LENA-R8 series - System integration manual
UBX-22015376 - R02
Design-in
Page 42 of 116
C1-Public
C10
C13
GND
C12
C11
LENA-R8 series
52
VCC
53
VCC
51
VCC
+
Primary
Source
R3
U1
ENn
ILIM
ISET
TMR
AGND
VIN
C2
C1
12V
NTC
PGND
SW
SYS
BAT
C4
R1
R2
D1
θ
Li-Ion/Li-Pol
Battery Pack
B1
C5
Li-Ion/Li-Polymer Battery
Charger / Regulator with
Power Path Managment
VCC
C3
C6
L1
BST
D2
VLIM
R4
R5
C7 C8
D3
R6
SYSFB
R7
Figure 24: Li-ion (or Li-Polymer) battery charging and power path management application circuit
Reference
Description
Part number
–
manufacturer
B1
Li-ion (or Li-Polymer) battery pack with 10 k
NTC
Various manufacturer
C1, C6
22
µ
F Capacitor Ceramic X5R 1210 10% 25 V
GRM32ER61E226KE15
–
Murata
C2, C4, C10
100 nF Capacitor Ceramic X7R 0402 10% 16 V
GRM155R61A104KA01
–
Murata
C3
1
µ
F Capacitor Ceramic X7R 0603 10% 25 V
GRM188R71E105KA12
–
Murata
C5
330
µ
F Capacitor Tantalum D_SIZE 6.3 V 45 m
T520D337M006ATE045
–
KEMET
C7, C12
68 pF Capacitor Ceramic C0G 0402 5% 50 V
GRM1555C1H680JA01
–
Murata
C8, C13
15 pF Capacitor Ceramic C0G 0402 5% 25 V
GRM1555C1E150JA01
–
Murata
C11
10 nF Capacitor Ceramic X7R 0402 10% 16 V
GRM155R71C103KA01
–
Murata
D1, D2
Low Capacitance ESD Protection
CG0402MLE-18G
–
Bourns
D3
Schottky Diode 40 V 3 A
MBRA340T3G
–
ON Semiconductor
R1, R3, R5, R7
10 k
Resistor 0402 1% 1/16 W
Various manufacturers
R2
1.05 k
Resistor 0402 1% 0.1 W
Various manufacturers
R4
22 k
Resistor 0402 1% 1/16 W
Various manufacturers
R6
26.5 k
Resistor 0402 1% 1/16 W
Various manufacturers
L1
2.2
µ
H Inductor 7.4 A 13 m
20%
SRN8040-2R2Y
–
Bourns
U1
Li-ion/Li-Polymer Battery DC/DC Charger / Regulator
with integrated Power Path Management function
MP2617H
–
Monolithic Power Systems (MPS)
Table 13: Suggested components for Li-ion (or Li-Pol) battery charging and power path management application circuit
☞
, and in particular
, for the parts recommended to be
provided if the application device integrates an internal antenna.
2.2.1.8
Additional guidelines for VCC supply circuit design
To reduce voltage drops, use a low impedance power source. The series resistance of the power supply
lines (connected to the
VCC
and
GND
pins of the module) on the application board and battery pack
should also be considered and minimized: cabling and routing must be as short as possible to
minimize power losses.
Three pins are allocated for the
VCC
supply. Several pins are designated for the
GND
connection. It is
recommended to properly connect all of them to supply the module to minimize series resistance
losses.