Changes to Ordering Guide .......................................................... 25
3/01—Revision 0: Initial Version
Rev. A | Page 2 of 24
ADF4206/ADF4208
SPECIFICATIONS
V
DD
1 = V
DD
2 = 3 V ± 10%, 5 V ± 10%; V
DD
1, V
DD
2 ≤ V
P
1, V
P
2 ≤ 6.0 V; AGND
RF1
= DGND
RF1
= AGND
RF2
= DGND
RF2
= 0 V;
T
A
= T
MIN
to T
MAX
, unless otherwise noted; dBm referred to 50 Ω.
Table 1.
Parameter
RF/IF CHARACTERISTICS (3 V)
RF1 Input Frequency (RF1
IN
)
ADF4206
ADF4208
RF Input Sensitivity
IF Input Frequency (RF2
IN
)
ADF4206
ADF4208
IF Input Sensitivity
Maximum Allowable Prescaler
Output Frequency
3
RF CHARACTERISTICS (5 V)
RF1 Input Frequency (RF1
IN
)
ADF4206
ADF4208
RF Input Sensitivity
IF Input Frequency (RF2
IN
)
ADF4206
ADF4208
IF Input Sensitivity
Maximum Allowable Prescaler
Output Frequency
3
REFIN CHARACTERISTICS
REFIN Input Frequency
REFIN Input Sensitivity
4
REFIN Input Capacitance
REFIN Input Current
PHASE DETECTOR
Phase Detector Frequency
5
CHARGE PUMP
I
CP
Sink/Source
High Value
Low Value
Absolute Accuracy
I
CP
Three-State Leakage Current
LOGIC INPUTS
V
INH
, Input High Voltage
V
INL
, Input Low Voltage
I
INH
/I
INL
, Input Current
C
IN
, Input Capacitance
LOGIC OUTPUTS
V
OH
, Output High Voltage
V
OL
, Output Low Voltage
B Version
1
B Chips
2
Unit
Test Conditions/Comments
See Figure 22 for input circuit
For f < 50 MHz ensure SR > 23 V/μs
For f < 50 MHz ensure SR > 37 V/μs
0.05/0.55
0.08/2.0
–15/+4
0.05/0.55
0.08/1.1
−15/+4
165
0.05/0.55
0.08/2.0
−15/+4
0.05/0.55
0.08/1.1
−15/+4
165
GHz min/max
GHz min/max
dBm min/max
GHz min/max
GHz min/max
dBm min/max
MHz max
For f < 50 MHz ensure SR > 23 V/μs
For f < 50 MHz ensure SR > 37 V/μs
0.05/0.55
0.08/2.0
−10/+4
0.05/0.55
0.08/1.1
−10/+4
200
0.05/0.55
0.08/2.0
−10/+4
0.05/0.55
0.08/1.1
–10/+4
200
GHz min/max
GHz min/max
dBm min/max
MHz min/max
GHz min/max
GHz min/max
dBm min/max
MHz max
For f < 50 MHz ensure SR > 32 V/μs
For f < 50 MHz ensure SR > 51 V/μs
For f < 50 MHz ensure SR > 32 V/μs
For f < 50 MHz ensure SR > 51 V/μs
5/40
−2
10
±100
55
5/40
−2
10
±100
55
MHz min/max
dBm min
pF max
μA max
MHz max
For f < 5 MHz ensure SR > 9 V/μs
5
1.25
2.5
1
0.8 × V
DD
0.2 × V
DD
±1
10
V
DD
− 0.4
0.4
5
1.25
2.5
1
0.8 × V
DD
0.2 × V
DD
±1
10
V
DD
− 0.4
0.4
mA typ
mA typ
% typ
nA typ
V min
V max
μA max
pF max
V min
V max
I
OH
= 500 μA
I
OL
= 500 μA
Rev. A | Page 3 of 24
ADF4206/ADF4208
Parameter
POWER SUPPLIES
V
DD
1
V
DD
2
V
P
I
DD
(I
DD
1 + I
DD
2)
6
ADF4206
ADF4208
I
DD
1
ADF4206
ADF4208
I
DD
2
ADF4206
ADF4208
I
P
(I
P
1 + I
P
2)
Low Power Sleep Mode
NOISE CHARACTERISTICS
Normalized Phase Noise Floor
(RF1)
7
ADF4206
ADF4208
Phase Noise Performance
8
ADF4206 (RF1, RF2)
ADF4208 (RF1)
ADF4208 (RF1)
Spurious Signals
RF1, RF2 (20 kHz Loop B/W)
1
2
B Version
1
2.7/5.5
V
DD
1
V
DD
1/6.0
14
21
8
14
7.5
9
1
0.5
B Chips
2
2.7/5.5
V
DD
1
V
DD
1/6.0
14
21
8
14
7.5
9
1
0.5
Unit
V min/V max
V min/V max
mA max
mA max
mA max
mA max
mA max
mA max
mA max
μA typ
Test Conditions/Comments
V
DD
1, V
DD
2 ≤ V
P
1, V
P
2 ≤ 6.0 V
9.5 mA typical at V
DD
= 3 V, T
A
= 25°C
14 mA typical at V
DD
= 3 V, T
A
= 25°C
5.5 mA typical at V
DD
= 3 V, T
A
= 25°C
9 mA typical at V
DD
= 3 V, T
A
= 25°C
5 mA typical at V
DD
= 3 V, T
A
= 25°C
5.5 mA typical at V
DD
= 3 V, T
A
= 25°C
T
A
= 25°C
−213
−217
−92
−85
−91
−80/−84
−213
−217
−92
−85
−91
−80/−84
dBc/Hz typ
dBc/Hz typ
dBc/Hz typ
dBc/Hz typ
dBc/Hz typ
dB typ
@ VCO output
@ 540 MHz output, 200 kHz at PFD
@ 1750 MHz output, 200 kHz at PFD
@ 900 MHz output, 200 kHz at PFD
@ 200 kHz/400 kHz offsets and
200 kHz PFD
Operating temperature range for B version: −40°C to +85°C.
The B chip specifications are given as typical values.
3
This is the maximum operating frequency of the CMOS counters. The prescaler value should be chosen to ensure that the RF input is divided down to a frequency that
is less than this value.
4
AC coupling ensures AV
DD
/2 bias. V
DD
1 = V
DD
2 = 3 V; For V
DD
1 = V
DD
2 = 5 V, use CMOS-compatible levels.
5
Guaranteed by design. Sample tested to ensure compliance.
6
Typical values apply for V
DD
= 3 V; P = 32; RF1
IN
1/RF2
IN
2 for ADF4206 = 540 MHz; RF1
IN
1/RF2
IN
2 for ADF4208 = 900 MHz.
7
The synthesizer phase noise floor is estimated by measuring the in-band phase noise at the output of the VCO and subtracting 20 log N (where N is the N divider
value) and 10 log F
PFD
. PN
SYNTH
= PN
TOT
− 10 log F
PFD
− 20 log N.
8
The phase noise is measured at 1 kHz, unless otherwise noted. The phase noise is measured with the EVAL-ADF4206EB or the EVAL-ADF4208EB evaluation board and
the HP8562E spectrum analyzer. The spectrum analyzer provides the REFIN for the synthesizer (f
[i=s]This post was last edited by Hot Ximixiu on 2021-3-19 08:14[/i]I got a CH32V103 development board by chance. At first, I didn't make a detailed comparison between the two because of time constrai...
Disassemble the memory stick into particles and then put it back
sequence:
I have always had a special liking for memory sticks. The first host I equipped in 2014 was equipped with Kingston DDR3 1600M...
Zigbee is a global standard for low-power, self-healing, mesh networks that provide a complete and interoperable IoT solution for home and building automation. Zigbee networks can support hundreds of ...
There is still some confusion in the industry about the different roles of the three main sensors (camera, radar and LIDAR) in the car and how they each meet the sensing needs of advanced driver assis...
1. Introduction
With the widespread application of automotive electronic ignition technology, the requirements for various components of the electronic ignition system have also increased. As an imp...[Details]
The biggest change for Cambrian Technology in 2021 is its entry into the autonomous driving chip market. It is easy to understand why Cambrian is making autonomous driving chips: autonomous driving i...[Details]
Electric motors are commonly called motors, and they are found in many devices. This article will introduce asynchronous motors, torque motors, and the differences between torque motors and asynchr...[Details]
The device is available in TO-220AB, ITO-220AB and TO-263AB packages, with a wide current rating from 10A to 60A and a typical VF as low as 0.33V at 10A.
Recently, Vishay Intertechnology, Inc....[Details]
With the development of power systems and their automation, more and more power system equipment needs to adopt real-time monitoring and data acquisition to ensure that the power system equipment can ...[Details]
Some time ago, BMW announced that it will launch a remote paid upgrade service for future new cars, including heating, ACC (adaptive cruise control) and some in-car entertainment functions. Customers...[Details]
On December 29, Samsung officially announced that due to the epidemic, it will temporarily adjust the operations of its factory in Xi'an, China to protect the safety of employees as much as possible....[Details]
The kernel source directory currently used /home/S3-ARM/Part-4-CoreAndDriver/UP/subject3/lesson3/new/linux-mini2440/ Kernel source code compilation command make uImage ARCH=arm CROSS_COMPILE=arm-...[Details]
2.1.2.2 Shot Noise
In some devices, there is another kind of white noise that does not conform to the thermal noise model in (2-4) and is related to the carrier motion barrier in the active region ...[Details]
The pulse voltage on the collector of IGBT (Q1) is divided by R76+R77 and R53 and sent to the base of Q6. The sampled voltage is obtained at the emitter. This reflects the change of the voltage of Q1...[Details]
On October 11, the Qinghai Salt Lake Chuangrong Yellow River Hydropower Chaerhan Industrial Park 530,000-kilowatt source-grid-load-storage project started construction, marking another solid step forw...[Details]
From July 8th to 9th, NIDEC Control Techniques (hereinafter referred to as "NIDEC CT") held a conference titled "Focus on Driven, Embrace Challenges, and Dedicate to China" in Danzhai, Guizhou. 2023 ...[Details]
With the continuous progress of social production and the accelerating pace of people's lives, people are constantly putting forward new requirements for production efficiency. Due to the rapid dev...[Details]
UPS power supply can be divided into conversion type and parallel type according to the inverter combination mode. The main circuit block diagram of single-phase conversion type UPS power supply with...[Details]