X-On Electronics has gained recognition as a prominent supplier of ALD810020SCL MOSFETs across the USA, India, Europe, Australia, and various other global locations. ALD810020SCL MOSFETs are a product manufactured by Advanced Linear Devices. We provide cost-effective solutions for MOSFETs, ensuring timely deliveries around the world.

ALD810020SCL Advanced Linear Devices

ALD810020SCL electronic component of Advanced Linear Devices
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Part No.ALD810020SCL
Manufacturer: Advanced Linear Devices
Category: MOSFETs
Description: Advanced Linear Devices MOSFET Quad SAB MOSFET ARRAY VT=2.00V
Datasheet: ALD810020SCL Datasheet (PDF)
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (USD)
1: USD 6.193 ea
Line Total: USD 6.19 
Availability - 9
Ship by Wed. 27 Nov to Fri. 29 Nov
MOQ: 1  Multiples: 1
Pack Size: 1
Availability Price Quantity
9
Ship by Wed. 27 Nov to Fri. 29 Nov
MOQ : 1
Multiples : 1
1 : USD 6.193
10 : USD 5.203
50 : USD 4.906
100 : USD 4.202
250 : USD 3.971
500 : USD 3.74
1000 : USD 3.201
2500 : USD 3.014
5000 : USD 2.893

   
Manufacturer
Product Category
RoHS - XON
Icon ROHS
Id - Continuous Drain Current
Vds - Drain-Source Breakdown Voltage
Rds On - Drain-Source Resistance
Transistor Polarity
Vgs - Gate-Source Breakdown Voltage
Vgs th - Gate-Source Threshold Voltage
Minimum Operating Temperature
Maximum Operating Temperature
Pd - Power Dissipation
Mounting Style
Package / Case
Packaging
Technology
Number of Channels
Vgs - Gate-Source Voltage
Channel Mode
Configuration
Brand
Typical Turn-Off Delay Time
Typical Turn-On Delay Time
Transistor Type
Cnhts
Hts Code
Mxhts
Product Type
Factory Pack Quantity :
Subcategory
Taric
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Notes:- Show Stocked Products With Similar Attributes.

We are delighted to provide the ALD810020SCL from our MOSFETs category, at competitive rates not only in the United States, Australia, and India, but also across Europe and beyond. A long established and extensive electronic component distribution network has enhanced our global reach and dependability, ensuring cost savings through prompt deliveries worldwide. Client satisfaction is at the heart of our business, where every component counts and every customer matters. Our technical service team is ready to assist you. From product selection to after-sales support, we strive to deliver a seamless and satisfying experience. Are you ready to experience the best in electronic component distribution? Contact X-ON Electronics today and discover why X-On are a preferred choice for the ALD810020SCL and other electronic components in the MOSFETs category and beyond.

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e TM ADVANCED EPAD LINEAR DEVICES, INC. ALD810020/ALD910020 QUAD/DUAL SUPERCAPACITOR AUTO BALANCING (SAB ) MOSFET ARRAY GENERAL DESCRIPTION FEATURES & BENEFITS The ALD810020/ALD910020 are members of the ALD8100xx Simple and economical to use Precision factory trimmed (quad) and ALD9100xx (dual) family of Supercapacitor Auto Bal- Automatically regulates and balances leakage currents ancing MOSFETs, or SAB MOSFETs. SAB MOSFETs are built Effective for supercapacitor charge-balancing with production proven EPAD technology and are designed to ad- Balances up to 4 supercaps with a single IC package dress voltage and leakage-current balancing of supercapacitors Balances 2-cell, 3-cell, 4-cell series-connected supercaps connected in series. Supercapacitors, also known as ultracapacitors Scalable to larger supercap stacks and arrays or supercaps, connected in series can be leakage-current balanced Near zero additional leakage currents by using a combination of one or more devices connected across Zero leakage at 0.3V below rated voltages each supercapacitor stack to prevent over-voltages. Balances series and/or parallel-connected supercaps Leakage currents are exponential function of cell voltages The ALD810020 offers a set of unique, precise operating voltage Active current ranges from <0.3nA to >1000A and current characteristics for each of four SAB MOSFET devices, Always active, always fast response time as shown in its Operating Electrical Characteristics table. It can be Minimizes leakage currents and power dissipation used to balance up to four supercapacitors connected in series. The ALD910020 has its own set of unique precision Operating Elec- APPLICATIONS trical Characteristics for each of its two SAB MOSFET devices, suitable for up to two series-connected supercapacitors. Series-connected supercapacitor cell leakage balancing Energy harvesting Each SAB MOSFET features a precision gate threshold voltage in Long term backup battery with supercapacitor outputs the V mode, which is 2.00V when the gate-drain source terminals t Zero-power voltage divider at selected voltages (V = V ) are connected together at a drain-source current of GS DS Matched current mirrors and current sources I = 1A. In this mode, input voltage V = V = V Dif- DS(ON) IN GS DS. Zero-power mode maximum voltage limiter ferent V produces an Output Current I = I character- Scaled supercapacitor stacks and arrays IN OUT DS(ON) istic and results in an effective variable resistor that varies in value PIN CONFIGURATIONS exponentially with V . This V , when connected across each IN IN supercapacitor in a series, balances each supercapacitor to within its voltage and current limits. ALD810020 When V = 2.00V is applied to an ALD810020/ALD910020, its IN 1 16 IC* IC* I is 1A. For a 100mV increase in V , to 2.10V, I increases OUT IN OUT M1 by about tenfold. For an additional increase in V to 2.22V for the M2 IN D D N1 2 15 N2 ALD910020 (2.24V for the ALD810020), I increases one hun- OUT dredfold, to 100A. Conversely, for a 100mV decrease in V to IN 1.90V, I decreases to one tenth of its previous value, to 0.1A. OUT G 3 14 G N1 N2 Another 100mV decrease in input voltage would reduce I to OUT 0.01A. Hence, when an ALD810020/ALD910020 SAB MOSFET V- V- S S N1 4 13 N2 is connected across a supercapacitor that charges to less than 1.80V, it would dissipate essentially no power. V- 5 V+ (Continued on next page) 12 M3 M4 D D N4 N3 6 11 PRODUCT FAMILY SPECIFICATIONS G G N4 10 7 N3 For more information on supercapacitor balancing, how SAB MOSFETs achieve automatic supercapacitor balancing, the device V- V- S S characteristics of the SAB MOSFET family, product family product N4 8 9 N3 selection guide, applications, configurations, and package infor- mation, please download from www.aldinc.com the document: SCL PACKAGE ALD8100xx/ALD9100xx Family of Supercapacitor Auto Balanc- ALD910020 ing (SAB) MOSFET ARRAYs V- V+ IC* 1 8 G 2 7 G N1 N2 ORDERING INFORMATION (L suffix denotes lead-free (RoHS)) Operating Temperature Range D 3 6 D N1 N2 Package 0C to +70C -40C to +85C S S V- N1 4 5 N2, (Commercial) (Industrial) 16-Pin SOIC ALD810020SCL ALD810020SCLI SAL PACKAGE *IC pins are internally connected, connect to V- 8-Pin SOIC ALD910020SAL ALD910020SALI 2014 Advanced Linear Devices, Inc., Vers. 2.0 www.aldinc.com 1 of 6 E N A D E L BAPPLYING THE ALD810020/ALD910020: GENERAL DESCRIPTION (CONT.) The voltage dependent characteristic of the ALD810020/ 1) Select a maximum supercapacitor leakage current limit for any ALD910020 on-resistance is effective in controlling excessive volt- supercapacitor used in the stack. This is the same as output cur- age rise across a supercapacitor when connected across it. In se- rent, I = I , of the ALD810020/ALD910020. Test that each OUT DS(ON) ries-connected supercapacitor stacks, when one supercapacitor supercapacitor leakage current meets this maximum current limit voltage rises, the voltage of the other supercapacitors drops, with before use in the stack. the ones that have the highest leakage currents having the lowest supercapacitor voltages. The SAB MOSFETs connected across 2) Determine whether the input voltage V (V = V ) at that IN GS DS these supercapacitors would exhibit complementary opposing cur- I is acceptable for the intended application. This voltage is the OUT rent levels, resulting in little additional leakage currents other than same voltage as the maximum desired operating voltage of the those caused by the supercapacitors themselves. supercapacitor. For example, with the ALD810020, I = 1000A OUT corresponds to V = 2.52V. IN For technical assistance, please contact ALD technical support at techsupport aldinc.com. 3) Determine that the operating voltage margin, due to various tolerances and/or temperature effects, is adequate for the intended operating environment of the supercapacitor. SCHEMATIC DIAGRAM OF A TYPICAL CONNECTION FOR A FOUR-SUPERCAP STACK V+ +15.0V ALD8100XX I 80mA DS(ON) SCHEMATIC DIAGRAM OF A TYPICAL 2, 12 CONNECTION FOR A TWO-SUPERCAP STACK + 3 M1 C1 4 V+ +15.0V ALD9100XX V 1 15 I 80mA DS(ON) + 14 M2 C2 3, 8 13 + 2 V 2 C1 M1 11 + 4 10 C3 M3 V 1 9 6 + 7 V 3 C2 6 M2 + 7 C4 M4 1, 5 1, 5, 8, 16 1-16 DENOTES PACKAGE PIN NUMBERS 1-8 DENOTES PACKAGE PIN NUMBERS C1-C4 DENOTES SUPERCAPACITORS C1-C2 DENOTES SUPERCAPACITORS ALD810020/ALD910020 Advanced Linear Devices, Inc. 2 of 6

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