STEVAL-IFS015V1
Smart monitoring node based on the STM32F103xx
and LIS331DLH
Data brief
Features
■
Low data rate wireless (ZigBee®)
implementation
■
Displays multiple sensor parameters for itself
and also the other wireless nodes associated
to it in star network
■
MEMS, temperature, resistive, humidity, light
intensity sensors
■
Manual or programmable control of nodes from
the station
■
TFT display with touchscreen menu navigation
■
GUI for logged data reading, saving and
analysis using graphs
■
Rechargeable Li-ion battery. Operation
possible without battery also using mini-USB to
power up the system
Description
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The system, called smart monitoring station, is a
handheld device which works as the hub for low
data rate wireless network based on ZigBee®
protocol to which all the nodes (smart monitoring
nodes - STEVAL-IFS015V1) are connected. This
system measures the temperature, humidity and
light intensity and gathers information of various
sensors (temperature, humidity, light intensity and
MEMS) from nodes placed at different locations. It
can also configure the alarm thresholds for the
parameters of all the connected nodes, as well as
for itself. Lights (or any other AC load) connected
to nodes may be controlled through the smart
monitoring station with addition of a few
components and its status is available on the
smart monitoring station display.
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STEVAL-IFS014V1
This demonstration board can be powered up
using 3.7 V Li-ion battery. Alternatively it can work
with USB power without battery. When the battery
is mounted, the same USB charges the battery
and operates the system.
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The system has a user interface with the graphic
menu, color TFT display (240 x 320) and
touchscreen. Data logging and analysis of logged
data can be done using the GUI developed for this
system.
April 2009
Doc ID 15581 Rev 1
For further information contact your local STMicroelectronics sales office.
1/8
www.st.com
8
Doc ID 15581 Rev 1
GND
SHDN
2
1
OUT#
VCC
3
R1
220
C33
47nF
VBAT1
D2
POWER LED
3V0//
STM1061N29WX6F
VSS
C1
100nF
R7
2k7
5
6
BAT
CHRG
POWER ON
PROG
VCC
U1
STBC08PMR
GND
U12
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4
2/8
5V0_USB
P
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3
2
1
100k
R3
Q1
STN3PF06
R11
100
L1
STPS1L30A
D5
STPS1L30A
D4
R9
470
C19
47uF
22uH
SW1
4
5
6
C4
100nF
4
1
7
100nF
POWER SWITCH
C2
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R8
470
D3
YELLOW
BT1
3.7V_LiION
VBAT1
1
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-+
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4V5//
REF
FB
LX
U2
L6920D
SHDN
LB0
LB1
OUT
C3
100nF
GND
)
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6
R14
10k
SHDN
IN
R15
10k
R12
15k
VBAT1
OUT
C20
47uF
C23
10nF
PB8_LOW_BAT//
R13
180k
C21
10uF
3V0//
3V0//
R62
1k
2 3V0//
5V0_BAT
U3
LD1117STR/SOT223
5V0_BAT
5
3
2
8
1.4k
R63
3
Figure 1.
GND
1
1
1
2
3
Circuits schematics
STEVAL-IFS015V1
Circuits schematics
Power supply
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AM03786v1
STEVAL-IFS015V1
Circuits schematics
Connectors - ZiGBee®, microSD and JTAG
Figure 2.
PC4_SD_CD
3V 0//
MicroSD card connector
3V 0//
R22
10k
0
R10 R4
470 100k
R5
100k
R33
4k7
SPI1_SCK
3V0
SPI1_MOSI
R21
10k
PB4_JTAG//
R20
10k
RESET#//
R16
10k
3V0
R29
SPI1_MISO
3V0
R6
100k
12
11
10
9
8
7
6
5
4
3
2
1
R17
PE6_MSD_CS
10k
J4
CON12
3V0
J2
1
2
3
4
5
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7
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9
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20
3V0//
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3V0//
1
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17
18
19
20
PB4_JTAG//
PA15_JTAG_SWD//
R32
not used
PA13_JTAG_SWD//
PA14_JTAG_SWD//
PB3_JTAG_SWD//
RESET#//
DBGRQ
DBGACK
R23
10k
R18
GND
10k
R19
10k
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JTAG_20
JTAG connectors
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SDBG
R66
511
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SPZ_SDBG
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RTCK
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P
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PTI_DATA
SPZ_RSTB
SIF_SCLK
SIF_MOSI
SIF_MISO
R65
0
Pr
GND
I2C2_SCL
3V0
I2C2_SDA
PC5_TK_RESET
PB1_TK_TINT
PB0_TK_GINT
J3
1
2
3
4
5
6
7
1
2
3
4
5
6
7
TOUCH KEY CONN
J9
1
3
5
7
9
2
4
6
8
10
PTI_EN
SIF_LOADB
GND
SPZ_SDBG
3V0
HEADER 5X2
D1
R64
3V0
PC8_nRESET
ACTIVITY
511
ZIGBEE ACTIVITY LED
SPZ_RSTB
U4
S_DBG
PC8_nRESET
1
PC6_nHOST_INT
2
SPI2_nSSEL
3
SPI2_MOSI
4
SPI2_MISO
5
SPI2_SCK
6
7
3V0
8
RSTB
ACTIVITY
HOST_INT
WAKE
SPI_SSEL
PTI_DATA
MOSI
PTI_EN
MISO
SIF_LOADB
SCLK
SIF_MOSI
GND
SIF_MISO
VBRD
SIF_SCLK
17
SDBG
16
ACTIVITY
15
PC7_nWAKE
14
PTI_DATA
13
PTI_EN
12
SIF_LOADB
11
SIF_MOSI
10
SIF_MISO
9
SIF_SCLK
SPZB260
ZigBee module
AM03787v1
Doc ID 15581 Rev 1
3/8
Doc ID 15581 Rev 1
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17
18
19
20
4V5
220
R2
M25PE80
VSS
C5
100nF
VCC
C22
10uF
D
C
RESET
TSL or W
Q
S
U5
GND
PB4_JTAG
PA15_JTAG_SWD
PA13_JTAG_SWD
PA14_JTAG_SWD
PB3_JTAG_SWD
RESET#
GND
USBDM
GND
USBDP
PA10_USB_CNTRL
PB9_BUZZ
4V5
VBAT
PB8_LOW_BAT
3V0
4
3
2
4k7
R40
SPI1_MISO
20 PIN CABLE(UPPER)
J1
3V0
1
PE4_SF80_S#
3V0
SPI1_MOSI
SPI1_SCK
0
R41
1
VCC
U6
HIH4003
GND
PB4_JTAG//
PA15_JTAG_SWD//
PA13_JTAG_SWD//
PA14_JTAG_SWD//
PB3_JTAG_SWD//
RESET#//
GND
USBDM//
GND
USBDP//
PA10_USB_CNTRL//
PB9_BUZZ//
4V5//
VBAT//
PB8_LOW_BAT//
3V0//
5
6
7
8
OUT
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
J8
GND
3V0//
GND
3V0
2
22k
R42
20PIN CABLE(LOWER)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
C24
10nF
C6
100nF
R46
33k
1
2
3
1
2
3
GND
C7
100nF
PC2_HVOUT
Umidity sensor
CON3
1
2
3
J11
CON3
1
2
3
J10
Interface connector
PC1_TVOUT
R43
1K
3
2
1
GND
STLM20W89
VOUT 3V0
GND
GND
U7
LED circuit
4
5
3V0
C8
100nF
3V0
Temperature sensor
PC0_LVOUT
LDR1
8k-15k
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C9
R24
100nF 10k
PC9_TFT_BL
TFT display
X2
Y2
X1
Y1
100k
R59
BL_CATHODE
I2C2_SCL
3V0
C10
100nF
2pF
C38
2pF
C37
2pF
C36
1
2
3
4
5
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2pF
C39
2
GND
R60
100k
0
R61
VDD_IO
NC
NC
SCL
GND
I2C2_SDA 6
Data loading system
GND
15
3V0
LIS331DLH
13
12
11
10
9
100nF
C40
U8
GND
GND
INT1
RESERVE
INT2
GND
SDA
16
RESERVE
SA0
14
VDD
CS
4/8
R68
4k7
3V0
GND
100 R58
BL_CATHODE
Y1
X1
Y2
X2
3V0
1
2
3
4
5
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37
MEMS
J7
37PIN TFT CONN
1
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20
21
22
23
24
25
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27
28
29
30
31
32
33
34
35
36
37
R69
4k7
GND
GND
PE2_MEMS_INTR1
GND
PE3_MEMS_INTR2
3V0
3V0
PE12_TFT_CS
PE13_TFT_RS
PE14_TFT_WR
PE15_TFT_RD
Q4
2STR1215PC12_TFT_RESET
PD0_TFT_DB0
PD1_TFT_DB1
PD2_TFT_DB2
PD3_TFT_DB3
PD4_TFT_DB4
PD5_TFT_DB5
PD6_TFT_DB6
PD7_TFT_DB7
PD8_TFT_DB8
PD9_TFT_DB9
PD10_TFT_DB10
PD11_TFT_DB11
PD12_TFT_DB12
PD13_TFT_DB13
PD14_TFT_DB14
PD15_TFT_DB15
3V0
R34 R67
1k 1k
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1
Figure 3.
3
Circuits schematics
STEVAL-IFS015V1
TFT displays, MEMS, memory and sensors
AM03788v1
C27
10uF
L2
INDUCTOR
3V0
10pF
C31
10pF
C30
20pF
C29
20pF
C28
3V0A
47
R47
0
VREF+
OSC_OUT
R48
1M
OSC_IN
PC15_OSC32_OUT
Y2
32.768KHz
R30
0 R31
BT2
BATTERY
PC14_OSC32_IN
Y1
8MHz
C25
10nF
VBAT
VBAT//
3V0
1
10nF
C26
I2C1_SDA_TSC
I2C1_SCL_TSC
4k7
R37
4k7
R36
3V0
PE2_MEMS_INTR1 1
PE3_MEMS_INTR2 2
3
PE4_SF80_S#
4
5
PE6_MSD_CS
6
7
8
PC14_OSC32_IN
PC15_OSC32_OUT 9
10
11
3V0
12
OSC_IN
13
OSC_OUT
14
NRST
15
PC0_LVOUT
16
PC1_TVOUT
17
PC2_HVOUT
18
19
20
21
VREF+
22
VDDA
23
PA0_LAMP_LED
24
PA1_ALARM_LED
25
PE1_SF128_S#
PB9_BUZZ
PB8_LOW_BAT
BOOT0
I2C1_SDA_TSC
I2C1_SCL_TSC
3V0
PE2
PE3
PE4
PE5
PE6
VBAT
PC13_ANTI_TAMPER
PC14_OSC32_IN
PC15_OSC32_OUT
VSS_5
VDD_5
OSC_IN
OSC_OUT
NRST
PC0
PC1
PC2
PC3
VSSA
VREFVREF+
VDDA
PA0_WKUP
PA1
PA2
I2C2_SDA
I2C2_SCL
3V0
-+
PA15_JTAG_SWD
PA14_JTAG_SWD
PB4_JTAG
PB3_JTAG_SWD
PD7_TFT_DB7
PD6_TFT_DB6
PD5_TFT_DB5
PD4_TFT_DB4
PD3_TFT_DB3
PD2_TFT_DB2
PD1_TFT_DB1
PD0_TFT_DB0
PC12_TFT_RESET
100
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76
STM32F103VBT6
VDD_3
VSS_3
PE1
PE0
PB9
PB8
BOOT0
PB7
PB6
PB5
PB4
PB3
PD7
PD6
PD5
PD4
PD3
PD2
PD1
PD0
PC12
PC11
PC10
PA15
PA14
4k7
R39
4k7
R38
3V0
SPI1_SCK
SPI1_MISO
SPI1_MOSI
PC4_SD_CD
PC5_TK_RESET
PB0_TK_GINT
PB1_TK_TINT
BOOT1
PE7_INT_TSC
Doc ID 15581 Rev 1
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50
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b
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VDD_2
VSS_2
NC
PA13
PA12
PA11
PA10
PA9
PA8
PC9
PC8
PC7
PC6
PD15
PD14
PD13
PD12
PD11
PD10
PD9
PD8
PB15
PB14
PB13
PB12
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PE12_TFT_CS
PE13_TFT_RS
PE14_TFT_WR
PE15_TFT_RD
I2C2_SCL
I2C2_SDA
P
e
2
d
o
r
t
c
u
)
(s
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b
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51
PE7_INT_TSC
4k7
R35
PC9_TFT_BL
PC8_nRESET
PC7_nWAKE
PC6_nHOST_INT
PD15_TFT_DB15
PD14_TFT_DB14
PD13_TFT_DB13
PD12_TFT_DB12
PD11_TFT_DB11
PD10_TFT_DB10
PD9_TFT_DB9
PD8_TFT_DB8
SPI2_MOSI
SPI2_MISO
SPI2_SCK
SPI2_nSSEL
PA13_JTAG_SWD
USBDP
USBDM
PA10_USB_CNTRL
3V0
u
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P
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3V0
3V0
VDDA
GND
100nF
SWITCH
C17
10k
R26
NRST
NRST
3V0
C12
C13
C14
C15
C16
100nF 100nF 100nF 100nF 100nF
3V0
3V0A
RESET#
SW2
GND
BOOT1
BOOT0
Figure 4.
PA3
VSS_4
VDD_4
PA4
PA5
PA6
PA7
PC4
PC5
PB0
PB1
PB2
PE7
PE8
PE9
PE10
PE11
PE12
PE13
PE14
PE15
PB10
PB11
VSS_1
VDD_1
U9
STEVAL-IFS015V1
Circuits schematics
Microcontroller
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AM03789v1
5/8
7
SHIELD SHIELD
6
SHIELD SHIELD
Doc ID 15581 Rev 1
1
2
3
4
5
R44
1k
R49
1M
5V0_USB
PE1_SF128_S#
SPI1_MISO
3V0
3V0
C32
4.7nF
USB_MINI
Icon Flash
9
VCC
DD+
ID
GND
I/O2
Vbus
I/O1
16
15
14
13
12
11
10
9
4
5
6
R50
1k5
R45
1k
SPI1_SCK
SPI1_MOSI
PA10_USB_CNTRL//
USBLC6-2F6
I/O2
GND
I/O1
U10
M25P128VMF6(TP)
1
2
3
4
5
6
7
8
U11
3
2
1
3V0
22
22
R52
C18
100nF
5V0_USB
R51
USBDP//
USBDM//
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R57
4k7
3V0
)
(s
2
PE7_INT_TSC
I2C1_SCL_TSC 4
10k
R28
Buzzer and LED’s
PB9_BUZZ//
3
1
Y1
s
b
O
Y-
STMPE811
SCLK
A0/Data_out
INT
2
3
J6
SDAT
I2C1_SDA_TSC 5
Touchscreen controller
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Q3
2STR1215
1
2
GND
3V0//
C34
10nF
3V0
r
P
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1
8
X1
16
X-
Y2
15
Y+
X2
13
X+
3V0
14
Vio
6/8
VCC
t
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l
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6
s
b
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IN0
P
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Data_in
d
o
r
7
BUZZER
B
A
BZ1
R55
C35
10k
100nF
IN1
GND
IN2
IN3
9
10
11
12
U13
3V0
3V0
R56
10k
330
R25
330
R54
D6
LED
D7
LED
PA1_ALARM_LED
PA0_LAMP_LED
Figure 5.
8
USB section
Circuits schematics
STEVAL-IFS015V1
USB, touchscreen controller, buzzer and memory
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AM03790v1
STEVAL-IFS015V1
2
Revision history
Revision history
Table 1.
Document revision history
Date
Revision
14-Apr-2009
1
Changes
Initial release.
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STEVAL-IFS015V1
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Please Read Carefully:
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