Innodisk nanoSSD Series Design Manual

Innodisk nanoSSD Series Design Manual

Total solutions for industrial flash strorage

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nanoSSD Design Manual
Design Manual
Rev. 1. 5
1
MAR, 2016

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Summary of Contents for Innodisk nanoSSD Series

  • Page 1 nanoSSD Design Manual Design Manual Rev. 1. 5 MAR, 2016...
  • Page 2: Table Of Contents

    nanoSSD Design Manual Contents 1. INTRODUCTION ................................6 2. EXTERNAL COMPONENTS SPECIFICATION ......................7 2.1 P ................................8 OWER UPPLY 2.1.1 Power supply ..............................8 2.1.2 Power consumption ............................9 2.2 SATA AC C ..........................10 OUPLING CAPACITORS 2.3 R ................................
  • Page 3 nanoSSD Design Manual 1 VCC P ........................8 ABLE OWER UPPLY PECIFICATION ............................10 ABLE OWER CONSUMPTION SSD B ....................... 18 ABLE NANO ALL AND IGNAL ESCRIPTION SSD GPIO ............................19 ABLE NANO TABLE SSD ........................20 ABLE EMPERATURE RANGE OF NANO ..............................
  • Page 4 nanoSSD Design Manual REVISION HISTORY Revision Description Date Preliminary First Released July, 2013 Rev. 0.1 Modify Ball and pin definition July, 2013 Modify block diagram Rev. 0.2 Sep, 2013 Modify pin assignment Wording correction Rev. 0.3 Sep, 2013 Modify pin assignment Modify Power supply info.
  • Page 5 nanoSSD Design Manual Rev. 1.3 Add 2.3 Reliability section NOV, 2015 Modify 3.1 GPIO2 and GPIO3 Type and description Rev. 1.4 FEB, 2016 Modify Chapter 8 description Update 3.1 GPIO description Rev. 1.5 MAR, 2016 Update Chapter 9 Apendix Rev. 1. 5 MAR, 2016...
  • Page 6: Introduction

    Design Manual Introduction Innodisk nanoSSD is an integrated SATA storage device that combines Innodisk ID167 NAND flash controller and latest NAND flash in a JEDEC MO-276(μSSD) form factor with ball grid array (BGA) package. The nanoSSD supports SATA III 6Gbps within a tiny dimension, as well as having lower power consumption and being high reliable.
  • Page 7: External Components Specification

    nanoSSD Design Manual Item 16GB nanoSSD Sequential Read 110 MB/s 220 MB/s 340 MB/s 450 MB/s Sequential Write 28 MB/s 55 MB/s 110 MB/s 200 MB/s C.H.S & LBA: Item Head Sector Cylinder 13587 13695696 nanoSSD 16GB 16383 29323728 32GB 16383 60579792 64GB...
  • Page 8: Power Supply

    nanoSSD Design Manual level and a few passive components to be completely functional. The required specifications for these components are listed below. The reference design section of this document has the list of recommended components which meet these specifications. Figure 1 Block diagram of nanoSSD 2.1 Power Supply This section lists the specifics for input power that is required by the nanoSSD.
  • Page 9: Power Consumption

    nanoSSD Design Manual 2.1.2 Power consumption Voltage Rail Parameter MLC 8GB MLC 16GB MLC 32GB MLC 64GB SATA 6Gb/s Host interface Read (mA) Main power Write(mA) supply Idle(mA) Read (mA) Flash IO supply Write(mA) Idle(mA) Read (mA) Controller core Write(mA) supply Idle(mA) Voltage Rail...
  • Page 10: Sata Ac Coupling Capacitors

    nanoSSD Design Manual Voltage Rail Parameter SLC 2GB SLC 4GB SLC 8GB SLC 16GB SATA 6Gb/s Host interface Read (mA) Main power Write(mA) supply Idle(mA) Read (mA) Flash IO supply Write(mA) Idle(mA) Read (mA) Controller core Write(mA) supply Idle(mA) Table 2 Power consumption 2.2 SATA AC Coupling capacitors 10nF X5R MLCC For more details please refer to design kit...
  • Page 11: Mechanical Specification

    nanoSSD Design Manual Item 16GB nanoSSD 3SE Mechanical Specification Please refer to the attachments for mechanical drawing Figure 2 Mechanical drawing of nanoSSD 3.1 Ball and Signal Description The following table provides the pin definition of the nanoSSD ball grid array. TYPE: Input - nanoSSD receives signal from host.
  • Page 12 nanoSSD Design Manual A1V2 Supply SATA PHY VDDC A1V2 Supply SATA PHY VDDC A1V2 Supply SATA PHY VDDC A1V2 Supply SATA PHY VDDC AGND SATA_VSS AGND SATA_VSS AGND SATA_VSS Debug signals Ball # Ball name Type Description GPIO 3 Output RS232 TXD (UART) GPIO 2 Input...
  • Page 13 nanoSSD Design Manual VCCQ Supply 1.8V VCCQ VCCQ Supply 1.8V VCCQ VCCQ Supply 1.8V VCCQ VCC_IO Supply 3.3 GPIO Supply D3V3 Supply 3.3V Power Supply AA19 VCC_IO Supply 3.3 GPIO Supply VCC_IO Supply 3.3 GPIO Supply D1V2 Supply 1.2V Power Supply D1V2 Supply 1.2V Power Supply...
  • Page 14 nanoSSD Design Manual Ground Ground Ground Ground Ground Ground Ground Ground Ground Ground Ground Ground AC20 Ground Ground Ground AD19 Ground AD20 Ground Analog signals XTALOUT Output 25MHz Crystal out XTALIN Input 25MHz Crystal in Do not use (DNU) signals Ball # Ball name Type...
  • Page 15 nanoSSD Design Manual Flash Vref Do not use Do not use AD11 Do not use AD13 Do not use Do not use Do not use Do not use Do not use Do not use Do not use Do not use Do not use Do not use Do not use...
  • Page 16 nanoSSD Design Manual Reserved signals Ball # Ball name Type Description GPIO 0 Output AD10 GPIO 1 Output AD16 GPIO 4 Input Reserved GPIO 5 In &Out Load mode AD18 GPIO 6 Output Reserved AC14 GPIO 7 Input Reserved AC11 GPIO 8 Output Reserved...
  • Page 17 nanoSSD Design Manual ME. GND Ground ME. GND Ground ME. GND Ground ME. GND Ground ME. GND Ground ME. GND Ground ME. GND Ground ME. GND Ground ME. GND Ground ME. GND Ground ME. GND Ground ME. GND Ground ME. GND Ground ME.
  • Page 18 nanoSSD Design Manual ME. GND Ground AM24 ME. GND Ground AM26 ME. GND Ground ME. GND Ground ME. GND Ground ME. GND Ground AP22 ME. GND Ground AP24 ME. GND Ground AP26 ME. GND Ground Table 3 nanoSSD Ball and Signal Description Rev.
  • Page 19: Gpio Table With Function Description

    nanoSSD Design Manual 3.2 GPIO table with function description Item Function pin type Description GPIO0 Thermal Sensor SDA output For I2C interface thermal sensor IC GPIO1 Thermal Sensor SCL output For I2C interface thermal sensor IC GPIO2 UART-RX input UART message for debugging GPIO3 UART-TX output...
  • Page 20: Component Placement And Routing Requirements

    nanoSSD Design Manual Component Placement and Routing Requirements This section states component placement and routing requirements of nanoSSD. Please refer to attachments for reference design. 4.1 SATA Differential Signals To comply with SATA interface specifications, the SATA differential lines must have 100 Ohm differential impedance.
  • Page 21: Reference Design

    Please refer to attachments for schematic files. 6.2 Layout guide Refer to attached (NanoSSD design guide) 6.3 Demo board Figure 3 Innodisk ServerDOM is as nanoSSD Demo board Production guide 7.1 Preheat Before printed circuit board assembly, a process of preheat is requested.
  • Page 22 nanoSSD Design Manual Table 6 Reflow Profile Rev. 1. 5 MAR, 2016...
  • Page 23: Product Specification / Order Information

    nanoSSD Design Manual Product specification / Order information Line Description Product name Product specification Place of origin Date code (YYWW) Product Specification code Description Part number V21MAC01 M-008GB nanoSSD 3ME 08GB, 1CH, MLC DENSD-08GD06SCASY V21MAC02 M-016GB nanoSSD 3ME 16GB, 2CH, MLC DENSD-16GD06SCADY V21MAC04 M-032GB nanoSSD 3ME 32GB, 4CH, MLC...
  • Page 24: Appendix

    (Due to PDF file compatibility issue, please change file extension from .txt to .rar and decompress with Winrar or 7-zip) BGA156P0D5-16X20.dra Mechanical drawing BGA156P0D5-16X20.dxf Component symbol BGA156P0D5-16X20.psm Component symbol Innodisk nanoSSD ESD test report nanoSSD ESD test report NANOSSD_BGA156_Reference_A3_160329.DSN Schematic nanossd_bga156_reference_a3_160329.pdf Schematic nanoSSD design guide.pdf design guide nanoSSD power sequence requirement.pdf...

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