Mixed-Signal Custom Solutions
Value Proposition
•
Experienced resources and assets to bring customers’ design objectives successfully to market
•
Ability to integrate customers’ IP into single-chip solution, thereby protecting the IP
•
Flexible cost models to reduce customers’ total cost
• CAN, LIN
• I
2
C-bus
• USB
• KNX
• M-BUS
Wired
Communications
Design Engineering
• RF
Low or
High
Voltage
High Voltage (40 to 80 V)
Low Voltage (<3.3 V)
Low or
High
Voltage
Power/
Battery
Management
Wireless
Radio
Analog
Signals
Filtering
Analog/
Digital
Conversion
• Microcontroller
• DSP
Signal
Processing
Actuator
• Coil Driver
• Class-D Amp
• DAC
• Display Driver
Example:
Mechanical or
Electrical System:
• Stepper Motors
• Transducers
• MOSFETs & BJTs
• Relays
• Speakers
• Lamps
• LCD/LED Displays
Example:
Sensor:
• Magnetic Flux
• Temperature
• Light
• Sound
• Pressure
• Acceleration
• Angular Rate
Amplification
Sensor Interface
ASIC
Supporting
Logic
Memory
• EEPROM
• OTP
• SRAM
• ROM
•
Approximately 200 expert mixed-signal
designers with extensive SoC and SiP
experience
•
Robust custom development process
•
Dedicated project managers track & report
development progress
•
Flexible customer development engagement
— from full turnkey to subcontractor
production services
•
Design expertise in:
»
Sensor interface
»
Wireless systems
»
Medical imaging
»
Energy management
»
Building & home control
Mixed Signal Intellectual Property (IP)
USB 3.0/2.0/1.1, HDMI, MIPI, I2C, SPI, CAN, UART
ARM, RCore DSP, R8051, AMBA/AHB/APB Peripherals
SRAM, DPRAM, ROM, EEPROM, OTP, FLASH
Oscillators, PLLs, DLLs
Wireless (Proprietary & Standards), Wired (KNX, PLC
and others)
ECC, AES, 3-DES, DES, RSA
DAC, ADC (8 - 20 bits, 1 KSPS – 120 MSPS)
PGA, LNA, PLLs, Correlators, DSP
Efficient Switching Regulators, LDOs, Charge Pumps,
Thermal Protection
Precision Bandgaps, Current References, Temperature
Sensors
High-Voltage Drivers, Display and LCD Drivers, Class D
Amplifiers
PGA, Instrumentation Amps, Digital and Analog Filters
IP & Fab Processes
•
≥
55 nm, analog-focused CMOS/BCDMOS process technologies
utilizing internal fabs and external foundry partners
•
Low, medium, high voltages —
≤
1 V to 90 V
•
Low current optimization — active & standby
•
Low noise design — “count the electrons”
•
High temperature —
≤
200°C (profile, for selected technologies)
•
Integrated low power wireless
•
Non-Volatile Memory (EEPROM, OTP), RAM & ROM
•
Embedded digital IP
•
Robust ESD protection
•
Extensive building block ‘starting points’ consisting of amplifiers,
references, DACs, ADCs, linear & switching regulators, power
management, etc.
Category
Serial Interfaces
Microprocessors
Memory
Clocking
Communication
Encryption
Data Converters
Wireless IP
Power Management
References
Analog and High Voltage
Interfaces
Signal Conditioning
Page 4
White Goods Solutions
ON Semiconductor Provides Expertise, Solutions, and Products that Enable
Designers to Quickly Improve System Efficiency
Evolving Efficiency Standards
Evolving regulations and incentives, targeted towards improving
energy efficiency, are intended to limit global climate change.
Enhancing power supply efficiency alone can save over 2% of
global energy consumption. Many organizations worldwide (such
as China Energy Conservation Project, Japan Top Runner, USA
Environmental Protection Agency, European Code of Conduct) now
develop regulations and incentives for power supply efficiency,
like ENERGY STAR® and 80 PLUS®. ON Semiconductor actively
participates in standards organizations and working groups, so that
we can provide solutions to the market that meet all of the relevant
specifications, worldwide.
GreenPoint® Reference Designs
ON Semiconductor provides GreenPoint
reference designs for selected types of
internal and external power supplies. These
open reference designs provide roadmaps for the design of highly
efficient power supplies, helping you get to market quickly by
providing documentation that includes schematics, BOMs, Gerber
files, design descriptions, and test results. The reference designs
meet all relevant global efficiency standards, providing access to
global markets with a single design.
Global Power Supply Presence
ON Semiconductor maintains a broad, global network of design
and applications resources, including resources devoted to power
supplies.
Our Product Design Centers define and develop advanced power
management integrated circuits, utilizing the latest architectures
and development tools. Products are targeted for a range of
process technologies, including analog CMOS, Bi-CMOS, and Very
High Voltage (VHV).
Our Solutions Engineering Centers focus on developing value-
added total solutions for specific end market applications. These
centers are staffed with applications engineers with design
experience, and are equipped with all of the resources necessary
for local manufacturers to benefit from the vast power management
experience of ON Semiconductor.
A global network of Field Applications Engineers provides truly
customer-specific support. These local resources can help you
optimize your power supply designs, by contributing their experience
and training, with both applications and specific components, to
your design location.
Power Supply Expertise
ON Semiconductor provides products and solutions that save
power from line to load, enabling quick deployment of cost-effective
power supplies that meet evolving global efficiency standards.
Our expertise in high-efficiency power supplies helps solve your
challenges in all focus areas for efficiency enhancement:
•
Low standby-mode power consumption
•
High active-mode power efficiency
•
Power factor correction
And since we provide a full range of power supply semiconductors
– from highly integrated power factor controllers, ac-dc controllers,
and dc-dc controllers, to discrete MOSFETs, rectifiers, diodes,
and transistors – we can help you design complete power supply
solutions, with all active components sourced from and supported
by a single supplier.
AC-DC Power Supplies and Adapters
AC
In
EMI Power
Filter
Input
Bridge
Rectification
Power
Factor
Correction
Voltage
Regulation
(Linear, Switching)
Transformer
Output
Rectification/
Sync Rect
DC
Out
DC-DC Power Supplies
DC
In
Hot Swap/
Inrush
Limiting
Isolated
Conversion
Non-Isolated
Conversion
Post
Regulation
DC
Out
Regulated
Output
ON Semiconductor
Page 5