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ERMINAL OR THER OOL ON 4.3. P ............................................................32 OWER UPPLY 5. DETAILED FUNCTIONAL INTRODUCTION OF GE2015 AND MODULE ................................. 33 5.1. P ............................................................33 OWER UPPLY 5.1.1. Direct Power Supply ........................................................ 33 5.1.2. Adapter Power Supply ......................................................34 5.1.3. USB Power Supply ........................................................34 5.1.4.
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Figure 3–2 GE2015 mother board and GE2015_SB_B interface board connection ..........................15 Figure 3–3 default jumper connection of GE2015_SB_B interface board when used together with GE2015 ..................16 Figure 3–4 default jumper connection of GE2015_SB_B interface board when used alone ........................17 Figure 3–5 GE2015_SB_B and Identifying ........................................
EVELOPMENT The GE2015 Dev Board provides a complete solution based on the data functions of the CDMA, GSM, WCDMA and LTE modules for debugging and testing. With an extra interface board, the Dev Board not only educes all module function pins (such as power supply, UART, USB and so on), but also adds right amount of testing points to provide all kinds of simple and convenient interfaces for users.
GE2015 Dev Board User Guide 1.3. M GE2015 ODULES UPPORT BY Modules list supported by GE2015 Dev Board is shown in Table 1-1. Table 1–1 Module list supported by GE2015 Dev Board Support Modules Corresponding Interface board ME3620 ME3630_GE2015_SB_B ME3630...
Analog audio interface ADC interface Interface board 5VUSB power AP wake-up module button Figure 2–2 The GE2015 Dev Board and Identifying Interface between GE2015 baseboard and interface board Interface between GE2015 baseboard and interface board Interface between GE2015 baseboard and interface board...
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For module wake-up, when press this button (rising edge) wakeup module; when release this button (falling edge) the module can enter sleep. Interface between GE2015 baseboard Interface between GE2015 debug board and interface board and interface board (X14) Interface between GE2015 baseboard...
Dev Board User Guide The connection between interface board GE2015_SB_B and GE2015 will need the following 4 jumpers, defaulted as USB connection on GE2015 (X6 and X7 on interface board share the same as the jumper 1 and 2 connection in the figure below): Figure 3–3 default jumper connection of GE2015_SB_B interface board when used together with GE2015...
Jumper (X6、X7) When select the USB interface of GE2015 for power supply, you need to connect Jumper TP4, and locate X6&X7 to the left as shown in the left figure below(connect the X3 USB interface of GE2015 to PC to enumerate the USB port)
Dev Board User Guide Figure 3–8 default jumper connection of GE2015_SB_ME3630PCIE interface board when used together with GE2015 When only used the GE2015_SB_ME3630PCIE interface board and use USB to supply power, the default jumper connection is shown in the figure below. The maximum current provided by USB interface is 500mA.
USB, can provide power supply or download function. Can select the USB on GE2015_SB_ME3630PCIE interface board via jumper or the USB on main board. DC power test hole, can choose external DC power supply by jumper TP6 or from GE2015 directly. ...
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TP6 in right select USB for power supply; USB POWER SUPPLY select: Jumper (X6、X7) 1. When select the USB interface of GE2015 fore power supply, you need to connect Jumper TP6, and locate X6&X7 to the left as shown in the left figure below Mode 1 Mode 2 2.
EVICE ONNECTION 1) Connect antenna tieline to module RF interface. 2) Mount module or transfer board on GE2015. 3) Insert SIM card. 4) Make sure adapter and external DC power source are on the DC power supply unit. 5) Make sure jumpers are connected as the connection of defaulted antenna caps in the figure below.
6) Input AT+CSQ, will return +CSQ: 31, 99 OK. 7) GE2015 and module are in normal operating status. Note: Before you connect the DVK to you PC through USB/UART, Please make sure that the driver of module has been installed.
5. D GE2015 ETAILED UNCTIONAL NTRODUCTION OF ODULE This chapter is the detailed functional introduction of GE2015 and module. 5.1. P OWER UPPLY Three ways of power supply are available for GE2015. 1) Connect external 3.8V direct power supply. 2) By 5V power adapter and embedded DC/DC circuit to generate 3.8V power for module.
NTERFACE When connect the jumper TP3, GE2015 can transfer the signal from UART1 to USB-UART1 via chip FT232, then TXD/RXD/CTS/RTS signal can be transferred to module’s UART1. When USB starts to receive or send data, TXLED1 and RXLED1 will blink.
NTERFACE When connect the jumper TP4&TP24, GE2015 can transfer the signal from UART2 to USB-UART2 via chip FT232, then TXD/RXD/ signal can be transferred to module’s UART2. When USB starts to receive or send data, TXLED2 and RXLED2 will blink.
Jumper TP10 and TP11 are used for the connectivity between VCCIO level of SPI and 3.3V level. Jumper TP12 is used to connect SPI of module with the level conversion element on GE2015 through I2C/SPI to UART chip of XR20M1170, then the signal connect to the SPI_RS232 interface at location X12.
Dev Board User Guide 5.5. C ONTROL AND NDICATION NTERFACES The control and indication interfaces on GE2015 contain 3 control buttons (power-on, reset and wake-up) and 4 indicator lights (MODULE_READ, AP_WAKEUP_MODULE, MODULE_WAKEUP_AP, and MODULE_POWERON) 5.5.1. C ONTROL UTTON 1 Power-on Button S2 is the PWR_ON button, low level active.
IGHT There are 4 indicator lights on GE2015, the location of them are shown in the right figure below AP_W_MD: the interrupt signal for AP to wake up module, when the LED state change from on to off, it will send a sleep signal to module, or it will send a wakeup signal to module.
NOT SUPPORT CURRENTLY GE2015 has 1 SDIO interface circuit to connect with SD card or the interface board of SDIO. This circuit interface includes 1 3V LDO to supply power on SDIO interface of T card. The connection with jumper TP14(shown in the right figure below) can activate this LDO.
NTERFACE OARD The connection between GE2015 and GE2015_SB interface board can be done by two 2*20 sockets (X14, X11) and one 2*4 socket (X13). All interface signals are transferred to GE2015 for debugging. Note: please pay attention to the connection direction of GE2015_SB interface board.
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