ZXCT1010EV1 User Guide issue 4

ZXCT1010 EV1
ZXCT1010EV1 EVALUATION BOARD USER GUIDE
DESCRIPTION
The ZXCT1010EV1 is intended for the evaluation of the
ZXCT1010 device. The ZXCT1010 is a high side current
monitor providing a fixed transconductance gain of 10mS
(mA/V).
The device produces a current output proportional to the
current sampled by a small inline sensing resistor, RS.
The voltage output is scaled by the choice of RS and the
load resistor R7.
There is a second resistor (50mΩ) that can be selected
by means of a solder link which provides an output of
1.494V (~1.5V) for a load current of 1.2A.
Provision is made for a wire ended sampling resistor of
user’s choice.
The printed circuit board is common to other devices in
the ZXCT family. For the ZXCT1010, neither the FLAG
nor the VCC pins are used.
As delivered the board is set up to provide an output of
1.5V from a current of 300mA using a 200 mΩ sampling
resistor and a 2.49k load resistor.
FEATURES
•
Supply Range 4.2 to 20V for 1.5V output.
•
Selectable current measurement range
•
5 Pin SOT23-5 package
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APPLICATIONS
•
Battery Charging
•
Power Supplies
•
Over Current Monitoring
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ZXCT1010 EV1
ORDERING INFORMATION
ORDER NUMBER
ZXCT1010EV1
Please note evaluation boards are subject to availability and qualified leads.
PAD NAMES AND DEFINITIONS
.
NAME
DESCRIPTION
V1
Supply Voltage
V2
Connection to Load
VOUT
Output Voltage
FLAG
Not used
GND
0V / Ground
SL1,SL2
Solder Links
Vcc
Not used
The ZXCT1010EV1 is configured as shown in figure 1; SL1 is shorted for an output of ~1.5V at 300mA. The target
applications are battery chargers, power supply units and other applications where current measurement is required.
The input voltage range for the ZXCT1010EV1 is 20V down to a minimum of (2.7V +VOUT). E.g. if the required full
scale output voltage is 1.5 V the input range is 4.2V to 20V.
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ZXCT1010 EV1
ZXCT1010EV1 Schematic
R3
SL1
R1
200m
R2
V1
SL2
V2
50m
Vsense+
Vsense-
ZXCT1010
Vout
GND
Vout
R7
2.49k
GND
Sense resistor RS
The board has been designed with two selectable values of sense resistor. The value of the sense resistor can be
chosen by using the solder links SL1 and SL2.
The board is also tracked for a user defined through hole resistor (R3).
The 200mΩ resistor (R1) is selected by shorting SL1 and opening SL2. This results in an output of 1.5V for a load
current of 300mA (assuming that R3 is not fitted).
The 50mΩ resistor (R2) is selected by shorting SL2 and opening SL1, resulting in an output of 1.5V for a load current
of 1.2A (assuming that R3 is not fitted).
If both links are shorted the effective resistance is 40mΩ giving an output of 1.5V for a current of 1.5A (assuming that
R3 is not fitted).
If both links are open only the optional leaded resistor R3 (if fitted ) is in circuit.
The maximum power dissipation rating of the resistor must be appropriate to the load current level.
N.B. The board is set by default with SL1 shorted and SL2 open, using the 200mΩ
Ω resistor.
For further information on choosing a value of sense resistor please refer to the ZXCT1010 datasheet .
VOUT
If the preset selectable values of sense resistor are chosen, the device will produce 0.6mA for a 300mA load current
or 0.6mA for a 3.0A load current, depending on which link is closed. The current output is directly proportional to the
differential voltage across the sense pins of the device.
The output voltage is then proportional to the value of the load resistor R7. As supplied R7 = 2.49K giving 1.5V for a
current of 0.6mA.
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Configuration table for ZXCT1010EV1
LOAD CURRENT
(A)
RS
(mΩ
Ω)
VOUT
(V)
SOLDER LINK
CONFIGURATION
0.3
200
1.5
Short SL1
1.2
50
1.5
Short SL2
1.5
40
1.5
Short SL1 & SL2
Configuration for different LOAD currents.
The board can be configured for different load currents by changing the SMD resistors or fitting a suitable wire ended
resistor and opening both solder links. It is important to ensure an appropriate value of RS is selected to obtain the
desired accuracy for a given output current.
The value of IOUT is the transconductance (10mS) times the voltage dropped across the sense resistor, (providing that
the voltage on V1 is at least 2.7V higher than VOUT.)
Choosing a larger value for RS gives a higher output voltage for a given current resulting in better resolution but at the
expense of increased voltage drop and higher dissipation in RS. It also reduces the minimum voltage at which the
device will be linear as VOUT +2.7V is the minimum input voltage for accurate results.
Increasing the value of the gain resistor R7 also increases the sensitivity but at the expense of larger output
impedance. The criterion for minimum input voltage still applies.
The maximum practical value of R7 is limited by the output conductance of the ZXCT1010 and the output voltage that
can be tolerated - in practice R7 should not be greater than about 5k.
The ZXCT1010 is optimized for values of VSENSE between 1mV and 150mV but may be used up to 800mV.
Example: Scaling for 1.5A load current and a 500mV output.
The ZXCT1010 has a fixed transconductance of 10mS, IOUT = VSENSE/100.
Using the fitted value of R7 (2.49k) an output current of 200uA would be required to produce 500mV output Voltage.
VSENSE must then be 200uA *100 = 20mV required between VSENSE+ and VSENSE-.
The value for RSENSE is thus 20mV /1.5A = 13mΩ.
Accuracy
1
The ZXCT1010 current monitor IC is a 1% accurate device. The accuracy of the output voltage will be influenced by
the tolerance of the external sense used. The ZXCT1010EV1 utilizes 1% accurate sense resistors.
COMPONENTS LIST
Ref
Value
Package
Part Number
Manufacturer
R1
200mΩ
1206
LR1206-R20FI
R2
50mΩ
2512
LRF2512-R050FW
Welwyn
Welwyn
ZXCT
R7
SOT23-5
0805
ZXCT1010E5
ZETEX
2.49kΩ
1
Notes
SMD Sense Resistor 1%
SMD Sense Resistor 1%
SMD Sense Resistor 1%
Total error at +100mV sense voltage
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ZXCT1010 EV1
SET-UP AND TEST
The board is preset to give an output Voltage of 2.5V for a load current of 500mA (SL1 is shorted to connect
in the 200mΩ
Ω (R1) sense resistor). To change the board to give an output Voltage of 2.5V for a current of
2.0A, de-solder SL1 and short SL2. This connects the 50mΩ
Ω (R2) sense resistor.
500mA load test
1.
2.
3.
4.
5.
Ensure SL1 is shorted.
Connect a linear power supply of +10V between the V1 and GND terminals.
Set a load current of 500mA between the V2 and GND terminals using a suitable load.
The load must be rated for at least 5W .
Check with a DVM the supply voltage is +10V between the V1 and GND terminals.
Measure VOUT with a DVM. The nominal output voltage should read 2.5V.
The device may also be evaluated with lower power loads and lower currents by increasing the value of RS.
As the device reacts only to the voltage across this resistor such tests are equally valid.
CONNECTION DIAGRAM
ZXCT1010EV1
Vcc
FLAG
Vout
PSU
10V
V1
V2
GND
LOAD
DVM
GND
EVALUATION BOARD
CURRENT MONITOR
EVALUATION BOARD
www.zetex.com
Vcc
FLAG
ZXCT
R4 C1
R5
V1
R7 R8
Vout
R6
R1
SL1
R2
SL2
V2
R3
SL3
GND
GND
Refer to 'User Guide'
for details.
Bare board: ZDB341R2
Copyright Zetex PLC 2006
Top Silk
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ZXCT1010 EV1
Definitions
Product change
Zetex Semiconductors reserves the right to alter, without notice, specifications, design, price or conditions of supply of any product or service.
Customers are solely responsible for obtaining the latest relevant information before placing orders.
Applications disclaimer
The circuits in this design/application note are offered as design ideas. It is the responsibility of the user to ensure that the circuit is fit for the user’s
application and meets with the user’s requirements. No representation or warranty is given and no liability whatsoever is assumed by Zetex with
respect to the accuracy or use of such information, or infringement of patents or other intellectual property rights arising from such use or otherwise.
Zetex does not assume any legal responsibility or will not be held legally liable (whether in contract, tort (including negligence), breach of statutory
duty, restriction or otherwise) for any damages, loss of profit, business, contract, opportunity or consequential loss in the use of these circuit
applications, under any circumstances.
Life support
Zetex products are specifically not authorized for use as critical components in life support devices or systems without the express written approval of
the Chief Executive Officer of Zetex Semiconductors plc. As used herein:
A.
Life support devices or systems are devices or systems which:
1. are intended to implant into the body
or
2. support or sustain life and whose failure to perform when properly used in accordance with instructions
for use provided in the labeling can be reasonably expected to result in significant injury to the user.
B.
A critical component is any component in a life support device or system whose failure to perform can be reasonably expected to cause the
failure of the life support device or to affect its safety or effectiveness.
Reproduction
The product specifications contained in this publication are issued to provide outline information only which (unless agreed by the company in writing)
may not be used, applied or reproduced for any purpose or form part of any order or contract or be regarded as a representation relating to the
products or services concerned.
Terms and Conditions
All products are sold subjects to Zetex’ terms and conditions of sale, and this disclaimer (save in the event of a conflict between the two when the
terms of the contract shall prevail) according to region, supplied at the time of order acknowledgement.
For the latest information on technology, delivery terms and conditions and prices, please contact your nearest Zetex sales office.
Quality of product
Zetex is an ISO 9001 and TS16949 certified semiconductor manufacturer.
To ensure quality of service and products we strongly advise the purchase of parts directly from Zetex Semiconductors or one of our regionally
authorized distributors. For a complete listing of authorized distributors please visit: www.zetex.com/salesnetwork
Zetex Semiconductors does not warrant or accept any liability whatsoever in respect of any parts purchased through unauthorized sales channels.
ESD (Electrostatic discharge)
Semiconductor devices are susceptible to damage by ESD. Suitable precautions should be taken when handling and transporting devices. The
possible damage to devices depends on the circumstances of the handling and transporting, and the nature of the device. The extent of damage can
vary from immediate functional or parametric malfunction to degradation of function or performance in use over time. Devices suspected of being
affected should be replaced.
Green compliance
Zetex Semiconductors is committed to environmental excellence in all aspects of its operations which includes meeting or exceeding regulatory
requirements with respect to the use of hazardous substances. Numerous successful programs have been implemented to reduce the use of
hazardous substances and/or emissions.
All Zetex components are compliant with the RoHS directive, and through this it is supporting its customers in their compliance with WEEE and ELV
directives.
Product status key:
“Preview”
“Active”
“Last time buy (LTB)”
“Not recommended for new designs”
“Obsolete”
Datasheet status key:
“Draft version”
Future device intended for production at some point. Samples may be available
Product status recommended for new designs
Device will be discontinued and last time buy period and delivery is in effect
Device is still in production to support existing designs and production
Production has been discontinued
This term denotes a very early datasheet version and contains highly provisional
information, which may change in any manner without notice.
This term denotes a pre-release datasheet. It provides a clear indication of anticipated performance. However,
changes to the test conditions and specifications may occur, at any time and without notice.
This term denotes an issued datasheet containing finalized specifications. However, changes to specifications
may occur, at any time and without notice.
“Provisional version”
“Issue”
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© 2006 Published by Zetex Semiconductors plc.
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