TDA9884TS/V1,112 NXP Semiconductors, TDA9884TS/V1,112 Datasheet

IC IF-PLL I2C-BUS DEMOD 24-SSOP

TDA9884TS/V1,112

Manufacturer Part Number
TDA9884TS/V1,112
Description
IC IF-PLL I2C-BUS DEMOD 24-SSOP
Manufacturer
NXP Semiconductors
Type
Demodulatorr
Datasheet

Specifications of TDA9884TS/V1,112

Package / Case
*
Applications
Mobile Reception
Mounting Type
Surface Mount
Maximum Operating Temperature
+ 70 C
Minimum Operating Temperature
- 20 C
Mounting Style
SMD/SMT
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
935270308112
TDA9884TS/V1
TDA9884TS/V1
1. General description
2. Features
The TDA9884 is an alignment-free multistandard (PAL, SECAM and NTSC) vision and
sound IF signal PLL demodulator for positive and negative modulation, including sound
AM and FM processing.
The device is specially prepared for mobile TV applications.
I
I
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I
I
I
I
I
I
I
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TDA9884
I
mobile reception
Rev. 02 — 12 May 2006
5 V supply voltage
Gain controlled wide-band VIF amplifier, AC-coupled
Multistandard true synchronous demodulation with active carrier regeneration: very
linear demodulation, good intermodulation figures, reduced harmonics, and excellent
pulse response
Gated phase detector for L and L-accent standard
Fully integrated VIF VCO, alignment-free, frequencies switchable for all negative and
positive modulated standards via I
Digital acquisition help, VIF frequencies of 33.4 MHz, 33.9 MHz, 38.0 MHz, 38.9 MHz,
45.75 MHz and 58.75 MHz
4 MHz reference frequency input: signal from PLL tuning system or operating as
crystal oscillator
VIF AGC detector for gain control, operating as peak sync detector for negative
modulated signals and as a peak white detector for positive modulated signals
Mobile mode for negative modulation AGC (VIF and SIF) provides very fast reaction
time
External AGC setting via pin AGCSW; VIF-AGC and SIF-AGC monitor outputs
Precise fully digital AFC detector with 4-bit digital-to-analog converter; AFC bits
readable via I
TOP adjustable via I
Fully integrated sound carrier trap for 4.5 MHz, 5.5 MHz, 6.0 MHz and 6.5 MHz;
controlled by FM-PLL oscillator
SIF input for single reference QSS mode; PLL controlled
True split sound mode for sound demodulation at low RF level
SIF-AGC for gain controlled SIF amplifier, single reference QSS mixer able to operate
in high performance single reference QSS mode and in intercarrier mode, switchable
via I
AM demodulator without extra reference circuit
Alignment-free selective FM-PLL demodulator with high linearity and low noise
2
C-bus controlled multistandard alignment-free IF-PLL for
2
C-bus
2
C-bus
2
C-bus or alternatively with potentiometer
2
C-bus
Product data sheet

Related parts for TDA9884TS/V1,112

TDA9884TS/V1,112 Summary of contents

Page 1

TDA9884 2 I C-bus controlled multistandard alignment-free IF-PLL for mobile reception Rev. 02 — 12 May 2006 1. General description The TDA9884 is an alignment-free multistandard (PAL, SECAM and NTSC) vision and sound IF signal PLL demodulator for positive and ...

Page 2

Philips Semiconductors I Four selectable C-bus control for all functions C-bus transceiver with pin programmable MAD 3. Quick reference data Table 1. Quick reference data Symbol Parameter V supply voltage P I supply ...

Page 3

Philips Semiconductors Table 1. Quick reference data Symbol Parameter AFC AFC control steepness stps Audio part V AF output voltage (RMS value) o(AF)(rms) THD total harmonic distortion bandwidth AF( 3dB) S/N weighted signal-to-noise ratio of W(AF) ...

Page 4

Philips Semiconductors 4. Ordering information Table 2. Ordering information Type number Package Name TDA9884TS SSOP24 TDA9884HN HVQFN32 TDA9884_2 Product data sheet 2 I C-bus controlled multistandard alignment-free IF-PLL Description plastic shrink small outline package; 24 leads; body width 5.3 mm ...

Page 5

C VAGC(pos) TOP TAGC VAGC 9 (8) 14 (15) 16 (17 pin AGC(neg) BL OP2 TUNER AGC VIF-AGC VIF2 2 (31) VIF-PLL 1 (30) VIF1 SINGLE REFERENCE QSS MIXER SIF2 24 (27) INTERCARRIER MIXER AND AM DEMODULATOR ...

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Philips Semiconductors 6. Pinning information 6.1 Pinning Fig 2. Pin configuration for SOT340-1 (SSOP24) Fig 3. Pin configuration for SOT617-3 (HVQFN32) 6.2 Pin description Table 3. Symbol VIF1 VIF2 n.c. OP1 TDA9884_2 Product data sheet 2 I C-bus controlled multistandard ...

Page 7

Philips Semiconductors Table 3. Symbol FMPLL DEEM AFD DGND n.c. AUD TOP SDA SCL SIOMAD n.c. n.c. AGCSW TAGC REF VAGC CVBS n.c. AGND VPLL V P AFC OP2 n.c. SIF1 SIF2 n.c. n.c. 7. Functional description Figure 1 functional ...

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Philips Semiconductors • FPLL detector • VCO and divider • AFC and digital acquisition help • Video demodulator and amplifier • Sound carrier trap • SIF amplifier • SIF-AGC detector • Single reference QSS mixer • AM demodulator • FM ...

Page 9

Philips Semiconductors very long time constant for VIF gain increase is because the peak white level may appear only once in a field. In order to reduce this time constant, an additional level detector increases the discharging current of the ...

Page 10

Philips Semiconductors The gate time as well as the control logic of the acquisition help circuit is dependent on the precision of the reference signal at pin REF. Operation as a crystal oscillator is possible as well as connecting this ...

Page 11

Philips Semiconductors 7.10 SIF-AGC detector SIF gain control is performed by the detection of the DC component of the AM demodulator output signal. This DC signal corresponds directly to the SIF voltage at the output of the SIF amplifier so ...

Page 12

Philips Semiconductors 7.13 FM demodulator and acquisition help The narrow-band FM-PLL detector consists of: • Gain controlled FM amplifier and AGC detector • Narrow-band PLL The intercarrier signal from the intercarrier mixer is fed to the input of an AC-coupled ...

Page 13

Philips Semiconductors Switching to the mute state is controlled automatically, dependent on the digital acquisition help in case the VCO of the FM-PLL is not in the required frequency window. This is done by a time constant: fast for switching ...

Page 14

Philips Semiconductors C-bus control 8.1 Read format Table 5. S Byte R/W slave address Table 6. Symbol S Slave address R Data AN P The master ...

Page 15

Philips Semiconductors Table 9. Symbol AFCWIN VIFLEV CARRDET AFC[4:1] PONR [ input is applied, then bit AFCWIN = 1 due to the fact that the VCO is forced to the AFC window border for fast lock-in behavior. ...

Page 16

Philips Semiconductors 8.2 Write format Table 11. S Byte slave address [1] The auto-increment of the subaddress stops if the subaddress is 3. Table 12. Symbol S Slave address R Subaddress (SAD) Data ...

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Philips Semiconductors Table 14. Bit B5 B4 and [1] For positive AM TV choose 6.5 MHz for the second SIF. [2] SIF-AGC monitor output at pin AFC. [3] AGC (VIF/SIF) provides very fast reaction time. 8.2.3 ...

Page 18

Philips Semiconductors Table 16. Bit [1] 0 ...

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Philips Semiconductors 8.2.4 Data byte for data mode Table 17. Bit and E0 Table 18. Function Bit Pin OP1 Pin OP2 Gain [1] The corresponding port function has to be ...

Page 20

Philips Semiconductors Table 20. TV standard M/N B/G I D/K Table 21. Register Switching mode Adjust mode Data mode Table 22. Register Switching mode Adjust mode Data mode For selection of the different NTSC standards without I pin SIOMAD is ...

Page 21

Philips Semiconductors 10. Thermal characteristics Table 24. Thermal characteristics Symbol Parameter R thermal resistance from junction to ambient th(j-a) TDA9884TS (SSOP24) TDA9884HN (HVQFN32) 11. Characteristics Table 25. Characteristics see Table 27 P ...

Page 22

Philips Semiconductors Table 25. Characteristics …continued see Table 27 P amb f = 33.4 MHz; PC/ dB input from 50 via broadband transformer video ...

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Philips Semiconductors Table 25. Characteristics …continued see Table 27 P amb f = 33.4 MHz; PC/ dB input from 50 via broadband transformer video ...

Page 24

Philips Semiconductors Table 25. Characteristics …continued see Table 27 P amb f = 33.4 MHz; PC/ dB input from 50 via broadband transformer video ...

Page 25

Philips Semiconductors Table 25. Characteristics …continued see Table 27 P amb f = 33.4 MHz; PC/ dB input from 50 via broadband transformer video ...

Page 26

Philips Semiconductors Table 25. Characteristics …continued see Table 27 P amb f = 33.4 MHz; PC/ dB input from 50 via broadband transformer video ...

Page 27

Philips Semiconductors Table 25. Characteristics …continued see Table 27 P amb f = 33.4 MHz; PC/ dB input from 50 via broadband transformer video ...

Page 28

Philips Semiconductors Table 25. Characteristics …continued see Table 27 P amb f = 33.4 MHz; PC/ dB input from 50 via broadband transformer video ...

Page 29

Philips Semiconductors Table 25. Characteristics …continued see Table 27 P amb f = 33.4 MHz; PC/ dB input from 50 via broadband transformer video ...

Page 30

Philips Semiconductors Table 25. Characteristics …continued see Table 27 P amb f = 33.4 MHz; PC/ dB input from 50 via broadband transformer video ...

Page 31

Philips Semiconductors Table 25. Characteristics …continued see Table 27 P amb f = 33.4 MHz; PC/ dB input from 50 via broadband transformer video ...

Page 32

Philips Semiconductors Table 25. Characteristics …continued see Table 27 P amb f = 33.4 MHz; PC/ dB input from 50 via broadband transformer video ...

Page 33

Philips Semiconductors Table 25. Characteristics …continued see Table 27 P amb f = 33.4 MHz; PC/ dB input from 50 via broadband transformer video ...

Page 34

Philips Semiconductors Table 25. Characteristics …continued see Table 27 P amb f = 33.4 MHz; PC/ dB input from 50 via broadband transformer video ...

Page 35

Philips Semiconductors Table 25. Characteristics …continued see Table 27 P amb f = 33.4 MHz; PC/ dB input from 50 via broadband transformer video ...

Page 36

Philips Semiconductors [5] Loop bandwidth kHz (damping factor d = 1.9; calculated with sync level within gain control range). Calculation of the VIF-PLL filter can be done by use of the following formulae: rad Hz -------- - ...

Page 37

Philips Semiconductors [25] Measured with an FM deviation of 25 kHz and the typical AF output voltage of 500 mV (RMS). The AF output signal can be attenuated 250 mV (RMS) via the I reduced in ...

Page 38

Philips Semiconductors 110 V i (dB V) 100 ( i(VIF) ( true split sound mode. i(SIF) Fig 4. Typical tuner takeover point as a function of ...

Page 39

Philips Semiconductors AFC TDA9884 21 (23) Pin numbers for TDA9884HN in parentheses. Fig 7. Typical analog AFC characteristic TDA9884 Fig 8. Ripple rejection condition 2.72 V 2.6 V 1.83 V 1.5 V ...

Page 40

Philips Semiconductors (1) V (2) I (3) I (4) I Fig 10. Typical VIF and tuner AGC characteristic (1) V (2) I (3) I (4) I Fig 11. Typical SIF and tuner AGC characteristic TDA9884_2 Product data sheet 2 I ...

Page 41

Philips Semiconductors 10 0 S/N W (dB Conditions: PC/SC ratio measured at pins VIF1 and VIF2; via transformer; 27 kHz FM deviation de-emphasis. (1) Signal. (2) Noise ...

Page 42

Philips Semiconductors THD (%) Fig 14. Typical total harmonic distortion as a function of audio frequency at AM standard TDA9884_2 Product data sheet 2 I C-bus controlled multistandard alignment-free IF-PLL 1.5 1.0 0 ...

Page 43

Philips Semiconductors antenna input (dB V) (1) Depends on TOP. Fig 15. Front-end level diagram TDA9884_2 Product data sheet 2 I C-bus controlled multistandard alignment-free IF-PLL 140 120 (1) 100 80 tuning gain control range ...

Page 44

Philips Semiconductors 10 H(s) (dB Fig 16. Typical amplitude response for sound trap at M/N standard (including Korea) 400 group delay (ns) 300 200 100 0 100 0 0.5 Overall delay is not shown, ...

Page 45

Philips Semiconductors 10 H(s) (dB Fig 18. Typical amplitude response for sound trap at B/G standard 400 group delay (ns) 300 200 100 0 100 0 0.5 1 Overall delay is not shown, here ...

Page 46

Philips Semiconductors Fig 20. Typical amplitude response for sound trap at I standard Fig 21. Typical amplitude response for sound trap at D/K standard TDA9884_2 Product data sheet 2 I C-bus controlled multistandard alignment-free IF-PLL 10 H(s) (dB ...

Page 47

680 220 k BC847C BA277 BA277 1 5 VIF-AGC SAW FILTER 2 4 K9456 BA277 3 6.8 6 SIF2 SIF1 24 23 (27) (26 ...

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VIF-AGC SIF : 1 1 input ( 150 k 150 k SIF2 SIF1 OP2 (27) (26) (24) (30) (31) ( VIF1 VIF2 OP1 VIF : 1 1 input 51 optional ...

Page 49

Philips Semiconductors Table 28. Option R2 and R3 not used 150 k [ R/W selection bit. TDA9884_2 Product data sheet 2 I C-bus controlled multistandard alignment-free IF-PLL 2 [1] I C-bus address selection R1 ...

Page 50

Philips Semiconductors 14. Package outline SSOP24: plastic shrink small outline package; 24 leads; body width 5 pin 1 index 1 DIMENSIONS (mm are the original dimensions) A UNIT max. 0.21 ...

Page 51

Philips Semiconductors HVQFN32: plastic thermal enhanced very thin quad flat package; no leads; 32 terminals; body 0.85 mm terminal 1 index area terminal 1 32 index area DIMENSIONS (mm ...

Page 52

Philips Semiconductors 15. Soldering 15.1 Introduction to soldering surface mount packages This text gives a very brief insight to a complex technology. A more in-depth account of soldering ICs can be found in our Data Handbook IC26; Integrated Circuit Packages ...

Page 53

Philips Semiconductors – smaller than 1.27 mm, the footprint longitudinal axis must be parallel to the transport direction of the printed-circuit board. The footprint must incorporate solder thieves at the downstream end. • For packages with leads on four sides, ...

Page 54

Philips Semiconductors [4] These packages are not suitable for wave soldering. On versions with the heatsink on the bottom side, the solder cannot penetrate between the printed-circuit board and the heatsink. On versions with the heatsink on the top side, ...

Page 55

Philips Semiconductors 16. Abbreviations Table 30. Abbreviations Acronym Description AFC Automatic Frequency Control AGC Automatic Gain Control FPLL Frequency Phase-Locked Loop MAD Module Address NTSC National Television Standards Committee PAL Phase Alternating Line PLL Phase-Locked Loop QSS Quasi Split Sound ...

Page 56

Philips Semiconductors 18. Legal information 18.1 Data sheet status [1][2] Document status Product status Objective [short] data sheet Development Preliminary [short] data sheet Qualification Product [short] data sheet Production [1] Please consult the most recently issued document before initiating or ...

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Philips Semiconductors TDA9884_2 Product data sheet 2 I C-bus controlled multistandard alignment-free IF-PLL Notes Rev. 02 — 12 May 2006 TDA9884 © Koninklijke Philips Electronics N.V. 2006. All rights reserved ...

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Philips Semiconductors 20. Contents 1 General description . . . . . . . . . . . . . . . . . . . . . . 1 2 Features . . . . . . . . ...

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