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Pololu item #:
4042
Brand:
Pololu
Status:
Active and Preferred
This board is a simple compact carrier of Allegro’s ACS724LLCTR-10AU Hall effect-based, electrically isolated current sensor, which offers a low-resistance (~1.2 mΩ) current path and a high 120 kHz bandwidth for fast response times.
Part Suffix | Range | Sensitivity @ 5 V | Zero Point @ 5 V | Supply Voltage |
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10AU | 0-10 A (unidirectional) | 400 mV/A | 0.5 V | 4.5 V to 5.5 V |
Alternatives available with variations in these parameter(s): current range Select variant…
Compare all products in ACS724 Current Sensor Carriers.
ACS724LLCTR-10AU Current Sensor Carrier 0A to 10A. |
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ACS724 current sensor carrier, bottom view with dimensions. |
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ACS724 Current Sensor Carrier pinout. |
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Schematic diagram of the ACS724 Current Sensor Carrier. |
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ACS724LLCTR-10AU Current Sensor Carrier 0A to 10A with included 0.1″ header pins. |
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ACS724LLCTR-10AU Current Sensor Carrier 0A to 10A, top view. |
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Current sensor carrier soldered with high-current wires. |
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Current sensor carrier with solderless ring terminal connectors (not included). |
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Standard packaging for the ACS724LLCTR-10AU Current Sensor Carrier 0A to 10A. |
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We are offering these breakout boards with support from Allegro Microsystems as an easy way to use or evaluate their ACS724LLCTR Hall effect-based, electrically isolated current sensors; we therefore recommend careful reading of the ACS724 datasheet before using this product. The following list details some of the sensor’s key features:
The pads are labeled on the bottom silkscreen, as shown in the picture to the right. The silkscreen also shows the direction that is interpreted as positive current flow via the +i arrow.
A variety of options are available with different current sensing ranges and sensitivities:
ACS724 Current Sensor Carriers | ||
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Sensitivity(1) | Unidirectional range | Bidirectional range |
800 mV/A | 0A to 5A | -2.5A to +2.5A |
400 mV/A | 0A to 10A | -5A to +5A |
200 mV/A | 0A to 20A | -10A to +10A |
133 mV/A | 0A to 30A | |
100 mV/A | -20A to +20A | |
66 mV/A | -30A to +30A | |
40 mV/A | -50A to +50A | |
1 Sensitivity shown for Vcc = 5V. |
Alternatives available with variations in these parameter(s): current range Select variant…
These versions all look very similar, and while you can distinguish them by reading the text on the IC, we also provide a white box on the bottom silkscreen where you can add your own distinguishing markings if so desired.
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This carrier features the ACS724LLCTR-10AU, which operates at 5 V and is designed for unidirectional input current from 0 A to 10 A. This version can be visually distinguished from the other versions by the “10AU” written on the IC as shown in the pictures above.
Part Suffix | Range | Sensitivity @ 5 V | Zero Point @ 5 V | Supply Voltage |
---|---|---|---|---|
10AU | 0-10 A (unidirectional) | 400 mV/A | 0.5 V | 4.5 V to 5.5 V |
When Vcc is 5 V, the output voltage has a zero point at 0.5 V and increases by 400 mV per amp of input current. More generally, More generally, the sensor’s zero point and sensitivity depend on VCC as follows:
``text(Zero Point) = V_"CC" / 10``
``text(Sensitivity) = 0.4 text(V)/text(A) * (1 + ((V_"CC" – 5 text(V)) * 1.3) / (5 text(V)))``
This board ships assembled with all surface mount components, and a 3×1 strip of 0.1″ header pins is included but not soldered in.
This sensor has five required connections: the input current (IP+ and IP-), logic power (VCC and GND), and the sensor output (VIOUT).
The sensor requires a supply voltage of 4.5 V to 5.5 V to be connected across the VCC and GND pads, which are labeled on the bottom silkscreen, and the sensor outputs an analog voltage with a linear relationship to the input current:
``V_"IOUT" = text(Zero Point) + text(Sensitivity) * I_"P"``
``I_"P" = (V_"IOUT" – text(Zero Point)) / text(Sensitivity)``
The FILTER pin lets you adjust the board’s bandwidth by adding a capacitor to ground (a ground pad has been added next to the FILTER pin for convenience) in parallel with the 1 nF capacitor that is already on the board. Without an added external filter capacitor, the bandwidth is about 90 kHz. The datasheet provides more information on how the filter capacitors affect bandwidth.
You can insert the board into your current path in a variety of ways. For low-current applications, you can solder 0.1″ male header pins to the board via the smallest pair of through-holes on the input-current side of the board. For higher-current applications, you can solder wires directly to the through-holes that best match your wires, or you can use solderless ring terminal connectors. The largest through-holes are big enough for 8 AWG wires or #6 or M3.5 screws, and the second-largest through-holes (and mounting holes) are sized for 12 AWG wires or #2 or M2 screws.
Warning: This product is intended for use below 30 V. Working with higher voltages can be extremely dangerous and should only be attempted by qualified individuals with appropriate equipment and experience.
Schematic diagram of the ACS724 Current Sensor Carrier. |
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The dimension diagram is available as a downloadable PDF (1MB pdf).
We have a variety of current sensors available with different ranges, sensitivities, and features. The table below summarizes our selection of active and preferred options:
(1) Sensitivity when Vcc = 3.3 V; sensitivity is ratiometric.
(2) Sensitivity when Vcc = 5 V; sensitivity is ratiometric.
(3) Bandwidth can be reduced by adding a filter capacitor.
(4) ±50A version uses 4-oz copper PCB; all other versions use 2-oz copper.
(5) 50A and higher versions use 4-layer PCB; all other versions use 2-layer PCB.
You can also use the following selection box to see all these options sorted by current range:
Alternatives available with variations in these parameter(s): current range Select variant…
Size: | 0.7″ × 0.8″ |
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Weight: | 1.1 g |
Current sense: | 400 mV/A1 |
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Minimum logic voltage: | 4.5 V |
Maximum logic voltage: | 5.5 V |
Supply current: | 14 mA2 |
Current range: | 0A to 10A (unidirectional 10A), 5V |
Current sensor: | Allegro ACS724LLCTR-10AU |
PCB dev codes: | cs01a |
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Other PCB markings: | 0J1214, blank white box |
This DXF drawing shows the locations of all of the board’s holes. The through-hole sizes and locations in this file also apply to cs01b versions of the PCB, though some of the via locations are different.
This is the application note referenced on page 16 of the ACS724 datasheet, page 22 of the ACS71240 datasheet, and page 42 of the ACS72981xLR datasheet. The ACS720 is used validate the test methods presented, but these same methods and principles would also apply to the ACS724, ACS71240, and ACS72981.
Allegro product page for the ACS724, where you can find additional application notes and other resources.
No FAQs available.
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