BT800-ST-01-T/R

BT800-ST-01-T/R Datasheet


BT800-ST

Part Datasheet
BT800-ST-01-T/R BT800-ST-01-T/R BT800-ST-01-T/R (pdf)
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Bluetooth v4.0 Dual-Mode USB HCI Module

Hardware Integration Guide

Version

BT800-ST

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BT800-ST Hardware Integration Guide

Version

Date 04 Sept 2013 30 Sept 2014 07 Oct 2014 14 Oct 2014 03 Dec 2014 02 July 2015

Changes Initial Release Preliminary ST HIG Updated certification information FCC, IC, CE, BT SIG Updated Declaration of Conformity Removed X +/-1.3mm references Updated the Power Control and Regulation section. Added Tape/Reel T/R information

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BT800-ST Hardware Integration Guide

Version

CONTENTS
1 2 Operational Description 3 Block Diagram and Descriptions 4 Specifications 5 Pin 6 DC Electrical 7 RF Characteristics 8 Interface
PIO WLAN Coexistence Interface USB Interface PCM Interface GCI Interface Slots and Sample PCM Timing Information PCM Slave Timing PCM Slave Mode Timing Parameters PCM_CLK and PCM_SYNC Generation PCM Configuration Digital Audio Interface 9 Power Control and Regulation USB Linear High-voltage Linear Regulator Voltage Regulator Enable and Reset Power 10 Antenna Performance on BT800 11 Mechanical Dimensions and Land BT800 Mechanical BT800-ST Mechanical Drawing 12 Implementation Note PCB Layout on Host PCB 13 Application Note for Surface Mount Modules Introduction Shipping Tray Reflow Parameters Tape/Reel T/R 14 FCC and IC Regulatory Documentation Requirements 15 European Union Regulatory EU Declarations of Conformity BT800 / BT800-ST / 16 Ordering General Comments 17 Bluetooth SIG Approvals Application Note Subsystem Combinations Additional Assistance

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BT800-ST Hardware Integration Guide

Version
1 SCOPE

This document describes key hardware aspects of the Laird BT800 Bluetooth HCI/HID module. This document is intended to assist device manufacturers and related parties with the integration of this module into their host devices. Data in this document are drawn from a number of sources including data sheets for the CSR8510.
2 OPERATIONAL DESCRIPTION

The BT800 series of USB HCI devices are designed to meet the needs of OEMs adding robust Bluetooth connectivity and using embedded Bluetooth stacks within these products.

Leveraging the market-leading CSR8510 chipset, the BT800 series provides exceptionally low power consumption with outstanding range. Supporting the latest Bluetooth v4.0 Specification with EDR Enhanced Data Rate , the Laird BT800 series enables OEMs to accelerate their development time for leveraging either Classic Bluetooth or Bluetooth Low Energy BLE into their operating system based devices.

BT800 module

With a tiny footprint as small as x 13 mm, yet output power at 8 dBm, these modules are ideal for applications where designers need high performance in minimal size. For maximum flexibility in systems integration, the modules are designed to support a full speed USB interface plus GPIO and additionally I2S and PCM audio interfaces.

BT820 USB dongle

These modules present an HCI interface and have native support for Windows and Linux Bluetooth software stacks. All BT800 series devices are fully qualified as Bluetooth Controller Subsystem products. This also allows designers to integrate their existing pre-approved Bluetooth Host and Profile subsystem stacks to gain a Bluetooth END product approval for their products.

The BT800 series is engineered to provide excellent RF performance with integrated antenna and additional band pass filters. It further reduces regulatory and testing requirements for OEMs and ensures a hassle free development cycle. As an additional benefit of the BT800 series, Laird has implemented CSR’s HID Human Interface Device Proxy Mode enabling out of the box HID connectivity for pointing devices and / or keyboard functionality, requiring zero host device software or configuration.

A fully featured, low-cost developer’s kit is available for prototyping, debug, and integration testing of the BT800 series modules and further reduces risk and time in development cycles.

Note Laird also offers a BT800-ST version which is a trace pin variant of the BT800 for use with an external antenna.
• Bluetooth v4.0 - Dual mode Classic Bluetooth and BLE
• Compact footprint
• 2-wire and 3-wire Wi-Fi coexistence scheme
• High antenna radiation gain and efficiency
• Good interference rejection for multi-com system GSM/WCDMA
• Class 1 output 8 dBm
• USB, GPIO, I2S, and PCM
• Industrial Temperature Range
• 64 k EEPROM support for HID Proxy mode
• Bluetooth Controller subsystem
• FCC, IC, CE, and MIC approvals

Application Areas
• Medical devices
• ePOS terminals
• Barcode scanners
• Industrial Cable Replacement
• M2M Connectivity
• Automotive Diagnostic Equipment
• Personal Digital Assistants PDA
• Bluetooth HID device keyboard, mouse,
joystick

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BT800-ST Hardware Integration Guide

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3 BLOCK DIAGRAM AND DESCRIPTIONS

Figure 1 BT800 module block diagram

CS8510A10 Main chip

The BT800 is based on CSR8510A10 dual mode chip. The chip is a single-chip radio with on-chip LDO regulators and baseband IC for Bluetooth GHz systems including EDR to 3 Mbps. Dedicated signal and baseband processing is included for full Bluetooth operation. The chip provides SPI/PCM and USB interfaces. Up to four general purpose I/Os are available for general use such as Wi-Fi coexistence or general indicators.

Antenna Options Band Pass Filter EEPROM

Crystal

Note The purpose of the SPI interface is to access the module’s inner settings such as selecting different WLAN CO-EXIST scheme and enabling HID proxy mode. The SPI interface can also be used to put the module in RF test mode. You cannot use the module over the SPI interface for normal operation as the main host interface.

BT800 The antenna is a ceramic monopole chip antenna. BT800-ST A trace pin variant of the BT800 for use with an external antenna.

The band pass filter filters the out-of-band emissions from the transmitter to meet the specific regulations for type approvals of various countries.

There are 64 k bits EEPROM embedded on the BT800 module which can be used to store customizable parameters, such as maximum TX power, PCM configuration, USB product ID, USB vendor ID, and USB product description. With that, the BT800 module can support HID/HCI Proxy mode.

The embedded 26 MHz crystal is used for generating the clock for the entire module.

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16 ORDERING INFORMATION

Part Number BT800

BT800-ST

BT800-ST-01-T/R BT820 DVK-BT800

BTv4.0 Dual Mode USB HCI Module BTv4.0 Dual Mode USB HCI Module- A trace pin variant of the BT800 for use with an external antenna. BT800-ST with Tape/Reel T/R BTv4.0 Dual Mode USB Dongle Development Kit for BT800 Module

General Comments

This is a preliminary datasheet. Please check with Laird for the latest information before commencing a design. If in doubt, ask.
17 BLUETOOTH SIG APPROVALS

Application Note Subsystem Combinations

This application note covers the procedure for generating a new Declaration ID for a Subsystem combination on the Bluetooth SIG website. In the instance of subsystems, a member can combine two or more subsystems to create a complete Bluetooth End Product solution.

Subsystem listings referenced as an example:

Design Name BT800-SA

BT800-ST

Windows 8 Host Subsystem

Owner Laird

Laird

Microsoft Corporation

Declaration ID

Link to listing on the SIG website

B021369

B021369

B012854

Laird Customer Declaration ID Procedure

This procedure assumes that the member is simply combining two subsystems to create a new design, without any modification to the existing, qualified subsystems. This is achieved by using the Listing interface on the Bluetooth SIG website. Figure 25 shows the basic subsystem combination of a controller and host subsystem. The Controller provides the RF/BB/LM and HCI layers, with the Host providing L2CAP, SDP, GAP, RFCOMM/SPP and any other specific protocols and profiles existing in the Host subsystem listing. The design may also include a Profile Subsystem.

The controller provides the RF/BB/LM and HCI layers, with the Host providing L2CAP, SDP, GAP, RFCOMM/SPP and any other specific protocols and profiles existing in the Host subsystem listing. The design may also include a Profile Subsystem.

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BT800-ST Hardware Integration Guide

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Figure 25 Basic subsystem combination of a controller and host subsystem

The Qualification Process requires each company to registered as a member of the Bluetooth SIG

The following link provides a link to the Bluetooth Registration page:

For each Bluetooth Design it is necessary to purchase a Declaration ID. This can be done before starting the new qualification, either through invoicing or credit card payment. The fees for the Declaration ID will depend on your membership status, please refer to the following webpage:

For a detailed procedure of how to obtain a new Declaration ID for your design, please refer to the following SIG document:

To start the listing, go to:

In step 1, select the option, Reference a Qualified Design and enter the Declaration IDs of each subsystem used in the End Product design. You can then select your pre-paid Declaration ID from the drop down menu or go to the Purchase Declaration ID page, please note that unless the Declaration ID is pre-paid or purchased with a credit card, it will not be possible to proceed until the SIG invoice is paid.

Once all the relevant sections of step 1 are finished, complete steps 2, 3, and 4 as described in the help document. Your new Design will be listed on the SIG website and you can print your Certificate and DoC.

For further information please refer to the following training material:

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Notice: we do not provide any warranties that information, datasheets, application notes, circuit diagrams, or software stored on this website are up-to-date or error free. The archived BT800-ST-01-T/R Datasheet file may be downloaded here without warranties.

Datasheet ID: BT800-ST-01-T/R 644915