# TVS Diode, RailClamp, Unidirectional, 5 V, 15 V, SLP2510P8, 10 Pins

![Product image](https://novapart.co/image/farnell:1651645RL/)

**URL**: https://novapart.co/products/RCLAMP0524P.TCT/tvs-diode-railclamp-unidirectional-5-v-15
**SKU**: RCLAMP0524P.TCT
**Manufacturer**: SEMTECH
**Category**: Circuit Protection || TVS - Transient Voltage Suppressors || TVS Diodes
**Price**: €1.0100
**Stock**: 10+

## Description

Product Range:RailClamp Series; TVS Polarity:Unidirectional; Reverse Stand-Off Voltage Vrwm:5V; Clamping Voltage Vc Max:15V; Diode Case Style:SLP2510P8; No. of Pins:10Pins; Breakdown Voltage Min:6V; Breakdown

## Specifications

| Parameter | Value |
|---|---|
| Svhc | No SVHC (15-Jan-2019) |
| No. Of Pins | 10Pins |
| Tvs Polarity | Unidirectional |
| Product Range | RailClamp |
| Qualification | - |
| Diode Mounting | Surface Mount |
| Diode Case Style | SLP2510P8 |
| Clamping Voltage Max | 15V |
| Reverse Standoff Voltage | 5V |
| Maximum Breakdown Voltage | 6V |
| Minimum Breakdown Voltage | 6V |
| Operating Temperature Max | 125°C |
| Peak Pulse Power Dissipation | 150W |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:1651645RL/)

RClamp0522P RClamp0524P Ultra Low Capacitance TVS Arrays 

## **PROTECTION PRODUCTS** - RailClamp **[®]** 

## Description 

RailClamps[®] are ultra low capacitance TVS arrays designed to protect high speed data interfaces. This series has been specifically designed to protect sensitive components which are connected to high-speed data and transmission lines from overvoltage caused by ESD (electrostatic discharge), CDE (Cable Discharge Events), and EFT (electrical fast transients). 

The RClamp[TM] 0522P and RClamp[TM] 0524P have a typical capacitance of only 0.30pF between I/O pins. This allows it to be used on circuits operating in excess of 3GHz without signal attenuation.  They may be used to meet the ESD immunity requirements of IEC 610004-2, Level 4 (±15kV air, ±8kV contact discharge).  The RClamp0522P is designed to protect two lines, while the RClamp0524P will protect four lines. 

The RClamp0522P is in a 6-pin, RoHS/WEEE compliant, SLP1610P4 package.  It measures 1.6 x 1.0 with a nominal height of 0.58mm.  The RClamp0524P is in a 10-pin, RoHS/WEEE compliant, SLP2510P8 package.  It measures 2.5 x 1.0 with a nominal height of 0.58mm.  The leads are spaced at a pitch of 0.5mm and are finished with lead-free NiPdAu.   They are designed for easy PCB layout by allowing the traces to run straight through the device.  The combination of small size, low capacitance, and high level of ESD protection makes them a flexible solution for applications such as HDMI, DisplayPort[TM] , MDDI, and eSATA interfaces. 

## PRELIMINARY 

## Features 

- ESD protection for high-speed data lines to IEC 61000-4-2 (ESD) ±15kV (air), ±8kV (contact) IEC 61000-4-5 (Lightning) 5A (8/20μs) IEC 61000-4-4 (EFT) 40A (5/50ns) 

- Package design optimized for high speed lines 

- Flow-Through design 

- Protects two or four I/O lines 

- Low capacitance: 0.3pF typical (I/O to I/O) 

- Low clamping voltage 

- Low operating voltage: 5V 

- Solid-state silicon-avalanche technology 

## Mechanical Characteristics 

- SLP1610P4 6-pin package (1.6 x 1.0 x 0.58mm) 

- SLP2510P8 10-pin package (2.5 x 1.0 x 0.58mm) 

- RoHS/WEEE Compliant 

- Lead Pitch: 0.5mm 

- Lead finish: NiPdAu 

- Marking: Marking Code 

- Packaging: Tape and Reel 

## Applications 

- High Definition Multi-Media Interface (HDMI) 

- Digital Visual Interface (DVI) 

- DisplayPort[TM] Interface 

- MDDI Ports 

- PCI Express 

- eSATA Interfaces 

## Circuit Diagram - RClamp0522P 

**==> picture [265 x 209] intentionally omitted <==**

**----- Start of picture text -----**<br>
Pin 1 Pin 2<br>3, 4<br>2-Line Protection<br>**----- End of picture text -----**<br>


## Circuit Diagram - RClamp0524P 

**==> picture [265 x 209] intentionally omitted <==**

**----- Start of picture text -----**<br>
Pin 1 Pin 2 Pin 4 Pin 5<br>3, 8<br>4-Line Protection<br>**----- End of picture text -----**<br>


www.semtech.com 

Revision 03/11/2009 

1 

RClamp0522P RClamp0524P Ultra Low Capacitance TVS Arrays PRELIMINARY 

## **PROTECTION PRODUCTS** - RailClamp **[®]** Pin Identification and Configuration 

## RClamp0522P 

## RClamp0524P 

**==> picture [488 x 399] intentionally omitted <==**

**----- Start of picture text -----**<br>
6 5 4 10 9 8 7 6<br>1 2 3 1 2 3 4 5<br>Pni Idencifitaoitn Pni Idencifitaoitn<br>1 - 2 nIput niLes 1, 2, 4, 5 nIput niLes<br>5 - 6 (No nIOteurtnplautCniLonenseoitcn) 6, 7, 9, 10 (No nIOteurtnplautCniLonenseoitcn)<br>3 - 4 Ground 3, 8 Ground<br>SLP1610P4 Pin Configuration (Top View) SLP2510P8 Pin Configuration (Top View)<br>Pin 1 Pin 2 Pin 1 Pin 2 Pin 4 Pin 5<br>3, 4 3, 8<br>Circuit Diagram Circuit Diagram<br>**----- End of picture text -----**<br>


## Ordering Information 

|r<br>e<br>b<br>m<br>u<br>N<br>tr<br>a<br>P|r<br>e<br>b<br>m<br>u<br>N<br>s<br>e<br>niL<br>f<br>o|r<br>e<br>p<br>y<br>t<br>Q<br>l<br>e<br>e<br>R|l<br>e<br>e<br>R<br>e<br>zi<br>S|
|---|---|---|---|
|T<br>C<br>T.P<br>2<br>2<br>5<br>0<br>p<br>m<br>alC<br>R|2|0<br>0<br>0<br>3|h<br>c<br>nI<br>7|
|T<br>C<br>T.P<br>4<br>2<br>5<br>0<br>p<br>m<br>alC<br>R|4|0<br>0<br>0<br>3|h<br>c<br>nI<br>7|



Note: Lead finish is lead-free NiPdAu. 

RailClamp and RClamp are marks of Semtech Corporation. 

www.semtech.com 

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RClamp0522P RClamp0524P 

PRELIMINARY 

## PROTECTION PRODUCTS 

## Absolute Maximum Rating 

|PROTECTION PRODUCTS<br>Absolute Maximum Rating||PR|ELIMINARY|
|---|---|---|---|
|g<br>nit<br>a<br>R|l<br>o<br>b<br>m<br>y<br>S|e<br>ul<br>a<br>V|s<br>ti<br>n<br>U|
|)s<br>μ<br>0<br>2<br>/<br>8<br>=<br>p<br>t(<br>r<br>e<br>w<br>o<br>P<br>e<br>slu<br>P<br>k<br>a<br>e<br>P|P k<br>p|0<br>5<br>1|stt<br>a<br>W|
|)s<br>μ<br>0<br>2<br>/<br>8<br>=<br>p<br>t(<br>t<br>n<br>e<br>rr<br>u<br>C<br>e<br>slu<br>P<br>k<br>a<br>e<br>P|I P<br>P|5|A|
|)riA<br>(<br>2<br>-<br>4<br>-<br>0<br>0<br>0<br>1<br>6<br>C<br>EI<br>r<br>e<br>p<br>D<br>S<br>E<br>)tc<br>a<br>t<br>n<br>o<br>C<br>(<br>2<br>-<br>4<br>-<br>0<br>0<br>0<br>1<br>6<br>C<br>EI<br>r<br>e<br>p<br>D<br>S<br>E|V<br>D<br>S<br>E|7<br>1<br>-/<br>+<br>2<br>1<br>-/<br>+|V<br>k|
|e<br>r<br>u<br>t<br>a<br>r<br>e<br>p<br>m<br>e<br>T<br>g<br>nit<br>a<br>r<br>e<br>p<br>O|TJ|5<br>2<br>1<br>+<br>o<br>t<br>5<br>5<br>-|C<br>°|
|e<br>r<br>u<br>t<br>a<br>r<br>e<br>p<br>m<br>e<br>T<br>e<br>g<br>a<br>r<br>o<br>t<br>S|T<br>G<br>T<br>S|0<br>5<br>1<br>+<br>o<br>t<br>5<br>5<br>-|C<br>°|



## Electrical Characteristics (T=25[o] C) 

|Electrical Characteristics (T=25oC)|Electrical Characteristics (T=25oC)|Electrical Characteristics (T=25oC)|Electrical Characteristics (T=25oC)|Electrical Characteristics (T=25oC)|Electrical Characteristics (T=25oC)|Electrical Characteristics (T=25oC)|
|---|---|---|---|---|---|---|
||||||||
|r<br>e<br>t<br>e<br>m<br>a<br>r<br>a<br>P|l<br>o<br>b<br>m<br>y<br>S|s<br>n<br>oiti<br>d<br>n<br>o<br>C|m<br>u<br>m<br>i<br>ni<br>M|l<br>a<br>ci<br>p<br>y<br>T|m<br>u<br>m<br>ix<br>a<br>M|s<br>ti<br>n<br>U|
|e<br>g<br>a<br>tlo<br>V<br>ff<br>O<br>-<br>d<br>n<br>a<br>t<br>S<br>e<br>sr<br>e<br>v<br>e<br>R|V<br>M<br>W<br>R|d<br>n<br>u<br>o<br>r<br>g<br>o<br>t<br>nip<br>O<br>/I<br>y<br>n<br>A|||5|V|
|e<br>g<br>a<br>tlo<br>V<br>n<br>w<br>o<br>d<br>k<br>a<br>e<br>r<br>B<br>e<br>sr<br>e<br>v<br>e<br>R|V R<br>B|It<br>A<br>m<br>1<br>=<br>d<br>n<br>u<br>o<br>r<br>g<br>o<br>t<br>nip<br>O<br>/I<br>y<br>n<br>A|6|||V|
|t<br>n<br>e<br>rr<br>u<br>C<br>e<br>g<br>a<br>k<br>a<br>e<br>L<br>e<br>sr<br>e<br>v<br>e<br>R|IR|V<br>M<br>W<br>R<br>C<br>°<br>5<br>2<br>=<br>T<br>,V<br>5<br>=<br>d<br>n<br>u<br>o<br>r<br>g<br>o<br>t<br>nip<br>O<br>/I<br>y<br>n<br>A|||1|A<br>μ|
|e<br>g<br>a<br>tlo<br>V<br>g<br>nip<br>m<br>alC|VC|I P<br>P<br>s<br>μ<br>0<br>2<br>/<br>8<br>=<br>p<br>t<br>,<br>A<br>1<br>=<br>d<br>n<br>u<br>o<br>r<br>g<br>o<br>t<br>nip<br>O<br>/I<br>y<br>n<br>A|||5<br>1|V|
|e<br>c<br>n<br>a<br>tic<br>a<br>p<br>a<br>C<br>n<br>oitc<br>n<br>u<br>J|Cj|VR<br>z<br>H<br>M<br>1<br>=<br>f<br>,V<br>0<br>=<br>s<br>nip<br>O<br>/I<br>n<br>e<br>e<br>w<br>t<br>e<br>B||0<br>3<br>.<br>0|4<br>.<br>0|F<br>p|
|e<br>c<br>n<br>a<br>tic<br>a<br>p<br>a<br>C<br>n<br>oitc<br>n<br>u<br>J|Cj|VR<br>z<br>H<br>M<br>1<br>=<br>f<br>,V<br>0<br>=<br>d<br>n<br>u<br>o<br>r<br>g<br>o<br>t<br>nip<br>O<br>/I<br>y<br>n<br>A|||8<br>.<br>0|F<br>p|



www.semtech.com 

© 2008 Semtech Corp. 

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## Typical Characteristics 

## Non-Repetitive Peak Pulse Power vs. Pulse Time 

## Power Derating Curve 

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**----- Start of picture text -----**<br>
10<br>1<br>0.1<br>0.01<br>0.1 1 10 100 1000<br>Pulse Duration - tp (us)<br> (kW)<br>PP<br>Peak Pulse Power - P<br>**----- End of picture text -----**<br>


**==> picture [235 x 154] intentionally omitted <==**

**----- Start of picture text -----**<br>
110<br>100<br>90<br>80<br>70<br>60<br>50<br>40<br>30<br>20<br>10<br>0<br>0 25 50 75 100 125 150<br>Ambient Temperature - TA ( [o] C)<br>PP<br>% of Rated Power or I<br>**----- End of picture text -----**<br>


## Pulse Waveform 

## Clamping Voltage vs. Peak Pulse Current 

**==> picture [525 x 171] intentionally omitted <==**

**----- Start of picture text -----**<br>
110<br>40<br>Waveform<br>100<br> Parameters:<br>90 35<br>tr = 8µs<br>80 td = 20µs 30<br>Line to Line<br>70<br>e [-t] 25<br>60<br>20 Line to Gnd<br>50<br>40 15<br>td = IPP/2<br>30 Waveform<br>10<br> Parameters:<br>20 5 tr = 8µs<br>10 td = 20µs<br>0 0<br>0 1 2 3 4 5 6<br>0 5 10 15 20 25 30<br>Peak Pulse Current - IPP (A)<br>Time (µs)<br> (V)<br>C<br>PP<br>Percent of I<br>Clamping Voltage -V<br>**----- End of picture text -----**<br>


## Normalized Capacitance vs. Reverse Voltage 

Insertion Loss S21 - I/O to GND 

**==> picture [521 x 193] intentionally omitted <==**

**----- Start of picture text -----**<br>
1.5 CH1 S21 LOG 6 dB / REF 0 dB<br>1.4 1: -0.086 dB<br>1.3 900 MHz<br>1.2 3 2: -0.0336 dB<br>1.1  0 dB  1.8 GHz<br>1 1 2<br>0.9 -6 dB  3: -0.126 dB<br>2.5 GHz<br>0.8<br> -12 dB<br>0.7<br>0.6  -18 dB<br>0.5<br>0.4  -24 dB<br>0.3<br> -30 dB<br>0.2<br>0.1 f = 1 MHz  -36 dB<br>0<br>0 1 2 3 4 5  -42 dB<br>Reverse Voltage - VR (V)<br> -48 dB<br>1  10  100  1  3<br> MHz   MHz  MHz  GHz  GHz<br>START. 030 MHz STOP 3000.000000 MHz<br>=0)<br>R<br>) / C(VJ<br>R<br>C(VJ<br>**----- End of picture text -----**<br>


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© 2008 Semtech Corp. 

RClamp0522P RClamp0524P PRELIMINARY 

PROTECTION PRODUCTS 

## Typical Characteristics (Con’t) 

## Insertion Loss S21 - I/O to I/O 

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**----- Start of picture text -----**<br>
CH1 S21 LOG 6 dB / REF 0 dB<br>1: -0.076 dB<br>900 MHz<br>3 2: -0.062 dB<br> 0 dB  1 2 1.8 GHz<br>-6 dB  3: -0.1087 dB<br>2.5 GHz<br> -12 dB<br> -18 dB<br> -24 dB<br> -30 dB<br> -36 dB<br> -42 dB<br> -48 dB<br>1  10  100  1  3<br> MHz   MHz  MHz  GHz  GHz<br>START. 030 MHz STOP 3000.000000 MHz<br>**----- End of picture text -----**<br>


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## Applications Information 

## Design Recommendations for HDMI Protection 

Adding external ESD protection to HDMI ports can be challenging.  First, ESD protection devices have an inherent junction capacitance.  Furthermore, adding even a small amount of capacitance will cause the impedance of the differential pair to drop.  Second, large packages and land pattern requirements cause discontinuities that adversely affect signal integrity. The RClamp0524P and RClamp0522P are specifically designed for protection of high-speed interfaces such as HDMI.  They present <0.4pF capacitance between the pairs while being rated to handle >±8kV ESD contact discharges (>±15kV air discharge) as outlined in IEC 61000-4-2.  Each device is in a leadless SLP package that is less than 1.1mm wide.  They are designed such that the traces flow straight through the device.  The narrow package and flow-through design reduces discontinuities and minimizes impact on signal integrity.  This becomes even more critical as signal speeds increase. 

## Pin Configuration 

**==> picture [222 x 247] intentionally omitted <==**

**----- Start of picture text -----**<br>
1<br>12<br>11<br>10<br>GND GND<br>9<br>8<br>7<br>1<br>6<br>5<br>4<br>GND GND<br>3<br>2<br>1<br>HDMI Connector<br>**----- End of picture text -----**<br>


**Figure 1.  Flow through Layout Using RClamp0524P** 

Figure 1 is an example of how to route the high speed differential traces through the RClamp0524P.  The solid line represents the PCB trace.  The PCB traces are used to connect the pin pairs for each line (pin 1 to pin 10, pin 2 to pin 9, pin 4 to pin 7, pin 5 to pin 6). For example, line 1 enters at pin 1 and exits at Pin 10 and the PCB trace connects pin 1 and 10 together. This is true for lines connected at pins 2, 4, and 5 also. Ground is connected at pins 3 and 8.  One large ground pad should be used in lieu of two separate pads.  The same layout rules apply for the RClamp0522P. 

## TDR Measurements for HDMI 

The combination of low capacitance, small package, and flow-through design means it is possible to use these devices to meet the HDMI impedance requirements of 100Ohm ±15% without any PCB board modification. Figures 3 and 4 show impedance test results for a TDR risetime of 200ps and 100ps respectively, using a Semtech evaluation board with 100 Ohm traces throughout.  Measurements were taken using a TDR method as outlined in the HDMI Compliance Test 

www.semtech.com 

© 2008 Semtech Corp. 

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RClamp0522P RClamp0524P PRELIMINARY 

## PROTECTION PRODUCTS 

## Applications Information 

Specification (CTS).  In each case, the device meets the HDMI CTS requirement of 100 Ohm ±15% with plenty of margin. 

For signal integrity purposes, the best results will be obtained by using the RClamp0524P to protect the high-speed differential pairs.  This is because the device is designed such that the data lines from the connector line up with the I/O pins of the device without altering the trace routing.  The RClamp0504P may be used to protect the remaining lines (I2C, CEC, and hot plug). 

## Layout Guidelines for Optimum ESD Protection 

Good circuit board layout is critical not only for signal integrity, but also for effective suppression of ESD induced transients.  For optimum ESD protection, the following guidelines are recommended: 

Place the device as close to the connector as possible.  This practice restricts ESD coupling into adjacent traces and reduces parasitic inductance. The ESD transient return path to ground should be kept as short as possible.  Whenever possible, use multiple micro vias connected directly from the device ground pad to the ground plane. 

||||**B**||
|---|---|---|---|---|
|||||||
||||**A**||
|x]||||t||
|- =|||||
|||**A**|**B**||
|**X-axis**||1.905|2.081|**(nsec)**|
|**Y-axis**||101.0|107.0|**(Ohm)**|



Figure 2 - TDR Measurement with 200ps risetime using Semtech Evaluation Board 

## e Avoid running critical signals near board edges. Protecting MDDI Ports with RClamp0524P and RClamp0522P 

The small package size and low capacitance of the RClamp0522P and RClamp0524P make them ideal for high-speed lines in portable applications.  One such application is the protection of MDDI ports in cellular phones.  MDDI is a serial data interface operating at 480Mb/s per line pair.  The lines are scalable for increased speed and display resolution.  A MDDI port protection example is shown in Figure 5.  The RClamp0524P is used to protect two differential line pairs while an RClamp0522P is used to protect the MDDI strobe lines.  Note that devices are used on both the main board and LCD side of the MDDI port. Devices on the main board are needed to protect the MDDI controller in the Baseband processor and devices on the LCD board to protect MDDI controller in LCD module.  A single line TVS such as the uClamp0501P is used to protect the MDDI power line. The protection devices should be placed close to the connector of each board.  Traces are routed directly through each device, minimizing parasitic inductance. Connections to the ground plane should be made with multiple micro vias when possible. 

**==> picture [9 x 65] intentionally omitted <==**

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B<br>A<br>**----- End of picture text -----**<br>


||**A**|**B**||
|---|---|---|---|
|**X-axis**|1.80|2.076|**(nsec)**|
|**Y-axis**|96|108.0|**(Ohm)**|



Figure 3 - TDR Measurement with 100ps risetime using Semtech Evaluation Board 

Note: Measurements were taken on SLP HDMI EVAL Rev C Board that has 100Ω differential traces impedance throughout (No trace Compensation). 

www.semtech.com 

© 2008 Semtech Corp. 

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## PROTECTION PRODUCTS 

## Applications Information 

**==> picture [394 x 260] intentionally omitted <==**

**----- Start of picture text -----**<br>
MDDI_Data0+<br>-<br>MDDI_Data0<br>Gnd Gnd<br>MDDI_Data1+<br>MDDI Link MDDI Link<br>MDDI_Data1-<br>Controller Controller<br>RClamp0524P RClamp0524P<br>MDDI_Stb+<br>-<br>MDDI_Stb<br>Gnd Gnd<br>RClamp0522P RClamp0522P<br>Host Pwr<br>Host Gnd<br>HOST<br>uClamp0501P uClamp0501P<br>**----- End of picture text -----**<br>


**Figure 4.  MDDI Port Protection** 

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© 2008 Semtech Corp. 

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## Applications Information _Spice Model_ 

RClamp0522P Spice Model 

|s<br>r<br>e<br>t<br>e<br>m<br>a<br>r<br>a<br>P<br>e<br>ci<br>p<br>S<br>P<br>2<br>2<br>5<br>0<br>p<br>m<br>al<br>C<br>R|s<br>r<br>e<br>t<br>e<br>m<br>a<br>r<br>a<br>P<br>e<br>ci<br>p<br>S<br>P<br>2<br>2<br>5<br>0<br>p<br>m<br>al<br>C<br>R|s<br>r<br>e<br>t<br>e<br>m<br>a<br>r<br>a<br>P<br>e<br>ci<br>p<br>S<br>P<br>2<br>2<br>5<br>0<br>p<br>m<br>al<br>C<br>R|s<br>r<br>e<br>t<br>e<br>m<br>a<br>r<br>a<br>P<br>e<br>ci<br>p<br>S<br>P<br>2<br>2<br>5<br>0<br>p<br>m<br>al<br>C<br>R|s<br>r<br>e<br>t<br>e<br>m<br>a<br>r<br>a<br>P<br>e<br>ci<br>p<br>S<br>P<br>2<br>2<br>5<br>0<br>p<br>m<br>al<br>C<br>R|
|---|---|---|---|---|
|r<br>e<br>t<br>e<br>m<br>a<br>r<br>a<br>P|ti<br>n<br>U|)<br>D<br>R<br>C<br>L<br>(<br>1<br>D|)<br>D<br>R<br>C<br>L<br>(<br>2<br>D|)<br>S<br>V<br>T<br>(<br>3<br>D|
|S<br>I|p<br>m<br>A|4<br>1<br>-<br>E<br>1|4<br>1<br>-<br>E<br>1|2<br>1<br>-<br>E<br>2|
|V<br>B|tlo<br>V|0<br>0<br>1|0<br>0<br>1|6<br>3<br>.<br>9|
|J<br>V|tlo<br>V|7<br>.<br>0|7<br>.<br>0|6<br>.<br>0|
|S<br>R|m<br>h<br>O|8<br>7<br>5<br>.<br>0|0<br>.<br>1|6<br>.<br>2|
|V<br>B<br>I|p<br>m<br>A|3<br>-<br>E<br>1|3<br>-<br>E<br>1|3<br>-<br>E<br>1|
|O<br>J<br>C|d<br>a<br>r<br>a<br>F|2<br>1<br>-<br>E<br>4<br>.<br>0|2<br>1<br>-<br>E<br>4<br>.<br>0|2<br>1<br>-<br>E<br>6<br>5|
|T<br>T|c<br>e<br>s|9<br>-<br>E<br>1<br>4<br>5<br>.<br>2|9<br>-<br>E<br>1<br>4<br>5<br>.<br>2|9<br>-<br>E<br>1<br>4<br>5<br>.<br>2|
|M|--|1<br>0<br>.<br>0|1<br>0<br>.<br>0|3<br>2<br>.<br>0|
|N|--|1.<br>1|1.<br>1|1.<br>1|
|G<br>E|V<br>e|1<br>1.<br>1|1<br>1.<br>1|1<br>1.<br>1|



www.semtech.com 

© 2008 Semtech Corp. 

9 

RClamp0522P RClamp0524P PRELIMINARY 

## PROTECTION PRODUCTS 

## Applications Information _Spice Model_ 

RClamp0524P Spice Model 

|s<br>r<br>e<br>t<br>e<br>m<br>a<br>r<br>a<br>P<br>e<br>ci<br>p<br>S<br>P<br>4<br>2<br>5<br>0<br>p<br>m<br>al<br>C<br>R|s<br>r<br>e<br>t<br>e<br>m<br>a<br>r<br>a<br>P<br>e<br>ci<br>p<br>S<br>P<br>4<br>2<br>5<br>0<br>p<br>m<br>al<br>C<br>R|s<br>r<br>e<br>t<br>e<br>m<br>a<br>r<br>a<br>P<br>e<br>ci<br>p<br>S<br>P<br>4<br>2<br>5<br>0<br>p<br>m<br>al<br>C<br>R|s<br>r<br>e<br>t<br>e<br>m<br>a<br>r<br>a<br>P<br>e<br>ci<br>p<br>S<br>P<br>4<br>2<br>5<br>0<br>p<br>m<br>al<br>C<br>R|s<br>r<br>e<br>t<br>e<br>m<br>a<br>r<br>a<br>P<br>e<br>ci<br>p<br>S<br>P<br>4<br>2<br>5<br>0<br>p<br>m<br>al<br>C<br>R|
|---|---|---|---|---|
|r<br>e<br>t<br>e<br>m<br>a<br>r<br>a<br>P|ti<br>n<br>U|)<br>D<br>R<br>C<br>L<br>(<br>1<br>D|)<br>D<br>R<br>C<br>L<br>(<br>2<br>D|)<br>S<br>V<br>T<br>(<br>3<br>D|
|S<br>I|p<br>m<br>A|4<br>1<br>-<br>E<br>1|4<br>1<br>-<br>E<br>1|2<br>1<br>-<br>E<br>2|
|V<br>B|tlo<br>V|0<br>0<br>1|0<br>0<br>1|6<br>3<br>.<br>9|
|J<br>V|tlo<br>V|7<br>.<br>0|7<br>.<br>0|6<br>.<br>0|
|S<br>R|m<br>h<br>O|8<br>7<br>5<br>.<br>0|0<br>.<br>1|6<br>.<br>2|
|V<br>B<br>I|p<br>m<br>A|3<br>-<br>E<br>1|3<br>-<br>E<br>1|3<br>-<br>E<br>1|
|O<br>J<br>C|d<br>a<br>r<br>a<br>F|2<br>1<br>-<br>E<br>4<br>.<br>0|2<br>1<br>-<br>E<br>4<br>.<br>0|2<br>1<br>-<br>E<br>6<br>5|
|T<br>T|c<br>e<br>s|9<br>-<br>E<br>1<br>4<br>5<br>.<br>2|9<br>-<br>E<br>1<br>4<br>5<br>.<br>2|9<br>-<br>E<br>1<br>4<br>5<br>.<br>2|
|M|--|1<br>0<br>.<br>0|1<br>0<br>.<br>0|3<br>2<br>.<br>0|
|N|--|1.<br>1|1.<br>1|1.<br>1|
|G<br>E|V<br>e|1<br>1.<br>1|1<br>1.<br>1|1<br>1.<br>1|



www.semtech.com 

© 2008 Semtech Corp. 

10 

RClamp0522P RClamp0524P PRELIMINARY 

## PROTECTION PRODUCTS 

## Outline Outline **Drawing -** SO-8SLP1610P4 

**==> picture [541 x 312] intentionally omitted <==**

**----- Start of picture text -----**<br>
A D B DIMENSIONS<br>INCHES MILLIMETERS<br>DIM<br>MIN NOM MAX MIN NOM MAX<br>A .020 .023 .026 0.50 0.58 0.65<br>A1 0.00 .001 .002 0.00 0.03 0.05<br>PIN 1 E A2 (.005) (0.13)<br>INDICATOR b .006 .008 .010 0.15 0.20 0.25<br>(LASER MARK) b1 .014 .016 .018 0.35 0.40 0.45<br>D .059 .063 .067 1.50 1.60 1.70<br>E .035 .039 .043 0.90 1.00 1.10<br>e .020 BSC 0.50 BSC<br>e1 .039 BSC 1.00 BSC<br>L .012 .015 .017 0.30 0.38 0.43<br>A N 4 4<br>SEATING<br>aaa .003 0.08<br>aaa C PLANE bbb .004 0.10<br>A2 A1 C<br>bxN<br>bbb C A B b1xN<br>bbb C A B<br>1 2<br>R0.125<br>E/2 LxN<br>N<br>2X R0.075<br>3 PLACES e<br>e1<br>D/2<br>NOTES:<br>1. CONTROLLING DIMENSIONS ARE IN MILLIMETERS (ANGLES IN DEGREES).<br>**----- End of picture text -----**<br>


## Land Pattern - SLP1610P4 

**==> picture [349 x 154] intentionally omitted <==**

**----- Start of picture text -----**<br>
P1<br>P<br>DIMENSIONS<br>Y DIM INCHES MILLIMETERS<br>C (.034) (0.87)<br>Z (C) G (Y1) G .007 0.19<br>P .020 0.50<br>P1 .039 1.00<br>X .008 0.20<br>X1 .016 0.40<br>X Y .027 0.68<br>X1 Y1 (.061) (1.55)<br>Z .061 1.55<br>NOTES:<br>**----- End of picture text -----**<br>


1. CONTROLLING DIMENSIONS ARE IN MILLIMETERS (ANGLES IN DEGREES). 

2. THIS LAND PATTERN IS FOR REFERENCE PURPOSES ONLY. CONSULT YOUR MANUFACTURING GROUP TO ENSURE YOUR COMPANY'S MANUFACTURING GUIDELINES ARE MET. 

www.semtech.com 

© 2008 Semtech Corp. 

11 

RClamp0522P RClamp0524P 

PRELIMINARY 

## PROTECTION PRODUCTS 

## Outline Outline **Drawing -** SO-8SLP2510P8 

**==> picture [541 x 312] intentionally omitted <==**

**----- Start of picture text -----**<br>
A D B DIMENSIONS<br>INCHES MILLIMETERS<br>DIM<br>MIN NOM MAX MIN NOM MAX<br>A .020 .023 .026 0.50 0.58 0.65<br>A1 0.00 .001 .002 0.00 0.03 0.05<br>PIN 1 E A2 (.005) (0.13)<br>INDICATOR b .006 .008 .010 0.15 0.20 0.25<br>(LASER MARK) b1 .014 .016 .018 0.35 0.40 0.45<br>D .094 .098 .102 2.40 2.50 2.60<br>E .035 .039 .043 0.90 1.00 1.10<br>e .020 BSC 0.50 BSC<br>L .012 .015 .017 0.30 0.38 0.425<br>N 8 8<br>A SEATING aaa .003 0.08<br>bbb .004 0.10<br>aaa C PLANE<br>A2 A1 C<br>b1xN<br>R0.125<br>bbb C A B<br>1 2<br>E/2 LxN<br>2X R0.075<br>7 PLACES<br>N<br>e bxN<br>bbb C A B<br>D/2<br>NOTES:<br>1. CONTROLLING DIMENSIONS ARE IN MILLIMETERS (ANGLES IN DEGREES).<br>**----- End of picture text -----**<br>


## Land Pattern - SLP2510P8 

**==> picture [367 x 148] intentionally omitted <==**

**----- Start of picture text -----**<br>
P1<br>P<br>DIMENSIONS<br>DIM INCHES MILLIMETERS<br>Y C (.034) (0.875)<br>G .008 0.20<br>Z (C) G (Y1) P .020 0.50<br>P1 .039 1.00<br>X .008 0.20<br>X1 .016 0.40<br>Y .027 0.675<br>X Y1 (.061) (1.55)<br>X1 Z .061 1.55<br>NOTES:<br>**----- End of picture text -----**<br>


1. CONTROLLING DIMENSIONS ARE IN MILLIMETERS (ANGLES IN DEGREES). 2. THIS LAND PATTERN IS FOR REFERENCE PURPOSES ONLY. CONSULT YOUR MANUFACTURING GROUP TO ENSURE YOUR COMPANY'S MANUFACTURING GUIDELINES ARE MET. 

www.semtech.com 

© 2008 Semtech Corp. 

12 

RClamp0522P RClamp0524P PRELIMINARY 

## PROTECTION PRODUCTS 

## Marking Codes 

RClamp0522P 

## RClamp0524P 

PIN 1 INDICATOR 

## 0522P 

PIN 1 INDICATOR 

## 0524P 

## Tape and Reel Specification 

Pin 1 Location 

User Direction of feed 

Device Orientation in Tape 

|tr<br>a<br>P|u<br>N|u<br>N|r<br>e<br>b<br>m|r<br>e<br>b<br>m|||||||0<br>A|||||||||||0<br>B|0<br>B|0<br>B||||0<br>K|0<br>K|0<br>K||||||||||||||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|p<br>m<br>alC<br>R||T<br>2<br>2<br>5<br>0||||.<br>1||0<br>3||5<br>0<br>.<br>0<br>-/<br>+||m|m||||||.<br>1|5<br>7||-/<br>+|.<br>0|5<br>0|m<br>m|.<br>0|0<br>7|-/<br>+|.<br>0|5<br>0||m<br>m||||||||||||||||||||||||
|p<br>m<br>alC<br>R||T<br>4<br>2<br>5<br>0||||.<br>1||3<br>2||5<br>0<br>.<br>0<br>-/<br>+||m||m|||||.<br>2|0<br>7||-/<br>+|.<br>0|5<br>0|m<br>m|.<br>0|0<br>7|-/<br>+|.<br>0|5<br>0||m<br>m||||||||||||||||||||||||
|||||||||||||||||||||||||||||||||||||||||||||||||||||||||
|e<br>p<br>a<br>T<br>h<br>t<br>di<br>W|||M<br>(<br>,<br>B|)x<br>a|||||||D|||||1<br>D||||||||E||||F||||K<br>A<br>M<br>(||)X|||P||P|0||P|2||(T||M||A|)X|||W|||
|m<br>m<br>8|||m<br>m<br>2<br>.<br>4|||||.<br>1<br>-|+<br>5<br>0<br>.<br>0||m<br>m<br>1.<br>0<br>)<br>m<br>m||||m<br>m<br>5<br>.<br>0<br>5<br>0<br>.<br>0<br>±|||||||0<br>1.<br>±<br>0<br>5<br>7<br>.<br>1<br>m<br>m||||5<br>0<br>.<br>0<br>±<br>5<br>.<br>3<br>m<br>m||||||4<br>.<br>2|m<br>m|||.<br>4|1.<br>0<br>±<br>0<br>m<br>m|.<br>4|1.<br>0<br>±<br>0<br>m<br>m||.<br>2|5<br>0<br>.<br>0<br>±<br>0<br>m<br>m|||.<br>0|4||m<br>m|||m<br>m<br>0<br>.<br>8<br>m<br>m<br>3<br>.<br>0<br>+<br>m<br>m<br>1.<br>0<br>-|||||



## Contact Information 

Semtech Corporation Protection Products Division 200 Flynn Road, Camarillo, CA 93012 Phone: (805)498-2111   FAX (805)498-3804 

www.semtech.com 

© 2008 Semtech Corp. 

13 



## Links

- [View this product on Novapart](https://novapart.co/products/RCLAMP0524P.TCT/tvs-diode-railclamp-unidirectional-5-v-15)
- [Request a quote for this part](https://novapart.co/quote/)
- [Supplier page](https://es.farnell.com/semtech/rclamp0524p-tct/diode-tvs/dp/1651645RL)
---

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