APSR39

Description

  • Metal type Low-Resistance shunt resistor.
  • Resistance value 0.3 mΩ, 0.5mΩ, 1mΩ, 2mΩ, 3mΩ, 4mΩ.
  • Low thermal EMF.
  • Low TCR.
  • Very low inductance.
  • Halogen free, lead free and RoHS compliant.
  • AEC-Q200 qualified available.

Applications

  • Power modules.
  • Frequency converters
  • Current sensor for power hybrid sources high current for automotiveCurrent sensor for power hybrid sources high current for automotive
  • Lithium battery protection board

Part number

APSR   25      S        3        F    0M50
【1】 【2】【3】 【4】【5】 【6】
【1】Series Name: Prosemi Shunt Resistor for Automotive.
【2】Chip Size: 25: 2512,39: 3921
【3】Material: S: CuMnSn, M: CuMn, K: NiCr, C: Ni & Sn plated Copper
【4】Power Rating: 3=3W, 5=5W, J=Jumper.
【5】Resistance Precision: F: ±1%, J: ±5%, 0: Jumper.
【6】Resistance Code: R000: Jumper, R002: 2mΩ, 0M50: 0.5mΩ.

 

Electrical Characteristics

  Size Power   Rating at 70℃(W) Resistance Range (mΩ)* ±1%;±5% Element TCR ( ppm/℃) Operation Temperature Range Product temperature coefficient (ppm/℃)
  2512 3 0.3~2   ±30 -55℃~+170℃ ±250 for 0.3 mΩ and 0.5 mΩ ±200 for 1mΩ ±75 for 2~4 mΩ
2 3~4
Imax=100A Jumper - - -
    3921 7 0.5~2   ±30   -55℃~+170℃ ±75 for 0.5 mΩ and 1 mΩ ±60 for 2~3 mΩ ±50 for 4 mΩ
5 3~4
Imax=160A Jumper - - -

 

“*” : Other values may be available, contact factory

 

Note:

1)    Ir =(P/R)1/2    R: Resistance Value Ir: Rating Current P: Rating Power;

2)    Product temperature coefficient: Includes the TCR effects of the resistor element and the copper terminal.

 

Physical Dimensions

APSR39

Size Resistance (mΩ) L W T A P Element Material
      3921 Jumper       10±0.2       5.2±0.2 -       1.9±0.2       0.5±0.1 Ni & Sn plated Copper
0.5 0.8±0.2 CuMn
1 0.4±0.1 CuMn
2 0.6±0.1 NiCr
3 0.4±0.1 NiCr
4 0.3±0.1 NiCr
          2512 Jumper           6.4±0.2           3.2±0.2 -           1.53±0.2           0.4±0.1 Ni & Sn plated Copper
0.3 0.95±0.1 CuMn
0.5 0.4±0.1 CuMnSn
1 0.3±0.1 CuMn
2 0.5±0.1 NiCr
3 0.3±0.1 NiCr
4 0.25±0.1 NiCr

 

Recommended Solder Pad Layout

APSR39

Type L a b
2512 3.0 2.3 3.5
3921 5.8 2.5 6.2

 

 

Construction

APSR39

Power Derating Curve

For resistors operated in ambient temperatures 70°C, power rating shall be derated in according with the curve below:

APSR39

 

Recommended Solder Curve

APSR39

Reflow Condition Pb - Free assembly
  Pre heat - Temperature Min (Ts(min)) 150°C
- Temperature Max (Ts(max)) 200°C
- Time (Minto Max) (ts) 60 - 120 secs
Average ramp up rate (Liquidus Temp (TL) to peak 5°C/second max
TS(max) to TL  - Ramp-up Rate 5°C/second max
Reflow - Temperature (TL) (Liquidus) 217°C
- Time (tL) 60 - 150 seconds
Peak Temperature (TP) 260°C
Time within 5°C of actual peak Temperature (tp) 20 - 40 seconds
Ramp-down Rate 5°C/second max
Time 25°C to peak Temperature (TP) 8 minutes Max.
Wave Soldering Not applicable
Hand Soldering 350°C, 5 seconds max.

 

 Marking  Instructions

APSR  is marked with three or four digit, We have two different ways of marking:

a. “ R ” designates the decimal location in ohms,

  e. g.  For APSR39:2mΩ: R002;         For APSR25: 2mΩ: 002

b. “m” designates the decimal location in milliohms,

  e. g.  For APSR39:0.5mΩ: 0m50;     For APSR25:0.5mΩ: 0m5

Product Characteristics

Item Test condition/ Methods Limited Standard
Resistance Measuring resistance value at room temperature 25℃±5℃ Refer to Spec IEC60115-1 4.5
    Temperature coefficient of resistance TCR =(R-R0)/R0(T2-T1)X 106 R0 : resistance of room temperature R: resistance of 125℃ T1 : Room temperature T2 : Temperature at 125℃     Refer to Spec     MIL-STD-202 Method 304
Short time Overload 5 times the rated power for 5 seconds ≤±0.5% MIL-R-26E
Resistance to Soldering Heat 260℃±5℃ time :12sec± 0.5sec ≤±0.5% MIL-STD-202 Method 210
Temperature Cycling -55℃ (15min)/+150℃(15min), 1000 cycles ≤±0.1% MIL-STD-202 Method107G
Low temperature Storage -55℃ for 24 hours, No power ≤±0.5% MIL-STD-26E
High Temperature Storage 170℃ for 1000hours, No power ≤±1% IEC6011501- 4.25
Bias Humidity +85℃ , 85% RH ,10%bias, 1000hours ≤±0.5% MIL-STD-202 Method103
  Mechanical shock Condition C , 100 g’s ,6 msec, 3 mutually perpendicular axes, in 6 directions, three impacts each for a total of 18 times 18 shocks.   ≤±0.5%   MIL-STD-202 Method 213
  Vibration The frequency varies from 10HZ to 55HZ and return to 10HZ, shall be transferred in 1 min.   Amplitude : 1.5mm, 3 directions, and 12 hours   ≤±0.5%   MIL-STD-202 Method 201
Operational life 70℃±2℃, 1000 hours, at rated power 1.5 hours “ON”, 0.5 hours “OFF” ≤±1% MIL-STD-202 Method 108
Moisture resistance MIL-STD-202,method106 , No power, 7b not required ≤±0.5% MIL-STD-202 Method 106

 

Packaging 

Tape Dimensions

APSR39

 

 

Series Type A B D0 E F φD1
2512 0.3mΩ 3.60±0.10 6.70±0.10 1.50+0.10 1.75±0.10 5.50±0.05 1.50±0.10
0.5-4mΩ 3.50±0.10 6.74±0.10 1.50+0.10 1.75±0.10 5.50±0.05 1.50±0.10
3921 0.5-4mΩ 5.50±0.10 10.50±0.10 1.50+0. 10/0 1.75±0.10 7.50±0.1 1.50+0.10/0
Series Type W P0 P1 P2 T  
2512 0.3mΩ 12.00±0.30 4.00±0.10 8.00±0.10 2.00±0.05 1.60±0.10  
0.5-4mΩ 12.00±0.30 4.00±0.10 8.00±0.10 2.00±0.05 1.10±0.10  
3921 0.5-4mΩ 16.00±0.30 4.00±0.10 8.00±0.10 2.00±0.10 1.50±0.10  

 

Reel Dimensions

APSR39

APSR39

 

 

Series Type W (mm) M (mm) A (mm) B (mm) C (mm) D (mm)
2512 7’ reel 13.8±0.5 178.0±2.0 2.0±0.5 13.5±0.5 21.0±0.5 80.0±1.0
Series Type W (mm) M (mm) ΦA  (mm) N (mm) H1   (mm) B (mm)
3921 13’ reel 16.4+3.5/-0.2 330.0±2.0 13.4±0.5 100.0±0.2 16.4±1.0 2.4±0.4

 

Quantity of Package

 

Type Quantity (pcs)
2512 0.3mΩ :1000  0.5-4mΩ:2000
3921 2500

 

Storage 

1.  The temperature condition must be controlled at 25±5℃,   The R.H. must be controlled at 60±15% Store in accordance with this requirement, and the validity period is two years after the date of manufacture.

2.  Please avoid the mentioned harsh environment below when storing to ensure product  performance and its’ weldability. Places exposed to sea breeze or other corrosive gas, such as Cl2 , H2S, NH3 , SO2  and NO2 .

3.   When the product is moved and stored, please ensure the correct orientation of the box.  Do not drop or squeeze the box. Otherwise, the electrode or the body of the product may be damaged.

 

 

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