HMC821LP6CE
HMC821LP6CE is FRACTIONAL-N PLL manufactured by Analog Devices.
Features
- Tri-band RF Bandwidth: 860
- 1040, 1720
- 2080, 3440
- 4160 MHz
- Ultra Low Phase Noise -106 d Bc/Hz in Band Typ.
- Figure of Merit (FOM) -227 d Bc/Hz
- 24-bit Step Size, Resolution 3 Hz typ
- < 180 fs RMS Jitter
- Exact Frequency Mode
- Built-in Digital Self Test
- 40 Lead 6x6 mm SMT Package: 36 mm2
Typical Applications
- Cellular/4G Infrastructure
- Repeaters and Femtocells
- munications Test Equipment
- CATV Equipment
Functional Diagram
- Phased Array Applications
- DDS Replacement
- Very High Data Rate Radios
PLLS w/ Integrated VCO
- SMT
7-1
Irrliniecgfseoh Fpntrsomsoenoasrftiisibtohpingilrirrtdyafiuncpirstnaeeairdsts,ihesbesduydmtehimebaldtypivmlbi Ac Peyaany Ahtariorlynooenagslnauool Drgetneof D:rdvtoheim9cevteri7cwoistes8issiuspe-fso2lbeura.ne5idt Slcis0eepevure-esca3deoinf,i3yctnroaodp4triaboe3ftenoersrnastascn:oucyrbu HFjipernaaacfirtttteiexnttnoig:attecner9mhdiga7eh Mnrnte8gstlseii-aoco2bwffrl Aie5ptohn.a0oawt Huelo-tonag3wntsvo De3otveiecr7eveori3,C.cthe Nnesooor. rp OFOPoorhrndraoenetp Tierroei:ccn O7eh8,,nn12od--30lleoi2lngi A9veye-l4r Wpay7h,at0yaa0w,n- PRdw.OOowtor.ad.Bdephorl,iaxtoc Ctn9ietl1hein0oe.e6rcld,maoe Ntmrswosf:rwow Arwondo.aa,dlno,Mag Mlo AADge.00cv21oic0m8e62s24,-9In10c.6, Trademarks and registered trademarks a Arepthpelpircopaetrityoonf th Seiur rpesppeoctrivte: o Pwhneorsn. e: 978-250-33A4p3plicoartioanp Spusp@pohrti:t Ptihteo.nceo: 1m-800-ANALOG-D v05.1211
FRACTIONAL-N PLL w/ INTEGRATED VCO 860
- 1040, 1720
- 2080, 3440
- 4160 MHz
General Description
The HMC821LP6CE is a fully functioned Fractional-N Phase-Locked-Loop (PLL) with an Integrated Voltage Controlled Oscillator (VCO). The PLL consists of an integrated low noise VCO with a tri-band output, an autocalibration subsystem for low voltage VCO tuning, a very low noise digital Phase Detector (PD), a precision controlled charge pump, a low noise reference path divider and a fractional divider.
The fractional PLL features an advanced delta-sigma modulator design that allows...