Chapter 1 System Description Specification



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4.2 Battery Specification

4.2.1 EE information





6 cell

6cell

6 cell

6cell

Battery Design Capacity(mAH)

4400

4500

5100

5200

Battery Configuration

3S2P

3S2P

3S2P

3S2P

Battery Nominal Voltage(V)

10.8

10.8

11.1

11.1

Single Cell Chemistry

Li-ion

Li-ion

Li-ion

Li-ion

Single Cell Type

18650

18650

18650

18650

Single Cell Capacity(mAH)

2200

2250

2550

2600

Dumb/Smart Battery

Smart Battery

(SMBus ver. 1.1.)



Smart Battery

(SMBus ver. 1.1.)



Smart Battery

(SMBus ver. 1.1.)



Smart Battery

(SMBus ver. 1.1.)



Cycle Life

70% after 300 cycles

70% after 300 cycles

70% after 300 cycles

70% after 300 cycles

Nominal Charging Voltage(V)

12.6

12.6

12.6

12.6

Nominal Charging Current(A)

3.08

3.15

3.57

3.6

Protection Function

OVP

UVP


OTP

OCP


OVP

UVP


OTP

OCP


OVP

UVP


OTP

OCP


OVP

UVP


OTP

OCP




4.2.2 Battery Connector Pin Assignment


Connector Male on M/B : C144DD-109A8-L 9P

Connector Female on Battery : SUYIN 200274FS009G128Z



Pin No.

Symbol

Comments

1

BATT+

Battery Positive Terminal.

2

BATT+

Battery Positive Terminal.

3

ID

Identify pin(Floating)

4

B/I

Battery-In Function Pin(*)

5

TH

Connect 10KΩ Thermistor to GND

6

SMD

SMBus data interface I/O pin.

7

SMC

SMBus clock interface I/O pin.

8

GND

Battery Negative Terminal.

9

GND

Battery Negative Terminal.

*: Battery cannot be charged or discharged unless this pin is connected to GND.





4.3 AC Adapter 65W)(PK10000KL10)


1. SCOPE

This specification describes the physical, functional and electrical characteristics of the 65 watts, single output

+19V/3.42A, switching power supply.

2. INPUT CHARACTERISTICS

2.1. Input Voltage

Input voltage range : 90~264Vac.

2.2. Input Frequency

Input frequency range : 47~63 Hz

2.3. Input current

1.5A Max at 100Vac input voltage.

2.4. Inrush Current

No damage; meet fuse and bridge diode I²t de-rating specified.

2.5. Leakage Current

The AC leakage current is less than 75μA when adapter is connected to 240Vac/50Hz at normal condition.

2.6. No load Power Consumption

Maximum non-load power consumption is less than 0.5W at 115Vac/60Hz and 230Vac/50HZ

2.7. Efficiency (Warm Up)

2.7.1 84 % min. at nominal input voltage, maximum load and measured at the end of DC cable.

2.7.2 Active mode efficiency:

More than 87% of average efficiency of 25%,50%,75% and 100% load tested at 115Vac and

230Vac. (Warm up after 30 minutes)



3. OUTPUT CHARACTERISTICS

3.1. Output Characteristics

Output voltage, load current, voltage regulation and output noise of power supply should meet the specifications, which defined on the tables below:

3.2. Output Protection :

3.2.1. Short Circuit Protection : Output can be shorted without damage. The adaptor shall be auto-recovery. (It will enter into normal

condition when the fault condition is removed.)

3.2.2. Over Voltage Protection : The output shall be protected to latch off at over-voltage condition, maximum value can’t be over 27V.

That might be return to normal state by AC reset .

3.2.3. Over Current Protection : The adaptor shall be auto-recovery at over-current condition , OCP must be more than 4.1A.

3.2.4. Over Temperature Protection : No deformation and no discoloration on case and will be shut down. The case temperature < 95Deg C.

That will be return to normal state by ac reset..

4. ENVIRONMENT SECTION

4.1. Operating Temperature : 0°C to 40°C

4.2. Operating Humidity: 8% to 90%RH

4.3. Storage Temperature : -20°C to 85°C

4.4. Storage Humidity : 5% to 90% RH

5. RELIABILITY

5.1. MTBF : MTBF(Mean-Time-Between-Failures)Calculation

The calculated MTBF shall be 100,000 hours of continuous operation at 25℃,

maximum load and normal voltage.

5.2. Vibration

5.2.1. Non-Operating : Acceleration 2.09G / Frequency 5~500Hz/ Vibration duration 20 minutes/Force Direction at X, Y, Z

5.2.2. Operating

5.3. Drop :

5.3.1 Non-Operating:

1.Operating (Reliability Testing):

Six Drops: is subject to six impacts that result from six surfaces of the sample being dropped onto a

horizontal surface.

Horizontal Surface Consists of : The Concrete Floor.

2.. Sample weight: 214 g

3. Drop height: 90 cm.

5.3.2 Operating:

1.Operating (Reliability Testing):

Six Drops: is subject to six impacts that result from six surfaces of the sample being dropped onto a horizontal

surface.

Horizontal Surface Consists of :The Concrete Floor.

2. Sample weight:214 g

3. Drop height: 150 cm.

5.4. Shock

5.4.1. Non-Operating:

Acceleration 50G/trapezoidal/pulse duration 11ms/ 3 Shocks for each direction /one time at 6 directions

5.4.2. Operating :



6. SAFETY SECTION

6.1. Hi-Pot Test

6.1.1. In-Process:

�� Primary to Secondary :

Voltage: 3000VAC,10mA Max.

Ramp time: 0.1Sec

6.1.2. FQC (Final check) :.

6.2. Safety conforming :

CECP, BSMI, C-TICK, GOST-R ,IRAM, KC, PSB, PSE, TUV ,UL, CCC, CE

7. EMC SECTION :

7.1. EMI design to meet following standards

7.1.1. FCC part 15J Class B

7.1.2. CISPR 22 (EN 55022) Class B

7.2. EMS design to meet EN55022 standards

EN 61000-3-2: 2006 Class D

EN 61000-3-3: 1995+A1: 2001+A2: 2005

EN 55024: 1998 +A1: 2001 +A2: 2003

IEC 61000-4-2: 2001 ED.1.2

IEC 61000-4-3: 2006 ED.3.0

IEC 61000-4-4: 2004 ED.2.0

IEC 61000-4-5: 2005 ED.2.0

IEC 61000-4-6: 2006 ED.2.2

IEC 61000-4-8: 2001 ED.1.1

Criterion B.

8. ENVIRONMENT STANDARD :

8.1. RoHS Directive 2002/95/EC :

8.2. WEEE Directive 2002/96/EC

9. MECHANICAL SECTION

9.1. Weight : 240±10g gram.

9.2. Dimension :

9.2.1 Outline Dimension: 108.0 * 46.0 * 29.5 mm, color: Black

9.2.2 AC Inlet Type: Socket C6 type

9.2.3 DC Cable Length: 1800 mm, UL1185, AWG #18

9.2.4 DC Connector Dimension:

OD = 5.5 mm

ID = 2.5 mm

Length = 12.0 mm.





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