参数资料
型号: LM2795EVAL
厂商: National Semiconductor
文件页数: 14/23页
文件大小: 0K
描述: BOARD EVALUATION LM2795
标准包装: 1
电流 - 输出 / 通道: 80mA
输出及类型: 4,非隔离
输出电压: 4V
特点: 充电泵
输入电压: 2.7 ~ 5.5 V
已供物品:
已用 IC / 零件: LM2795
相关产品: LM2795TLX-ND - IC LED DRVR WHT BCKLT 14USMD
LM27953TLX-ND - IC LED DRVR WHT BCKLT 18USMD
LM27952SDX-ND - IC LED DRIVR WHITE BCKLGT 14-LLP
LM27951SDX-ND - IC LED DRIVR WHITE BCKLGT 14-LLP
LM2795BLDKR-ND - IC LED DRVR WHT BCKLT 14USMD
LM27953TLDKR-ND - IC LED DRVR WHT BCKLT 18USMD
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LM27951SDDKR-ND - IC LED DRIVR WHITE BCKLGT 14-LLP
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LM27951SDCT-ND - IC LED DRIVR WHITE BCKLGT 14-LLP
更多...
SNVS168L – JANUARY 2002 – REVISED MAY 2013
18
16
14
12
10
8
6
4
2
0
R SET = 124Ω
R SET = 475Ω
R SET = 2.67kΩ
0.05
0.20
0.35
0.50
0.65
0.80
V HR (V)
Figure 24. I LED vs V HR
4 LEDs, V IN = 3.0V
On the flat part of the graph, the currents regulate properly as there is sufficient headroom voltage for regulation.
On the sloping part of the graph the headroom voltage is too small, the current sources are squeezed, and their
current drive capability is limited. Changes in headroom voltage from one output to the next, possible with LED
forward voltage mismatch, will result in different output currents and LED brightness mismatch. Thus, operating
the LM2794/5 with insufficient headroom voltage across the current sources should be avoided.
OUTPUT CURRENT CAPABILITY
The primary constraint on the total current capability is the headroom voltage requirement of the internal current
sources. Combining the V POUT and V HR equations from the previous two sections yields the basic inequality for
determining the validity of an LM2794/5 LED-drive application:
V POUT = 1.5 × V IN ? I TOTAL × R OUT
V HR-MIN = k HR × I DX
V POUT ? V DX ≥ V HR-MIN
1.5 × V IN ? I TOTAL × R OUT ? V DX ≥ (k HR × I DX )
Rearranging this inequality shows the estimated total output current capability of an application:
I TOTAL ≤ [(1.5 × V IN-MIN ) ? V DX-MAX ? (k HR × I DX )] ÷ R OUT
(4)
(5)
(6)
(7)
(8)
Examining the equation above, the primary limiting factors on total output current capability are input and LED
forward voltage. A low input voltage combined with a high LED voltage may result in insufficient headroom
voltage across the current sources, causing them to fall out of regulation. When the current sources are not
regulated, LED currents will be below desired levels and brightness matching will be highly dependent on LED
forward voltage matching.
Typical LM2794/5 output resistance is 3.0 ? . For worst-case design calculations, using an output resistance of
3.5 ? is recommended. LM2794/5 has a typical k HR constant of 20mV/mA. For worst-case design calculations,
use k HR = 25mV/mA. (Worst-case recommendations account for parameter shifts from part-to-part variation and
apply over the full operating temperature range). R OUT and k HR increase slightly with temperature, but losses are
typically offset by the negative temperature coefficient properties of LED forward voltages. Power dissipation and
internal self-heating may also limit output current capability but is discussed in a later section.
PARALLEL Dx OUTPUTS FOR INCREASED CURRENT DRIVE
Outputs D 1 through D 4 may be connected together in any combination to drive higher currents through fewer
LEDs. For example in Figure 25 , outputs D 1 and D 2 are connected together to drive one LED while D 3 and D 4
are connected together to drive a second LED.
14
Product Folder Links: LM2794 LM2795
Copyright ? 2002–2013, Texas Instruments Incorporated
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