ACHS-7121-500E

Broadcom / Avago
630-ACHS-7121-500E
ACHS-7121-500E

Mfr.:

Description:
Board Mount Current Sensors Hall Effect IC +LF 10A 185mV/A

ECAD Model:
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Availability

Stock:
0

You can still purchase this product for backorder.

Factory Lead Time:
14 Weeks Estimated factory production time for quantities greater than shown.
Minimum: 1   Multiples: 1
Unit Price:
$-.--
Ext. Price:
$-.--
Est. Tariff:
Packaging:
Full Reel (Order in multiples of 1500)

Pricing (USD)

Qty. Unit Price
Ext. Price
Cut Tape / MouseReel™
$2.91 $2.91
$2.60 $13.00
$2.36 $23.60
$2.26 $113.00
$2.17 $217.00
$1.99 $995.00
$1.89 $1,890.00
Full Reel (Order in multiples of 1500)
$1.80 $2,700.00
† A MouseReel™ fee of $7.00 will be added and calculated in your basket. All MouseReel™ orders are non-cancellable and non-returnable.

Similar Product

Broadcom / Avago ACHS-7191-500E
Broadcom / Avago
Board Mount Hall Effect/Magnetic Sensors Hall Effect IC, LF

Product Attribute Attribute Value Select Attribute
Broadcom Limited
Product Category: Board Mount Current Sensors
RoHS:  
10 A
Current Sense
4 us
4.5 V to 5.5 V
Brand: Broadcom / Avago
Country of Assembly: Not Available
Country of Diffusion: Not Available
Country of Origin: PH
Height: 1.908 mm
Length: 5.08 mm
Maximum Operating Temperature: + 110 C
Minimum Operating Temperature: - 40 C
Output Voltage: 6 V
Package/Case: SOIC-8
Packaging: Reel
Packaging: Cut Tape
Packaging: MouseReel
Product Type: Board Mount Current Sensors
Factory Pack Quantity: 1500
Subcategory: Sensors
Supply Voltage - Max: 5.5 V
Supply Voltage - Min: 4.5 V
Type: Linear Current Sensor
Width: 3.937 mm
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Attributes selected: 0

USHTS:
8541498000
ECCN:
EAR99

ACHS-712x Current Sensor ICs

Broadcom ACHS-712x Current Sensor ICs are a fully integrated Hall Effect-based isolated linear current sensor device family. These devices are designed for AC or DC current sensing in industrial, commercial, and communications systems. Each of the devices consists of a precise, low-offset, linear Hall circuit with a copper conduction path located near the surface of the die. Applied current flowing through this copper conduction path generates a magnetic field that the Hall IC converts into a proportional voltage. The device accuracy is optimized through the close proximity of the magnetic signal to the Hall transducer.

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