footprint, crystal-less family of clock generators. The
DSC613 family is factory-configurable and generates
up to three LVCMOS outputs from two PLLs. Each
output can be configured to generate frequencies from
2 kHz to 100 MHz.
The DSC613 implements Microchip’s proven
PureSilicon™ MEMS technology to provide low jitter
and high stability across a wide range of supply
voltages and temperatures. By eliminating the external
quartz crystal, Microchip’s crystal-less™ clock
generators significantly enhance reliability and
accelerate product development.
The DSC613 has one control input that can be
configured to function as output enable/disable,
standby, sleep, spread spectrum enable, and
frequency select. The DSC613 is available in space
saving 6-pin, 1.6 mm x 1.2 mm, 2.0 mm x 1.6 mm, and
2.5 mm x 2.0 mm VFLGA plastic packages.
The DSC613 spread spectrum function includes both
center and down spreading, and is explained further in
the
Spread Spectrum
section.
The DSC613 is a highly configurable device and is
factory programmed to meet the customer’s needs.
Microchip’s
ClockWorks Configurator
must be used to
choose the necessary options, create the final part
number, data sheet, and order samples.
Applications
• Low Power/Portable Applications: IoT,
Embedded/Smart Devices
• Consumer: Home Healthcare, Fitness Devices,
Home Automation
• Industrial: Building/Factory Automation,
Surveillance Cameras
Package Type
DSC613
6-Lead VFLGA
(Top View)
OE/STDBY/FS/SLEEP/SSEN/NC
1
6 VDD
CLK3
2
5 CLK2
VSS
3
4 CLK1
2018 Microchip Technology Inc.
DS20006024A-page 1
DSC613
Functional Block Diagram
PIN1
DIGITAL
CONTROL
SUPPLY
REGULATION
VDD
OUT DIV1
MEMS
RESONATOR
TEMP SENSOR +
CONTROL &
COMPENSATION
CLK1
PLL1
OUT DIV2
CLK2
PLL2
OUT DIV3
CLK3
DS20006024A-page 2
2018 Microchip Technology Inc.
DSC613
1.0
ELECTRICAL CHARACTERISTICS
Absolute Maximum Ratings †
Supply Voltage .......................................................................................................................................... –0.3V to +4.0V
Input Voltage .....................................................................................................................................–0.3V to V