CKSR 25-NP LEM USA Inc, CKSR 25-NP Datasheet - Page 12

SENSOR CURRENT 25A 5V MOD

CKSR 25-NP

Manufacturer Part Number
CKSR 25-NP
Description
SENSOR CURRENT 25A 5V MOD
Manufacturer
LEM USA Inc
Series
CKSRr
Datasheet

Specifications of CKSR 25-NP

Current - Sensing
25A
Accuracy
±0.8%
Sensitivity
25mV/A
Current - Supply
-
Sensor Type
Flux Gate
Voltage - Supply
4.75 V ~ 5.25 V
Output
0 ~ 5 VDC
Frequency
300kHz
Response Time
300ns
Polarization
Bidirectional
Operating Temperature
-40°C ~ 105°C
Package / Case
Module
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
398-1097-5
Filtering Vout
The output Vout has a very low output impedance of
typically 2 Ω; it can drive 100 pF directly and shows
50 % overshoot with approximately 1 nF capacitance.
Adding Rf allows much larger capacitive loads. Note
that with Rf of only 20 Ω, the load capacitor should be
either smaller than 1 nF or larger than 33 nF to avoid
overshoot; with Rf of 50 Ω this transient area is avoided.
Empirical evaluation may be necessary to obtain
optimum results.
Example: Filtering the typical 450 kHz frequency of the
detector:
To have an attenuation of 20 dB at 450 kHz, the cutting
frequency of the 1st order filter is chosen at Fc = 45 kHz.
To avoid transient area, the resistance Rf is chosen at
50 Ω.
The filter capacitor is then as per Fig. 11.
Load output resistance: R
The minimum load resistance of Vout is 1 kOhm.
Reference Voltage
If the Ref pin of the transducer is not used it must be
left unconnected.
No special filtering is needed for Ref pin.
The Ref pin has two modes Ref in and Ref out:
• In the
Fig. 11.
reference is used by the transducer as the reference
point for bipolar measurements; this internal reference
is connected to the Ref pin of the transducer through
a 680 Ω resistor. It tolerates sink or source currents
up to ± 5 mA, but the 680 Ω resistor prevents this
current to exceed these limits.
12
Ref out
mode, the 2.5 V internal precision
Cf
Cf
=
L
2
π
70
7 .
1
Rf
nF
Fc
Cf
• In the
When the Ref pin is connected to a load, due to the
leakage current and internal resistance (680 Ω),
V
the measuring range. To guarantee the measuring
range:
connected to the Ref pin; this voltage is specified
in the range 0 to 4 V and is directly used by the
transducer as the reference point for measurements.
The external reference voltage V
By using an external reference, it is easier to connect
the transducer to devices such as an ADC.
In most applications, the output of the transducer is
connected to an ADC whose output is processed by
a DSP or a microcontroller.
The internal reference of these DSPs or ADCs can go
down to 1.8 V.
In this application, if you have an internal reference
in the DSP with external access, you can supply the
transducer’s reference in with it.
REF
=
• The leakage current from the Ref pin (source)
• The leakage current from the Ref pin (sink) must
• Either to source a typical current of
• Or to sink a typical current of
2
OUT (internal reference) can change and reduce
must be lower than 350 µA when the load is
connected to a voltage > 2.5 V.
be lower than 4.4 µA when the load is connected
to a voltage < 2.5 V.
maximum value will be 2.2 mA typ. when V
maximum value will be 3.68 mA typ. when V
Rf = 50 _
π
Ref in
50
1
mode, an external reference voltage is
45
E
0V
3
Cf = 82 nF
REF
must be able:
Vref − 2.5
2.5 − Vref
680
680
REF
REF
= 0 V.
= 4 V.
, the
, the

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