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UG-1461 

ADMV1013-EVALZ

 User Guide

 

Rev. B | Page 14 of 19 

USB

R15

R16

100k

R0402

11

16

5

3

17

15
14

13

12

10

9

8

25
24
23
22
21
20
19
18

4

2

1

28
27

PAD

7

6

26

XU1

PIC18F24J50-I/ML

A

C

USB

LB L293-N1N2-25-Z (BLUE)

XC8

0.1µF

C0402

XR6

80.6

R1206

XC7

0.1µF

C0402

XC6

0.1µF

C0402

XC5

0.1µF

C0402

N

XC4

10µF

C3216

XC12

XR2

10k

R0603

6

5

4

3

2

1

XP1

PROGRAMMING HEADER

TSW-106-08-G-S

PGC

EN1

PGC

100k

R0402

USB_VCC

10µF

C0603

CS1

MISO
MOSI

SCK

USB_D–

3.3V

USB_D+

CS2

5

4

3

2

1

PAD4

PAD3

PAD2

PAD1

XP2

MUSB-05-F-AB-SM-A-R

USB_D–
USB_D+

USB_VCC

SHIELD

PINS

AGND

AGND

AGND

AGND

AGND

RC2_AN11_CTPLS_RP13

OSC2_CLKO_RA6

RC1_T1OSI_UOE_N_RP12

PAD

RA1_AN1_C2INA_RP1

RA0_AN0_C1INA_ULPWU_RP0

MCLR_N

RB7_KBI3_PGD_RP10

RB6_KBI2_PGC_RP9

RB5_KBI1_SDI1_SDA1_RP8

RB4_KBI0_SCK1_SCL1_RP7

RB3_AN9_CTEDG2_VPO_RP6

RB2_AN8_CTEDG1_VMO_REFO_RP5

RB1_AN10_RTCC_RP4

RB0_AN12_INT0_RP3

VDD

RC7_RX1_DT1_SDO1_RP18

RC6_TX1_CK1_RP17

RC5_D_POS_VP

RC4_D_NEG_VM

VUSB

RC0_T1OSO_T1CKI_RP11

OSC1_CLKI_RA7

VSS

RA5_AN4_SS1_N_HLVDIN_RCV_RP2

VDDCORE_VCAP

RA3_AN3_VREF_POS_C1INB

RA2_AN2_VREF_NEG_CVREF_C2INB

R13

10k

R0603

R20

0

R22

10k

R0603

R21

16

1

7

10

15

2

PAD

9

8

11

12

13

14

6

5

4

3

U1

C141

C0603

0.1µF

C140

0.1µF

C0603

EN1

SCK

3.3V

MISO

MOSI

CS1

3.3V

3.3V

FXL4TD245BQX

3.3V

3.3V

0

R0603

DNI

1.8V

SEN1

SEN2

SDI

SDO

SCLK

AGND

AGND

PAD

VCCB

T_R1_N

B0
B1
B2
B3

T_R2_N

OE_N

GND

T_R3_N

A3

A2

A1

A0

T_R0_N

VCCA

AGND

+P

AGND

AGND

AGND

17

268

-020

 

Figure 20. Microcontroller and Level Shifter Connections  

Summary of Contents for ADMV1013-EVALZ

Page 1: ...rporates the ADMV1013 with a microcontroller low dropout LDO regulators and the AD5601 nanoDAC to allow the quick and easy evaluation of the ADMV1013 The microcontroller allows the user to configure t...

Page 2: ...n Options 18 REVISION HISTORY 9 2019 Rev A to Rev B Changes to Equipment Needed Section and Software Needed Section 1 Changes to Figure 2 and Evaluation Board Hardware Section 3 Changes to Installing...

Page 3: ...LOP and LON are the inputs to the LO path Switch the LO path from differential to single ended or vice versa by setting the QUAD_SE_MODE Register 0x09 Bits 9 6 through the serial peripheral interface...

Page 4: ...013 EVALZ evaluation board In I Q mode connect the I_P I_N Q_N and Q_P inputs to the I Q baseband generator Plug the USB cable into the mini USB connector XP2to connect the PC to the ADMV1013 EVALZ ev...

Page 5: ...ER RF_OUT 5V DC GND DC POWER SUPPLY 180 HYBRID FOR DIFFERENTIAL LO RF FREQUENCY GENERATOR IF INPUT 90 HYBRID FOR SINGLE ENDED TO QUADRATURE IF INPUT RF FREQUENCY GENERATOR 17268 007 LO_P LO_N IF_I IF_...

Page 6: ...luation board 1 Go to the Evaluation Kits section of the ADMV1013 product page on www analog com 2 Click the ADMV1013 USB Driver link The ADMV1013 USB driver downloads automatically 3 In the folder wh...

Page 7: ...em tab then click the USB symbol on the ADMV1013 044718 RevA subsystem and then click Acquire This command allows the user to reconnect to the ADMV1013 EVALZ evaluation board This procedure may not be...

Page 8: ...sters of the device click Read All Label B When Auto Apply is highlighted in the ADMV1013 044718 Rev A tab the Apply Changes feature and the Read All feature continuously run every few seconds and the...

Page 9: ...own is highlighted the MIXER_PD bit is disabled and the mixer is powered down Q1 to Q2 Use the sideband nulling blocks as follows Use the scroll arrows or enter a value between 0 and 127 in the PHASE...

Page 10: ...JUST_IP box Label V1 and click Apply Changes to set the MXER_OFF_ADJ_I_P bits Bits 15 9 Register 0x07 Use the scroll arrows or enter a value between 0 and 127 in the OFFSET_ADJUST_IN box Label V2 and...

Page 11: ...externally through the test loop set the Power Down Modes box to 1 2 or 3 For more information on the different power down modes of the AD5601 nanoDAC see the AD5601 data sheet 17268 016 Figure 16 AD...

Page 12: ...w The hybrids and evaluation board RF traces have not been de embedded Figure 17 shows the results of an IF input of 1000 MHz at 10 dBm single tone mixed with a 7 GHz LO at 0 dBm to an RF output of 29...

Page 13: ...ND C16 10 F C15 0 01 F C14 100pF AGND AGND AGND 4 3 C19 10 F C18 0 01 F C17 100pF AGND AGND AGND C22 10 F C21 0 01 F C20 100pF AGND AGND AGND R9 1k R10 1k R23 0 C23 100pF C24 0 01 F C25 10 F AGND AGND...

Page 14: ...PAD RA1_AN1_C2INA_RP1 RA0_AN0_C1INA_ULPWU_RP0 MCLR_N RB7_KBI3_PGD_RP10 RB6_KBI2_PGC_RP9 RB5_KBI1_SDI1_SDA1_RP8 RB4_KBI0_SCK1_SCL1_RP7 RB3_AN9_CTEDG2_VPO_RP6 RB2_AN8_CTEDG1_VMO_REFO_RP5 RB1_AN10_RTCC_...

Page 15: ...F C0603 C46 4 7 F C0603 C47 0 001 F C0603 2 1 7 8 4 3 6 PAD 5 U4 ADM7172ACPZ 3 3 3 3V_1013 MOSI 1 8V 0 R0603 0 R0603 5V 5V 3 3V 0 R0603 3 3V 5V SCK CS2 0 R0603 VCTRL1 AGND AGND AGND EP VIN VIN GND EN...

Page 16: ...of 19 17268 024 NOTES 1 SILKSCREEN MIGHT BE SLIGHTLY DIFFERENT DEPENDING ON THE REVISION OF THE BOARD Figure 24 ADMV1013 EVALZ Evaluation Board Printed Circuit Board PCB Top Layer 17268 025 Figure 25...

Page 17: ...B Page 17 of 19 17268 026 Figure 26 ADMV1013 EVALZ Evaluation Board PCB Third Layer NOTES 1 SILKSCREEN MIGHT BE SLIGHTLY DIFFERENT DEPENDING ON THE REVISION OF THE BOARD 17268 027 Figure 27 ADMV1013 E...

Page 18: ...C39 C42 C45 10 F 3216 XC12 10 F 0603 C5 C44 C46 C48 C49 C51 4 7 F 0603 XC5 XC6 XC7 XC8 0 1 F 0402 C43 C47 C50 0 001 F 0603 C3 C12 C15 C18 C21 C24 C27 C30 C35 C38 C41 0 01 F 0402 C2 C11 C14 C17 C20 C2...

Page 19: ...arty for any reason Upon discontinuation of use of the Evaluation Board or termination of this Agreement Customer agrees to promptly return the Evaluation Board to ADI ADDITIONAL RESTRICTIONS Customer...

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