Temperature Sensor Probe for Real-Time Food Safety Inspection

Product Details
Customization: Available
Installation Type: Customized
Sensing Type: Resistive
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  • Temperature Sensor Probe for Real-Time Food Safety Inspection
  • Temperature Sensor Probe for Real-Time Food Safety Inspection
  • Temperature Sensor Probe for Real-Time Food Safety Inspection
  • Temperature Sensor Probe for Real-Time Food Safety Inspection
  • Temperature Sensor Probe for Real-Time Food Safety Inspection
  • Temperature Sensor Probe for Real-Time Food Safety Inspection
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Basic Info.

Model NO.
RTD temperature sensor
Contact
Contact
Output Signal Type
Analog Type
Production Process
Ceramics
Material
SS304
Measuring Medium
Temperature
IP Rating
IP67
Certification
RoHS
Customized
Customized
Tolerance
0.2c, 0.5c, or Upon Request
Certificate
FDA, LFGB, Reach, RoHS, Ca65
Temperature Range
-50c ~ +300c
Sensor Option
Ntc Thermistor, Rtd, Thermocouple
Transport Package
Carton
Specification
100mm, 200mm, or customized
Trademark
Senstech
Origin
Guangdong, China
HS Code
9025199090
Production Capacity
100000

Product Description


Temperature Sensor Probe for Real-Time Food Safety Inspection
Temperature Sensor Probe for Real-Time Food Safety Inspection
Temperature Sensor Probe for Real-Time Food Safety Inspection
Temperature Sensor Probe for Real-Time Food Safety Inspection
Our Food Safety Inspection Temperature Sensor is a high-precision device designed for real-time temperature monitoring in food processing, storage, and transportation. Manufactured with strict compliance to HACCP, FDA, and other food safety standards, this sensor ensures that food remains within safe temperature ranges throughout the supply chain. As a custom manufacturer, we offer tailored solutions to meet specific industry needs.

Key Features:
~~~ High Accuracy & Fast Response - Equipped with NTC, PT100, PT1000, or thermocouple, ensuring precise and rapid temperature detection for food safety compliance.
~~~ Durable & Waterproof Design - Built with IP67/IP68-rated protection to withstand high humidity, extreme temperatures, and rigorous food processing environments.
~~~ Versatile Installation Options - Available in probe-type, surface-mounted, and wireless options, making it adaptable to various food inspection applications.

Application Scenarios:
*** Food Processing: Ensures accurate temperature monitoring in baking, frying, steaming, and other food preparation processes.
*** Cold Chain Transportation: Real-time temperature tracking for refrigerated storage and transport, protecting perishable goods like dairy, meat, and seafood.
*** Catering & Food Storage: Used in refrigerators, storage cabinets, and food display units to maintain safe storage conditions.

As a custom manufacturer, we can design and produce sensors according to specific requirements, including specifications, probe structure and lengths, connection methods, and temperature ranges.


More Options: 
RTD sensor Tolerance Class A,Class B, 1/3DIN, 1/10DIN
Probe Solution Straight type, Bullet type, Cylinder type, Surface mounting type, Screw type, Ring lug type, Flanged type, Thread type(M6, M8, M10, M12, M14, 1/2NPT, G1/2, 3/8NPT) etc.
Probe Material Nickel-clad copper probe, Stainless steel probe, Aluminum probe, Plastic (ABS/PVC/TPE) probe, Brass probe, Ceramic probe, etc
Cable TPE cable, PVC cable, FEP Cable, PFA cable, PTFE cable, PU cable, Fiberglass cable, Mica cable, Stainless steel overbraided cable, etc
Connector TJC3, XH, SM, PH, EL, Aviation plug, Fork terminal, Ring lug terminal, Ferrule, Waterproof plug, RJ11, RJ12, RJ45, etc
 
Type Measuring Range°C Accuracy Tolerance Temperature Coefficient
PT100 -50~+300 Class A ±(0.15+0.002) |t| 3.85·10-3K-1
-70~+500 Class B ±(0.30+0.005) |t| 3.85·10-3K-1
PT500 -50~+300 Class A ±(0.15+0.002) |t| 3.85·10-3K-1
-70~+500 Class B ±(0.30+0.005) |t| 3.85·10-3K-1
PT1000 -50~+300 Class A ±(0.15+0.002) |t| 3.85·10-3K-1
-70~+500 Class B ±(0.30+0.005) |t| 3.85·10-3K-1
 
Temperature Sensor Probe for Real-Time Food Safety Inspection
High Precision
PT100 and PT1000 sensors are based on the resistance variation characteristics of platinum, providing very high accuracy. Typically, the accuracy of PT100 can reach ±0.1°C, while PT1000 has similar accuracy but is more suitable for specific applications due to its larger resistance value. These sensors are often used in applications that require precise temperature control and measurement, such as laboratories, chemical processing, and process control.
 
Long-Term Stability
Platinum resistance sensors typically have excellent long-term stability, meaning their performance will not change significantly over time. PT100/PT1000 sensors are particularly suitable for applications requiring long-term temperature monitoring.
Temperature Sensor Probe for Real-Time Food Safety Inspection
Temperature Sensor Probe for Real-Time Food Safety Inspection
Customizable Connection Methods
PT100 and PT1000 sensors can be configured with multiple connection methods, including 3-wire and 4-wire configurations, depending on the application requirements. These different wiring methods provide various levels of precision and noise immunity. For high-precision measurements, the 4-wire configuration is typically used to eliminate the influence of lead resistance.
High Reliability
PT100 and PT1000 sensors are highly reliable and can operate stably for long periods, making them ideal for high-demand applications such as pharmaceuticals, aerospace, energy, and power industries. Due to their solid structure and absence of moving parts, PT100 and PT1000 can also function properly in high-vibration and shock environments.
 
 
 
Temperature Sensor Probe for Real-Time Food Safety Inspection

Temperature Sensor Probe for Real-Time Food Safety Inspection
Temperature Sensor Probe for Real-Time Food Safety InspectionTemperature Sensor Probe for Real-Time Food Safety InspectionCompany Establishment: Founded in Shunde City and focused on temperature sensor, temperature and humidity sensor manufacturing.
Principle: Quality First, Customer Foremost
2012: Relocated in Shenzhen City
2016: Achieved ISO 9001certifcation, enhancing quality management.
2020: Recognized as a National High-tech Enterprise.
2021: Awarded the "Specialized, Refinement, Characteristic, and Innovation Enterprise" recognition.
2022: Obtained ISO 14001certification, improving environmental management.
Present: Serving over 1,000 global clients and customizing more than 4,000 sensor solutions, with products including NTC, RTD, temperature and humidity sensors, thermocouples, DS18B20 and other digital temperature sensors.

Temperature Sensor Probe for Real-Time Food Safety InspectionQ1 What is the minimum order quantity (MOQ) for custom temperature sensors?
The minimum order quantity (MOQ) typically depends on the type of sensor and customization requirements. For standard sensors like NTC and PT100, the MOQ is usually around 1000 pcs. For more complex custom sensors, the MOQ may be higher.
Q2 Can custom temperature sensors be adjusted for specific temperature ranges?
Yes, custom temperature sensors can be adjusted to meet your desired temperature range. Common ranges are typically from -20°C to +100°C, but for special requirements, the range can be extended. For example, PT100 and PT1000 sensors can be used for high or low-temperature measurements.
Q3 Can l customize the wiring configuration for the temperature sensor?
Yes, the wiring confguration of the temperature sensor can be customized based on your needs, including the number of wires and the wiring sequence. For example, PT100 sensors can be configured as 2-wire, 3-wire, or 4-wire.
Q4 What is the typical lead time for custom temperature sensors?
The typical lead time for custom temperature sensors is 3-4 weeks, depending on the complexity of the customization, production volume, and whether any specific testing or certifications are required. For 'urgent orders, expedited production can be arranged through discussion.
Q5 Can the accuracy and precision of custom temperature sensors be customized?
Yes, the accuracy and precision of custom temperature sensors can be adjusted according to your requirements. For instance, the precision of NTC thermistors and RTD sensors can be optimized based on material selection and manufacturing processes to meet specific application needs.
Q6 Can the shape and size of the sensor be customized?
Yes, the shape and size of the temperature sensor can be customized to fit your application needs. Different housing materials, shapes, and sizes can be chosen to adapt to various environmental and installation requirements.
Q7 How can l ensure that the custom temperature sensor meets my application requirements?
To ensure that the sensor meets your application requirements, it is recommended to provide detailed technical specifications and environmental conditions, such as temperature range, accuracy, response time, and working conditions (e.g., humidity, pressure). Additionally, you can request a sample for testing and validation.
Q8 How are the materials and durability of the custom temperature sensor ensured?
The materials for custom temperature sensors can be selected based on the specific environmental requirements of the application. For example, sensors can be made with materials like stainless steel, aluminum alloy, or ceramics to ensure long-term stability and durability in environments requiring high-temperature resistance, corrosion resistance, or moisture resistance.
Q9How are the performance and reliability of custom temperature sensors tested and verifed?
Custom temperature sensors are usually subjected to performance tests before delivery, including temperature-resistance characteristic testing,response time testing, and environmental durability testing. If required, specific certification tests or on-site verification can also be conducted to ensure that the sensor will perform reliably in the intended application.
Q10 How is the price of custom temperature sensors calculated?
The price of custom temperature sensors is usually determined by several factors:
.Customization requirements: such as temperature range, precision, and wiring configuration.
·Material selection: The cost of materials can vary greatly between standard and custom materials.
.Packaging process: Different packaging types require different levels of manufacturing complexity. More complex packaging or special dimensions and structures will increase production difficulty and time, thus raising costs.
·Production volume: Larger production volumes typically reduce the unit price of each sensor.
·Lead time: Expedited orders may require faster production, which can increase the cost.

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