HMC440QS16G_06 HITTITE [Hittite Microwave Corporation], HMC440QS16G_06 Datasheet

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HMC440QS16G_06

Manufacturer Part Number
HMC440QS16G_06
Description
HBT DIGITAL PHASE-FREQ. DETECTOR, 10 - 1300, MHz w/ 5-BIT COUNTER, 10 - 2800 MHz
Manufacturer
HITTITE [Hittite Microwave Corporation]
Datasheet
5 - 102
5
Typical Applications
This Phase Frequency Detector w/ integrated
Counter is a key component in low phase noise
frequency synthesis applications such as:
• Satellite Communication Systems
• Point-to-Point Radios
• Military Applications
• Sonet Clock Generation
Functional Diagram
Electrical Specifications,
Maximum Ref. Input Frequency
Minimum Ref. Input Frequency
Reference Input Power Range
Maximum VCO Input Frequency
Minimum VCO Input Frequency
VCO Input Power Range
Output Voltage
SSB Phase Noise
Supply Current
Parameter
For price, delivery, and to place orders, please contact Hittite Microwave Corporation:
20 Alpha Road, Chelmsford, MA 01824 Phone: 978-250-3343 Fax: 978-250-3373
@ 10 kHz Offset @ 100 MHz Ref. Input, Pin= 0 dBm
T
10 - 1300, MHz w/ 5-BIT COUNTER, 10 - 2800 MHz
A
v02.0705
= +25° C, Vcc= 5V
Order On-line at www.hittite.com
HMC440QS16G
Sine or Square Wave Input
100 MHz Input Frequency
200 Ohm Pull Up to Vcc
100 MHz Frequency
Sine Wave Input
Sine Wave Input
Conditions
HBT DIGITAL PHASE-FREQ. DETECTOR,
Features
Ultra Low SSB Phase Noise Floor:
Programmable Divider (N= 2-32) Operating
Open Collector Output Buffer Amplifi ers for
QSOP16G SMT Package: 29.4 mm
General Description
The HMC440QS16G & HMC440QS16GE integrate
10 to 1300 MHz digital Phase-Frequency Detectors
with 10 to 2800 MHz 5-Bit Counters (continuous
division from 2 to 32) in miniature 16 lead QSOP
plastic packages. It is intended for use in low
phase noise offset-synthesizer applications. The
HMC440QS16G & HMC440QS16GE’s combination
of high frequency operation along with ultra low
phase noise fl oor make possible synthesizers with
wide loop bandwidth and low N resulting in fast
settling and very low phase noise. When used in
conjunction with a differential loop amplifi er, the
HMC440QS16G & HMC440QS16GE generate an
output voltage that can be used to phase lock a VCO
to a reference oscillator.
-153 dBc/Hz@10 kHz offset @ 100 MHz
Reference Frequency.
up to 2.8 GHz
Interfacing w/ Op-Amp Based Loop Filter
1300
2800
Min.
-10
-15
/
440QS16GE
2000
Typ.
-153
250
2
Max.
+10
+10
10
10
mV, Pk - Pk
dBc/Hz
Units
MHz
MHz
dBm
MHz
MHz
dBm
mA

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HMC440QS16G_06 Summary of contents

Page 1

Typical Applications This Phase Frequency Detector w/ integrated Counter is a key component in low phase noise frequency synthesis applications such as: • Satellite Communication Systems • Point-to-Point Radios • Military Applications • Sonet Clock Generation Functional Diagram Electrical ...

Page 2

MHz w/ 5-BIT COUNTER 2800 MHz Error Voltage vs. Frequency, Pin= 0 dBm* 1.2 1 0.8 0.6 0.4 0.2 0 -0.2 -0.4 -0.6 50MHz -0.8 640MHz 1280MHz -1 -1.2 -p -p/2 0 p/2 PHASE ...

Page 3

Absolute Maximum Ratings RF Input (Vcc= +5V) Supply Voltage (Vcc) Counter Logic Input ( Channel Temperature (Tc) Continuous Pdiss ( °C) (derate 56.8 mW/° C above 85 °C) Storage Temperature Operating Temperature ...

Page 4

MHz w/ 5-BIT COUNTER 2800 MHz Pin Description Pin Number Function 1 FOUT (These pins are DC coupled and must be DC blocked externally). Both outputs are test ports only and are intended for ...

Page 5

HMC440QS16G Programming Truth Table (LSB) Function A0 Output Low Note: A0 through A4 are CMOS compatible logic control inputs. Evaluation PCB Circuit * Choose ...

Page 6

MHz w/ 5-BIT COUNTER 2800 MHz Evaluation PCB The circuit board used in the fi nal application should use RF circuit design techniques. Signal lines should have 50 ohm impedance while the package ground ...

Page 7

Gain & Error Voltage Test Circuit: Gain & Error Voltage data taken using test circuit below. Loop fi lter gain has been subtracted from the result. Typical PLL Application Circuit using HMC440QS16G PLL application shown for a 14.0 GHz ...

Page 8

MHz w/ 5-BIT COUNTER 2800 MHz Simplified Block Diagram of 5-Bit Counter Asynchronous Programming The 5-Bit programmable counter counts-down from the programmed value of the data bits to zero and issues an output pulse ...

Page 9

Synchronous Programming For applications which can not tolerate a momentary undefi ned division ratio, which normally occurs while changing the data bits (A0-A4) at random, synchronous programming can be used. Data is loaded into the counter on every rising ...

Page 10

MHz w/ 5-BIT COUNTER 2800 MHz CMOS/TTL Input Characteristics Maximum Input Logic “0” Voltage (V IL MAXIMUM Minimum Input Logic “1” Voltage (V IH MINIMUM Input IV characteristics for the logic inputs (A0-A4) are ...

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