, phase control, noise reduction, and precise differential measurement. The inverting amplifier provides phase inversion and amplification, while the non-inverting amplifier amplifies without phase change. Difference amplifiers measure voltage differences between two inputs. Two- and three-op-amp instrumentation amplifiers offer enhanced precision and common-mode noise rejection, suitable for industrial and medical applications requiring accurate sensor data processing.
- TrainingPDF 325 KB R13TB0002EU0100 Rev.1.00 May 11, 2023
- TrainingPDF 258 KB R13TB0001EU0100 Rev.1.00 May 11, 2023
- Product Change NoticePDF 202 KB Jul 07, 2021
- Product Change NoticePDF 326 KB May 21, 2021
- Manual - Development ToolsPDF 257 KB r12uz0043eu-islusbeval1z-user-manual Feb 28, 2019
- White PaperAccurate current measurement is essential in power monitoring and control. This paper compares three current sensing methods—shunt resistors, DCR sensing, and hall effect sensors—highlighting design considerations, trade-offs, and ways to improve accuracy based on application needs.
- Model - iSim
- Model - iSim
- Application NotePDF 564 KB an1993 May 22, 2018AI-generated Summary: Voltage feedback (VFB) amplifiers use a differential input pair, a high-impedance stage, and an output buffer to convert input voltage differences into output voltage. The VFB amplifier's gain decreases at a dominant pole frequency due to compensation capacitors. Current feedback (CFB) amplifiers include a class AB input amplifier, current mirror, high-impedance stage, and output buffer. CFB amplifiers provide faster switching and higher slew rates by drawing charge/discharge currents directly from supply rails, unlike VFB amplifiers which are limited by biasing current sources.
Recommended Documents (1)
Datasheets (1)
- Manual - HardwarePDF 11.99 MB R15UH0010EU0106 Rev.1.06 May 29, 2024
- Manual - Development ToolsPDF 257 KB r12uz0043eu-islusbeval1z-user-manual Feb 28, 2019
Manuals & Guides (3)
- Application NotePDF 617 KB R13AN0020EU0100 Rev.1.00 Dec 18, 2023AI-generated Summary: Five essential amplifier circuits form the foundation of sensor signal conditioning: inverting amplifier, non-inverting amplifier, difference amplifier, two-op-amp instrumentation amplifier, and three-op-amp instrumentation amplifier. These circuits enable signal amplification, phase control, noise reduction, and precise differential measurement. The inverting amplifier provides phase inversion and amplification, while the non-inverting amplifier amplifies without phase change. Difference amplifiers measure voltage differences between two inputs. Two- and three-op-amp instrumentation amplifiers offer enhanced precision and common-mode noise rejection, suitable for industrial and medical applications requiring accurate sensor data processing.
- White PaperAccurate current measurement is essential in power monitoring and control. This paper compares three current sensing methods—shunt resistors, DCR sensing, and hall effect sensors—highlighting design considerations, trade-offs, and ways to improve accuracy based on application needs.
- Application NotePDF 564 KB an1993 May 22, 2018AI-generated Summary: Voltage feedback (VFB) amplifiers use a differential input pair, a high-impedance stage, and an output buffer to convert input voltage differences into output voltage. The VFB amplifier's gain decreases at a dominant pole frequency due to compensation capacitors. Current feedback (CFB) amplifiers include a class AB input amplifier, current mirror, high-impedance stage, and output buffer. CFB amplifiers provide faster switching and higher slew rates by drawing charge/discharge currents directly from supply rails, unlike VFB amplifiers which are limited by biasing current sources.
- Application NotePDF 1.32 MB an1955 Apr 22, 2015AI-generated Summary: The document details design ideas for Intersil Digital Power Monitors (DPMs), focusing on current, voltage, and power monitoring via an external shunt resistor and digital output through I2C. It covers features and differences among ISL28022, ISL28023, and ISL28025 models, including multi-channel monitoring, fault detection, temperature sensing, and voltage margining. Various application circuits are explained, such as point-of-load monitoring, adjustable voltage regulation, boost regulation, floating supply operation, and force voltage measurement. The DPMs support SMBus and PMBus protocols, multiple slave addresses, and include error detection with fast response times.
- Application NotePDF 357 KB an1694 Jan 19, 2004AI-generated Summary: The document outlines the four fundamental internal blocks of an operational amplifier and presents a simple 2:1 stage circuit diagram. It includes important legal notices from Renesas Electronics regarding the use, liability, and intellectual property rights of their semiconductor products. The document clarifies product quality grades, intended applications, and restrictions on use in life-critical or hazardous systems. It emphasizes compliance with applicable laws and safety responsibilities when using Renesas products. Contact information for Renesas sales offices worldwide is also provided.
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- Product Change NoticePDF 202 KB Jul 07, 2021
- Product Change NoticePDF 326 KB May 21, 2021
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Renesas Boards & Kits
Precision Digital Power Monitor Eval Kit
The ISL28023EVKIT1Z digital power monitor evaluation kit demonstrates the functionality of the ISL28023 bidirectional high-side and low-side digital current sense and voltage monitor.
Renesas' ISL2802x digital power monitor family delivers high-accuracy measurements in a wide input common-mode... Read More
60V 5A Buck Regulator with DPM QuickConnect IoT Board
The QCIOT-5APWRPOCZ board enables quick prototyping of the RAA211651 60V 5A low quiescent current integrated switching regulator with the ISL28023 precision digital power monitor (DPM). The ISL28023 DPM is designed to measure and control the regulator output of the RAA211651 with margining.
The... Read More
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- Software & Tools - Other
- LibraryEXE 26.24 MB isl28023-25-evalkit-setup Nov 22, 2017
- SimulatoriSim Personal Edition (iSim:PE) speeds the design cycle and reduces risk early in any project, identifying parts that can be used in current as well as next-generation designs.
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- LibraryEXE 26.24 MB isl28023-25-evalkit-setup Nov 22, 2017
- SimulatoriSim Personal Edition (iSim:PE) speeds the design cycle and reduces risk early in any project, identifying parts that can be used in current as well as next-generation designs.
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Support Communities
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AE Cloud1 Kit I2C Reading Slave gives no Data (0xFF)
I am using an AE Cloud Kit to communicate to a slave device using the RIIC I2C Framework. Using a logic analyzer I can confirm that my device address is correct, and the R/W and ACK bit are correct when reading and writing. The issue is when reading ...
Sep 18, 2018 -
I2C not ACK using S128 as slave device
Hi, I'm setting my custom board using S128 MCU as an SMBUS slave device. I'm having trouble with the SDA not acknowledge when the master sending a request. Please share your advise. Thanks.
Nov 17, 2018 -
I2C: Using SSP with Renesas ISL28022 power monitor
We are trying to measure power draw using the Renesas/Intersil ISL28022 via I2C communication. Using SSP 1.3.2 (locked in for now) on S5D9.The protocol is fairly simple: write 2 bytes of configuration data, then issue read to receive 2 bytes of measured data. These are ...
Sep 6, 2019
Knowledge Base
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Temperature Sensor Diode for ISL28023
Either the popular 1N4148 or similar silicon diodes.
May 21, 2024