AD9516-3BCPZ Analog Devices Inc, AD9516-3BCPZ Datasheet - Page 5

IC CLOCK PLL/VCO 2GHZ 64LFCSP

AD9516-3BCPZ

Manufacturer Part Number
AD9516-3BCPZ
Description
IC CLOCK PLL/VCO 2GHZ 64LFCSP
Manufacturer
Analog Devices Inc
Type
Clock Generator, Fanout Distributionr
Datasheet

Specifications of AD9516-3BCPZ

Pll
Yes
Input
Clock
Output
CMOS, LVDS, LVPECL
Number Of Circuits
1
Ratio - Input:output
1:14
Differential - Input:output
Yes/Yes
Frequency - Max
2.25GHz
Divider/multiplier
Yes/No
Voltage - Supply
3.135 V ~ 3.465 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
64-LFCSP
Frequency-max
2.25GHz
Clock Ic Type
Clock Generator
Ic Interface Type
Serial
Frequency
2GHz
No. Of Outputs
10
No. Of Multipliers / Dividers
8
Supply Voltage Range
3.135V To 3.465V
Digital Ic Case Style
LFCSP
Function
Clock Generator
Operating Temperature (max)
85C
Operating Temperature (min)
-40C
Package Type
LFCSP EP
Pin Count
64
Mounting
Surface Mount
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
AD9516-3/PCBZ - BOARD EVAL FOR AD9516-3 2.0GHZ
Lead Free Status / Rohs Status
Compliant

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Manufacturer
Quantity
Price
Part Number:
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Manufacturer:
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Quantity:
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Manufacturer:
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Quantity:
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Part Number:
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Parameter
CHARGE PUMP (CP)
PRESCALER (PART OF N DIVIDER)
PLL DIVIDER DELAYS
NOISE CHARACTERISTICS
PLL DIGITAL LOCK DETECT WINDOW
1
2
REFIN and REFIN self-bias points are offset slightly to avoid chatter on an open input condition.
For reliable operation of the digital lock detect, the period of the PFD frequency must be greater than the unlock-after-lock time.
I
I
Sink-and-Source Current Matching
I
I
Prescaler Input Frequency
Prescaler Output Frequency
000
001
010
011
100
101
110
111
In-Band Phase Noise of the Charge
PLL Figure of Merit (FOM)
Required to Lock (Coincidence of Edges)
To Unlock After Lock (Hysteresis)
CP
CP
CP
CP
High Value
Low Value
Absolute Accuracy
CP
P = 1 FD
P = 2 FD
P = 3 FD
P = 2 DM (2/3)
P = 4 DM (4/5)
P = 8 DM (8/9)
P = 16 DM (16/17)
P = 32 DM (32/33)
Pump/Phase Frequency Detector
(In-Band Is Within the LBW of the PLL)
At 500 kHz PFD Frequency
At 1 MHz PFD Frequency
At 10 MHz PFD Frequency
At 50 MHz PFD Frequency
Low Range (ABP 1.3 ns, 2.9 ns)
High Range (ABP 1.3 ns, 2.9 ns)
High Range (ABP 6.0 ns)
Low Range (ABP 1.3 ns, 2.9 ns)
High Range (ABP 1.3 ns, 2.9 ns)
High Range (ABP 6.0 ns)
Sink/Source
High Impedance Mode Leakage
vs. CP
vs. Temperature
RSET
Range
V
2
2
Min
Typ
4.8
0.60
2.5
2.7/10
1
2
1.5
2
Off
330
440
550
660
770
880
990
−165
−162
−151
−143
−220
3.5
7.5
3.5
7
15
11
Max
300
600
900
200
1000
2400
3000
3000
300
Rev. A | Page 5 of 80
Unit
mA
mA
%
nA
%
%
%
MHz
MHz
MHz
MHz
MHz
MHz
MHz
MHz
MHz
ps
ps
ps
ps
ps
ps
ps
ps
dBc/Hz
dBc/Hz
dBc/Hz
ns
ns
ns
ns
ns
ns
dBc/Hz
dBc/Hz
Test Conditions/Comments
Programmable
With CP
CP
0.5 < CP
0.5 < CP
CP
See the
A, B counter input frequency (prescaler input frequency divided
by P)
Register 0x019: R, Bits[5:3]; N, Bits[2:0]; see Table 54
The PLL in-band phase noise floor is estimated by measuring the
in-band phase noise at the output of the VCO and subtracting
20log(N) (where N is the value of the N divider)
Reference slew rate > 0.25 V/ns; FOM + 10log (f
mation of the PFD/CP in-band phase noise (in the flat region)
inside the PLL loop bandwidth; when running closed loop, the
phase noise, as observed at the VCO output, is increased by 20log(N)
Signal available at LD, STATUS, and REFMON pins when selected
by appropriate register settings
Selected by Register 0x017[1:0] and Register 0x018[4]
Register 0x017[1:0] = 00b, 01b,11b; Register 0x018[4] = 1b
Register 0x017[1:0] = 00b, 01b, 11b; Register 0x018[4] = 0b
Register 0x017[1:0] = 10b; Register 0x018[4] = 0b
Register 0x017[1:0] = 00b, 01b, 11b; Register 0x018[4] = 1b
Register 0x017[1:0] = 00b, 01b, 11b; Register 0x018[4] = 0b
Register 0x017[1:0] = 10b; Register 0x018[4] = 0b
V
V
= V
= V
CP
CP
RSET
VCXO/VCO Feedback Divider N—P, A, B, R
V
V
/2
/2
< V
< V
= 5.1 kΩ
CP
CP
− 0.5 V
− 0.5 V
PFD
AD9516-3
) is an approxi-
section

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