参数资料
型号: ACS710KLATR-12CB-NL-T
厂商: Allegro Microsystems Inc
文件页数: 18/23页
文件大小: 0K
描述: IC CURRENT SENSOR 120KHZ 16-SOIC
标准包装: 1,000
电流 - 感应: ±12.5A
精确度: ±2.2%
灵敏度: 56mV/A
电流 - 电源: 11mA
传感器类型: 霍尔效应
电源电压: 3 V ~ 5.5 V
输出: 2.5V
频率: 120kHz
响应时间: 4µs
电极标记: 双向
工作温度: -40°C ~ 125°C
封装/外壳: 16-SMD
包装: 剪切带 (CT)
ACS710
120 kHz Bandwidth, High Voltage Isolation
Current Sensor with Integrated Overcurrent Detection
Functional Description (Non-Latching Versions)
Overcurrent Fault Operation
The primary concern with high-speed fault detection is that noise
may cause false tripping. Various applications have or need to
be able to ignore certain faults that are due to switching noise or
other parasitic phenomena, which are application dependant. The
problem with simply trying to filter out this noise in the main sig-
nal path is that in high-speed applications, with asymmetric noise,
the act of filtering introduces an error into the measurement.
To get around this issue, and allow the user to prevent the fault
than t OCH . The internal NMOS pull-down turns off and an
internal PMOS pull-up turns on.
4. The slope, and thus the delay to pull the fault low is controlled
by the capacitor, C OC , placed on the ˉF ˉAˉ ˉUˉ ˉLˉ ˉTˉ pin to ground.
During this portion of the fault (when the ˉF ˉAˉ ˉUˉ ˉLˉ ˉTˉ pin is
between V CC and 2 V), there is a 3 mA constant current sink,
which discharges C OC . The length of the fault delay, t, is equal
to :
signal from going low due to noise, a circuit was designed to slew
the ˉF ˉAˉ ˉUˉ ˉLˉ ˉTˉ pin voltage based on the value of the capacitor from
t =
C OC ( V CC – 2 V )
3 mA
(2)
that pin to ground. Once the voltage on the pin falls below 2 V, as
established by an internal reference, the fault output is pulled to
ground quickly with an internal N-channel MOSFET.
Fault Walk-through
The following walk-through references various sections and
attributes in the figure below. This figure shows different
fault set/reset scenarios and how they relate to the voltages on
the ˉF ˉAˉ ˉUˉ ˉLˉ ˉTˉ pin, FAULT_EN pin, and the internal Overcurrent
(OC) Fault node, which is invisible to the customer.
1. Because the device is enabled (FAULT_EN is high for a mini-
ˉ
mum period of time, the Fault Enable Delay, t FED , and there is
an OC fault condition, the device ˉF ˉAˉ ˉUˉ ˉLˉ ˉTˉ pin starts discharging.
2. When the F Aˉ Uˉ Lˉ Tˉ pin voltage reaches approximately 2 V, an
internal NMOS device pulls the ˉF ˉAˉ ˉUˉ ˉLˉ ˉTˉ pin voltage to approx-
imately 0 V. The rate at which the ˉF ˉAˉ ˉUˉ ˉLˉ ˉTˉ pin slews downward
(see [4] in the figure) is dependent on the external capacitor,
C OC , on the ˉF ˉAˉ ˉUˉ ˉLˉ ˉTˉ pin.
ˉ
3. When the FAULT_EN pin is brought low, the F Aˉ Uˉ Lˉ Tˉ pin
starts resetting if FAULT_EN is low for a time period greater
where V CC is the device power supply voltage in volts, t is in
seconds and C OC is in Farads. This formula is valid for R PU
equal to or greater than 330 k Ω . For lower-value resistors,
the current flowing through the R PU resistor during a fault
event, I PU , will be larger. Therefore, the current discharging
the capacitor would be 3 mA – I PU and equation 1 may not be
valid.
5. The ˉF ˉAˉ ˉUˉ ˉLˉ ˉTˉ pin did not reach the 2 V latch point before the
OC fault condition cleared. Because of this, the fixed 3 mA
current sink turns off, and the internal PMOS pull-up turns on
to recharge C OC through the ˉF ˉAˉ ˉUˉ ˉLˉ ˉTˉ pin.
6. This curve shows V CC charging external capacitor C OC
through the internal PMOS pull-up. The slope is determined
by C OC .
7. At this point there is a fault condition, and the part is enabled
before the ˉF ˉAˉ ˉUˉ ˉLˉ ˉTˉ pin can charge to V CC . This shortens the
user-set delay, so the fault gets pulled low earlier. The new
delay time can be calculated by equation 1, after substituting
the voltage seen on the ˉF ˉAˉ ˉUˉ ˉLˉ ˉTˉ pin for V CC .
V CC
1
1
1
FAULT
(Output)
2V
4
2
6
t FED
4
5
6
4
2
6
7
4
2
3
0V
FAULT_EN
(Input)
OC Fault
Condition
(Active High)
Time
Allegro MicroSystems, LLC
115 Northeast Cutoff
Worcester, Massachusetts 01615-0036 U.S.A.
1.508.853.5000; www.allegromicro.com
18
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