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41110461XXXX 

Rev 0.12 

January 16, 2017 

14 

Hardware Integration Guide 

Introduction 

Pad 

Name 

Direction 

Function 

BA13 

GND 

  

Primary Antenna Ground 

BB11 

GND 

  

Primary Antenna Ground 

BB12 

GND 

  

Primary Antenna Ground 

BA7 

GND 

  

Diversity Antenna Ground 

BA8 

DIVERSITY_ANT 

Input 

Diversity Antenna Interface 

BA9 

GND 

  

Diversity Antenna Ground 

BB7 

GND 

  

Diversity Antenna Ground 

BB8 

GND 

  

Diversity Antenna Ground 

1.3.4.1. 

WWAN Antenna Recommendations 

The table below defines the key characteristics to consider for antenna selection. 

Table 13. 

AirPrime AR758x Series WWAN Antenna Recommendations 

Parameter

 

Requirements

 

Comments

 

Antenna system

 

External multi-band 2x2 MIMO 
antenna system (Ant1/Ant2)

a

 

 

 

Operating bands of 
Ant1 and Ant2

b

 

698

–960 MHz 

1451

–1512 MHz 

1710

–1995 MHz 

2110

–2170 MHz 

2500

–2700 MHz 

Operating bands depend on module

’s 

supported bands/modes 

VSWR of Ant1 and 
Ant2

 

1:1 (ideal) 
< 2.5:1 (recommended)

 

On all bands including band edges

 

Total radiated 
efficiency of Ant1 or 
Ant2

 

> 50% on all bands

 

 

Measured at the RF connector.

 

  Includes mismatch losses, losses in the 

matching circuit, and antenna losses, 
excluding cable loss. 

  Sierra Wireless recommends using 

antenna efficiency as the primary 
parameter for evaluating the antenna 
system. 

Peak gain is not a good indication of 
antenna performance when integrated with 
a host device (the antenna does not 
provide omni-directional gain patterns). 
Peak gain can be affected by antenna size, 
location, design type, etc. 

— the antenna 

gain patterns remain fixed unless one or 
more of these parameters change.

 

Maximum antenna 
gain

 

Must not exceed antenna gains due to 
RF exposure and ERP/ EIRP limits, 
as listed in the module’s FCC grant.

 

 

 

Summary of Contents for AirPrime AR7582

Page 1: ...4111xxxx 0 2 July 6 2018 AirPrime AR7582 Hardware Integration Guide...

Page 2: ...terfere with various onboard systems Note Some airlines may permit the use of cellular phones while the aircraft is on the ground and the door is open Sierra Wireless modems may be used at this time T...

Page 3: ...T logos are registered trademarks of Sierra Wireless Inc or one of its subsidiaries Watcher is a registered trademark of Netgear Inc used under license Windows and Windows Vista are registered tradema...

Page 4: ...41110461XXXX Rev 0 12 January 16 2017 4 Hardware Integration Guide Document History Version Date Updates 0 1 May 12 2017 Creation 0 2 July 7 2018 Add one more compliance information in section 5...

Page 5: ...2 GNSS Antenna Interface 16 1 4 2 1 GNSS Antenna Recommendations 17 1 5 Electrical Specifications 17 1 5 1 Absolute Maximum Ratings 17 1 5 2 Digital IO Characteristics 17 2 AUDIO SPECIFICATION 20 2 1...

Page 6: ...41110461XXXX Rev 0 12 January 16 2017 6 Hardware Integration Guide 7 ABBREVIATIONS 30...

Page 7: ...Figure 1 AppCAD Screenshot for Microstrip Design Power Mode Diagram 21 Figure 2 RF Routing Examples 22 Figure 3 Coplanar Clearance Example 22 Figure 4 Antenna Microstrip Routing Example 23 Figure 5 Ai...

Page 8: ...LTE Bands 12 Table 11 Conducted RX Sensitivity 3GPP BW 10MHz LTE Bands1 4 13 Table 12 Conducted RX Sensitivity SISO BW 10MHz LTE Bands1 13 Table 13 WWAN Antenna Interface Pads 13 Table 14 AirPrime AR...

Page 9: ...GE 850 1900 North America Canada US Mexico 1 Other regions or operators which use the same frequency bands may also be supported subject to review and confirmation by Sierra Wireless Optional band 1 2...

Page 10: ...30 2 5dB GSM 850 27 3dB 27 4dB 27 2 5dB 27 3 5dB 8PSK mode connectorized Class E2 0 5 W 27 dBm EGSM 900 27 3dB 27 4dB 27 2 5dB 27 3 5dB GSM 1800 26 3dB 26 4dB 26 2 5dB 26 3 5dB 8PSK mode connectorize...

Page 11: ...23 5 2 2 2 7dB B6 24 1 7 3 7dB 23 5 2 2 2 7dB 23 5 2 2 2 7dB 1 Connectorized Class 3 2 Per 3GPP TS 34 121 1 Specification 3 Test at Class A extreme condition 1 3 2 2 WCDMA RX Sensitivity The WCDMA Rec...

Page 12: ...3 2 2dB Note 1 Note 1 The test configurations for all of the entries in the table above are per 3GPP specification Connectorized Class 3 Note 2 Per 3GPP TS 36 521 1 6 2 2 UE Maximum Output Power No MP...

Page 13: ...Note For the table below Sensitivity values scale with bandwidth x_MHz_Sensitivity 10 MHz_Sensitivity 10 log 10 MHz x_MHz 10 MHz BW and 50 RB DownLink and Up Link as 3GPP TS 36 521 1 Table 7 3 5 2 Al...

Page 14: ...51 1512 MHz 1710 1995 MHz 2110 2170 MHz 2500 2700 MHz Operating bands depend on module s supported bands modes VSWR of Ant1 and Ant2 1 1 ideal 2 5 1 recommended On all bands including band edges Total...

Page 15: ...missions limits when tested into a cabled conducted 50 system With antenna designs with up to 2 5 1 VSWR or worse the radiated emissions could exceed limits The antenna system may need to be tuned in...

Page 16: ...used for accuracy measurements simulate car travel including direction altitude and speed variations 4 The performance are obtained by using external Pre SAW and LNA for conducted test setup at Room...

Page 17: ...able 16 AirPrime AR758x Series Absolute Maximum Ratings Parameter Min Max Units VBATT Power Supply Input 4 5 V VIN Voltage on any digital input or output pin Vxx 20 V IIN Latch up current 100 100 mA E...

Page 18: ...6 V VIL Low level input voltage CMOS Schmitt 0 3 0 63 V VOH High level output voltage CMOS at pin rated drive strength 1 35 1 93 V VOL Low level output voltage CMOS at pin rated drive strength 0 0 45...

Page 19: ...up 2 A VOH High level output voltage CMOS at rated drive strength 1 4 1 93 V VOL Low level output voltage CMOS at rated drive strength 0 0 45 V Table 20 Digital IO Characteristics for UICC_VCC1 3V 2 8...

Page 20: ...I2 S I2S_WS I2 S Word Select DC2 PCM PCM_DOUT Output PCM Data Out Leave Open I2 S I2S_DOUT I2 S Data Out DD2 PCM PCM_DIN Input PCM Data In Leave Open I2 S I2S_DIN I2 S Data In DD3 PCM2 PCM_CLK Output...

Page 21: ...f the material used trace width W trace thickness T and height H between the trace and the reference ground plane In order to respect this constraint Sierra Wireless recommends that a MicroStrip struc...

Page 22: ...corners A smooth radius is recommended E g Use of 45 angles instead of 90 The ground reference plane should be a solid continuous plane under the trace The coplanar clearance G below from the trace t...

Page 23: ...l adjacent signals SuperSpeed USB adds two differential pairs SSRX SSRX and SSTX SSTX These pairs should be routed with the following considerations constraints 90 Ohm differential 15 trace impedance...

Page 24: ...le voltage translation This allows a host processor operating at a different voltage to communicate with the AirPrime AR758x Series using the appropriate voltage levels The figure below is a reference...

Page 25: ...TD SCDMA air interface protocols GNSS engine IMS protocol stack AT Command Processor New AT commands will be added by Sierra Wireless See document 8 for the complete list of AT Commands for AR758x AR8...

Page 26: ...pment In an aircraft the AirPrime AR7582 device MUST BE POWERED OFF Otherwise the AirPrime AR7582 device can transmit signals that could interfere with various onboard systems and may be dangerous to...

Page 27: ...849 3 7 2500 2570 5 12 699 716 3 13 777 787 3 17 704 716 3 UMTS 2 1850 1910 5 4 1710 1755 4 5 824 849 3 GPRS 2 1850 1910 5 5 824 849 3 EDGE 2 1850 1910 5 5 824 849 3 Collocated transmitters WLAN 2400...

Page 28: ...nt 5 4 1 Radiation Exposure Statement This equipment complies with Canada radiation exposure limits set forth for an uncontrolled environment This equipment should be installed and operated with minim...

Page 29: ...enters Forum 6 Universal Serial Bus Class Definitions for Communication Devices V1 1 USB Implementers Forum 7 AirPrime AR7 Series Customer Process Guidelines Sierra Wireless 8 AirPrime AR75xx AT Comma...

Page 30: ...mmunications HSPA High Speed Packet Access I2S Inter IC Sound LTE Long Term Evolution PCIe Peripheral Component Interconnect Express PCM Pulse Coded Modulation PMIC Power Management Integrated Circuit...

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