Thundercomm Technology TURBOXSOMD820 User Manual

Thundersoft TurboX® D820
SOM Datasheet
Thundercomm
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Version Date Description
V0.1 2018-7-12 Initial Version
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Contents
1 Overview ............................................................................................................................................................. 5
1.1 Abstract ................................................................................................................................................ 5
1.2 Reference Documents .......................................................................................................................... 5
1.3 Terms and Acronyms ........................................................................................................................... 5
2 Introduction ........................................................................................................................................................ 8
2.1 Key features ......................................................................................................................................... 8
2.2 Major Components Location ............................................................................................................. 13
2.3 Connectors Function and Part Number .............................................................................................. 13
3 Interfaces Description ..................................................................................................................................... 15
3.1 Interfaces Parameter Definitions........................................................................................................ 15
3.2 Interfaces Detail Description ............................................................................................................. 16
3.2.1 Power Supply Interface .............................................................................................................. 16
3.2.2 Touch screen Interface ............................................................................................................... 17
3.2.3 Display Interface ........................................................................................................................ 17
3.2.4 Camera Interfaces ...................................................................................................................... 18
3.2.5 Audio Interface .......................................................................................................................... 20
3.2.6 USB Interface ............................................................................................................................ 21
3.2.7 HDMI Interface.......................................................................................................................... 22
3.2.8 PCIe Interface ............................................................................................................................ 22
3.2.9
SSC Interface ............................................................................................................................. 23
3.2.10 SDIO Interface ........................................................................................................................... 24
3.2.11 BLSP Interface ........................................................................................................................... 24
3.2.12 Power on Interface ..................................................................................................................... 26
3.2.13 Reset Interface ........................................................................................................................... 27
3.2.14 Keys Interface ............................................................................................................................ 28
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3.2.15 Sensor Interrupt Interface .......................................................................................................... 28
3.2.16 Debug UART Interface .............................................................................................................. 29
3.2.17 Battery Interface ........................................................................................................................ 29
3.2.18 JTAG debug ............................................................................................................................... 29
3.2.19 MPPs Interface ........................................................................................................................... 30
3.2.20 PWMs ........................................................................................................................................ 31
3.2.21 Antenna Interface ....................................................................................................................... 31
3.2.22 GPIO .......................................................................................................................................... 32
4 Electrical Characteristics ................................................................................................................................ 35
4.1 Absolute Maximum Ratings .............................................................................................................. 35
4.2 Operating Conditions ......................................................................................................................... 36
4.3 Output Power ..................................................................................................................................... 36
4.4 Digital-logic characteristics ............................................................................................................... 36
4.4.1 Digital GPIO characteristics ................................................................................................... 37
4.4.2 SD card digital I/O characteristics ............................................................................................. 37
4.5 MIPI ................................................................................................................................................... 38
4.6 USB ................................................................................................................................................... 38
4.7 PCIe ................................................................................................................................................... 38
4.8 HDMI ................................................................................................................................................. 39
4.9 SLIMbus ............................................................................................................................................ 39
4.10 SDIO .................................................................................................................................................. 39
4.11 I2S ...................................................................................................................................................... 39
4.12 I2C ..................................................................................................................................................... 41
4.13 SPI ..................................................................................................................................................... 42
4.14 Mpps .................................................................................................................................................. 42
4.15 Power Consumption ........................................................................................................................... 43
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4.16 Thermal(TBD) ................................................................................................................................... 43
4.17 RF Performance ................................................................................................................................. 43
4.17.1 GPS Performance ....................................................................................................................... 44
5 PIN Summary .................................................................................................................................................... 45
5.1 J5218 BTB Connector ....................................................................................................................... 45
5.2 J5221 BTB Connector ....................................................................................................................... 46
5.3 J5219 ZIF Connector ......................................................................................................................... 48
5.4 J5220 ZIF Connector ......................................................................................................................... 49
5.5 J101 JTAG Connector ........................................................................................................................ 51
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1 Overview
1.1 Abstract
Thundersoft TurboX®D820 is high level performance intelligent module, integrating Android or Linux system,
based on Qualcomm APQ8096 processor. It used the advanced 14 nm Fin FET process, customized 64-bit
ARMv8-campliant quad-core applications processor, 2.15GHz CPU process performance, integrated a new
Adreno 530 graphics processing unit (GPU).
Thundersoft TurboX® D820 support short-range wireless communication through Wi-Fi 802.11 a/b/g/n/ac
and BT4.2, and integrates GPS/GLONASS satellite positioning system. Thundersoft TurboX® D820 support
3840*2400@60fps display, it can connect 3 x camera modules, 1080P video smoothly output, and integrating
multiple audio and video input/output interfaces. Thundersoft TurboX® D820 provides a variety of GPIO, I2C,
UART and SPI standard interfaces. In addition, it supports two MIPI-DSI, three MIPI-CSI and SOM common
standard protocol interfaces such as USB3.0, USB2.0, SPI, PCIE2.1, I2S, SLIMBUS and HDMI.
Thundersoft TurboX® D820 provide convenient and stable system software solution for IOT field, it can be
embedded into the device on VR/AR, Drone, Robot, Smart Camera, Routers, and any other connecting fields.
The size of Thundersoft TurboX® D820 module is 36mm x 51mm x 6.45mm, weight 16g,with 302PINs.
1.2 Reference Documents
Document
80-NT204-1 MSM8996-APQ8096 DEVICE SPECIFICATION
80-NT204-41 MSM8996 BASEBAND REFERENCE SCHEMATIC
80-NJ118-1 PMI8994-PMI8996 POWER MANAGEMENT IC DEVICE SPECIFICATION
1.3 Terms and Acronyms
Acronym/Terminology Description
ADC Analog-to-digital converter
BER Bit error rate
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BLSP BAM-based low-speed peripheral
eMMC Embedded Multimedia Card
GPIO General Purpose Input/output
GLONASS GLONASS Global orbiting navigation satellite system
GNSS Global navigation satellite system
HDMI High-Definition Multimedia Interface
LPDDR Low Power Double Data Rate
LPG Light Pulse Generators
LCD Liquid crystal display
MIPI-CSI Mobile Industry Processor Interface Camera Serial Interface
MIPI-DSI Mobile Industry Processor Interface Display Serial Interface
MBHC Multiple button headset control
MOSI Master output/Slaver input
MISO Master input/Slaver output
MPP Multipurpose pin
NFC Near field communicator
PMIC Power Management Integrated Circuit
OSC Oscillator
PA Power amplifier
PCB Printed circuit board
PCIe Peripheral component interconnect express
PCM Pulse-coded modulation
PM Power management
PWM Pulse width modulation
PoP Package-on-package
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SDC Secure digital controller
SDRAM Synchronous dynamic random access memory
SLIMbus Serial Low-power Inter-chip Media Bus
SPI Serial peripheral interface
SPMI Serial power management interface
SSC Snapdragon™ sensor core
TCXO Temperature-compensated crystal oscillator
SoC System on Chip
XTAL Crystal
SDIO Secure Digital Input / Output
UART Universal Asynchronous Receiver Transmitter
USB Universal serial bus
I2S Inter-IC Sound
I2C Inter-integrated circuit
WCN Wireless connectivity network
WLAN Wireless local area network
SMPS Switched-mode power supply
SOM System On Module
ZIF Zero Insert Force
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2 Introduction
2.1 Key features
The following table shows the detailed features and performance on Thundersoft TurboX® D820.
Processors
Applications
Processor
Digital signal
processing
Sensor core Snapdragon™ sensor core (dedicated Q6 low-power island with 512 KB)
Operating System Android OS 7(TBD)
Memory
Customized 64-bit ARMv8-compliant quad-core applications processor (Kryo)
Two high-performance Kryo cores – gold cluster (2.15 GHz)
Two low-power Kryo cores – silver cluster (1.593 GHz)
Hexagon DSP with dual-Hexagon vector processor (HVX-512)(target 825 MHz)
64GB UFS+ LPDDR4 4GB
Dual-channel PoP high-speed memory – LPDDR4 SDRAM designed for 1866 MHz
clock.
Multimedia
Display support
2 x 4-lane DSI DPHY 1.2 and HDMI 2.0 (4K60) or 4K30 Miracast
HDMI up to 3840 x 2160 at 60fps
Maximum concurrency configurations
3840x2400 or 4096x2160 at 60Hz primary + 3840x2160 or 4096x2160 at 60Hz HDMI
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2560x1600 at 60 fps primary + 2560x1600 at 60fps secondary + 3840x2160 at 60fps
HDMI
Support 3 x 4-lane MIPI_CSI
Dual 14-bit ISP
28 MP + 13 MP, 600 MHz each
Camera support
Video
Encode
32MP 30ZSL with dual-ISP
16 MP30 ZSL with single ISP
ABF3 with radius noise reduction, Demosaic4, TNR, ASF2.2, Dual AF, LTM, CAC2, GIC,
Pedestal correction, stats upgrades
H.264 BP/MP/HP, MPEG-4 SP/ASP, H.263 P0, VP8, HEVC Main
Maximum performance
3840x2160 at 30 fps
4096x2160 at 24 fps
H.264 BP/MP/HP, MPEG-4 SP/ASP, H.263 P0, VC1 SP/MP/AP, MPEG-2 MP, DivX
3.11/4/5/6, VP8, VP9, HEVC Main, HEVCMain10*
Decode
Graphics
Maximum performance
3840x2160 at 60 fps
4096x2160at 60 fps
Adreno 530 3D graphics accelerator 624 MHz
Support by A530 for all important GPU APIs
DirectX 12 _FL12 (future-proof DX)
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OpenGL ES 3.1*+AEP1 and Vulkan
OpenCL 2.0*(full), RenderScript
Support for 64-bit virtual addresses, allowing for SVM with 64-bit CPUs
Supports GPU virtualization
Audio(build in Thundersoft TurboX® D820 Carrier Board with WCD9335 codec)
Seven DACs, seven outputs
Six differential analog inputs with dedicated ADCs
Codec
Low-power audio
Voice codec
support
Audio Encoders
Six digital microphones
Snapdragon™ voice activation (SVA) subsystem for ultra low voice wake-up
MBHC, ANC
130 dB dynamic range, 24-bit DAC
44.1 kHz native playback
SLIMbus to I2S bridge
Low-power, low-complexity; 7.1 surround sound
QCELP, EVRC, EVRC-B, EVRC-WB,EVS,
GSM-FR, -EFR, -HR; AMR-NB, -WB
QCELP, EVRC, AMR-WB, AMR-NB, AAC ELD, AAC and AAC+
Audio Decoders
Enhanced audio
PCM playback, AAC/AAC+/eAAC+, MP3, WMA (v9 and v10), WMALossless, WMAPro10, AMR-NB, AMR-WB, AMR-WB+, FLAC, ALAC, Vorbis*, AIFF, APE, AC3, eAC3, M8
Surround sound: DTS-HD; DTS express 7.1
Fluence noise cancellation; enhanced speaker protection
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QAudioFX/Qconcert/QEnsemble
Wireless connectivity
2.4G/5G, support 802.11 a/b/g/n/ac, 2 X 2 MIMO
WLAN
Support AP mode
Support Bluetooth 4.2 + HS
Bluetooth
GNSS Support GPS/GLONASS
BLE,
Backwards compatible with Bluetooth 1.2, 2.X + enhanced data rate.
Connectivity
USB
HDMI
Two – one USB 2.0 high-speed and one USB 3.0 super-speed/USB 2.0 high-speed Compliant
Integrated HDMI Tx core and HDMI PHY Rev 2.0
1080p at 60 Hz refresh; 24-bit RGB color
4k 60 fps HDMI
2-channel Linear Pulse-Code Modulation (LPCM)
8-channel LPCM 24 bit/192 kHz
PCIe 2x PCIe, PCIe v2.1 PHY and 2.1 controller
1 x 4-bit, SD 3.0
SDIO
SD/MMC card, eMMC NAND, eSD/eMMC boot
BLSP 7 BLSPs ,can be configured as SPI or I2C or UART
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UART up to 4 MHz
I2C Sensors etc
SPI Sensors etc
SLIMbus
MI2S
PCM
GPIO
Others
ADC Interface
One, highly multiplexed, high-speed, baseline WCD9335
3 ports;
Full duplex stereo or up to quad channel Tx/Rx MI2S (x1);
Up to 2 channel for multi-channel audio applications (x2);
Short and long sync PCM support
6+ GPIO ports
Support ADC interfaces
used for input voltage sense, battery temperature detection and general purpose
ADC
Touch screen
support
Physical size
Operating
temperature
Capacitive panels via ext IC (I2C, SPI, and interrupts)
Size: 36mm x 51mm x 6.45mm
Weight: approx.16g
Interface: Connector
-10C ~55C
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RoHS All hardware components are fully compliant with EU RoHS directive
Table 2.1-1Detailed features and performance
2.2 Major Components Location
Thundersoft TurboX® D820 SOM’s major components are as below.
There are another 2 pieces shielding covers which will be covered at the top and bottom shielding frame.
Figure 2.2-1ThundersoftTurboX® D820 SoM Key component Location
2.3 Connectors Function and Part Number
We have SOM major parts connectors on Thundersoft TurboX® D820. Below map can easy to show the Pin
start & end location on connector.
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Figure 2.3-1ThundersoftTurboX® D820 SOM Connector PIN Location
Thundersoft TurboX® D820 SOM Below table indicates connectors detail information.
Part Reference Description Manufacturer Part Number Manufacturer
BTB connectors, used for connecting
J5218,J5221
AXK6S00437YG PANASONIC
to Carrier Board.
ZIF connectors, used for extended
J5219,J5220
FH26W-51S-0.3SHW(05) HIROSE
CSI/DSI/SENSOR/GPIOs
J5201 is an antenna connector for
J5201,J5202
Wi-Fi/BT; J5202 is an antenna
818000157 ECT
connector for Wi-Fi.
J5222 An antenna connector for GPS; 818000157 ECT
J5205,J5214 Wifi/bt calibration and test socket MM8030-2610RK0 MURATA
J5223 GPS test socket MM8030-2610RK0 MURATA
J101 JTAG connector AXG7160J7 PANASONIC
Table 2.3-1Connector part number and information
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3 Interfaces Description
This chapter introduces all the interfaces definition, purpose to guide developer easy to design and
verification on Thundersoft TurboX® D820 SOM.
3.1 Interfaces Parameter Definitions
Symbol Description
AI Analog input
AO Analog output
B Bidirectional digital with CMOS input
CSI Supply voltage for MIPI_CSI circuits and I/O; (1.8 V only)
DI Digital input(CMOS)
DSI Supply voltage for MIPI_DSI I/O; (1.8 V only)
DO Digital output(CMOS)
H High-voltage tolerant
Programmable pull resistor. The default pull direction is indicated using capital letters
and is a prefix to other programmable options:
NP: pdpukp = default no-pull with programmable options following the colon (:)
nppdpukp
PD: nppukp = default pull-down with programmable options following the colon (:)
PU: nppdkp = default pull-up with programmable options following the colon (:)
KP: nppdpu = default keeper with programmable options following the colon (:)
KP Contains an internal weak keeper device (keepers cannot drive external buses)
MIPI Mobile industry processor interface
NP Contains no internal pull
OD Open drain
PD Contains an internal pull-down device
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