VSM0805
VSM0805 is Bulk Metal Foil Technology Discrete Surface Mount Chip Resistors manufactured by Vishay.
FEATURES
- Nominal TCR: + 0.6ppm/°C (0 to 25°C)
- 0.6ppm/C° (+ 25°C to + 60°C) + 2.2ppm/°C (- 55°C to + 25°C)
- 1.8ppm/°C (+ 25°C to + 125°C)
- Absolute Tolerance: to ± 0.01%
- Resistance Range: 5.5Ω to 12K
- Load Life Stability: ± 0.025% (2000 hours @ 70°C)
- Shelf Life Stability: 0.005% Maximum ∆R
- Voltage Coefficient: < 0.00001%/volt (< 0.1ppm/V)
- Current Noise: <
- 40d B
- Non Inductive: < 0.08µH
- Terminal Finishes Available: Lead (Pb)-free (Sn 99.3% Cu 0.7%) Tin/Lead Alloy (Sn 62% Pb 36% Ag 2%)
Product may not be to scale
The VSM0805 represents the latest addition and smallest size to the Precision Bulk Metal® Foil (BMF) technology surface mount chip resistor series. The VSM0805 has a conventional full wrap around termination. The BMF technology offers designers the lowest and most predictable absolute Temperature Coefficient Resistance available. The TCR is a process capability not a selection process and for the most part is independent of ohmic value and lot related variations.
TABLE 1
- TOLERANCE VERSUS RESISTANCE VALUE
VALUE (Ω) TIGHTEST TOLERANCE (%)- ± 0.01 ± 0.02 ± 0.05 ± 0.1 ± 0.25 ± 0.5
The availability of tight absolute tolerance provides a good cost 250Ω to 12K solution for the variability of other ponents when piling the total error budget. BMF offers the best stability available; 100Ω to < 250 and is an order of magnitude better than thin film technology. . 50Ω to < 100 The noise generated by the resistor is non measurable and its design and construction make it well suited for high frequency 25Ω to < 50 applications. The BMF is the ultimate resistor ponent for analog applications. 10Ω to < 25
Data Shee
FIGURE 1
- NOMINAL TCR CURVE
- 55
- 50 +500 +400 +300 +200 +100
- 25 0
5.5Ω to <10
+25
+50
+75
+100
+125
- Tighter tolerances are available. Please contact Application Engineering. Soldering temperatures used during installation may cause resistance to shift up to 0.05%.
-5
+5 pp m pp m
Nominal Resistance/ Temperature (RT)...