TQ-Systems TQMLS1028A Preliminary User'S Manual Download Page 21

 

Preliminary User's Manual  l  TQMLS1028A UM 0001  l  © 2019, TQ-Systems GmbH 

 

Page  17 

 

4.15.2 

Pinout TQMLS1028A (continued) 

 

Table 11: 

Pinout connector X2 

Ball 

Level 

Group 

Signal 

Pin 

Signal 

Group 

Level 

Ball 

 

3.3 V 

System 

SWD_IO 

TEMP_ALERT# 

System 

3.3 V (OC) 

 

 

3.3 V 

System 

SWD_CLK/PWM_VREF 

TEMP_CRIT_MOD# 

System 

3.3 V 

 

 

0 V 

Power 

DGND 

VCC3V3S 

Factory Test 

3.3 V 

 

 

1.8 V 

SDHC 

SDHC1_VSEL 

DGND 

Power 

0 V 

 

 

1.8 / 3.3 V 

SDHC 

SDHC1_CLK 

10 

CLK_OUT 

Debug 

1.8 V 

 

 

1.8 / 3.3 V 

SDHC 

SDHC1_CMD 

11 

12 

ASLEEP 

Debug 

1.8 V 

 

 

0 V 

Power 

DGND 

13 

14 

TA_TMP_DETECT# 

Trust 

1.8 V 

 

 

1.8 / 3.3 V 

SDHC 

SDHC1_DAT0 

15 

16 

TA_BB_TMP_DETECT# 

Trust 

(TA_BB_VDD) 

 

 

1.8 / 3.3 V 

SDHC 

SDHC1_DAT1 

17 

18 

DGND 

Power 

0 V 

 

 

1.8 / 3.3 V 

SDHC 

SDHC1_DAT2 

19 

20 

IIC1_SCL 

I2C 

1.8 V 

 

 

1.8 / 3.3 V 

SDHC 

SDHC1_DAT3 

21 

22 

IIC1_SDA 

I2C 

1.8 V 

 

 

0 V 

Power 

DGND 

23 

24 

IIC2_SCL 

I2C 

1.8 V 

 

 

1.8 V 

UART 

UART1_SIN 

25 

26 

IIC2_SDA 

I2C 

1.8 V 

 

 

1.8 V 

UART 

UART1_SOUT 

27 

28 

IIC3_SCL 

I2C 

1.8 V 

 

 

1.8 V 

UART 

UART2_SIN 

29 

30 

IIC3_SDA 

I2C 

1.8 V 

 

 

1.8 V 

UART 

UART2_SOUT 

31 

32 

IIC4_SCL 

I2C 

1.8 V 

 

 

0 V 

Power 

DGND 

33 

34 

IIC4_SDA 

I2C 

1.8 V 

 

 

(VDD_1) 

Factory Test 

VDD_1 

35 

36 

IIC5_SCL 

I2C 

1.8 V 

 

 

(VDD) 

Factory Test 

VDD 

37 

38 

IIC5_SDA 

I2C 

1.8 V 

 

 

1.35 V 

Factory Test 

VCC1V35 

39 

40 

IIC6_SCL 

I2C 

1.8 V 

 

 

0 V 

Power 

DGND 

41 

42 

IIC6_SDA 

I2C 

1.8 V 

 

 

(SVDD) 

SerDes 

SD1_REF_CLK1_P 

43 

44 

DGND 

Power 

0 V 

 

 

(SVDD) 

SerDes 

SD1_REF_CLK1_N 

45 

46 

DGND 

Power 

0 V 

 

 

0 V 

Power 

DGND 

47 

48 

SD1_RX0_P 

SerDes 

(SVDD) 

 

 

0 V 

Power 

DGND 

49 

50 

SD1_RX0_N 

SerDes 

(SVDD) 

 

 

(XVDD) 

SerDes 

SD1_TX0_P 

51 

52 

DGND 

Power 

0 V 

 

 

(XVDD) 

SerDes 

SD1_TX0_N 

53 

54 

DGND 

Power 

0 V 

 

 

0 V 

Power 

DGND 

55 

56 

SD1_RX1_P 

SerDes 

(SVDD) 

 

 

0 V 

Power 

DGND 

57 

58 

SD1_RX1_N 

SerDes 

(SVDD) 

 

 

(XVDD) 

SerDes 

SD1_TX1_P 

59 

60 

DGND 

Power 

0 V 

 

 

(XVDD) 

SerDes 

SD1_TX1_N 

61 

62 

DGND 

Power 

0 V 

 

 

0 V 

Power 

DGND 

63 

64 

SD1_RX2_P 

SerDes 

(SVDD) 

 

 

0 V 

Power 

DGND 

65 

66 

SD1_RX2_N 

SerDes 

(SVDD) 

 

 

(XVDD) 

SerDes 

SD1_TX2_P 

67 

68 

DGND 

Power 

0 V 

 

 

(XVDD) 

SerDes 

SD1_TX2_N 

69 

70 

DGND 

Power 

0 V 

 

 

0 V 

Power 

DGND 

71 

72 

SD1_RX3_P 

SerDes 

(SVDD) 

 

 

0 V 

Power 

DGND 

73 

74 

SD1_RX3_N 

SerDes 

(SVDD) 

 

 

(XVDD) 

SerDes 

SD1_TX3_P 

75 

76 

DGND 

Power 

0 V 

 

 

(XVDD) 

SerDes 

SD1_TX3_N 

77 

78 

DGND 

Power 

0 V 

 

 

0 V 

Power 

DGND 

79 

80 

SD1_REF_CLK2_P 

SerDes 

(SVDD) 

 

 

0 V 

Power 

DGND 

81 

82 

SD1_REF_CLK2_N 

SerDes 

(SVDD) 

 

 

1.8 V 

SPI 

SPI3_SCK 

83 

84 

DGND 

Power 

0 V 

 

 

1.8 V 

SPI 

SPI3_PCS0 

85 

86 

SCAN_MODE# 

Factory Test 

1.8 V 

 

 

1.8 V 

SPI 

SPI3_SIN 

87 

88 

TEST_SEL# 

Factory Test 

1.8 V 

 

 

1.8 V 

SPI 

SPI3_SOUT 

89 

90 

TBSCAN_EN# 

JTAG 

1.8 V 

 

 

0 V 

Power 

DGND 

91 

92 

TDI 

JTAG 

1.8 V 

 

 

1.8 V 

Reset 

PORESET# 

93 

94 

TDO 

JTAG 

1.8 V 

 

 

1.8 V 

Reset 

HRESET# 

95 

96 

TCK 

JTAG 

1.8 V 

 

 

1.8 V 

Reset 

RESET_REQ# 

97 

98 

TMS 

JTAG 

1.8 V 

 

 

0 V 

Power 

DGND 

99 

100 

TRST# 

JTAG 

1.8 V 

 

 

1.8 V 

Ethernet 

EC1_RX_DV 

101 

102 

DGND 

Power 

0 V 

 

 

1.8 V 

Ethernet 

EC1_RXD0 

103 

104 

EC1_TXD0 

Ethernet 

1.8 V 

 

 

1.8 V 

Ethernet 

EC1_RXD1 

105 

106 

EC1_TXD1 

Ethernet 

1.8 V 

 

 

1.8 V 

Ethernet 

EC1_RXD2 

107 

108 

EC1_TXD2 

Ethernet 

1.8 V 

 

 

1.8 V 

Ethernet 

EC1_RXD3 

109 

110 

EC1_TXD3 

Ethernet 

1.8 V 

 

 

1.8 V 

Ethernet 

EC1_RX_CLK 

111 

112 

EC1_TX_EN 

Ethernet 

1.8 V 

 

 

0 V 

Power 

DGND 

113 

114 

DGND 

Power 

0 V 

 

 

1.8 V 

Ethernet 

EC1_GTX_CLK 

115 

116 

EMI1_MDC 

Ethernet 

1.8V (OVDD) 

 

 

1.8 V 

Ethernet 

EC1_GTX_CLK125 

117 

118 

EMI1_MDIO 

Ethernet 

1.8V (OVDD) 

 

 

0 V 

Power 

DGND 

119 

120 

DGND 

Power 

0 V 

 

 

Summary of Contents for TQMLS1028A

Page 1: ...TQMLS1028A Preliminary User s Manual TQMLS1028A UM 0001 06 05 2019 ...

Page 2: ... Supervisor 7 4 2 2 Self Reset 8 4 2 3 JTAG Reset TRST 8 4 3 CPU Configuration 9 4 3 1 RCW Source 9 4 3 2 Configuration signals 9 4 3 3 Reset Configuration Word 10 4 3 4 Settings via Pre Boot Loader PBL 10 4 3 5 Error handling during RCW loading 10 4 4 System Controller 10 4 5 System Clock 11 4 6 Flash 11 4 6 1 QSPI NOR Flash 11 4 6 2 eMMC SD card 11 4 7 SDRAM 11 4 8 EEPROM 12 4 8 1 Data EEPROM 24...

Page 3: ... management 22 5 8 Structural requirements 22 5 9 Notes of treatment 22 6 SOFTWARE 22 7 SAFETY REQUIREMENTS AND PROTECTIVE REGULATIONS 23 7 1 EMC 23 7 2 ESD 23 7 3 Operational safety and personal security 23 7 4 Climatic and operational conditions 23 7 5 Reliability and service life 23 8 ENVIRONMENT PROTECTION 24 8 1 RoHS 24 8 2 WEEE 24 8 3 REACH 24 8 4 EuP 24 8 5 Battery 24 8 6 Packaging 24 8 7 O...

Page 4: ...ms 25 Table 17 Further applicable documents 27 ILLUSTRATION DIRECTORY Illustration 1 Block diagram TQMLS1028A simplified 4 Illustration 2 Block diagram LS1028A 5 Illustration 3 Block diagram LS1018A 5 Illustration 4 Block diagram LS1027A 6 Illustration 5 Block diagram LS1017A 6 Illustration 6 Feedback HRESET_REQ 8 Illustration 7 Wiring TRST 8 Illustration 8 Block diagram eMMC interface 11 Illustra...

Page 5: ...ademarks are rightly protected by a third party 1 3 Disclaimer TQ Systems GmbH does not guarantee that the information in this Preliminary User s Manual is up to date correct complete or of good quality Nor does TQ Systems GmbH assume guarantee for further usage of the information Liability claims against TQ Systems GmbH referring to material or non material related damages caused due to usage or ...

Page 6: ...ial used This symbol represents important details or aspects for working with TQ products Command A font with fixed width is used to denote commands contents file names or menu items 1 7 Handling and ESD tips General handling of your TQ products The TQ product may only be used and serviced by certified personnel who have taken note of the information the safety regulations in this document and all...

Page 7: ...wing contents MBLS1028A circuit diagram MBLS1028A Preliminary User s Manual LS1028A Data Sheet U Boot documentation www denx de wiki U Boot Documentation PTXdist documentation www ptxdist de TQ Support Wiki support tq group com doku php id en arm tqmls1028a 2 BRIEF DESCRIPTION This Preliminary User s Manual describes the TQMLS1028A and refers to some software settings A certain TQMLS1028A derivati...

Page 8: ...set configuration and Power Management Power supply and Power Sequencing Voltage supervision Temperature sensors RTC EEPROM DDR4 SDRAM with ECC QSPI NOR Flash eMMC NAND Flash Two connectors 240 pins All essential CPU pins are routed to the TQMLS1028A connectors There are therefore no restrictions for customers using the TQMLS1028A with respect to an integrated customised design All TQMLS1028A vers...

Page 9: ...Manual l TQMLS1028A UM 0001 l 2019 TQ Systems GmbH Page 5 4 ELECTRONICS 4 1 LS1028A CPU 4 1 1 LS1028A variants block diagrams Illustration 2 Block diagram LS1028A Source NXP Illustration 3 Block diagram LS1018A Source NXP ...

Page 10: ...ry User s Manual l TQMLS1028A UM 0001 l 2019 TQ Systems GmbH Page 6 4 1 1 LS1028A variants block diagrams continued Illustration 4 Block diagram LS1027A Source NXP Illustration 5 Block diagram LS1017A Source NXP ...

Page 11: ...P 2 Gen 3 0 Controllers RC or RP 2 Gen 3 0 Controllers RC or RP 2 Gen 3 0 Controllers RC or RP USB 2 USB 3 0 with PHY Host or Device 2 USB 3 0 with PHY Host or Device 2 USB 3 0 with PHY Host or Device 2 USB 3 0 with PHY Host or Device 4 2 Reset Logic and Supervisor The reset logic contains the following functions Monitoring the voltages on the module External reset input PGOOD output for power up ...

Page 12: ...ESET_REQ is triggered a self reset is executed Depending on how the feedback circuit is designed on the carrier board the feedback circuit can override the internal feedback and thus if RESET_REQ is active it can either Trigger a reset Not trigger a reset Trigger further actions on the carrier board in addition to the reset RESET_REQ is routed to the connector for this purpose see Illustration 6 F...

Page 13: ...rc 0 3 ASLEEP CLK_OUT UART1_SOUT UART2_SOUT 1111 Several Yes cfg_svr_src 0 1 XSPI1_A_CS0_B XSPI1_A_CS1_B 11 cfg_dram_type EMI1_MDC 1 1 No cfg_eng_use0 XSPI1_A_SCK 1 1 cfg_gpinput 0 3 SDHC1_DAT 0 3 I O voltage EVDD 1 8 or 3 3 V 1111 Not driven internal Pull Ups cfg_gpinput 4 7 XSPI1_B_DATA 0 3 1111 Not driven internal Pull Ups The following table shows the coding of the field cfg_rcw_src Table 6 Re...

Page 14: ... structure as the RCW or extends it For details see 3 Table 27 2 4 3 5 Error handling during RCW loading If an error occurs while loading the RCW or in the PBL the CPU proceeds as follows see 3 Table 4 6 Halt the Reset Sequence on RCW Error Detection If the Service Processor reports an error during its process of loading the RCW data the following occurs The device reset sequence is halted remaini...

Page 15: ... NOR Flash QSPI flash with 1 8 V I O voltage 4 or 8 bidirectional data lines separate read strobe Software support for STR and DTR 64 to 512 MByte 4 6 2 eMMC SD card The LS1028A CPU provides two SDHC interfaces One is for SD cards with switchable I O voltage the other for eMMC with fixed I O voltage LS1028A eMMC 5 x SDHC2_CLK SDHC2_CMD CLK CMD SDHC2_DATA 7 0 DAT 7 0 SDHC2_RESET_B RST SDHC2_STROBE ...

Page 16: ...ytes 80h to FFh cannot be write protected and can be used for general data storage Illustration 9 Memory Map SE97BTP EEPROM The EEPROM can be accessed with the following two I2 C addresses EEPROM Normal Mode 0x50 1010 000b EEPROM Protected Mode 0x30 0110 000b The configuration EEPROM contains a standard reset configuration at delivery The configuration EEPROM is only one of several options for sto...

Page 17: ...uffering 4 10 Temperature monitoring Due to the high power dissipation temperature monitoring is absolutely necessary in order to comply with the specified operating conditions and thus ensure reliable operation of the TQMLS1028A The temperature critical components are CPU DDR4 SDRAM The following measuring points exist CPU temperature Measurement via diode integrated in CPU read out via external ...

Page 18: ...r 4 12 2 Power consumption TQMLS1028A The given current consumptions have to be seen as typical values The power consumption of the TQMLS1028A strongly depends on the application the mode of operation and the operating system The following table shows details of the TQMLS1028A supply and power consumption Table 8 Power consumption TQMLS1028A Module Power dissipation max Power dissipation typ Therm...

Page 19: ...re connected to the level shifted I2C1 bus More devices can be connected to the bus but additional external pull ups may be necessary on account of the relatively high capacitive load 4 14 3 JTAG On the MBLS1082A is a 20 pin pin header with 100 mil pitch where various debuggers can be connected Alternatively the LS1028A CPU can be addressed via OpenSDA 4 15 TQMLS1028A interfaces 4 15 1 Pin multipl...

Page 20: ...T USB 1 8 V 1 8 V USB USB_DRVVBUS 59 60 VCC1V8 Factory Test 1 8 V 2 5 V Factory Test VCC2V5 61 62 DGND Power 0 V 0 V Power DGND 63 64 XSPI1_A_DATA1 XSPI 1 8 V 1 8 V XSPI XSPI1_A_DATA0 65 66 XSPI1_A_DATA3 XSPI 1 8 V 1 8 V XSPI XSPI1_A_DATA2 67 68 XSPI1_A_DATA5 XSPI 1 8 V 1 8 V XSPI XSPI1_A_DATA4 69 70 XSPI1_A_DATA7 XSPI 1 8 V 1 8 V XSPI XSPI1_A_DATA6 71 72 XSPI1_A_CS0 XSPI 1 8 V 1 8 V XSPI XSPI1_A_...

Page 21: ...X0_P 51 52 DGND Power 0 V XVDD SerDes SD1_TX0_N 53 54 DGND Power 0 V 0 V Power DGND 55 56 SD1_RX1_P SerDes SVDD 0 V Power DGND 57 58 SD1_RX1_N SerDes SVDD XVDD SerDes SD1_TX1_P 59 60 DGND Power 0 V XVDD SerDes SD1_TX1_N 61 62 DGND Power 0 V 0 V Power DGND 63 64 SD1_RX2_P SerDes SVDD 0 V Power DGND 65 66 SD1_RX2_N SerDes SVDD XVDD SerDes SD1_TX2_P 67 68 DGND Power 0 V XVDD SerDes SD1_TX2_N 69 70 DG...

Page 22: ...mbly AK1 AK2 AK3 Illustration 11 TQMLS1028A assembly top AK4 Illustration 12 TQMLS1028A assembly bottom The labels on the TQMLS1028A show the following information Table 12 Labels on TQMLS1028A Label Text AK1 2D serial number AK2 2D MAC address AK2 TQMLS1028A version and revision AK4 Tests performed ...

Page 23: ...eliminary User s Manual l TQMLS1028A UM 0001 l 2019 TQ Systems GmbH Page 19 5 2 Dimensions Illustration 13 TQMLS1028A dimensions side view Illustration 14 TQMLS1028A dimensions top view through TQMLS1028A ...

Page 24: ...1028A UM 0001 l 2019 TQ Systems GmbH Page 20 5 3 Images Illustration 15 TQMLS1028A 3D top view Illustration 16 TQMLS1028A 3D bottom view A 3D model is available in SolidWorks STEP and 3D PDF formats Please contact Support tq group com ...

Page 25: ...y 24 N To avoid damaging the TQMLS1028A connectors as well as the carrier board connectors while removing the TQMLS1028A the use of the extraction tool MOZI8XX is strongly recommended See chapter 5 9 for further information Attention Component placement on the carrier board 2 5 mm should be kept free on the carrier board on both long sides of the TQMLS1028A for the extraction tool MOZI8XX The foll...

Page 26: ...hain PCB thickness board warpage BGA balls BGA package thermal pad heatsink as well as the maximum pressure on the LS1028A must be taken into consideration when connecting the heat sink see 2 The LS1028A is not necessarily the highest component Inadequate cooling connections can lead to overheating of the TQMLS1028A and thus malfunction deterioration or destruction 5 8 Structural requirements The ...

Page 27: ...carrier board no special preventive measures were planned on the TQMLS1028A The following measures are recommended for a carrier board Generally applicable Shielding of inputs shielding connected well to ground housing on both ends Supply voltages Protection by suppressor diode s Slow signals RC filtering Zener diode s Fast signals Integrated protective devices e g suppressor diode arrays 7 3 Oper...

Page 28: ...mbled on the TQMLS1028A 8 6 Packaging By environmentally friendly processes production equipment and products we contribute to the protection of our environment To be able to reuse the TQMLS1028A it is produced in such a way a modular construction that it can be easily repaired and disassembled The energy consumption of this subassembly is minimised by suitable measures The TQMLS1028A is delivered...

Page 29: ...Rate DMA Direct Memory Access DP Display Port EC European Community ECC Error Checking and Correction EEPROM Electrically Erasable Programmable Read only Memory EMC Electromagnetic Compatibility eMMC embedded Multi Media Card ESD Electrostatic Discharge EuP Energy using Products FR 4 Flame Retardant 4 GPU Graphics Processing Unit I Input I2C Inter Integrated Circuit IIC Inter Integrated Circuit IP...

Page 30: ...et Configuration Word REACH Registration Evaluation Authorisation and restriction of Chemicals RoHS Restriction of the use of certain Hazardous Substances RTC Real Time Clock RWP Reversible Write Protected SD card Secure Digital Card SDHC Secure Digital High Capacity SDRAM Synchronous Dynamic Random Access Memory SLC Single Level Cell memory technology SoC System on Chip SPI Serial Peripheral Inte...

Page 31: ... Date Company 1 LS1028A LS1018A Data Sheet Rev C 06 2018 NXP 2 LS1027A LS1017A Data Sheet Rev C 06 2018 NXP 3 LS1028A Reference Manual Rev B 12 2018 NXP 4 QORIQPMWP QorIQ Power Management Rev 0 12 2014 NXP 5 Data Sheet SA56004X Rev 7 25 February 2013 NXP 6 MBLS1028A User s Manual current TQ Systems 7 TQMLS1028A Support Wiki current TQ Systems ...

Page 32: ...TQ Systems GmbH Mühlstraße 2 l Gut Delling l 82229 Seefeld Info TQ Group TQ Group ...

Reviews: