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Template Revision 2.6
- Module: TRM Name always "TE Series Name" +TRM
Example: "TE0728 TRM" - Carrier: TRM Name usually "TEB Series Name" +TRM
Example: "TEB0728 TRM"
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Important General Note:
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Note for Download Link of the Scroll ignore macro: |
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Table of Contents |
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The Trenz Electronic TEI0015 is an a commercial-grade, low cost and small size module integrated with Intel® MAX 10. Intel MAX 10 devices are the ideal solution for system management, I/O expansion, communication control planes, industrial, automotive, and consumer applications.
Refer to http://trenz.org/tei0015-info for the current online version of this manual and other available documentation.
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Intel® MAX 10 Commercial [10M08SAU169C8G]
SDRAM Memory up to
64Mb, 166MHz32 Mbyte (8Mbyte default)
USB 2.0
Dual High Speed USB to Multipurpose UART/FIFO IC
- Quad SPI Flash, 64Mb
- EEPROM Memory, 4Kb
8x User LED
USB port
(FT2232H)
- 4 Kbit EEPROM Memory for FTDI configuration data
- Micro USB Receptacle (communication and power)
SPI Flash - NOT INSTALLED (only special option)
- 8x User LED
- 18 Bit 2MSPS 18 Bit Analog to Digital Converter
2x SMA Female Connector
I/O interface: 23x GPIO - Arduino MKR compatible
Power Supply:
5V
Others:Dimension: 86.5mm x 25mm
Others:
Voltage Feedback Differential Amplifier
Operational Amplifier
Block Diagram
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Main Components
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Main Components
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Notes : - Picture of the PCB (top and bottom side) with labels of important components
- Add List below
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SMA Connector, J5...6
- Instrumentation
Amplifier, U12 - U14 - U6
- Series
Voltage Reference, U8
Analog to Digital
ConvertorConverter, U15
- U6Voltage Regulator, U10 - U13 - U16
- Buck
Switching Voltage Regulator/LDO, U11 - U4
SDRAM Memory, U2
- Intel® MAX 10 FPGA, U1SDRAM Memory, U2
SPI Flash Memory, U5
- Oscillator 12MHz
12.00 MHz MEMS oscillator, U7
FTDI
USB USB2 to JTAG/UART
convertoradapter, U3
User LEDs, D2...9
- 4Kb
FTDI configuration EEPROM, U9
Configuration/Status LED (Red) , D10
Power-on LED (Green), D1
- Switch
Push button, S1...2
Micro USB
portConnector, J9
1x14 pin header, J2 (Not assembled)
1x6 pin header, J4 (Not assembled)
1x4 Header, J3
Pin Holder (Not assembled)
1x14 pin header, J1
...4(Not assembled)
Initial Delivery State
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Notes : Only components like EEPROM, QSPI flash and DDR3 can be initialized by default at manufacture. If there is no components which might have initial data ( possible on carrier) you must keep the table empty |
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title | Initial delivery state of programmable devices on the module |
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Storage device name | Content | Notes |
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Quad SPI Flash | N/A | Not Programmedpopulated | I2C Configuration EEPROM | Programmed | FTDI configuration | SDRAM | Not Programmed |
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Configuration Signals
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- Overview of Boot Mode, Reset, Enables.
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The FPGA configuration for Intel MAX 10 FPGAs can be stored through JTAG interface either in external configuration device (QSPI flash memory U5) or (using a *.POF file) on the FPGA itself since the Intel MAX 10 FPGA offers non-volatile configuration memory on chip. The FPGA configuration is loaded from the non-volatile memory when the board is powered up. To configure the FPGA directly, the JTAG interface can be used to configure the FPGA volatile (using a *.SOF file), means the configuration is lost after power off.
Reset process must be done FPGA Reconfigration can be triggered by pressing push button S1.
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title | Reset process. |
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Signal | Push Button | Pin Header | Note |
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RESET | S1 | J2 | connected Connected to nCONFIG |
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Signals, Interfaces and Pins
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title | General I/Os to Pin Headers and connectors information |
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FPGA Bank | Connector Designator | I/O Signal Count | Voltage Level | Notes |
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Bank 1A | J1 | 7 | 3.3V | AIN0...6 | Bank 1B | J4 | 5 | 3.3V | JTAG interface | Bank 2 | J1 | 4 | 3.3V | DIO2...5 | Bank 5 | J2 | 9 | 3.3V | DIO6...14 | J1 | 2 | 3.3V | DIO0...1 | Bank 8 | J2 | 1 | 3.3V | RESET |
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title | FPGA I/O Banks |
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FPGA Bank | I/O Signal Count | Connected to | Notes |
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Bank 1A | 7 | FPGA Bank | I/O Signal Count | Connected to | Notes |
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Bank 1A | 7 |
1x14 Pin header, J1 | AIN0...6 |
1 | Jumper, J3 | AIN7 |
Bank 1B | 5 | 1x6 Pin header, J4 | JTAG_EN, TDI, TDO, TMS, TCK |
Bank 2
| 4 | 1x14 Pin header, J1 | D2...5 |
5 | A2D, U15 | ADC_EN, ADC_SDI, ADC_SDO, ADC_SCK, ADC_CNV |
1 | 12MHz Oscillator, U7 | CLK12M |
2 | Amplifier, U12 | nIAMP_A0, nIAMP_A1 |
Bank 3 | 22 | SDRAM, U2 | RAM_ADDR_CMD |
Bank 5 | 9 | 1x14 Pin header, J2 | DIO6...14 |
2 | 1x14 Pin header, J1 | DIO0...1 |
1 | D12_R | DIO12 |
Bank 6 | 16 | SDRAM, U2 | DQ0...15 |
2 | SDRAM, U2 | DQM0...1 |
1 | D11_R | DIO11 |
Bank 8
| 8 | User Red LEDs, D2...9 | LED0...7 |
6 | SPI Flash, U5 | F_CS, F_ |
CKCKL, F_DI, F_DO, nSTATUS, DEVCLRn |
1 | Red LED, D10 | CONF_DONE |
6 | FTDI JTAG/UART Adapter, U3 | BDBUS0...5 |
1 | Push Button, S2 | USER_BTN |
JTAG Interface
JTAG access to the TEI0015 SoM through pin header connector J4.
Micro-USB Connector
The Micro-USB connector J9 provides an interface to access the FIFO/UART and JTAG functions via FTDI FT2232 chip. The use of this feature requires that FTDI USB drivers are installed on your host PC.
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title | JTAG Micro USB-2 connector pins connection |
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JTAG Signal | Pin Header Connector | Note |
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VBUS | USB_VBUS |
| D+ | FTDI FT2232H U3, DP pin |
| D- | FTDI FT2232H U3, DM pin |
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JTAG Interface
JTAG access to the TEI0015 SoM through pin header connector J4. This is normally not needed as there is on-board USB JTAG functionality.
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title | JTAG pins connection |
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JTAG Signal | Pin Header Connector | Note |
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TMS | J4-6 |
| TDI | J4-5 |
| TDO | J4-4 |
| TCK | J4-3 |
| JTAG_ | TMS | J4-6 | TDI | J4-5 | TDO | J4-4 | TCK | J4-3 | JTAG_EN | J4-2 | Pulled-up to 3.3V |
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On-board Peripherals
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Notes : - add subsection for every component which is important for design, for example:
- Two 100 Mbit Ethernet Transciever PHY
- USB PHY
- Programmable Clock Generator
- Oscillators
- eMMCs
- RTC
- FTDI
- ...
- DIP-Switches
- Buttons
- LEDs
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title | On board peripherals |
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SDRAM
TEI0015 is equipped with a Winbond 64 MBit (8 MByte) SDRAM chip in standard configuration, variants with 256 Mbit (32 MByte) memory density are also available. The SDRAM chip is connected to the FPGA bank 3 and 6 via 16-bit memory interface with 166MHz clock frequency and CL3 CAS latency.
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title | SDRAM interface IOs and pins |
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SDRAM I/O Signals | Signal Schematic Name | Connected to | Notes |
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Address inputs | A0 ... A13 | bank 3 | - | Bank address inputs | BA0 / BA1 | bank 3 | - | Data input/output | DQ0 ... DQ15 | bank 6 | - | Data mask | DQM0 ... DQM1 | bank 6 | - | Clock | CLK | bank 3 | - | Control Signals | CS | bank 3 | Chip select | CKE | bank 3 | Clock enable | RAS | bank 3 | Row Address Strobe | CAS | bank 3 | Column Address Strobe | WE | bank 3 | Write Enable |
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FTDI FT2232H
The FTDI chip U3 converts signals from USB2 to a variety of standard serial and parallel interfaces. Refer to the FTDI data sheet to get information about the capacity features of the FT2232H chip.
FTDI FT2232H chip channel A is used in MPPSE mode for JTAG, 6 I/O's of . Channel B are routed to FPGA bank 8 of the FPGA SoC and are usable for example as GPIOs, UART or other standard interfacesis configured to be used in async FIFO mode, this is default mode when using preprogrammed FTDI configuration. In this mode the communication from host PC looks like normal UART but from the FTDI side it is 8 bit FIFO style interface.
The configuration of FTDI FT2232H chip is pre-programmed on in the EEPROM U9.
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title | FTDI chip interfaces and pins |
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FTDI Chip U3 Pin | Signal Schematic Name | Connected to | Notes |
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ADBUS0 | TCK | FPGA bank 1B, pin G2 | JTAG interface | ADBUS1 | TDI | FPGA bank 1B, pin F5 | ADBUS2 | TDO | FPGA bank 1B, pin F6 | ADBUS3 | TMS | FPGA bank 1B, pin G1 | BDBUS0 | BDBUS0 | FPGA bank 8, pin A4 | user User configurable | BDBUS1 | BDBUS1 | FPGA bank 8, pin B4 | user User configurable | BDBUS2 | BDBUS2 | FPGA bank 8, pin B5 | User configurable | BDBUS3 | BDBUS3 | FPGA bank 8, pin A6 | User configurable | BDBUS4 | BDBUS4 | FPGA bank 8, pin B5 | user configurable | BDBUS3 | BDBUS3 | FPGA bank 8, pin A6 | user configurable | BDBUS4 | BDBUS4 | FPGA bank 8, pin B6 | user configurable | BDBUS5 | BDBUS5 | FPGA bank 8, pin A7 | user configurable |
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SPI Flash Memory
, pin B6 | User configurable | BDBUS5 | BDBUS5 | FPGA bank 8, pin A7 | User configurable | BDBUS6 | BDBUS6 | FPGA bank 6, pin C11 |
| BDBUS7 | BDBUS7 | FPGA bank 3, pin J7 |
| BCBUS0 | BCBUS0 | FPGA bank 5, pin J9 |
| BCBUS1 | BCBUS1 | FPGA bank 3, pin K5 |
| BCBUS2 | BCBUS2 | FPGA bank 3, pin L4 |
| BCBUS3 | BCBUS3 | FPGA bank 3, pin L5 |
| BCBUS4 | BCBUS4 | FPGA bank 3, pin N12 |
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SPI Flash
Optional SPI flash device maybe assembled in custom variants, normally it is not populatedOn-board serial configuration memory (U5) is provided by Winbond with 64 MBit (8 MByte) storage capacity. This non volatile memory is used to store initial FPGA configuration via JTAG interface. The memory is connected to FPGA bank 8 via SPI interface.
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title | Quad SPI Flash memory interface |
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Signal Schematic Name | Connected to | Notes |
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F_CS | FPGA bank 8, pin B3 | chip Chip select | F_CLK | FPGA bank 8, pin A3 | clockClock | F_DI | FPGA bank 8, pin A2 | data Data in / out | nSTATUS | FPGA bank 8, pin C4 | data Data in / out, configuration dual-purpose pin of FPGA | DEVCLRN | FPGA bank 8, pin B9 | data Data in / out, configuration dual-purpose pin of FPGA | F_DO | FPGA bank 8, pin B2 | data Data in / out |
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EEPROM
The configuration of FTDI FT2232H chip is pre-programmed on in the EEPROM U9.
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title | I2C EEPROM interface MIOs and pins |
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Schematic | Connected to | Notes |
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EECS | FTDI U3, Pin EECS |
| EECLK | FTDI U3, Pin EECLK |
| EEDATA | FTDI U3, Pin EEDATA |
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ADC
The TEI0015 board is equipped with the Analog Devices AD4003BCPZ, Devices AD4003BCPZ-RL7 18-bit A2D converter (2MSPS ADC).
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title | A2D converter interface and pins |
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Pins | Connected to | Notes |
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IN+ | Diff Amplifier U14, VOUT- |
| IN- | Diff Amplifier U14, VOUT+ |
| SDI | Bank 2FPGA, bank 2, pin M2, ADC_SDI |
| SDOBank | 2, ADCFPGA, bank 2, pin M1, ADC_SDO |
| SCKBank | 2, ADCFPGA, bank 2, pin N3, ADC_SCK |
| CNV | Bank 2FPGA, bank 2, pin N2, ADC_CNV |
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LEDs
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title | On-board LEDs |
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Designator | Color | Connected to | Active Level | Note |
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D2...9 | Red | LED1...8 | Active High | User LEDs | D10 | Red | CONF_DONE | Active Low | Configuration DONE LED | D1 | Green | 3.3V Power Rail | Active High | After power on it will be on |
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Micro-USB2 Connector
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| 3.3V | Active High | After power on it will be on. |
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Push Bottuns
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title | Micro USB-2 connector pinsOn-board Push Buttons |
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PinsDesignator | Connected to | Functionality | Note |
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VBUSUSB_VBUS | It is connected to GND | D+ | FTDI U3, DP pin | D- | RESET | General reset |
| S2 | USER_BTN | User push button | Connected to FPGA Bank 8. | FTDI U3, DM pin
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Clock Sources
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title | Osillators |
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Clock Source | Schematic Name | Frequency | Note |
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Microchip MEMS Oscillator, U7 | CLK12M | 12.00 MHz | Connected to FTDI FT2232 U3, pin 3. Connected to FPGA SoC bank 2, pin H6. |
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Power and Power-On Sequence
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In 'Power and Power-on Sequence' section there are three important digrams which must be drawn: - Power on-sequence
- Power distribution
- Voltage monitoring circuit
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Power Supply
To power-up the module, power supply with minimum current capability of 1A is recommendedThe module is power supplied from USB (optionally via unpopulated pin header).
Power Consumption
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title | Power Consumption |
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FPGA | Typical Current |
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Intel MAX 10 10M08 FPGA SoCFPGA | TBD* |
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* TBD - To Be Determined
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title | Power Distribution |
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diagramDisplayNamediagramName | TEI0015_PWR_P |
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diagramDisplayNamediagramName | TEI0015_PWR_PD |
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Power-On Sequence
There is no specific or special power-on sequence, just one single power source is needed. After power on the Green green LED (D1) must will be on.
Power Rails
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title | Module power rails. |
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Power Rail Name | Connector J2 Pin | Connector J9 Pin |
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Connector Designator | VCC / VCCIO Schematic Name | VoltageVIN5V | InputInput | 5 V - Pin Header | 3.3V | 3.3V5VJ95V | Input | - | J9-1 | Input | 5 V - USB Connector |
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Bank Voltages
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anchor | Table_PWR_BV |
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title | Zynq Intel MAX 10 SoC bank voltages. |
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| Schematic Name | | Notes |
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Bank 1A | VCCIO1A | 3.3V |
| Bank 1B | VCCIO1B | 3.3V |
| Bank 2 | VCCIO2 | 3.3V |
| Bank 3 | VCCIO3 | 3.3V |
| Bank 5 | VCCIO5 | 3.3V |
| Bank 6 | VCCIO6 | 3.3V |
| Bank 8 | VCCIO8 | 3.3V |
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title | PS absolute Absolute maximum ratings |
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Symbols | Description | Min | Max | Unit | Reference Document |
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VIN supply voltage (5.0V nominal)VIN | Supply voltage | 4.75 | 5.25 | V |
I/O Input voltage for FPGA I/O bank | -0.5 | 4.12 | V | Intel MAX 10 datasheet | Voltage on ADC IC U15 pins | -5.0 | 5.0 | V | AD4003BCPZ datasheet | Analog reference voltage on IC U15 | 5.0 | 5.0 | V | AD4003BCPZ datasheet | Storage Temperature | -40
| CH1-, CH1+ | Analog input voltage on amplifier U12 pin 1, 10 | -30 | 30 | V | AD8251 datasheet | T_STG | Storage Temperature | -25 | +85 | °C |
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Recommended Operating Conditions
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title | Recommended operating conditions. |
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Symbols | Min | Max | Unit | Reference Document |
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VIN supply voltage | (5.0V nominal)4.75 | 5.25 | V | I/O Input voltage for FPGA I/O bank | -0.5 | 4.12 | V | Intel MAX 10 datasheet | Voltage on ADC IC U15 pins | -0.1 | 5.1 | V | AD4003BCPZ datasheet | Analog reference voltage on IC U15 | 5.0 | 5.0 | V | AD4003BCPZ datasheet | Storage Temperature(5.0V nominal) | 4.75 | 5.25 | V |
| Analog input voltage on amplifier U12 pin 1 (CH1-), 10 (CH1+) | -10 | 10 | V | AD8251 datasheet | T_OP | 0 | +70 | °C | W9864G6JT-6 datasheet |
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Physical Dimensions
Module size: 25 mm × 86.5 mm × 25 mm. Please download the assembly diagram for exact numbers.
PCB thickness: 1.65 22 mm.
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In 'Physical Dimension' section, top and button view of moduloe must be insterted, information regarding physical dimention can be obtained through webpage for product in Shop.Trenz, (Download> Documents> Assembly part)for every SoM. For Example: for Module TE0728, Physical Dimension information can be captured by snipping tools from the link below: https://www.trenz-electronic.de/fileadmin/docs/Trenz_Electronic/Modules_and_Module_Carriers/5.2x7.6/TE0745/REV02/Documents/AD-TE0745-02-30-1I.PDF
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Scroll Title |
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anchor | Figure_TS_PD |
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title | Physical Dimension |
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Scroll Ignore |
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draw.io Diagram |
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border | false |
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viewerToolbar | true |
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fitWindow | false | diagramDisplayName |
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lbox | true |
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| false | revision | 1 |
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diagramName | TEI0015_TS_PD |
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simpleViewer | false | width |
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links | auto |
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tbstyle | hidden |
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lbox | true |
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diagramWidth | 641 |
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revision | 1 |
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Scroll Only |
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scroll-pdf | true |
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scroll-office | true |
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scroll-chm | true |
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scroll-docbook | true |
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scroll-eclipsehelp | true |
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scroll-epub | true |
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scroll-html | true |
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Scroll Title |
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anchor | Table_VCP_SO |
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title | Trenz Electronic Shop Overview |
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Scroll Table Layout |
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orientation | portrait |
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sortDirection | ASC |
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repeatTableHeaders | default |
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sortByColumn | 1 |
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sortEnabled | false |
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cellHighlighting | true |
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Revision History
Hardware Revision History
Scroll Title |
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anchor | Table_VCPRH_SOHRH |
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title | Trenz Electronic Shop Overview Hardware Revision History |
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Scroll Table Layout |
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orientation | portrait |
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sortDirection | ASC |
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repeatTableHeaders | default | style | widths |
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sortByColumn | 1 |
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sortEnabled | false |
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cellHighlighting | true |
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Trenz shop TE0728 overview page |
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English page | German page |
Revision History
Hardware Revision History
List of online PCN ...Link
| sortByColumn | 1 |
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sortEnabled | false |
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cellHighlighting | true |
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Date | Revision | Changes | Documentation Link |
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2019-02-11 | 01 | - | REV01 |
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Hardware revision number can be found on the PCB board together with the module model number separated by the dash.
Scroll Title |
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anchor | Figure_RV_HRN |
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title | Board hardware revision number. |
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Scroll Ignore |
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draw.io Diagram |
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border | false |
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viewerToolbar | true |
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fitWindow | false |
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diagramName | TEI0015_RH_RHN |
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simpleViewer | false |
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links | auto |
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tbstyle | hidden |
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lbox | true |
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diagramWidth | 158 |
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revision | 2 |
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Scroll Only |
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scroll-pdf | true |
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scroll-office | true |
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scroll-chm | true |
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scroll-docbook | true |
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scroll-eclipsehelp | true |
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scroll-epub | true |
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scroll-html | true |
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| Image Added |
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Scroll Title |
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anchor | Table_RH_HRH |
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title | Hardware Revision History |
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Scroll Table Layout |
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orientation | portrait |
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sortDirection | ASC |
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repeatTableHeaders | default |
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style | widths | sortByColumn | 1 |
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sortEnabled | false |
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cellHighlighting | true |
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Date | Revision | Changes |
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2019-02-06 | 01 | -
Document Change History
Page properties |
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- Note this list must be only updated, if the document is online on public doc!
- It's semi automatically, so do following
Add new row below first Copy "Page Information Macro(date)" Macro-Preview, Metadata Version number, Author Name and description to the empty row. Important Revision number must be the same as the Wiki document revision number Update Metadata = "Page Information Macro (current-version)" Preview+1 and add Author and change description. --> this point is will be deleted on newer pdf export template - Metadata is only used of compatibility of older exports
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Scroll Title |
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anchor | Table_RH_DCH |
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title | Document change history. |
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Scroll Table Layout |
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orientation | portrait |
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sortDirection | ASC |
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repeatTableHeaders | default | style |
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widths | sortByColumn | 1 |
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sortEnabled | false |
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cellHighlighting | true |
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Date | Revision | Contributor | Description |
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Page info |
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infoType | Modified date |
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dateFormat | yyyy-MM-dd |
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type | Flat |
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| Page info |
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infoType | Current version |
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prefix | v. |
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type | Flat |
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showVersions | false |
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| Page info |
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infoType | Modified by |
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type | Flat |
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showVersions | false |
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change list | | | v.98 | ED | | -- | all | Page info |
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infoType | Modified users |
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type | Flat |
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showVersions | false |
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...