MAX2852ITK+ Maxim Integrated Products, MAX2852ITK+ Datasheet

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MAX2852ITK+

Manufacturer Part Number
MAX2852ITK+
Description
RF Receiver 5GHz Receiver 5GHz Receiver
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX2852ITK+

Lead Free Status / RoHS Status
Lead free / RoHS Compliant
19-5010; Rev 1; 3/10
The MAX2852 is a single-chip RF receiver IC designed
for 5GHz wireless HDMI applications. The IC includes
all circuitry required to implement the complete receiver
function and crystal oscillator, providing a fully integrated
transmit path, VCO, frequency synthesis, and baseband/
control interface. It includes a fast-settling, sigma-delta
RF fractional synthesizer with 76Hz frequency program-
ming step size. The IC also integrates on-chip I/Q ampli-
tude and phase-error calibration circuits.
The receiver includes both an in-channel RSSI and an
RF RSSI.
The receiver chip is housed in a small, 68-pin thin QFN
leadless plastic package with exposed pad.
SPI is a trademark of Motorola, Inc.
HDMI is a trademark of HDMI Licensing, LLC.
WiMAX is a trademark of WiMAX Forum.
For pricing, delivery, and ordering information, please contact Maxim Direct at 1-888-629-4642,
or visit Maxim’s website at www.maxim-ic.com.
5GHz Wireless HDMIK (WHDI)
5GHz FDD Backhaul and WiMAXK
_______________________________________________________________ Maxim Integrated Products 1
General Description
Applications
Typical Operating Circuit appears at end of data sheet.
S 5GHz Single IEEE 802.11a Receiver
S +2.7V to +3.6V Supply Voltage
S Small, 68-Pin Thin QFN Package (10mm x 10mm)
*EP = Exposed pad.
+Denotes a lead(Pb)-free/RoHS-compliant package.
MAX2852ITK+
4900MHz to 5900MHz Frequency Range
4.5dB Rx Noise Figure
70dB Rx Gain-Control Range with 2dB Step
60dB Dynamic Range Receiver RSSI
RF Wideband Receiver RSSI
Programmable 20MHz/40MHz Rx I/Q Lowpass
Sigma-Delta Fractional-N PLL with 76Hz
Monolithic Low-Noise VCO with -35dBc
4-Wire SPI™ Digital Interface
I/Q Analog Baseband Interface
On-Chip Digital Temperature Sensor Readout
Complete Baseband Interface
Size, Digitally Controlled
Channel Filters
Resolution
Integrated Phase Noise
PART
5GHz Receiver
Ordering Information
-25NC to +85NC
TEMP RANGE
68 Thin QFN-EP*
PIN-PACKAGE
Features

Related parts for MAX2852ITK+

MAX2852ITK+ Summary of contents

Page 1

... On-Chip Digital Temperature Sensor Readout Complete Baseband Interface S +2.7V to +3.6V Supply Voltage S Small, 68-Pin Thin QFN Package (10mm x 10mm) Ordering Information PART TEMP RANGE MAX2852ITK+ -25NC to +85NC *EP = Exposed pad. +Denotes a lead(Pb)-free/RoHS-compliant package. Typical Operating Circuit appears at end of data sheet. Features PIN-PACKAGE ...

Page 2

Receiver ABSOLUTE MAXIMUM RATINGS V Pins to GND ................................................-0.3V to +3.9V CC_ RF Inputs Maximum Current: RXRF+, RXRF- to GND ................................................................-1mA to +1mA RF Outputs: TXRF+, TXRF- to GND .....................-0.3V to +3.9V Analog Inputs: TXBBI+, TXBBI-, TXBBQ+, TXBBQ-, XTAL ...

Page 3

DC ELECTRICAL CHARACTERISTICS (continued) (Operating conditions, unless otherwise specified DIN = low, transmitter in maximum gain, T using the Typical Operating Circuit. 100mV calibration mode. Typical values measured at V 40MHz. PA control pins open circuit, V PARAMETER ...

Page 4

Receiver AC ELECTRICAL CHARACTERISTICS—Rx MODE (continued) (Operating conditions, unless otherwise specified 5.35GHz. Reference frequency = 40MHz, ENABLE = high high, SCLK = DIN = low, with power matching at RXRF+ and RXRF- differential ports using ...

Page 5

AC ELECTRICAL CHARACTERISTICS—Rx MODE (continued) (Operating conditions, unless otherwise specified 5.35GHz. Reference frequency = 40MHz, ENABLE = high high, SCLK = DIN = low, with power matching at RXRF+ and RXRF- differential ports using the Typical ...

Page 6

Receiver AC ELECTRICAL CHARACTERISTICS—Tx CALIBRATION MODE (Operating conditions, unless otherwise specified 5.35GHz. Reference frequency = 40MHz, ENABLE = high high, SCLK = DIN = low, with power matching at TXRF+ and TXRF- differential ports using ...

Page 7

AC ELECTRICAL CHARACTERISTICS—MISCELLANEOUS BLOCKS (Operating conditions, unless otherwise specified high high, SCLK = DIN = low. Typical values measured at V PARAMETER ON-CHIP TEMPERATURE SENSOR Read-out at DOUT pin through Digital Output Code Main address 3 ...

Page 8

Receiver AC ELECTRICAL CHARACTERISTICS—TIMING (continued) (Operating conditions, unless otherwise specified: V frequency = 40MHz, ENABLE = high high, SCLK = DIN = low. Typical values measured at V 5.35GHz +25NC.) (Note 1) A PARAMETER SYMBOL ...

Page 9

CS = high, SCLK = DIN = low 20MHz, Tx output at 50I unbalanced output REF balun +25NC, using the MAX2852 Evaluation Kit.) ...

Page 10

Receiver (V = 2.8V 5.35GHz 40MHz high, SCLK = DIN = low 20MHz, Tx output at 50I unbalanced output REF balun +25NC, using the MAX2852 ...

Page 11

CS = high, SCLK = DIN = low 20MHz, Tx output at 50I unbalanced output REF balun +25NC, using the MAX2852 Evaluation Kit.) ...

Page 12

Receiver (V = 2.8V 5.35GHz 40MHz high, SCLK = DIN = low 20MHz, Tx output at 50I unbalanced output REF balun +25NC, using the MAX2852 ...

Page 13

CS = high, SCLK = DIN = low 20MHz, Tx output at 50I unbalanced output REF balun +25NC, using the MAX2852 Evaluation Kit.) ...

Page 14

Receiver (V = 2.8V 5.35GHz 40MHz high, SCLK = DIN = low 20MHz, Tx output at 50I unbalanced output REF balun +25NC, using the MAX2852 ...

Page 15

TOP VIEW CC_XTAL XTAL 53 N.C. 54 ENABLE 55 N.C. 56 N.C. 57 N. CC_BB1 N.C. ...

Page 16

Receiver PIN NAME 10, 12, 13, V Supply Voltage CC 16, 66 11, 14, 19, 22, 35–38, 54, N.C. No Connection 56–59, 61–65 15, 18 GND Ground 17 ...

Page 17

PIN NAME 53 XTAL Crystal Oscillator Base Input. AC-couple crystal unit to this pin. 55 ENABLE Enable Logic Input 60 V Receiver Baseband Supply Voltage 1. Bypass with a capacitor as close as possible to the pin. CC_BB1 Exposed Paddle. ...

Page 18

Receiver The AM detector multiplies the Tx RF output signal with itself. The self-mixing product of the wanted sideband becomes DC voltage and is filtered on-chip. The mixing product between wanted sideband and the carrier leak- age forms Ftone ...

Page 19

CS t CSO t CSS SCLK DIN (SPI WRITE) DIN (SPI READ) DOUT (SPI READ) Figure 1. 4-Wire SPI Serial-Interface Timing Diagram (All values in the register summary table are typical numbers. The MAX2852 SPI does not have a power-on-default ...

Page 20

Receiver Table 2. Register Summary (continued) READ/WRITE AND ADDRESS REGISTER Main0_ WRITE (W)/ A4: READ (R) Main4 0 00100 Reserved W/R RESERVED Main5 0 00101 Default Main6 0 00110 Reserved Main7 0 00111 Reserved Main8 0 01000 ...

Page 21

Table 2. Register Summary (continued) READ/WRITE AND ADDRESS REGISTER Main0_ WRITE (W)/ A4:A0 D0 READ (R) Main29 0 11101 Reserved Main30 0 11110 Reserved Main31 0 11111 Reserved Local1 1 00001 Reserved Local2 1 00010 Reserved Local3 1 00011 Reserved ...

Page 22

Receiver Table 3. Main Address 0: (A4:A0 = 00000) BIT LOCATION BIT NAME (D0 = LSB) RESERVED D9:D5 MODE<2:0> D4:D2 RFBW M/L_SEL Table 4. Main Address 1: (A4:A0 = 00001, Main Address BIT LOCATION BIT ...

Page 23

Table 5. Main Address 2: (A4:A0 = 00010, Main Address BIT LOCATION BIT NAME (D0 = LSB) RESERVED D9:D7 LNA_BAND<1:0> D6:D5 RESERVED D4:D0 Table 6. Main Address 3: (A4:A0 = 00011, Main Address ...

Page 24

Receiver Table 8. Main Address 9: (A4:A0 = 01001, Main Address BIT LOCATION BIT NAME (D0 = LSB) TX_GAIN<5:0> D9:D4 RESERVED D3:D0 Table 9. Main Address 14: (A4:A0 = 01110, Main Address ...

Page 25

Table 12. Main Address 17: (A4:A0 = 10001, Main Address BIT LOCATION BIT NAME (D0 = LSB) SYN_CONFIG_F<19:10> D9:D0 Table 13. Main Address 18: (A4:A0 = 10010, Main Address BIT LOCATION BIT ...

Page 26

Receiver Table 15. Main Address 21: (A4:A0 = 10101, Main Address BIT LOCATION BIT NAME (D0 = LSB) RESERVED D9:D0 DIE_ID<2:0> D7:D5 (Readback Only) Table 16. Main Address 27: (A4:A0 = 11011, Main Address 0 ...

Page 27

1nF 1nF N.C 3 GND 0.1µ 1nF GND 7 AMD+/- N. DETECTOR 1nF 1nF ...

Page 28

... Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are implied. Maxim reserves the right to change the circuitry and specifications without notice at any time. Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 408-737-7600 28 2010 Maxim Integrated Products © ...

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