TUA 6030 Infineon Technologies, TUA 6030 Datasheet

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TUA 6030

Manufacturer Part Number
TUA 6030
Description
IC MIXER/OSC/PLL DIGITAL TSSOP38
Manufacturer
Infineon Technologies
Datasheet

Specifications of TUA 6030

Package / Case
38-TSSOP
Input
*
Output
*
Frequency - Max
*
Voltage - Supply
*
Operating Temperature
*
Mounting Type
Surface Mount
Frequency-max
*
Bus Type
I2C
Maximum Agc
0.5 dB
Maximum Frequency
863.25 MHz
Minimum Frequency
44.25 MHz
Modulation Technique
FM
Mounting Style
SMD/SMT
Function
PAL, NTSC
Noise Figure
8 dB
Operating Supply Voltage
5 V
Supply Voltage (min)
4.5 V
Supply Voltage (max)
5.5 V
Minimum Operating Temperature
- 10 C
Maximum Operating Temperature
+ 125 C
Packages
PG-TSSOP-38
Vs (min)
4.5 V
Vs (max)
5.5 V
Icc (max)
66.0 mA
Esd Protection (max)
2.0 kV
Mounting
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
SP000012954
TUA6030XT
Wireless Components
3-Band TV Tuner IC
TUA6030, TUA6032 Version 2.1
Specification July 2001

Related parts for TUA 6030

TUA 6030 Summary of contents

Page 1

Wireless Components 3-Band TV Tuner IC TUA6030, TUA6032 Version 2.1 Specification July 2001 ...

Page 2

Revision History: Current Version: Preliminary Data Sheet,V1.1, August 2000 Previous Version:Target Data Sheet, V1.0, November 1999 Page Page (in previous (in current Version) Version) all all Product Info Product Info 4-2 4-2 4-3 4-3 5-2 5-2 5-5 5-5 5-8,5-9, 5-10 ...

Page 3

... Components used in life-support devices or systems must be expressly authorized for such purpose! 1 Critical components of the Infineon Technologies AG, may only be used in life-support devices or systems Infineon Technologies AG critical component is a component used in a life-support device or system whose failure can reasonably be expected to cause the failure of that life- support device or system affect its safety or effectiveness of that device or system ...

Page 4

Product Info General Description The TUA6030, TUA6032 devices com- bine a mixer-oscillator block with a dig- itally programmable phase locked loop (PLL) for use in TV and VCR tuners. Features General Suitable for PAL/NTSC and Digital Video Broadcasting Wideband AGC ...

Page 5

Table of Contents 1 2 2.1 2.2 2.3 2.4 3 3.1 3.2 3.3 3.4 4 4-1 4-2 5 5.1 5.1.1 Absolute Maximum Ratings . . . . . . . . . . . . . . . . ...

Page 6

Output admittance (S22) of the of the Mixer output ( MHz) . 5-44 5.4.5 Output impedance (S22) of the IF amplifier ( MHz 5-45 5.5 5.5.1 Gain (GV) ...

Page 7

Product Description Contents of this Chapter 2.1 2.2 2.3 2.4 Wireless Components Overview . . . . . . . . . . . . . . . . . . . . . . . . . . ...

Page 8

Overview The TUA6030, TUA6032 devices combine a mixer-oscillator block with a digi- tally programmable phase locked loop (PLL) for use in TV and VCR tuners. The mixer-oscillator block includes three balanced mixers (one mixer with an unbalanced high-impedance input ...

Page 9

Short lock-in time High voltage VCO tuning output 4 PNP ports 3 NPN ports 1 NPN port/ADC input Internal LOW/MID/HIGH band switch Lock-in flag Programmable reference divider ratio (24, 64, 80, 128) Programmable charge pump current 2.3 Application The IC ...

Page 10

Package Outlines P-TSSOP-38 Wireless Components TUA6030, TUA6032 Product Description Specification, July 2001 ...

Page 11

Functional Description Contents of this Chapter 3.1 Pin Configuration . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ...

Page 12

Pin Configuration Figure 3-1 Figure 3-2 Wireless Components O SCLOW OUT 1 OSCLOWIN 2 OSCGND 3 OSCMIDIN 4 O SCMIDOUT 5 O SCHIGHIN 6 OSCHIG HOUT 7 OSCHIG HOUT 8 O SCHIGHIN 9 TUA6030 VCC 10 IFGND 11 IFOUT ...

Page 13

Pin Definition and Function Remark: First Table 3-1 Pin Definition and Function Pin Symbol No. OSCLOWOUT 1/38 2/37 OSCLOWIN 2/37 3/36 OSCGND oscillator ground OSCMIDIN 4/35 OSCMIDOUT 4/35 5/34 Wireless Components pin number refers to TUA6030, second to TUA6032 ...

Page 14

Table 3-1 Pin Definition and Function (continued) Pin Symbol No. 6/33 OSCHIGHIN 7/32 OSCHIGOUT 7/32 8/31 OSCHIGOUT 6/33 9/30 OSCHIGHIN 10/29 VCC supply voltage 11/28 IFGND IF ground 12/27 IFOUT 13/26 IFOUT 12/27 14/25 PLLGND PLL ground 15/24 VT 15/24 ...

Page 15

Table 3-1 Pin Definition and Function (continued) Pin Symbol No. 17/22 P5 18/21 P7 19/20 XTAL 20/19 P6/ADC 20/19 21/18 P4 22/17 P3 23/16 P0 24/15 P1 Wireless Components Equivalent I/O-Schematic 17/22 or 18/21 19/20 21/18 22/17 or 23/16 or ...

Page 16

Table 3-1 Pin Definition and Function (continued) Pin Symbol No. 25/14 AS 26/13 SCL 27/12 SDA 27/12 28/11 GND ground Wireless Components Equivalent I/O-Schematic 25/14 26/ TUA6030, TUA6032 Functional Description Average DC voltage LOW MID HIGH V ...

Page 17

Table 3-1 Pin Definition and Function (continued) Pin Symbol No. 29/10 AGC 30/9 P2 31/8 MIXOUT 31/8 32/7 MIXOUT 33/6 RFGND IF ground 34/5 LOWIN 34/5 Wireless Components Equivalent I/O-Schematic 29/10 30/9 32/7 Oscillator TUA6030, TUA6032 Functional ...

Page 18

Table 3-1 Pin Definition and Function (continued) Pin Symbol No. 35/4 MIDIN 35/4 36/3 MIDIN 37/2 HIGHIN 37/2 38/1 HIGHIN Wireless Components Equivalent I/O-Schematic 36/3 38 TUA6030, TUA6032 Functional Description Average DC voltage LOW MID HIGH 0.75 ...

Page 19

Block Diagram Remark: First 1/38 Oscillator LOW 2/ 4/35 Oscillator MID 5/ Oscillator HIGH 7/ 32 8/31 P0. 10/ 29 11/ 28 12/27 13/26 14/ 25 Charge Pump 15/ ...

Page 20

Circuit Description 3.4.1 Mixer-Oscillator block The mixer-oscillator block includes three balanced mixers (one mixer with an unbalanced high-impedance input and two mixers with a balanced low-imped- ance input), two 2-pin asymmetrical oscillators for the LOW and the MID band, ...

Page 21

By means of control bit CP the pump current can be switched between two val- ues by software. This programmability permits alteration of the control response of the PLL in the locked-in state. In this way different VCO gains can ...

Page 22

SCL remains high. All further information transfer takes place during SCL = low, and the data is forwarded to the control logic on the positive clock edge. The table ’Bit Allocation’ ( should be referred to for the following description. ...

Page 23

Applications Contents of this Chapter 4.1 4-1 4-2 Wireless Components Circuits . . . . . . . . . . . . . . . . . . . . . . . . . . . . ...

Page 24

Circuits Remark: Pinning refers to TUA6030 BB659C 2k7 100p 12 BB659C 2k7 82p 8R2 12p 1k8 L3 BB659C 1k8 + 5 V 4n7 IFOUT trans- former 2:10 TOKO 7KL600 47n GCS-A1010DX 560 + 33 V 33k 100n P5 4n7 ...

Page 25

Remark: Pinning refers to TUA6030 BB659C 2k7 100p 12 BB659C 2k7 82p 8R2 15p 1k8 L3 BB565 1k8 + 5 V 4n7 IFOUT trans- former 2:10 TOKO 7KL600 47n GCS-A1010DX 560 + 33 V 33k 100n P5 4n7 P7 4n7 ...

Page 26

Reference Contents of this Chapter 5.1 5.1.1 Absolute Maximum Ratings . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ...

Page 27

Electrical Data 5.1.1 Absolute Maximum Ratings WARNING The maximum ratings may not be exceeded under any circumstances, not even momentarily and individually, as permanent damage to the IC may result. Table 5-1 Absolute Maximum Ratings, ambient temperature T 1). ...

Page 28

Table 5-1 Absolute Maximum Ratings, ambient temperature T 1.) Parameter NPN port output voltage NPN port output current P6/ADC input/output voltage NPN port output current PNP port output voltage PNP port output current PNP port output current PNP port output ...

Page 29

Operating Range Within the operational range the IC operates as described in the circuit description. The characteristic limits are not guaranteed. Table 5-2 Operating Range Parameter Supply voltage Programmable divider factor LOW mixer input frequency range ...

Page 30

AC/DC Characteristics Table 5-3 AC/DC Characteristics with T Symbol Supply Supply voltage V CC Current consumption I VCC I VCC I VCC Digital Part PLL Crystal oscillator connections XTAL Crystal frequency f XTAL Crystal resistance R Q Input impedance ...

Page 31

Table 5-3 AC/DC Characteristics with T Symbol Low-level input current Bus output SDA (open collector) Leakage current I OH Low-level output voltage V OL Low-level output voltage V OL Edge speed SCL,SDA Rise time t r ...

Page 32

Table 5-3 AC/DC Characteristics with T Symbol Output saturation V PL2 ,3 voltage ports 2, 3 NPN port outputs P4, P5, P6, P7 (open collector) Output leakage current I POH4to7 Output saturation voltage V PL04to7 ADC input ADC input voltage ...

Page 33

Table 5-3 AC/DC Characteristics with T Symbol Channel A-5 beat INT A-5 Channel CH6 color beat INT CH6 RF input level without V i lock-out Input conductance Input capacitance C MixV Mid band mixer mode (P0 ...

Page 34

Table 5-3 AC/DC Characteristics with T Symbol 750 Hz Pulling input level without V i lock-out Input impedance HIGH ...

Page 35

Table 5-3 AC/DC Characteristics with T Symbol RF input level without V i lock-out Input impedance LOW band oscillator, Chapter 4 Oscillator ...

Page 36

Table 5-3 AC/DC Characteristics with T Symbol Ripple susceptibility of V RSC P HIGH band oscillator, Chapter 4 Oscillator frequency f OSC Oscillator frequency shift f OSC(V) f OSC(V) Oscillator frequency drift f OSC(T) Oscillator frequency drift f OSC(t) Phase ...

Page 37

Table 5-3 AC/DC Characteristics with T Symbol Source current 1 AGC fast Source current 2 AGC slow Peak sink to ground AGC peak AGC output voltage V AGCmax AGC output voltage V AGCmin RF voltage range to AGC SLIP switch ...

Page 38

The switch-on drift is defined as a change in oscillator frequency between 5 s and 15 min after switch-on. The oscillator is free running during this measurement. 14). The supply ripple susceptibility is measured in the application board (Chapter ...

Page 39

Programming Table 5-4 Bit Allocation Read / Write Name Byte Write Data Address Byte ADB Divider Byte 1 DB1 Divider Byte 2 DB2 Control byte CB Bandswitch byte BB 1). AB Auxiliary byte Read data Address byte ADB Status ...

Page 40

Table 5-5 Description of Symbols AL0, AL1, AL2 AGC take-over point bits POR Power-on reset flag; POR =1 at power-on FL PLL lock flag bit = 1: loop is locked AGC internal AGC flag. AGC=1 when internal AGC is active ...

Page 41

Table 5-9 AGC take-over point 103 dBµ External AGC AGC 3.5 V Disabled 1). The AGC detector is disabled. Both the sinking and sourcing current from the IC is disabled. The AGC out- put goes into a ...

Page 42

Start Addressing 1 MA1 MA0 R/W Telegram examples: Start-ADB-DB1-DB2-CB-BB-Stop Start-ADB-DB1-DB2-CB-AB-Stop Start-ADB-CB-BB-DB1-DB2-Stop Start-ADB-CB-AB-DB1-DB2-Stop Start-ADB-DB1-DB2-DB1-DB2-Stop Start-ADB-DB1-DB2-Stop Start-ADB-CB-BB-Stop Start-ADB-CB-AB-Stop Start-ADB-CB-BB-CB-AB-Stop Start-ADB-CB-AB-CB-BB-Stop 1st Byte Ack. 2nd Byte Ack. 3rd Byte Ack. Abbreviations: Start= start condition ADB= address byte DB1= prog. ...

Page 43

Electrical Diagrams 5.4.1 Input admittance (S11) of the LOW band mixer (40 to 140 MHz 20mS 0 5.4.2 Input impedance (S11) of the MID band mixer (150 to 455 MHz Wireless Components 455 ...

Page 44

Input impedance (S11) of the HIGH band mixer (450 to 865 MHz 5.4.4 Output admittance (S22) of the of the Mixer output ( MHz 20mS 0 Wireless Components 865 MHz 450 ...

Page 45

Output impedance (S22) of the IF amplifier ( MHz Wireless Components 38.9 MHz TUA6030, TUA6032 Reference Specification, July 2001 ...

Page 46

Measurement Circuits 5.5.1 Gain ( meas V 50 RMS Votmeter 5.5.2 Gain ( meas RMS Votmeter Wireless Components ...

Page 47

Matching circuit for optimum noise figure in LOW band 22p In 7 turns 22p wire coil For MHz RF loss = 0 dB image suppression = 16 dB 5.5.4 Noise figure (NF) measurement in LOW band ...

Page 48

Noise figure (NF) measurement in MID and HIGH bands Noise Source Balun 1:1 loss of balun = NFmeas - loss of balun (dB) 5.5.6 Cross modulation measurement in LOW band V RMS unwanted Votmeter signal ...

Page 49

Cross modulation measurement in MID and HIGH bands V V meas RMS unwanted Votmeter signal source Hybrid wanted signal 50 source V’ meas wanted output signal at ...

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