LITIX™ Power TLD5098EL

LITIX™ Power
TLD5098EL
Application Boards without IO Filter
V2_LITIX
10.02.2014
ATV BP LI
www.infineon.com/litix-power-appboards
LITIX™ Power
TLD5098EL - Application Boards Overview
 LITIX™ Power – General Overview
 LITIX™ Power – TLD5098EL Appboards w/o IO Filter Description


Boost to GND configuration (B2G) – Topology “BOOST in Voltage
Mode”
Boost to GND configuration + short to GND protection (B2G +
S2G) – Topology “BOOST”

Boost to Battery (B2B) – Topology “BUCK / BOOST”

SEPIC configuration – Topology “BUCK / BOOST”
 LITIX™ Power - Support Material Overview
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 2
LITIX™ Power
TLD5098EL - Application Boards Overview
 LITIX™ Power – General Overview
 LITIX™ Power – TLD5098EL Appboards w/o IO Filter Description


Boost to GND configuration (B2G) – Topology “BOOST in Voltage
Mode”
Boost to GND configuration + short to GND protection (B2G +
S2G) – Topology “BOOST”

Boost to Battery (B2B) – Topology “BUCK / BOOST”

SEPIC configuration – Topology “BUCK / BOOST”
 LITIX™ Power - Support Material Overview
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 3
Our TLD50xx DCDC Family is well established in
Automotive LED Lighting Applications
TLD50xx Family
Well established in the Market
DC/DC Controller IC
Boost, Buck, Buck-Boost,
SEPIC and Flyback, PWM
dimming, switching
frequency (100-500kHz)
TLD50xx
DC/DC Driver IC
Buck, integrated power
stage (700mA), freewheeling diode, sense resistor
PWM dimming,
Source: Mercedes-Benz
The Topology “allrounder”
Key Features & Benefits
 TLD509xEL: Multitopology 1ch DC/DC controller
Family
 wide LED current range via simple adaptation of
external components
 good EMC performance
 built in protection and diagnostic features
 constant Current or Constant Voltage Regulation
 PWM dimming
 analog dimming for TLD5097EL and TLD5098EL
 TLD5045EJ: High integrated (power stage, free
wheeling diode, current sense resistor) Buck
converter for up to 700mA
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 4
LITIX™ Power
Automotive Target Applications
Rear Light &
Side Marker
Headlights
Low Beam
LED
DRL
Interior
Lighting
Picture source: Internet
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 5
Infineon® Power LED Driver - TLD5098EL
LED Boost, Buck-Boost, Sepic Controller
Key Features
TLD5098EL
 Wide input voltage range from 4.5 V to 45 V
 Drives LEDs in Boost (B2G), Buck-Boost (B2B) and
SEPIC Topology (max. 61V – TLD5098), Buck, Flyback
 Flexible Switching Frequency Range: 100 kHz to 500
kHz (for EMC optimization)
 Analog Dimming feature to adjust average LED
current
 Integrated Gate Driver for PWM Dimming
(TLD5098EL)
 Open Circuit Detection and Shutdown
 Short to GND Detection and Shutdown
 Output Overvoltage Protection
 Device Over Temperature Protection
 Synchronization with external clock
 Very Low Shutdown Current: IQ< 10 µA
Target Applications
Specially designed for Automotive exterior
lighting
 High & Low Beam
 DTRL
 Fog
…
2015-02-10
Package
 PG-SSOP-14
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 6
Infineon® Power LED Driver
Overview Multitopology DCDC Controller TLD509x
TLD5095
TLD5097
TLD5098
BOOST
YES
YES
YES
Topolgy
BUCK
YES
YES
YES
BUCK-BOOST
YES
YES
YES
MIN
4.75V
4.5V
4.5V
MAX
45V
45V
45V
Integration
Controller (2 Gate Driver)
Controller (1 Gate Driver)
Controller (2 Gate Driver)
MAX LED Current
scaleable
scaleable
scaleable
Operating
Voltage
MAX Output Voltage
45V
61V
61V
LED current accuracy
±3.3%
±3.3%
±3.3%
MIN
-40°C
-40°C
-40°C
MAX
150°C
150°C
150°C
Digital (PWM)
YES, with dedicated PWM Gatedriver
YES
YES, with dedicated PWM Gatedriver
Analog
NO
YES
YES
Operating
Temperature
LED current
Dimming
MIN
100kHz
100kHz
100kHz
MAX
500kHz
500kHz
500kHz
OPEN / VOUTOV
YES
YES
YES
SHORT of OUT
NO
NO
YES
IC Overtemperature
YES
YES
YES
YES
YES
NO, but µC can monitor alternative Pins
PG-SSOP-14 ePad (Body: 5mm x 4mm)
PG-SSOP-14 ePad (Body: 5mm x 4mm)
PG-SSOP-14 ePad (Body: 5mm x 4mm)
Switching
Frequency
Protection
STATUS PIN
ATV Grade / AEC Qualified
Package
Pinning
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 7
TLD5098EL in different configurations
Summary
 Boost to GND Configuration
 Boost to GND
Boost to Ground
VBAT
 SEPIC
Boost to Battery
VBAT
SEPIC
VBAT
 Constant Voltage
Mode
 Boost to VBAT Configuration
 Boost to VBAT
GND
 Constant Voltage
Mode
PWM
PWM
GND
Flexibility: Buck /
Boost
Boost
Buck / Boost
Buck / Boost
Maximum VOUT
max. 45V (à TLD5095)
max. 60V (à TLD5098)
Independent from maximum
ratings of the DC/DC
max. 45V (à TLD5095)
max. 60V (à TLD5098)
Short Circuit
Protection
YES, with additional
highside dimming concept
YES, with additional
external components
YES, configuration itself is
short circuit protected
Efficiency and
Component Count
+
O
-
+
O
O
+
O
EMC on:
Input
Output
2015-02-10
GND
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 8
LITIX™ Power
TLD5098EL - Application Boards Overview
 LITIX™ Power – General Overview
 LITIX™ Power – TLD5098EL Appboards w/o IO Filter Description


Boost to GND configuration (B2G) – Topology “BOOST in Voltage
Mode”
Boost to GND configuration + short to GND protection (B2G +
S2G) – Topology “BOOST”

Boost to Battery (B2B) – Topology “BUCK / BOOST”

SEPIC configuration – Topology “BUCK / BOOST”
 LITIX™ Power - Support Material Overview
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 9
LITIX™ Power
TLD5098EL – Application Boards w/o IO filter
 Application Boards w/o filters:
 The size of the application boards is 4.5 cm x 4 cm and the connections to the
power supply and external load can be established with cables.
 The application boards in combination with real loads enable fast and realistic
application prototyping and could be very beneficial for constructing initial
system demonstrators.
 The layout of these boards is optimized for EMC and can be reused for customer
applications.
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 10
LITIX™ Power
TLD5098EL - Application Boards Overview
 LITIX™ Power – General Overview
 LITIX™ Power – TLD5098EL Appboards w/o IO Filter Description


Boost to GND configuration (B2G) – Topology “BOOST in Voltage
Mode”
Boost to GND configuration + short to GND protection (B2G +
S2G) – Topology “BOOST”

Boost to Battery (B2B) – Topology “BUCK / BOOST”

SEPIC configuration – Topology “BUCK / BOOST”
 LITIX™ Power - Support Material Overview
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 11
Boost to GND configuration (B2G) – Topology “BOOST in Voltage
Mode”
Schematic
TLD5098EL
SET/ST
This voltage divider fixes a constant
VOUT of 40V between OUT+ and OUT-
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 12
Example Applications for TLD5098EL in
Constant Voltage BOOST configuration
DC/DC Boost in Constant
Voltage Configuration
(Infineon® Power LED
Driver)
DC/DC Boost in Constant
Voltage Configuration
(Infineon® Power LED
Driver)
DC/DC Boost in Constant
Voltage Configuration
(Infineon® Power LED
Driver)
Supplying:
Supplying:
Supplying:
Series Resistor and
(Infineon®
SPIDER/HITFET)
Linear Current Sources
(Infineon® Basic LED
Driver)
DC/DC Buck Converters
(Infineon® Power LED
Driver)
Buc
k
Linear Current Source
VOUT
(Infineon® Basic LED
Driver)
I = constant
DC/D
C
SPIDER LS
/ HITFET
RemoteMultichannel
Light Control
LED Light Application
2015-02-10
Source
VOUTLinear Current
(Infineon® Basic LED
Driver)
I = constant
DC/D
C
RemoteMultichannel
Light Control
LED Light Application
Copyright © Infineon Technologies AG 2015. All rights reserved.
Buc
k
Buc
k
Linear Current Source
VOUT
(Infineon® Basic LED
Driver)
I = constant
DC/D
C
RemoteMultichannel
Light Control
LED Light Application
Page 13
Boost to GND configuration (B2G) – Topology “BOOST in Voltage
Mode”
Board
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 14
Boost to GND configuration (B2G) – Topology “BOOST in Voltage
Mode”
BOM
2015-02-10
C1
100n
C_0805
Capacitor
C2
nm
C_0805
Capacitor
C3
100n
C_0805
Capacitor
C4
nm
C_0805
Capacitor
C5
nm
C_0805
Capacitor
C8
nm
C_0805
Capacitor
C9
10n
C_0805
Capacitor
CBO
100u
ELKOSIZEFPANASONIK_FK_SIZE-F
Capacitor
CBO1
nm
CPOL-EUE5-5
Capacitor
CIN
100u
ELKOSIZEFPANASONIK_FK_SIZE-F
Capacitor
CIVCC
1uF 6.3V
ELKO PANASONIC-SP-2
Capacitor
D1
nm
DIODE-SC79_INFINEON
Diode
DBO
Schottky 3A / 50V
DIODE_DO214AB
Diode
IC1
TLD5098EL
DCDC PG-SSOP-14-1-EP
IC
LBO
100uH 3,5A
COILCRAFT MSS1278T-104MLB
Coil
OUT
AK500/2
Contact
GND..VBAT
AK500/2
Contact
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 15
Boost to GND configuration (B2G) – Topology “BOOST in Voltage
Mode”
BOM
2015-02-10
R2
10R
R_0805
Resistor
R6
10k
R_0805
Resistor
R8
nm
R_0805
Resistor
RCS
50mR 1%
R_2512
Resistor
RFB1
50k
R_0805
Resistor
RFB2
1k
R_0805
Resistor
RFB3
79k
R_0805
Resistor
RFREQ
20k 1%
R_0805
Resistor
ROVH
33k2 1%
R_0805
Resistor
ROVL
1k 1%
R_0805
Resistor
RST
0R
R_0805
Resistor
SET/ST
PINHD-1X1
Pinhead
PWMO
PINHD-1X1
Pinhead
EN/PWMI
PINHD-1X1
Pinhead
FREQ
PINHD-1X1
Pinhead
SJ9
closed
SJ
Jumper
SJ11
closed
SJ
Jumper
SJ12
closed
SJ
Jumper
T1
IPD35N10S3L-26
NMOSP-TO252-3
P-TO252-3-XX
Copyright © Infineon Technologies AG 2015. All rights reserved.
Transistor
Page 16
LITIX™ Power
TLD5098EL - Application Boards Overview
 LITIX™ Power – General Overview
 LITIX™ Power – TLD5098EL Appboards w/o IO Filter Description


Boost to GND configuration (B2G) – Topology “BOOST in Voltage
Mode”
Boost to GND configuration + short to GND protection (B2G +
S2G) – Topology “BOOST”

Boost to Battery (B2B) – Topology “BUCK / BOOST”

SEPIC configuration – Topology “BUCK / BOOST”
 LITIX™ Power - Support Material Overview
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 17
Boost to GND configuration + short to GND protection (B2G + S2G) – Topology
“BOOST”
Schematic
TLD5098EL
SET/ST
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 18
Short circuit detection for Boost converters in
general
 Short circuit in every boost circuit is difficult to handle!
After a short circuit applied we have direct current flow over
the external components.

 One countermeasure could be a fuse in the supply line. But this
is what customers usually don‘t want to have.
 TLD5098 features a short circuit protection feature.
The digital dimming circuit controls a switch and opens the
circuit in case an short circuit event

Ishort
L
D
L
RFB
RFB
D
Protection
Switch
Boost
Switch
VIN
a)
2015-02-10
COUT
Short
to
GND
Boost
Switch
VIN
COUT
Short
to
GND
b)
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 19
TLD5098EL - Short circuit detection
implementation
 A defined short circuit voltage threshold (VFBL,FBH_S2G) is
implemented at the current sensing pins FBH and FBL.
 If the voltage level on this pins are lower than max. 2V a short
circuit is detected.
VFBL,FBH
60V
Normal Operation
min.
4.5V
VFBL,FBH_S2G
typ.
max.
Device working with parameter
deviations
Short Circuit detected on
FBH/FBL
t
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 20
Boost to GND configuration + short to GND protection (B2G + S2G) – Topology
“BOOST”
Board
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 21
Boost to GND configuration + short to GND protection (B2G + S2G) – Topology
“BOOST”
BOM
C1
47nF
C_0805
Capacitor
C2
nm
C_0805
Capacitor
CBO-1
nm
C_0805
Capacitor
CBO-2
100nF
C_0805
Capacitor
CBO-3
100uF
ELKOSIZEFPANASONIK_FK_SIZE-F
Capacitor
CBO-4
nm
CPOL-EUE5-5
Capacitor
CIN-3
nm
C_0805
Capacitor
CIN-4
nm
C_0805
Capacitor
CIN-5
100nF
C_0805
Capacitor
CIN-6
100uF
ELKOSIZEFPANASONIK_FK_SIZE-F
Capacitor
CIVCC
1uF 6.3V
ELKO / PANASONIC-SP-2
Capacitor
D1
5,1V
D2
BAS16-03W
DBO-1
Schottky 3A / 50V
SOT23
BAS16-03W / SOD323
SK3010A
DIODE_DO214AB
Diode
Diode
Diode
EN/PWMI
PINHD-1X1
Pinhead
FREQ
PINHD-1X1
Pinhead
SET/ST
PINHD-1X1
Pinhead
DCDC / PG-SSOP-14-1-EP
IC
IN1
AK500/2
Contact
OUT
AK500/2
Contact
IC1
2015-02-10
ZENER-DIODE /
TLD5098EL
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 22
Boost to GND configuration + short to GND protection (B2G + S2G) – Topology
“BOOST”
BOM
2015-02-10
LBO-2
100uH 3,5A
COILCRAFT MSS1278T-104MLB
Coil
R1
1k
R_0805
Resistor
R2
10k
R_0805
Resistor
R8
nm
R_0805
Resistor
RCS
50mR 1%
R_2512
Resistor
RD2
10k 1%
R_0805
Resistor
RD4
10k
R_0805
Resistor
RFB
1Ohm
R_2512
Resistor
RFREQ
20k 1%
R_0805
Resistor
RG
10R
R_0805
Resistor
RG3
10Ohm
R_0805
Resistor
ROVH
33k2 1%
R_0805
Resistor
ROVL
1k 1%
R_0805
Resistor
SJ1
closed
SJ
Jumper
SJ2
closed
SJ
Jumper
SJ3
closed
SJ
Jumper
T2
P-MOS_BSP1
71P P-MOS_BSP171P / SOT 223
Transistor
T3
N-MOS_BSP1
23 N-MOS_BSP123 / SOT223
Transistor
T4
IPD35N10S3
L-26 N-MOSIPD22N08S2L / DPAK3
Transistor
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 23
LITIX™ Power
TLD5098EL - Application Boards Overview
 LITIX™ Power – General Overview
 LITIX™ Power – TLD5098EL Appboards w/o IO Filter Description


Boost to GND configuration (B2G) – Topology “BOOST in Voltage
Mode”
Boost to GND configuration + short to GND protection (B2G +
S2G) – Topology “BOOST”

Boost to Battery (B2B) – Topology “BUCK / BOOST”

SEPIC configuration – Topology “BUCK / BOOST”
 LITIX™ Power - Support Material Overview
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 24
Boost to Battery (B2B) – Topology “BUCK / BOOST”
Schematic
TLD5098EL
SET/ST
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 25
Boost to Battery (B2B) – Topology “BUCK / BOOST”
Board
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 26
Boost to Battery (B2B) – Topology “BUCK / BOOST”
BOM
C1
47n
C_0805
Capacitor
C2
nm
C_0805
Capacitor
C12
100n
C_0805
Capacitor
CBO
100u
ELKOSIZEFPANASONIK_FK_SIZE-F
Capacitor
CBO-1
nm
CPOL-EUE5-5
Capacitor
CBO-2
nm
C_0805
Capacitor
CBO-3
100n
C_0805
Capacitor
CIN-3
nm
C_0805
Capacitor
CIN-4
nm
C_0805
Capacitor
CIN-5
100n
C_0805
Capacitor
CIN-6
100u
ELKOSIZEFPANASONIK_FK_SIZE-F
Capacitor
CIVCC
1uF 6.3V
ELKOPANASONIC-SP-2
Capacitor
D1
BAS16-03W
D2
5V1
D4
BAS16-03W
D5
Schottky 3A 50V
DBO1
Schottky 3A 50V
SOD323
ZENER-DIODE SOT23
DIODE_BAS16-03W
Diode
Diode
SOD323
Diode
SK3010A
DIODE_DO214AB
Diode
SK3010A
DIODE_DO214AB
Diode
EN/PWMI
PINHD-1X1
Pinhead
FREQ
PINHD-1X1
Pinhead
SET/ST
PINHD-1X1
Pinhead
DCDC PG-SSOP-14-1-EP
IC
IC1
2015-02-10
DIODE_BAS16-03W
TLD5098EL
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 27
Boost to Battery (B2B) – Topology “BUCK / BOOST”
BOM
2015-02-10
IN1
AK500/2
Contact
OUT
AK500/2
Contact
LBO
100uH 3,5A
COILCRAFT MSS1278T-104MLB
Coil
R1
1k
R_0805
Resistor
R2
nm
R_0805
Resistor
R11
10k
R_0805
Resistor
RCS
50mR 1%
R_2512
Resistor
RD1
10k 1%
R_0805
Resistor
RD2
10k 1%
R_0805
Resistor
RFB
1R
R_2512
Resistor
RFREQ
20k 1%
R_0805
Resistor
RG
10R
R_0805
Resistor
ROVH
33k2 1%
R_0805
Resistor
ROVL
1k 1%
R_0805
Resistor
RST
0R
R_0805
Resistor
SJ1
closed
SJ
Jumper
SJ2
closed
SJ
Jumper
SJ3
closed
SJ
Jumper
T1
IPG15N06S3L-45
T2
P-MOS_BSP171P
IPG15N06S3L
P-MOS_BSP171P
PG-TDSON-8-4
SOT223
Copyright © Infineon Technologies AG 2015. All rights reserved.
Transistor
Transistor
Page 28
LITIX™ Power
TLD5098EL - Application Boards Overview
 LITIX™ Power – General Overview
 LITIX™ Power – TLD5098EL Appboards w/o IO Filter Description


Boost to GND configuration (B2G) – Topology “BOOST in Voltage
Mode”
Boost to GND configuration + short to GND protection (B2G +
S2G) – Topology “BOOST”

Boost to Battery (B2B) – Topology “BUCK / BOOST”

SEPIC configuration – Topology “BUCK / BOOST”
 LITIX™ Power - Support Material Overview
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 29
SEPIC configuration – Topology “BUCK / BOOST”
Schematic
TLD5098EL
SET/ST
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 30
SEPIC configuration – Topology “BUCK / BOOST”
Board
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 31
SEPIC configuration – Topology “BUCK / BOOST”
BOM
C1
10n
C_0805
Capacitor
C2
nm
C_0805
Capacitor
CBO-1
nm
C_0805
Capacitor
CBO-2
100n
C_0805
Capacitor
CBO-3
100u
ELKO SIZEFPANASONIK_FK_SIZE-F
Capacitor
CBO-4
nm
CPOL-EUE5-5
Capacitor
CIN-3
nm
C_0805
Capacitor
CIN-4
nm
C_0805
Capacitor
CIN-5
100n
C_0805
Capacitor
CIN-6
100u
ELKO SIZEFPANASONIK_FK_SIZE-F
Capacitor
CIVCC
1uF 6.3V
ELKO PANASONIC-SP-2
Capacitor
CSP-1
nm
C_0805
Capacitor
CSP-2
3uF / 50V
C_1206
Capacitor
D2
BAS16-03W
BAS16-03W / SOD323
Diode
DBO-1
Schottky 3A/50V
DIODE_DO214AB
Diode
DBO-2
nm
DIODE_SC79
Diode
EN/PWMI
PINHD-1X1
Pinhead
FREQ
PINHD-1X1
Pinhead
SET/ST
PINHD-1X1
Pinhead
DCDC / PG-SSOP-14-1-EP
IC
IC1
IN1
2015-02-10
TLD5098EL
AK500/2
con-ptr500
Copyright © Infineon Technologies AG 2015. All rights reserved.
Contact
Page 32
SEPIC configuration – Topology “BUCK / BOOST”
BOM
OUT
2015-02-10
AK500/2 con-ptr500
Contact
LBO-1
47uH
COUPLED Inductors MSD1260-473MLB
Coil
LBO-2
nm
COILCRAFTMSS1278_SERIES
Coil
LSP
nm
COILCRAFTMSS1278_SERIES
Coil
R1
10k
R_0805
Resistor
R2
10k
R_0805
Resistor
R8
nm
R_0805
Resistor
RCS
50mR 1%
R_2512
Resistor
RFB
1R
R_2512
Resistor
RFREQ
20k 1%
R_0805
Resistor
RG
10R
R_0805
Resistor
ROVH
33k2 1%
R_0805
Resistor
ROVL
1k 1%
R_0805
Resistor
SJ1
closed
SJ
Jumper
SJ2
closed
SJ
Jumper
SJ3
closed
SJ
Jumper
T1
IPG15N06S3L-45
IPG15N06S3L
Transistor
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 33
Getting started – Example on B2B
Vbb=12V
Example: TLD5098EL
Application Board in
combination with a general
purpose loadboard!
GND
GND
OUT+
OUT-
2015-02-10
OUT-
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 34
LITIX™ Power
TLD5098EL - Application Boards Overview
 LITIX™ Power – General Overview
 LITIX™ Power – TLD5098EL Appboards w/o IO Filter Description


Boost to GND configuration (B2G) – Topology “BOOST in Voltage
Mode”
Boost to GND configuration + short to GND protection (B2G +
S2G) – Topology “BOOST”

Boost to Battery (B2B) – Topology “BUCK / BOOST”

SEPIC configuration – Topology “BUCK / BOOST”
 LITIX™ Power - Support Material Overview
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 35
LITIX™ Power
Design In Support Material
Available Appboards
Sales Name of
Demoboard
APPBOARD TLD5098EL
VER1
APPBOARD TLD5098EL
VER2
APPBOARD TLD5098EL
VER3
APPBOARD TLD5098EL
VER4
SP Number
SP000954242 Constant Voltage Mode
SP000954244
Boost to Ground Configuration w/
short to ground protection
SP000954246 Boost to Battery Configuration
SP000954248 SEPIC Configuration
APPBOARD TLD5098EL V5 SP000984908
APPBOARD TLD5098EL V6 SP000984910
APPBOARD TLD5098EL V7
BOARD TLD5097 B2B
BOARD TLD5097 B2G
BOARD TLD5097 SEPIC
Description
SP000984912
SP001157588
SP001157586
SP001157590
Boost to Ground Configuration w/
short to ground protection & EMC filter
Boost to Battery Configuration with
EMC filter
SEPIC Configuration with EMC filter
Boost to Battery Configuration
Boost to Ground Configuration
SEPIC Configuration
http://www.infineon.com/LITIX-power-appboards
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 36
LITIX™ Power
Design In Support Material
Available Demoboards
Sales Name of
Demoboard
Demoboard TLD5045EJ
Demoboard TLD5095EL
Ver1
Demoboard TLD5095EL
Ver2
SP Number
Description
SP000924382 Buck mode
Boost to GND (default), Sepic &
SP000760364
Constant Voltage Mode possible
Boost to Battery (default), Constant
SP000845642
Voltage Mode possible
www.infineon.com/litix-power-demoboards
Other design in support material
 Data Sheets & Application Note
 Simulation Models
 EMC Test Reports
 Excel Calculation Tool for
TLD509xEL available on request
2015-02-10
Copyright © Infineon Technologies AG 2015. All rights reserved.
Page 37
Thank you very much
for your attention
For more information, please visit:
http://www.infineon.com/LITIX
Confidential – Do not forward this presentation or its content to any 3rd party
Published by Infineon Technologies AG, Am Campeon 1-12, 85579 Neubiberg, Germany
© Infineon Technologies AG 2015. All Rights Reserved.
DISCLAIMER:
THE INFORMATION GIVEN IN THIS PRESENTATION IS GIVEN AS A HINT FOR THE IMPLEMENTATION OF THE
INFINEON TECHNOLOGIES COMPONENT ONLY AND SHALL NOT BE REGARDED AS ANY DESCRIPTION OR
WARRANTY OF A CERTAIN FUNCTIONALITY, CONDITION OR QUALITY OF THE INFINEON TECHNOLOGIES
COMPONENT. THE RECIPIENT OF THIS PRESENTAION MUST VERIFY ANY FUNCTION DESCRIBED HEREIN IN THE
REAL APPLICATION. INFINEON TECHNOLOGIES HEREBY DISCLAIMS ANY AND ALL WARRANTIES AND LIABILITIES
OF ANY KIND (INCLUDING WITHOUT LIMITATION WARRANTIES OF NON-INFRINGEMENT OF INTELLECTUAL
PROPERTY RIGHTS OF ANY THIRD PARTY) WITH RESPECT TO ANY AND ALL INFORMATION GIVEN IN THIS
PRESENTATION.