Insight SiP ISP091201 Bluetooth Low Energy Module User Manual DS091201R12x
Insight SiP Bluetooth Low Energy Module DS091201R12x
User manual
Data Sheet ISP091201 Bluetooth Low Energy Module with Integrated Antenna Key Features • • • • • • • • • • • • • Single Mode Bluetooth Low Energy v4.0 Slave Based on Nordic Semiconductor family of uBlue products Includes transceiver, baseband and software stack Ultra Low Power Consumption Single 1.9 to 3.6 V supply Temperature -40 to 85 °C Fully integrated RF matching and Antenna Integrated 16 MHz Crystal Clock FCC Limited Modular Certification 15.212 FCC #2AAQS-ISP091201 CE # xxxxxx IC # 11306A-ISP091201 TELEC # xxxxxx Blue Tooth SIG certified # xxxxxx * See Product Marking section for up to date module marking Applications • • • • • • Space constrained Bluetooth Low Energy Slave Devices Sport and fitness sensors Health care sensors Out of Range (OOR) sensors Personal User Interface Devices (PUID) Remote controls Description This module is based on Nordic Semiconductor nRF8001 uBlue Bluetooth Low Energy Platform. The nRF8001 is a single chip transceiver with an embedded baseband protocol engine, suitable for ultra low power wireless applications conforming to the Bluetooth Low Energy Specification contained within v4.0 of the overall Bluetooth specification. The nRF8001D, used in the current revision of ISP091201, is a production product using a RoM for the baseband protocol engine. Printed : 1 August 2013 Data Sheet Ref : DS091201R12 1/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet The uBlue transceiver is specifically designed for both PC peripherals and ultra low power applications such as sports and wellness sensors. For sensor applications, the ultra low power consumption and advanced power management enables battery lifetimes up to several years on a coin cell battery. The ISP091201 module size measures 8 x 12 x 1.5 mm. The module integrates all the decoupling capacitors, the 16 MHz crystal and load capacitors plus the RF matching circuit and antenna in addition to the transceiver. As the module has several end applications, the antenna was designed to be compatible with several ground plane sizes including that of a USB dongle and a cell phone. The module can operate as a standalone Bluetooth sensor node with the addition of a transducer, a small external microprocessor to run application software, a 32 kHz crystal and a DC power source. Functional Block Diagram The module high level block diagram is shown in Figure 1 below. ISP091201 nRF8001 uBlue BLE radio signal SPI Bus •MOSI •MISO •CSN •SCK Configurable I/O system Reset nRF8001 UART RF test mode •TXD •RXD Digital Handshake •ACTIVE •RDY •REQN 32 kHz XO 16 MHz Xtal caps 16 MHz XO Custom Low Power Microcontroller Flash Memory Ultra low power 2.4 GHz Transceiver RF Matching Network Advanced Power Management Power Supply decoupling RF Antenna VCC 32 kHz Xtal Figure 1 : Functional block of the ISP091201 Printed : 1 August 2013 Data Sheet Ref : DS091201R12 2/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet Pin Assignment Pin Name Pin function Description 1–5 NC OUT_ANT Not Connected Antenna In/Out OUT_MOD Module In/Out 10 11 GND NC MOSI DCC Ground Not Connected Digital input PWM driver Isolated pad on application PCB for mechanical stability This pin is connected to the internal antenna. It should be connected to Pin 7 OUT_MOD for normal operation. During certification the pin may be connected to an RF connector for antenna measurement This pin is the RF I/O pin of the BLE module. It should be connected to Pin 6 OUT_ANT for normal operation. During certification the pin may be connected via to an RF connector for module measurement using a Bluetooth test setup. Should be connected to ground plane on application PCB Isolated pad on application PCB for mechanical stability ACI Master Out Slave In 12 13 AVDD VCC_nRF Power Power 14 15 GND XL2 Ground Analog output 16 XL1 Analog output 17 18 ACTIVE TXD Digital output Digital output 19 20 SCK RXD Digital input Digital output 21 22 23 24 25 26-36 REQN MISO GND RDYN RESET NC Digital input Digital output Ground Digital output Digital Input Not Connected PWM driver for the external LC filter if the DC/DC converter is enabled. If the DC/DC converter is disabled this pin shall be not connected Analog power supply (1.9 – 3.6V DC) Power supply (1.9 – 3.6V) Supplies the DC/DC converter and GPIOs. VDD in nRF8001 doc. Should be connected to ground plane on application PCB Connect to external 32.768kHz crystal oscillator (if internal RC oscillator is enabled then leave not connected) Connect to external 32.768kHz crystal oscillator (if internal RC oscillator is enabled then leave not connected) Device RF front end activity indicator UART (transmit) for Bluetooth low energy Direct Test Mode ACI clock input UART (receive) for Bluetooth low energy Direct Test Mode ACI request pin (handshaking, active low) ACI Master In Slave Out Should be connected to ground plane on application PCB ACI device ready indication (handshaking) Reset (Active Low) Isolated pad on PCB for mechanical stability Printed : 1 August 2013 Data Sheet Ref : DS091201R12 3/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet Figure 2 : ISP091201 pin assignment (top view) for the LGA QFN package Printed : 1 August 2013 Data Sheet Ref : DS091201R12 4/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet Mechanical Dimensions Figure 3 : Dimensional drawing for 8 x 12 x 1.5 mm, 36-Pad LGA Package Printed : 1 August 2013 Data Sheet Ref : DS091201R12 5/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet SMT Assembly Guidelines PCB land pattern Figure 4 : Recommended PCB Land Pattern and Solder Mask layout Printed : 1 August 2013 Data Sheet Ref : DS091201R12 6/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet Antenna Keep-Out Zone Figure 5 : Recommended metal keep out areas for optimal antenna performance Printed : 1 August 2013 Data Sheet Ref : DS091201R12 7/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet FCC grant conditions ISP091201 is certified under FCC part 15.212 with “Limited Modular Approval”. This approval is limited to hosts that use the additional metal shield ISP091205 that is delivered with ISP091201, since certification has been carried out in this way. This ensures that the radio portion of the circuit is fully shielded on all sides with the exception of the antenna access. The module itself contains the lower ground plane so it is not necessary to have a continuous plane under the module in the host. The ISP091201 is labeled with its own FCC identification number: FCC ID: xxx-ISP091201, when installed into host the outside of the host must display a label with the wording: “Contains FCC ID xxx-ISP091201” as specified by the CFR47 part15.212 (a – VI) In order to respect FCC regulation, additional metal shield ISP091205 must be implemented following the recommendation below: A picture of shield installation is furnished in Figure 6 Antenna zone Test board Shielding of RF circuit Figure 6 : Shield installation as used for FCC part 15.212 certification tests The PCB land pattern and shield drawing are shown in Figure 7 and Figure 8 respectively. Printed : 1 August 2013 Data Sheet Ref : DS091201R12 8/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet Pin1 Figure 7 : Shield installation land pattern Parameter d1 d2 e1 e2 description Shield SM aperture Shield metal trace width SM registration (a-b)/2 Module pad edge to shield trace edge Value in µm 750 500 125 500 2000 2300 3400 4525 3525 2250 Printed : 1 August 2013 Data Sheet Ref : DS091201R12 9/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet Figure 8 : Mechanical drawing of the shield ISP091205 Printed : 1 August 2013 Data Sheet Ref : DS091201R12 10/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet Electrical Specifications Temperature range -40 to +85 °C Parameter Value Unit Supply voltage 1.9 Current consumption Peak current, receiver active 14.6 mA Peak current, transmitter active 12.7 mA Current drain, connection-less state 0.5 µA µA Min. Supply Voltage Static levels Current drain between connection events RF performances Parameter Output Power RF Frequency tolerance Rx sensitivity Value Unit Condition -0.9 Better than +/-20 BT V4 standard limit -20 to 10 +/- 50 dBm Hz Channels 0 to 39 Channel 0 to 39 -85 -70 dBm Level for BER <0,1% Open field at 1m height Max range > 20 EIRP Antenna Gain Rx sensitivity 0.3 1.2 58.8 dBm dBi dBµV/m Printed : 1 August 2013 Data Sheet Ref : DS091201R12 11/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet Electrical Schematic G ND20 G ND1 0201 C2 0201 C1 NX2520SA AVDD G ND4 Y1 G ND3 0201 AVDD C11 G ND25 G ND11 DCC 0201 32 31 30 29 28 27 26 G ND19 R1 25 VDD IREF AVDD2 XC2 XC1 AVDD3 AVDD1 24 DEC1 VSS4 23 DEC2 ANT2 XL2 ANT1 VSS5 DCC VSS6 G ND18 VCC_nRF 22 G ND17 ACTIVE XL1 20 VDD_PA ACTIVE 19 RESET G ND13 G ND14 C6 L1 TXD TXD 18 VSS3 XL1 Ant1 0201 C8 OUT_ANT 0201 0201 C7 21 0201 G ND12 nRF8001 0201 0201 0201 C9 OUT_MOD C5 L3 XL2 G ND24 G ND5 VSS1 17 VSS2 G ND8 L2 0201 10 12 13 14 RDYN NC MISO MOSI REQN SCK 11 15 16 33 GND_EP 0201 NC55 C3 C12 G ND9 RXD 0201 nRF8001_T U1 RXD VDD1 G ND15 VCC_nRF SCK REQN MOSI NC43 IO P in NC37 MISO NC44 NC45 RDYN NC46 RESET NC47 NC48 NC49 IO Pin IO Pin IO P in IO Pin IO P in IO Pin IO Pin NC24 NC27 NC28 NC31 NC32 NC35 NC36 NC23 IO P in NC11 NC50 IO P in NC38 IO P in NC20 NC8 NC51 IO P in NC39 IO P in NC19 NC7 NC52 IO P in NC40 IO P in NC16 NC4 IO P in NC41 OUT_ANT IO P in NC15 NC53 RESET RESET I/O RDYN IO P in IO P in OUT_ANT OUT_MOD RDYN IO P in IO P in OUT_MOD VSS1 GD N2 MISO IO P in IO P in VSS2 MISO GD N3 REQN IO P in NC54 IO P in NC5 MOSI IO P in OUT_ANT IO P in REQN IO P in MOSI DCC RXD RXD AVDD VCC_nRF IO Pin IO P in AVDD VSS IO P in VCC_nRF XL2 IO Pin XL1 IO P in XL2 ACTIVE TXD IO Pin XL1 IO P in SCK SCK IO Pin ACTIVE TXD GD N1 TOP VIEW Figure 9 : Electrical schematic showing module connections to nRF8001 device Printed : 1 August 2013 Data Sheet Ref : DS091201R12 12/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet Typical Antenna Pattern & Return Loss Return loss dB(S(1,1)) -6 -12 -18 2.0 2.1 2.2 2.3 2.4 2.5 2.6 2.7 2.8 2.9 3.0 freq, GHz Figure 10 : Antenna return loss measurement Printed : 1 August 2013 Data Sheet Ref : DS091201R12 13/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet Radiation Pattern θ=90° -10 -10 -20 -20 -30 -40 -30 -40 θ=0° θ=0° gain (dBi) @ 2.45GHz gain (dBi) @ 2.45GHz θ=90° ϕ=0° -10 -20 -30 -40 ϕ=90° gain (dBi) @ 2.45GHz Figure 11 : Radiation pattern in 3 planes Printed : 1 August 2013 Data Sheet Ref : DS091201R12 14/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet Ground Plane Effect USB dongle ground plane (size : 18 x 30 mm²) Cell phone config 1 ground plane (size : 40 x 100 mm²) Cell phone config 2 with side ground plane (size : 40 x 100 mm²) Cell phone config 1 with side ground plane (size : 40 x 100 mm²) Cell phone config 3 with side ground plane (size : 40 x 100 mm²) Figure 12 : Ground plane effect simulation Printed : 1 August 2013 Data Sheet Ref : DS091201R12 15/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet USA – User information This intends to inform how to specify the FCC ID of our module “ISP091201” on the product. Based on the Public Notice from FCC, the host device should have a label which indicates that it contains our module. The label should use wording such as: “Contains FCC ID: 2AAQS-ISP091201”. Any similar wording that expresses the same meaning may be used. The label of the host device should also include the below FCC Statement. When it is not possible, this information should be included in the User Manual of the host device : “This device complies with part 15 of the FCC rules. Operation is subject to the following two conditions. (1) This device may not cause harmful interference (2) This device must accept any interference received, including interference that may cause undesired operation. Caution: Any Changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment.” CANADA – User information This intends to inform how to specify the IC ID of our module “ISP091201” on the product. According to Canadian standards “RSS-210” and “RSS-Gen”, the host device should have a label which indicates that it contains our module. The label should use wording such as: “Contains IC: 11306A-ISP091201”. Any similar wording that expresses the same meaning may be used. The label of the host device should also include the below IC Statement. When it is not possible, this information should be included in the User Manual of the host device : This device complies with Industry Canada licence-exempt RSS standard(s). Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device. Le présent appareil est conforme aux CNR d'Industrie Canada applicables aux appareils radio exempts de licence. L'exploitation est autorisée aux deux conditions suivantes : (1) l'appareil ne doit pas produire de brouillage, et (2) l'utilisateur de l'appareil doit accepter tout brouillage radioélectrique subi, même si le brouillage est susceptible d'en compromettre le fonctionnement Printed : 1 August 2013 Data Sheet Ref : DS091201R12 16/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet Label location The labels are permanently laser marked following the figure bellow: 4 mm 3 mm 3 mm 2 mm 2 mm 2 mm 1 mm CE FCC ID: 2AAQS-ISP091201 IC: 11306A-ISP091201 Model: ISP091201 YYWW Printed : 1 August 2013 Data Sheet Ref : DS091201R12 17/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission Data Sheet Ordering Information Package marking Abbreviation ISP091201 YY WW Product number Hardware version Two digit year number Two digit week number Moisture Sensitivity Since the device package is sensitive to moisture absorption, it is necessary to do baking before assembly. The standard baking condition is 125°C/24 hours. Printed : 1 August 2013 Data Sheet Ref : DS091201R12 18/18 Insight SiP – Green Side – 400 avenue Roumanille – BP 309 – 06906 Sophia-Antipolis Cedex – France The information contained in this document is the property of Insight SiP and should not be disclosed to any third party without written permission
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