TDA9535 STMicroelectronics, TDA9535 Datasheet

TDA9535

Manufacturer Part Number
TDA9535
Description
Manufacturer
STMicroelectronics
Datasheet

Specifications of TDA9535

Single Supply Voltage (typ)
Not RequiredV
Single Supply Voltage (min)
Not RequiredV
Single Supply Voltage (max)
Not RequiredV
Mounting
Through Hole
Lead Free Status / RoHS Status
Supplier Unconfirmed

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TDA9535
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Part Number:
TDA9535L
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9.5 NS TRIPLE-CHANNEL HIGH VOLTAGE VIDEO AMPLIFIER
FEATURES
DESCRIPTION
The TDA9535 is a triple-channel video amplifier
designed in BCD technology (Bipolar/CMOS/
DMOS) able to drive the 3 cathodes of a CRT
monitor.
Perfectly matched with the ST Preamplifier
TDA9210, it provides a high performance, and
very cost effective DC coupling system.
PIN CONNECTIONS
October 2003
Triple-Channel Video Amplifier
Supports DC Coupling (optimum cost saving)
and AC Coupling Applications.
Built-in Voltage Gain: 19.3 (Typ.)
Rise and Fall Times: 9.5ns (Typ.)
Bandwidth: 37MHz (Typ.)
80V Output Dynamic Range
Supply Voltage: 110V
Perfectly
Preamplifier
Full Pin Compatibility with the TDA9536
matched
with
the
TDA9210
10
11
9
8
7
6
5
4
3
2
1
ORDER CODE: TDA9535
(Plastic Package)
CLIPWATT 11
OUT3
GND3
IN3
V
IN2
GND2
OUT2
V
IN1
GND1
OUT1
CC
DD
TDA9535
1/15
1

Related parts for TDA9535

TDA9535 Summary of contents

Page 1

... Perfectly matched with Preamplifier Full Pin Compatibility with the TDA9536 DESCRIPTION The TDA9535 is a triple-channel video amplifier designed in BCD technology (Bipolar/CMOS/ DMOS) able to drive the 3 cathodes of a CRT monitor. Perfectly matched with the ST Preamplifier TDA9210, it provides a high performance, and very cost effective DC coupling system. ...

Page 2

... TDA9535 1 BLOCK DIAGRAM OF THE TDA9535 OUT1 GND1 REF 3 IN1 2 PIN CONNECTIONS Pin Name 1 OUT1 2 GND1 3 IN1 OUT2 6 GND2 7 IN2 IN3 10 GND3 11 OUT3 2/15 2 GND2 OUT2 REF 7 IN2 Function Output-Channel 1 Power Ground-Channel 1 Video Input-Channel 1 Amplifier High Supply Voltage Output-Channel 2 Power Ground-Channel 2/ Ground Substract ...

Page 3

... OG V Maximum Input Voltage IN Max V Minimum Input Voltage IN Min T Junction Temperature J T Storage Temperature STG 4 THERMAL DATA Symbol R Junction-Case Thermal Resistance (Max.) th (j-c) R Junction-Ambient Thermal Resistance (Typ.) th (j-a) Parameter Parameter TDA9535 Value Unit 120 300 0.5 V 150 °C -20 + 150 °C Value ...

Page 4

... VG Video Gain LE Linearity Error V Internal Voltage Reference REF Note 1:The TDA9535 goes into stand-by mode when Vcc is switched off (<1.5V). In stand-by mode, Vout is set to high level. Note 2:Matching measured between each channel. Note 3:Pulsed current width < 4/15 2 Test Conditions = 110V, Tamb = 25 °C, unless otherwise specified) ...

Page 5

... Test Conditions 1) (Note 50V, f=1MHz DC V =50V, V=20V DC V =50V, V=40V DC V =50V, V=40V DC V =50V, V=40V DC V =50V, V=20V MHz V =50V, V=20V 20MHz 12V 110V REF TDA9535 Min. Typ Max 8 OUT R = 200 =8pF L 2 GND Unit % % % MHz ns ns ...

Page 6

... TDA9535 6 THEORY OF OPERATION 6.1 - General The TDA9535 is a three-channel video amplifier supplied by a low supply voltage: V and a high supply voltage The high values of V supplying the amplifier out- DD put stage allow direct control of the CRT cathodes (DC coupling mode coupling mode, the application schematic is very simple and only a few external components are needed to drive the cathodes ...

Page 7

... Amplifier gain and cut-off adjustment A very simplified schematic of each TDA9535 channel is shown in Figure 3. The feedback net of each channel is integrated with a built-in voltage gain of 19.3 (40k/2k). Figure 3. Simplified schematic of one channel IN 7 ARCING PROTECTION As the amplifier outputs are connected to the CRT cathodes, special attention must be given to pro- tect them against possible arcing inside the CRT ...

Page 8

... Section 8.3). Figure 5. Video response optimization for one channel C11 4.7 F R20 TDA9207 TDA9209 IN 15/50 TDA9535/ connected as close as possible to the device * 8.1 Supply decoupling The decoupling of V and V CC quality HF capacitors (respectively C10 and C12) close to the device is necessary to improve the dy- namic performance of the video signal ...

Page 9

... L We have STAT Therefore 4.41W. TOT Note 4: This worst thermal case must only be considered for TJmax calculation. Nevertheless, during the average life of the circuit, the conditions are closer to the white picture conditions. = 110V 12V 40mA 40MHz 2.13W 3.04W DYN TDA9535 9/15 ...

Page 10

... TDA9535 10 TYPICAL PERFORMANCE CHARACTERISTICS V =110V, V =12V, C =8pF Figure 6. TDA9535 pulse response Figure 8. Power dissipation versus frequency Square Wave Frequency (MHz) (72% Active Tim e) Figure 10. Speed versus offset Off set Voltage (Vdc) 10/15 =300 , V=40V , unless otherwise specified - see P PP Figure 7. V Figure 9. Speed versus temperature ...

Page 11

... Figure 12. TDA9210 - TDA9535/9536 Demonstration Board: Silk Screen and Trace Figure 13. Amplifier and Preamplifier Outputs. Trace Routing (detail) TDA9535 OUT1 OUT2 OUT3 13(b) 13(a) IN1 IN2 IN3 11/15 ...

Page 12

... TDA9535 Figure 14. TDA9535/9536 - TDA9210 Demonstration Board Schematic 12/15 ...

Page 13

... TDA9535 Inches Min. Typ. Max. 0.116 0.118 0.120 0.037 0.039 0.041 0.006 0.051 0.059 0.066 0.019 0.020 ...

Page 14

... TDA9535 Table 1 Dimensions Min Note 5:“H3 and L2” do not include mold flash or protrusions Mold flash or protrusions shall not exceed 0.15mm per side. 14/15 Millimeters Typ. Max. 3.30 3.40 0.30 0.50 0.70 0.75 10deg. 5deg. 75deg. Inches Min. Typ. Max. 0.126 ...

Page 15

... No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products are not authorized for use as critical components in life support devices or systems without the express written approval of STMicroelectronics ...

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