An introductory training on 5G for newbies available on Udemy - http://bit.ly/udemy5G
All our #3G4G5G slides and videos are available at:
Videos: https://www.youtube.com/3G4G5G
Slides: https://www.slideshare.net/3G4GLtd
5G Page: https://www.3g4g.co.uk/5G/
Free Training Videos: https://www.3g4g.co.uk/Training/
gi-fi :the next generation wireless technologyHarshad Kale
Gigabit Wireless is the world‟s first transceiver integrated on a single chip which operates at 60GHz
on the CMOS process. Wireless transfer of large files, audio and video data upto
5 gigabits per second is
possible with this chip. The cost of wireless transfer rate is one
-
tenth and it provides ten times faster speed
within a range of 10 meters. It uses a 5mm square chip and a 1mm wide antenna burning less than 2milli
w
atts of power to transmit data wirelessly over short distances, similar to Bluetooth. Gi
-
Fi technology
provides
various different features like
High speed of data transfer, Low power consumption, High security,
Cost effective, Small size, Quick
deployment, Highly portable, high mobility etc.
An introductory training on 5G for newbies available on Udemy - http://bit.ly/udemy5G
All our #3G4G5G slides and videos are available at:
Videos: https://www.youtube.com/3G4G5G
Slides: https://www.slideshare.net/3G4GLtd
5G Page: https://www.3g4g.co.uk/5G/
Free Training Videos: https://www.3g4g.co.uk/Training/
gi-fi :the next generation wireless technologyHarshad Kale
Gigabit Wireless is the world‟s first transceiver integrated on a single chip which operates at 60GHz
on the CMOS process. Wireless transfer of large files, audio and video data upto
5 gigabits per second is
possible with this chip. The cost of wireless transfer rate is one
-
tenth and it provides ten times faster speed
within a range of 10 meters. It uses a 5mm square chip and a 1mm wide antenna burning less than 2milli
w
atts of power to transmit data wirelessly over short distances, similar to Bluetooth. Gi
-
Fi technology
provides
various different features like
High speed of data transfer, Low power consumption, High security,
Cost effective, Small size, Quick
deployment, Highly portable, high mobility etc.
GI-FI (Gigabit Fidelity) or Giga bit wireless refers to wireless communication at a data rate of more than one billion bits (gigabits) per second. GI-FI offers some advantages over WI-FI, a similar wireless technology. In that it offers faster information rate in GBPS, less power consumption and low cost for short range transmission as compare to current technology. GI-FI consists of a chip which has facility to deliver short-range multi gigabit data transfer in a local environment and compared to other technologies in the market it is ten times faster. GI-FI has the data transfer speed up to 5 GBPS within a short-range of 10 metres. It operates in 60 GHZ frequency band. GI-FI is developed on an integrated wireless transceiver chip. It has both transmitter and receiver, integrated on a single chip which is fabricated using the CMOS (complementary metal oxide semiconductor) process and it also consists of a small antenna. GI-FI allows transferring large videos, audio files, data files etc. within few seconds.
A webinar presented to the members of EUROAVIA Patras as an introduction to the Arduino microcontroller. It goes over the basics of the controllers features and capabilities, and guides the participant through their first steps of programming an Arduino using C++.
Snapdragon is a family of mobile systems on a chip (SoC) by Qualcomm. Qualcomm considers Snapdragon a "platform" for use in smartphones, tablets, and smartbook devices.
ARM is a family of RISC-based microprocessors and microcontrollers designed by ARM Inc., Cambridge, England.
ARM chips are high-speed processors that are known for their small die size and low power requirements.
WHAT IS ANDROID? Android is a mobile operating system (OS) based on the Linux kernel and currently developed by Google. With a user interface based on direct manipulation, Android is designed primarily for touchscreen mobile devices such as smartphones and tablet computers, with specialized user interfaces for televisions (Android TV), cars (Android Auto), and wrist watches (Android Wear).
Android is a software stack for mobile devices that includes an operating system, middleware and key applications. Android is a software platform and operating system for mobile devices based on the Linux operating system and developed by Google and the Open Handset Alliance. It allows developers to write managed code in a Java-like language that utilizes Google-developed Java libraries, but does not support programs developed in native code.
5G has been projected as a catalyst in driving the adoption of AI, IoT and robotics. The security environment as we know in a pre-5G world is already relatively complex. Various discussions over its security concern are being raised, in anticipation of 5G especially in its use in IoT and autonomous systems.
The speaker intends to place the application of 5G in perspective of enterprise ecosystem. By breaking down the ecosystem into components, reviewing the concerns and requirements, the resolution and implementation of security controls could be mapped into respective roles, such as telco engineer, IoT developer, security professional and enterprise architect. Bringing us to a shared responsibility model, the key to creating a more secure 5G and IoT environment.
AMD PowerTune technology (“PowerTune”) addresses this TDP Power/Performance compromise by
introducing two important capabilities to GPUs power management:
> The ability for the GPU to dynamically calculate its runtime power based on workload activity; and
> The intelligence to control engine clocks based on the power calculations
GPUs with AMD’s exclusive ZeroCore Power technology take power efficiency to entirely new levels by completely powering down the GPU core while the rest of the system is allowed to remain in an active idle state.
GSM Digital Mobile System (Transmission Chain and Reception Chain)
PPT File (https://drive.google.com/file/d/1FQVB3jAMDazkFoMhQGzfSnJU3L9ow6BO/view?usp=sharing)
Reference: Eng. Waleed El-Safoury Presentations
PPT is presenting the Qualcomm Snapdragon SoC family use in mobile devices and further ARM microcontroller architecture is discussed with its programmer's model, instructions set, etc.
Near Field Communication is a very Versatile wireless technology. It has its range up to just 10-20 cm, but its short range is its advantage. Lets explore this technology and try to exploit it.
Cisco ASA 5508-X FirePower services Firewall(ASA5508-K9) is the entry-level next-generation firewall system.It designes for small or mid-size enterprise or branch offices. It provides 8 Gigabit Ethernet interfaces, 80GB SSD, supports up to 100 IPsec VPN peers, 50,000 concurrent connections and 1 Gbps thoughtput.
This ppt presentation is about 4G technology & when it will comes in indai ,which coutries are using 4g network .This is tha progress in the field of communication & technology.
Shared/unlicensed spectrum is important for 5G and is valuable for wide range of deployments from extreme bandwidth by aggregating spectrum, enhanced local broadband to Internet of Things verticals. 5G New Radio (NR) will natively support all different spectrum types and is designed to take advantage of new sharing paradigms. We are pioneering 5G shared spectrum today by building on LTE-U/LAA, LWA, CBRS/LSA and MulteFire.
GI-FI (Gigabit Fidelity) or Giga bit wireless refers to wireless communication at a data rate of more than one billion bits (gigabits) per second. GI-FI offers some advantages over WI-FI, a similar wireless technology. In that it offers faster information rate in GBPS, less power consumption and low cost for short range transmission as compare to current technology. GI-FI consists of a chip which has facility to deliver short-range multi gigabit data transfer in a local environment and compared to other technologies in the market it is ten times faster. GI-FI has the data transfer speed up to 5 GBPS within a short-range of 10 metres. It operates in 60 GHZ frequency band. GI-FI is developed on an integrated wireless transceiver chip. It has both transmitter and receiver, integrated on a single chip which is fabricated using the CMOS (complementary metal oxide semiconductor) process and it also consists of a small antenna. GI-FI allows transferring large videos, audio files, data files etc. within few seconds.
A webinar presented to the members of EUROAVIA Patras as an introduction to the Arduino microcontroller. It goes over the basics of the controllers features and capabilities, and guides the participant through their first steps of programming an Arduino using C++.
Snapdragon is a family of mobile systems on a chip (SoC) by Qualcomm. Qualcomm considers Snapdragon a "platform" for use in smartphones, tablets, and smartbook devices.
ARM is a family of RISC-based microprocessors and microcontrollers designed by ARM Inc., Cambridge, England.
ARM chips are high-speed processors that are known for their small die size and low power requirements.
WHAT IS ANDROID? Android is a mobile operating system (OS) based on the Linux kernel and currently developed by Google. With a user interface based on direct manipulation, Android is designed primarily for touchscreen mobile devices such as smartphones and tablet computers, with specialized user interfaces for televisions (Android TV), cars (Android Auto), and wrist watches (Android Wear).
Android is a software stack for mobile devices that includes an operating system, middleware and key applications. Android is a software platform and operating system for mobile devices based on the Linux operating system and developed by Google and the Open Handset Alliance. It allows developers to write managed code in a Java-like language that utilizes Google-developed Java libraries, but does not support programs developed in native code.
5G has been projected as a catalyst in driving the adoption of AI, IoT and robotics. The security environment as we know in a pre-5G world is already relatively complex. Various discussions over its security concern are being raised, in anticipation of 5G especially in its use in IoT and autonomous systems.
The speaker intends to place the application of 5G in perspective of enterprise ecosystem. By breaking down the ecosystem into components, reviewing the concerns and requirements, the resolution and implementation of security controls could be mapped into respective roles, such as telco engineer, IoT developer, security professional and enterprise architect. Bringing us to a shared responsibility model, the key to creating a more secure 5G and IoT environment.
AMD PowerTune technology (“PowerTune”) addresses this TDP Power/Performance compromise by
introducing two important capabilities to GPUs power management:
> The ability for the GPU to dynamically calculate its runtime power based on workload activity; and
> The intelligence to control engine clocks based on the power calculations
GPUs with AMD’s exclusive ZeroCore Power technology take power efficiency to entirely new levels by completely powering down the GPU core while the rest of the system is allowed to remain in an active idle state.
GSM Digital Mobile System (Transmission Chain and Reception Chain)
PPT File (https://drive.google.com/file/d/1FQVB3jAMDazkFoMhQGzfSnJU3L9ow6BO/view?usp=sharing)
Reference: Eng. Waleed El-Safoury Presentations
PPT is presenting the Qualcomm Snapdragon SoC family use in mobile devices and further ARM microcontroller architecture is discussed with its programmer's model, instructions set, etc.
Near Field Communication is a very Versatile wireless technology. It has its range up to just 10-20 cm, but its short range is its advantage. Lets explore this technology and try to exploit it.
Cisco ASA 5508-X FirePower services Firewall(ASA5508-K9) is the entry-level next-generation firewall system.It designes for small or mid-size enterprise or branch offices. It provides 8 Gigabit Ethernet interfaces, 80GB SSD, supports up to 100 IPsec VPN peers, 50,000 concurrent connections and 1 Gbps thoughtput.
This ppt presentation is about 4G technology & when it will comes in indai ,which coutries are using 4g network .This is tha progress in the field of communication & technology.
Shared/unlicensed spectrum is important for 5G and is valuable for wide range of deployments from extreme bandwidth by aggregating spectrum, enhanced local broadband to Internet of Things verticals. 5G New Radio (NR) will natively support all different spectrum types and is designed to take advantage of new sharing paradigms. We are pioneering 5G shared spectrum today by building on LTE-U/LAA, LWA, CBRS/LSA and MulteFire.
Mobile user eager to wait Apple launch iPhone 7 in coming soon. Here what to expect from Apple's bigger display with long battery life and other advanced feature included in iPhone 7.
Arm cortex (lpc 2148) based motor speedUday Wankar
The project is designed to control the speed of a DC and AC motor using an
ARM7 LPC2148 processor. The speed of motor is directly proportional to the voltage
applied across its terminals. Hence, if voltage across motor terminal is varied, then
speed can also be varied. This project uses the above principle to control the speed of
the motor by varying the duty cycle of the pulses applied to it, popularly known as
PWM control. The project uses input button interfaced to the processor, which are
used to control the speed of motor. Pulse Width Modulation is generated at the output
by the microcontroller as per the program. The program is written in Embedded C.
The average voltage given or the average current flowing through the motor
will change depending on the duty cycle, ON and OFF time of the pulses, so the speed
of the motor will change. A motor driver IC is interfaced to the ARM7 LPC2148
processor board for receiving PWM signals and delivering desired output for speed
control. Further the project can be enhanced by using power electronic devices such
as IGBTs to achieve speed control higher capacity industrial motors.
MYC-Y6ULX CPU Module - NXP i.MX 6UL/6ULL System-on-ModuleLinda Zhang
This overview document gives a brief introduction of MYIR's MYC-Y6ULX CPU Module which is powered by NXP i.MX 6UltraLite / 6ULL processor based on the ARM Cortex-A7 architecture. It is ready to run Linux and delivers high performance with ultra-efficient power that targets Industry Control, Communications, HMI, Smart Healthcare and Internet of Things (IoT) applications. It carries out as many as peripheral signals and IOs through 1.0mm pitch 140-pin stamp hole expansion interface to allow customer’s extension for their next embedded design. The module can support industrial operating temperature range from -40 to +85 Celsius.
Immunizing Image Classifiers Against Localized Adversary Attacksgerogepatton
This paper addresses the vulnerability of deep learning models, particularly convolutional neural networks
(CNN)s, to adversarial attacks and presents a proactive training technique designed to counter them. We
introduce a novel volumization algorithm, which transforms 2D images into 3D volumetric representations.
When combined with 3D convolution and deep curriculum learning optimization (CLO), itsignificantly improves
the immunity of models against localized universal attacks by up to 40%. We evaluate our proposed approach
using contemporary CNN architectures and the modified Canadian Institute for Advanced Research (CIFAR-10
and CIFAR-100) and ImageNet Large Scale Visual Recognition Challenge (ILSVRC12) datasets, showcasing
accuracy improvements over previous techniques. The results indicate that the combination of the volumetric
input and curriculum learning holds significant promise for mitigating adversarial attacks without necessitating
adversary training.
Final project report on grocery store management system..pdfKamal Acharya
In today’s fast-changing business environment, it’s extremely important to be able to respond to client needs in the most effective and timely manner. If your customers wish to see your business online and have instant access to your products or services.
Online Grocery Store is an e-commerce website, which retails various grocery products. This project allows viewing various products available enables registered users to purchase desired products instantly using Paytm, UPI payment processor (Instant Pay) and also can place order by using Cash on Delivery (Pay Later) option. This project provides an easy access to Administrators and Managers to view orders placed using Pay Later and Instant Pay options.
In order to develop an e-commerce website, a number of Technologies must be studied and understood. These include multi-tiered architecture, server and client-side scripting techniques, implementation technologies, programming language (such as PHP, HTML, CSS, JavaScript) and MySQL relational databases. This is a project with the objective to develop a basic website where a consumer is provided with a shopping cart website and also to know about the technologies used to develop such a website.
This document will discuss each of the underlying technologies to create and implement an e- commerce website.
Welcome to WIPAC Monthly the magazine brought to you by the LinkedIn Group Water Industry Process Automation & Control.
In this month's edition, along with this month's industry news to celebrate the 13 years since the group was created we have articles including
A case study of the used of Advanced Process Control at the Wastewater Treatment works at Lleida in Spain
A look back on an article on smart wastewater networks in order to see how the industry has measured up in the interim around the adoption of Digital Transformation in the Water Industry.
Industrial Training at Shahjalal Fertilizer Company Limited (SFCL)MdTanvirMahtab2
This presentation is about the working procedure of Shahjalal Fertilizer Company Limited (SFCL). A Govt. owned Company of Bangladesh Chemical Industries Corporation under Ministry of Industries.
NO1 Uk best vashikaran specialist in delhi vashikaran baba near me online vas...Amil Baba Dawood bangali
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Hierarchical Digital Twin of a Naval Power SystemKerry Sado
A hierarchical digital twin of a Naval DC power system has been developed and experimentally verified. Similar to other state-of-the-art digital twins, this technology creates a digital replica of the physical system executed in real-time or faster, which can modify hardware controls. However, its advantage stems from distributing computational efforts by utilizing a hierarchical structure composed of lower-level digital twin blocks and a higher-level system digital twin. Each digital twin block is associated with a physical subsystem of the hardware and communicates with a singular system digital twin, which creates a system-level response. By extracting information from each level of the hierarchy, power system controls of the hardware were reconfigured autonomously. This hierarchical digital twin development offers several advantages over other digital twins, particularly in the field of naval power systems. The hierarchical structure allows for greater computational efficiency and scalability while the ability to autonomously reconfigure hardware controls offers increased flexibility and responsiveness. The hierarchical decomposition and models utilized were well aligned with the physical twin, as indicated by the maximum deviations between the developed digital twin hierarchy and the hardware.
6. Skyworks
STMicroelectronics
LSM6DS3
Broadcom BCM43342
WiFi/BT SoC
AMS AS3923
NFC booster chip
S y o s
WiFI LNA +Switch and
PA
3D digital gyroscope/
accelerometer
/
NXP 65V10(PN548)
NFC controller
Apple APL0778 processor
Dialog D2238A
(Apple 338S00046)
TI/NS LM3637
LED Backlight driver
Apple APL0778 processor
Elpida 4Gb system memory
Toshiba 8GB NAND flash
M i t
PMIC
ADI AD7149
Capacitance to digital
converter
Main storage
MAXIM MAX98730
NXP
Interface chip
MAXIM STMicroelectronics
IDT P9022
Wireless charger
MAXIM
Audio Codec
MAXIM
U k
STM32 MCU
Unknown MAXIM
Audio amplifier
7. 272x340
or
312x390
ADI
AD7166
4Gb
S t
ADI
AD7149
TAOS
ALS
8GB
NAND Fl h
System
Memory
Elpida
6‐axis
MEMs
ST32
MCU
I2C
APL0778
Processor
NAND Flash
Toshiba/SanDisk
TAPTIC
ENGINE
338S00046
PMIC
SDIO UART
P9022
Audio Audio
Broadcom
BCM43342
Codec AMP
AMS
AS3923
NXP
PN548
4BI SLZ
ALGJ
+MAX T
9873OEWJ
9 447 BP
+AAA
432
TI4BC56LI
OPA2376
8. Manufacturer Device Function
▼Processor
Apple Apple APL0778 Microprocessor
‧ Main processor
‧SAMSUNG 28nm LP process
‧ARM v7a architecture
‧Imagination PowerVR SGX543 GPU‧Imagination PowerVR SGX543 GPU
‧PoP package
▼Memory
Micron/Elpida
N/A
‧4Gb system memory
‧PoP package(die)p g ( )
Toshiba
N/A ‧8GB NAND Flash
‧Main storage
▼Radio Frequency
BCM43342MKWBG ‧802 11 a/b/g/n Wi‐Fi
Broadcom
BCM43342MKWBG 802.11 a/b/g/n Wi Fi
‧Bluetooth 4.0
Skyworks Unknown WiFi LNA + Switch
Unknown WiFI PA
NXP 65V10(PN548) NFC controllerNXP 65V10(PN548) NFC controller
AMS AS3923 NFC booster
▼MEMs
STMicroelectronics LSM6DS3 6‐Axis accelerometer and gyroscope
▼PMIC
Apple
Apple 338S00046
(Dialog D2238A)
PMIC for Apple APL0778 Processor
IDT P9022 Enhanced WPC 1.1 Wireless Power Receiver
▼Audio
MAXIM Unknown Audio Codec
Unknown Audio Amplifiers
9. Manufacturer Device Function
▼Touch Screen Controller
ADI AD7166‐202ACBZ ARM Cortex M3‐based Cap Touch
AD7149‐1ACBZ Capacitance to digital converter
▼O h▼Others
Texas Instruments OPA2376 Low‐Noise, Low Quiescent Current, Precision Operational Amplifier
TPS6125X TPS6125x 3.5‐MHz High Efficiency Step‐Up Converter In Chip Scale Packaging
MAXIM MAX2240 2.5GHz, +20dBm Power Amplifier
MAX98730EWJ Unknown
NXP Unknown Interface chip
National Semiconductor LM3637 LED backlight driver
STMi l i U k MCUSTMicroelectronics Unknown MCU
Unknown Optical encoder/sensor for digital crown
12. APL1022/APL0898APL1022/APL0898
‐ TSMC 16nm FinFET/SAMSUNG 14nm FinFET process
‐ Apple 3rd generation ARM v8a architectureApple 3 generation ARM v8a architecture
‐ M9 motion coprocessor integrated
‐ Imagination PowerVR Series 7 GPU
‐ 4‐channel 16‐bits LPDDR4
‐ MIPI‐DSI/MIPI‐CSI
CI I2C UA US
M9
‐ PCIe, I2C, UART, USB
‐ Fingerprint sensor controller
‐ Apple customized PoP packageApple customized PoP package
21. iPhone 6S Plus A1687
SKYWORKS RF1347
Apple A9 processor, Apple customized PoP package
h l b b d / /4‐channle 16‐bits LPDDR4, 16Gb density, Micron/SAMSUNG/SK Hynix
InvenSense EMS‐A
In the iPhone 6s, there is Bosch BMA280 here.
But, in the iPhone 6s Plus, there is no chip here but “PCB pad only”
Qualcomm MDM9635MQ
SKYWORKS SKY77812‐19
Qualcomm QFE1100
TriQuint TQF6405
Avago AFEM‐8030
22. iPhone 6S Plus A1687
USI 339S000043 WiFi/BT M d l
Skyworks SKY13701
ALPS HSCDTD007
USI 339S000043 WiFi/BT Module
Texas Instruments 57A6CVI 3539
NXP 66V10
Apple 338S00122‐A1
Apple 338S00105
Texas Instruments 57A6CVI 3539
Main storage, 16GB/64GB/128GB
SK Hynix : H230DG8UD1ACS 16GB
Bosch BMP280
SKYWORKS SKY77357‐8
SK Hynix : H230DG8UD1ACS, 16GB
Apple 338S1285
Qualcomm PMD9635
NXP1610A3
Qualcomm WTR3925
Murata 240 Front‐End Module
Af G54/Murata(?), RF Front‐End Module
Texas Instruments 57A5KXI
Af G54/Murata(?), RF Front End Module
Apple 338S1285
RFMD RF5150
23. Rear facing camera
5 5”
Front facing camera
ALS
5.5
1920x1080343S00014
LPDDR4
LPDDR4 4‐channel
16‐bit
16Gb LPDDR4
LPDDR4
TAPTIC
ENGINE
16Gb LPDDR4
16/64/128GB
NVMe SSD
LPDDR4
Invensense
EMS‐A
I2C
338S00122‐A1
I2C/SPI
I2C/SPI
ALPS
HSCDTD007
Bosch
BMP280
PMIC
M9M9
338S00105
Audio Codec
338S1285
Audio AMP
PCIeUARTPCIe
USIQualcomm
MDM9635M
Qualcomm
WTR3925
PA
Chips NXPNXP
66V10
Audio Codec
PA chips is model
dependent Lightning
339S00043
Qualcomm
QFE1100
MDM9635MWTR3925
Qualcomm
PMD9635
p
CBTL1610A366V10
24. Manufacturer Device Function
▼Processor
Apple
Apple A9 Microprocessor
(APL0898 & APL1022)
‧SAMSUNG 14nm FinFet/TSMC 16nm FinFET process
‧Dual‐core, Apple 3rd generation ARMv8a architecture, 1.8GHz
‧Imagination PowerVR 7 series GPU
‧A l t i d P P k‧Apple customized PoP package
▼Memory
Micron
SAMSUNG
SK Hynix
D9SND (MT53B256M64D2NL)
K3RG1G10BM‐BGCH
H9HKNNNBTUMUMR‐NLH
‧16‐bit, Quad‐channel, 16Gb LPDDR4
‧Apple customized PoP package
SK Hynix H9HKNNNBTUMUMR NLH
SK Hynix
Toshiba
‧NAND Flash‐based storage
‧Apple customized package
‧16GB/64GB/128GB
16GB: SK Hynix H230DG8UD1ACS
Toshiba THGBX5G7D2KLFXG
▼PMIC
Apple Apple 338S00120‐A1 PMIC for Apple A9 Processor (iPhone 6s)
Apple 338S00122‐A1 PMIC for Apple A9 Processor (iPhone 6s Plus)
Qualcomm PMD9635 PMIC for Qualcomm MDM9635M baseband processor
▼Audio
Apple Apple 338S00105 Audio Codec
Apple 338S1285 Audio AMP
▼T h S C t ll▼Touch Screen Controller
Apple 343S00014 Touch screen controller for 3D Touch
▼Others
Texas Instruments 65730AOP Power management IC
57A6CVI 3539 LED backlight Retina display driver
57A5KXI Charger IC
NXP 1610A3 USB charging
25. Manufacturer Device Function
▼Sensors
InvenSense MPU‐6700(MP67B) (iPhone 6s) 6‐Axis Gyro and Accelerometer
Bosch Sensortech EMS‐A (iPhone 6s Plus) 6‐Axis Gyro and Accelerometer
A280(3 LA) (i h 6 ) 3 A i A lBMA280(3P 7LA) (iPhone 6s) 3‐Axis Accelerometer
BMP280 Barometer
ALPS HSCDTD007 Electronic Compass
AMS TSL2586 ALS
▼Radio Frequency
USI 339S000043 ‧802.11 ac/a/b/g/n Wi‐Fi
‧Bluetooth 4.2
NXP 66V10 (PN66V?) NFC controller( )
Qualcomm MDM9635M baseband processor Baseband Processor:
‧20nm process
‧1.2GHz ARM Cortex‐A7 + 800MHz QDSP
‧Rel 9 LTE Cat 6
‧DC‐HSPA
‧TD‐SCDMA
‧EVDO Rev. B, CDMA 1X
‧GSM
‧QICE, Envelope Tracking
‧Integrated Memory
WTR3925 ‧28nm process
‧ GSM/CDMA/W‐CDMA/LTE Transceiver
QFE1100 Envelope Power Tracker
26. Manufacturer Device Function
iPhone 6s Model A1688
Skyworks SKY77812‐19 Power Amplifier Module
SKY77357‐8 Power Amplifier Module
A AFEM 8030 P A lifi M d lAvago AFEM‐8030 Power Amplifier Module
RFMD RF5150 Antenna Switch
RF1347 Antenna Switch Module
TriQuint TQF6405 Power Amplifier Module
Murata 240 Front End module
Murata(?) Ne G98 RF Front End module
Rd G54 RF Front End module
iPh 6 Pl M d liPhone 6s Plus Model
A1687
Skyworks SKY77812‐19 Power Amplifier Module
SKY77357‐8 Power Amplifier Module
SKY13701‐17 WLAN front end module
Avago AFEM‐8030 Power Amplifier Module
RFMD RF5150 Antenna Switch
TriQuint TQF6405 Power Amplifier Module
Murata 240 Front End module
Murata(?) Af G54 RF Front End module
27. ▼Processor
Application Processor
‧Dual‐core
‧Apple 3rd generation ARM v8a architecture
‧Imagination PowerVR Series 7 GPUImagination PowerVR Series 7 GPU
‧SAMSUNG 14nm FinFET process
TSMC 16nm FinFET process
‧Apple M9 motion coprocessor
M9
Apple M9 Coprocessor
‧ Integrated in the Apple A9 processor
▼Memory
System Memory
‧ Quad‐Channel 16‐bits LPDDR4 controller
‧ 16Gb density LPDDR4
‧ Apple customized PoP package
System Storage
‧Apple NVMe controller inside Apple A9
‧16GB/64GB/128GB capacity NAND Flash
35. iPad Pro
Manufacturer Device Function
▼Others
Texas Instruments TPS65144 LCD Bias with Integrated Gamma
NXP CBTL1610A3 USB charging
L C11U3 C M0 i llLPC11U37 Cortex‐M0 microcontroller
NVT8416A1 Unknown
Parade DP695 LCD timing controller
Fresco Logic FL1100SX PCIe‐to‐USB 3.0 controller
Fairchild Semiconductor FDMC 6683 DC/DC Converter
FXMA2012 Translator
STMicroelectronics STM32L052x6 Ultra‐low power ARM Cortex‐M0+ MCU with 64‐Kbyte Flash, 32 MHz CPU, USB
36. iPad Pro
Manufacturer Device Function
▼Radio Frequency
USI 339S000045
(Boradcom BCM4350)
‧802.11 ac/a/b/g/n Wi‐Fi
‧Bluetooth 4.2
NXP 65V10 NFC controller
For Wi‐Fi + Cellular model
Qualcomm MDM9625M baseband processor Baseband Processor:
‧Rel 9 LTE Cat 4(150Mbps)
‧Rel 10 LTE‐FDD CA
‧Rel 10 3C HSDPA+ 63Mbps
‧DC HSUPA
‧TD‐SCDMA
‧DOrBDOrB
‧QICE, Envelope Tracking
‧Integrated Memory
WTR1625L GSM/CDMA/W‐CDMA/LTE RxD Transceiver
WFR1620 GSM/CDMA/W‐CDMA/LTE ReceiverWFR1620 GSM/CDMA/W CDMA/LTE Receiver
QFE1100 Envelope Power Tracker
Avago A8020 Power Amplifier Module
TriQuint TQF6410 Power Amplifier Module
TQF6430 Power Amplifier Module
RFMD RF5159 Antenna Switch Module
RF5145 Antenna Switch
RF5147A Antenna SwitchRF5147A Antenna Switch
37. iPad Pro
ST Microelectronics AS5C Y533
ST Microelectronics STML151UCY6, ARM Cortex‐M3 MCU
L05286 QS4 VG Z SGP 528
EWX 01129
(STMicroelectronics STM32L052x6)
Bosch Sensortec BMA280
Cambridge Silicon Radio (Qualcomm)CSR1012A05
Bosch Sensortec BMA280
8529043 343S00008‐A1(Customized part for Apple?)
38. iPad Pro
Manufacturer Device Function
▼Apple Pencil
ST Microelectronics STML151UCy6 ARM Cortex‐M3 MCU
AS5C Y533 unknown
h S h 280 3 A i A lBosch Sensortech BMA280 3‐Axis Accelerometer
Qualcomm/CSR CSR1012A05 Bluetooth Smart chip
STMicroelectronics
L05286 QS4 VG Z SGP 528
(STM32L052x6)
Ultra‐low power ARM Cortex‐M0+ MCU with 64‐Kbyte Flash, 32 MHz CPU, USB
Unknown(MAXIM?) EWX 01129 unknown
Unknown
(Customized for Apple?)
8529043 343S00008‐A1
unknown
▼Smart Keyboard
ST Microelectronics STM32F103VB 72MHz ARM Cortex‐M3 MCU
51. iPad mini 4
iPad mini 4iPad mini 4
Mighty. Small.
There’s more to mini than meets the eye. The new iPad mini 4 putsThere s more to mini than meets the eye. The new iPad mini 4 puts
uncompromising performance and potential in your hand. It’s thinner and
lighter than ever before, yet powerful enough to help you take your ideas
even further.
52. iPad mini 4
Apple A8 Processor
AKM AK8963
This area is used for WWAN function
in Wi‐Fi + Cellular model,
1. Qualcomm MDM9625M
2. Qualcomm PM8019
3. Qualcomm WTR1625L
4. Qualcomm WFR1620
h
NAND Flash‐based storage, 16GB/64GB/128GB capacity
5. PA chips:
TriQuint, Avago, RF Micro, SKYWORKS
NXP 65V10 NFC Controller
NXP LPC18B1UK, Apple M8 motion coprocessor
Apple 338S1213 audio codec
Bosch Sensortec BMP280, Barometer
Bosch Sensortec BMA280, Accelerometer
Unknown part number,
PMIC for Apple A8 processor Dialog Semiconductor
Unknown part number,
Maxim Integrated MAX98721BEWV
NXP CBTL1610(1610A1)
PMIC for Apple A8 processor, Dialog Semiconductor
Broadcom BCM5976
Texas Instruments 51ACK0I 343S0583
USI 339S00045 WiFi/BT module
Apple A8 Processor, Dual‐Channel LPDDR3, 16Gb LPDDR3, SK Hynix
64. Manufacturer Device Function
▼Processor
Apple
Apple A8 Microprocessor
(Apple APL1011)
‧20nm process
‧Dual‐core, ARMv8 architecture, 1.4GHz
‧Imagination PowerVR 6 series GPU
‧A l t i d P P k‧Apple customized PoP package
▼Memory
SK Hynix
H9CKNNN8KTMRWR‐NTH
‧32‐bit, Dual‐channel, 16Gb LPDDR3
‧Apple customized PoP package
SK Hynix
H2JTEG8VD1BMR ‧Main storage
‧32GB/64GB
‧32GB: SK Hynix H2JTEG8VD1BMR
▼PMIC
Apple Apple 338S00057 AZ PMIC for Apple A8 Processor(?)Apple Apple 338S00057‐AZ PMIC for Apple A8 Processor(?)
▼Communication
Universal Scientific Industrial 339S00045 WiFi/BT module
SMSC LAN9730 USB 2.0 10/100 Ethernet controller
▼Display
MegaChips DP2700A1 DP‐to‐HDMI
▼Others
Texas Instruments TPS6213x 3V 17V 3A Step Down ConverterTexas Instruments TPS6213x 3V‐17V 3A Step‐Down Converter
Fairchild Semiconductor DF25AU 010D 030D
NXP 1112 0206 5271B4K Unknown
Unknown V301 F 57K C6XF G4 Unknown