Fast open switch r1.0

PCB-Arts·fast-open-switch-hardware·Klusterlab1.0/fast-open-switch r1.0 - KiCad/fast-open-switch r1.0.kicad_pcb

Fast open switch r1.0 PCB layout, top view — open source FPGA board by PCB-Arts

About the Fast open switch r1.0 PCB

Fast open switch r1.0 is an open source FPGA PCB design by PCB-Arts, published on GitHub. It is a 12-layer board measuring 230 × 225 mm, with 909 components from 140 distinct parts.

Its main chip is the XC7K160T-3FFG676E, from the FPGA family. Other key parts include the TPS51200DRCT, NL17SZ07DFT2G, AP21510FM-7, TLV62568ADRL and TUSB8044AI. By type, the board carries 371 capacitors, 281 resistors, 84 diodes, 41 ICs, 31 connectors and 22 test points.

From the project

KlusterLab is an open FPGA development platform designed for experimenting with high-speed interfaces and formally verified IP cores.

The electronic design data from the KlusterLab 2.0 project is stored in this repo.

Main components on the Fast open switch r1.0

Fast open switch r1.0 bill of materials (BOM)

909 components, 140 distinct parts — part numbers from the project's BOM.

QtyPartRefs
1
XC7K160T-3FFG676E
Xilinx
U1
1
TPS51200DRCT
Texas Instruments
U2
2
NL17SZ07DFT2G
ON Semiconductor
U3, U4
2
AP21510FM-7
Diodes Incorporated
U5, U20
1
TLV62568ADRL
Texas Instruments
U6
1
TUSB8044AI
VL822-Q7
Texas Instruments
U7
1
AP22816AKCWT-7
AP22811AW5-7
Diodes Incorporated
U8
2
FSUSB42MUX
onsemi / Fairchild
U9, U10
1
JTAG-SMT3-NC
Digilent
U11
1
74LV1T34GV-Q100H
Nexperia
U12
1
TPS54JB20RWWR
FT234XD-R
Texas Instruments
U13
1
S40FC004C1B2C00000
SkyHigh Memory
U14
1
74LV1T34GV-Q100H
SN74LVC1G18DBVR
Nexperia
U15
1
TXB0302DQMR
U16
1
MT25QU256ABA8ESF-0SIT
Micron
U17
1
TXB0108RGYR
U18
1
TMDS141RHAR
Texas Instruments
U19
1
AD8195ACPZ
Analog Devices
U21
1
TCA9548ARGERQ1
Texas Instruments
U22
1
SI5324C-C-GM
Skyworks Solutions, Inc.
U23
Show 120 more
QtyPartRefs
1
SN74AVC1T45DCKR
TXB0302DQMR
Texas Instruments
U24
1
L7805CDT-TR
U25
2
TPS37043BJOFDDFRQ1
NXP
U26, U27
8
TPS54JB20RWWR
LMZ22010TZE/NOPB
Texas Instruments
U28, U29, U30, U31, U32, U33, U34, U35
1
SN74AVC1T45DCKR
PCT2075TP,147
Texas Instruments
U36
1
AP62600SJ-7
PCT2075TP,147
Diodes Incorporated
U37
1
NVT4858HKZ
LMZ22010TZE/NOPB
NXP Semiconductors
U38
1
FSUSB42MUX
LMZ22010TZE/NOPB
onsemi / Fairchild
U39
1
TLV62568ADRL
74LVC1G14GV,125
Texas Instruments
U40
1
AP22816AKCWT-7
74LVC1G14GV,125
Diodes Incorporated
U41
4
2007198-1
TE Connectivity
M1, M2, M3, M4
7
RUC002N05T116
ROHM Semiconductor
Q1, Q2, Q3, Q4, Q7, Q8, Q12
2
RUC002N05T116
2N7002NXAKR
ROHM Semiconductor
Q5, Q6
3
2N7002NXAKR
Nexperia
Q9, Q10, Q11
1
ECS-240-10-36B2-CTN
ECS-250-10-36B2-CTN-TR
ECS
Y1
1
ASVMB-66.000MHZ-XY-T
ABRACON
Y2
1
CS-023-114.285M
Connor Winfield
Y3
1
AX3DCF1-200.0000
Abracon
Y4
1
511JBA150M000CAG
511JBA150M000BAG
Skyworks Solutions, Inc.
Y5
1
AX3DCF1-156.2500
Abracon
Y6
1
2-2013310-1
TE Connectivity
J1
4
74441-0010
Molex
J2, J3, J4, J5
1
APCI0161
Lotes
J6
1
Hirose Hirose DF40HC(3.0)-100DS-0.4V
Hirose
J7
1
Hirose DF40HC(3.0)-100DS-0.4V PiMC4 Pin 101-200
Hirose
J8
1
UEA1112C-8FS6-4F
R-RJ45R08P-C000
Foxconn
J9
2
53398-0476
Molex
J10, J16
3
EB-500-6007
Elecbee
J11, J23, J24
1
TF-115
XUNPU
J12
1
USB4200-03-A
MICRO5.9mmusb
GCT
J13
1
USB4200-03-A
UEA1112C-8FS6-4F
GCT
J14
3
4-Pin THT Pin header
Würth Elektronik
J15, J17, J25
1
Box Pinheader, 14 Pin, THT, Straight
Molex
J18
2
MICRO5.9mmusb
Amphenol
J19, J31
1
Pinheader, 20 Pin, THT, Straight
J20
2
SS4-30-3.50-L-D-K
SS4-30-3.50-L-D-K-TR
Samtec
J21, J27
1
TF-115
J22
1
87427-0602
MOLEX
J26
1
Pinheader, 10 Pin, THT, Straight
Würth Elektronik
J28
2
PINREX 744-81-04TG20
PINREX
J29, J30
1
0ZRB0400FF1A
015406.3
Bel Fuse
F1
1
9774065151R
Würth Elektronik
H1
4
9774030151R
Würth Elektronik
H2, H3, H4, H5
4
9774070360R
9774050960R
Würth Elektronik
H6, H7, H8, H9
6
9774050243R
Würth Elektronik
H10, H11, H12, H13, H14, H15
4
9774020360R
Würth Elektronik
H16, H17, H18, H19
1
Heatsink Assembly 52.65x52.65x24.5mm
Advanced Thermal Solutions
HS1
8
Net Tie
NT1, NT2, NT3, NT4, NT5, NT6, NT7, NT8
1
RPICM4
RPiCM4
Raspberry Pi
PC1
3
LL3301BF065QJ
E-Switch
S1, S2, S4
1
DS04-254-1-03BK-SMT
CUI Devices
S3
5
LL3301BF065QJ
S5, S7, S8, S9, S12
3
DS04-254-1-03BK-SMT
S6, S10, S11
1
7101MD9AV2BE
S13
1
QT24A01
TNK
T1
22
Testpoint
TP1, TP2, TP3, TP4, TP5, TP6, TP7, TP8 +14
6
LTST-S270KGKT
lite-On
D1, D30, D138, D140, D142, D144
10
LTST-S270KRKT
lite-On
D2, D29, D64, D65, D66, D67, D68, D69 +2
57
CESDP0402UC5VB
CREATEK
D3, D4, D5, D6, D7, D8, D9, D10 +49
2
LTST-S270TBKT
lite-On
D31, D73
1
824014883
CESDP0402UC5VB
Wurth Elektronik
D32
3
BAT54GWJ
Nexperia
D37, D49, D50
1
SMB15F18A
STMicroelectronics
D72
4
LTST-S270KFKT
lite-On
D139, D141, D143, D145
9
BLM18SG121TN1D
Murata Electronics
L1, L2, L3, L4, L5, L6, L7, L8 +1
1
FXL0420-1R0-M
cjiang(Changjiang Microelectronics Tech)
L9
2
XAL7070-801MEC
BLM21PG221SN1D
Coilcraft
L10, L11
1
XAL7070-801MEC
BLM18SG121TN1D
Coilcraft
L12
19
10nF 50V
Würth Elektronik
C1, C2, C3, C14, C16, C83, C84, C85 +11
12
10µF 35V
Murata Electronics
C4, C7, C8, C11, C12, C13, C37, C59 +4
117
100nF 50V
Murata Electronics
C5, C9, C10, C15, C17, C18, C19, C21 +109
1
100nF 100V
Samsung Electro-Mechanics
C6
4
100µF 6.3V
Samsung Electro-Mechanics
C38, C207, C235, C253
62
1µF 35V
Murata Electronics
C39, C40, C120, C144, C200, C201, C202, C204 +54
12
22µF 25V
KEMET
C87, C89, C91, C93, C96, C98, C100, C102 +4
1
1nF 2000V
Murata Electronics
C111
10
10µF 6.3V
Murata Electronics
C112, C113, C118, C174, C175, C203, C240, C246 +2
3
12pF 50V
Murata Electronics
C117, C145, C146
1
22µF 16V
Samsung Electro-Mechanics
C119
1
100µF 10V
Murata Electronics
C141
1
22µF 10V
Samsung Electro-Mechanics
C182
11
OPT
Murata Electronics
C193, C196, C407, C408, C409, C410, C411, C412 +3
23
1µF 50V
Murata Electronics
C279, C284, C285, C293, C294, C295, C296, C297 +15
33
330µF 25V
Würth Elektronik
C281, C282, C283, C318, C320, C322, C324, C325 +25
50
10µF 100V
Murata Electronics
C301, C302, C303, C304, C305, C306, C307, C308 +42
9
220nF 35V
KEMET
C333, C334, C335, C336, C377, C378, C379, C380 +1
1
1nF 50V
Murata Electronics
C405
6
80.6R 1%
Vishay / Dale
R1, R3, R5, R6, R7, R8
16
1.07k 1%
Vishay / Dale
R2, R4, R214, R218, R221, R223, R227, R237 +8
7
100R 1%
Vishay / Dale
R9, R16, R17, R18, R19, R109, R206
70
4.7k 1%
Vishay / Dale
R10, R11, R12, R13, R14, R15, R20, R21 +62
8
0R Jumper
R26, R27, R37, R38, R48, R49, R59, R60
21
47k 1%
R64, R65, R164, R165, R166, R167, R170, R171 +13
34
0R Jumper
Vishay / Dale
R66, R67, R69, R70, R96, R103, R104, R117 +26
2
2.2k 1%
Vishay / Dale
R68, R132
14
1k 1%
Vishay / Dale
R71, R72, R110, R111, R112, R178, R257, R258 +6
4
75R 1%
Panasonic
R73, R74, R75, R78
6
110R 1%
Vishay / Dale
R76, R77, R275, R277, R279, R281
1
12k 1%
Vishay / Dale
R79
20
10k 1%
R80, R85, R91, R92, R93, R102, R113, R116 +12
1
16k 1%
Vishay / Dale
R81
1
12.4k 1%
Vishay / Dale
R86
22
1.6k 1%
Vishay / Dale
R87, R88, R89, R90, R153, R154, R158, R159 +14
6
22R 1%
Vishay / Dale
R97, R99, R100, R101, R114, R115
2
270R 1%
Vishay / Dale
R106, R108
1
360R 1%
Vishay / Dale
R107
3
20k 1%
Bourns
R131, R149, R207
3
1M 1%
Vishay / Dale
R137, R150, R210
1
30.1k 1%
Vishay / Dale
R151
1
4.64k 1%
Vishay / Dale
R152
2
100k 1%
Vishay / Dale
R161, R162
12
200R 1%
Vishay / Dale
R189, R190, R191, R192, R193, R194, R195, R196 +4
3
5.62k 1%
Vishay / Dale
R213, R233, R254
4
267R 1%
Vishay / Dale
R215, R226, R242, R252
4
1.33k 1%
Vishay / Dale
R220, R229, R234, R235
2
536R 1%
Vishay / Dale
R222, R241
1
931R 1%
Vishay / Dale
R236
1
2.67k 1%
Vishay / Dale
R243
1
3.32k 1%
Vishay / Dale
R244
1
0R Jumper
R256

Fast open switch r1.0 design files

The KiCad project lives in the PCB-Arts/fast-open-switch-hardware repository on GitHub; these links point at the commit this page was built from.

Fast open switch r1.0: common questions

What microcontroller does the Fast open switch r1.0 use?

The Fast open switch r1.0 is built around the XC7K160T-3FFG676E, from the FPGA family.

How big is the Fast open switch r1.0 PCB?

The Fast open switch r1.0 measures 230 × 225 mm, has 12 copper layers and is 1.6 mm thick.

How many components are on the Fast open switch r1.0?

909 components, from 140 distinct parts, with part numbers taken from the project's own BOM. The full bill of materials is listed on this page.

Where can I download the Fast open switch r1.0 design files?

From the PCB-Arts/fast-open-switch-hardware repository on GitHub, which has the KiCad layout and the BOM; the links under Design files point to each one.

Can I use the Fast open switch r1.0 design in my own project?

The repository has no license, so all rights stay with PCB-Arts. Use it as a reference, and ask the author before reusing the design.

Can I test firmware for the Fast open switch r1.0 without the hardware?

Yes. HardLabs builds a simulation of the board from its netlist and BOM, so you can run and debug FPGA firmware against it before you order a PCB.

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