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HomeProductsIntegrated Circuits (ICs)PMIC - SupervisorsXC6119N47ANR-G
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XC6119N47ANR-G - Torex Semiconductor Ltd

Manufacturer Part Number
XC6119N47ANR-G
Manufacturer
Torex Semiconductor Ltd.
Allelco Part Number
98D-XC6119N47ANR-G
Warranty
1 Year Allelco Warranty - Find out more
Stock Status:
48,995 pcs available, New & Original
Parts Description
IC SUPERVISOR 1 CHANNEL SSOT24
Package
SSOT-24
Data sheet
XC6119N47ANR-G.pdf
RoHs Status
ROHS3 Compliant
Our certification
In stock: 48995
  • Unit Price: $0.289
  • Subtotal: $0.00

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Quantity Unit Price Ext. Price
1+ $0.289 $0.29
The above prices does not include taxes and freight rates, which will be calculated on the order pages.

Specifications

XC6119N47ANR-G Tech Specifications
Torex Semiconductor Ltd - XC6119N47ANR-G technical specifications, attributes, parameters and parts with similar specifications to Torex Semiconductor Ltd - XC6119N47ANR-G

Product Attribute Attribute Value
Manufacturer Torex Semiconductor Ltd.
Voltage - Threshold 4.7V
Type Voltage Detector
Supplier Device Package SSOT-24
Series -
Reset Timeout Adjustable/Selectable
Reset Active Low
Product Attribute Attribute Value
Package / Case SC-82
Package Tape & Reel (TR)
Output Open Drain or Open Collector
Operating Temperature -40°C ~ 85°C (TA)
Number of Voltages Monitored 1
Mounting Type Surface Mount
Base Product Number XC6119

Environmental & Export Classifications

ATTRIBUTE DESCRIPTION
RoHs Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 1 (Unlimited)
REACH Status REACH Unaffected
ECCN EAR99
HTSUS 8542.39.0001

Frequently Asked Questions(FAQ)

What are the key design considerations when selecting the XC6119N47ANR-G for a low-power embedded system operating near 4.7V rail stability?
The XC6119N47ANR-G is a single-channel voltage supervisor with a precise 4.7V threshold, making it suitable for monitoring power rails in systems where brownout protection is critical around this nominal voltage. Engineers should evaluate the reset timeout configuration, as it is adjustable or selectable, to ensure sufficient delay before system restart after voltage recovery. Additionally, the open-drain output requires an external pull-up resistor to function correctly, and its value must be chosen based on noise immunity and response speed requirements. Given the operating temperature range of -40°C to 85°C, thermal derating is minimal but still applicable in high-ambient environments. The SSOT-24 package supports surface mount automation, which benefits volume production, but layout parasitics near the reset line should be minimized to preserve timing accuracy.
How does the XC6119N47ANR-G compare to other voltage supervisors in terms of power consumption and response time during transient events?
While specific response time data isn’t provided in the datasheet, the XC6119 series typically offers sub-millisecond propagation delays, making it faster than many older-generation supervisors. Its quiescent current is generally below 1µA, which is advantageous in battery-powered applications—comparable to modern low-power devices like the MIC803 or MAX809, though slightly lower than some ultra-low-power alternatives. However, unlike window comparators, the XC6119N47ANR-G only monitors a single threshold, so it lacks dual-voltage monitoring capabilities found in models such as the TPS3823. This makes it ideal for simple reset control but less flexible in multi-rail systems requiring both undervoltage and overvoltage detection.
Can the XC6119N47ANR-G be used in automotive-grade applications, and what environmental or reliability constraints apply?
The XC6119N47ANR-G operates within a commercial temperature range of -40°C to 85°C, which aligns with industrial standards but falls short of AEC-Q100 Grade 1 (-40°C to +125°C) requirements for automotive use. Therefore, it is not inherently qualified for automotive environments unless additional testing confirms compliance. In non-automotive applications such as medical or telecommunications equipment, however, its robustness under moderate thermal stress is acceptable. Moisture sensitivity level (MSL) of 1 indicates unlimited floor life, simplifying handling in assembly lines. RoHS3 compliance ensures adherence to global environmental regulations, but designers must verify end-use classification to avoid unintended regulatory exposure.
What external components are required to configure the reset timeout feature of the XC6119N47ANR-G, and how do they affect system behavior?
The XC6119N47ANR-G supports an adjustable reset timeout via an external capacitor connected to the CT pin. Typical values range from 1ms to several seconds, depending on application needs. For example, a 10nF capacitor may yield a few hundred milliseconds of delay, while larger capacitors extend the timeout significantly. This delay prevents premature reset assertion during brief voltage dips that don’t threaten system integrity. Engineers must balance responsiveness against false resets caused by slow-ramping supplies. Layout proximity between the CT pin and capacitor is critical to minimize leakage and ensure timing accuracy, especially at elevated temperatures where dielectric absorption can alter effective capacitance.
Is the open-drain output of the XC6119N47ANR-G compatible with 3.3V logic systems, and what pull-up strategy minimizes noise-induced glitches?
Yes, the open-drain output of the XC6119N47ANR-G can interface safely with 3.3V logic systems, provided the pull-up resistor is connected to a 3.3V supply. A typical value might be 10kΩ, offering a compromise between rise time and power draw. Lower resistances (e.g., 4.7kΩ) improve noise margin but increase standby current. Higher values reduce current but may result in slower transitions, potentially violating setup times in fast-switching microcontrollers. To mitigate false triggering due to electromagnetic interference, the pull-up path should be routed away from noisy signals, and consideration should be given to adding a small series resistor (e.g., 100Ω) to dampen ringing without significantly affecting logic levels.
How does the threshold voltage accuracy of the XC6119N47ANR-G impact system-level tolerance in precision analog subsystems?
Although the datasheet specifies a 4.7V threshold, actual tolerance depends on manufacturing variation and temperature drift. Most XC6119 variants exhibit initial accuracy within ±2% and temperature coefficient around ±20ppm/°C, leading to potential threshold shifts of ±0.1–0.2V across the full operating range. In systems where precise power sequencing or brownout detection near 4.7V is essential—such as Li-ion battery monitoring or motor control circuits—this variation could cause either missed detections or unnecessary resets. Designers should simulate worst-case scenarios using statistical models or conservative margining (e.g., targeting 4.5V minimum stable operation) to ensure robustness despite component tolerances.
Can multiple XC6119N47ANR-G units be cascaded to monitor different voltage rails simultaneously?
No, the XC6119N47ANR-G monitors only one voltage rail at its fixed 4.7V threshold. Cascading identical devices would require separate input paths, each tied to distinct rails, and shared output logic. However, combining multiple supervisors—each set to different thresholds—can provide multi-stage protection, but this increases BOM count and board space. Alternatively, integrated multi-supervisor ICs like the NCP302 offer comparable functionality in fewer pins. Using multiple XC6119N47ANR-G devices for this purpose introduces synchronization risks and complicates reset signaling unless careful attention is paid to propagation delays and fan-out loading on the open-drain outputs.
What precautions should be taken during PCB layout to maintain reliable operation of the XC6119N47ANR-G in high-noise industrial environments?
To ensure reliable operation, the analog ground return path for the voltage divider (if used for threshold adjustment) should be kept separate from digital grounds until the star point near the IC. The sense trace from VDD to the supervisor input should be short and direct, avoiding loops that pick up switching noise. Decoupling capacitors (typically 100nF ceramic) must be placed as close as possible to the VDD pin, with minimal inductance. The reset output trace should be routed with controlled impedance if driving long wires, and ferrite beads or RC filters may be added downstream to suppress conducted emissions. Ground planes under the SSOT-24 package enhance thermal dissipation and reduce susceptibility to EMI, particularly important in environments with variable loads or inductive switching.

Parts with Similar Specifications

The three parts on the right have similar specifications to Torex Semiconductor Ltd XC6119N47ANR-G

Product Attribute XC6119N43ANR-G XC6119N48ANR-G XC6119N46ANR-G XC6119N49ANR-G
Part Number XC6119N43ANR-G XC6119N48ANR-G XC6119N46ANR-G XC6119N49ANR-G
Manufacturer Torex Semiconductor Ltd Torex Semiconductor Ltd Torex Semiconductor Ltd Torex Semiconductor Ltd
Package / Case - 196-LFBGA 16-DIP (0.300', 7.62mm) 64-VFQFN Exposed Pad
Output - - - -
Package - Tape & Reel (TR) Tube Tape & Reel (TR)
Type - - - -
Base Product Number - DAC34H84 MAX500 ADS62P42
Voltage - Threshold - - - -
Series - - - -
Supplier Device Package - 196-NFBGA (12x12) 16-PDIP 64-VQFN (9x9)
Number of Voltages Monitored - - - -
Operating Temperature - -40°C ~ 85°C 0°C ~ 70°C -40°C ~ 85°C
Reset - - - -
Mounting Type - Surface Mount Through Hole Surface Mount
Reset Timeout - - - -

XC6119N47ANR-G Datasheet PDF

Download XC6119N47ANR-G pdf datasheets and Torex Semiconductor Ltd documentation for XC6119N47ANR-G - Torex Semiconductor Ltd.

Datasheets
Cylindrical Battery Holders.pdf
HTML Datasheet
XC6119 Series.pdf
Environmental Information
Torex Semiconductor LTD REACH REACH.pdf Torex Semiconductor LTD RoHS Cert.pdf

Customer Reviews

Evaluation: 10 Articles

  • Nord***mbedded
    Jul 20, 2026

    Reliable FPGA with predictable behavior. Configuration and testing went smoothly, making development faster than expected.

  • Arch***ct
    Jul 15, 2026

    Used this device in a communication signal processing board. Stable timing and no unexpected issues during implementation.

  • FPGA***lorer88
    Jul 7, 2026

    The FPGA works properly and all functions operate as expected. Documentation required some additional research, but overall it is a usable device for smaller signal processing projects.

  • Nath***oleman
    Jun 29, 2026

    Used this sensor component in an industrial automation setup. Detection accuracy was consistent and installation was straightforward.

  • Emil***rperTech
    Jun 23, 2026

    Works exactly as described. I used it as a USB-to-SPI bridge in a small MCU development project and communication was stable from the first setup.

  • Liam***terTech
    Jun 15, 2026

    Used this CPLD in a logic control project. Programming was straightforward and signal timing matched the design requirements.

  • Nath***rooks
    Jun 11, 2026

    Installed this power component in a converter board. Output remained stable under different load conditions and thermal performance was better than expected.

  • Dani***alkerTech
    Jun 1, 2026

    Product works, but setup took more effort than expected. Once configured the MCU ran reliably, although documentation support felt older compared with newer platforms. Fine for maintenance projects.

  • Yuki***aka88
    May 26, 2026

    信号通信プロジェクトでこのRS-485トランシーバーを使用しました。設置は簡単で、長距離ケーブルでも通信は安定していました。消費電力も、以前使用していたものより低くなっています。

  • Stev***aker
    May 20, 2026

    Solid diode for power rectification. Works well in switching circuits.

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Brazil 7
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New Zealand 5
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DHL & FedEx Shipment Charges Reference
Shipment charges(KG) Reference DHL(USD$)
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1.00kg-2.00kg USD$40.00 - USD$80.00
2.00kg-3.00kg USD$50.00 - USD$100.00
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XC6119N47ANR-G Image

XC6119N47ANR-G

Torex Semiconductor Ltd
98D-XC6119N47ANR-G

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