THAN0165_Rev.2.00_E
THL3503 Evaluation Board (THEVAL3503)
16-channel LED Driver with LVDS Interface
Overview
Features
TheTHL3503isanLEDdriverwith16channelconstant
currentsinkoutputs.Theconstantcurrentvaluesfor threeoutput
groupsaredeterminedbyexternalresistors.
TheembeddedoscillatorandPWMcontroller individually
generates256-stepbrightnesssetbythe dedicatedregistersfor
eachchannel.
Theserialinterfaceof2-pairLVDSlines(clockand data)features
high-levelnoisetolerance,high-speed,and long-distance
transmission.
TheLVDSallowingcascadedandmulti-dropconnection offers
themaximumflexibilityfordesignerstoplaceand connectLED
drivers.
Thesimpleandone-waycommunicationprotocolis
easily-controlledandrequireslessCPUresources.
Applications
-ConstantCurrentOutput:16channels
-OutputSinkCurrent:upto40mA/ch
-Outputvoltage:upto40V
-IndividualBrightnessControl:256steps
-GroupBrightnessControl:64steps
-Outputdisable/enable
-2-pairSerialLVDSInputor3-wireSerialCMOSInput upto
10Mbps
-BridgeFunctionConverting3-wireSerial CMOSInputto
2-pairSerialLVDSOutput
-Repeaterfunctionof2-pairSerialLVDSInput/Output with
WaveformandTimingCorrection
-DeviceAddressSelectionupto62addresses
-Generalcalltoalldevices
-UVLO,OvercurrentProtection,ThermalShutdown
-SupplyVoltage:3.0~5.5V
-Package:QFN40-pinExposedPad
Amusement
LEDBacklight
LEDDisplay
DigitalSignage
Illumination
Description
Figure 1 Board Overview
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THAN0165_Rev.2.00_E
■Power Supply Inputs
The method for connecting power supply inputs are shown below.
1) The all power supply inputs from the pre-stage. (Factory default settings)
Power supply of LED and IC(3.0
5.5V)
1
2
3
4
5
6
7
8
9
10
GND
Figure 2 Power supply from pre-stage
2) The all power supply inputs from the external unit.
Figure 3 Power supply from external unit
3) The power supply of LED inputs from the external unit and the power supply of IC inputs from the pre-stage.
Figure 4 Power supply from external unit and pre-stage
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THAN0165_Rev.2.00_E
■Dip-Switch Setting
Dip-Switch can set the device address and the control signal input mode.
#2_TEST always set to Low.
1) Setting of the device address.
Device address can set the A0 to A5. Switch is the Low level when the ON side.
2) Setting of the control signal input mode.
Please refer to the following control signal input mode settings.
Table 1 Control signal input mode
Input Mode
MODE pin
3 wire serial CMOS
High
2 wire serial LVDS
Low
Figure 5 Example for DIP-Switch
■Input Mode Setting
In the case of change the control signal input mode, the following processing is required.
1) To 2 wire serial LVDS input: Please implement the 100 ohm resister to R517 and R519.
(Factory default settings)
2) To 3 wire serial CMOS input: Please remove the 100 ohm resister from R517 and R519.
Figure 6 Processed terminal resister
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PH10
CON502
CON501
1
3
2
DC10B
CB
GND
SCLp
SDAp
SCL_INp
9
10
SCL_INn
8
GND
SDA_INp
6
7
SDA_INn
Exclusive
EMI FILTER GND
PSG CG
B
EF500
VDD
GND
LED
GND
GND
5
4
3
2
1
1
3
2
CON500
ML-800-S1H-3P
3
2
1
SCL_INp
GND
SDA_INp
L505
L503
L502
L501
4
6
5
VDD
SCL_INn
GND
SDA_INn
D500
LED
R512
330ohm
GND
LVDD
GND
7
8
Header 4X2
3
JP502
1
2
Beads
Beads
Beads
Exclusive
Beads
Beads
CE500 100uF
L500
8:A0
7:A1
6:A2
5:A3
4:A4
3:A5
2:TEST
1:MODE
Beads
Beads
SCLn
SDAn
L506
L504
SW500
L
H
GND
2
4
6
8
10
12
14
16
Header 8X2
1
3
5
7
9
11
13
15
GND SW-DIP8
JP501
9
10
11
12
13
14
15
16
GND
AVDD
GND
DVDD
CE501 100uF
CE502 100uF
8
7
6
5
4
3
2
1
A0_0
A1_0
A2_0
A3_0
A4_0
A5_0
TEST_0
MODE_0
10uF
C500
LVDD
R500 0ohm
LVDD
R506 0ohm
VDD
LVDD
R513 0ohm
10uF
10uF
C502
10uF
LED
GND
LED
LED500
LED
LED506
LED512
LVDD
LVDD
GND
GND
GND
GND
LVDD
LED
LED
LED
GND
GND
Just for Probing
C516 10pF
C514 10pF
C511 10pF
LED
4
5
6
7
0
1
2
3
G
G
G
G
LVDD
LVDD
LED
LED
LVDD
LVDD
REXT1
DVDD
A4
A5
REXT2
MODE
OUT13
OUT14
OUT15
DGND
R519
100ohm
THL3503
AVDD
GND
REXT0
DVDD
A3
A2
A1
A0
OUT2
OUT1
OUT0
DGND
IC500
THL3503
LED
LED
20
19
18
17
16
15
14
13
12
11
LVDD
LVDD
DVDD
OUT2_0
OUT1_0
OUT0_0
GND
LED
LED
LED
AVDD
LVDD
DVDD
0.1uF
C505
GND
R522
3.3kohm
GND
GND
REXT0
JP500
Header 12x2
LED
GND
OUT8_0 OUT7_0
LVDD
OUT9_0
OUT6_0
OUT10_0
OUT5_0
OUT11_0
OUT4_0
OUT12_0
OUT3_0
R517
100ohm
31
32
33
34
35
36
37
38
39
40
10kohm
C509 10pF
R524
REXT2
R523
3.3kohm
GND
OUT13_0
OUT14_0
OUT15_0
DVDD
0.1uF
LED
REXT1
LVDD
GND
R521
3.3kohm
C504
GND
8
9
14 12 10
15 13 11
G
G
LVDD
R502 0ohm
C503
R501 0ohm
R507 0ohm
C501
RN501 10kohm x4
1
8
2
7
3
6
4
5
LED501
G
C512
R508 0ohm
R503 0ohm
R509 0ohm
0.1uF
R514 0ohm
LED502
LED508
LED503
LED509
30
29
28
27
26
25
24
23
22
21
OUT12
OUT11
OUT10
OUT9
OUT8
OUT7
OUT6
OUT5
OUT4
OUT3
SDA_INn/TEST
SDA_INp
SCL_INn
SCL_INp
AVDD
AGND
SCL_OUTp
SCL_OUTn
SDA_OUTp
SDA_OUTn
LED507
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
R504 0ohm
R510 0ohm
OUT15_0
OUT14_0
OUT13_0
OUT12_0
OUT11_0
OUT10_0
OUT9_0
OUT8_0
OUT7_0
OUT6_0
OUT5_0
OUT4_0
OUT3_0
OUT2_0
OUT1_0
OUT0_0
1
2
3
4
5
6
7
8
9
10
LED513
G
GND
10uF
R515 0ohm
LED504
LED510
LED514
R505 0ohm
C506
LED505
LED511
LED515
R511 0ohm
R516 0ohm
10uF
C507
4/6
10uF
Copyright(C)2015 THine Electronics, Inc.
C508
LVDD
13 10
15 12
14 11
8
9
6
7
3
5
4
0
2
1
GND
GND
GND
GND
Just for Probing
C517 10pF
C515 10pF
C513 10pF
C510 10pF
VDD
GND
R520
100ohm
GND
R518
100ohm
GND
Beads
L507
10
9
8
7
6
5
4
3
2
1
PH10
CON503
THAN0165_Rev.2.00_E
■Board schematic
Figure 7 Board schematic
THine Electronics, Inc.
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RN500 10kohm x4
1
8
2
7
3
6
4
5
THAN0165_Rev.2.00_E
■Bill of materials
Table 2 Bill of materials
#
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
Designator
C500
C501
C502
C503
C504
C505
C506
C507
C508
C512
CON500
CON502
CON503
D500
IC500
JP500
JP501
JP502
L500
L502
L503
L504
L505
L506
L507
LED500
LED501
LED502
LED503
LED504
LED505
LED506
LED507
LED508
LED509
LED510
LED511
LED512
LED513
LED514
LED515
R500
R501
R502
R503
R504
R505
R506
R507
R508
R509
R510
R511
R512
R513
R514
R515
R516
R517
R518
R519
R520
R521
R522
R523
R524
RN500
RN501
SW500
Description
Capacitor
Capacitor
Capacitor
Capacitor
Capacitor
Capacitor
Capacitor
Capacitor
Capacitor
Capacitor
Connector
Nylon Connector
Nylon Connector
LED(Red)
LED Driver
Pin Header
Pin Header
Pin Header
Bead
Bead
Bead
Bead
Bead
Bead
Bead
LED
LED
LED
LED
LED
LED
LED
LED
LED
LED
LED
LED
LED
LED
LED
LED
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor
Resistor Array
Resistor Array
DIP Switch
Size
3225
3225
3225
3225
1608
1608
3225
3225
3225
1608
QFN40
2.54mm pitch
2.54mm pitch
2.54mm pitch
4516
4516
4516
4516
4516
4516
4516
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
2012
1608
2012
2012
2012
2012
1608
1608
1608
1608
1608
1608
1608
1608
3216
3216
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Part Number
GRM32EB31H106KA12
GRM32EB31H106KA12
GRM32EB31H106KA12
GRM32EB31H106KA12
GRM188B31H104KA92
GRM188B31H104KA92
GRM32EB31H106KA12
GRM32EB31H106KA12
GRM32EB31H106KA12
GRM188B31H104KA92
ML-800-S1H-3P
B10B-PH-K-S(LF)(SN)
B10B-PH-K-S(LF)(SN)
SML-210LT
THL3503
JTW-2500
JTW-2500
JTW-2500
BLM41PG600SN1L
BLM41PG600SN1L
BLM41PG600SN1L
BLM41PG600SN1L
BLM41PG600SN1L
BLM41PG600SN1L
BLM41PG600SN1L
PY1112H-TR
PY1112H-TR
PY1112H-TR
PY1112H-TR
PY1112H-TR
PY1112H-TR
PY1112H-TR
PY1112H-TR
PY1112H-TR
PY1112H-TR
PY1112H-TR
PY1112H-TR
PY1112H-TR
PY1112H-TR
PY1112H-TR
PY1112H-TR
RK73Z2ATTD
RK73Z2ATTD
RK73Z2ATTD
RK73Z2ATTD
RK73Z2ATTD
RK73Z2ATTD
RK73Z2ATTD
RK73Z2ATTD
RK73Z2ATTD
RK73Z2ATTD
RK73Z2ATTD
RK73Z2ATTD
RK73B1JBK331J
RK73Z2ATTD
RK73Z2ATTD
RK73Z2ATTD
RK73Z2ATTD
RK73B1JBK101J
RK73B1JBK101J
RK73B1JBK101J
RK73B1JBK101J
RK73B1JBK332J
RK73B1JBK332J
RK73B1JBK332J
RK73B1JBK103J
CN1J4TTD103J
CN1J4TTD103J
A6S-8101-H
Manufacturer
Murata
Murata
Murata
Murata
Murata
Murata
Murata
Murata
Murata
Murata
Sato-parts
JST
JST
Rohm
THine
Hirosugi-Keiki
Hirosugi-Keiki
Hirosugi-Keiki
Murata
Murata
Murata
Murata
Murata
Murata
Murata
Stanley
Stanley
Stanley
Stanley
Stanley
Stanley
Stanley
Stanley
Stanley
Stanley
Stanley
Stanley
Stanley
Stanley
Stanley
Stanley
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
KOA
Omron
THine Electronics, Inc.
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THAN0165_Rev.2.00_E
Notices and Requests
1.
2.
3.
4.
5.
6.
7.
8.
9.
The product specifications described in this material are subject to change without prior
notice.
The circuit diagrams described in this material are examples of the application which may not
always apply to the customer’s design. We are not responsible for possible errors and
omissions in this material. Please note if errors or omissions should be found in this material,
we may not be able to correct them immediately.
This material contains our copyright, know-how or other proprietary. Copying or disclosing
to third parties the contents of this material without our prior permission is prohibited.
Note that if infringement of any third party's industrial ownership should occur by using this
product, we will be exempted from the responsibility unless it directly relates to the
production process or functions of the product.
This product is presumed to be used for general electric equipment, not for the applications
which require very high reliability (including medical equipment directly concerning people's
life, aerospace equipment, or nuclear control equipment). Also, when using this product for
the equipment concerned with the control and safety of the transportation means, the traffic
signal equipment, or various Types of safety equipment, please do it after applying
appropriate measures to the product.
Despite our utmost efforts to improve the quality and reliability of the product, faults will
occur with a certain small probability, which is inevitable to a semi-conductor product.
Therefore, you are encouraged to have sufficiently redundant or error preventive design
applied to the use of the product so as not to have our product cause any social or public
damage.
Please note that this product is not designed to be radiation-proof.
Customers are asked, if required, to judge by themselves if this product falls under the
category of strategic goods under the Foreign Exchange and Foreign Trade Control Law.
The product or peripheral parts may be damaged by a surge in voltage over the absolute maximum ratings
or malfunction, if pins of the product are shorted by such as foreign substance. The damages may cause a
smoking and ignition. Therefore, you are encouraged to implement safety measures by adding protection
devices, such as fuses.
THine Electronics, Inc.
sales@thine.co.jp
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