TLE6389-2G V50 Infineon Technologies, TLE6389-2G V50 Datasheet - Page 33

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TLE6389-2G V50

Manufacturer Part Number
TLE6389-2G V50
Description
IC CONV DC/DC STP-DWN DSO-14
Manufacturer
Infineon Technologies
Type
Step-Down (Buck)r
Datasheet

Specifications of TLE6389-2G V50

Internal Switch(s)
No
Synchronous Rectifier
No
Number Of Outputs
1
Voltage - Output
5V
Current - Output
2.3A
Frequency - Switching
360kHz
Voltage - Input
5 ~ 60 V
Operating Temperature
-40°C ~ 150°C
Mounting Type
Surface Mount
Package / Case
DSO-14
Output Voltage
5 V, 7 V to 15 V
Output Current
2.3 A
Input Voltage
5 V to 60 V
Mounting Style
SMD/SMT
Maximum Operating Temperature
+ 150 C
Minimum Operating Temperature
- 40 C
For Use With
DEMOBOARDTLE6389-3GV50IN - BOARD DEMO FOR TLE 6389-3 GV50DEMOBOARDTLE6389-2GVIN - BOARD DEMO FOR TLE 6389-2GVDEMOBOARDTLE6389-2GV50IN - BOARD DEMO FOR TLE 6389-2 GV50
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Power - Output
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
SP000226819
Datasheet Rev. 2.1
7.10.3
The crossover thresholds PFM to PWM and vice versa strongly depend on the input
voltage V
turn on and turn off delays of the external PMOS.
For more details on the PFM to PWM and PWM to PFM thresholds please refer to the
application note “TLE6389 - Determining PFM/PWM current thresholds”.
7.10.4
The choice of the output capacitor effects straight to the minimum achievable ripple
which is seen at the output of the buck converter. In continuous conduction mode the
ripple of the output voltage can be estimated by the following equation:
From the formula it is recognized that the ESR has a big influence in the total ripple at
the output, so low ESR tantalum capacitors are recommended for the application.
One other important thing to note are the requirements for the resonant frequency of the
output LC-combination. The choice of the components L and C have to meet also the
specified range given in section 3 otherwise instabilities of the regulation loop might
occur.
7.10.5
At high load currents, where the current through the inductance flows continuously, the
input capacitor is exposed to a square wave current with its duty cycle V
prevent a high ripple to the battery line a capacitor with low ESR should be used. The
maximum RMS current which the capacitor has to withstand is calculated to:
For low ESR an e.g. Al-electrolytic capacitance in parallel to an ceramic capacitance
could be used.
IN
, the Buck converter inductance L1, the sense resistor value R
PFM and PWM thresholds
Buck output capacitor (C
Input capacitor (C
I
RMS
V
Ripple
=
I
=
LOAD
IN1
) selection:
I
R
OUT
V
--------------
ESRCOUT
V
OUT
IN
) selection:
33
1
+
+
----------------------------------- -
8 f
1
-- -
3
SW
-----------------------
2 I
1
C
LOAD
I
OUT
2
SENSE
TLE 6389
2007-08-13
OUT
and the
/V
I
. To

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