THC63LVDM83D / THC63LVDF(R)84B,84C Evaluation Kit

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1 THCLVDMD / THCLVDF(R)B,C Evaluation Kit LVDS Single Link Evaluation Board Parts Number: THEVAMD, THEVAF(R)B, THEVAF(R)C.General Description THEVAMD and, THEVAF(R)B, C boards are designed to support video data transmission between the host and display. One high-speed lane can carry up to bits data and bits of synchronizing signals at a pixel clock frequency from MHz to 0MHz. Table Clock Frequency Type Parts Number TTL Clock Freq. Tx THEVAMD MHz to 0MHz Rx THEVAF(R)B MHz to MHz Rx THEVAF(R)C MHz to MHz. Features Compatible with TIA/EIA- LVDS Standard : LVDS Transmitter and Receiver Single power supply Power Down Mode < THEVAMD> LVDS swing is reducible as 00mV by -pin to reduce EMI and power consumption. Input clock triggering edge is selectable by R/F-pin < THEVAFB and C> Falling Edge Clock < THEVARB and C> Rising Edge Clock. Overview (a) THEVAMD (Top Side) (b) THEVAMD (Top Side) Figure THEVAMD and THEVAF(R)B, C Top Side View (a) THEVAF(R)B, C (Bottom Side) (b)thevaf(r)b, C (Bottom Side) Figure THEVAMD and THEVAF(R)B, C Bottom Side View /

2 . Power Supply Set Up This chapter shows power supply condition. Caution: Please check if there is no power- short on below red trace before supplying any power..v Power Supply to Each Board Each evaluation board require.v power supply. Please use CON connector typically. Ground.V Power Supply (a)thevamd (b) THEVAF(R)B, C Figure Power Supply for Evaluation Board Power Supply from / to Connector.V power supply can be connected to Header and CON by using W and Wsolder jumper. THEVAMD W: Connect the.v power supply with pin# and 0 of CON. W: Connect the.v power supply with pin#, and of Header. Figure THEVAMD Power Supply from / to Each Connector /

3 THEVAF(R)B, C W: Connect the.v power supply with pin#, and of Header. W: Connect the.v power supply with pin# and of CON. W W Figure THEVAF(R)B, C Power Supply from / to Each Connect. Function Setting Setting pin of each boards are shown in yellow area of figure. HEADER is connected to IC s setting pin. Each setting pin s high or low setting can set by connecting HEADER and high level or low level. (a)thevamd (b) THEVAF(R)B, C Figure Position of Function Setting Pin High setting High side Connected with IC s setting pin Low side Low setting Figure High / Low Setting Description /

4 . Function This chapter shows function setting of THEVAMD and THEVAF(R)B, C. Table THEVAMD Function Setting Description Silk Symbol Function RF PWDN RF PWDN Input clock triggering edge select input for latching input data H: Rising edge L: Falling edge LVDS Swing Mode. LVDS Small Swing Swing Input Support 0mV N/A 0. to.v 0mV =V REF 00mV N/A V REF : is Input Reference Voltage Power down input. H: Normal operation L: Power down Table THEVAF(R)B, C Function Setting Description Silk Symbol Function PWDN PWDN Power down input. H: Normal Operation L: Power Down /

5 /. Schematic Figure THEVAMD Schematic D D C C B B A A Title Number Revision Size A Date: 0/0/ Sheet of File: \\..\THCLVDMD.SchDoc Drawn By: THEVAMD.00 -(NC) CON 0uF C VDD. SML-0MT D 0Ω R VDD. MPZ0RA L 0uF C VDD. MPZ0RA L 0uF C HEAD(NC) Header HEAD(NC) Header HEAD(NC) Header R/F PDWN PCN0-P-.DSA_LEFT(NC) Header VDD. R R G G B B B B B B HSYNC VSYNC DE G R R R R R R G G G G G CLKIN B B CTRL VDD. LVDS TC 0 CLK IN /PDWN PLL PLL PLL LVDS TD+ TD- TCLK+ TCLK- 0 TC+ TC- LVDS LVDS TB+ TB- TA+ TA- LVDS TD0 0 TA0 TA TA TA TD TA TA TB0 TB TD TD 0 TB TB TB TB TD R/F TD TB TC0 0 TC TC TC TD TC TC TA IC THCLVDMD VDD. MPZ0RA L 0uF C PLL 0.0uF C 0.uF C 0.0uF C 0.uF C 0.0uF C 0.0uF C0 0.uF C 0.uF C LVDS PLL HSYNC VSYNC DE CTRL R R R R R R R R G G G G G G G G B B B B B B B B CLKIN PDWN R/F TD+ TD- TCLK+ TCLK- TC+ TC- TB+ TB- TA+ TA- -0(NC) CON TD+ TD- TCLK+ TCLK- TC+ TC- TB+ TB- TA+ TA- VDD. Solder Jumper W Solder Jumper W

6 / Figure THEVAF(R)B, C Schematic D D C C B B A A Title Number Revision Size A Date: 0/0/ Sheet of File: \\..\THCLVDF(R)B.SchDoc Drawn By: THEVAF(R)B, C.00 -(NC) CON 0uF C VDD. SML-0MT D 0Ω R VDD. MPZ0RA L Inductor 0uF C VDD. MPZ0RA L Inductor 0uF C HEAD(NC) Header PDWN VDD. LVDS VDD. MPZ0RA L Inductor 0uF C PLL 0.0uF C 0.uF C 0.0uF C 0.uF C 0.0uF C 0.0uF C0 0.uF C 0.uF C LVDS PLL HSYNC VSYNC DE CTRL R R R G G G G G G G G B B B B B B B B CLKOUT PDWN RD+ RD- RCLK+ RCLK- RC+ RC- RB+ RB- RA+ RA- -0(NC) CON RD+ RD- RCLK+ RCLK- RC+ RC- RB+ RB- RA+ RA- VDD. RA RA 0 RA RA RD RA RA RB0 RB 0 RD RD RB RB RB RB RD RD 0 RB RC0 RC RC RD RC RC RC RD0 LVDS RA- RA+ 0 RB- RB+ LVDS LVDS RC- RC+ RCLK- RCLK+ RD- RD+ 0 LVDS PLL PLL PLL /PDWN CLKOUT RA0 RC IC THCLVDF(R)B, C R R R R R 00Ω R0 00Ω R 00Ω R 00Ω R 00Ω R PCN0-P-.DSA_RIGHT(NC) Header R_C R_C G_C G_C VSYNC_C DE_C G_C R_C R_C R_C R_C R_C R_C G_C G_C G_C G_C G_C CLKOUT_C B_C B_C B_C B_C B_C B_C HSYNC_C B_C B_C CTRL_C VDD. R G VSYNC R R R G G G B B B B B B HSYNC B B CTRL R R R R G G G G DE 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R0 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R 0Ω R0 0Ω R 0Ω R CLKOUT 0Ω R R_C G_C VSYNC_C R_C R_C R_C G_C G_C G_C B_C B_C B_C B_C B_C B_C HSYNC_C B_C B_C CTRL_C R_C R_C R_C R_C G_C G_C G_C G_C DE_C CLKOUT_C Solder Jumper W 0Ω(NC) R 0Ω(NC) R 0Ω(NC) R 0Ω(NC) R 0Ω(NC) R 0Ω(NC) R 0Ω(NC) R 0Ω(NC) R0 Solder Jumper W

7 . Bills of Materials Table THEVAMD BOM TYPE Value / Part No. Package SPEC Reference No. Qty. Capacitor 0uF 0 V C, C, C, C Capacitor 0.uF 00 V C, C, C, C Capacitor 0.0uF 00 V C, C, C0, C Connector -(NC) mm_pitch pin CON Connector -0(NC) mm_pitch 0pin CON Connector PCN0-P-.DSA_LEFT(NC).mm_pitch pin Header Header HEAD(NC).mm_pitch --- Header, Header, Header IC THCLVDMD TSSOP --- IC Inductor MPZ0RA 0.A L, L, L LED0 SML-0MT 0 GREEN D Resistor 0Ω 00 0.W R Table THEVAF(R)B, C BOM TYPE Value / Part No. Package SPEC Reference No. Qty. Capacitor 0uF 0 V C, C, C, C Capacitor 0.uF 00 V C, C, C, C Capacitor 0.0uF 00 V C, C, C0, C Connector PCN0-P-.DSA_RIGHT(NC).mm_pitch pin Header Connector -0(NC) mm_pitch 0pin CON Connector -(NC) mm_pitch pin CON Header HEAD(NC).mm_pitch --- Header IC THCLVDF(R)B, C TSSOP --- IC Inductor MPZ0RA 0.A L, L, L LED0 SML-0MT 0 GREEN D Resistor 0Ω 00 0.W R Resistor 00Ω 00 0.W R0, R, R, R, R Resistor 0Ω 00 0.W R, R, R, R, R, R, R, R, R, R, R, R, R, R, R, R, R, R0, R, R, R, R, R, R, R, R0, R, R, R Resistor 0Ω(NC) 00 A R, R, R, R, R0, R, R, R /

8 . Set items Table Set Items TYPE Part No. DC Connector - FFC Connector for LVDS Link -0 FFC 0pin mm pitch for LVDS Link -0 Pin Header --- It's possible to mount these parts on this board and use. /

9 . Notices and Requests. The product specifications described in this material are subject to change without prior notice.. The circuit diagrams described in this material are examples of the application which may not always apply to the customer s design. We are not responsible for possible errors and omissions in this material. Please note if errors or omissions should be found in this material, we may not be able to correct them immediately.. This material contains our copyright, know-how or other proprietary. Copying or disclosing to third parties the contents of this material without our prior permission is prohibited.. Note that if infringement of any third party's industrial ownership should occur by using this product, we will be exempted from the responsibility unless it directly relates to the production process or functions of the product.. This product is presumed to be used for general electric equipment, not for the applications which require very high reliability (including medical equipment directly concerning people's life, aerospace equipment, or nuclear control equipment). Also, when using this product for the equipment concerned with the control and safety of the transportation means, the traffic signal equipment, or various Types of safety equipment, please do it after applying appropriate measures to the product.. Despite our utmost efforts to improve the quality and reliability of the product, faults will occur with a certain small probability, which is inevitable to a semi-conductor product. Therefore, you are encouraged to have sufficiently redundant or error preventive design applied to the use of the product so as not to have our product cause any social or public damage.. Please note that this product is not designed to be radiation-proof.. Customers are asked, if required, to judge by themselves if this product falls under the category of strategic goods under the Foreign Exchange and Foreign Trade Control Law. sales@thine.co.jp /

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