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STEVAL-IME013V1
Cost effective ultrasound pulser IC evaluation board based on
the STHV800
Data brief
Description
The STEVAL-IME013V1 evaluation board is
designed around the STHV800 8-channel, 3-level
high-voltage ultrasound pulser IC, a state-of-theart device designed for ultrasound imaging
applications. The STEVAL-IME013V1 offers a
simple way to evaluate the ultrasound pulser IC,
thanks also to a graphical user interface.
Once the output waveforms are configured, they
can be displayed directly on an oscilloscope by
connecting the scope probe to the relative BNCs.
Features






8-channel outputs: high voltage and low
voltage BNC connectors
Up to 4 memory locations to store userdesigned waveforms
USB connector to download stored
waveforms
Dedicated connectors to supply high voltage
and low voltage to the STHV800 output
stage
4 key button to quickly select the preferred
program
RoHS compliant
April 2016
DocID028197 Rev 2
For further information contact your local STMicroelectronics sales
office
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www.st.com
DocID028197 Rev 2
L1
L2
L3
RL2
56
L2
L4
RL3
56
L3
L5
5
4
UF1
DVDD
BA T20J
D2
L6
RL6
56
L6
USBDM
USBDP
+5V
DVDD
RF4
107k
RF3
62k
RF2
62k
RF1
107k
8M H z
1M
Cosc1
22pF
22pF
C osc 2
X1
V D D1
VDD2
VDD3
VDD 4
VDD5
VDDA
VREF+
O S C_IN
OSC_OUT
NRST
BOO T
VSSA
VSS3
VSS1
NC
VREFV S S2
VSS4
VSS5
100nF
100nF
100nF
100nF
100nF
SPI3_MISO
SPI2_MISO
SPI1_MISO
CB4
CB3
CB2
100nF
CB11
AVSS
CB8
AVD D
CB7
AN_SUPPLY
OSC_IN
AV SS
C F6
10F
C F5
10F
Rosc
OSC_OUT
1 0n F
CC2
1 0n F
CC1
USBUF01W 6
1
D4 VDD D1
3
D3 GND D2
RL5
56
L5
36
24
1
USB_PW R
CF4
10 F
-5V
LT3032
SHD
INP OUTP
10,12
3
SHD BYPP
2
ADJP
8
AD J N
CF3 4,5
11
GND BYPN
10 F
INN O UTN
RL4
56
L4
GND
1734035-1
Shell
ID
D+
D-
VBUS
USB
REG2
50
75
DVDD
100
28
BOOT0
11
22
21
R1_F2 R2_F2_F4
12
OSC_IN
0
0
OSC_OUT 13
14
NR S T
94
19
99
49
R1_F1_F4
C1_F2_F4
73
R2_F1 R3_F1
20
2_F
4
C
2_F
0
0
0
74
27
10
2.2F
2 . 2F
RL1
56
L1
-5V
R18 330
LVLV+
VSS
LV+
LV-
VDD
14
6,9
5
2
D1
BAT20J
1
7
+5V
ADC_IN0
ADC_IN1
ADC_IN2
C F1
10F
CF2
10F
SPI_CLK
SPI1_MISO
CB1
100nF
SPI_CLK
AVDD
SPI_JTAG_1
DVDD
SPI3
SPI2
SPI1
100nF
CB5
STM32F427
U1
VBAT
PC0
PC 1
PC2
PC3
PC4
PC5
PC6
PC7
PC8
PC9
PC10
PC 1 1
P C 12
PC13
P C 14
PC15
RTHSD
10k
T HSD
RSHD
33 0
SHD
CW
6
15 PC0
16 PC1
17 PC2
18 P C3
33 P C 4
34 PC5
63 PC6
64 PC7
65 PC8
66 PC9
78P C 10
79PC11
80PC12
7 PC13
8 PC14
9 PC15
CW
PC10
PC11
100nF
CB6
DVDD
SPI_CLK
SPI2_MISO
PC7
PC6
PC0
PC1
PC2
PC3
PC4
PC5
PC1 0
PC11
PC12
PC 1 3
PC14
PC15
PC9
PC8
55 %
POT1
AVSS
100nF
CP1
STR
100nF
CP2
P2
PRG
100nF
CP3
P3
STP
RAD4
2.7k
CAD2
100nF
RAD3
100k
HVP_CW
RP3
10k
ADC_IN2
ZAD2
100nF
CP4
RE 0
56
RE1
56
RE2
56
RE3
56
R E4
56
RE5
56
RE6
56
RE7
56
RLD
100
RLC
100
USR
100
100nF
CRST
220nF
CB22
220nF
2 2 0nF
CB21
220nF
2 2 0n F
CB20
220nF
2 2 0 nF
CB19
220nF
HVM_CW
10F
CF12
10F
220nF
CB24
220nF
J TA G
CF11
H V+
HV-
H VM
GND_PW R
HV+
HV-
HVP
LVOUT1
HV+
HV-
HVM_CW
GND_PW R
HV+
HV-
HVP_CW
10F
CF8
10F
CF7
100
CB23
HVP_CW
CB17
CB16
CR2
270pF
RR2
XDCR8
XDCR7
XDCR6
XDCR5
GND_PW R
XDCR4
XDCR3
XDCR2
XDCR1
CB15
LVOUT8
GND_PW R
0
R GND
CB14
RST
220nF
CB18
2 2 0nF
CB13
NRST
H VM
HV P
CR1
270pF
RR1
RLH
100
RLG
100
RLF
100
270pF
27 0 pF
2 70pF
27 0p F
RLE
100
CLH
CLG
CLF
CLE
RLB
100
270pF
270pF
RLA
100
CLD
CLC
270pF
HVP
CLB
0
R H VP
HVP_CW
270pF
HVM
CLA
DVDD
P4
RP4
10k
15,20,51,56
52
53
54
55
16
17
18
19
1
2
3
4
11
12
13
14
ADC_IN1
USR_RX
DZ2S033
RP2
10k
ADC _IN0
P1
RP 1
10k
100nF
CAD1
DVDD
GND_PW R
LVOUT_1
LVOUT_2
LVOUT_3
LVOUT_4
L V O UT _ 5
LVOUT_6
LVOUT_7
L V O UT _ 8
XDCR_1
XDCR_2
XD CR_3
XDCR_4
XDCR_5
XDCR_6
XDCR_7
XDCR_8
0
RHVM
HVM_CW
A U X 0 AUX1 AUX2 AUX 3 AUX4 A UX5 A UX6 AU X 7
RAD2
100k
RAD1
2 . 7k
U2
STHV800
ZAD1
DZ2S033
IN1_0
IN1_1
IN 2 _0
IN2_1
IN3_0
IN3_1
IN4_0
IN4_1
IN5_0
IN5_1
IN6_0
IN6_1
IN7_0
IN7_1
IN8_0
IN8_1
CW
THSD
CK
AVDD
HVM_CW
PC
43
44
45
46
47
48
49
50
21
22
23
24
25
26
27
28
41
29
42
AV DD
DGND
AGND
VDDM
39
32
31
REG1 L D 1 1 17
+5V
IN OUT
GND
USBDP
USBDM
JTMS
JTCK
JTDI
23
24
25
26
29
30
31
32
67
68
69
70
71
72
76
77
JTDO
SPI_CLK
PA0
PA1
PA2
PA3
PA4
PA5
PA6
PA7
PA8
PA9
PA10
PA11
PA12
PA13
PA14
PA15
JRST
SPI3_MISO
PE0
PE1
PE2
PE3
PE4
PE5
PE6
PE7
PE8
PE9
PE10
PE11
PE12
PE13
PE14
PE15
SPI_JTAG_2
97
98
1
2
3
4
5
38
39
40
41
42
43
44
45
46
L5
L6
THSD
CW
35
36
37
89
90
91
92
93
95
96
47
48
51
52
53
54
HVM_CW
HVM
PB0
PB1
PB2
PB3
PB4
PB5
PB6
PB7
PB8
PB9
PB10
PB11
PB12
PB13
PB14
PB15
GND_PW R
PD0
PD1
PD2
PD3
PD4
PD5
PD6
PD7
PD8
PD9
PD10
PD11
PD12
PD13
PD14
PD15
40
30
DVDD
VDDP
33,34,35,36,37
HVP
38 HVP_CW
HVP
HVP_CW
2/4
5,6,7,8,9,57
HVM
10
HVM_CW
1
81
82
83
84
85
86
87
88
55
56
57
58
59
60
61
62
Schematic diagram
STEVAL-IME013V1
Schematic diagram
Figure 1: STEVAL-IME013V1 circuit schematic
NRST
JRST
JTCK
JTDO
JTMS
DVDD
JTDI
L4
L3
L2
L1
P4
P3
P2
P1
AUX7
AUX6
AUX5
AUX4
AUX3
AUX2
AUX1
AUX0
GSPG0308151420SG
STEVAL-IME013V1
2
Revision history
Revision history
Table 1: Document revision history
Date
Version
Changes
06-Aug-2015
1
Initial release.
14-Apr-2016
2
Updated board photo on the cover page.
DocID028197 Rev 2
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STEVAL-IME013V1
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DocID028197 Rev 2