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Part Numbert Mfg Packt D/C Descriptiont Qty Company/Contact  
SILM320HBP-220PF         9850 


SILM320HBP-220PF         9850 
    S&L Technology Development co..
  • Contact:Jennifer Zeng
  • Tel:86-755-83511882
  • Fax:86-755-83511886
  • Email: jennifer@xkzd.net


SILM320HBP-220PF     09+    9850 
    Nuoxinyuan Electronics Co.,Ltd
  • Contact:Regina
  • Tel:86-755-83957733
  • Fax:86-755-83956848
  • Email: regina@nxy-ic.com
SILM320HBP-220PF         7250 


SILM320HBP-220PF         9850 
    All Element Technology Co.,Ltd
  • Contact:lisa
  • Tel:86-755-82565926
  • Fax:86-755-82565338
  • Email: lisa@allelement.net
SILM320HBP-220PF     06+  new and original in   9850 
    Bosin (HK) Electronics Limited..
  • Contact:Baron
  • Tel:86-755-83640678
  • Fax:86-755-83227368
  • Email: faith@bosin.hk
SILM320HBP-220PF         9850 
    PERFECTION INT鈥橪 GROUP (HONGKO..
  • Contact:SUN
  • Tel:0086-755-25887780
  • Fax:0086-755-25831006
  • Email: david@perfectionhk.com
SILM320HBP-220PF       shenzhen stock  120000 
    a one Technology(hk) ltd
  • Contact:wang
  • Tel:86-755-83959609
  • Fax:86-755-83959609
  • Email: peter@aonetechno.com
SILM320HBP-220PF         9850 
SILM320HBP-220PF A/N    9850     
SILM320HBP-220PF         11350 
    ExcellentElectronics(hk)Co.,Lt..
  • Contact:Ms.AnneHuang
  • Tel:86-755-82727096/61685817
  • Fax:86-755-82731987
  • Email: anne@hkexcellent.com

SILM320HBP-220PF Datasheet

Symbol Parameter Test Conditions Min Typ. Max Unit
tr(Voff) tf te Off-voltage Rise Time Fall Time Cross-over Time VDD = 48 V ID = 10 A RG =4.7 I VGS = 10 V (see test circuit, figure 5) 8 25 38 1 1 34 50 ns ns ns


SILM320HBP-220PF Price

7C265-15 7C265-25 7C265-40 7C265-50
Parameter Description Min Max Min Max Min Max Min Max Unit
tAS Address Set-Up to Clock 15 25 40 50 ns
tHA Address Hold from Clock 0 0 0 0 ns
tc0 Clock to Output Valid 12 15 20 25 ns
tPWC Clock Pulse Width 12 15 15 20 ns
tSES Es Set-Up to Clock (Sync. Enable Only) 12 15 15 15 ns
tHES Es Hold from Clock 5 5 5 5 ns
tDI INIT to Output Valid 15 18 25 35 ns
tRI INIT Recovery to Clock 12 15 20 25 ns
tPWI INIT Pulse Width 12 15 25 35 ns
tcOs Output Valid from Clock (Sync. Mode) 12 15 20 25 ns
tHZC Output Inactive from Clock (Sync. Mode) 12 15 20 25 ns
tDOE Output Valid from E LOW (Async. Mode) 12 15 20 25 ns
tHZE Output Inactive from E HIGH (Async. Mode) 12 15 20 25 ns


SILM320HBP-220PF on stock

No Parameters Test Conditions Pin Symbol Min Typ Max Unit Type*
5 Power Supply
5.1 Supply voltage Vcc 2.6 3.2 3.6 V A
5.2 Current consumption in active mode Pout = 33 dBm PAE = 47% l 1.33 A A
5.3 Current consumption (leakage current) in power-down mode VCTL0.2V I 10 UA A
6 RF Input
6.1 Frequency range 880 900 935 MHz A
6.2 Input impedancec') Z 50 Q c
6.3 Input power Pin 5 12 dBm c
6.4 Input VSWRcl) Pin = 0 t0 12 dBm Pout = 30 dBm 21 c
7 RF Output
7.1 Output impedancec') Z 50 Q c
7.2 Output power in normal conditions Pin = 5 dBm, RL = RG = 50 Q Vcc = 3.2 V, Tamb = +250C Vcc = 2.2 V, Tamb = +250C Pout Pout 33 30 dBm dBm A
7.3 Minimum output power VCTL= 0.3V - 20 dBm A
7.4 Power-added efficiency Vcc = 3.2 V, Pout = 27 dBm PAE 47 % A
7.5 Stability Temp = -25 to + 850C no spurious > -60 dBc VSWR 10:1 c
7.6 Load mismatch (stable, no damage) Pout = 33 dBm, all phases VSWR 10:1 c
7.7 Second harmonic distortion 2fo -35 dBc A
7.8 Third harmonic distortion 3fo -35 dBc A
7.9 Noise power f = 925 t0 935 MHz f > 935 MHz Pout = 33 dBm RBW =100 kHz -73 -85 -70 -82 dBm dBm c
7.10 Rise and fall time 0.5 US A
7.11 lsolation between input and output Pin = 0 t0 10 dBm VCTL i 0.2 V (power down) 50 dB c
8 Power Control
8.1 Control curve Pout25 dBm 150 dBN c
8.2 Power control range VCTL = 0.3 t0 2.0 V 50 dB c
8.3 Control voltage range VCTL O3 2.0 V A
8.4 Control current Pin = 0 t0 10 dBm, VCTL= 0 t0 2.0 V ICTL 200 UA A


Parameter Conditions Min Typ. Max Units
Isolation Voltage 60 Seconds 1,000 VDC
Isolation Resistance 500 VDC 1,000 MQ
Isolation Capacitance 100 kHz, 1V 40 100 pF
Switching Frequency 70 100 140 kHz