Features
- Digital compensation of sensor offset, sensitivity, temperature drift, and non-linearity
- Accommodates nearly all bridge sensors by PGA and programmable ADC
- Capable of conditioning bridge sensor signals ranging from 1mV/V to 275mV/V
- Set of diagnostics functions needed for safety applications
- Temperature compensation via internal diode, external diode or bridge sensor element
- Output options: voltage (0 to 5V), I2C, ZACwire™ (one-wire interface)
- Adjustable ADC resolution (13 to 16 bits) versus sampling rate (up to 7.8kHz)
- High DAC resolution of 12-bit
- Selectable bridge excitation: ratiometric voltage or constant current
- Operation temperature range of (-40 °C to +125 °C or (-40 °C to +150 °C
- Supply voltage: 4.5V to +5.5V
- Available as DFN14, SSOP14, or die
Description
The ZSC31150 is a CMOS integrated circuit for amplification and sensor-specific correction of bridge sensor signals. The device provides digital compensation of sensor offset, sensitivity, temperature drift, and non-linearity via a 16-bit RISC microcontroller running a correction algorithm. The ZSC31150 accommodates virtually any resistive bridge sensor (e.g., piezoresistive and steel-membrane-based pressure sensors). The bi-directional digital interfaces (I2C and ZACwire™) can be used for a simple PC-controlled calibration procedure, encompassing writing and programming a set of calibration coefficients into an on-chip EEPROM. The ZSC31150 has been designed for automotive applications and is specifically suited for most pressure sensors. It can also be used with force, torque, acceleration, angle, position, and revolution sensors. Safety applications (e.g., braking or steering systems) are also supported by the ZSC31150's set of diagnostic functions. The ZSC31150 is optimized for automotive environments via protection circuitry and excellent electromagnetic compatibility.
Parameters
| Attributes | Value |
|---|---|
| Function | Resistive SSC |
| Automotive Qual. | Yes |
| Supply Voltage (V) | 4.5 - 5.5 |
| Input Type | Single-bridge |
| Interface | Ratiometric Voltage, ZACwire™, I2C |
| Adj. Analog Gain | 3 - 3, 7 - 7, 9 - 9, 14 - 14, 26 - 26, 35 - 35, 52 - 52, 70 - 70, 105 - 105, 140 - 140, 210 - 210, 280 - 280, 420 - 420 |
| Resolution (bits) | 16 |
| Sample Rate Max (KHz) | 7.8 |
| Temp. Range (°C) | -40 to +150°C, -40 to 125°C, -40 to 150°C |
| Part Number | Status | Samples | Stock | Package | Budgetary Price (USD) | Lead Count (#) | Carrier Type | Moisture Sensitivity Level (MSL) | Pitch (mm) | Pkg. Dimensions (mm) | Qty. per Reel (#) | Package Area (mm²) | Qty. per Carrier (#) | Pb (Lead) Free | Pb Free Category | Temp. Range (°C) | Country of Assembly | Country of Wafer Fabrication |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| ZSC31150GAG1-R | Active | Available | In Stock | SSOP | 1ku | $3.29 | 14# | Reel | 1 | 0.65mm | 6.2 x 5.3 x 1.73 | 2000# | 32.9mm² | 0 | Yes | e3 Sn | -40 to 125°C | PHILIPPINES | GERMANY |
| ZSC31150GAG2-R | Active | Available | Out of Stock | DFN | 1ku | $3.29 | 14# | Reel | 1 | 0.5mm | 5.0 x 4.0 x 0.9 | 5000# | 20mm² | 0 | Yes | e3 Sn | -40 to 125°C | THAILAND | GERMANY |
| ZSC31150GEC | Active | N/A | Out of Stock | WAFER | 1ku | $3.05 | 0 | Wafer | 1 | 0.0 x 0.0 x 0.0 | 0 | 0 | Yes | e3 Sn | -40 to +150°C | GERMANY | |||
| ZSC31150GEG1-R | Active | Available | In Stock | SSOP | 1ku | $3.32 | 14# | Reel | 1 | 0.65mm | 6.2 x 5.3 x 1.73 | 2000# | 32.9mm² | 0 | Yes | e3 Sn | -40 to 150°C | PHILIPPINES | GERMANY |
| ZSC31150GAG1-T | NRND | Available | In Stock | SSOP | 1ku | $3.29 | 14# | Tube | 1 | 0.65mm | 6.2 x 5.3 x 1.73 | 0 | 32.9mm² | 77# | Yes | e3 Sn | -40 to 125°C | PHILIPPINES | GERMANY |
| ZSC31150GEB | NRND | N/A | Out of Stock | WAFER | 1ku | $3.05 | 0 | Wafer | 1 | 0.0 x 0.0 x 0.0 | 0 | 0 | Yes | e3 Sn | -40 to 150°C | GERMANY | |||
| ZSC31150GED | NRND | Available | Out of Stock | WAFER | 1ku | $4.8 | 0 | WFP | 1 | 0.0 x 0.0 x 0.0 | 0 | 0 | Yes | e3 Sn | -40 to 150°C | GERMANY | |||
| ZSC31150GEG1-T | NRND | N/A | In Stock | SSOP | 1ku | $3.32 | 14# | Tube | 1 | 0.65mm | 6.2 x 5.3 x 1.73 | 0 | 32.9mm² | 77# | Yes | e3 Sn | -40 to 150°C | PHILIPPINES | GERMANY |
| ZSC31150GEG2-R | NRND | Available | Out of Stock | DFN | 1ku | $3.4 | 14# | Reel | 1 | 0.5mm | 5.0 x 4.0 x 0.9 | 5000# | 20mm² | 0 | Yes | e3 Sn | -40 to 150°C | THAILAND | GERMANY |
| ZSC31150GLG1-R | Obsolete | N/A | Out of Stock | SSOP | 14# | Reel | 1 | 0.65mm | 6.2 x 5.3 x 1.73 | 2000# | 32.9mm² | 0 | Yes | e3 Sn | -40 to 150°C | |||
| ZSC31150GLG1-T | Obsolete | N/A | Out of Stock | SSOP | 14# | Tube | 1 | 0.65mm | 6.2 x 5.3 x 1.73 | 0 | 32.9mm² | 77# | Yes | e3 Sn | -40 to 150°C |
- Application NoteAI-generated Summary: Automotive pressure sensor modules have no effective RF antenna below 1 GHz due to their small size; the harness acts as the primary antenna. EMC tests, especially Bulk Current Injection (BCI), simulate RF interference from vehicle wiring. Module design must consider parasitic capacitances and galvanic contacts between the case, pressure supply adapter, and chassis. Plastic cases maximize parasitic impedances, reducing susceptibility, while metallic cases require low-impedance RF current paths and shielding. Designs must balance EMC robustness, manufacturing tolerances, and cost, with increasing test frequencies up to 3 GHz necessitating additional shielding.
- Technical Brief
- Technical BriefPDF 338 KB 7WDXRDKU4E7E-5-60559 Apr 26, 2016
- Application NotePDF 570 KB 7WDXRDKU4E7E-5-60554 Apr 26, 2016
- Application NotePDF 427 KB 7WDXRDKU4E7E-5-60552 Apr 26, 2016
- Application Note
- Guide7Z 1.21 MB 7WDXRDKU4E7E-5-60872 Aug 20, 2021
- DocumentXLS 376 KB 7WDXRDKU4E7E-5-60287 Nov 20, 2015
Recommended Documents (1)
Datasheets (1)
- Guide7Z 1.21 MB 7WDXRDKU4E7E-5-60872 Aug 20, 2021
Manuals & Guides (3)
- Application NoteAI-generated Summary: Automotive pressure sensor modules have no effective RF antenna below 1 GHz due to their small size; the harness acts as the primary antenna. EMC tests, especially Bulk Current Injection (BCI), simulate RF interference from vehicle wiring. Module design must consider parasitic capacitances and galvanic contacts between the case, pressure supply adapter, and chassis. Plastic cases maximize parasitic impedances, reducing susceptibility, while metallic cases require low-impedance RF current paths and shielding. Designs must balance EMC robustness, manufacturing tolerances, and cost, with increasing test frequencies up to 3 GHz necessitating additional shielding.
- Application NotePDF 570 KB 7WDXRDKU4E7E-5-60554 Apr 26, 2016
- Application NotePDF 427 KB 7WDXRDKU4E7E-5-60552 Apr 26, 2016
- Application Note
Application Notes & White Papers (4)
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- Technical Brief
- Technical BriefPDF 338 KB 7WDXRDKU4E7E-5-60559 Apr 26, 2016
- DocumentXLS 376 KB 7WDXRDKU4E7E-5-60287 Nov 20, 2015
Other (4)
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Renesas Boards & Kits
Evaluation Kit for ZSC31150
The ZSC31150KIT Evaluation Kit provides the hardware needed for configuration, calibration and evaluation of the ZSC31150 Sensor Signal Conditioner (SSC) IC. The user's PC can communicate with the ZSC31150 IC socketed on the ZSC31150 SSC Evaluation Board via the SSC Communication Board through a... Read More
Mass Calibration System for ZSC31150
The ZSC31150 Mass Calibration System provides the hardware needed for simultaneous configuration, calibration and evaluation of multiple ZSC31150 Sensor Signal Conditioner (SSC) ICs. The user's PC can communicate via the SSC Communication Board with multiple ZSC31150 ICs (DUTs) mounted on either... Read More
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Software & Tools (1)
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A brief introduction and overview of IDT's (acquire by Renesas) sensor signal conditioner evaluation kits. Evaluation kits generally consist of three parts: a communication interface board, a device board, and a sensor simulator board - all connected together. A sophisticated software GUI accompanies the kit, enabling an engineer to learn how to use the part rapidly, do quick prototyping, and practice calibrations.
Presented by David Grice, applications engineer at IDT. For more information about IDT's sensor signal conditioner products, visit the Sensor Signal Conditioner page.
Support Communities
-
Searching for ZSC31150 Technical Note – High Voltage Protection
datasheet of ZSC31150, chapter 2.9 (High Voltage, Reverse Polarity, and Short Circuit Protection) refers to a technical note I'm unable to find: "The protection is not time limited. Refer the ZSC31150 Technical Note – High Voltage Protection for a detailed description of protection cases and conditions." Where can I ...
Apr 8, 2025 -
Evaluation Kit for ZSC31150: Problem with communication (SSC_Board not found)
Hello, Currently I am trying to use a newly purchased ZSC31150KIT with a ZSC31150 connected to it via OWI. Unfortunately, I always get the error message “SSC_Board not found” when I try to establish communication via OWI. I am also unable to switch on the “KS5V” sensor supply on ...
Apr 16, 2025 -
which forum to post about IDT zsc31150 questions?
hello if I have questions about IDT zsc31150,which forum do I post? thank you. best regards, weiming.
Mar 31, 2021