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quality Accurate AC DC current sensor AKM CQ2233 with electrical isolation and fast response time in compact design factory
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quality Accurate AC DC current sensor AKM CQ2233 with electrical isolation and fast response time in compact design factory
quality Accurate AC DC current sensor AKM CQ2233 with electrical isolation and fast response time in compact design factory
>
Specifications
working temperature:
-40℃~+150℃
Current Range:
35A
Voltage - Supply:
2.7V~3.63V
Sensitivity:
37.5mV/A
Mfr. Part #:
CQ2233
Key Attributes
Model Number: CQ2233
Product Description

Product Overview

The CQ-2233 is an open-type current sensor utilizing Hall sensor technology to provide an analog voltage output proportional to AC/DC current. It features a quantum well ultra-thin film InAs Hall sensor for high-accuracy and high-speed current sensing. The compact AI-Shell package integrates the Hall sensor, magnetic core, and primary conductor, ensuring space-saving design and high reliability. This bidirectional sensor offers electrical isolation between the primary conductor and the sensor signal, operates on a 3.3V single supply, and provides a ratiometric output. It is designed for low variation and low temperature drift of sensitivity and offset voltage, with low noise output and a fast response time. The CQ-2233 is compliant with IEC/UL 62368-1, UL 508, CSA C22.2 No. 14, and IEC 62109 (certification pending).

Product Attributes

  • Brand: AKM (Asahi Kasei Microdevices Corporation)
  • Sensor Type: Hall Sensor
  • Package Type: AI-Shell, Small-sized, Halogen-free
  • Certifications: IEC/UL 62368-1, UL 508, CSA C22.2 No. 14 (IEC 62109 certification pending)
  • Material: Indium Arsenide (InAs) for Hall sensor, Tin (Sn) plating for terminals
  • Operation: Bidirectional, Electrical Isolation

Technical Specifications

Parameter Symbol Conditions Min. Typ. Max. Units Notes
Maximum Primary Current (RMS) IRMSmax -50 50 A
Current Consumption IDD No loads 6.2 9.6 mA
Sensitivity Vh 37.1 37.9 mV/A See Figure 5
Offset Voltage Vof IIN = 0A 1.636 1.650 1.664 V Note 1
Linear Sensing Range INS -35 35 A
Linearity Error -1 1 %F.S. Note 1, See Figure 5
Rise Response Time tr CL = 100pF 1 s See Figure 8
Fall Response Time tf CL = 100pF 1 s See Figure 8
Bandwidth fT -3dB, CL = 100pF 300 kHz
Output Noise VNrms 100Hz to 4MHz 1.2 mVrms Note 2
Temperature Drift of Sensitivity Vh-dmax Ta = 40 to 110C 0.4 % See Figure 6
Temperature Drift of Offset Voltage Vof-dmax Ta = 40 to 110C, IIN = 0A 5.5 mV See Figure 7
Ratiometric Error of Sensitivity Vh-R VDD = 2.97V to 3.63V -1 1 % Note 2
Ratiometric Error of Offset Voltage Vof-R VDD = 2.97V to 3.63V, IIN = 0A -0.6 0.6 %F.S. Note 2
Total Accuracy ETO Ta = 40 to 110C 1.3 %F.S. Note 3
Primary Conductor Resistance R1 100
Isolation Voltage VINS AC 50/60Hz, 60sec 3 kV Note 2
Isolation Resistance RINS DC 1kV 500 M Note 2
Clearance Distance dCL between the primary and the secondary 13.3 mm Note 2
Creepage Distance dCP between the primary and the secondary 13.3 mm Note 2
Supply Voltage VDD Recommended Operating Conditions 2.7 3.3 3.63 V
Analog Output Current IOUT Recommended Operating Conditions -0.5 0.5 mA VOUT pin
Output Load Capacitance CL Recommended Operating Conditions 100 pF VOUT pin
Operating Ambient Temperature Ta Recommended Operating Conditions -40 110 C See Figure 4
Supply Voltage VDD Absolute Maximum Ratings -0.3 6.5 V VDD pin
Analog Output Current IOUT Absolute Maximum Ratings -1 1 mA VOUT pin
Storage Temperature Tstg Absolute Maximum Ratings -40 150 C

Notes:

  • Note 1: These parameters can drift by the values in 14. Reliability Tests after the reflow and over the lifetime of this product.
  • Note 2: These parameters are guaranteed by design.
  • Note 3: Total accuracy ETO is calculated by the equation below. ETO = |100 (Vh_meas Vh) / Vh| + |100 (Vof_meas Vof_meas_35) / (Vh |INS| 2)| + |meas| where Vh_meas[mV/A], Vof_meas[mV], meas[%F.S.] represent the measured value of sensitivity, offset voltage and linearity error respectively, Vh[mV/A] represent the typical value of sensitivity, and Vof_meas_35[mV] represent the measured value of offset voltage at Ta = 35C. In the case of CQ-2233, ETO is calculated by the equation as below. ETO = |100 (Vh_meas 37.5) / 37.5| + |100 (Vof_meas Vof_meas_35) / (37.5 35 2)| + |meas|

2411261450_AKM-CQ2233_C6156008.pdf

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