Open Loop Hall Effect Current Transducer 4V Output For Welding Machines
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Large Image :
Open Loop Hall Effect Current Transducer 4V Output For Welding Machines
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Product Details:
Place of Origin: |
China |
Brand Name: |
chieful |
Certification: |
CE,Rohs,ISO9001 |
Model Number: |
CS600N |
Payment & Shipping Terms:
Minimum Order Quantity: |
1PC |
Price: |
Negotiable |
Packaging Details: |
Carton |
Delivery Time: |
5 Days |
Payment Terms: |
T/T |
Supply Ability: |
100000th/month |
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Detailed Product Description
Window Size: |
22*16mm |
Power Supply: |
+/-12V To +/-15V |
Output: |
4V |
Weight: |
73g |
Application: |
Welding Machines |
Linearity: |
<1%FS |
Welding Machine 4V Output Hall Effect Current Transducer Window 22 X16mm
Details
open loop device based on the measuring principle of the hall effect, with a galvanic isolation between primary and secondary circuit. It provides accurate electronic measurement of DC, AC or pulsed currents.Hall current sensors are widely applicable for acquisition and feeback control of current signals in the current monitoring,inverter,solar power management,current cabinet,DC motor drive and UPS servo control systems.
Electrical characteristics |
| Type | CS050N | CS100N | CS200N | CS300N | CS400N | CS500N | CS600N | |
IPN | Primary nominal input current | 50 | 100 | 200 | 300 | 400 | 500 | 600 | A |
IP | Measuring range of primary current | 0~±100 | 0~±200 | 0~±400 | 0~±600 | 0~±800 | 0~±900 | 0~±900 | A |
VOUT | Nominal output voltage | 4±1% | V |
VC | Supply voltage | ±12~±15(±5%) | V |
IC | Current consumption | VC=±15V <20 | mA |
VD | Insulation voltage | AC/50Hz/1min 2.5 | kV |
εL | Linearity | <1 | %FS |
VO | Offset voltage | TA=25℃ <±25 | mV |
VOM | Residual voltage | IPN→0 <±20 | mV |
VOT | Thermal drift of V0 | IP=0 TA=–25~+85℃ <±1 | mV/℃ |
TR | Response time | ≤5 | μs |
f | Frequency bandwidth(-3dB) | DC~20 | kHz |
TA | Ambient operating temperature | –25~+85 | ℃ |
TS | Ambient storage temperature | –40~+100 | ℃ |
RL | Load resistance | ≥10 | KΩ |
m | Mass | 77 | g |
| Standard | Q/320115QHKJ01-2016 | |